ETC1 BL02RN2R1Q1A On-board type (dc) emi suppression filter Datasheet

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CONTENTS
EMIFILr, EMIGUARDr, "EMIFIL" and "EMIGUARD" in this catalog are
the trademarks of Murata Manufacturing Co., Ltd.
Selection Guide of EMI Filters
2
Products Guide / Effective Frequency Range
3
Outlines of EMI Suppression Filter (EMIFILr) for DC Line
6
1
2
3
Chip Ferrite Beads Part Numbering / Impedance Map / BLM Series Line Up
BLM03A/15A/18A/21A/31A/41A
18
BLM15B/18B/21B/31B
BLM18R/21R
BLM18P/21P/31P/41P
27
41
45
Chip EMIFILr Part Numbering
70
Capacitor Array NFA31C
RC Combined Type NFR21G
RC Combined Array Type NFA31G
74
75
79
Chip EMIGUARDr (EMIFILr with Varistor Function) Part Numbering
Film Type Array DLP31D
Monolithic Type DLM2HG
2
81
84
86
89
93
3
96
4
94
Chip Common Mode Choke Coils Part Numbering
Film Type DLP11S/DLP31S
5
LC Combined Monolithic Type NFL18ST/18SP/21SP
LC Combined Winding Type NFW31S
LC Combined Type for Large Current NFE31P/61P/61H
For Large Current NFM18P/21P/3DP/41P
1
53
60
66
Capacitor Type NFM18C/21C/3DC/41C
VFM41R
4
12
For GHz Range Noise Suppression BLM18H/18E
Array Type BLA2AA/2AB/31A/31B
97
99
100
Winding Type DLW21S/DLW21H/DLW31S
Winding Type for Large Current DLW5AH/DLW5BS
101
104
5
Lead Type EMI Suppression Filters (EMIFILr)
Ferrite Beads Inductors Part Numbering
Block Type EMIFILr
BL01/BL02/BL03
105
BNX
Disc Type EMIFILr Part Numbering
Common Mode Choke Coils
DSp6/Broad Band DSp9N/Heavy-duty Type DSp9H
109
PLT09H
EMIGUARDr (EMIFILr with Varistor Function) Part Numbering
VFR3V/VFS6V/VFS9V
117
125
Part Numbering
127
6
6
Microwave Absorbers Part Numbering
EA10/EA20/EA21
129
130
!Caution / Notice
132
Soldering and Mounting
134
Packaging
143
Chip EMI Suppression Filter Design Kits
147
Outlines of Major Noise Regulation Standards
152
Noise Suppression Principles by DC EMIFILr
157
Murata EMI Filter Selection Simulator
161
Recycled Paper
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Selection Guide of EMI Filters
Start
Headphone Line
Common Mode Choke Coils
1008
Type of Circuit
DLM2HG
600Ω
DC Power Line
General Signal Line
High Speed Signal Line
Ground Condition
Ground Condition
Signal Freq. and Noise
Poor
Good
Poor
Good
Chip Ferrite Beads
3-terminal Capacitors
Chip Ferrite Beads
3-terminal Capacitors
Capacitor Type
Separate
Chip Ferrite Beads
Capacitor Type
0603
0603
0201
BLM18P
NFM18P
0.5–3A
2A
0805
0805
Mixed
3-terminal Capacitors
Common Mode
Choke Coils
Combined LC T Filter
0603
0402
BLM03A
NFM18C
10–120Ω
22–22000pF
0402
0805
0603
0603
0504
BLM15B
NFL18ST
DLP11S
5–1000Ω
100–500MHz
90–200Ω
Combined LC
Filter
1206
0603
BLM21P
NFM21P
BLM15A
NFM21C
BLM18B
1.5–6A
2–4A
10–1000Ω
22–22000pF
5–2500Ω
1206
1806
0603
1205
0603
DLP31S
NFL18SP
150–500MHz
120–550Ω
0805
0805
BLM31P
NFM41P
BLM18A/R
NFM3DC
BLM18HD/HB
1.5–6A
2A
120–1000Ω
22–22000pF
120–1000Ω
1806
Combined LC T Filter
0603
Capacitor Array
0805
1206
1206
BLM18HG/HK/EG
BLM21B
1–6A
100–1000Ω
5–2700Ω
6A
0805
2706
BLM21A/R
NFE61P
2A
Common Mode Choke Coils
NFA31C
0804
Combined LC T Filter
0804
Combined RC Filter
1206
BLA2AB
22–2200pF
BLA2AA
0.2–5A
190–4000Ω
10–1000Ω
1206
NFE61P
1206
33–4700pF
BLA31A
30–1000Ω
0805
67–180Ω
1206
0805
DLW31S
NFR21G
2020/2014
90–2200Ω
22–100Ω
10–100pF
Combined RC Array
BLA31B
120–1000Ω
DLW5BS(AH)
NFW31S
Arrays
NFE31P
67–370Ω
DLW21H
10–500MHz
2706
2020/2014
20–500MHz
22–22000pF
120–1000Ω
Arrays
NFL21S
1206
BLM41P
NFE31P
DLW21S
1206
120–1000Ω
DLW5BS(AH)
190–4000Ω
Arrays
NFA31G
1206
6.8–100Ω
10–100pF
DLP31D
90–440Ω
Dimensions in inches
High Current EMI Filters
Standard EMI Filters
EMI Filters for High Speed Signal Lines
Impedance is typical value at 100MHz.
2
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Products Guide/Effective Frequency Range
Product Guide
Type
Inductor
Type
For Digital
Interfaces
Series
BLM18R
BLM21R
Standard
BLM03A
BLM15A
BLM18A
BLM21A
BLM31A
BLM41A
For High
Speed Signals
1.6
0.8
0603
1.25
0805
0.3
0201
0.5
0402
0.8
0603
1.25
0805
1.6
1206
1.6
1806
1.0
0804
1.6
1206
0.5
0402
0.8
0603
1.25
0805
1.6
1206
1.0
0804
1.6
1206
0.8
0603
1.25
0805
1.6
1206
1.6
1806
0.8
0603
0.8
0603
0.8
0603
0.8
0603
0.8
0603
2.0
0.6
1.0
1.6
2.0
3.2
4.5
2.0
BLA31A
(4 circuits array)
3.2
BLM15B
BLM21B
BLM31B
1.0
1.6
2.0
3.2
BLA2AB
(4 circuits array)
2.0
BLA31B
(4 circuits array)
3.2
BLM18P
BLM21P
BLM31P
BLM41P
For GHz Range
Noise Suppression
EIA Code
BLA2AA
(4 circuits array)
BLM18B
For High
Current
Dimensions
(mm)
1.6
2.0
3.2
4.5
BLM18HG
1.6
BLM18HB
1.6
BLM18HD
1.6
BLM18HK
1.6
BLM18EG
1.6
Effective Frequency Range
10kHz 100kHz 1MHz 10MHz100MHz 1GHz 10GHz
Continued on the following page.
3
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Products Guide/Effective Frequency Range
Continued from the preceding page.
Type
Capacitor
Type
Standard
Type
Series
NFM18C
NFM21C
NFM3DC
NFM41C
For Signal
Lines
NFL18SP
1.6
NFW31S
NFM18P
NFM21P
NFM3DP
NFM41P
NFE31P
1.25
0805
1.25
1205
1.6
1806
1.6
1206
0.8
0603
0.8
0603
1.25
0805
1.25
0805
1.6
1206
1.6
1206
0.8
0603
1.25
0805
1.25
1205
1.6
1806
1.6
1206
1.6
2706
1.6
1806
1.0
0504
1.6
1206
1.6
1206
2.0
1008
1.2
0805
1.2
0805
1.6
1206
4.5
1.6
NFA31G
(4 circuits array)
0603
3.2
NFL18ST
EIA Code
0.8
2.0
3.2
NFR21G
T Filter for
High Current
1.6
NFA31C
(4 circuits array)
NFL21S
For High
Current
Dimensions
(mm)
2.0
2.0
3.2
3.2
1.6
2.0
3.2
4.5
3.2
Effective Frequency Range
10kHz 100kHz 1MHz 10MHz100MHz 1GHz 10GHz
6.8
NFE61P(H)
With Varistor
Function
Common Mode
Choke Coils
VFM41R
DLP11S
DLP31S
DLP31D
DLM2HG
DLW21S
DLW21H
DLW31S
DLW5BS
(DLW5AH)
4.5
1.25
3.2
3.2
2.5
2.0
2.0
3.2
5.0
2020
5.0
(3.6)
(2014)
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Products Guide/Effective Frequency Range
Continued from the preceding page.
Type
Series
Dimensions
(mm)
EIA Code
Effective Frequency Range
10kHz 100kHz 1MHz 10MHz100MHz 1GHz 10GHz
Disc EMIFIL®
BL01/02/03
DSN6/9(H)
DSS6/9(H)
DST9(H)
EMIGUARD®
(EMI Filters with varistor functions)
VFR3V
VFS6V/9V
Block EMIFIL®
BNX
Common Mode Choke Coils
PLT09H
EMC Absorber
EA10/20/21
5
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oChip Ferrite Bead
oFerrite Bead Inductor
Chip Ferrite Bead .............P.18–65
BLM03
BLM21
BLM15
BLM31
BLM18
BLM41
Ferrite Bead Inductor ..........P.106–108
BLA2A
BL01
BL02RN1R3J2B
BL02RN2R3J2B
BL02RN1
BL02RN2R1M2B
BL03RN2R1M1B
BLA31
" Chip Ferrite Beads are effective for frequencies ranging
from a few MHz to a few GHz. Chip Ferrite Beads are
widely used as a low noise countermeasure, as well as a
universal noise suppression component.
" Chip Ferrite Beads produce a micro inductance in the low
frequency range. At high frequencies, however, the
resistive component of the inductor produces the primary
impedance. When inserted in series in the noise
producing circuit, the resistive impedance of the inductor
prevents noise propagation.
[Equivalent Circuit]
R(f)
[Impedance-Frequency Characteristics (typical)]
1000
Impedance [Ω]
800
600
Z
400
R
200
0
X
1
10
100
Frequency [MHz]
R : Real Part (Resistive Portion)
6
1000
X : Imaginary Part (Inductive Portion)
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oChip EMIFILr
oT-type Chip EMIFILr
oDisk Type EMIFILr
T-type Chip EMIFILr ...........P.86–88
Chip EMIFILr ..............P.70–73
P.74
P.89–92
NFM21C
NFM18P
NFM21P
NFE31P
NFM3DC
NFE61P/H
NFA31C
Disk Type EMIFILr ...........P.110–116
" This capacitor type EMI suppression filter has a large
noise suppression effect at frequencies ranging from a
few MHz to hundreds of MHz. This type of filter is used
widely as a universal, high performance EMI suppression
component.
" The chip EMIFILr incorporates a built-in three-terminal
capacitor, eliminating the lead wire and thereby
increasing the high-frequency performance characteristic.
" The T-type chip EMIFILr is a chip EMI suppression filter
with a built-in feed-thru capacitor. The use of ferrite
beads on input and output terminals minimizes
resonance with surrounding circuits.
" Whatever the situation, 3-terminal construction reduces
residual inductance, thereby substantially improving
noise suppression at frequencies over 10MHz.
DS-9
DS-9H
[Comparison of Insertion Loss Characteristics]
0
Insertion Loss [dB]
DS-6
C 2200PF
20
40
l
ina
rm or
Te cit
2- apa
C
3(B Te
(D uilt- rmin
SS in al
9H Be Ca
B3 ad) pac
2E
ito
r
22
2Q
55
)
Ide
Ch al
Caparacter
acit istics
or
of
60
80
1
5
10
r
ito
ac 5)
ap 2Q5
C
l 22
ina 2E
rm B3
Te N9H
3 S
(D
50
100
500 1000
Frequency [MHz]
A 3-terminal capacitor has a higher self resonance frequency than
a general 2-terminal type and exhibits effective noise suppression
at high frequency.
7
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oChip EMIFILr for Signal Line
oChip EMIFILr with Waveform Distortion Suppressing Function
Chip EMIFILr for Signal Line ........P.30–39
P.53–56
P.81–85
NFL18ST
NFL18SP
NFL21S
BLM18B/18HD
BLM21B
" High-speed signal application EMIFILr are high performance EMI suppression filters which increase the slope
of insertion loss frequency characteristic curves (shape
factor), thereby improving noise and signal separation.
These are used for high speed signal applications in
which noise and signal frequency approach the same
value.
To avoid the elimination of both the noise and specific
signal components, 3-terminal capacitors and other
components are applied.
An NFW31S with a built-in capacitor and an inductor type
BLM--B are available.
BLM18HD has additional performance for suppressing
GHz range noise after cut off frequency.
" The EMIFILr with waveform distortion suppressing function suppresses waveform distortion caused by the resonance of digital ICs and surrounding circuits.
NFR21G
NFA31G
[Comparison of Insertion Loss Characteristics]
0
NFW31S
Insertion Loss [dB]
NFW31S
Chip EMIFILr with Waveform
Distortion Suppressing Function ......P.75–80
Conventional Type
20
40
60
80
1
5
10
50 100
Frequency [MHz]
[Waveform change when filter is inserted]
Conventional Type
(Chip 3-terminal Capacitor)
EMIFILr for Signal Line
NFW31S series
8
500 10002000
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oChip Common Mode Choke Coil
oCommon Mode Choke Coil
Chip Common Mode Choke Coil ......P.97–104
DLP11S
DLP31S
DLW21S
DLP31D
DLW21H
Common Mode Choke Coil ..........P.128
DLM2HG
DLW31S
PLT09H
DLW5BS
" These choke coils reduce common mode noise, which
causes problems on balanced transmission lines, and are
effective against common mode noise in the several MHz
to several 100 MHz frequency range.
They are ideally suited for noise suppression on DC
power supply lines and interface cables.
[Construction of Common Mode Choke Coil]
Current of Common Mode (Noise)
Current of Differential Mode (Signal)
[Equivalent Circuit]
[Impedance-Frequency Characteristics (DLW31S)]
10000
DLW31SN222SQ2
Common mode DLW31SN102SQ2
DLW31SN601SQ2
DLW31SN261SQ2
1000
DLW31SN161SQ2
DLW31SN900SQ2
Impedance (Ω)
DLW5AH
100
10
SN161
SN900
1
SN222
SN102
SN601
SN261
Differential mode
0.1
1
10
100
1000
Frequency (MHz)
9
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oChip EMIGUARDr
oEMIGUARDr
Chip EMIGUARDr ............P.94–95
EMIGUARDr .............P.118–124
VFM41R
VFR3V
[Construction of EMIGUARDr (VFS9V)]
,
" EMIGUARDr eliminates both surge noises and EMI
noises due to its dielectric varistor material.
" Effective when high frequency noise and high voltage
surge suppression are required, and also in situations
when surging starts at extremely high speeds. This type
of surging cannot be eliminated with general type varistors.
" VFM41R is chip type of EMIGUARDr.
Varistor
Electrode
Ferrite
Lead
!Surge Absorption Effect of EMIGUARDr
Type of Filter
Surge Absorption Effect of EMIGUARDr
4kV
500V
/div
No filter
−1kV
−100ns
50ns/div
400ns
50ns/div
400ns
50ns/div
400ns
4kV
500V
/div
3-terminal capacitor is used
to suppress the surge.
−1kV
−100ns
4kV
EMIGUARDr is used to
suppressthe surge. (VFS6V)
500V
/div
−1kV
−100ns
10
VFS9V
VFS6V
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Outline of EMI Suppression Filters (EMIFILr) for DC Line
oBlock Type EMIFILr
Block Type EMIFILr ..........P.125–126
BNX003-01
BNX005-01
" Block type EMIFILr are resin encased, built-in, high performance EMI suppression filters, which use a feed-thru
capacitor having excellent high frequency characteristics.
" Used when the noise frequency is high, or when extreme
countermeasures are required.
" The high performance EMIFILr BNX series exhibits significant noise suppression effects over a wide frequency
band (extending from 100kHz to 1GHz) in DC power lines.
[Equivalent Circuit (BNX Series)]
L1
L3
B
C2
CB
C1
L2
PSG
CG
PSG: Power Supply Ground
CG: Circuit Ground
CB: Circuit + B
[Insertion Loss Characteristics]
0
BNX003-01
20
Insertion Loss [dB]
BNX002-01
40
BNX002-01
(BNX005-01)
60
80
100
0.001
0.01
0.1
1
10
Frequency [MHz]
100
1000
11
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Ferrite Beads
1
Part Numbering
Chip Ferrite Beads
(Global Part Number)
BL
M
18
AG
102
q
w
e
r
t
S
N
1 D
y u i o
tImpedance
qProduct ID
Expressed by three figures. The unit is in ohm (Ω). The first and
second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Product ID
BL
Chip Ferrite Beads
yPerformance
wType
Code
Type
A
Array Type
M
Monolithic Type
Expressed by a letter.
Ex.)
eDimensions (LgW)
Code
Performance
S
Sn Plating
uCategory
Code
Dimensions (LgW)
EIA
Code
03
0.6g0.3mm
0201
N
Standard Type
15
1.0g0.5mm
0402
H
for Heavy-duty
Category
18
1.6g0.8mm
0603
2A
2.0g1.0mm
0804
21
2.0g1.25mm
0805
Code
31
3.2g1.6mm
1206
1
1 Circuit
41
4.5g1.6mm
1806
4
4 Circuits
iNumber of Circuits
Number of Circuits
rCharacteristics/Applications
Code *1
AG
AJ
Series
Characteristics/Applications
BLM31/BLM41
AF
for General Use
BLM03/BLM15/BLM18/BLM21/BLM31/BLA2A/BLA31
BLM21/BLM31
AH
BLM21
BA
BLM18
BB
BD
for High-speed Signal Lines
BE
PF
PG
BLM31
for Power Supplies
RK
for Digital Interface
HG
for GHz Band General Use
EG
for GHz Band General Use (Low DC Resistance type)
HB
HD
HK
BLM15/BLM18/BLM21/BLA2A
BLM15/BLM18/BLM21/BLA31
BLM41
BLM18/BLM21/BLM31/BLM41
BLM18/BLM21
BLM18
for GHz Band High-speed Signal Line
BLM18
for GHz Band Digital Interface
BLM18
*1 Frequency characteristics vary with each code.
oPackaging
Code
Packaging
K
Plastic Taping (ø330mm Reel)
L
Plastic Taping (ø180mm Reel)
BLM31/BLM41/BLM21 *1
B
Bulk
J
Paper Taping (ø330mm Reel)
BLM15/BLM18/BLM21*2 /BLA31
D
Paper Taping (ø180mm Reel)
BLM03/BLM15/BLM18/BLM21*2 /BLA2A/BLA31
C
Bulk Case
*1 BLM21BD222SN1/BLM21BD272SN1 only.
*2 Except BLM21BD222SN1/BLM21BD272SN1
12
Series
All series
BLM15/BLM18
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On-Board Type (DC) EMI Suppression Filters(EMIFILr)
Chip Ferrite Bead BLM Series
Essential for Noise Suppression in High Speed Signal
Lines and DC Power Lines
The chip ferrite bead BLM series comprises ferrite beads in
the shape of a chip. This ferrite bead generates a high
impedance which at high frequencies mainly consists of a
resistance element. The BLM series is effective in circuits
without stable ground lines because the BLM series does
not need a connection to ground.
Chip sizes of 0.6Z0.3, 1.0Z0.5, 1.6Z0.8, 2.0Z1.25, 3.2Z1.6
and 4.5Z1.6mm are cataloged. (The BLA series of array
type chip ferrite beads is also cataloged.)
The nickel barrier structure of the external electrodes
provides excellent solder heat resistance.
!Features
The BLM series comprises the R series (for digital interface),
the A series (for standard), the B series (for high speed
signal), the P series (for large current), and the H/E series
(for GHz range noise suppression).
1. BLM--R series – For Digital Interface
The BLM-R series can be used in Digital Interface.
Resistance of BLM-R series especially grows in the lower
frequency range. Therefore BLM-R series is less effective
for digital signal waveform at low frequency range and
can suppress the ringing.
2. BLM--A series – For Standard
The BLM-A series generates an impedance from the
relatively low frequencies. Therefore the BLM-A series is
effective in noise suppression in the wide frequency
range (30MHz – several hundred MHz).
3. BLM--B series – For High Speed Signal
The BLM-B series can minimize attenuation of the signal
waveform due to its sharp impedance characteristics.
Various impedances are available to match signal
frequency.
4. BLM--P series – For Large Current
The BLM-P series can be used in high current circuits
due to its low DC resistance. It can match power lines to
a maximum of 6A DC (BLM41P).
5. BLM18H/E series – For GHz Range Noise Suppression
The BLM18H/E series has a modified internal electrode
structure that minimizes stray capacitance and increases
the effective frequency range.
[Impedance Characteristics]
BLM18HG102SN1
1800
BLM18BD102SN1
Impedance (Ω)
1500
1200
BLM18RK102SN1
900
600
300
BLM18AG102SN1
0
1
10
100
1000
Frequency (MHz)
13
1
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!Impedance Map
2700
2500
2250
2200 2200
1800 1800
1500 1500
1000
1
1000 1000 1000
1000 1000
1000 1000 1000
1000 (1.5A)
1000
750
Impedance (Ω) at 100MHz
600
600
600
470
470
600
600
600
600
470
470
470
420
420
330
330
220
220
150
150
600
600
600
470
470
600 (1.5A)
600
470 (2A)
470
400
390 (2A)
220
330
330
220
220
150
150
120
120
220
220
220
330
220 (2A)
220
180 (3A)
180 (1.5A)
150
390
330 (1.5A)
140
120
120
120
120
120
120
120 (3A)
120 (2A)
120
100
100
80
80 (1A)
75
70
75
75
60
60
75 (3A)
70
70
60 (0.5A)
60 (6A)
60 (3A)
50 (3A)
47
47
33 (6A)
33 (3A)
30 (1A)
30 (3A)
26
22 (6A)
22
10
10
10
10
5
0603 1005 1608 2012 3216 4615 1005 1608 2012 3216 1608 2012
For Standard
BLMppA
For High Speed Signal
BLMppB
For Digital
Interface
BLMppR
size (mm)
14
1608
2012
3216
For Large Current
BLMppP
( )=Rated Current
4516
1608
GHz Range Noise
Suppression Type
BLM18H/E
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!BLM Series
Size (inches)
Type
0603
For Standard
For Standard
0402
For High Speed Signal
(Sharp impedance characteristics)
For Standard
Part Number
Impedance (Ω)
at 1GHz
BLM03AG100SN1
10 (Typ.)
-
500
BLM03AG700SN1
70 (Typ.)
-
200
BLM03AG121SN1
120±25%
-
200
BLM15AG100SN1
10 (Typ.)
-
1000
BLM15AG700SN1
70 (Typ.)
-
BLM15AG121SN1
120±25%
-
BLM15AG221SN1
220±25%
-
BLM15AG601SN1
600±25%
-
BLM15AG102SN1
-
200
5±25%
-
500
BLM15BB100SN1
10±25%
-
BLM15BB220SN1
22±25%
-
BLM15BB470SN1
47±25%
-
BLM15BB750SN1
75±25%
-
BLM15BB121SN1
120±25%
-
BLM15BB221SN1
220±25%
-
BLM15BD471SN1
470±25%
-
BLM15BD601SN1
600±25%
-
BLM15BD102SN1
1000±25%
-
BLM18AG121SN1
120±25%
-
BLM18AG151SN1
150±25%
-
BLM18AG221SN1
220±25%
-
BLM18AG331SN1
330±25%
-
BLM18AG471SN1
300
200
200
470±25%
-
BLM18AG601SN1
600±25%
-
BLM18AG102SN1
1000±25%
-
100
-
500
-
700
5±25%
BLM18BA100SN1
BLM18BB100SN1
10±25%
BLM18BA220SN1
BLM18BB220SN1
22±25%
BLM18BA470SN1
BLM18BB470SN1
BLM18BB600SN1
47±25%
60±25%
BLM18BA750SN1
BLM18BB750SN1
75±25%
BLM18BA121SN1
BLM18BB121SN1
BLM18BB141SN1
140±25%
150±25%
BLM18BB221SN1
BLM18BD221SN1
220±25%
BLM18BB331SN1
BLM18BD331SN1
BLM18BD421SN1
330±25%
420±25%
BLM18BB471SN1
BLM18BD471SN1
-
500
-
300
-
500
-
200
-
300
-
200
-
BLM18BB151SN1
BLM18BD151SN1
-
120±25%
BLM18BD121SN1
For High Speed Signal
(Sharp impedance characteristics)
300
1000±25%
BLM18BB050SN1
1
500
BLM15BB050SN1
BLM18BA050SN1
0603
Rated Current (mA)
at 100MHz
470±25%
-
200
-
50
-
200
BLM18BD601SN1
600±25%
-
200
BLM18BD102SN1
1000±25%
-
100
BLM18BD152SN1
1500±25%
-
BLM18BD182SN1
1800±25%
-
BLM18BD222SN1
2200±25%
-
BLM18BD252SN1
2500±25%
-
50
Continued on the following page.
15
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Continued from the preceding page.
Size (inches)
Type
For Digital Interface
1
For Large Current
For Standard
0603
For High Speed
Signal
GHz Range
For Digital
Interface
For Standard
(Low DC
Resistance Type)
0805
For Standard
Part Number
Impedance (Ω)
at 1GHz
BLM18RK121SN1
120±25%
-
BLM18RK221SN1
220±25%
-
BLM18RK471SN1
470±25%
-
BLM18RK601SN1
600±25%
-
BLM18RK102SN1
1000±25%
-
BLM18PG300SN1
30 (Typ.)
-
1000
BLM18PG330SN1
33±25%
-
3000*
BLM18PG600SN1
60 (Typ.)
-
500
BLM18PG121SN1
120±25%
-
2000*
BLM18PG181SN1
180±25%
-
1500*
BLM18HG471SN1
470±25%
600 (Typ.)
BLM18HG601SN1
600±25%
700 (Typ.)
BLM18HG102SN1
1000±25%
1000 (Typ.)
100
BLM18HB121SN1
120±25%
500±40%
200
BLM18HB221SN1
220±25%
1100±40%
100
BLM18HB331SN1
330±25%
1600±40%
50
BLM18HD471SN1
470±25%
1000 (Typ.)
BLM18HD601SN1
600±25%
1200 (Typ.)
BLM18HD102SN1
1000±25%
1700 (Typ.)
BLM18HK331SN1
330±25%
400±40%
BLM18HK471SN1
470±25%
600±40%
200
100
50
200
600±25%
700±40%
BLM18HK102SN1
1000±25%
1200±40%
50
BLM18EG101TN1
100±25%
140 (Typ.)
2000*
BLM18EG121SN1
100
120±25%
145 (Typ.)
2000*
BLM18EG391TN1
390±25%
520 (Typ.)
500
BLM18EG601SN1
600±25%
700 (Typ.)
300
BLM21AG121SN1
120±25%
-
BLM21AG151SN1
150±25%
-
BLM21AG221SN1
220±25%
-
BLM21AG331SN1
330±25%
-
BLM21AJ401SN1
400±25%
-
BLM21AG471SN1
470±25%
-
BLM21AJ601SN1
600±25%
BLM21AG102SN1
BLM21AH102SN1
16
200
BLM18HK601SN1
BLM21AG601SN1
* Please see P. 51 "Derating of Rated Current".
Rated Current (mA)
at 100MHz
1000±25%
200
Continued on the following page.
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Continued from the preceding page.
Size (inches)
Type
Part Number
Impedance (Ω)
at 100MHz
at 1GHz
BLM21BB050SN1
5±25%
-
BLM21BB600SN1
60±25%
-
BLM21BB750SN1
75±25%
-
BLM21BB121SN1
BLM21BD121SN1
120±25%
BLM21BB151SN1
BLM21BD151SN1
BLM21BB201SN1
150±25%
200±25%
BLM21BB221SN1
BLM21BD221SN1
220±25%
BLM21BB331SN1
For High Speed Signal
(Sharp impedance characteristics)
BLM21BD331SN1
BLM21BD421SN1
330±25%
420±25%
BLM21BB471SN1
BLM21BD471SN1
0805
For Digital Interface
For Large Current
For Standard
For High Speed Signal
(Sharp impedance characteristics)
1206
For Large Current
For Standard
For Large Current
500
-
1
-
200
-
BLM21BD601SN1
600±25%
-
BLM21BD751SN1
750±25%
-
BLM21BD102SN1
1000±25%
-
BLM21BD152SN1
1500±25%
-
BLM21BD182SN1
1800±25%
-
BLM21BD222SN1
2250 (Typ.)
-
BLM21BD222TN1
2200±25%
-
BLM21BD272SN1
2700±25%
-
BLM21RK121SN1
120±25%
-
BLM21RK221SN1
220±25%
-
BLM21RK471SN1
470±25%
-
BLM21RK601SN1
600±25%
-
BLM21RK102SN1
1000±25%
-
BLM21PG220SN1
22±25%
-
BLM21PG300SN1
30 (Typ.)
-
BLM21PG600SN1
60±25%
-
BLM21PG221SN1
220±25%
-
2000*
BLM21PG331SN1
330±25%
-
1500*
BLM31AJ260SN1
26±25%
-
500
BLM31AF700SN1
70±25%
-
BLM31AJ601SN1
600±25%
-
BLM31BE601FN1
600±25%
-
300
BLM31PG330SN1
33±25%
-
6000*
BLM31PG500SN1
50 (Typ.)
-
BLM31PG121SN1
120±25%
-
BLM31PG391SN1
390±25%
-
2000*
BLM31PG601SN1
600±25%
-
1500*
BLM41AF800SN1
80±25%
-
500
BLM41AF151SN1
150±25%
-
200
BLM41PG600SN1
60 (Typ.)
-
6000*
3000*
BLM41PG750SN1
1806
470±25%
Rated Current (mA)
200
6000*
3000*
200
3000*
75 (Typ.)
-
BLM41PF800SN1
80 (Typ.)
-
1000*
BLM41PG181SN1
180±25%
-
3000*
BLM41PG471SN1
470±25%
-
2000*
BLM41PG102SN1
1000±25%
-
1500*
* Please see P.51 "Derating of Rated Current".
17
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Ferrite Beads BLM03/BLM15/BLM18/BLM21/BLM31/BLM41 Series
■ Features (BLM_A Series)
The chip ferrite bead BLM series comprises ferrite
beads in the shape of a chip. This ferrite bead
generates a high impedance which at high frequency
mainly consists of a resistance element. The BLM
series is effective in circuits without stable ground
lines because the BLM series does not need a
connection to ground.
The nickel barrier structure of the external
electrodes provides excellent solder heat resistance.
BLM_A series generates an impedance from the
relatively low frequencies. Therefore BLM_A series is
effective in noise suppression in a wide frequency
range (30MHz - several hundred MHz).
The small size of BLM03 series (0.6x0.3mm) is
suitable for noise suppression in small equipment
such as PA modules for cellular phones.
■ Equivalent Circuit
(Resistance element becomes dominant
at high frequencies.)
BLM03A Series (0201 Size)
0.6±0.03
0.3±0.03
0.3±0.03
1
0.15±0.05
: electrode
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM03AG100SN1
10 (Typ.)
500
0.1
-55 to 125
BLM03AG700SN1
70 (Typ.)
200
0.5
-55 to 125
BLM03AG121SN1
120 ±25%
200
0.8
-55 to 125
Part Number
18
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■ Impedance-Frequency (Typical)
BLM03 Series
300
250
Impedance (Ω)
200
BLM03AG121SN1
150
1
100
BLM03AG700SN1
BLM03AG100SN1
50
0
1
10
1000 2000
100
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM03AG100SN1
BLM03AG700SN1
20
150
120
Impedance (Ω)
Impedance (Ω)
15
Z
10
R
90
Z
R
60
X
5
30
X
0
1
10
1000 2000
100
0
1
10
Frequency (MHz)
100
1000 2000
Frequency (MHz)
BLM03AG121SN1
300
250
Impedance (Ω)
200
150
Z
R
100
X
50
0
1
10
100
1000 2000
Frequency (MHz)
BLM15A Series (0402 Size)
0.5±0.05
0.25±0.1
1.0±0.05
0.5±0.05
BLM15A Series
(in mm)
19
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Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM15AG100SN1
10 (Typ.)
1000
0.05
-55 to 125
BLM15AG700SN1
70 (Typ.)
500
0.15
-55 to 125
BLM15AG121SN1
120 ±25%
500
0.25
-55 to 125
BLM15AG221SN1
220 ±25%
300
0.35
-55 to 125
BLM15AG601SN1
600 ±25%
300
0.6
-55 to 125
BLM15AG102SN1
1000 ±25%
200
1.0
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM15A Series
1200
BLM15AG102SN1
Impedance (ohm)
1000
800
BLM15AG601SN1
600
BLM15AG221SN1
BLM15AG121SN1
400
BLM15AG700SN1
BLM15AG100SN1
200
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM15AG100SN1
BLM15AG700SN1
120
20
100
Z
Impedance (ohm)
Impedance (ohm)
15
R
10
80
Z
R
60
40
X
5
X
20
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM15AG121SN1
BLM15AG221SN1
400
200
300
Impedance (ohm)
150
Impedance (ohm)
1
Z
R
100
Z
R
200
100
50
X
X
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
20
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■ Impedance-Frequency Characteristics
BLM15AG601SN1
BLM15AG102SN1
1200
800
Z
900
Z
Impedance (Ω)
Impedance (Ω)
600
R
400
R
600
1
300
200
X
X
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18A Series (0603 Size)
0.8±0.15
0.4±0.2
1.6±0.15
0.8±0.15
BLM18A Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM18AG121SN1
120 ±25%
200
0.20
-55 to 125
BLM18AG151SN1
150 ±25%
200
0.25
-55 to 125
BLM18AG221SN1
220 ±25%
200
0.30
-55 to 125
BLM18AG331SN1
330 ±25%
200
0.45
-55 to 125
BLM18AG471SN1
470 ±25%
200
0.50
-55 to 125
BLM18AG601SN1
600 ±25%
200
0.50
-55 to 125
BLM18AG102SN1
1000 ±25%
100
0.70
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM18A Series
1200
BLM18AG102SN1
BLM18AG601SN1
Impedance (Ω)
900
BLM18AG471SN1
BLM18AG331SN1
BLM18AG221SN1
600
BLM18AG151SN1
BLM18AG121SN1
300
0
1
10
100
1000
Frequency (MHz)
21
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■ Impedance-Frequency Characteristics
BLM18AG121SN1
BLM18AG151SN1
200
400
150
300
1
Impedance (Ω)
Impedance (Ω)
Z
R
100
200
Z
R
X
50
100
X
0
1
10
100
0
1000
1
10
Frequency (MHz)
BLM18AG221SN1
1000
BLM18AG331SN1
600
400
450
300
Z
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
R
200
X
100
Z
R
300
150
X
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18AG471SN1
BLM18AG601SN1
800
800
600
600
Z
R
Impedance (Ω)
Impedance (Ω)
Z
R
400
200
0
10
100
1000
Frequency (MHz)
BLM18AG102SN1
Z
Impedance (Ω)
900
R
600
X
0
1
10
100
Frequency (MHz)
22
0
1
10
100
Frequency (MHz)
1200
300
X
200
X
1
400
1000
1000
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BLM21A Series (0805 Size)
0.85±0.2 *1
0.5±0.2 *2
1
1.25±0.2
2.0±0.2
*1 BLM21BD222SN1 / 21BD272SN1
:1.25±0.2
*2 BLM21BD272SN1: 0.3±0.2
EIA CODE : 0805
BLM21A Series
in mm
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM21AG121SN1
120 ±25%
200
0.15
-55 to 125
BLM21AG151SN1
150 ±25%
200
0.15
-55 to 125
BLM21AG221SN1
220 ±25%
200
0.20
-55 to 125
BLM21AG331SN1
330 ±25%
200
0.25
-55 to 125
BLM21AJ401SN1
400 ±25%
200
0.85
-55 to 125
BLM21AG471SN1
470 ±25%
200
0.25
-55 to 125
BLM21AG601SN1
600 ±25%
200
0.30
-55 to 125
BLM21AJ601SN1
600 ±25%
200
1.10
-55 to 125
BLM21AG102SN1
1000 ±25%
200
0.45
-55 to 125
BLM21AH102SN1
1000 ±25%
200
0.45
-55 to 85
Part Number
■ Impedance-Frequency (Typical)
BLM21A Series
1200
BLM21AH102SN1
BLM21AG102SN1
BLM21AJ601SN1
BLM21AG601SN1
Impedance (Ω)
900
BLM21AG471SN1
BLM21AJ401SN1
BLM21AG331SN1
BLM21AG221SN1
600
BLM21AG151SN1
BLM21AG121SN1
300
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM21AG121SN1
BLM21AG151SN1
200
200
150
150
Z
R
Impedance (Ω)
Impedance (Ω)
Z
R
100
100
X
X
50
50
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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■ Impedance-Frequency Characteristics
BLM21AG221SN1
BLM21AG331SN1
400
400
300
300
Z
1
Impedance (Ω)
Impedance (Ω)
R
Z
200
R
200
100
X
100
X
0
0
1
10
100
1000
1
10
100
Frequency (MHz)
1000
Frequency (MHz)
BLM21AJ401SN1
BLM21AG471SN1
800
500
400
300
Impedance (Ω)
Impedance (ohm)
600
Z
R
200
Z
400
R
200
100
X
X
0
0
1
10
100
1
1000
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLM21AG601SN1
BLM21AJ601SN1
800
800
600
600
Impedance (Ω)
Impedance (Ω)
Z
R
400
Z
R
400
X
200
200
X
0
0
1
10
100
1000
1
10
Frequency (MHz)
BLM21AG102SN1
1200
900
900
Z
Impedance (Ω)
Z
Impedance (Ω)
1000
BLM21AH102SN1
1200
R
600
300
0
1
10
100
Frequency (MHz)
R
600
X
X
300
24
100
Frequency (MHz)
1000
0
1
10
100
Frequency (MHz)
1000
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BLM31A Series (1206 Size)
* 1.1±0.2
0.7±0.3
3.2±0.2
1
1.6±0.2
* BLM31AF700SN1 : 1.6±0.2
(in mm)
BLM31A Series
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
26 ±25%
500
0.05
-55 to 125
BLM31AF700SN1
70 ±25%
200
0.15
-55 to 125
BLM31AJ601SN1
600 ±25%
200
0.90
-55 to 125
Part Number
BLM31AJ260SN1
■ Impedance-Frequency (Typical)
■ Impedance-Frequency Characteristics
BLM31A Series
BLM31AJ260SN1
40
800
BLM31AJ601SN1
30
Z
Impedance (Ω)
Impedance (ohm)
600
400
R
20
10
200
X
BLM31AF700SN1
BLM31AJ260SN1
0
0
1
10
100
1
1000
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLM31AF700SN1
BLM31AJ601SN1
800
100
Z
600
75
Z
Impedance (Ω)
Impedance (Ω)
R
50
X
R
400
X
200
25
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
25
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BLM41A Series (1806 Size)
1.6±0.2
0.7±0.3
1
4.5±0.2
1.6±0.2
BLM41A Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM41AF800SN1
80 ±25%
500
0.10
-55 to 125
BLM41AF151SN1
150 ±25%
200
0.50
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM41A Series
200
BLM41AF151SN1
Impedance (ohm)
150
BLM41AF800SN1
100
50
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM41AF800SN1
BLM41AF151SN1
200
100
Z
150
75
Impedance (Ω)
Impedance (Ω)
Z
R
50
X
X
50
25
0
0
1
10
100
Frequency (MHz)
26
R
100
1000
1
10
100
Frequency (MHz)
1000
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■ Features (BLM_B Series)
The chip ferrite bead BLM series comprises ferrite
beads in the shape of a chip. This ferrite bead
generates a high impedance which at high frequencies
mainly consists of a resistance element. The BLM
series is effective in circuits without stable ground
lines because the BLM series does not need a
connection to ground.
The nickel barrier structure of the external
electrodes provides excellent solder heat resistance.
The BLM_B series can minimize attenuation of the
signal waveform due to its sharp impedance
characteristics. Various impedances are available to
match signal frequency.
■ Equivalent Circuit
1
(Resistance element becomes dominant
at high frequencies.)
BLM15B Series (0402 Size)
0.5±0.05
0.25±0.1
1.0±0.05
0.5±0.05
BLM15B Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM15BB050SN1
5 ±25%
500
0.08
-55 to 125
BLM15BB100SN1
10 ±25%
300
0.10
-55 to 125
BLM15BB220SN1
22 ±25%
300
0.20
-55 to 125
BLM15BB470SN1
47 ±25%
300
0.35
-55 to 125
BLM15BB750SN1
75 ±25%
300
0.40
-55 to 125
BLM15BB121SN1
120 ±25%
300
0.55
-55 to 125
BLM15BB221SN1
220 ±25%
200
0.80
-55 to 125
BLM15BD471SN1
470 ±25%
200
0.60
-55 to 125
BLM15BD601SN1
600 ±25%
200
0.65
-55 to 125
BLM15BD102SN1
1000 ±25%
200
0.90
-55 to 125
Part Number
Rated current is 6A for taping type.
27
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■ Impedance-Frequency (Typical)
BLM15BB Series
BLM15BD Series
1600
800
700
BLM15BD102SN1
BLM15BB221SN1
1200
1
500
Impedance (Ω)
Impedance (ohm)
600
BLM15BB121SN1
400
BLM15BB750SN1
BLM15BB470SN1
300
BLM15BD601SN1
800
BLM15BD471SN1
BLM15BB220SN1
400
BLM15BB100SN1
200
BLM15BB050SN1
100
0
0
1
10
100
1000
1
10
100
1000
Frequency (MHz)
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM15BB100SN1
60
25
50
Impedance (ohm)
Impedance (ohm)
BLM15BB050SN1
30
20
15
Z
10
30
Z
20
X
5
40
X
10
R
R
0
0
1
10
100
1000
1
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLM15BB220SN1
BLM15BB470SN1
100
200
80
Impedance (ohm)
Impedance (ohm)
150
60
Z
40
X
Z
100
X
50
20
R
R
0
0
1
10
100
1000
1
10
Frequency (MHz)
BLM15BB750SN1
1000
BLM15BB121SN1
400
600
300
450
Impedance (ohm)
Impedance (ohm)
100
Frequency (MHz)
200
Z
Z
300
X
X
100
150
R
R
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
28
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM15BB221SN1
BLM15BD471SN1
800
1000
600
750
Impedance (Ω)
Impedance (ohm)
Z
Z
400
X
R
500
1
X
250
200
R
0
0
1
10
100
1000
1
10
Frequency (MHz)
100
BLM15BD601SN1
BLM15BD102SN1
1200
1600
Z
Z
900
1200
Impedance (Ω)
Impedance (Ω)
1000
Frequency (MHz)
R
600
R
800
X
X
300
400
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
29
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BLM18B Series (0603 Size)
0.8±0.15
0.4±0.2
1
1.6±0.15
0.8±0.15
BLM18B Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
5 ±25%
500
0.20
-55 to 125
BLM18BB050SN1
5 ±25%
700
0.10
-55 to 125
BLM18BA100SN1
10 ±25%
500
0.25
-55 to 125
BLM18BB100SN1
10 ±25%
500
0.15
-55 to 125
BLM18BA220SN1
22 ±25%
500
0.35
-55 to 125
BLM18BB220SN1
22 ±25%
500
0.25
-55 to 125
BLM18BA470SN1
47 ±25%
300
0.55
-55 to 125
BLM18BB470SN1
47 ±25%
500
0.30
-55 to 125
BLM18BB600SN1
60 ±25%
200
0.35
-55 to 125
BLM18BA750SN1
75 ±25%
300
0.70
-55 to 125
BLM18BB750SN1
75 ±25%
200
0.35
-55 to 125
BLM18BA121SN1
120 ±25%
200
0.90
-55 to 125
BLM18BB121SN1
120 ±25%
200
0.50
-55 to 125
BLM18BD121SN1
120 ±25%
200
0.40
-55 to 125
BLM18BB141SN1
140 ±25%
200
0.55
-55 to 125
BLM18BB151SN1
150 ±25%
200
0.55
-55 to 125
BLM18BD151SN1
150 ±25%
200
0.40
-55 to 125
BLM18BB221SN1
220 ±25%
200
0.65
-55 to 125
BLM18BD221SN1
220 ±25%
200
0.45
-55 to 125
BLM18BB331SN1
330 ±25%
200
0.75
-55 to 125
BLM18BD331SN1
330 ±25%
200
0.50
-55 to 125
BLM18BD421SN1
420 ±25%
200
0.55
-55 to 125
BLM18BB471SN1
470 ±25%
50
1.00
-55 to 125
BLM18BD471SN1
470 ±25%
200
0.55
-55 to 125
BLM18BD601SN1
600 ±25%
200
0.65
-55 to 125
BLM18BD102SN1
1000 ±25%
100
0.85
-55 to 125
BLM18BD152SN1
1500 ±25%
50
1.20
-55 to 125
BLM18BD182SN1
1800 ±25%
50
1.50
-55 to 125
BLM18BD222SN1
2200 ±25%
50
1.50
-55 to 125
BLM18BD252SN1
2500 ±25%
50
1.50
-55 to 125
Part Number
BLM18BA050SN1
30
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■ Impedance-Frequency (Typical)
BLM18BA Series
10000
450
7500
300
Impedance (Ω)
Impedance (Ω)
BLM18BA Series
600
BLM18BA220SN1
5000
1
BLM18BA121SN1
BLM18BA100SN1
150
BLM18BA750SN1
2500
BLM18BA050SN1
BLM18BA470SN1
0
0
1
10
1000
100
2000
1
10
100
1000
2000
Frequency(MHz)
Frequency(MHz)
BLM18BB Series
BLM18BB Series
200
2000
150
1500
BLM18BB471SN1
BLM18BB331SN1
Impedance (Ω)
Impedance (Ω)
BLM18BB470SN1
BLM18BB220SN1
100
BLM18BB100SN1
BLM18BB221SN1
BLM18BB151SN1
1000
BLM18BB141SN1
BLM18BB121SN1
BLM18BB050SN1
BLM18BB750SN1
500
50
BLM18BB600SN1
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18BD Series
2800
BLM18BD252SN1
BLM18BD222SN1
BLM18BD182SN1
2100
Impedance (Ω)
BLM18BD152SN1
BLM18BD221SN1
BLM18BD102SN1
BLM18BD151SN1
BLM18BD601SN1
BLM18BD121SN1
1400
BLM18BD471SN1
BLM18BD421SN1
BLM18BD331SN1
700
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM18BA050SN1
BLM18BB050SN1
40
100
Z
30
R
50
X
Impedance (Ω)
Impedance (Ω)
75
20
Z
R
10
25
X
0
0
1
10
100
Frequency(MHz)
1000
2000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
31
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM18BA100SN1
BLM18BB100SN1
200
40
Z
1
30
R
Impedance (Ω)
Impedance (Ω)
150
100
X
50
Z
R
20
X
10
0
1
10
1000
100
0
2000
1
10
Frequency(MHz)
BLM18BA220SN1
1000
BLM18BB220SN1
100
600
75
450
Z
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
300
Z
R
50
X
R
25
150
X
0
1
10
1000
100
0
2000
1
10
100
1000
Frequency (MHz)
Frequency(MHz)
BLM18BA470SN1
BLM18BB470SN1
1600
200
1200
150
Impedance (Ω)
Impedance (Ω)
Z
800
Z
400
X
10
X
50
0
1000 2000
100
100
R
0
1
R
1
10
Frequency(MHz)
BLM18BB600SN1
1000
BLM18BA750SN1
400
6000
300
4500
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
200
Z
R
100
3000
1500
X
Z
R
X
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
2000
Frequency(MHz)
Continued on the following page.
32
C31E9.pdf 03.3.12
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM18BB750SN1
BLM18BA121SN1
400
10000
7500
Z
Impedance (Ω)
Impedance (Ω)
300
R
200
5000
1
X
100
2500
Z
R
X
0
0
1
10
100
1
1000
10
2000
Frequency(MHz)
BLM18BB121SN1
BLM18BD121SN1
600
400
450
300
Impedance (Ω)
Impedance (Ω)
1000
100
Frequency (MHz)
Z
300
Z
200
R
X
100
150
X
R
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18BB141SN1
BLM18BB151SN1
600
600
Z
Z
450
Impedance (Ω)
R
300
X
R
300
X
150
150
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18BD151SN1
BLM18BB221SN1
600
800
Z
R
450
600
Impedance (Ω)
Impedance (Ω)
Impedance (Ω)
450
Z
300
R
400
X
X
150
200
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
33
C31E9.pdf 03.3.12
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM18BD221SN1
BLM18BB331SN1
1600
800
1200
1
Impedance (Ω)
Impedance (Ω)
600
Z
400
R
Z
R
800
X
400
200
X
0
0
1
10
100
1
1000
10
100
BLM18BD331SN1
BLM18BD421SN1
800
1000
600
750
Z
Z
Impedance (Ω)
Impedance (Ω)
1000
Frequency (MHz)
Frequency (MHz)
R
400
X
R
500
X
200
250
0
0
1
10
100
1000
1
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLM18BB471SN1
BLM18BD471SN1
2000
1200
Z
1500
800
Impedance (Ω)
Impedance (Ω)
Z
R
1000
R
600
X
X
500
400
0
1
10
100
0
1000
1
10
Frequency (MHz)
100
BLM18BD601SN1
BLM18BD102SN1
1200
2000
Z
Z
900
1500
Impedance (Ω)
Impedance (Ω)
1000
Frequency (MHz)
R
600
X
300
R
1000
X
500
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
34
C31E9.pdf 03.3.12
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM18BD152SN1
BLM18BD182SN1
2000
2400
Z
1500
1800
Impedance (Ω)
Impedance (Ω)
R
1000
X
Z
R
1200
1
X
500
600
0
1
10
100
0
1000
1
10
Frequency (MHz)
BLM18BD222SN1
1000
BLM18BD252SN1
2800
2400
Z
Z
2100
1800
R
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
1200
X
R
1400
X
700
600
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
35
C31E9.pdf 03.3.12
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BLM21B Series (0805 Size)
0.85±0.2 *1
0.5±0.2 *2
1
1.25±0.2
2.0±0.2
*1 BLM21BD222SN1 / 21BD272SN1
:1.25±0.2
*2 BLM21BD272SN1: 0.3±0.2
EIA CODE : 0805
BLM21B Series
in mm
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM21BB050SN1
5 ±25%
500
0.07
-55 to 125
BLM21BB600SN1
60 ±25%
200
0.20
-55 to 125
BLM21BB750SN1
75 ±25%
200
0.25
-55 to 125
BLM21BB121SN1
120 ±25%
200
0.25
-55 to 125
BLM21BD121SN1
120 ±25%
200
0.25
-55 to 125
BLM21BB151SN1
150 ±25%
200
0.25
-55 to 125
BLM21BD151SN1
150 ±25%
200
0.25
-55 to 125
BLM21BB201SN1
200 ±25%
200
0.35
-55 to 125
BLM21BB221SN1
220 ±25%
200
0.35
-55 to 125
BLM21BD221SN1
220 ±25%
200
0.25
-55 to 125
BLM21BB331SN1
330 ±25%
200
0.40
-55 to 125
BLM21BD331SN1
330 ±25%
200
0.30
-55 to 125
BLM21BD421SN1
420 ±25%
200
0.30
-55 to 125
BLM21BB471SN1
470 ±25%
200
0.45
-55 to 125
BLM21BD471SN1
470 ±25%
200
0.35
-55 to 125
BLM21BD601SN1
600 ±25%
200
0.35
-55 to 125
BLM21BD751SN1
750 ±25%
200
0.40
-55 to 125
BLM21BD102SN1
1000 ±25%
200
0.40
-55 to 125
BLM21BD152SN1
1500 ±25%
200
0.45
-55 to 125
BLM21BD182SN1
1800 ±25%
200
0.50
-55 to 125
BLM21BD222TN1
2200 ±25%
200
0.60
-55 to 125
BLM21BD222SN1
2250 (Typ.)
200
0.60
-55 to 125
BLM21BD272SN1
2700 ±25%
200
0.80
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM21BB Series
BLM21BD Series
3200
2000
BLM21BD272SN1
2400
1500
BLM21BB201SN1
BLM21BB221SN1
1000
BLM21BB151SN1
BLM21BB750SN1
BLM21BB121SN1
Impedance (Ω)
Impedance (Ω)
BLM21BB471SN1
BLM21BB331SN1
1600
BLM21BD471SN1
BLM21BD421SN1
BLM21BD331SN1
BLM21BD221SN1
BLM21BB600SN1
800
500
BLM21BD222SN1
BLM21BD222TN1
BLM21BD182SN1
BLM21BD152SN1
BLM21BD102SN1
BLM21BD751SN1
BLM21BD601SN1
BLM21BD151SN1
BLM21BD121SN1
BLM21BB050SN1
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
36
C31E9.pdf 03.3.12
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM21BB050SN1
BLM21BB600SN1
40
400
30
300
Impedance (Ω)
Impedance (Ω)
Z
20
Z
R
200
1
X
X
10
100
R
0
0
1
10
100
1000
1
10
Frequency (MHz)
BLM21BB750SN1
1000
BLM21BB121SN1
400
600
300
450
Impedance (Ω)
Z
Impedance (Ω)
100
Frequency (MHz)
R
200
X
100
Z
300
R
150
X
0
1
10
100
0
1000
1
10
Frequency (MHz)
1000
BLM21BB151SN1
400
800
300
600
Z
Impedance (Ω)
Impedance (Ω)
BLM21BD121SN1
Z
200
R
R
400
X
100
200
X
0
1
10
100
0
1000
1
10
Frequency (MHz)
1000
BLM21BB201SN1
1200
300
900
Impedance (Ω)
400
Z
R
200
100
Frequency (MHz)
BLM21BD151SN1
Impedance (Ω)
100
Frequency (MHz)
Z
600
R
300
X
X
100
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
37
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■ Impedance-Frequency Characteristics
BLM21BB221SN1
BLM21BD221SN1
600
1000
Z
750
450
1
Impedance (Ω)
Impedance (Ω)
R
500
X
Z
R
300
X
150
250
0
0
1
10
100
1
1000
10
BLM21BB331SN1
1000
BLM21BD331SN1
800
1200
Z
600
Impedance (Ω)
900
Impedance (Ω)
100
Frequency (MHz)
Frequency (MHz)
R
600
X
Z
R
400
X
200
300
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM21BD421SN1
BLM21BB471SN1
1000
2000
750
1500
Z
Impedance (Ω)
Impedance (Ω)
Z
R
500
R
1000
X
X
500
250
0
0
1
10
100
1
1000
10
BLM21BD471SN1
1000
BLM21BD601SN1
1200
1200
900
Z
900
Impedance (Ω)
Z
Impedance (Ω)
100
Frequency (MHz)
Frequency (MHz)
R
600
R
600
X
X
300
300
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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■ Impedance-Frequency Characteristics
BLM21BD751SN1
BLM21BD102SN1
1600
2000
1200
1500
Z
Impedance (Ω)
Impedance (Ω)
Z
R
800
R
1000
1
X
X
400
500
0
1
10
100
0
1000
1
10
100
Frequency (MHz)
1000
Frequency (MHz)
BLM21BD152SN1
BLM21BD182SN1
2400
2400
Z
Z
1800
R
R
Impedance (Ω)
Impedance (Ω)
1800
1200
1200
X
X
600
600
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM21BD222TN1
BLM21BD222SN1
3200
2400
Z
2400
1800
Z
Impedance (Ω)
Impedance (Ω)
R
1200
X
R
1600
X
800
600
0
0
1
10
100
1000
1
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM21BD272SN1
3200
2400
Impedance (Ω)
Z
R
1600
X
800
0
1
10
100
1000
Frequency (MHz)
39
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BLM31B Series (1206 Size)
1.1±0.2
0.7±0.3
1
3.2±0.2
1.6±0.2
in mm
BLM31B Series
Part Number
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
600 ±25%
300
0.35
-55 to 125
BLM31BE601FN1
■ Impedance-Frequency (Typical)
BLM31B Series
800
Impedance (ohm)
600
BLM31BE601FN1
400
200
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM31BE601FN1
800
Z
600
Impedance (Ω)
R
400
200
X
0
1
10
100
Frequency (MHz)
40
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■ Features (BLM_R Series)
The chip ferrite bead BLM series comprises ferrite
beads in the shape of a chip. This ferrite bead
generates a high impedance which at high frequencies
mainly consists of a resistance element. The BLM
series is effective in circuits without stable ground
lines because the BLM series does not need a
connection to ground.
The nickel barrier structure of the external
electrodes provides excellent solder heat resistance.
The BLM_R series can be used in a digital interface.
Resistance of BLM_R series especiallly grows in the
lower frequency range. Therefore BLM_R series is less
effective for digital signal waveform at low frequency
range and can suppress the ringing.
■ Equivalent Circuit
1
(Resistance element becomes dominant
at high frequencies.)
BLM18R Series (0603 Size)
0.8±0.15
0.4±0.2
1.6±0.15
0.8±0.15
BLM18R Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM18RK121SN1
120 ±25%
200
0.25
-55 to 125
BLM18RK221SN1
220 ±25%
200
0.30
-55 to 125
BLM18RK471SN1
470 ±25%
200
0.50
-55 to 125
BLM18RK601SN1
600 ±25%
200
0.60
-55 to 125
BLM18RK102SN1
1000 ±25%
200
0.80
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM18R Series
1200
BLM18RK601SN1
Impedance (Ω)
900
BLM18RK102SN1
BLM18RK471SN1
BLM18RK221SN1
BLM18RK121SN1
600
300
0
1
10
100
1000
Frequency (MHz)
41
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■ Impedance-Frequency Characteristics
1
BLM18RK221SN1
400
150
300
Impedance (Ω)
Impedance (Ω)
BLM18RK121SN1
200
Z
R
100
Z
R
200
100
50
X
X
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18RK471SN1
BLM18RK601SN1
600
1000
Z
450
750
Z
Impedance (Ω)
Impedance (Ω)
R
300
150
R
500
250
X
X
0
1
10
100
1000
Frequency (MHz)
BLM18RK102SN1
Z
900
Impedance (Ω)
R
600
X
300
0
10
100
Frequency (MHz)
42
1
10
100
Frequency (MHz)
1200
1
0
1000
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BLM21R Series (0805 Size)
0.85±0.2
0.5±0.2
1
1.25±0.2
2.0±0.2
EIA CODE : 0805
BLM21R Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM21RK121SN1
120 ±25%
200
0.15
-55 to 125
BLM21RK221SN1
220 ±25%
200
0.20
-55 to 125
BLM21RK471SN1
470 ±25%
200
0.25
-55 to 125
BLM21RK601SN1
600 ±25%
200
0.30
-55 to 125
BLM21RK102SN1
1000 ±25%
200
0.50
-55 to 125
Part Number
■ Impedance-Frequency (Typical)
BLM21R Series
1200
BLM21RK601SN1
Impedance (Ω)
900
BLM21RK102SN1
BLM21RK471SN1
BLM21RK221SN1
BLM21RK121SN1
600
300
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM21RK121SN1
BLM21RK221SN1
200
300
150
225
Z
R
Impedance (Ω)
Impedance (Ω)
Z
R
100
50
150
75
X
X
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLM21RK471SN1
BLM21RK601SN1
1000
600
Z
750
1
R
Impedance (Ω)
Impedance (Ω)
450
300
X
150
X
0
1
10
100
1000
BLM21RK102SN1
1200
900
Impedance (Ω)
Z
R
600
X
300
0
10
100
Frequency (MHz)
1
10
100
Frequency (MHz)
Frequency (MHz)
44
R
250
0
1
Z
500
1000
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■ Features (BLM_P Series)
■ Equivalent Circuit
The chip ferrite bead BLM series comprises ferrite
beads in the shape of a chip. This ferrite bead
generates a high impedance which at high frequencies
mainly consists of a resistance element. The BLM
series is effective in circuits without stable ground
lines because the BLM series does not need a
connection to ground.
The nickel barrier structure of the external
electrodes provides excellent solder heat resistance.
The BLM_P series can be used in high current circuits
due to its low DC resistance. It can match power lines
to a maximum of 6A DC (BLM41P).
1
(Resistance element becomes dominant
at high frequencies.)
BLM18P Series (0603 Size)
0.8±0.15
0.4±0.2
1.6±0.15
0.8±0.15
BLM18P Series
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
BLM18PG300SN1
30 (Typ.)
BLM18PG330SN1
33 ±25%
Part Number
(in mm)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
1000
0.05
-55 to 125
3000
0.025
-55 to 125
BLM18PG600SN1
60 (Typ.)
500
0.10
-55 to 125
BLM18PG121SN1
120 ±25%
2000
0.05
-55 to 125
BLM18PG181SN1
180 ±25%
1500
0.09
-55 to 125
At rated current upper than 1500mA, derating is required.
Please refer P. 51, "Derating of Rated Current".
■ Impedance-Frequency (Typical)
BLM18P Series
300
240
Impedance (Ω)
BLM18PG181SN1
180
BLM18PG121SN1
120
BLM18PG600SN1
60
BLM18PG330SN1
BLM18PG300SN1
0
1
10
100
1000
Frequency (MHz)
45
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■ Impedance-Frequency Characteristics
BLM18PG300SN1
BLM18PG330SN1
80
60
1
45
Impedance (Ω)
Impedance (Ω)
60
40
Z
Z
30
R
R
15
20
X
X
0
0
1
10
100
1000
1
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM18PG600SN1
BLM18PG121SN1
100
200
75
150
Z
Impedance (Ω)
Impedance (Ω)
Z
R
50
X
25
R
100
50
X
0
0
1
10
100
1000
BLM18PG181SN1
280
210
Impedance (Ω)
Z
R
140
70
X
0
1
10
100
Frequency (MHz)
46
1
10
100
Frequency (MHz)
Frequency (MHz)
1000
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BLM21P Series (0805 Size)
0.85±0.2
0.5±0.2
1
1.25±0.2
2.0±0.2
EIA CODE : 0805
BLM21P Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
22 ±25%
6000
0.01
-55 to 125
BLM21PG300SN1
30 (Typ.)
3000
0.015
-55 to 125
BLM21PG600SN1
60 ±25%
3000
0.025
-55 to 125
BLM21PG221SN1
220 ±25%
2000
0.050
-55 to 125
BLM21PG331SN1
330 ±25%
1500
0.09
-55 to 125
Part Number
BLM21PG220SN1
At rated current upper than 1500mA, derating is required.
Please refer P. 51, "Derating of Rated Current".
■ Impedance-Frequency (Typical)
BLM21P Series
600
BLM21PG331SN1
Impedance (Ω)
450
BLM21PG221SN1
BLM21PG600SN1
300
BLM21PG300SN1
BLM21PG220SN1
150
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM21PG220SN1
BLM21PG300SN1
40
60
30
45
Impedance (Ω)
Impedance (Ω)
Z
R
20
Z
30
R
X
10
X
15
0
1
10
100
Frequency (MHz)
1000
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
1
BLM21PG221SN1
400
90
300
Impedance (Ω)
Impedance (Ω)
BLM21PG600SN1
120
Z
60
R
Z
200
R
100
30
X
X
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLM21PG331SN1
600
Impedance (Ω)
450
Z
R
300
150
X
0
1
10
100
1000
Frequency (MHz)
BLM31P Series (1206 Size)
1.1±0.2
0.7±0.3
3.2±0.2
1.6±0.2
in mm
BLM31P Series
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM31PG330SN1
33 ±25%
BLM31PG500SN1
50 (Typ.)
6000
0.01
-55 to 125
3000
0.025
BLM31PG121SN1
-55 to 125
120 ±25%
3000
0.025
-55 to 125
BLM31PG391SN1
390 ±25%
2000
0.05
-55 to 125
BLM31PG601SN1
600 ±25%
1500
0.09
-55 to 125
Part Number
At rated current upper than 1500mA, derating is required.
Please refer P. 51, "Derating of Rated Current".
48
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■ Impedance-Frequency (Typical)
BLM31P Series
700
600
BLM31PG601SN1
Impedance (ohm)
500
BLM31PG391SN1
400
BLM31PG121SN1
1
300
BLM31PG500SN1
200
BLM31PG330SN1
100
0
1
10
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM31PG330SN1
BLM31PG500SN1
60
80
45
60
Z
Impedance (Ω)
Impedance (Ω)
Z
R
30
X
15
R
40
X
20
0
0
1
10
100
1
1000
10
BLM31PG121SN1
1000
BLM31PG391SN1
200
600
150
450
Z
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
Frequency (MHz)
R
100
50
Z
R
300
150
X
X
0
0
1
10
100
1000
Frequency (MHz)
1
10
100
1000
Frequency (MHz)
BLM31PG601SN1
800
600
Impedance (Ω)
Z
R
400
X
200
0
1
10
100
1000
Frequency (MHz)
49
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BLM41P Series (1806 Size)
1.6±0.2
0.7±0.3
1
4.5±0.2
1.6±0.2
BLM41P Series
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM41PG600SN1
60 (Typ.)
6000
0.01
-55 to 125
BLM41PG750SN1
75 (Typ.)
3000
0.025
-55 to 125
BLM41PF800SN1
80 (Typ.)
1000
0.10
-55 to 125
BLM41PG181SN1
180 ±25%
3000
0.025
-55 to 125
BLM41PG471SN1
470 ±25%
2000
0.05
-55 to 125
BLM41PG102SN1
1000 ±25%
1500
0.09
-55 to 125
Part Number
At rated current upper than 1500mA, derating is required.
Please refer P. 51, "Derating of Rated Current".
■ Impedance-Frequency (Typical)
BLM41P Series (80-180ohm)
BLM41P Series (470-1000ohm)
1200
200
BLM41AF151SN1
900
BLM41PG102SN
Impedance (Ω)
Impedance (ohm)
150
BLM41AF800SN1
100
600
BLM41PG471SN
300
50
0
0
1
10
100
1
1000
10
Frequency (MHz)
100
1000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM41PG600SN1
BLM41PG750SN1
100
100
75
75
Z
R
Impedance (Ω)
Impedance (Ω)
Z
R
50
X
25
50
X
25
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
50
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■ Impedance-Frequency Characteristics
BLM41PF800SN1
BLM41PG181SN1
400
100
Z
300
R
Impedance (Ω)
Impedance (Ω)
75
50
200
1
Z
X
R
100
25
X
0
0
1
10
100
1
1000
10
BLM41PG471SN1
1000
BLM41PG102SN1
600
1200
450
900
Z
Z
Impedance (Ω)
Impedance (Ω)
100
Frequency (MHz)
Frequency (MHz)
R
300
R
600
X
X
150
300
0
1
10
100
0
1000
1
Frequency (MHz)
10
100
1000
Frequency (MHz)
■ Notice (Rating)
[Derating]
6
Derated Current [A]
In operating temperatures exceeding +85D, derating of
current is necessary for chip Ferrite Beads for which rated
current is 1.5A or over. Please apply the derating curve
shown below according to the operating temperature.
6A
5
4
3
2
1
3A
2A
1.5A
1A
0
85
125
Operating Temperature [D]
51
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EMI Suppression
Effect
Noise
Suppression
Effect of BLM_R Series
!Waveform Distortion Suppressing
Performance of BLM--R Series
[Measuring Circuits]
Measuring Point
AC04
1
1MHz
AC00
Filter
Pattern 20cm
EMI Suppression Effect / Description
Type of Filter
Signal waveform (100nsec/div, 2V/div)
Expand (10nsec/div, 2V/div)
Spectrum
85
Level [dB µV]
80
Initial
(No filter)
75
70
65
60
55
50
45
30 50
100
150
200
250
Frequency [MHz]
300
150
200
250
Frequency [MHz]
300
150
200
250
Frequency [MHz]
300
Ringing is caused on the signal waveform.
Such ringing contains several hundred MHz harmonic components and generates noise.
Signal waveform (100nsec/div, 2V/div)
Expand (10nsec/div, 2V/div)
Spectrum
85
Level [dB µV]
80
Resister (47Ω) is used
75
70
65
60
55
50
45
30 50
100
Comparing initial waveform, ringing is suppressed a little.
However there still remains high level waveform distortion.
Signal waveform (100nsec/div, 2V/div)
Expand (10nsec/div, 2V/div)
Spectrum
85
BLM18RK221SN1
(220Ω at 100MHz)
is used
Level [dB µV]
80
75
70
65
60
55
50
45
30 50
100
BLM18R has excellent performance for noise suppression and waveform distortion suppression.
BLM18R suppresses drastically not only spectrum level in more than 100MHz range but waveform distortion.
52
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
GHz Noise Suppression Chip Ferrite Beads BLM18H/BLM18E Series
BLM18H/BLM18E series has a modified internal electrode
structure, that minimizes stray capacitance and
increases the effective frequency range.
1
■ Equivalent Circuit
■ Features (BLM18H series)
1. BLM18H series is realized high impedance at 1GHz
and suitable for noise suppression from 500MHz to
GHz range. The impedance value of HG/HD-type is
about three times as large as that of A/B-type at
1GHz, though the impedance characteristic of
HG/HD-type is similar to A-type at 100MHz or less.
2. HG-type is effective in noise suppression in wide
frequency range (several MHz to several GHz).
HB/HD-type for high-speed signal line provides a
sharper roll-off after the cut off frequency.
HK-type for digital interface is effective in
suppressing the ringing because resistance
especially grows in the lower frequency.
3. The magnetic shielded structure minimizes crosstalk.
(Resistance element becomes dominant
at high frequencies.)
■ Features (BLM18E series)
1. Low DC Resistance and a large Rated Current are
suitable for noise suppression of the driver
circuit.
2. Excellent direct current characteristics
3. Thin type (t=0.5mm) is suitable for small and low
profile equipment such as DSC, cellular phones.
53
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BLM18H Series (0603 Size)
0.8±0.15
0.4±0.2
1
1.6±0.15
0.8±0.15
BLM18H Series
(in mm)
Part Number
Impedance
(at 100MHz, 20 degree C)
(ohm)
Impedance
(at 1GHz, 25 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM18HG471SN1
470 ±25%
600 (Typ.)
200
0.85
-55 to 125
BLM18HG601SN1
600 ±25%
700 (Typ.)
200
1.00
-55 to 125
BLM18HG102SN1
1000 ±25%
1000 (Typ.)
100
1.60
-55 to 125
BLM18HB121SN1
120 ±25%
500 ±40%
200
0.50
-55 to 125
BLM18HB221SN1
220 ±25%
1100 ±40%
100
0.80
-55 to 125
BLM18HB331SN1
330 ±25%
1600 ±40%
50
1.20
-55 to 125
BLM18HD471SN1
470 ±25%
1000 (Typ.)
100
1.20
-55 to 125
BLM18HD601SN1
600 ±25%
1200 (Typ.)
100
1.50
-55 to 125
BLM18HD102SN1
1000 ±25%
1700 (Typ.)
50
1.80
-55 to 125
BLM18HK331SN1
330 ±25%
400 ±40%
200
0.50
-55 to 125
BLM18HK471SN1
470 ±25%
600 ±40%
200
0.70
-55 to 125
BLM18HK601SN1
600 ±25%
700 ±40%
100
0.90
-55 to 125
BLM18HK102SN1
1000 ±25%
1200 ±40%
50
1.50
-55 to 125
■ Impedance-Frequency (Typical)
BLM18HG Series
BLM18HB Series
1600
2000
BLM18HB331SN1
1200
BLM18HG102SN1
Impedance (ohm)
Impedance (Ω)
1500
BLM18HG601SN1
1000
BLM18HG471SN1
BLM18HB221SN1
800
BLM18HB121SN1
400
500
0
0
1
10
100
Frequency (MHz)
1000
2000
1
10
100
1000
2000
Frequency (MHz)
Continued on the following page.
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■ Impedance-Frequency (Typical)
BLM18HD Series
BLM18HK Series
1600
4000
Impedance (Ω)
Impedance (Ω)
BLM18HK102SN1
1200
3000
BLM18HD102SN1
2000
BLM18HD601SN1
800
1
10
1
BLM18HK331SN1
0
0
BLM18HK471SN1
400
BLM18HD471SN1
1000
BLM18HK601SN1
1000 2000
100
1
10
Frequency (MHz)
1000 2000
100
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM18HG471SN1
BLM18HG601SN1
1000
800
750
Z
Z
Impedance (Ω)
Impedance (Ω)
600
R
400
R
500
X
X
250
200
0
0
1
10
1000
100
1
2000
10
1000
100
2000
Frequency (MHz)
Frequency (MHz)
BLM18HG102SN1
BLM18HB121SN1
2000
700
600
500
Impedance (ohm)
Impedance (Ω)
1500
Z
1000
R
Z
400
R
300
200
500
X
X
100
0
0
1
10
1000
100
2000
1
10
BLM18HB221SN1
1000
2000
BLM18HB331SN1
1000
1600
750
1200
Impedance (ohm)
Impedance (ohm)
100
Frequency (MHz)
Frequency (MHz)
Z
R
500
250
Z
R
800
400
X
X
0
1
10
100
Frequency (MHz)
1000
2000
0
1
10
100
1000
2000
Frequency (MHz)
Continued on the following page.
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■ Impedance-Frequency Characteristics
1
BLM18HD601SN1
2000
1500
1500
Z
Impedance (Ω)
Impedance (Ω)
BLM18HD471SN1
2000
Z
1000
R
1000
X
500
500
R
X
0
1
10
1000
100
0
2000
1
10
Frequency(MHz)
3000
450
2000
Z
1000
Z
R
300
150
X
R
X
0
10
1000
100
0
2000
1
10
Frequency (MHz)
BLM18HK471SN1
BLM18HK601SN1
1000
750
600
Z
Impedance (Ω)
Z
Impedance (Ω)
1000 2000
100
Frequency (MHz)
800
R
400
R
500
250
200
X
0
1
10
X
1000 2000
100
Frequency (MHz)
BLM18HK102SN1
1200
Impedance (Ω)
Z
R
800
400
X
1
10
100
Frequency (MHz)
56
0
1
10
100
Frequency (MHz)
1600
0
2000
BLM18HK331SN1
600
Impedance (Ω)
Impedance (Ω)
BLM18HD102SN1
4000
1
1000
100
Frequency(MHz)
1000 2000
1000 2000
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BLM18E Series (0603 Size)
0.8±0.15
T
1.6±0.15
0.4±0.2
1
T
BLM18E Series
BLM18EGpppTN1
0.5±0.15
BLM18EGpppSN1
0.8±0.15
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Impedance
(at 1GHz, 25 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLM18EG101TN1
100 ±25%
140 (Typ.)
2000
0.04
-55 to 125
BLM18EG121SN1
120 ±25%
145 (Typ.)
2000
0.03
-55 to 125
BLM18EG391TN1
390 ±25%
520 (Typ.)
500
0.3
-55 to 125
BLM18EG601SN1
600 ±25%
700 (Typ.)
300
0.35
-55 to 125
Part Number
At rated current 2000mA, derating is required.
Please refer P. 51, "Derating of Rated Current".
■ Impedance-Frequency (Typical)
1000
Impedance (ohm)
800
BLM18EG601SN1
600
BLM18EG391TN1
BLM18EG121SN
400
BLM18EG101TN
200
0
1
10
1000
100
2000
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLM18EG101TN1
BLM18EG121SN1
160
200
Z
160
Z
Impedance (ohm)
Impedance (ohm)
120
R
80
40
120
R
80
X
X
40
0
1
10
100
Frequency (MHz)
1000
2000
0
1
10
100
1000
2000
Frequency (MHz)
Continued on the following page.
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■ Impedance-Frequency Characteristics
BLM18EG391TN1
BLM18EG601SN1
700
1000
560
1
Impedance (ohm)
Impedance (ohm)
750
Z
Z
420
R
280
R
500
X
250
140
X
0
0
1
10
100
Frequency (MHz)
58
1000
2000
1
10
100
Frequency (MHz)
1000
2000
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EMI Suppression Effect
Noise Suppression Effect
!Noise Suppression in UHF Range
[Testing Circuit]
74HCU04
74AC04
Measured radiation at 3m distance
74HC00
1
BLM
10MHz
Type of Filter
EMI Suppression Effect
Description
70
Initial
(No filter)
Level [dBµV/m]
60
50
40
30
20
10
300
400
500
600
700
800
Frequency [MHz]
900
1000
Current BLM are effective in suppressing
noise in the range between 300MHz and
700MHz.
70
Conventional Type
BLM18AG102SN1
(1000Ω at 100MHz)
Level [dBµV/m]
60
50
Initial
40
30
20
10
300
400
500
600
700
800
Frequency [MHz]
900
1000
In addition to the effectiveness of current
BLM, BLM18HG suppresses noise in the
range beyond 700MHz.
70
for GHz Noize Suppression
BLM18HG102SN1
(1000Ω at 100MHz)
Level [dBµV/m]
60
50
Initial
40
BLM18AG102SN1
30
20
10
300
400
500
600
700
800
Frequency [MHz]
900
1000
Comparison between BLM18HG102SN1 and
BLM18AG102SN1 (CURRENT ITEM)
Impedance [Ω]
2000
BLM18HG102SN1
1500
BLM18AG102SN1
1000
500
0
1
10
100
1000
2000
Frequency [MHz]
59
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Ferrite Beads Arrays BLA2AA/BLA2AB/BLA31A/BLA31B Series
■ Features
(2)
(3)
(4)
(5)
(6)
(7)
(8)
0.2±0.15
1. BLA2AA/2AB series has 4 circuits in 2.0x1.0mm body
with 0.5mm pitch.
2. Provides attenuation across a broad frequency range.
Two types of impedance characteristics are
available; one is for general signal line and the
other is for high speed signal line.
3. Original inner electrode structure enables extra
low crosstalk.
4. The nickel barrier structure of the external
electrodes provides excellent solder heat
resistance.
(1)
1.0±0.2
BLA2AA/BLA2AB Series
0.5±0.1
2.0±0.2
0.25±0.15
0.5±0.1
: Electrode
(in mm)
■ Applications
Notebook size PC, PDA and other compact size digital
equipment
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLA2AAG121SN4
120 ±25%
100
0.50
-55 to 125
BLA2AAG221SN4
220 ±25%
50
0.70
-55 to 125
BLA2AAG601SN4
600 ±25%
50
1.10
-55 to 125
BLA2AAG102SN4
1000 ±25%
50
1.30
-55 to 125
BLA2ABB100SN4
10 ±25%
200
0.1
-55 to 125
BLA2ABB220SN4
22 ±25%
200
0.2
-55 to 125
BLA2ABB470SN4
47 ±25%
200
0.35
-55 to 125
BLA2ABB121SN4
120 ±25%
50
0.60
-55 to 125
BLA2ABB221SN4
220 ±25%
50
0.90
-55 to 125
BLA2ABD471SN4
470 ±25%
100
0.65
-55 to 125
BLA2ABD601SN4
600 ±25%
100
0.80
-55 to 125
BLA2ABD102SN4
1000 ±25%
50
1.00
-55 to 125
Part Number
Number of Circuits : 4
■ Equivalent Circuit
■ Impedance-Frequency (Typical)
BLA2AA Series
1200
BLA2AAG102SN4
(1)
(2)
(3)
(4)
900
Impedance (ohm)
1
BLA2AAG601SN4
600
BLA2AAG221SN4
300
(5)
(6)
(7)
(8)
BLA2AAG121SN4
No polarity.
0
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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Continued from the preceding page.
■ Impedance-Frequency (Typical)
BLA2ABB Series
BLA2ABD Series
1000
1600
800
BLA2ABD102SN4
Impedance (ohm)
Impedance (ohm)
1200
600
BLA2ABB221SN4
400
BLA2ABD601SN4
800
1
BLA2ABD471SN4
400
200
BLA2ABB121SN4
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLA2AAG221SN4
400
150
300
Z
Impedance (ohm)
Impedance (ohm)
BLA2AAG121SN4
200
Z
100
R
R
200
50
100
X
X
0
0
1
10
100
1000
1
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLA2AAG601SN4
BLA2AAG102SN4
800
1200
Z
600
900
R
Impedance (ohm)
Impedance (ohm)
R
400
Z
600
200
300
X
X
0
0
1
10
100
1000
1
10
100
Frequency (MHz)
Frequency (MHz)
BLA2ABB100SN4
BLA2ABB220SN4
50
1000
100
40
Impedance (ohm)
Impedance (ohm)
75
Z
30
X
20
Z
50
X
25
10
R
R
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLA2ABB470SN4
BLA2ABB121SN4
500
200
1
Impedance (ohm)
Impedance (ohm)
400
R
Z
100
X
Z
300
R
200
X
100
0
1
10
100
0
1000
1
10
100
Frequency (MHz)
Frequency (MHz)
BLA2ABB221SN4
BLA2ABD471SN4
1000
1000
800
800
Z
Impedance (ohm)
Impedance (ohm)
600
Z
600
R
400
R
400
200
X
X
200
0
0
1
10
100
Frequency (MHz)
1
1000
10
100
1000
Frequency (MHz)
BLA2ABD601SN4
BLA2ABD102SN4
1000
1600
Z
Z
800
Impedance (ohm)
Impedance (ohm)
1200
R
600
400
R
800
X
400
X
200
0
0
1
10
100
Frequency (MHz)
62
1000
1
10
100
Frequency (MHz)
1000
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(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
■ Features
0.8±0.1
0.4±0.2
3.2±0.2
1. BLA31A/B has 4 circuits in 3.2x1.6mm body with
0.8mm pitch.
2. Provides attenuation across a broad frequency range.
Two types of impedance are available which meet
general signal line and high speed signal line.
3. Original inner electrode structure enables extra
low crosstalk.
4. The nickel barrier structure of the external
electrodes provides excellent solder heat
resistance. Both flow and reflow soldering methods
can be employed.
(in mm)
Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
DC Resistance (max.)
(ohm)
Operating
Temperature Range
(°C)
BLA31AG300SN4
30 ±25%
200
0.10
-55 to 125
BLA31AG600SN4
60 ±25%
200
0.15
-55 to 125
BLA31AG121SN4
120 ±25%
150
0.20
-55 to 125
BLA31AG221SN4
220 ±25%
150
0.25
-55 to 125
BLA31AG601SN4
600 ±25%
100
0.35
-55 to 125
BLA31AG102SN4
1000 ±25%
50
0.45
-55 to 125
BLA31BD121SN4
120 ±25%
150
0.30
-55 to 125
BLA31BD221SN4
220 ±25%
150
0.35
-55 to 125
BLA31BD471SN4
470 ±25%
100
0.40
-55 to 125
BLA31BD601SN4
600 ±25%
100
0.45
-55 to 125
BLA31BD102SN4
1000 ±25%
50
0.55
-55 to 125
Part Number
1
0.8±0.2
0.3±0.2
The miniaturization of electronic equipment requires
high performance EMI filters which enable high density
mounting. BLA31A/B series consists of 4 circuits of
ferrite beads.
BLA31A/B is suitable for EMI suppression in smaller
digital equipment.
1.6±0.2
BLA31A/BLA31B Series
Number of Circuits : 4
■ Equivalent Circuit
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
No polarity.
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■ Impedance-Frequency (Typical)
BLA31A Series
BLA31B Series
1200
2000
BLA31AG600SN4
BLA31AG102SN4
1
1500
BLA31AG601SN4
BLA31AG300SN4
Impedance (Ω)
Impedance (Ω)
900
BLA31AG221SN4
600
BLA31AG121SN4
300
BLA31BD102SN4
1000
BLA31BD601SN4
BLA31BD471SN4
BLA31BD221SN4
BLA31BD121SN4
500
0
1
10
100
0
1000
1
10
100
1000
Frequency (MHz)
Frequency (MHz)
■ Impedance-Frequency Characteristics
BLA31AG300SN4
BLA31AG600SN4
40
80
Z
Z
60
R
Impedance (Ω)
Impedance (Ω)
30
20
R
40
X
X
10
20
0
1
10
100
0
1000
1
10
Frequency (MHz)
100
BLA31AG121SN4
BLA31AG221SN4
200
300
150
225
Z
Impedance (Ω)
Impedance (Ω)
Z
R
100
R
150
X
X
50
75
0
1
10
100
0
1000
1
10
Frequency (MHz)
100
1000
Frequency (MHz)
BLA31AG601SN4
BLA31AG102SN4
1200
800
900
600
Z
Z
Impedance (Ω)
Impedance (Ω)
1000
Frequency (MHz)
R
400
X
X
200
R
600
300
0
0
1
10
100
Frequency (MHz)
1000
1
10
100
1000
Frequency (MHz)
Continued on the following page.
64
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BLA31BD121SN4
BLA31BD221SN4
500
300
375
225
Impedance (Ω)
Impedance (Ω)
Z
R
150
X
Z
R
250
125
75
0
0
1
10
100
1
1000
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLA31BD471SN4
BLA31BD601SN4
1000
800
750
600
Z
Impedance (Ω)
Z
Impedance (Ω)
1
X
R
400
X
R
500
X
250
200
0
0
1
10
100
1000
1
10
100
1000
Frequency (MHz)
Frequency (MHz)
BLA31BD102SN4
2000
Impedance (Ω)
1500
Z
1000
R
500
X
0
1
10
100
1000
Frequency (MHz)
65
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr
Part Numbering
Chip EMIFILr Capacitor Type
(Global Part Number)
NF
M
3D
CC
102
R
1H
q
w
e
r
t
y
u i o
3
L
qProduct ID
yCharacteristics
Product ID
NF
2
Code
Chip EMI Filters Capacitor Type
wStructure
Capacitance Change
B
±10%
F
+30/-80%
R
±15%
Code
Structure
U
-750 ±120ppm/°C
M
Capacitor Type
S
+350 to -1000ppm/°C
eDimensions (LgW)
uRated Voltage
Code
Dimensions (LgW)
EIA
Code
Rated Voltage
18
1.6g0.8mm
0603
0J
6.3V
21
2.0g1.25mm
0805
1A
10V
3D
3.2g1.25mm
1206
1C
16V
41
4.5g1.6mm
1806
1E
25V
rFeatures
Code
Features
CC
Capacitor Type for Signal Lines
PC
Capacitor Type for Large Current
1H
50V
2A
100V
iElectrode/Others
Code
Electrode
3
Sn Plating
tCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
oPackaging
66
Code
Packaging
L
Plastic Taping (ø180mm Reel)
B
Bulk
D
Paper Taping (ø180mm Reel)
Series
NFM3D/NFM41
All series
NFM18/NFM21
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Chip EMIFILr Capacitor Array Type
(Global Part Number)
NF
A
31
CC
101
S
1E
q
w
e
r
t
y
u i o
4 B
qProduct ID
yCharacteristics
Product ID
NF
Chip EMI Filters Capacitor Type
Code
Capacitance Change
R
±15%
S
+350 to -1000ppm/°C
wStructure
Code
Structure
A
Array Type
eDimensions (LgW)
Code
Dimensions (LgW)
31
3.2g1.6mm
rFeatures
Code
Features
CC
Capacitor Type for Signal Lines
uRated Voltage
Code
Rated Voltage
1C
16V
1E
25V
iNumber of Circuits
Code
Number of Circuits
4
4 Circuits
2
oPackaging
tCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Code
Packaging
B
Bulk
D
Paper Taping (ø180mm Reel)
67
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Chip EMIFILr RC Combined Type
(Global Part Number)
NF
R
q
w e
21 GD
r
470
470
t
y
2
L
u i
qProduct ID
yResistance
Expressed by three figures. The unit is in ohm (Ω). The first and
second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Product ID
NF
EMIFILr
wStructure
uElectrode/Others
Code
Structure
Code
Electrode
R
RC Combined Type
2
Sn Plating
eDimensions (LgW)
2
iPackaging
Code
Dimensions (LgW)
EIA
Code
Packaging
21
2.0g1.25mm
0805
L
Plastic Taping (ø180mm Reel)
B
Bulk
rFeatures
Code
Features
GD
RC Combined Type for Signal Lines
tCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Chip EMIFILr RC Combined Array Type
(Global Part Number)
NF
A
q
w e
31 GD
r
100
101
4 D
t
y
u i
qProduct ID
yResistance
Product ID
NF
EMIFILr
wStructure
Code
Structure
A
Array Type
eDimensions (LgW)
Code
Dimensions (LgW)
31
3.2g1.6mm
Expressed by three figures. The unit is in ohm (Ω). The first and
second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures. If
there is a decimal point, it is expressed by the capital letter "R". In
this case, all figures are significant digits.
uNumber of Circuits
Code
Number of Circuits
4
4 Circuits
iPackaging
Code
rFeatures
Code
Features
GD
RC Combined Type for Signal Lines
tCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures. If
there is a decimal point, it is expressed by the capital letter "R". In
this case, all figures are significant digits.
68
Packaging
B
Bulk
D
Paper Taping (ø180mm Reel)
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Chip EMIFILr LC Combined Type
(Global Part Number)
NF
W
31 SP
q
w
e
r
206
t
X
1E
4
L
y u i o
qProduct ID
yCharacteristics (NFL/NFW Series)
Product ID
NF
Chip EMI Filters LC Combined Type
wStructure
Code
Characteristics
X
Cut off Frequency
yCharacteristics (NFE Series)
Code
Structure
Code
L
Monolithic, LC Combined Type
B
±10%
W
Winding, LC Combined Type
C
±20%, ±22%
E
Block, LC Combined Type
D
+20/-30%, +22/-33%
E
+20/-55%, +22/-56%
F
+30/-80%, +22/-82%
eDimensions (LgW)
Capacitance Change
Dimensions (LgW)
EIA
R
±15%
18
1.6g0.8mm
0603
U
-750 ±120ppm/ ˚C
21
2.0g1.25mm
0805
Z
Other
31
3.2g1.6mm
1206
61
6.8g1.6mm
2606
Code
uRated Voltage
rFeatures
Code
2
Features
Code
Rated Voltage
1A
10V
1C
16V
25V
SP
π Circuit for Signal Lines
1E
ST
T Circuit for Signal Lines
1H
50V
PT
T Circuit for Large Current
2A
100V
HT
T Circuit for Heavy-duty
iElectrode
Expressed by a figure.
tCut-off Frequency (NFL/NFW Series)
Expressed by three figures. The unit is in hertz (Hz). The first and
second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Ex.)
Series
Code
Electrode
3
Sn Plating
NFL
4
Solder Coating
NFW
9
Others
NFE
tCapacitance (NFE Series)
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
oPackaging
Code
Packaging
K
Plastic Taping (ø330mm Reel)
NFW31/NFE
L
Plastic Taping (ø180mm Reel)
NFW31/NFE
B
Bulk
D
Paper Taping (ø180mm Reel)
Series
NFL18/NFL21/NFE
NFL18/NFL21
69
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr Capacitor Type NFM18C/NFM21C/NFM3DC/NFM41C Series
NFM18C Series
The NFM18CC series is a 1.6x0.8mm EMI suppression
filter for signal lines which has a 3-terminal
structure using Murata's multilayer technology.
■ Features
0.8±0.1
0.2 min.
1.6±0.1
1. Ultra small size in 1.6x0.8x0.6mm enable high
density mounting.
2. 3-terminal structure with low residual inductance
(ESL)* characteristics achieves large insertion
loss characteristics even in high frequency area.
3. The NFM18cc series covers capacitance range from
22 to 22000pF.
(1)
(3)
NFM18C
(2)
0.8±0.1
(2)
0.2±0.1
(in mm)
■ Applications
1. EMI suppression of circuit for insertion loss in
quantity.
2. Noise suppression up to GHz.
* Not exceeding one-tenth of monolithic ceramic
capacitors (2-terminal).
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(mA)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM18CC220U1C3
22 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC470U1C3
47 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC101R1C3
100 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC221R1C3
220 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC471R1C3
470 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC102R1C3
1000 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC222R1C3
2200 +20%,-20%
16
300
1000 min.
-55 to 125
NFM18CC223R1C3
22000 +20%,-20%
16
1000
1000 min.
-55 to 125
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
10
20
(1) Input
Output (3)
* no polarity.
GND
(2)
Insertion Loss (dB)
2
0.4±0.1
0.6±0.1
0.25±0.1
NFM18CC223R1C3
NFM18CC222R1C3
30
NFM18CC102R1C3
NFM18CC471R1C3
NFM18CC221R1C3
40
50
NFM18CC101R1C3
NFM18CC470U1C3
60
NFM18CC220U1C3
70
80
0
70
1
10
Frequency (MHz)
100
1000 2000
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NFM21C Series
0.3±0.2
0.85±0.1
The chip "EMIFIL" NFM21C series is a chip type
3-terminal EMI suppression filter. It can reduce
residual inductance to an extremely low level making
it excellent for noise suppression at high frequencies.
0.6±0.2
2.0±0.2
■ Features
1.25±0.1
(2)
1. Small and low profile of 2.0x1.25x0.85mm
(NFM21C) enables high density mounting.
2. 3-terminal structure enables high performance in
high frequency range.
3. Uses original electrode structure which realizes
excellent solderability.
4. An electrostatic capacitance range of 22 to
22000pF enables suppression of noise at specific
frequencies.
(1)
+0.2
0.2 -0.1
NFM21C
(3)
(2)
(in mm)
2
■ Applications
1. PCs and peripherals which emit high amount of noise
2. Compact size equipment such as PDA, PC card and
mobile telecommunications equipment
3. Severe EMI suppression and high impedance circuits
such as digital circuits
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(mA)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM21CC220U1H3
22 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC470U1H3
47 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC101U1H3
100 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC221R1H3
220 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC471R1H3
470 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC102R1H3
1000 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC222R1H3
2200 +20%,-20%
50
300
1000 min.
-55 to 125
NFM21CC223R1H3
22000 +20%,-20%
50
2000
1000 min.
-55 to 125
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
(1) Input
Output (3)
* no polarity.
Insertion Loss (dB)
20
NFM21CC220U1H3
40
NFM21CC470U1H3
NFM21CC101U1H3
60
NFM21CC221R1H3
GND
(2)
NFM21CC471R1H3
80
NFM21CC223R1H3
NFM21CC222R1H3
NFM21CC102R1H3
100
1
5
10
50
100
500
1000
2000
Frequency (MHz)
71
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NFM3DC Series
0.7±0.2
The chip "EMIFIL" NFM3DC series is a chip type
3-terminal EMI suppression filter. It can reduce
residual inductance to an extremely low level making
it excellent for noise suppression at high frequencies.
1.1±0.3
3.2±0.2
1.25±0.2
(2)
■ Feature
(1)
(3)
(2)
0.25±0.2
An electrostatic capacitance range of 22 to 22,000pF
enables suppression of noise at specific frequencies.
NFM3DC
0.3±0.2
(in mm)
■ Application
1. High noise radiation and high impedance circuits
such as digital circuits
2
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(mA)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM3DCC220U1H3
22 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC470U1H3
47 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC101U1H3
100 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC221R1H3
220 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC471R1H3
470 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC102R1H3
1000 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC222R1H3
2200 +50%,-20%
50
300
1000 min.
-55 to 125
NFM3DCC223R1H3
22000 +50%,-20%
50
300
1000 min.
-55 to 125
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
(1) Input
Output (3)
* no polarity.
Insertion Loss (dB)
20
NFM3DCC223R1H3
40
NFM3DCC222R1H3
NFM3DCC102R1H3
NFM3DCC471R1H3
60
NFM3DCC221R1H3
GND
NFM3DCC101UH3
(2)
NFM3DCC470U1H3
80
NFM3DCC220U1H3
100
1
5
10
50
100
Frequency (MHz)
72
500
1000
2000
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NFM41C Series
1.0±0.2
The chip "EMIFIL" NFM41C series is a chip type
3-terminal EMI suppression filter. It can reduce
residual inductance to an extremely low level making
it excellent for noise suppression at high frequencies.
1.5±0.3
4.5±0.3
1.6±0.3
(2)
■ Features
An electrostatic capacitance range of 22 to 22,000pF
enables suppression of noise at specific frequencies.
(3)
0.3 +0.3
-0.2
(1)
NFM41C
■ Applications
(2)
0.4±0.3
(in mm)
1. High noise radiation and high impedance circuits such
as digital circuits
2
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(mA)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM41CC220U2A3
22 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC470U2A3
47 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC101U2A3
100 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC221U2A3
220 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC471R2A3
470 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC102R2A3
1000 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC222R2A3
2200 +50%,-20%
100
300
10000 min.
-55 to 125
NFM41CC223R2A3
22000 +50%,-20%
100
300
10000 min.
-55 to 125
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
(1) Input
Output (3)
* no polarity.
Insertion Loss (dB)
20
NFM41CC223R2A3
40
NFM41CC222R2A3
NFM41CC102R2A3
60
NFM41CC471R2A3
NFM41CC221U2A3
GND
(2)
NFM41CC101U2A3
80
NFM41CC470U2A3
NFM41CC220U2A3
100
1
5
10
50
100
500
1000
2000
Frequency (MHz)
73
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr Capacitor Array Type NFA31C Series
The NFA31C series is a chip EMI suppression filter for
surface mount applications by using Murata's ceramic
processing technology and filter design technology.
The series is well suited for EMI suppression in
digital I/O lines of varied electronic equipment such
as notebook size PCs.
3.2±0.2
0.8±0.1
0.8±0.2
1.6±0.2
0.4±0.2
(7)
(8)
(9) (10)
(3)
(4)
(5)
(1)
(2)
0.05 min.
(6)
0.05 min.
■ Features
1. High density mounting can be realized because of 4
circuits in one package with 0.8mm pitch.
2. Suitable for high frequency noise suppression
because of low residual inductance of 3-terminal
structure.
3. Excellent EMI suppression can be realized because
of 2-terminal simple GNDs for 4 circuits.
4. 20 to 22,000pF lineups can be used depending on
noise frequency.
(in mm)
■ Applications
1. Personal computers and peripherals
2. Telephones, PPCs, communications equipment
3. Digital TVs, VCRs
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(mA)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFA31CC220S1E4
22 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC470S1E4
47 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC101S1E4
100 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC221S1E4
220 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC471R1E4
470 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC102R1E4
1000 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC222R1E4
2200 +20%,-20%
25
200
1000 min.
-40 to 85
NFA31CC223R1C4
22000 +20%,-20%
16
200
1000 min.
-40 to 85
Part Number
Number of Circuits : 4
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
Input
(7)
(8)
(9)
NFA31CC470S1E4
NFA31CC220S1E4
(10)
20
GND (1)
(2) GND
(3)
(4)
(5)
Insertion Loss (dB)
2
1.1±0.5
NFA31CC223R1C4
40
NFA31CC222R1E4
NFA31CC102R1E4
60
NFA31CC471R1E4
NFA31CC221S1E4
(6)
NFA31CC101S1E4
80
Output
100
No polarity.
1
5
10
50
100
Frequency (MHz)
74
500
1000
2000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr RC Combined Type NFR21G Series
(Top View)
The NFR21G series comprises high performance EMI
suppression filters which can suppress distortion of
waveform. Various items may be used, considering
circuit impedance and noise condition.
0.5±0.2
1.0 max.
1.0±0.35
0.95±0.35
2.0±0.2
1.25±0.2
■ Features
(2)
(Bottom View)
1. Murata's original inner design realizes small and
low profile of 2.0x1.25x0.5mm.
2. Distributed constant circuit realizes smooth change
of impedance which prevents reflection of signal
and distortion of wave shape.
3. The NFR21G series is effective in a line where
ground is not stable, because the resistance
element in the filter absorbs noise and returns it to
ground line.
4. The NFR21G series has no polarity so it can be used
in dual direction transport lines.
5. The NFR21G series has various lineups of resistance
(22 to 100ohm) and capacitance (10 to 100pF).
(1)
(3)
0.2
0.3± 0.25
0.2
(2)
0.3± 0.25
2
(in mm)
■ Applications
Interface lines and clock lines where signals are tend
to be distorted
Capacitance
(pF)
Resistance
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
Operating
Temperature Range
(°C)
NFR21GD1002202
10 +20%,-20%
22 +30%,-30%
50
50
1000 min.
-40 to 85
NFR21GD1004702
10 +20%,-20%
47 +30%,-30%
35
50
1000 min.
-40 to 85
NFR21GD4702202
47 +20%,-20%
22 +30%,-30%
50
50
1000 min.
-40 to 85
NFR21GD4704702
47 +20%,-20%
47 +30%,-30%
35
50
1000 min.
-40 to 85
NFR21GD4706802
47 +20%,-20%
68 +30%,-30%
30
50
1000 min.
-40 to 85
NFR21GD4701012
47 +20%,-20%
100 +30%,-30%
25
50
1000 min.
-40 to 85
NFR21GD1012202
100 +20%,-20%
22 +30%,-30%
50
50
1000 min.
-40 to 85
NFR21GD1014702
100 +20%,-20%
47 +30%,-30%
35
50
1000 min.
-40 to 85
NFR21GD1016802
100 +20%,-20%
68 +30%,-30%
30
50
1000 min.
-40 to 85
NFR21GD1011012
100 +20%,-20%
100 +30%,-30%
25
50
1000 min.
-40 to 85
Part Number
Number of Circuits : 1
75
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■ Equivalent Circuit
(1) Input
Output (3)
GND
(2)
No polarity
■ Insertion Loss Characteristics (Typical)
(50Ω - 3kΩ)
0
(50Ω - 150Ω)
0
NFR21GD4701012
10
10
NFR21GD1002202
NFR21GD1004702
NFR21GD4702202
20
Insertion Loss (dB)
Insertion Loss (dB)
2
NFR21GD4704702
NFR21GD4706802
NFR21GD1012202
30
NFR21GD1014702
NFR21GD1016802
50
1
10
100
Frequency (MHz)
76
NFR21GD1011012
30
40
40
50
20
1000
1
10
100
Frequency (MHz)
1000
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EMI Suppression Effect
Noise Suppression Effect of NFR21G Series
!Effect of Noise Suppression by NFR21G
[Testing Circuit]
The NFR21G is effective even if ground line is not stable
enough due to its distributed constant circuit structure.
HCU04
HC04
Filter
HC00
15cm
Signal Pattern
10MHz
With Stable Ground Line
EMI Suppression Effect
Type of Filter
Description
Noise Level without Filter
Noise Level [dB µ V/m]
60
Filter
50
Ground pattern
30
20
10
30
84
138 192 246
Frequency [MHz]
300
Noise Level [dB µ V/m]
60
Filter Mounting Condition
Standard Type Chip EMIFILr
(100pF)
40
30
20
84
138 192 246
Frequency [MHz]
300
60
Noise Level [dB µ V/m]
Thru-hole
(connection ground pattern
with ground plane)
Whole surface (back side)
ground plane
The standard type chip EMIFILr is effective on stable
ground lines.
50
10
30
Filter Mounting Condition
NFR21GD4701012
2
Signal line
40
The NFR21G has some advantages to standard type
EMIFILr on stable ground lines.
50
40
30
20
10
30
84
138 192 246
Frequency [MHz]
300
With Poor Ground Line
Type of Filter
EMI Suppression Effect
Description
Noise Level without Filter
Noise Level [dB µ V/m]
60
Filter
50
Signal line
40
Ground pattern
30
20
10
30
84
138 192 246
Frequency [MHz]
300
Filter Mounting Condition
Standard Type Chip EMIFILr
(100pF)
Noise Level [dB µ V/m]
60
The standard type EMIFILr loses efficiency on poor
ground lines.
50
40
30
20
10
30
84
138 192 246
Frequency [MHz]
300
Noise Level [dB µ V/m]
60
Filter Mounting Condition
NFR21GD4701012
Without ground plane
The NFR21G is effective even on poor ground lines
because of its distributed constant circuit structure and
unique system to limit rush current.
50
40
30
20
10
30
84
138 192 246
Frequency [MHz]
300
77
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EMI Suppression
Effect
Noise
Suppression
Effect of NFR21G Series
!Waveform Distortion Suppressing Function
by NFR21G
[Testing Circuit]
HCU04
AC04
Filter
AC04
Measuring Point
10MHz
Type of Filter
EMI Suppression Effect
Voltage Waveform
Description
Resonance between the internal
capacitance of the IC and the
inductance of the print pattern causes
waveform overshooting and
undershooting.
2
Initial Waveform (no filter)
↑ :1V/div
→ :20ns/div
Voltage Waveform
Ordinary capacitor filters have no
waveform distortion suppressing
capability, and they cannot suppress
disturbances in the waveforms.
When Ordinary Capacitor
Filter is Used
↑ :1V/div
→ :20ns/div
Voltage Waveform
The waveform distortion suppressing
function of the NFR21G minimizes
disturbances of waveforms.
NFR21G
↑ :1V/div
78
→ :20ns/div
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr RC Combined Array Type NFA31G Series
(Top View)
(7) (8)
NFA31G series is a high performance EMI suppression
filter array with a 4-circuit noise filter in
3.2x1.6mm size. NFA31G realizes high density mounting.
(9)
(10)
(1)
(2)
(3)
(4)
(5)
(6)
1.1±0.5
0.8±0.1
0.4±0.15
0.8±0.2
■ Features
1. NFA31G is a 4-circuit noise filter in 3.2x1.6mm
size with 0.8mm pitch. High density mounting is
available.
2. 3-terminal structure enables excellent high
frequency performance.
3. Distributed constant circuit realizes smooth change
of impedance which prevents reflection of signal
and distortion of wave shape.
4. NFA31G series is effective in lines where ground
is not stable, because the resistance element in
the filter absorbs noise and returns it to ground
line.
3.2±0.2
1.6±0.2
(Bottom View)
2
0.05 min.
0.05 min.
(in mm)
Capacitance
(pF)
Resistance
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
Operating
Temperature Range
(°C)
NFA31GD1006R84
10 +20%,-20%
6.8 +40%,-40%
50
6
1000 min
-40 to 85
NFA31GD1004704
10 +20%,-20%
47 +30%,-30%
20
6
1000 min
-40 to 85
NFA31GD1001014
10 +20%,-20%
100 +30%,-30%
15
6
1000 min
-40 to 85
NFA31GD4706R84
47 +20%,-20%
6.8 +40%,-40%
50
6
1000 min
-40 to 85
NFA31GD4704704
47 +20%,-20%
47 +30%,-30%
20
6
1000 min
-40 to 85
NFA31GD4701014
47 +20%,-20%
100 +30%,-30%
15
6
1000 min
-40 to 85
NFA31GD1016R84
100 +20%,-20%
6.8 +40%,-40%
50
6
1000 min
-40 to 85
NFA31GD1014704
100 +20%,-20%
47 +30%,-30%
20
6
1000 min
-40 to 85
NFA31GD1011014
100 +20%,-20%
100 +30%,-30%
15
6
1000 min
-40 to 85
Part Number
Number of Circuits : 4
■ Equivalent Circuit
Input
(7)
(8)
(9)
(10)
(2)GND
(1)GND
(3)
(4)
(5)
(6)
Output
∗ No polarity
79
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■ Insertion Loss Characteristics
(50Ω - 50Ω)
0
10
NFA31GD1006R84
Insertion Loss (dB)
Insertion Loss (dB)
10
NFA31GD4706R84
20
NFA31GD1016R84
30
10
100
1000 2000
NFA31GD1014704
(50Ω - 50Ω)
0
10
NFA31GD1001014
NFA31GD4701014
20
NFA31GD1011014
30
40
50
1
10
1
10
100
Frequency (MHz)
2
Insertion Loss (dB)
NFA31GD4704704
30
50
1
Frequency (MHz)
100
Frequency (MHz)
80
NFA31GD1004704
20
40
40
50
(50Ω - 50Ω)
0
1000 2000
1000 2000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr LC Combined Monolithic Type NFL18ST/NFL18SP/NFL21S Series
NFL18ST Series
Ths NFL18ST series is an EMI suppression filter for
high speed signal lines, achieving T-type structure in
1.6x0.8mm size with Murata's multilayer technology.
0.2 min.
0.2 min.
(1)
(3)
(2)
0.25±0.1
■ Features
0.8±0.1
(2)
0.25±0.1
0.8±0.1
0.4±0.1
1. Ultra-small size in 1.6x0.8x0.8mm
2. Steep insertion loss characteristics realize
excellent noise suppression and prevent distortion
of signal waveform.
3. By minimizing stray capacitance of inductor,
achieves high performance in noise suppression
in high frequency range.
4. Five different values of cut-off frequency are
available, ranging from 100MHz up to 500MHz.
5. No polarity using the same structure on all the
side electrodes.
1.6±0.1
2
(in mm)
■ Applications
Noise suppression for video signal lines (RGB lines)
and high speed clock lines
Part Number
Cut-off Frequency
(MHz)
Capacitance
(pF)
Inductance
(nH)
Rated
Voltage
(Vdc)
Rated
Current
(mA)
Insulation
Resistance
(M ohm)
Operating
Temperature Range
(°C)
NFL18ST107X1C3
100
40 +20%,-20%
175 +20%,-20%
16
100
1000 min.
-55 to 125
NFL18ST157X1C3
150
32 +20%,-20%
140 +20%,-20%
16
100
1000 min.
-55 to 125
NFL18ST207X1C3
200
25 +20%,-20%
110 +20%,-20%
16
150
1000 min.
-55 to 125
NFL18ST307X1C3
300
18 +20%,-20%
62 +20%,-20%
16
200
1000 min.
-55 to 125
NFL18ST507X1C3
500
10 +20%,-20%
43 +20%,-20%
16
200
1000 min.
-55 to 125
Number of Circuits : 1
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
NFL18ST507X1C3
Output
(3)
GND
(2)
20
Insertion Loss (dB)
Input
(1)
NFL18ST307X1C3
NFL18ST207X1C3
NFL18ST157X1C3
40
NFL18ST107X1C3
60
No Polarity
80
1
5
10
50
100
500 1000
5000
Frequency (MHz)
81
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NFL18SP Series
0.15±0.1
0.8±0.1
The chip "EMIFIL" NFL18SP series is an EMI
suppression filter for high speed signal lines,
achieving pi-type structure in 0603 size with Murata's
multilayer technology.
1.6±0.1
0.2 min.
1. Ultra-small size in 1.6x0.8x0.6 mm
2. Achieves high performance in noise suppression over
wide frequency range.
3. Steep insertion loss characteristics realize
excellent noise suppression and prevent distortion
of signal waveform.
4. Line up 4 items of cut-off frequency range from 150
to 500MHz.
0.4±0.1
0.3±0.1
0.3±0.1
0.15±0.1
0.15±0.1
(in mm)
■ Applications
EMI suppression for digital signal line such as RGB
and high speed clock lines
Part Number
Cut-off Frequency
(MHz)
Capacitance
(pF)
Inductance
(nH)
Rated
Voltage
(Vdc)
Rated
Current
(mA)
Insulation
Resistance
(M ohm)
Operating
Temperature Range
(°C)
NFL18SP157X1A3
150
34 +20%,-20%
100 +20%,-20%
10
100
1000 min.
-55 to 125
NFL18SP207X1A3
200
24 +20%,-20%
80 +20%,-20%
10
100
1000 min.
-55 to 125
NFL18SP307X1A3
300
19 +20%,-20%
60 +20%,-20%
10
100
1000 min.
-55 to 125
NFL18SP507X1A3
500
11 +20%,-20%
38 +20%,-20%
10
100
1000 min.
-55 to 125
Number of Circuits : 1
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
50-50Ω
0
NFL18SP157X1A3
10
(1) Input
Output (3)
GND
(2)
Insertion Loss (dB)
2
0.6±0.1
■ Features
NFL18SP207X1A3
20
NFL18SP307X1A3
30
NFL18SP507X1A3
40
50
60
No polarity.
70
1
10
100
Frequency (MHz)
82
1000 2000
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NFL21S Series
0.3±0.2
0.85±0.1
The chip "EMIFIL" NFL21S series is a high performance
EMI suppression filter in 2.0x1.25mm size for high
speed signal lines by using Murata's processing
technology.
0.6±0.2
2.0±0.2
■ Features
(1)
1.25±0.1
(2)
1. Suppresses noise with few effects on the signal
itself due to its steep filtering characteristics.
2. Murata's original internal structure design enables
excellent noise suppression up to high frequencies.
3. Available in nine different values of cut-off
frequency ranging from 20MHz up to 500MHz.
(3)
0.05 min.
(2)
(in mm)
2
■ Applications
Suppression of high magnitude radiated noise generated
by high speed digital circuits such as clock and RGB
Part Number
Cut-off Frequency
(MHz)
Capacitance
(pF)
Inductance
(nH)
Rated
Voltage
(Vdc)
Rated
Current
(mA)
Insulation
Resistance
(M ohm)
Operating
Temperature Range
(°C)
NFL21SP206X1C3
20
240 +20%,-20%
700 +20%,-20%
16
100
1000 min.
-55 to 125
NFL21SP506X1C3
50
84 +20%,-20%
305 +20%,-20%
16
150
1000 min.
-55 to 125
NFL21SP706X1C3
70
76 +20%,-20%
185 +20%,-20%
16
150
1000 min.
-55 to 125
NFL21SP107X1C3
100
44 +20%,-20%
135 +20%,-20%
16
200
1000 min.
-55 to 125
NFL21SP157X1C3
150
28 +20%,-20%
128 +20%,-20%
16
200
1000 min.
-55 to 125
NFL21SP207X1C3
200
22 +20%,-20%
72 +20%,-20%
16
250
1000 min.
-55 to 125
NFL21SP307X1C3
300
19 +10%,-10%
45 +10%,-10%
16
300
1000 min.
-55 to 125
NFL21SP407X1C3
400
16 +10%,-10%
34 +10%,-10%
16
300
1000 min.
-55 to 125
NFL21SP507X1C3
500
12 +10%,-10%
31 +10%,-10%
16
300
1000 min.
-55 to 125
Number of Circuits : 1
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
NFL21SP507X1C3
GND
(2)
NFL21SP407X1C3
20
Output (3)
Insertion Loss (dB)
(1) Input
NFL21SP307X1C3
NFL21SP207X1C3
NFL21SP157X1C3
40
NFL21SP107X1C3
NFL21SP706X1C3
NFL21SP506X1C3
60
NFL21SP206X1C3
No polarity.
80
1
5
10
50
100
500
1000 2000
Frequency (MHz)
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr LC Combined Winding Type NFW31S Series
1.8±0.2
2.3±0.2
1.6±0.2
3.2±0.3
(1)
(3)
(2)
(1) : Input electrode
(2) : Ground electrode
(3) : Output electrode
∗No polarity.
0.7±0.3
0.7±0.3
0.65±0.2
(in mm)
■ Features
1. Suppresses signal noise with little or no
attenuation of the signal itself.
2. Murata's original internal structure design enables
excellent noise suppression up to high frequencies
(40dB at 1GHz typ.).
3. The NFW31S series is available in six different
values of cut-off frequency ranging from 10MHz up
to 500MHz.
Nominal Cut-off Attenuation Attenuation Attenuation Attenuation Attenuation Attenuation Attenuation Attenuation Attenuation Attenuation
Freq.
at 10MHz
at 20MHz
at 50MHz at 100MHz at 150MHz at 200MHz at 300MHz at 400MHz at 500MHz at 1000MHz
(MHz)
(dB)
(dB)
(dB)
(dB)
(dB)
(dB)
(dB)
(dB)
(dB)
(dB)
Part Number
NFW31SP106X1E4
10
6 max.
5 min.
25 min.
25 min.
-
25 min.
-
-
30 min.
30 min.
NFW31SP206X1E4
20
-
6 max.
5 min.
25 min.
-
25 min.
-
-
30 min.
30 min.
NFW31SP506X1E4
50
-
-
6 max.
10 min.
-
30 min.
-
-
30 min.
30 min.
NFW31SP107X1E4
100
-
-
-
6 max.
-
5 min.
-
-
20 min.
30 min.
NFW31SP157X1E4
150
-
-
-
-
6 max.
-
10 min.
20 min
30 min.
30 min.
NFW31SP207X1E4
200
-
-
-
-
-
6 max.
-
-
10 min.
30 min.
NFW31SP307X1E4
300
-
-
-
-
-
-
6 max.
-
5 min.
15 min.
NFW31SP407X1E4
400
-
-
-
-
-
-
-
6 max.
-
10 min.
NFW31SP507X1E4
500
-
-
-
-
-
-
-
-
6 max.
10 min.
Rated Current : 200mA
Rated Voltage : 25Vdc
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
(1) Input
GND
(2)
NFW31SP157X1E4
NFW31SP207X1E4
20
Output (3)
Insertion Loss (dB)
2
The signal line chip EMI filter NFW31S series consists
of high performance EMI suppression filters. They are
designed for noise suppression in high speed signal
digital circuits in which the signal harmonics are
prone to becoming noise sources. These filters achieve
a 100dB/dec. (typ.) damping characteristic with
Murata's innovative circuit design. This makes these
chips effective in applications where the signal and
noise frequencies are close to each other.
NFW31SP307X1E4
NFW31SP407X1E4
NFW31SP507X1E4
40
NFW31SP106X1E4
NFW31SP206X1E4
NFW31SP506X1E4
60
NFW31SP107X1E4
No polarity.
80
1
5
10
50
100
Frequency (MHz)
84
500
1000
2000
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Noise Suppression Effect of NFW31S Series
EMI Suppression Effect
!Example of EMI Suppression
in an Actual Circuit
[Measuring Circuit]
74ALS04
EMI
Suppression Filter
74ALS00
Measuring
Point
10MHz
Type of Filter
(
Signal Wave Form 20ns/div
1v/div
)
EMI Suppression Effect
Description
Noise Level [dBµV]
100
Signal Waveform
and Noise Spectrum
before Filter Mounting
60
40
20
0
(
2
80
)
Signal Waveform 20ns/div
1V/div
400
100
200
300
Frequency [MHz]
500
Noise Spectrum
(10:1 Active Probe)
The NFW31S's steep attenuation
characteristic means excellent EMI
suppression without waveform
cornering.
NFW31S Series
(Cut-off frequency 50MHz)
Noise Level [dBµV]
100
80
Level before
filter mounting
60
40
20
0
400
100
200
300
Frequency [MHz]
500
3-terminal capacitors suppress
signal frequencies as EMI
frequencies so the signal waveform
is distorted.
Conventional Chip
Solid type EMI Filter
(NFM41CC 470pF)
Noise Level [dBµV]
100
80
60
40
20
0
L
L
C
L : Chip Inductor
C : Chip Capacitor
(270pF)
100
Noise Level [dBµV]
Filter Combined
with Conventional LCs
Level before
filter mounting
80
400
100
200
300
Frequency [MHz]
500
Combinations of inductors and
capacitors can yield a steep
attenuation characteristic, but they
require a great deal more mounting
space.
Moreover, at high frequencies the
EMI suppression is less than that
obtained by the NFW31S.
Level before
filter mounting
60
40
20
0
400
100
200
300
Frequency [MHz]
500
85
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr LC Combined Type for Large Current NFE31P/NFE61P/NFE61H Series
NFE31P Series
The chip "EMIFIL" NFE31P is a small size T-type circuit
EMI suppression filter.
0.7±0.2
1.0±0.2
0.7±0.2
(1)
(2)
(3)
1. Its large rated current of 6A and low voltage drop
due to small DC resistance are suitable for DC
power line use.
2. The feedthrough capacitor realizes excellent high
frequency characteristics.
3. The structure incorporates built-in ferrite beads
which minimize resonance with surrounding circuits.
4. 22 to 22,000pF lineups can be used for signal lines.
1.6±0.2
3.2±0.4
(in mm)
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFE31PT220R1E9
22 +30%,-30%
25
6
1000 min.
-40 to 85
NFE31PT470C1E9
47 +50%,-20%
25
6
1000 min.
-40 to 85
NFE31PT101C1E9
100 +80%,-20%
25
6
1000 min.
-40 to 85
NFE31PT221D1E9
220 +50%,-20%
25
6
1000 min.
-40 to 85
NFE31PT471F1E9
470 +50%,-20%
25
6
1000 min.
-40 to 85
NFE31PT152Z1E9
1500 +50%,-20%
25
6
1000 min.
-40 to 85
NFE31PT222Z1E9
2200 +50%,-50%
25
6
1000 min.
-40 to 85
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
NFE31PT220R1E9
NFE31PT470C1E9
10
NFE31PT101C1E9
Input
(1)
Output
(3)
GND
(2)
No polarity.
Insertion Loss (dB)
2
1.6±0.2
■ Features
20
NFE31PT221D1E9
NFE31PT471F1E9
NFE31PT152Z1E9
30
NFE31PT222Z1E9
40
50
1
10
100
Frequency (MHz)
86
1000
2000
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NFE61P Series
The chip "EMIFIL" NFE61P is a T-type circuit EMI
suppression filter.
2.6±0.3
0.7±0.2
(1)
(2)
(3)
1.6±0.3
■ Feature
0.7±0.2
1. Its large rated current of 2A and low voltage drop
due to small DC resistance are suitable for DC
power line use.
2. The feedthrough capacitor realizes excellent high
frequency characteristics.
3. The structure incorporates built-in ferrite beads
which minimize resonance with surrounding circuits.
4. 33 to 4,700pF lineups can be used for signal lines.
6.8±0.5
1.6±0.3
(in mm)
2
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFE61PT330B1H9
33 +30%,-30%
50
2
1000 min.
-25 to 85
NFE61PT680B1H9
68 +30%,-30%
50
2
1000 min.
-25 to 85
NFE61PT101Z1H9
100 +30%,-30%
50
2
1000 min.
-25 to 85
NFE61PT181B1H9
180 +30%,-30%
50
2
1000 min.
-25 to 85
NFE61PT361B1H9
360 +20%,-20%
50
2
1000 min.
-25 to 85
NFE61PT681B1H9
680 +30%,-30%
50
2
1000 min.
-25 to 85
NFE61PT102E1H9
1000 +80%,-20%
50
2
1000 min.
-25 to 85
NFE61PT472C1H9
4700 +80%,-20%
50
2
1000 min.
-25 to 85
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
NFE61PT330B1H9
NFE61PT680B1H9
NFE61PT101Z1H9
Input
(1)
Output
(3)
Insertion Loss (dB)
10
20
NFE61PT181B1H9
30
NFE61PT361B1H9
NFE61PT681B1H9
40
NFE61PT102E1H9
NFE61PT472C1H9
GND
(2)
No polarity.
50
60
0.1
1
10
100
1000
Frequency (MHz)
87
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NFE61H Series
0.7±0.2
2.6±0.3
0.7±0.2
(1)
(2)
(3)
1.6±0.3
The T-type chip EMI Filter NFE61H series consists of
a feedthrough capacitor and ferrite beads.
Extending the operating conditions of NFE61P, NFE61H
series can be used in an application set under severe
operating conditions.
6.8+0.3
-0.5
■ Features
1. These filters have an extended operating
temperature range of -55 to +125 degree C.
2. Its large rated current of 2A and low voltage drop
due to small DC resistance are suitable for DC
power line use.
3. The feedthrough capacitor realizes excellent high
frequency characteristics.
4. The structure incorporates built-in ferrite beads
which minimize resonance with surrounding circuits.
5. 33 to 3,300pF lineups can be used for signal lines.
(in mm)
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFE61HT330U2A9
33 +30%,-30%
100
2
1000 min.
-55 to 125
NFE61HT680R2A9
68 +30%,-30%
100
2
1000 min.
-55 to 125
NFE61HT101Z2A9
100 +30%,-30%
100
2
1000 min.
-55 to 125
NFE61HT181C2A9
180 +30%,-30%
100
2
1000 min.
-55 to 125
NFE61HT361C2A9
360 +20%,-20%
100
2
1000 min.
-55 to 125
NFE61HT681D2A9
680 +30%,-30%
100
2
1000 min.
-55 to 125
NFE61HT102F2A9
1000 +80%,-20%
100
2
1000 min.
-55 to 125
NFE61HT332Z2A9
3300 +80%,-20%
100
2
1000 min.
-55 to 125
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
NFE61HT330U2A9
NFE61HT680R2A9
10
Input
(1)
Output
(3)
GND
(2)
No polarity.
Insertion Loss (dB)
2
1.6±0.3
NFE61HT101Z2A9
20
NFE61HT181C2A9
30
40
NFE61HT361C2A9
NFE61HT681D2A9
NFE61HT102F2A9
NFE61HT332Z2A9
50
60
0.1
1
10
Frequency (MHz)
88
100
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIFILr for Large Current NFM18P/21P/3DP/41P Series
NFM18P Series
The NFM18P series is an EMI suppression filter for
high speed IC power lines which realizes large
capacitance 1 microF max. and rated current 2A in 1608
size by Murata's multilayer technology.
0.2 min.
0.2 min.
(1)
0.8±0.1
(2)
(3)
(2)
0.25±0.1
0.25±0.1
0.8±0.1
0.4±0.1
■ Features
1.6±0.1
1. Ultra-small size in 1.6x0.8mm.
2. 3-terminal structure with low residual (ESL)* and
large capacitance 1 microF (max.) realize large
insertion loss characteristics over wide frequency
range.
3. Large rated current 2A is suitable for noise
suppression of circuits which require large current.
4. The NFM18P series has line up of capacitance 0.1 to
1.0 microF.
* Not exceeding one-tenth of monolithic ceramic
capacitors (2-terminal).
2
NFM18P (1 micro F)
(in mm)
0.4±0.1
0.8±0.1
0.6±0.1
0.25±0.1
0.2 min.
1.6±0.1
■ Applications
(1)
(3)
NFM18P (0.1-0.47 micro F)
(2)
0.8±0.1
(2)
1. Noise suppression for large capacitance circuits such
as high speed IC power lines
2. Control change of voltage for high speed IC
0.2±0.1
(in mm)
Capacitance
(µF)
Part Number
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM18PC104R1C3
0.1 +20%,-20%
16
2
1000 min.
-55 to 125
NFM18PC224R0J3
0.22 +20%,-20%
6.3
2
1000 min.
-55 to 125
NFM18PC474R0J3
0.47 +20%,-20%
6.3
2
1000 min.
-55 to 125
NFM18PC105R0J3
1.0 +20%,-20%
6.3
2
500 min.
-55 to 105
■ Equivalent Circuit
■ Insertion Loss Characteristics
NFM18P Series
(50Ω - 50Ω)
0
10
NFM18PC104R1C3
20
NFM18PC224R0J3
(1) Input
Output (3)
* no polarity.
GND
(2)
Insertion Loss (dB)
30
NFM18PC474R0J3
40
NFM18PC105R0J3
50
60
70
80
90
0.1
1
10
100
1000 2000
Frequency (MHz)
89
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NFM21P Series
0.3±0.2
0.85±0.1
NFM21P is a 3-terminal structure component. This product
can be applied to large current DC power lines. NFM21P
is suitable for noise suppression of DC power lines
where relatively operates large current.
0.6±0.2
2.0±0.2
■ Features
1. The rated current of 4A is suitable for IC's
individual power lines.
2. Small dimension enables higher density packaging.
NFM21P is much smaller size (2.0x1.25x0.85mm).
3. Murata's original internal electrode structure
design realizes excellent EMI suppression
effects from low frequency to high frequency.
(3)
NFM21P
(2)
0.25±0.2
(1)
(in mm)
Capacitance
(µF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
NFM21PC104R1E3
0.1 +20%,-20%
25
2
1000 min.
-55 to 125
NFM21PC224R1C3
0.22 +20%,-20%
16
2
1000 min.
-55 to 125
NFM21PC474R1C3
0.47 +20%,-20%
16
2
1000 min.
-55 to 125
NFM21PC105B1A3
1.0 +20%,-20%
10
4
500 min.
-40 to 85
NFM21PC105F1C3
1.0 +80%,-20%
16
2
500 min.
-40 to 85
Part Number
■ Equivalent Circuit
■ Insertion Loss Characteristics
NFM21P Series
(50Ω - 50Ω)
0
20
(1) Input
Output (3)
* no polarity.
Insertion Loss (dB)
2
1.25±0.1
(2)
NFM21PC104R1E3
NFM21PC224R1C3
40
60
GND
NFM21PC474R1C3
(2)
80
NFM21PC105F1C3
NFM21PC105B1A3
100
1
10
100
Frequency (MHz)
90
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NFM3DP Series
0.7±0.2
The chip "EMIFIL" NFM3DP is a chip type
3-terminal capacitor with high rated current of 2A.
This series is suited for noise suppression in DC
power supply lines of digital instruments.
1.1±0.3
3.2±0.2
1.25±0.2
(2)
■ Features
(1)
(3)
(2)
0.25±0.2
1. Large rated current (2A) is suitable for application
in DC power lines.
2. Small size (3.2x1.25mm) and low profile (0.7mm max.)
NFM3DP
0.3±0.2
(in mm)
■ Applications
1. Personal computers, word processors and peripherals
2. Telephones, PPCs, communications equipment, etc.
3. Digital TVs, VCRs
4. Telecommunications equipment
Capacitance
(µF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
0.022 +20%,-20%
50
2
1000 min.
-55 to 85
Part Number
NFM3DPC223R1H3
2
■ Equivalent Circuit
■ Insertion Loss Characteristics
NFM3DP
(50Ω - 50Ω)
0
(1) Input
Output (3)
* no polarity.
GND
Insertion Loss (dB)
20
40
60
(2)
80
100
0.1
0.5
1
5
10
Frequency (MHz)
50
100
500
1000
■ Notice (Rating)
2.0
Rated Current (A)
When the NFM3DP series is used in operating temperatures
exceeding +85°C, derating of current is necessary.
Please apply the derating curve shown below according to
the operating temperature.
0.5
0
-55
85
125
Operating Temperature (˚C)
91
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NFM41P Series
1.0±0.2
The chip "EMIFIL" NFM41P series consists of 3-terminal
structure SMT components. These components are able to
be applied to large current DC power lines. NFM41P
series are suitable in noise suppression in DC lines
where relatively large currents operate.
1.5±0.3
4.5±0.3
1.6±0.3
(2)
■ Features
0.3
NFM41P
(2)
0.4±0.3
(in mm)
■ Applications
1. Personal computers, word processors and peripherals
2. Telephones, PPCs, communications equipment, etc.
3. Digital TVs, VCRs
4. Telecommunications equipment
Part Number
NFM41PC204F1H3
Capacitance
(µF)
Rated Voltage
(Vdc)
Rated Current
(A)
Insulation Resistance
(M ohm)
Operating Temperature Range
(°C)
0.2 +80%,-20%
50
2
1000 min.
-55 to 85
■ Equivalent Circuit
■ Insertion Loss Characteristics
NFM41P
(50Ω - 50Ω)
0
20
(1) Input
Output (3)
* no polarity.
GND
(2)
Insertion Loss (dB)
2
(3)
0.3± 0.2
(1)
1. Large rated current (2A) is suitable for the
application in DC power lines.
2. High electrostatic capacitance and remarkable high
frequency performance are effective for immunity
against surge noise and pulse noise.
40
60
80
100
1
5
10
50
Frequency (MHz)
92
100
500
1000
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sheet for product specifications before ordering.
On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIGUARDr (EMIFILr with Varistor Function)
Part Numbering
Chip EMIGUARDr (EMIFILr with Varistor Function)
(Global Part Number)
VF
M
41 R
q
w
e r t
N
222
N
1C
y
u
i o
yCapacitance
qProduct ID
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
Product ID
VF
L
Chip EMIGUARDr
wStructure
uCapacitance Tolerance
Code
Structure
Code
Capacitance Tolerance
M
Monolithic Type
N
±30%
eDimensions (LgW)
iRated Voltage
Code
Dimensions (LgW)
EIA
Code
Rated Voltage
41
4.5g1.6mm
1806
1C
16V
rOuter Electrode
3
oPackaging
Code
Outer Electrode
Code
Packaging
R
Standard Type
L
Plastic Taping (ø180mm Reel)
B
Bulk
tCategory
Code
Category
N
Standard
93
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip EMIGUARDr (EMIFILr with Varistor Function) VFM41R Series
■ Features
The VFM41R series is a chip type EMI filter with
varistor function. Its 3-terminal structure provides
high performance by suppressing high frequency noise
and absorbing surge noise. VFM41R can meet both EMI
noise and surge noise.
0.4±0.3
1.4±0.3
0.4±0.3
(1)
1.25±0.3
(2)
(3)
1.6±0.3
(2)
4.5±0.3
■ Applications
in mm
ESD surge protection and EMI suppression in various
electric equipment such as car electronic equipment,
portable electronic equipment, telecommunication
terminals, office automation equipment, home
automation equipment or factory automation equipment
Part Number
VFM41RN222N1C
Varistor Voltage
(V)
Clumping Voltage
(max.)
Capacitance
(pF)
Rated
Current
(mA)
Peak
Pulse Current
(A)
Operating
Temperature Range
(°C)
16
27 +5V,-5V
50V(V2A)
2200 +30%,-30%
200
50
-40 to 125
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics
(50Ω - 50Ω)
0
20
(1) Input
Output (3)
GND
(2)
No polarity
Insertion Loss (dB)
3
Rated
Voltage
(Vdc)
40
60
80
1
5
10
50
Frequency (MHz)
94
100
500
1000
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EMI Suppression Effect
Noise Suppression Effect of VFM Series
!Impulse Noise Absorption
[TESTING CIRCUIT]
(Comparison between VFM41R and Standard 2-terminal Varistor)
Oscilloscope
Sample
50Ω
Attenuator
Impulse Generator
(Zo=50Ω)
(Pulse Width 100ns)
EMI Suppression Effect
Voltage Waveform
Output Voltage [V]
Type of Filter
Description
The Lower chart is a frequency
response of the upper chart. Note that
the scale of original wave chart and that
of the output wave chart is different
because of circumstances.
2225
1675
1125
575
25
–50
0
50
100
Time [ns]
150
200
Frequency Spectrum
Output Voltage [dBm]
Original Waveform
30
20
10
3
0
–10
–20
10MHz
990MHz
Frequency [LINEAR]
Voltage Waveform
The commonly used
2-terminal varistor
Output Voltage [V]
∗ Final voltage falls below 0V because of the effect of signal reflection.
300
200
Output Voltage [dBm]
174V peak
100
0
–100
–50
Frequency Spectrum
The rising part of pulse, which is mostly
consists of high-frequency element,
remains because inductance in
electrodes becomes obstacle.
0
50
100
Time [ns]
150
200
30
20
10
0
–10
–20
10MHz
990MHz
Voltage Waveform
Output Voltage [V]
Frequency [LINEAR]
Chip Solid EMIGUARDr VFM41R
200
100
Output Voltage [dBm]
76V peak
0
–100
–50
Frequency Spectrum
The 3-terminal structure minimizes the
effect of inductance in electrodes and
pulse rising noise is absorbed
completely.
300
0
50
100
Time [ns]
150
200
30
20
10
0
–10
–20
10MHz
990MHz
Frequency [LINEAR]
95
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Common Mode Choke Coils
Part Numbering
Chip Common Mode Choke Coils
(Global Part Number)
DL
W
21 S
q
w
e r t
N
371 S
y
Q
2
L
u i o !0
qProduct ID
tCategory
Product ID
DL
Chip Common Mode Choke Coils
wStructure
Code
Category
N
Standard Type
yImpedance
Code
Typical impedance at 100MHz is expressed by three figures. The
unit is in ohm (Ω). The first and second figures are significant
digits, and the third figure expresses the number of zeros which
follow the two figures.
Structure
W
Winding Type
M
Monolithic Type
P
Film Type
uCircuit
eDimensions (LgW)
Ex.)
Code
Code
Dimensions (LgW)
EIA
S
11
1.25g1.0mm
0504
M
21
2.0g1.2mm
0805
31
3.2g1.6mm
1206
2H
2.5g2.0mm
1008
Code
5A
5.0g3.6mm
2014
L
5B
5.0g5.0mm
2020
Q
Circuit
Standard Type
Series
except DLP31D
DLP31D
iFeatures
Features
Expressed by a letter.
Z
4
rType
oNumber of Signal Line
Code
Type
S
Magnetically Shielded One Circuit Type
Code
D
Magnetically Shielded Two Circuit Type
2
Two Lines
H
Open Magnetic One Circuit Type
3
Three Lines
G
Magnetically Monolithic Type (sectional winding)
4
Four Lines
Number of Signal Line
!0Packaging
96
Code
Packaging
Series
K
Plastic Taping (ø330mm Reel)
DLW5AH/DLW5BS
L
Plastic Taping (ø180mm Reel)
All series
B
Bulk
All series
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Common Mode Choke Coils Film Type DLP11S/DLP31S Series
DLP11S Series
0.3±0.1
0.82±0.1
■ Features
1. Small size and tight dimensional tolerance
SIZE : 1.25x1.0x0.82mm tolerance : +/-0.1mm
2. Useful impedance line-up 90/120/160/200ohm
3. High noise suppression for high frequency
4. No distortion to high-speed signal transmission
0.55±0.1
■ Applications
Common mode noise suppression of high speed
differential signal lines for USB, IEEE1394, LVDS.
1. Note PC, PDA
2. Cellular phone
3. Digital Still Camera, Digital Video Camera
(3)
1.25±0.1
(1)
0.25 +0.1
-0.05
(4)
(2)
(in mm)
1.0±0.1
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
DLP11SN900SL2
90 ±20%
160
5
100 min.
12.5
1.4 ±25%
DLP11SN121SL2
120 ±20%
140
5
100 min.
12.5
2.0 ±25%
DLP11SN161SL2
160 ±20%
120
5
100 min.
12.5
2.7 ±25%
DLP11SN201SL2
200 ±20%
130
5
100 min.
12.5
2.5 ±25%
Part Number
Withstand Voltage DC Resistance
(Vdc)
(ohm)
Operating Temperature Range : -40°C to 85°C
4
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
10000
Common mode
DLP11SN201SL2
1000
(2)
Impedance (Ω)
(1)
DLP11SN161SL2
DLP11SN121SL2
100
DLP11SN900SL2
DLP11SN900SL2
DLP11SN121SL2
10
(3)
(4)
DLP11SN201SL2
1
No polarity
DLP11SN161SL2
Differential mode
1
10
100
1000
10000
Frequency (MHz)
97
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(4)
(1)
(3)
(2)
1.15±0.15
0.3±0.2
DLP31S series is chip common mode choke coil that
realizes high impedance in a small size with ferrite
material technology and film processing technology.
DLP31S series has excellent performance at high
frequency range. It is suitable for differential
signal line application.
1.6±0.15
DLP31S Series
■ Features
(2.1)
1. Small size, low profile, SMD. 3.2x1.6x1.15mm
(tolerance: 0.15mm)
2. High common mode impedance (550ohm at
100MHz typ.) in small size.
3. DLP31S suppresses high frequency noise that was
unable to be suppresses with existing common mode
choke coils. Suitable for differential signal lines
as like USB, because DLP31S does not provide
distortion to high speed signal transmission due to
its high coupling (coupling coefficient: 0.98 min.)
3.2±0.15
0.7±0.2
(in mm)
■ Applications
1. USB lines of PC, peripheral equipment.
2. LVDS lines of Note-PC, LCD.
3. USB lines of digital AV equipment such as digital
cameras.
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
DLP31SN121SL2
120 ±20%
100
16
100 min.
40
2.0 max.
DLP31SN221SL2
220 ±20%
100
16
100 min.
40
2.5 max.
DLP31SN551SL2
550 ±20%
100
16
100 min.
40
3.6 max.
Part Number
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
10000
(1)
1000
(2)
Impedance (Ω)
4
Withstand Voltage DC Resistance
(Vdc)
(ohm)
DLP31SN551SL2
DLP31SN221SL2
DLP31SN121SL2
100
(Common mode)
10
(3)
(4)
No polarity
DLP31SN121SL2
DLP31SN221SL2
DLP31SN551SL2
(Differential mode)
1
1
10
100
Frequency (MHz)
98
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Common Mode Choke Coils Arrays Film Type DLP31D Series
DLP31D Series
0.4±0.2
1.15±0.15
DLP31D series is chip common mode choke coil array
which realizes high coupling and high impedance in a
small size with ferrite material technology and thin
film processing technology.
0.8±0.1
0.4±0.2
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
1.6±0.15
■ Features
0.3±0.2
1. 2 components are included in 3.2x1.6mm
2. Thin type 1.15mm
3. High common mode Impedance characteristics
(max. 440ohm, at 100MHz)
4. The DLP31D can suppress common mode noise without
damage to signal wave.
3.2±0.15
(in mm)
■ Applications
Common mode noise suppression of high speed
differential signal lines for USB, IEEE1394, LVDS.
1. Main board of personal computer, note PC
2. Printer, Scanner
3. LCD monitor
4. Game equipment
5. PC peripheral equipment
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
DLP31DN900ML4
90 ±20%
160
10
100 min.
25
1.1 max.
DLP31DN131ML4
130 ±20%
120
10
100 min.
25
1.6 max.
DLP31DN201ML4
200 ±20%
100
10
100 min.
25
2.2 max.
DLP31DN321ML4
320 ±20%
80
10
100 min.
25
3.5 max.
DLP31DN441ML4
440 ±20%
70
10
100 min.
25
4.3 max.
Part Number
Withstand Voltage DC Resistance
(Vdc)
(ohm)
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
10000
(1)
(2)
(3)
(4)
Common mode
DLP31DN471SL4
Impedance (ohm)
1000
DLP31DN361SL4
DLP31DN201SL4
DLP31DN161SL4
100
DLP31DN900SL4
10
(5)
(6)
(7)
No polarity
(8)
DLP31DN900SL4
DLP31DN161SL4
DLP31DN201SL
DLP31DN361SL4
DLP31DN471SL4
Differential mode
1
1
10
100
1000
Frequency (MHz)
99
4
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
(1)
(3)
(5)
(4)
(6)
0.3±0.2
DLM2HG Series is a high quality noise suppression
filter for headphone lines of high quality digital
music equipment.
2.5±0.2
Chip Common Mode Choke Coils Monolithic Type DLM2HG Series
■ Features
(2)
1. Low distortion in audio signal, Low crosstalk.
2. Effective in noise suppression both of common mode
and of differential mode.
3. Small size, low profile, SMD 2.5x2.0x1.2mm
1.2±0.2
2.0±0.2
0.4±0.2
■ Application
0.8±0.1
(in mm)
1. Headphone lines of digital music equipment such as
DVD, MD player.
2. Headphone lines of Note-PC, PDA
Part Number
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
600 ±25%
100
16
100 min.
DLM2HGN601SZ3
Withstand Voltage DC Resistance
(Vdc)
(ohm)
100
0.40 max.
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
10000
4
(1)
(3)
(5)
Differential Mode
Impedance (Ω)
1000
100
Common Mode
10
(2)
(4)
(6)
No polarity
1
1
100
10
100
Frequency (MHz)
1000
10000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Chip Common Mode Choke Coils Winding Type DLW21S/DLW21H/DLW31S Series
DLW21S Series
1. DLW21S series realizes small size and low profile.
2.0x1.2x1.2mm
2. High common mode impedance at high frequency
effects excellent noise suppression performance.
3. Various common mode impedance items of 67 to 370ohm
can be used, considering noise level and signal
frequency.
4. DLW21S series enables noise suppression for
differential signal line without distortion in
high speed signal transmission due to its high
coupling.
5. Lead is not contained in the product.
6. Small dimension enables higher density packaging.
(0.17)
1.2±0.2
■ Features
2.0±0.2
1.2±0.2
(2)
(4)
(3)
(0.45)
(0.45)
(0.4)
(0.4)
(1)
DLW21S
(in mm)
■ Applications
1. USB lines of PC, Peripheral equipment.
2. LVDS lines of Note-PC, LCD.
3. USB lines of Small digital AV equipment such as
digital camera.
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
DLW21SN670SQ2
67 ±25%
400
50
10 min.
125
0.25 max.
DLW21SN900SQ2
90 ±25%
330
50
10 min.
125
0.35 max.
DLW21SN121SQ2
120 ±25%
370
50
10 min.
125
0.30 max.
DLW21SN181SQ2
180 ±25%
330
50
10 min.
125
0.35 max.
DLW21SN261SQ2
260 ±25%
300
50
10 min.
125
0.40 max.
DLW21SN371SQ2
370 ±25%
280
50
10 min.
125
0.45 max.
Part Number
Withstand Voltage DC Resistance
(Vdc)
(ohm)
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
DLW21S
DLW21S
10000
DLW21SN371SQ2
DLW21SN261SQ2
DLW21SN181SQ2
DLW21SN121SQ2
DLW21SN900SQ2
DLW21SN670SQ2
Common mode
(2)
(1)
Impedance (Ω)
1000
100
10
Differential mode
DLW21SN371SQ2
DLW21SN261SQ2
DLW21SN181SQ2
DLW21SN121SQ2
DLW21SN900SQ2
DLW21SN670SQ2
(3)
(4)
1
No polarity
0.1
1
10
100
1000
Frequency (MHz)
101
4
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0.9±0.1
■ Features
1. Small size and low profile (2.0x1.2x0.9mm).
Excellent noise suppression for sets of small and
thin size.
2. High common mode impedance at high frequency
effects excellent noise suppression performance.
3. Various common mode impedance from 67 to 180 ohm
can be used, selected depending on noise level
and signal frequency.
4. Suitable for differential signal line like USB2.0,
IEEE1394 and LVDS, because DLW21H does not provide
distortion to high speed signal transmission due
to its high coupling. (USB2.0: DLW21HN900SQ2)
5. Lead is not contained in the product.
6. Small dimension enables higher density mounting.
(0.17)
DLW21H Series
2.0±0.2
1.2±0.2
(0.45)
(0.45)
(1)
(2)
Electrode
(0.4)
(0.4)
() : Reference Value
DLW21H
(4)
(3)
(in mm)
■ Applications
Common mode noise suppression of signal lines in high
speed and high density digital equipment such as
personal computers and peripherals and
telecommunication equipment.
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
67 (Typ.)
330
50
10 min.
125
0.35 max.
DLW21HN900SQ2
90 (Typ.)
330
50
10 min.
125
0.35 max.
DLW21HN121SQ2
120 (Typ.)
280
50
10 min.
125
0.45 max.
DLW21HN181SQ2
180 (Typ.)
250
50
10 min.
125
0.50 max.
Part Number
DLW21HN670SQ2
Operating Temperature Range : -40°C to 85°C
DLW21H
DLW21H
10000
DLW21HN181SQ2
Common mode
1000
(2)
(1)
Impedance (Ω)
4
Withstand Voltage DC Resistance
(Vdc)
(ohm)
DLW21HN121SQ2
DLW21HN900SQ2
100
DLW21HN670SQ2
10
DLW21HN181SQ2
(3)
(4)
DLW21HN121SQ2
1
Differential mode
No polarity
0.1
1
DLW21HN900SQ2
DLW21HN670SQ2
10
100
Frequency (MHz)
102
1000
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DLW31S Series
1. DLW31S realizes small size and low profile.
3.2x1.6x1.9mm.
2. High common mode impedance at high frequency
effects excellent noise suppression performance.
3. Various common mode impedance items of 90 to
2200ohm can be used, considering noise level and
signal frequency.
4. DLW31S series enables noise suppression for
differential signal line without distortion in high
speed signal transmission due to its high coupling.
5. Lead is not contained in the product.
6. Small dimension enables higher density packaging.
1.9±0.2
0.25±0.1
■ Features
1.6±0.2
3.2±0.2
(2)
(4)
(3)
(0.6)
(0.6)
(0.6)
(0.6)
(1)
DLW31S
(in mm)
■ Applications
1. USB lines of PC, Peripheral equipment.
2. LVDS lines of Note-PC, LCD.
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
DLW31SN900SQ2
90 (Typ.)
370
50
10 min.
125
0.3 max.
DLW31SN161SQ2
160 (Typ.)
340
50
10 min.
125
0.4 max.
DLW31SN261SQ2
260 (Typ.)
310
50
10 min.
125
0.5 max.
DLW31SN601SQ2
600 (Typ.)
260
50
10 min.
125
0.8 max.
DLW31SN102SQ2
1000 (Typ.)
230
50
10 min.
125
1.0 max.
DLW31SN222SQ2
2200 (Typ.)
200
50
10 min.
125
1.2 max.
Part Number
Withstand Voltage DC Resistance
(Vdc)
(ohm)
Operating Temperature Range : -40°C to 85°C
4
■ Equivalent Circuit
■ Impedance-Frequency Characteristics
DLW31S
DLW31S
10000
DLW31SN222SQ2
Common mode
DLW31SN102SQ2
DLW31SN601SQ2
DLW31SN261SQ2
DLW31SN161SQ2
DLW31SN900SQ2
1000
(2)
Impedance (Ω)
(1)
(3)
(4)
No polarity
100
10
DLW31SN222SQ2
DLW31SN102SQ2
DLW31SN601SQ2
DLW31SN261SQ2
DLW31SN161SQ2
DLW31SN900SQ2
Differential mode
1
0.1
1
10
100
1000
Frequency (MHz)
103
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
*
■ Features
(W) 3.6±0.3
(1)
0.5 min.
(L) 5.0±0.3
(2)
1.7 1.3 1.7
±0.3 ±0.3 ±0.3
Starting position of wiring should
* covered
with resin.
DLW5AH Series
(4)
(3)
1.3 0.9 1.3
±0.3 ±0.3 ±0.3
0.45 min.
in mm
■ Applications
1. DC power lines in AC adapter of Portable equipment.
2. DC power lines of DC-DC converter, battery charger.
(T) 4.5 max.
1. High impedance (max. of 4000ohm at 100MHz : DLW5AH)
enables great noise suppression.
2. Large rated current (max. of 5A) is suitable for
power line use.
3. DLW5AH/BS series does not damage high speed signal
due to high coupling common mode choke coil
structure.
4. Automatic mounting can be applied.
*
0.45 min.
The DLW5AH/5BS series is high performance wound type
chip common mode choke coil.
(T) 4.3 max.
Chip Common Mode Choke Coils Winding Type for Large Current DLW5AH/DLW5BS Series
3.6±0.3
(W) 5.0±0.3
(2)
(4)
(3)
1.7 1.3 1.7
±0.3 ±0.3 ±0.3
(1)
0.5 min.
(L) 5.0±0.3
DLW5BS Series
1.3 0.9 1.3
±0.3 ±0.3 ±0.3
in mm
4
Common Mode Impedance
(at 100MHz, 20 degree C)
(ohm)
Part Number
Rated Current
(mA)
Rated Voltage
(Vdc)
Insulation Resistance
(M ohm)
Withstand Voltage DC Resistance
(Vdc)
(ohm)
DLW5AHN402SQ2
4000 (Typ.)
200
50
10 min.
125
3.0 max.
DLW5BSN191SQ2
190 (Typ.)
5000
50
10 min.
125
0.02 max.
DLW5BSN351SQ2
350 (Typ.)
2000
50
10 min.
125
0.04 max.
DLW5BSN102SQ2
1000 (Typ.)
1500
50
10 min.
125
0.06 max.
DLW5BSN152SQ2
1500 (Typ.)
1000
50
10 min.
125
0.1 max.
DLW5BSN302SQ2
3000 (Typ.)
500
50
10 min.
125
0.3 max.
Operating Temperature Range : -25°C to 85°C
■ Equivalent Circuit
■ Impedance-Frequency (Typical)
100000
(2)
Common mode
DLW5AHN402SQ2
DLW5BSN302SQ2
DLW5BSN152SQ2
DLW5BSN102SQ2
DLW5BSN351SQ2
DLW5BSN191SQ2
10000
Impedance (Ω)
(1)
1000
100
DLW5AHN402SQ2
DLW5BSN302SQ2
DLW5BSN152SQ2
(3)
(4)
No polarity
DLW5BSN102SQ2
DLW5BSN351SQ2
DLW5BSN191SQ2
Differential mode
10
1
10
100
Frequency (MHz)
104
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Ferrite Beads Inductors
Part Numbering
Ferrite Beads Inductors
(Global Part Number)
R1 M 2
B
BL
02
RN
2
q
w
e
r t y u i
qProduct ID
yLead Length, Space
Product ID
BL
Ferrite Beads Inductors
wSeries
Code
Lead Length, Space
A
Bulk, Axial Type, 3.7mm
D
Bulk, Axial Type, 45.0mm
E
Taping Axial Type, 26.0mm
Code
Series
F
Taping, Axial Type, 52.0mm
01
Beads ø3.6
J
Bulk, Radial Type, 5.0mm
02
Beads ø3.4
M
Bulk, Radial Type, 10.0mm
03
Beads ø2.3 max.
N
Taping, Radial Type, 16.5mm
P
Taping, Radial Type, 18.5mm
Q
Taping, Radial Type, 20.0mm
eBeads Core Material
Code
Beads Core Material
RN
Standard Type
Numbers of Beads Core
1
1
2
2
BL01
BL02/BL03
uLead Diameter
rNumbers of Beads Core
Code
Series
Code
Lead Diameter
1
ø0.60mm
2
ø0.65mm
tLead Type
Code
Lead Type
A1
Axial Straight Type
A2
Axial Crimp Type
R1
Radial Straight Type
R2
Radial Straight and wave formed Leads Type
R3
Radial Crimp Type
5
iPackaging
Code
Packaging
A
Ammo Pack
B
Bulk
J
Paper Reel (ø320mm)
Series
BL01/BL02/BL03
All series
BL01
105
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Ferrite Beads Inductors BL01/BL02/BL03 Series
■ Features
ø3.6±0.15
BL01/02/03 series are ferrite beads with lead wires to
produce a high frequency loss for suppression of
noise. Simple construction and easy-to-use.
Effective for low impedance circuits such as power
supplies and grounds. Effective also for preventing
overshoot and undershoot the digital signal in clocks
or the like, and suppressing the higher harmonic wave.
Suitable for prevention of abnormal oscillation at
high frequency amplifying circuit.
ø0.65
∗
20 min.
∗
5.0±0.3
20 min.
45 min.
∗Coating extending on leads : 1.5 max.
BL01RN1A1D2B
(in mm)
7.5 max.
∗
∗
∗
7.5 max.
15.0 min.
∗
3.7±1.0
ø0.65
ø3.4±0.2
10.0±1.0
ø3.6±0.15
10±1.0
ø0.65
5.0±0.8
BL02RN1R2M2B
BL01RN1A2A2B
5.0±0.3
∗Coating extending on leads : 1.5 max.
∗There is excess bond stick on the wire.
(in mm)
9.0max
8.0 max.
15.0min
7.5max
15.0 min.
12.0 max.
∗
10.0±1.0
5.0±0.8
ø0.65
5.0±1.0
BL02RN1R3J2B
3.4±0.2
ø3.4±0.2
∗
5
φ0.65
5.0±0.8
BL02RN2R1M2B
∗There is excess bond stick on the wire.
(in mm)
(in mm)
2.3max
8.3max
ø3.4±0.2
15.0min
15.0 min.
12.0 max.
6.5max
9.0 max.
ø0.65
5.0±0.8
φ0.60
BL03RN2R1M1B
(in mm)
106
10.0±1.0
5.0±1.0
5.0±0.8
BL02RN2R3J2B
(in mm)
(in mm)
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Rated Current
(A)
Operating
Temperature Range
(°C)
BL01RN1A1D2B
7
-40 to 85
BL01RN1A1E1A
6
-40 to 85
BL01RN1A1F1J
6
-40 to 85
BL01RN1A2A2B
7
-40 to 85
BL02RN1R2M2B
7
-40 to 85
BL02RN1R2N1A
6
-40 to 85
BL02RN1R2P1A
6
-40 to 85
BL02RN1R2Q1A
6
-40 to 85
BL02RN1R3J2B
7
-40 to 85
BL02RN1R3N1A
6
-40 to 85
BL02RN2R1M2B
7
-40 to 85
BL02RN2R1N1A
6
-40 to 85
BL02RN2R1P1A
6
-40 to 85
BL02RN2R1Q1A
6
-40 to 85
BL02RN2R3J2B
7
-40 to 85
BL02RN2R3N1A
6
-40 to 85
BL03RN2R1M1B
6
-40 to 85
BL03RN2R1N1A
6
-40 to 85
BL03RN2R1P1A
6
-40 to 85
BL03RN2R1Q1A
6
-40 to 85
Part Number
■ Equivalent Circuit
(Resistance element becomes dominant
at high frequencies.)
5
■ Impedance-Frequency Characteristics
BL02RN1
160
140
140
120
120
100
100
Impedance (Ω)
Impedance (Ω)
BL01RN1
160
80
Z
60
R
80
Z
60
R
40
40
X
X
20
20
0
0
0.5
1
2
5
10
20
50
Frequency (MHz)
100
200
500
1000
0.5
1
2
5
10
20
50
100
200
500
1000
Frequency (MHz)
Continued on the following page.
107
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Continued from the preceding page.
■ Impedance-Frequency Characteristics
BL03RN2
160
140
140
120
120
100
Z
80
Impedance (Ω)
Impedance (Ω)
BL02RN2
160
R
60
100
80
Z
60
R
X
40
40
X
20
20
0
0
0.5
1
2
5
10
20
50
Frequency (MHz)
5
108
100
200
500
1000
0.5
1
2
5
10
20
50
Frequency (MHz)
100
200
500
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Disc Type EMIFILr
Part Numbering
Disc Type EMIFILr
(Global Part Number)
DS
S
H
B3
2E
271 Q55
q
w e r
t
y
u
9
i
B
o
qProduct ID
tTemperature Characteristics
Product ID
DS
Code
Capacitance Change
B3
±10% (Temperature Range : -25˚C to +85˚C)
Three-terminals Capacitor
wStructure
C5
±22% (Temperature Range : -25˚C to +85˚C)
D3
+20/-30% (Temperature Range : -25˚C to +85˚C)
Code
Structure
E3
+20/-55% (Temperature Range : -25˚C to +85˚C)
N
No Ferrite Beads Type
E5
+22/-56% (Temperature Range : -25˚C to +85˚C)
S
Built-in Ferrite Beads Type
F3
+30/-80% (Temperature Range : -25˚C to +85˚C)
T
with Ferrite Beads Type
Z8
+30/-85% (Temperature Range : -10˚C to +60˚C)
Code
Style
Code
Rated Voltage
6
Diameter 8.0mm Type
1C
16V
9
Diameter 9.5mm Type
1H
50V
2A
100V
2E
250V
eStyle
yRated Voltage
rCategory
Code
Category
N
for General Use
H
for Heavy-duty
uCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
iLead Type/oPackaging
Code
Lead Type
Q55B
Q50B
Q52B
Straight
Lead Length* (in mm)
All series
4.0±0.5
DST9N/H
4.0±0.5
Q56B
6.0±1.0
T51B
Incrimp
4.0±0.5
20.0±1.0
Q92J
16.5±1.0
Q91A
Straight
Q93A
18.5±1.0
U31A
Incrimp
DSS9N/H, DST9N
Paper Reel (ø320mm)
16.5±1.0
18.5±1.0
DSS9N/H
DSp6, DSN9N/H
20.0±1.0
16.5±1.0
5
DSN6/9, DSS6/9
DSS6N
18.5±1.0
Q92A
U21A
Bulk
25.0 min.
Q91J
Q93J
DST9N
6.0±1.0
Q54B
T41B
Series
Packaging
25.0 min.
Ammo Pack
All series except DSS9N/H
DSS6N
*Lead Distance between Reference and Bottom Planes except Bulk.
109
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Disc Type EMIFILr DSN6/DSS6 Series
2.54 max.
7.0 max.
■ Features
8.0 max.
DS_6 is comnpact, high performance lead type EMI
suppression filter which can be mounted 2.54mm pitch.
Its 3-terminal structure enables nice high
frequency performance.
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
I
2.5±0.5
5.0±0.5
ø0.6
DSN6_Q55B Series
GND
(in mm)
2.54 max.
8.0 max.
2.54 max.
8.0 max.
*1
7.0 max.
*1
10.0 max.
*2
*2
I
T52 Type : 25.0 min.
T41 Type : 4.0±0.5
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
2.5±0.5
I
I
2.5±0.5
5.0±0.5
5.0±0.5
ø0.6
DSS6_T51B Series
Incrimp Type
ø0.6
GND
DSS6_Q55B Series
Straight Type
(in mm)
*1 There may be a hole on the top of ferrite beads,
which cause no characteristics deterioration.
*2 Bottom of the ferrite beads may not be level with each other.
GND
(in mm)
*1 There may be a hole on the top of ferrite beads,
which cause no characteristics deterioration.
*2 Bottom of the ferrite beads may not be level with each other.
DSN6 Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSN6NC51H220
22 +20%,-20%
50
6
-25 to 85
DSN6NC51H330
33 +20%,-20%
50
6
-25 to 85
DSN6NC51H470
47 +20%,-20%
50
6
-25 to 85
DSN6NC51H101
100 +20%,-20%
50
6
-25 to 85
DSN6NC51H271
270 +20%,-20%
50
6
-25 to 85
DSN6NC51H102
1000 +20%,-20%
50
6
-25 to 85
DSN6NC51H222
2200 +20%,-20%
50
6
-25 to 85
DSN6NZ81H103
10000 +80%,-20%
50
6
-25 to 85
Part Number
5
Please refer to Part Numbering for Type and Length of Lead.
110
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■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
1
2
8
Insertion Loss (dB)
20
7
6
5
4
3
1 : 22pF
2 : 33pF
3 : 47pF
4 : 100pF
5 : 270pF
6 :1000pF
7 : 2200pF
8 : 10000pF
40
60
80
GND
100
No polarity
120
0.1
1
10
100
1000
Frequency (MHz)
Built-in Ferrite Beads DSS6 Series Incrimp Type
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSS6NC52A220
22 +20%,-20%
100
6
-25 to 85
DSS6NC52A330
33 +20%,-20%
100
6
-25 to 85
DSS6NC52A470
47 +20%,-20%
100
6
-25 to 85
DSS6NC52A101
100 +20%,-20%
100
6
-25 to 85
DSS6NC52A151
150 +20%,-20%
100
6
-25 to 85
DSS6NC52A221
220 +20%,-20%
100
6
-25 to 85
DSS6NC52A271
270 +20%,-20%
100
6
-25 to 85
DSS6NC52A471
470 +20%,-20%
100
6
-25 to 85
DSS6NC52A102
1000 +20%,-20%
100
6
-25 to 85
DSS6NE52A222
2200 +80%,-20%
100
6
-25 to 85
DSS6NZ82A103
10000 +30%,-30%
100
6
-25 to 85
DSS6NF31C223
22000 +80%,-20%
16
6
-25 to 85
Part Number
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
0
1
2
Insertion Loss (dB)
20
GND
12
11
10
9
8
5
4
3
1 : 22pF
2 : 33pF
3 : 47pF
4 : 100pF
5 : 150pF
6 : 220pF
7 : 270pF
8 : 470pF
9 : 1000pF
10 : 2200pF
11 : 10000pF
12 : 22000pF
40
7 6
60
80
100
No polarity
120
0.1
1
10
100
1000
Frequency (MHz)
111
5
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Built-in Ferrite Beads DSS6 Series Straight Type
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSS6NC52A220
22 +20%,-20%
100
6
-25 to 85
DSS6NC52A330
33 +20%,-20%
100
6
-25 to 85
DSS6NC52A470
47 +20%,-20%
100
6
-25 to 85
DSS6NC52A101
100 +20%,-20%
100
6
-25 to 85
DSS6NC52A151
150 +20%,-20%
100
6
-25 to 85
DSS6NC52A221
220 +20%,-20%
100
6
-25 to 85
DSS6NC52A271
270 +20%,-20%
100
6
-25 to 85
DSS6NC52A471
470 +20%,-20%
100
6
-25 to 85
DSS6NC52A102
1000 +20%,-20%
100
6
-25 to 85
DSS6NE52A222
2200 +80%,-20%
100
6
-25 to 85
DSS6NZ82A103
10000 +30%,-30%
100
6
-25 to 85
DSS6NF31C223
22000 +80%,-20%
16
6
-25 to 85
Part Number
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
2
1
Insertion Loss (dB)
20
GND
12
11
10
9
8
5 4
3
40
7
60
6
80
100
No polarity
120
0.1
1
10
Frequency (MHz)
5
112
100
1000
1 : 22pF
2 : 33pF
3 : 47pF
4 : 100pF
5 : 150pF
6 : 220pF
7 : 270pF
8 : 470pF
9 : 1000pF
10 : 2200pF
11 : 10000pF
12 : 22000pF
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Disc Type EMIFILr Broad Type DSN9/DSS9/DST9 Series
4.0 max.
9.5 max.
1.5 max.
DS_9 is a basic type EMI suppression filter which can
obtain high insertion loss in a wide frequency range.
Its 3-terminal structure enables nice high frequency
performance. DSS9NP32A222/DSS9NT31H223 are low
distortion type for audio circuits.
10.0 max.
■ Features
2.5±0.5
I
1.0±0.5
5.0±0.5
ø0.65
GND
DSN9N_Q55B
12.0 max.
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
7.5 max.
4.0 max.
1.5 max.
2.5±0.5
I
2.5±0.5
DSS9N_Q55B
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
Ferrite bead
I
2.5±0.5
5.0±0.5
ø0.65
GND
15.5 max.
Ferrite bead
*1
I1
1.5 max.
10.5 max.
9.5 max.
5.0±0.5
(in mm)
1.25±0.5
ø0.65
DST9N_Q55B
GND
(in mm)
*1 Bottom of the ferrite beads may not be level with each other.
Q55 Type : I=25.0 min.
Q52 Type : I1= 6.0±1.0
Q50 Type : I1= 4.0±0.5
(in mm)
DSN9 Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSN9NC52A271
270 +20%,-20%
100
7
-25 to 85
DSN9NC52A222
2200 +20%,-20%
100
7
-25 to 85
DSN9NC51H223
22000 +50%,-20%
50
7
-25 to 85
DSN9NC51C104
100000 +20%,-20%
16
7
-25 to 85
Part Number
5
Rated current is 6A for taping type.
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
270pF
2200pF
Insertion Loss (dB)
20
40
22000pF
100000pF
60
GND
No polarity
80
100
0.01
0.1
1
10
Frequency (MHz)
100
1000
113
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Built-in Ferrite Beads DSS9 Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSS9NC52A220
22 +20%,-20%
100
7
-25 to 85
DSS9NC52A470
47 +20%,-20%
100
7
-25 to 85
DSS9NC52A101
100 +20%,-20%
100
7
-25 to 85
DSS9NC52A271
270 +20%,-20%
100
7
-25 to 85
DSS9NC52A222
2200 +20%,-20%
100
7
-25 to 85
DSS9NP32A222
2200 +20%,-20%
100
7
-25 to 85
DSS9NC51H223
22000 +50%,-20%
50
7
-25 to 85
DSS9NT31H223
22000 +50%,-20%
50
7
-25 to 85
Part Number
Rated current is 6A for taping type.
DSS9NP32A222/DSS9NT31H223 are low distortion types for audio IF circuits.
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
270pF
100pF
47pF
22pF
0 (50Ω - 50Ω)
Insertion Loss (dB)
20
2200pF(DSS9NB32A222)
2200pF(DSS9NP32A222)
40
22000pF(DSS9ND31H223)
22000pF(DSS9NT31H223)
60
80
GND
No polarity
100
0.01
0.1
1
10
100
1000
Frequency (MHz)
With Ferrite Beads DST9 Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DST9NC52A271
270 +20%,-20%
100
7
-25 to 85
DST9NC52A222
2200 +20%,-20%
100
7
-25 to 85
DST9NC51H223
22000 +50%,-20%
50
7
-25 to 85
Part Number
Rated current is 6A for taping type.
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
2200pF
20
270pF
Insertion Loss (dB)
5
22000pF
40
60
GND
80
No polarity
100
0.01
0.1
1
10
Frequency (MHz)
114
100
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Disc Type EMIFILr Heavy-duty Type DSN9H/DSS9H/DST9H Series
4.0 max.
9.5 max.
1.5 max.
DS_9H is a basic type EMI suppression filter which can
obtain high insertion loss in a wide frequency range.
Its three-terminal structure enables nice high
frequency performance. High rated voltage of 250Vdc
and wide operating temperature range from -40 degree C
to 105 degree C are suitable for high reliability
circuits.
10.0 max.
■ Features
2.5±0.5
I
1.0±0.5
5.0±0.5
ø0.65
GND
DSN9H_Q55B
12.0 max.
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
7.5 max.
4.0 max.
1.5 max.
2.5±0.5
I
2.5±0.5
DSS9H_Q55B
I
Q55 Type : 25.0 min.
Q56 Type : 6.0±1.0
Q54 Type : 4.0±0.5
Ferrite bead
I
2.5±0.5
5.0±0.5
ø0.65
GND
15.5 max.
Ferrite bead
*1
1.25±0.5
I1
1.5 max.
10.5 max.
9.5 max.
5.0±0.5
(in mm)
ø0.65
DST9H_Q55B
GND
Q55 Type : I=25.0 min.
Q52 Type : I1= 6.0±1.0
Q50 Type : I1= 4.0±0.5
(in mm)
*1 Bottom of the ferrite beads may not be level with each other.
(in mm)
DSN9H Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSN9HB32E220
22 +20%,-20%
250
6
-40 to 105
DSN9HB32E101
100 +20%,-20%
250
6
-40 to 105
DSN9HB32E271
270 +20%,-20%
250
6
-40 to 105
DSN9HB32E222
2200 +20%,-20%
250
6
-40 to 105
Part Number
5
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
100pF
0
2200pF
22pF
(50Ω - 50Ω)
270pF
Insertion Loss (dB)
20
40
60
80
GND
No polarity
100
120
0.1
1
10
100
1000
Frequency (MHz)
115
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Built-in Ferrite Beads DSS9H Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DSS9HB32E220
22 +20%,-20%
250
6
-40 to 105
DSS9HB32E101
100 +20%,-20%
250
6
-40 to 105
DSS9HB32E271
270 +20%,-20%
250
6
-40 to 105
DSS9HB32E222
2200 +20%,-20%
250
6
-40 to 105
Part Number
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
22pF
100pF
270pF
20
Insertion Loss (dB)
2200pF
40
60
80
GND
No polarity
100
120
0.1
1
10
Frequency (MHz)
100
1000
With Ferrite Beads DST9H Series
Capacitance
(pF)
Rated Voltage
(Vdc)
Rated Current
(A)
Operating Temperature Range
(°C)
DST9HB32E220
22 +20%,-20%
250
6
-40 to 105
DST9HB32E101
100 +20%,-20%
250
6
-40 to 105
DST9HB32E271
270 +20%,-20%
250
6
-40 to 105
DST9HB32E222
2200 +20%,-20%
250
6
-40 to 105
Part Number
Please refer to Part Numbering for Type and Length of Lead.
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
100pF
22pF
20
270pF
Insertion Loss (dB)
5
2200pF
40
60
80
GND
No polarity
100
120
0.1
116
1
10
Frequency (MHz)
100
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Lead Type EMIGUARDr (EMIFILr with Varistor Function)
Part Numbering
Lead Type EMIGUARDr (EMIFILr with Varistor Function)
(Global Part Number)
VF
S
V
D8
1E
221 T51 B
q
w e r
t
y
u
6
i
o
rFeatures
qProduct ID
Product ID
VF
EMIGUARDr Lead Type
Code
Features
V
with Varistor Function
tTemperature Characteristics
wStructure
Code
Structure
Code
Capacitance Change
S
Built-in Ferrite Beads Type
D8
+20/-30% (Temperature Range : -40˚Cb+105˚C)
R
with Resistance
D3
+20/-30% (Temperature Range : -25˚Cb+85˚C)
Code
Style
eStyle
yRated Voltage
3
6
Size is expressed by a figure
Code
Rated Voltage
1E
25V
1B
12V
9
uCapacitance
Expressed by three figures. The unit is in pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures.
iLead Type/oPackaging
Lead Length*
Packaging
25.0mm min.
Bulk
18.5+/-1.0mm
Ammo Pack
Q55B
25.0mm min.
Bulk
Q91J
20.0+/-1.0mm
Code
T51B
U31A
Q92J
Q93J
Lead Type
Incrimp
Straight
16.5+/-1.0mm
Paper Reel (ø320mm)
Series
VFR3/VFS6
VFS9
18.5+/-1.0mm
*Lead Distance between Reference and Bottom Planes except Bulk.
5
117
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Lead Type EMIGUARDr (EMIFILr with Varistor Function) VFR3V/VFS6V/VFS9V Series
for Semiconductor Protection VFR3V Series
■ Features
2.3 max.
The VFR3V series is designed for ESD surge protection
of IC. It efficiently absorbs ESD surges rushed into
IC's I/O terminals.
5.0 max.
8.0 max.
No.1 Pin Indicator
(Surge entrance side)
■ Applications
Elimination of noise and protection of semiconductors
in office equipment, including computers and
peripheral equipment, copy machines, and communication
terminals.
25.0 min.
2.5±0.5
5.0±0.5
(1)
(2)
ø0.45±0.1
(3)
(in mm)
Part Number
VFR3VD31E131
Rated
Voltage
(Vdc)
Varistor Voltage
(Vdc)
Capacitance
(pF)
Rated
Current
(mA)
Peak
Pulse Current
(A)
Operating
Temperature Range
(°C)
25
50 +20%,-20%
130 +20%,-20%
20
15
-25 to 85
Please refer to Part Numbering for Type and Length of Lead.
■ Insertion Loss Characteristics
(50Ω - 50Ω)
0
10
Insertion Loss (dB)
20
30
40
50
60
5
70
118
5
10
100
Frequency (MHz)
1000
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for Signal-Line VFS6V Series
2.54 max.
8.0 max.
10.5 max.
■ Features
The VFS6V series is designed for surge protection of
signal line. It protects electric circuit from surges
such as static electricity and suppresses EMI noise.
Built-in ferrite bead gives excellent EMI suppression.
■ Applications
5.0±0.5
ø0.6
Elimination of noise and protection of electric
circuits in office equipment, including computers and
peripheral equipment, copy machines, and communication
terminals.
VFS6VD81E221
25.0 min.
*2
2.5±0.5
Part Number
*1
GND
(in mm)
*1 There may be a hole on the top of ferrite beads,
which cause no characteristics deterioration.
*2 Bottom of the ferrite beads may not be level with each other.
Rated
Voltage
(Vdc)
Varistor Voltage
(Vdc)
Capacitance
(pF)
Rated
Current
(A)
Peak
Pulse Current
(A)
Operating
Temperature Range
(°C)
25
50 +20%,-20%
220 +20%,-20%
6
100
-40 to 105
Please refer to Part Numbering for Type and Length of Lead.
■ Insertion Loss Characteristics
(50Ω - 50Ω)
Insertion Loss (dB)
0
20
40
60
10.0
100.0
1000.0
Frequency (MHz)
5
119
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for Large-Current VFS9V Series
12.0 max.
1.5 max.
The VFS9V series is designed for surge protection of
the power supply line. It protects electric circuits
from surges such as static electricity and suppresses
EMI noise. Its large capacitance value enables high
insertion loss for EMI noise.
7.5 max.
10.5 max.
■ Features
Ferrite bead
*1
25.0 min.
2.5±0.5
5.0±0.5
2.5±0.5
ø0.65
■ Applications
GND
For circuit protection and noise suppression in
electronics equipment such as computers and DC motors,
and in electronics systems installed in cars such as
car audio equipment and engine controllers.
Part Number
VFS9VD31B223
(in mm)
*1 Bottom of the ferrite beads may not be level with each other.
Rated
Voltage
(Vdc)
Varistor Voltage
(Vdc)
Capacitance
(pF)
Rated
Current
(A)
Operating
Temperature Range
(°C)
12
22 +20%,-20%
22000 +50%,-20%
7
-40 to 100
Rated current: 6A (Taping Type)/7A (Bulk Type)
Please refer to Part Numbering for Type and Length of Lead.
■ Insertion Loss Characteristics
■ Voltage-Current Characteristics
(50Ω - 50Ω)
0
300
20
40
100
60
Current (mA)
Attenuation (dB)
200
80
100
0.1
0.5
1
5
10
50
100
500 1000
−30
−40
−20
−10
0
10
−100
Frequency (MHz)
−200
5
−300
Voltage (V)
120
20
30
40
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EMI Suppression Effect
Noise Suppression Effect of VFR/VFS Series
!Example of IC Protection
[Test Circuit]
" Testing Method
1. Put ESD surge to IC (7404 family) input terminal with
ESD simulator based on IEC 801-2.
2. Check IC's operation.
3. If IC's operation is normal, increase ESD voltage in 1kV
step.
4. Continue above steps 1 to 3 till IC's operation becomes
abnormal.
VFR3V
330Ω
150pF
Test IC
,,,
,,,
ESD Simulator
" Result
(Result)
Breakdown level
[kV]
30min.
Without VFR3V
With use VFR3V
25
20
15
10
5
0
!Example of EMI Suppression Effect
LS
ALS
AS
C
IC’s Family
HC
AC
[Test Circuit]
ANT
Signal
1MHz
F
ACO4
Noise Radiation Cable (50cm)
Shield
Type of Filter
5
Description
EMI Suppression Effect
Before Countermeasures
(No Filters)
Noise Level [dBµV/m]
70
60
50
40
30
20
30
90
150
210
270
330
270
330
Frequency [MHz]
Use VFR3VD31E131T51
Noise Level [dBµV/m]
70
60
50
40
30
20
30
90
150
210
Frequency [MHz]
121
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EMI Suppression
Effect
Noise
Suppression
Effect of VFR/VFS Series
!Features (VFS9V)
Items
Test methods
Overload
1.4 times the varistor voltage (V1) is applied for 5 minutes at room
temperature.
Surge Test (1)
At room temperature. Surges are applied are
105 times every 2 seconds. Then after 1 or 2
hours, the sample is measured.
Rated values
400V
Items
Specifications
Rated Capacitance Change
WithinT15%
0.8Ω
Insulation Resistance
500kΩ min
2W
Rated of Change
in Varistor Voltage V1*
WithinT15%
Voltage Rate
1.30 max
0.47µF
Surge Test (2)
At room temperature. Capacitor
"C" is changed with 70V, then dischanged to
apply the voltage to the sample. Tested once
(resuming JASO A-1).
High
Temperature
Load
At a temperature of 85±3D. The varistor voltage V1 is continuously
applied to the sample for 1000 to 1024 hours.
Then it is left at room temperature, for 4 to 24 hours before measuring.
70V
C
C=110mF
*V1 : Voltage when 1mA is applied
!Pulse-Voltage Breakdown Characteristic (VFS9V)
The VFS9V EMIGUARDr use a self healing varistorcapacitor, so that it can be used under a 500 to 600V surge
which would break conventional disk type EMI filters. As
shown in figure below the EMIGUARDr withstands 2000V
impulses applied 1000 times.
50Ω
50Ω
VFS9V
Residual Rate [%]
100
Capacitance:0.022µF
with varistor function
3-terminal capacitor
Capacitance:0.022µF
with no varistor
function
50
5
V
800ns
Residual ratio
when 1000 pulses
are applied
0
0
500
1000
1500
Pulse Voltage Applied [V]
2000
104
Insulation
resistance
Change rate of
varistor voltage
+10
103
0
102
−10
10
1
−30
0
30
60
Temperature [D]
Change Rate of Varistor Voltage [%]
Insulation Resistance [MΩ]
!Temperature Characteristics of
Varistor Voltage-Insulation Resistance (VFS9V)
90
Continued on the following page.
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EMI Suppression Effect
Noise Suppression Effect of VFR/VFS Series
Continued from the preceding page.
!Noise Absorption Effect of EMIGUARDr
Type of Filter
EMI Suppression Effect
Description
: 200V/div
: 10ns/div
Waveform when EMIGUARDr is not
used.
(Surge from a noise simulator)
: 200V/div
: 10ns/div
Waveform after the noise passed
through EMIGUARDr. Little noise is
recorded.
100
90
80
without EMIGUARDr
20
10
0%
with EMIGUARDr
D
223S
12-22
100
90
80
20
10
0%
!Comparative Data
1. Absorption of quick-rising, high-frequency noise (10ns/div, 100V/div)
Type of Filter
EMI Suppression Effect
Description
2000V
50ns
without Filters
Noise wave applied
As with the 2-terminal capacitor
Conventional varistor
100
90
80
5
20
10
0%
2-terminal capacitor
(with varistor function)
100
90
80
20
10
0%
VFS9V
100
90
80
20
10
0%
The 2-terminal capacitor is influenced
by lead line inductance, leaving behind
some of the rising and falling edges.
The residual noise can cause the
system to malfunction.
The 3-terminal structure eliminates
most of the lead line inductance. This
allows the VFS9V to completely absorb
the rising and falling edges of the
applied pulses.
Continued on the following page.
123
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EMI Suppression
Effect
Noise
Suppression
Effect of VFR/VFS Series
Continued from the preceding page.
2. Absorption of wide-pulse noise (50ns/div, 200V/div)
Type of Filter
EMI Suppression Effect
Description
1300V
200ns
without Filters
Noise wave applied
2-terminal capacitor
100
90
80
In capacitors the voltage of the residual
surge (1300V) is higher than that of the
above example. The wave height is
almost the same as the original.
20
10
0%
3-terminal capacitor
(with ferrite bead)
100
90
80
20
10
0%
VFS9V
100
90
80
20
10
0%
5
124
Conventional EMI filters do not work for
wide-pulse noise because capacitors
are saturated. In this example, the
residual 1200V surge can cause the
system to breakdown.
Bypassing the high voltage to the
ground, voltage can be surppressed.
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Block Type EMIFILr BNX Series
BNX Series
12.0±0.5
13 max.
5.0±0.5
3.5±1.0
0.8
±0.1
ø0.8
18 max.
The block type "EMIFIL" BNX series incorporates
through-type capacitor, monolithic chip capacitors and
bead. The BNX is high performance for use in DC power
circuits.
11.0±0.5
ø0.8
0.6
±0.1
ø0.8
2.5±0.2
■ Features
7.5±0.2
1. The filter enables obtaining high insertion loss in
wide frequency ranges from 0.5MHz to 1GHz.
2. The only one filter block enables noise suppression
of both the positive and negative lines.
3. There are no connection routes in the current
circuits, thus ensuring highly reliable
performance.
2.5±0.2
2.5±0.2
PSG : Power supply ground
CG : Load circuit ground
CB : Load circuit + Bias
CB
CG
BNX002/BNX003
CG
PSG
(in mm)
B
12.0±0.5
13.5 max.
3.5±1.0
Noise elimination from DC power sources in a variety
of switching power sources, engine control units,
digital equipment and computer terminals.
0.8
±0.1
ø1.0
5.0±0.5
■ Applications
18.5 max.
11.0±0.5
ø1.0
ø1.0
0.6
±0.1
2.5±0.2
7.5±0.2
2.5±0.2
2.5±0.2
BNX005-01
PSG : Power supply ground
CG : Load circuit ground
CB : Load circuit + Bias
CB
CG
BNX005
CG
PSG
(in mm)
B
Rated
Voltage
(Vdc)
Withstand
Voltage
(Vdc)
Rated
Current
(A)
Insulation
Resistance (min.)
(M ohm)
Insertion Loss
BNX002-01
50
125
10
100
1MHz to 1GHz:40dB min.(20 to 25°C line impedance=50 ohm)
BNX003-01
150
375
10
100
5MHz to 1GHz:40dB min.(20 to 25°C line impedance=50 ohm)
BNX005-01
50
125
15
100
1MHz to 1GHz:40dB min.(20 to 25°C line impedance=50 ohm)
Part Number
5
Operating Temperature Range : -30°C to 85°C
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
(50Ω - 50Ω)
0
BNX003-01
20
L3
C2
B
L2
CB (2)
C1
CG (4)
(3) PSG
(1)-(4) : Terminal Number
PSG : Power Supply Ground
CG : Circuit Ground
CB
: Circuit+B
Insertion Loss (dB)
L1
(1)
BNX002-01
40
(BNX005-01)
60
80
100
0.001
0.01
0.1
1
10
100
1000
Frequency (MHz)
125
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EMI Suppression
Effect
Noise
Suppression
Effect of BNX Series
!Suppression of DC Side
Ripple of the Switching Power Supply
[Testing Circuit]
BNX002-01
+5V
Switching
Power Supply
Type of Filter
EMI Suppression Effect
CG
Description
High frequency noise, max. 0.5V, can
be seen.
When BNX002 is not used
+5.0V →
50µs/div
0.2V/div
Noise can be almost suppressed by
BNX002.
When BNX002 is used
5
126
+5.0V →
50µs/div
0.2V/div
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Common Mode Choke Coils
Part Numbering
Common Mode Choke Coils
(Global Part Number)
PL
T
q
w e r t
09
H
N 200
y
3R0
u
1
B
yInductance
qProduct ID
Product ID
PL
P
i o !0
Common Mode Choke Coils
wType
Code
Type
T
DC Type
eApplications
Code
Applications
09
for DC Line High-frequency Type
Expressed by three figures. The unit is micro-henry (µH). The first
and second figures are significant digits, and the third figure
expresses the number of zeros which follow the two figures. If
there is a decimal point, it is expressed by the capital letter "R". In
this case, all figures are significant digits. If inductance is less
than 0.1 µH, the inductance code is expressed by a combination
of two figures and the capital letter "N", and the unit of
inductance is nano-henry (nH). The capital letter "N" indicates the
unit of "nH", and also expresses a decimal point. In this case, all
figures are significant digits.
uRated Current
Expressed by three figures. The unit is in amperes (A). A decimal
point is expressed by the capital letter "R". In this case, all figures
are significant digits.
rStructure
Code
Structure
H
Core Horizontal Type
tFeatures
Code
Features
N
General Use
iWinding Mode
Code
Winding Mode
P
Aligned Winding Type
oLead Dimensions
Code
Lead Dimensions
1
5mm
!0Packaging
Code
Packaging
B
Bulk
Series
All series
5
127
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
13 max.
Common Mode Choke Coils (for DC Line) PLT09H Series
The PLT09H series is common mode choke coil for DC
line. It is effective against the common mode noise
that can cause radiative noise in power supply lines
and interface lines. The additional normal mode
inductance enables high suppression effect to
radiation noise.
5±1 8 max.
14 max.
5±0.5
■ Features
1. This is a wide frequency range type, applicable in
applications ranging from a few MHz to several
100MHz.
2. It features a low-profile design.
Soldered
(1)
(2)
(4)
(3)
ø0.6 max.
10±0.5
(in mm)
■ Applications
1. Noise suppression of SW power supply, DC-DC
converter.
2. DC power lines in AC adapter of Portable equipment.
Part Number
Common Mode Inductance
(µH)
Rated Current
(A)
Rated Voltage
(Vdc)
Withstand Voltage
(Vdc)
PLT09HN2003R0P1
20 min.
3
50
125
Operating Temperature Range : -40°C to 85°C
■ Equivalent Circuit
■ Insertion Loss Characteristics (Typical)
0
(1)
(2)
5
(3)
(4)
No polarity
Insertion Loss (dB)
5
10
15
20
25
30
0.1
1
10
Frequency (MHz)
128
100
1000
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Microwave Absorbers
Part Numbering
Microwave Absorber
(Global Part Number)
EA
1026
A
160
M
200
200
q
w
e
r
t
y
u
tUnit of Dimension
qProduct ID
Product ID
EA
Microwave Absorber
One capital lettler expresses Unit of dimension (y) and
Dimensions Length (u).
wSheet Type
Code
Sheet Type
10pp
Iron carbonyl type
2070
Metal Flake Powder (non Halogen type)
2100
Metal Flake Powder (UL certified type)
Code
Unit of Dimension
M
in mm (Standard)
C
in cm (Standard)
Standard shape is a rectangle.
Please contact us for other shapes.
yDimension (Length)
eAdhesive Tape Type
Expressed by 3 digits including the first decimal place.
Code
Adhesive Tape Type
A
Standard tape type
B
Thin Adhesive tape type
L
No tape type
U
UL certified type
rSheet Thickness
uDimension (Width)
Expressed by 3 digits including the first decimal place.
Ex.)
Code
Dimension (Length g Width)
M300150
30.0g15.0 mm
C150100
15.0g10.0 cm
Expressed by 3 digits including the second decimal place in mm.
Ex.)
Code
Sheet Thickness
020
0.20mm
6
129
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On-Board Type (DC) EMI Suppression Filters (EMIFILr)
Microwave Absorbers EA10/EA20/EA21 Series
EA10 Series
■ Features
1. Excellent elasticity and durability with silicon
rubber.
2. Suitable for prevention of abnormal oscillation in
high frequency modules, suppression of spurious
spectra and prevention interference between
circuits.
3. Holds easily in equipment with adhesive tape.
Applicable Frequency
Thickness
(mm)
Flame Resistance
Halogen
Operating Temperature Range
EA1026A100
20.0 GHz (Typ.)
1.0 (Typ.)
-
Halogen Free
-40 to +80 °C
EA1026A160
11.5 GHz (Typ.)
1.6 (Typ.)
-
Halogen Free
-40 to +80 °C
EA1026A180
10.0 GHz (Typ.)
1.8 (Typ.)
-
Halogen Free
-40 to +80 °C
EA1046A180
5.8 GHz (Typ.)
1.8 (Typ.)
UL94V-0
Halogen Free
-40 to +80 °C
EA1075A270
2.5 GHz (Typ.)
2.7 (Typ.)
UL94V-0
Halogen Free
-40 to +80°C
Part Number
■ Refrection Loss
0
Reflection Loss (dB)
5
10
15
EA1026A100
20
25
EA1026A180
EA1075A270
EA1026A160
30
EA1046A180
35
40
0
2
4
6
8
10
12
Frequency(GHz)
6
130
14
16
18
20
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EA20/21 Series
■ Features
1. Magnetically-shielded high-micro and high-loss
characteristics can suppress noise in a wide
frequency band for digital equipment.
2. Thin (0.2mm-1.0mm) and flexible sheet makes easy
handling in assembly process.
3. Holds easily in equipment with adhesive tape.
4. EA20xx series : Non Halogen type
EA21xx series : UL94V-0 certified material is used.
Applicable Frequency
Thickness
(mm)
Flame Resistance
Halogen
Operating Temperature Range
EA2070A020
0.1 - 3.0GHz (Typ.)
0.2 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070A050
0.1 - 3.0 GHz (Typ.)
0.5 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070A100
0.1 - 3.0 GHz (Typ.)
1.0 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070B005
0.1 - 3.0 GHz (Typ.)
0.05 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070B010
0.1 - 3.0 GHz (Typ.)
0.10 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070B013
0.1 - 3.0 GHz (Typ.)
0.13 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070B020
0.1 - 3.0 GHz (Typ.)
0.2 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2070B050
0.1 - 3.0 GHz (Typ.)
0.5 (Typ.)
-
Halogen Free
-40 to +105 °C
EA2100A020
0.1 - 3.0 GHz (Typ.)
0.2 (Typ.)
UL94V-0
-
-40 to +105 °C
EA2100A050
0.1 - 3.0 GHz (Typ.)
0.5 (Typ.)
UL94V-0
-
-40 to +105 °C
EA2100A100
0.1 - 3.0 GHz (Typ.)
1.0 (Typ.)
UL94V-0
-
-40 to +105 °C
EA2100B020
0.1 - 3.0 GHz (Typ.)
0.2 (Typ.)
UL94V-0
-
-40 to +105 °C
EA2100B050
0.1 - 3.0 GHz (Typ.)
0.5 (Typ.)
UL94V-0
-
-40 to +105 °C
EA2100B100
0.1 - 3.0 GHz (Typ.)
1.0 (Typ.)
UL94V-0
-
-40 to +105 °C
Part Number
■ Magnetic Permeability-Reluctance (Typical)
20
16
µ"
12
8
4
0
0.1
1.0
Frequency (GHz)
10
6
131
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Chip EMIFILr !Caution/Notice
■ !Caution (Soldering and Mounting)
Give special attention when mounting chip "EMIFIL"
BLM_P/NFM_P series close to other products that
radiate heat. The excessive heat by other products
may cause deterioration of the insulation resistance
and result in excessive heat or fire.
■ Notice (Storage and Operating Conditions)
< Operating Environment >
Do not use products in a chemical atmosphere such as
chlorine gas, acid or sulfide gas.
< Storage and Handling requirements >
1. Storage Period
BLM/BLA/VFM41R/DLP31S/DLM2HG series should be
used within 6 months, the other series should be
used within 12 months. Solderability should be
checked if this period is exceeded.
2. Storage conditions
(1) Storage temperature : -10 to 40 degree C
Relative humidity : 30 to 70%
Avoid sudden changes in temperature and humidity.
(2) Do not store products in a chemical atmosphere
such as chlorine gas, acid or sulfide gas.
■ Notice (Rating)
Noise suppression levels resulting from MURATA's EMI
suppression filters "EMIFIL" may vary, depending on
the circuits and ICs used, type of noise, mounting
pattern, lead wire length, mounting location, and
other operating conditions. Be sure to check and
confirm in advance the noise suppression effect of
each filter, in actual circuits, etc. before applying
the filter in a commercial-purpose equipment design.
■ Notice (Soldering and Mounting)
< Operating Environment >
Do not use products in a chemical atmosphere such as
chlorine gas, acid or sulfide gas.
< Storage and Handling requirements >
1. Storage Period
Products inspected by Murata over 12 months
ago should be examined prior to use. Date can be
confirmed with inspection No. marked on the
container.
Solderability should be checked if this period is
6
132
exceeded. (NFM41P/55P, VCM series should be used
within 6 months.)
2. Storage conditions
(1) Storage temperature : -10 to 40 C.
Relative humidity : 30 to 70%
Avoid sudden changes in temperature and
humidity.
(2) Do not store products in a chemical atmosphere
such as chlorine gas, acid or sulfide gas.
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Lead Type EMIFILr !Caution/Notice
■ !Caution (Rating)
Do not use products beyond the rated current and the
rated voltage, or deterioration of the insulation
resistance may result in excessive heat or fire.
■ !Caution (Soldering and Mounting)
Mounting holes should be designed as specified in
these specifications. Other design than shown in these
specifications may cause cracks in ceramics which may
lead to smoking or firing.
■ Notice (Storage and Operation Condition)
< Operating Environment >
1. Do not use products in a chemical atmosphere such
as chlorine gas, acid or sulfide gas.
2. Do not use products near water, oil or organic
solvents. Avoid environment where dust or dirt may
adhere to product.
< Concerned to "EMIGUARD" >
VFR3V series is designed only to absorb electro-static
surges. Do not use this product to absorb large energy
surges such as lightning or switching related surges.
< Storage and Handling Requirements >
1. Storage Period
Use the products within 12 months after delivery;
solderability should be checked if this period is
exceeded.
2. Storage conditions
(1) Storage temperature : -10 to 40 degree C
Relative humidity : 30 to 70%
Avoid sudden changes in temperature and humidity.
(2) Do not store products in a chemical atmosphere
such as chlorine gas, acid or sulfide gas.
(3) When restoring taping type (BL01RN1R1F1J),
please attach the Spacer between flanges of reel.
The Spacer is corrugated paper which is attached
when shipping.
■ Notice (Rating)
Noise suppression levels resulting from MURATA's EMI
suppression filters "EMIFIL" may vary, depending on
the circuits and ICs used, type of noise, mounting
pattern, lead wire length, mounting location, and
other operating conditions. Be sure to check and
confirm in advance the noise suppression effect of
each filter, in actual circuits, etc. before applying
the filter in a commercial-purpose equipment design.
6
133
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EMIFILr (Soldering and Mounting)
1. Standard Land Pattern Dimensions
The capacitor type Chip EMIFILr (NFp series) / Chip EMIGUARDr (VFM series) suppress noise by conducting the highfrequency noise element to ground. Therefore, to obtain maximum performance from these filters, the ground pattern should
be made as large as possible during the PCB design stage. As shown in the right, one side of the PCB is used for chip
mounting, and the other is used for grounding.
Small diameter feedthrough holes are then used to connect the grounds on each side of the PCB. This reduces the highfrequency impedance of the grounding and maximizes the filter's performance. Please contact us if using a thinner land pad
than 18µm for NFM55P.
Land Pattern
+ Solder Resist
Land Pattern
Solder Resist
oReflow and Flow
BLMppP
d (pattern)
BLM Series (Except BLMppP series)
c
c
BLM03
BLM15
BLM18
BLM21
BLM31
BLM41
(in mm)
a
a
b
b
Type
Soldering
∗ BLM03
Reflow
∗ BLM15
Reflow
0.4
Flow
BLM18
(except 18PG type)
b
a
0.2-0.3 0.6-0.9
1.2-1.4
2.2-2.6
0.7
Reflow
BLM21
(except 21PG type)
1.8-2.0
3.0-4.0
1.2
Flow/
Reflow
BLM31
(except 31PG type)
c
0.5
Rated
Current Soldering a
(A)
0.7
0.5-1.5
0.3
BLM18PG
1.2
BLM41
(except 41Pp type)
BLM21PG
BLM31PG
0.7
0.7
0.7
1.2
0.7
1.5
1.0
1.0
1.0
2
1.2
1.0
1.0
2.4
1.2
1.0
6.4
3.3 1.65
1.2
1.2
1.2
2.4
1.2
1.2
6.4
3.3 1.65
1.2
1.2
1.2
2.4
1.2
1.2
6.4
3.3 1.65
1.2 3.0-4.0 1.0
3
Flow/
Reflow
3
2.0 4.2-5.2
6
Flow Mounting in High Density for BLM31/41
d
3
3.0 5.5-6.5
6
2.5 Pitch
c
b
1.2
1-2
BLM41Pp
Land pad thickness
and dimension d
18µm 35µm 70µm
1.5/2
∗BLM03/15 is specially adapted for reflow soldering.
a
c
0.7
2
6
5.5-6.5
3.0
b
0.7
Flow
2.2-2.6
0.7 1.2
0.7
Reflow
1.8-2.0
2.4
3
1.0
4.2-5.2
2.0
Type
e
Type
a
b
c
d
e
BLM31
2.0
4.2-5.2
1.2
1.3
1.35
BLM41
3.0
5.5-6.5
1.2
1.8
1.5
oDo not apply narrower pattern that listed above to BLMppP.
Narrow pattern can cause excessive heat or open circuit.
6
0.5
0.5 Pitch
0.25
0.8
oReflow and Flow
BLA31
2.8
2.2-2.6
oReflow soldering
BLA2A
1.75
1.5
BLA2A
BLA31
0.8 Pitch
0.4
• If there are high amounts of self-heating on pattern, the
contact points of PCB and part may become damaged.
Continued on the following page.
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
Land Pattern
+ Solder Resist
Land Pattern
Solder Resist
Reflow Soldering
NFM18C/NFM18P/NFL18ST
NFL18SP
Small diameter thru hole ø0.3
0.8
0.4
0.6
1.2
NFM18
(in mm)
0.4 1.2
0.8
0.4
0.6
1.0
2.2
0.4
1.0
2.0
The chip EMI filter suppress noise by passing the highfrequency noise to ground. Therefore, to get noise
suppression effectively, it is recommended to put through
holes (ø0.3 mm) into the center and both sides of groundpattern to connect to ground-plane.
• NFp18, NFp21 are specially adapted for reflow soldering.
o Reflow Soldering
o Flow Soldering
Chip mounting side
Back side
Chip mounting side
Ground pattern
Small diameter thru hole ø0.4-ø0.6
Small diameter thru hole ø0.4-ø0.6
Ground pattern
b
a
b
c
d
c
Size (mm)
Part Number
NFM21C/NFM21P
NFR21G/NFL21S
NFM3DC
NFM3DP
NFM41C
NFM41P
VFM41R
g
0.6
e
f
g
Connect to ground pattern
of mounting side
a
a
b
c
d
0.8
1.4
2.6
0.6
1.4
2.5
4.4
1.0
2.0
3.5
6.0
1.2
2.0
3.5
6.0
1.2
Connect to ground pattern
of mounting side
Size (mm)
Part Number
a
NFM3DC
c
d
e
f
g
1.0 1.4 2.5 4.4 1.0 2.0 2.4
NFM3DP
NFM41C
1.5 2.0 3.5 6.0 1.2 2.6 3.0
NFM41P
1.5 2.0 3.5 6.0 1.2 2.6 3.0
VFM41R
o Reflow Soldering NFA31G/31C
b
o Reflow and Flow NFW31S
o Reflow Soldering NFE31P
Chip mounting side
2.6
Back side
Small diameter thru hole
ø0.4-ø0.6
Connect to ground pattern
of mounting side
6
0.3
0.8 Pitch
3.8
3.0
R0.1 to R0.2 is preferred to obtain
high voltage withstanding
2.6
3.0
1.0
0.4
1.0
2.2
NFA31G
NFA31C
NFW31S
NFE31P
Back side
d
NFM21
NFM3D
NFM41
NFR21G
NFL21S
VFM41R
Ground pattern
0.6
1.2
2.2
4.2
Continued on the following page.
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
Land Pattern
+ Solder Resist
Land Pattern
Solder Resist
o Flow Soldering (Except NFE61H3321)
3.0
1.6
2.6
3.0
Connect to ground pattern
of mounting side
Connect to ground pattern
of mounting side
Ground pattern
1.5
3.8
4.8
9.0
Ground pattern
2.0
4.8
8.8
oReflow and Flow
DLM2HG
DLP31D
DLP31S
0.7
2.8
0.7
0.8
2.1
2.0
1.2
0.4
DLM2HG
DLP31S
DLP31D
DLP11S
DLW21S
DLW21H
DLW31S
DLW5AH
DLW5BS
Small diameter thru hole
ø0.4-ø0.6
3.2
3.6
Small diameter thru hole
ø0.4-ø0.6
Back side
Chip mounting side
Back side
0.6
1.2
Chip mounting side
3.6
o Reflow Soldering
2.2-2.6
NFE61P
NFE61H
(in mm)
1.0
4.0
1.0 0.6 1.0
0.8 pitch
0.4
oReflow Soldering
DLW21/DLW31S
0.3
∗1
d
0.85
0.55
0.3
c
∗2
DLP11S
∗3
0.55
a
1.95
b
Series
0.9
2.9
5.5
4.7
6
3.3
1.3
DLW5AH/5BS
a
b
c
d
DLW21S/H
0.8
2.6
0.4
1.2
DLW31S
1.6
3.7
0.4
1.6
∗ 1 : If the pattern is made with wider than 1.2mm (DLW21) /
1.6mm (DLW31S) it may result in components turning
around, because melting speed is different. In the worst
case, short circuit between lines may occur.
∗ 2 : If the pattern is made with less than 0.4mm, in the worst
case, short circuit between lines may occur due to spread
of soldering paste or mount placing accuracy.
∗ 3 : If the pattern is made with wider than 0.8mm (DLW21) /
1.6mm (DLW31S), the bending strength will be reduced.
With gild pattern, excess soldering heat may disolve metal of a
copper wire.
Continued on the following page.
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
2. Solder Paste Printing and Adhesive Application
When reflow soldering the chip EMI suppression filter, the
printing must be conducted in accordance with the
following cream solder printing conditions.
If too much solder is applied, the chip will be prone to
damage by mechanical and thermal stress from the PCB
and may crack. In contrast, if too little solder is applied,
there is the potential that the termination strength will be
insufficient, creating the potential for detachment.
Standard land dimensions should be used for resist and
copper foil patterns.
When flow soldering the EMI suppression filter, apply the
adhesive in accordance with the following conditions.
If too much adhesive is applied, then it may overflow into
the land or termination areas and yield poor solderability.
In contrast, if insufficient adhesive is applied, or if the
adhesive is not sufficiently hardened, then the chip may
become detached during flow soldering process.
(in mm)
Series
BLM
BLA
Solder Paste Printing
Adhesive Application
oEnsure that solder is applied smoothly to a
minimum height of 0.2mm to 0.3mm at the end
surface of the part.
oCoat the solder paste a thickness:
100-150µm: BLM03
100-200µm: BLM15/18/21/31/41, BLA
Coating amount is illustrated in the
following diagram.
Chip Solid Inductor
a:20µm−70µm
b:30µm−35µm
c:50µm−105µm
a
0.2−0.3mm min
c
oUse H60A solder for pattern printing.
oCoat the solder paste a thickness:
100-150µm: NFM18/21/3D,NFR, NFL
100-200µm: NFM41,VFM
NFM21C/21P
NFR21G/NFL21S
0.6
1.2
0.6
0.4
0.4
1.0
2.2
Apply 0.1mg for NFM41C/41P/VFM and
0.06mg for NFM3DC/3DP of bonding
agent at each chip. Do not cover
electrodes.
0.6
1.9
NFL18SP
NFM18C/18P
NFL18ST
0.4
1.2
Bonding agent
0.6
1.4
0.4
1.0
Coating position of
bonding agent
2.6
2.0
NFM41C/41P/VFM
0.8
2.0
1.0
0.6
0.6
NFM3DC/3DP
1.0
2.5
3.9
2.6
NFM
NFR
NFL
VFM
Bonding agent
Land
PCB
b
1.5
3.5
5.5
6
o Use H60A solder for pattern printing.
oCoat the solder paste a thickness: 100-200µm
NFA31G/NFA31C
0.6
0.4
1.0
2.6
2.2
NFA
0.3
0.8pitch
Continued on the following page.
137
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
(in mm)
Series
Adhesive Application
NFW31S Series
Apply 0.2mg of bonding agent at each chip.
2.6
0.6
oUse H60A solder for pattern printing.
oCoat the solder paste a thickness: 150-200µm
1.0
NFW31S
NFE31P
Solder Paste Printing
0.6
2.2
4.2
Coating positon of
bonding agent
Apply 1.0mg of bonding agent at each chip.
oUse H60A solder for pattern printing.
oCoat the solder paste a thickness: 150-200µm
1.6
2.6
1.2
3.2
0.6
NFE61P
NFE61H
Bonding agent
1.5
4.8
8.8
DLP
DLW
DLM
Bonding agent
oUse H60A solder for pattern printing.
oCoat the solder paste a thickness:
100-150µm: DLW21S/21H/31S/DLP11S
150-200µm: DLP31D/31S, DLM2HG, DLW5AH/5BS
DLW21S/DLW21H/DLW31S
DLP31S/DLM2HG
Apply 0.3mg of bonding agent at each chip.
DLP31D
DLP31S
d
d
c
c
DLP11S/31S
1.5
4.8
9.0
Bonding agent
c
a
b
a
b
a
Series
a
b
c
Series
d
a
b
c
Coating Position of
Bonding Agent
d
DLP11S
0.7 0.55 0.3 0.55
DLW21S/H 0.8 2.6 0.5 1.2
DLP31S
1.0 0.6 0.7 2.1
DLW31S
1.6 3.7 0.4 1.6
Coating Position of
Bonding Agent
DLM2HG
DLP31D
0.4
1.0
0.8
1.0
Coating Position of
Bonding Agent
6
0.8
DLM2HG
DLW5AH/5BS
2.0
1.2
0.4
5.5
2.9
0.9
4.7
3.3
1.3
1.0
4.0
Continued on the following page.
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
oAllowable Flow Soldering Temperature and Time
280
270
w
Temperature [°C]
3. Standard Soldering Conditions
(1) Soldering Methods
Use flow and reflow soldering methods only.
Use standard soldering conditions when soldering chip
EMI suppression filters chip varistor.
In cases where several different parts are soldered, each
having different soldering conditions, use those
conditions requiring the least heat and minimum time.
(2) Soldering Temperature and Time
To prevent external electrode solder leaching and
performance deterioration, solder within the temperature
and time combinations illustrated by the slanted lines in
the following graphs. If soldering is repeated, please note
that the allowed time is the accumulated time.
e
250
r
q
240
230
0
5
10
15
20
25
30
Time [s]
q
NFE61P/H(Except NFE61HT332)
w
BLM(Except BLM03/15), BLA31
e
DLM2HG, DLP31D/S
r
VFM41R, NFM3DC/P, NFM41C/P,
NFW31S
oAllowable Reflow Soldering Temperature and Time
280
270
Temperature [°C]
Solder : H60A H63A solder(JIS Z 3238)
Flux :
o Use Rosin-based flux (when using RA type solder, clean
products sufficiently to avoid residual flux.
o Do not use strong acidic flux (with chlorine content
exceeding 0.20wt%)
o Do not use water-soluble flux.
260
q
260
w
250
240
e
r
230
0
20
30
40
50
60
70
80
90
Time [s]
q
NFE31P/NFE61P/H
w
BLM/BLA
e
DLM2HG, DLP31D/S, DLP11S
r
NFM, NFL, NFA, NFR, HFW31S, DLW,
VFM41R
Continued on the following page.
6
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EMIFILr (Soldering and Mounting)
Continued from the preceding page.
(3) Soldering Conditions
oFlow Solder
cooling
Soldering Gradual
(in air)
Pre-heating
Temperature [°C]
300
Max. Temp. 250°C
250
200
150
100
50
0
60s Min.
T
Pre-heating Soldering Soldering
(150°C)
Time(T)
Temp.(C)
Series
BLM(Except BLM03/15), BLA31
10s max.
NFM3DC/P, NFM41C/P,
60s min.
NFW31S, NFE61P/H*,
DLM2HG, DLP31D/31S
5s max.
250
VFM
*Except NFE61HT332
oReflow Solder
Pre-heating
(4) Reworking with Solder Iron
The following conditions must be strictly followed when
using a soldering iron.
Pre-heating
: 150°C 60 s min.
Soldering iron power output
: 30W max.
Temperature of soldering iron tip / Soldering time : 280°C
max./10s max. or 300°C max./3s max.*
*NFE31PT152Z1E9/VFM : 280°C max./10 s max. only
BLM : 350°C max./3 s max.
Do not allow the tip of the soldering iron to directly
contact the chip.
For additional methods of reworking with to soldering iron,
please contact Murata engineering.
6
4. Cleaning
Following conditions should be observed when cleaning
chip EMI filter.
(1) Cleaning Temperature : 60°C max. (40°C max. for
alcohol type cleaner)
(2) Ultrasonic
Output
: 20W/liter max.
Duration : 5 minutes max.
Frequency : 28kHz to 40kHz
(3) Cleaning agent
The following list of cleaning agents have been tested on
the individual components. Evaluation of final assembly
should be completed prior to production.
Do not clean DLW21S/31S/5AH/5BS series.
In case of cleaning, please contact Murata engineering.
a) Alcohol cleaning agent
Isopropyl alcohol (IPA)
140
Temperature [°C]
300
250
200
cooling
Soldering Gradual
(in air)
Max. Temp. 230°C
230°C
183°C
150
100
50
0
T2
T1
60s Min.
Series
Soldering Time
Pre-heating
(150°C)
T1(183°C)
T2(230°C)
NFE31/61
250°C,20s max.
BLM, BLA
NFM, NFL, NFR
NFW, NFA, DLM/P/W
20s max.
60s min.
60s max.
10s max.
VFM
b) Aqueous cleaning agent
Surface active agent (Clean Thru 750H)
Hydrocarbon (Cold Cleaner 375)
High grade alcohol (Pine Alpha ST-100S)
*VFM41R series cannot be cleaned with high grade
alcohol type aqueous cleaning agent.
Alkaline saponifier (Aqua Cleaner 210SEI-cleaner
should be diluted within 15% using deionized water.)
(4) Ensure that flux residue is completely removed.
Component should be thoroughly dried after aqueous
agent has been removed with deionized water.
(5) Some products may become slightly whitened.
However, product performance or usage is not affected.
For additional cleaning methods, please contact Murata
engineering.
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Lead Type EMIFILr (Soldering and Mounting)
1. Mounting Hole
Mounting holes should be designed as specified below.
Part number
Bulk type (in mm)
Taping type (in mm)
ø0.8-3
DSN6
DSS6
VFR3V
2.5±0.2
DSN9
2.5±0.2
1.0±0.2
VFS6V
ø0.8-3
DSN9H
2.5±0.2
DST9
ø0.8-3
DST9H
2.5±0.2
2.5±0.2
2.5±0.2
2.5±0.2
2.5±0.2
DSS9
ø1.0-3
1.25±0.2
2.5±0.2
ø0.8-3
DSS9H
VFS9V
2.5±0.2
BNX
2.5±0.2
[Component Side]
[TERMINAL LAYOUT (Bottom figure)]
(B)
(CG)
(CG)
(CG)
2.5±0.1
2.5±0.1 2.5±0.1
ø1.2
(PSG)
CB
CG
CG
(CB)
5.0±0.1
7.5±0.1
2. Using THE block type EMIFILr effectively
The block type EMIFILr effectively prevents unwanted
reflections and external noise from entering the
equipment circuitry and power lines by grounding all the
high frequency components which make up the noise.
Therefore, if grouding is improperly done, the filters may be
unable to achieve the performance they are capable of.
To prevent this, be sure to observe the following instructions.
(1) When designing the P.C. board, use all the available
grounding terminals, and arrange the grounding circuit
so that the area of the foil for the grounding circuit is
maximized.
(2) Minimize the distance between the P.C. board ground
and the filter's grounding plate. Use through-hole P.C.
boards.
(3) Whichever P.C. board is used, push the filter into the
P.C. board up to the terminal roots.
(4) Do not connect PSG to CG by any other means except
through the filter. (See the item 1. TERMINAL LAYOUT)
PSG
B
PSG : Power supply ground
CG : Load circuit ground
CB : Load circuit + Bias
[P.C.B. BOARD PATTERNS]
Use a bilateral P.C. board. Insert the BNX into the P.C.board until
the root of the terminal is secured. then solder.
(1) FRONT VIEW
PSG
(2) BOTTOM VIEW
B
B
PSG
B
PSG
6
Shield plate
PSG
CG
B
CG CG
CB
CG
CG
CB CG
PSG: Power supply ground
CG : Load circuit ground
CB : Load circuit + Bias
Continued on the following page.
1
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Lead Type EMIFILr (Soldering and Mounting)
Continued from the preceding page.
4. Soldering
(1) Use Rosin-based flux. Do not use strong acidic flux with
halide content exceeding 0.2 (wt)% (chlorine conversion
value).
(2) Standard flow soldering profile.
(3) Products and the leads should not be subjected to any
mechanical stress during the soldering process, or while
subjected to the equivalent high temperatures.
Example of input terminal
Example of output terminal
incoming
Electrostatic Surges
incoming
Electrostatic Surges
[Flow Soldering]
Preheating (in air)
Temperature (°C)
3. Using EMIGUARDr effectively
(1) Terminal (with mark) should be connected to the line of
incoming electrostatic surge. (There is polarity.)
Otherwise, no effect in ESD suppression can be
expected. (VFR3V)
(2) Products should be used at rated voltage or less and
rated current or less.
(3) Products should not be applied for the absorption of
surges which have large energy (ex. induced lightning
surges, switching surges) because it is designed for the
absorption of electrostatic surges. (VFR3V)
(4) Electrostatic test should be done on the following
conditions. (VFR3V)
n • [ C / R • V2 ]2 < 8.0 ×105
n : Times applies
C : Charging Capacitance (pF)
V : Testing Voltage (kV)
R : Charging Resistance (Ω)
300
250
Gradual cooling
(in air)
240 to 260°C
200
150
100
50
1 minutes min.
6
5. Cleaning Conditions
Do not clean VFR3V, PLT09H and VFS6Vseries.
Clean other parts in the following conditions.
(1) Cleaning temperature should be limited to 60°C
max.(40°C max for alcohol type cleaner.)
(2) Ultrasonic cleaning should be comply with the following
conditions, avoiding the resonance phenomenon at the
mounted products and P.C.B.
Power : 20 W / l max. Frequency : 28kHz to 40kHz
Time : 5 min. max.
(3) Cleaner
a) Alcohol type cleaner
• Isopropyl alcohol (IPA)
b) Aqueous agent (PLT series cannot be cleaned)
• Surface Active Agent Type
(CLEANTHROUGH 750H)
142
Soldering
5s. max.
Pre-heating
150˚C, 60 seconds min.
Solder Temperature
240 - 260°C, 5 seconds within
• Hydrocarbon Type (COLDCLEANER 375)
• Higher Alcohol Type (PINE ALPHA ST-100S)
• Alkali Saponification Type
(*AQUACLEANER 210SEI)
* Alkali saponification should be diluted to 15%
volume with de-ionized water.
(4) There should be no residual flux or residual cleaner after
cleaning.
In the case of using aqueous agent, products should be
dried completely after rinsing with de-ionized water in
order to remove the cleaner.
(5) Other cleaning : Please contact us.
2
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Chip EMIFILr Packaging
Minimum Quantity and Dimensions of 8mm Width Paper / Plastic Tape
<plastic>
c
d
1.75±0.1
ø1.5 +0.1
-0
<paper>
a
∗3 3.5±0.1
8.0±0.3
∗2 2.0±0.1
∗1 4.0±0.1 4.0±0.1
c
Direction of feed
b
∗1 BLM15, BLA2A: 2.0±0.1
∗2 NFE31, NFW31, DLP11S: 2.0±0.05
∗3 NFE31, NFW31, DLP11S: 3.5±0.05
There are holes in the cavities of the BLM21BD222SN1/
BD272SN1 and BLM31 only. ø1.0 +0.3
-0
Minimum Qty. (pcs.)
Cavity Size
Part Number
ø180mm reel
ø330mm reel
a
b
c
d
Paper Tape
Plastic Tape
BLM03
0.70
0.40
0.55
-
15000
BLM15
1.15
0.65
0.8
-
10000
-
4000
1.1
-
1.3
0.2
1.3
0.2
BLM18
(BLM18E_TN1)
1.85
1.05
BLM21
(BD222SN1/BD272SN1)
2.25
1.45
BLM31
(AF700SN1)
3.5
1.9
BLA2A
2.2
1.2
1.1
0.75
1.75
0.8
-
Bulk
Paper Tape
Plastic Tape
-
-
-
1000
-
50000
-
1000
-
10000
-
1000
4000
-
10000
-
-
3000
-
10000
-
3000
-
10000
-
2500
-
8000
10000
-
-
-
1000
10000
-
1000
1000
1000
1.1
-
4000
-
0.9
-
4000
-
-
-
500
1.1
-
4000
-
-
-
500
1.1
-
4000
-
-
-
500
1.4
0.85
0.2
-
4000
-
-
500
3.5
2.0
1.1
-
4000
-
-
-
100
3.6
1.9
2.0
0.2
-
2000
-
8000
500
NFR21G
2.3
1.55
0.7
0.25
-
4000
-
-
500
NFW31S
3.6
1.9
2.0
0.2
-
2000
-
7500
-
DLM2HG
2.75
2.25
1.3
0.25
-
3000
-
-
1000
DLP11S
1.4
1.2
0.98
0.25
-
3000
-
-
500
DLP31D/31S
3.5
1.9
1.3
0.25
-
3000
-
-
500
DLW21S
2.25
1.45
1.4
0.3
-
2000
-
-
500
DLW21H
2.3
1.55
1.1
0.25
-
3000
-
-
500
DLW31S
3.6
2.0
2.1
0.3
-
2000
-
-
500
BLA31
3.4
1.8
NFM18/NFL18S
NFM18PC (Except 105R)
1.85
1.05
NFM21/NFL21S
2.3
1.55
NFM3DC/3DP
3.4
NFA31G/31C
NFE31P
NFL18ST/NFM18PC105R
• Please contact us for BLM15/18 in bulk case.
(in mm)
Continued on the following page.
143
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Chip EMIFILr Packaging
Continued from the preceding page.
c
0.3
a
Part Number
12.0±0.3
+0.1
ø1.5 -0
5.5±0.1
2.0±0.1
4.0±0.1 4.0±0.1
1.75±0.1
Minimum Quantity and Dimensions of 12mm Width Plastic Tape
Direction of feed
b
Cavity Size
Minimum Qty. (pcs.)
a
b
c
BLM41
4.8
1.9
1.75
ø180mm reel ø330mm reel
2500
NFM41
4.8
1.8
1.1
NFE61
7.2
1.9
1.75
VFM41R
4.8
1.8
1.35
Bulk
8000
1000
4000
-
500
2500
8000
500
2500
-
500
b
c
0.3
Part Number
12.0±0.3
ø1.5 +0.1
-0
5.5±0.1
a
2.0±0.1
8.0±0.1
4.0±0.1
1.75±0.1
There are holes in the cavities
of the BLM41 only. ø1.5 +0.3
-0
Cavity Size
Minimum Qty. (pcs.)
a
b
c
DLW5AH
5.4
4.1
4.4
ø180mm reel ø330mm reel
400
1500
Bulk
100
DLW5BS
5.5
5.4
4.7
400
1500
100
Direction of feed
ø1.5 +0.3
-0
(in mm)
6
144
C31E9.pdf 03.3.12
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
storage,operating,
operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Ferrite Beads Inductors Packaging
Minimum Quantity (Pcs.)
Series
Bulk
Ammo Pack
ø320mm Paper reel
BL01RN
500
1000
2000
BL02RN
500
1500
—
BL03RN
1000
2000
—
ø0.60
5±0.3
BL02RN1R2p1A
∆S
F
3.4±0.2
∗
W0
*L
6.0±1.0
| L1 - L2 | V 1.5
*L BL01RN1A1F1J : 52+2/-1
BL01RN1A1E1A : 26+1.5/-0
D0
t
P0
∗There is a excess bond stick on the wire.
BL02RN1R3N1A
BL02RN2R1p1A
∆S
∆S
W2
H1
ød
∗There is a excess bond stick on the wire.
I
t
t
P0
BL02RN2R3N1A
BL03RN2R1p1A
∆S
∆S
t
W0
t
P0
Symbol
Dimension (mm)
Remarks
Pitch of component
P
12.7
Product inclination ∆S determines tolerance
Pitch of sprocket hole
P0
12.7±0.2
Lead spacing
F
5.0 +0.8
-0.2
Hole center to lead
P1
3.85±0.7
Hole center to component center
P2
6.35±1.3
Deviation along tape, left or right
∆S
±1.0
Carrier tape width
W
18.0±0.5
Position of sprocket hole
W1
9.0 +0
0.0
-0.5
Description
Lead length between sprocket
hole and forming position
Protruding length
H1
6
Lead Length Number : P 18.5±0.5 BL03RN
Diameter of sprocket hole
D0
ø4.0±0.1
Lead Diameter
ød
ø0.60
t
0.7±0.2
∆h1, ∆h2
1.0 max.
L
11.0 +0
0.0
-1.0
Hold down tape width
W0
12.0±0.5
Hold down tape position
W2
1.5±1.5
Cutting position of failure
Tape with deviation
Lead Length Number : Q 20.0±0.5 BL02RN***P1A
+0.5 to –1.0
Deviation across tape, Deviation across tape rear
Tape deviation in feeding direction
Lead Length Number : N 16.5±0.5 BL02, BL03
I
Total tape thickness
∆h2
I
I
D0
P0
∆h1
H1
ød
W
W0
L
D0
F
L
P1
2.3 max.
8.3 max.
W2
∆h2
W1
ød ∆h1
P
P2
6.5 max.
3.4±0.2
W2
F
P1
9.0 max.
H1
P
12.0 max.
P2
W1
∆h2
∆h1
W0
W
W0
D0
I
D0
P0
F
L
P1
W1
W2
∆h2
ød ∆h1
3.4±0.2
9.0 max.
P
7.5 max.
∗
P2
3.4±0.2
L
W1
8.0 max.
H1
F
P1
W
P
12.0 max.
P2
W
∆h2
∆h1
ød
L
W1
3.2 min
0.8 max.
L2
W
L1
0.8 max.
P1
7.5 max.
P
W2
5±0.5
1.2 max.
P2
7.5 max.
Direction of feed
0 max.
H1
BL01RN
I
ø3.6
±0.15
Taping Dimensions
Including bonding tape thickness
(in mm)
145
C31E9.pdf 03.3.12
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
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operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Disc Type EMIFILr and EMIGUARDr Packaging
Minimum Quantity
Lead Type Code
Minimum Order Quantity (order in sets only) (Pcs.)
Part Number
Lead Type code
Lead length (H)
Incrimp Type
Straight Type
Ammo Pack
ø320mm
Paper reel
Bulk (Bag)
Q91
-
20.0±1.0mm
VFR3V Series
2000
—
250
Q92
U21
16.5±1.0mm
DS 6/VFS6V Series
2000
—
250
Q93
U31
18.5±1.0mm
DSN9/9H Series
2000
—
250
DST9/9H Series
1000 ∗1
1000 ∗2
200
DSS9/9H Series
—
800
200
VFS9V Series
—
800
200
∗1 : Q92, Q93
∗2 : Q91
Taping Dimensions
DSS6_Q91/Q92/Q93
DSN6_Q91/Q92/Q93
DSN9_Q91/Q92/Q93
2.5+0.4/-0.2
1.0 max.
*2
3.85±0.7
11.0+0/-1.0
ø0.6
2.54 max.
8.0 max. 0±1.0
6.35±1.3 12.7
*1
1.0 max.
1.0 max.
ø0.6
2.5+0.4/-0.2
+0.5 to -1.0
H
Q91 Type : 20±1.0
Q92 Type : 16.5±1.0
Q93 Type : 18.5±1.0
1.5 max.
12.7±0.2
0.7±0.2
0.7±0.2
H
Q91 Type : 20±1.0
Q92 Type : 16.5±1.0
Q93 Type : 18.5±1.0
+0.5 to -1.0
ø4.0±0.1
1.5 max.
ø4.0±0.1
12.7±0.2
12.0±0.5
18.0±0.5
12.0±0.5
9.0+0/-0.5
H
1.5±1.5
5.0+0.8/-0.2
1.0 max.
7.0 max.
3.85±0.7
9.0+0/-0.5
18.0±0.5
11.0+0/-1.0
0±1.0
DSN6_ : 2.54 max.
DSN9_ : 4.0 max.
1.5±1.5
6.35±1.3 12.7
2.5+0.4/-0.2
DSN6_ : 8.0 max.
DSN9_ : 11.0 max.
DSN6_ : 7.0 max.
DSN9_ : 9.5 max.
H
5.0+0.8/-0.2
*1 There may be a hole on the top of ferrite beads,
which cause no characteristics deterioration.
*2 Bottom of the ferrite beads may not be level with each other.
DSS6_U21/U31
DST9_Q91/Q92/Q93
5.0+0.8/-0.2
4.0 max.
H
+0.5 to -1.0
ø4.0±0.1
12.7±0.2
H
U21 Type : 16.5±1.0
U31 Type : 18.5±1.0
2.3 max.
5.0 max.
1.5±1.5
11.0+0/-1.0
ø0.6
2.5+0.4/-0.2
12.7±0.2
1.5 max.
0.7±0.2
12.7±0.2
H
Q91 Type : 20±1.0
Q92 Type : 16.5±1.0
Q93 Type : 18.5±1.0
1.5 max.
(1)(2)(3)
+0.5 to -1.0
ø4.0±0.1
1.0 max.
ø0.45±0.1
12.0±0.5
AY
1.0 max.
+0.5 to -1.0
ø4.0±0.1
0.7±0.2
AY
18.5±1.0
AY
3.85±0.7
18.0±0.5
H
2.5+0.4/-0.2
2.5+0.4/-0.2
8.0 max. 0±1.0
1.0 max.
9.0+0/-0.5
1.5±1.5
11.0 max.
1.0 max.
12.0±0.5
9.0+0/-0.5
6.35±1.3 12.7
12.0 max. 0±1.0
*1
11.0+0/-1.0 3.85±0.7
18.0±0.5
*1 There may be a hole on the top of ferrite beads,
which cause no characteristics deterioration.
*2 Bottom of the ferrite beads may not be level with each other.
5.0+0.8/-0.2
7.5 max.
2.5+0.4/-0.2
5.0+0.8/-0.2
ø0.6
1.5 max.
1.5 max.
2.5+0.4/-0.2
VFS9V_Q91/Q92/Q93
6.35±1.3 12.7
1.0 max.
VFR3V_U31
DSS9_Q91/Q92/Q93
6
3.85±0.7
2.54 max.
1.0 max.
12.0±0.5
ø0.6
0.7±0.2
H
Q91 Type : 20±1.0
Q92 Type : 16.5±1.0
Q93 Type : 18.5±1.0
1.5±1.5
*2
+0.5 to -1.0
ø4.0±0.1
12.7±0.2
0±1.0
0.7±0.2
H
2.5+0.4/-0.2
2.5+0.4/-0.2
8.0 max
12.7
*1
11.0+0/-1.0
12.0±0.5
18.0±0.5
9.0+0/-0.5
3.85±0.7
11.0+0/-1.0
1.0 max.
15.5 max.
1.0 max.
6.35±1.3
9.0+0/-0.5
9.5 max. 0±1.0
1.5±1.5
6.35±1.3 12.7
2.5+0.4/-0.2
18.0±0.5
5.0+0.8/-0.2
DSS6_U : 10.0 max.
VFS6V : 10.5 max.
VFS6V_U31
*1 Bottom of the ferrite beads may not be level with each other.
(in mm)
146
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
storage,operating,
operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
C31E9.pdf 03.3.12
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Chip EMI Suppression Filter Design Kits
oEKEMBL15C (Chip Ferrite Beads 0402 Size)
No.
Part Number
Quantity (pcs.)
Impedance typ.
(at 100MHz, 20 degree C)
Rated Current (mA)
DC Resistance (Ω) max.
1
BLM15AG100SN1
20
10Ω (Typ.)
1000
0.05
2
BLM15AG700SN1
20
70Ω (Typ.)
500
0.15
3
BLM15AG121SN1
20
120Ω±25%
500
0.25
4
BLM15AG221SN1
20
220Ω±25%
300
0.35
5
BLM15AG601SN1
20
600Ω±25%
300
0.60
6
BLM15AG102SN1
20
1000Ω±25%
200
1.00
7
BLM15BB050SN1
20
5Ω±25%
500
0.08
8
BLM15BB100SN1
20
10Ω±25%
300
0.10
9
BLM15BB220SN1
20
22Ω±25%
300
0.20
10
BLM15BB470SN1
20
47Ω±25%
300
0.35
11
BLM15BB750SN1
20
75Ω±25%
300
0.40
12
BLM15BB121SN1
20
120Ω±25%
300
0.55
13
BLM15BB221SN1
20
220Ω±25%
200
0.80
14
BLM15BD471SN1
20
470Ω±25%
200
0.60
15
BLM15BD601SN1
20
600Ω±25%
200
0.65
16
BLM15BD102SN1
20
1000Ω±25%
200
0.90
Rated Current (mA)
DC Resistance (Ω) max.
oEKEMBL18A (Chip Ferrite Beads 0603 Size/ for Large-current P Type)
No.
Part Number
Quantity (pcs.)
Impedance typ.
(at 100MHz, 20 degree C)
1
BLM18AG121SN1
20
120Ω±25%
200
0.20
2
BLM18AG221SN1
20
220Ω±25%
200
0.30
3
BLM18AG471SN1
20
470Ω±25%
200
0.50
4
BLM18AG601SN1
20
600Ω±25%
200
0.50
5
BLM18AG102SN1
20
1000Ω±25%
100
0.70
6
BLM18BA050SN1
20
5Ω±25%
500
0.20
7
BLM18BA100SN1
20
10Ω±25%
500
0.25
8
BLM18BA220SN1
20
22Ω±25%
500
0.35
9
BLM18BA470SN1
20
47Ω±25%
300
0.55
10
BLM18BA750SN1
20
75Ω±25%
300
0.35
11
BLM18BA121SN1
20
120Ω±25%
200
0.90
12
BLM18BB100SN1
20
10Ω±25%
500
0.15
13
BLM18BB220SN1
20
22Ω±25%
500
0.25
14
BLM18BB470SN1
20
47Ω±25%
500
0.30
15
BLM18BB600SN1
20
60Ω±25%
200
0.35
16
BLM18BB121SN1
20
120Ω±25%
200
0.50
17
BLM18BB221SN1
20
220Ω±25%
200
0.65
18
BLM18BB471SN1
20
470Ω±25%
50
1.00
19
BLM18BD121SN1
20
120Ω±25%
200
0.40
6
Continued on the following page.
1
147
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
storage,operating,
operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
C31E9.pdf 03.3.12
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Chip EMI Suppression Filter Design Kits
Continued from the preceding page.
Quantity (pcs.)
Impedance typ.
(at 100MHz, 20 degree C)
Rated Current (mA)
DC Resistance (Ω) max.
220Ω±25%
200
0.45
470Ω±25%
200
0.55
600Ω±25%
200
0.65
20
1000Ω±25%
100
0.85
20
1800Ω±25%
50
1.50
BLM18BD252SN1
20
2500Ω±25%
50
1.50
26
BLM18HG471SN1
20
470Ω±25%
200
0.85
27
BLM18HG601SN1
20
600Ω±25%
200
1.00
28
BLM18HG102SN1
20
1000Ω±25%
100
1.60
29
BLM18HD471SN1
20
470Ω±25%
100
1.20
30
BLM18HD601SN1
20
600Ω±25%
100
1.50
31
BLM18HD102SN1
20
1000Ω±25%
50
1.80
32
BLM18PG330SN1
20
33Ω±25%
3000
0.025
33
BLM18PG121SN1
20
120Ω±25%
2000
0.05
34
BLM18PG181SN1
20
180Ω±25%
1500
0.09
35
BLM21PG221SN1
20
220Ω (Typ.)
2000
0.05
36
BLM21PG331SN1
20
330Ω (Typ.)
1500
0.09
37
BLM31PG121SN1
20
120Ω (Typ.)
3000
0.025
38
BLM31PG391SN1
20
390Ω (Typ.)
2000
0.05
39
BLM31PG601SN1
20
600Ω (Typ.)
1500
0.9
40
BLM41PG181SN1
20
180Ω (Typ.)
3000
0.025
41
BLM41PG471SN1
20
470Ω (Typ.)
2000
0.05
42
BLM41PG102SN1
20
1000Ω (Typ.)
1500
0.09
43
BLM18RK121SN1
20
120Ω±25%
200
0.25
44
BLM18RK221SN1
20
220Ω±25%
200
0.3
45
BLM18RK471SN1
20
470Ω±25%
200
0.5
46
BLM18RK601SN1
20
600Ω±25%
200
0.6
47
BLM18RK102SN1
20
1000Ω±25%
200
0.8
48
BLM18HK471SN1
20
470Ω±25%
200
0.7
49
BLM18HK601SN1
20
600Ω±25%
100
0.9
50
BLM18HK102SN1
20
1000Ω±25%
50
1.5
Impedance typ.
(at 100MHz, 20 degree C)
Rated Current (mA)
DC Resistance (Ω) max.
No.
Part Number
20
BLM18BD221SN1
20
21
BLM18BD471SN1
20
22
BLM18BD601SN1
20
23
BLM18BD102SN1
24
BLM18BD182SN1
25
oEKEMBL21A (Chip Ferrite Beads 0805 Size)
No.
6
Part Number
Quantity (pcs.)
1
BLM21AG121SN1
20
120Ω±25%
200
0.15
2
BLM21AG221SN1
20
220Ω±25%
200
0.20
3
BLM21AG471SN1
20
470Ω±25%
200
0.25
4
BLM21AG601SN1
20
600Ω±25%
200
0.30
5
BLM21AJ601SN1
20
600Ω±25%
200
1.10
6
BLM21AG102SN1
20
1000Ω±25%
200
0.45
7
BLM21AH102SN1
20
1000Ω±25%
200
0.45
8
BLM21BB600SN1
20
60Ω±25%
200
0.20
9
BLM21BB750SN1
20
75Ω±25%
200
0.25
10
BLM21BB121SN1
20
120Ω±25%
200
0.25
11
BLM21BB221SN1
20
220Ω±25%
200
0.35
12
BLM21BB471SN1
20
470Ω±25%
200
0.45
13
BLM21BD121SN1
20
120Ω±25%
200
0.25
14
BLM21BD221SN1
20
220Ω±25%
200
0.25
15
BLM21BD471SN1
20
470Ω±25%
200
0.35
16
BLM21BD601SN1
20
600Ω±25%
200
0.35
17
BLM21BD102SN1
20
1000Ω±25%
200
0.40
Continued on the following page.
2
148
C31E9.pdf 03.3.12
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
storage,operating,
operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Chip EMI Suppression Filter Design Kits
Continued from the preceding page.
Impedance typ.
(at 100MHz, 20 degree C)
Quantity (pcs.)
No.
Part Number
18
BLM21BD182SN1
20
19
BLM21BD222SN1
20
20
BLM21BD222TN1
20
21
BLM21BD272SN1
20
Rated Current (mA)
DC Resistance (Ω) max.
1800Ω±25%
200
0.50
2250Ω (Typ.)
200
0.60
2200Ω±25%
200
0.60
2700Ω±25%
200
0.80
oEKEMFL18B (Chip EMIFIL LC Combined Type)
No.
Part Number
Quantity (pcs.) Cut off Frequency Rated Voltage Rated Current
Insulation Resistance (MΩ min.) DC Resistance max.
4.5Ω
1
NFL18ST107X1C3
20
100MHz
16 V
100mA
1000
2
NFL18ST157X1C3
20
150MHz
16 V
100mA
1000
4.0Ω
3
NFL18ST207X1C3
20
200MHz
16 V
150mA
1000
3.5Ω
4
NFL18ST307X1C3
20
300MHz
16 V
200mA
1000
1.8Ω
5
NFL18ST507X1C3
20
500MHz
16 V
200mA
1000
1.5Ω
6
NFL18SP157X1A3
20
150MHz
10 V
100mA
1000
3.0Ω
7
NFL18SP207X1A3
20
200MHz
10 V
100mA
1000
3.0Ω
8
NFL18SP307X1A3
20
300MHz
10 V
100mA
1000
3.0Ω
9
NFL18SP507X1A3
20
500MHz
10 V
100mA
1000
2.0Ω
10
NFL21SP206X1C3
20
20MHz
16 V
100mA
1000
8.5Ω
11
NFL21SP506X1C3
20
50MHz
16 V
150mA
1000
3.5Ω
12
NFL21SP706X1C3
20
70MHz
16 V
150mA
1000
3.0Ω
13
NFL21SP107X1C3
20
100MHz
16 V
200mA
1000
2.0Ω
14
NFL21SP157X1C3
20
150MHz
16 V
200mA
1000
2.0Ω
15
NFL21SP207X1C3
20
200MHz
16 V
250mA
1000
1.5Ω
16
NFL21SP307X1C3
20
300MHz
16 V
300mA
1000
1.2Ω
17
NFL21SP407X1C3
20
400MHz
16 V
300mA
1000
1.2Ω
18
NFL21SP507X1C3
20
500MHz
16 V
300mA
1000
1.2Ω
No.
Part Number
Attenuation (dB min.)
Quantity Cut off
Rated Rated
(pcs.) Frequency 10MHz 20MHz 50MHz 100MHz 150MHz 200MHz 300MHz 400MHz 500MHz 1GHz Current Voltage
19 NFW31SP106X1E4
20
10MHz 6dB max
5
25
25
-
25
-
-
30
30
200mA
25V
20 NFW31SP206X1E4
20
20MHz
-
6dB max
5
25
-
25
-
-
30
30
200mA
25V
21 NFW31SP506X1E4
20
50MHz
-
-
6dB max
10
-
30
-
-
30
30
200mA
25V
22 NFW31SP107X1E4
20
100MHz
-
-
-
6dB max
-
5
-
-
20
30
200mA
25V
23 NFW31SP157X1E4
20
150MHz
-
-
-
-
6dB max
-
10
20
30
30
200mA
25V
24 NFW31SP207X1E4
20
200MHz
-
-
-
-
-
6dB max
-
-
10
30
200mA
25V
25 NFW31SP307X1E4
20
300MHz
-
-
-
-
-
-
6dB max
-
5
15
200mA
25V
26 NFW31SP407X1E4
20
400MHz
-
-
-
-
-
-
-
6dB max
-
10
200mA
25V
27 NFW31SP507X1E4
20
500MHz
-
-
-
-
-
-
-
-
6dB max
10
200mA
25V
oEKEMFA31B (Chip EMIFIL Capacitor Array Type/ Capacitor Type/ LC Combined Type)
No.
Part Number
6
Quantity (pcs.)
Capacitance
Rated Voltage
Rated Current
Insulation Resistance (MΩ min.)
1
NFA31CC220S1E4
20
22pF±20%
25 V
200mA
1000
2
NFA31CC470S1E4
20
47pF±20%
25 V
200mA
1000
3
NFA31CC101S1E4
20
100pF±20%
25 V
200mA
1000
4
NFA31CC221S1E4
20
220pF±20%
25 V
200mA
1000
5
NFA31CC471R1E4
20
470pF±20%
25 V
200mA
1000
6
NFA31CC102R1E4
20
1000pF±20%
25 V
200mA
1000
7
NFA31CC222R1E4
20
2200pF±20%
25 V
200mA
1000
8
NFA31CC223R1C4
20
22000pF±20%
16 V
200mA
1000
9
NFA31GD1006R84
20
10pF±20%
6V
50mA
1000
10
NFA31GD1004704
20
10pF±20%
6V
20mA
500
Continued on the following page.
3
149
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Chip EMI Suppression Filter Design Kits
Continued from the preceding page.
oEKEMFA31B (Chip EMIFIL Capacitor Array Type/ Capacitor Type/ LC Combined Type)
No.
Part Number
Quantity (pcs.)
Capacitance
Rated Voltage
Rated Current
Insulation Resistance (MΩ min.)
11
NFA31GD1001014
20
10pF±20%
6V
15mA
1000
12
NFA31GD4706R84
20
47pF±20%
6V
50mA
1000
13
NFA31GD4704704
20
47pF±20%
6V
20mA
1000
14
NFA31GD4701014
20
47pF±20%
6V
15mA
1000
15
MFA31GD1016R84
20
100pF±20%
6V
50mA
1000
16
NFA31GD1014704
20
100pF±20%
6V
20mA
1000
17
NFA31GD1011014
20
100pF±20%
6V
15mA
1000
oEKEMDL21C (Chip Common Mode Choke Coils)
No.
Part Number
Quantity
(pcs.)
Common Mode Impedance typ.
(at 100MHz, 20 degree C)
Rated Voltage
Rated Current
Insulation Resistance
(MΩ min.)
1
DLW21SN670SQ2
10
67Ω (Typ.)
50V
400mA
10
2
DLW21SN900SQ2
10
90Ω (Typ.)
50V
330mA
10
3
DLW21SN121SQ2
10
120Ω (Typ.)
50V
370mA
10
4
DLW21SN181SQ2
10
180Ω (Typ.)
50V
330mA
10
5
DLW21SN261SQ2
10
260Ω (Typ.)
50V
300mA
10
6
DLW21SN371SQ2
10
370Ω (Typ.)
50V
280mA
10
7
DLW31SN900SQ2
10
90Ω (Typ.)
50V
370mA
10
8
DLW31SN161SQ2
10
160Ω (Typ.)
50V
340mA
10
9
DLW31SN261SQ2
10
260Ω (Typ.)
50V
310mA
10
10
DLW31SN601SQ2
10
600Ω (Typ.)
50V
260mA
10
11
DLW31SN102SQ2
10
1000Ω (Typ.)
50V
230mA
10
12
DLW31SN222SQ2
10
2200Ω (Typ.)
50V
200mA
10
13
DLW5AHN402SQ2
5
4000Ω (Typ.)
50V
200mA
10
14
DLW5BSN302SQ2
5
3000Ω (Typ.)
50V
500mA
10
15
DLW5BSN152SQ2
5
1500Ω (Typ.)
50V
1000mA
10
16
DLW5BSN102SQ2
5
1000Ω (Typ.)
50V
1500mA
10
17
DLW5BSN351SQ2
5
350Ω (Typ.)
50V
2000mA
10
18
DLW5BSN191SQ2
5
190Ω (Typ.)
50V
5000mA
10
19
DLP31DN900ML4
10
90Ω±20%
10V
160mA
100
20
DLP31DN131ML4
10
130Ω±20%
10V
120mA
100
10V
100mA
100
21
DLP31DN201ML4
10
200Ω±20%
22
DLP31DN321ML4
10
320Ω±20%
10V
80mA
100
23
DLP31DN441ML4
10
440Ω±20%
10V
70mA
100
oEKEMNFMPA
6
No.
Quantity (pcs.)
Capacitance
Rated Voltage
Rated Current
Insulation Resistance (MΩ min.)
1
NFM18PC104R1C3
Part Number
20
0.1µF±20%
16 V
2A
1000
2
NFM18PC105R0J3
20
1µF±20%
6.3 V
2A
500
3
NFM21PC104R1E3
20
0.1µF±20%
25 V
2A
1000
4
NFM21PC224R1C3
20
0.22µF±20%
16 V
2A
1000
5
NFM21PC474R1C3
20
0.47µF±20%
16 V
2A
1000
6
NFM21PC105B1A3
20
1µF±20%
10 V
4A
500
7
NFM21PC105F1C3
20
1µF +80/-20%
16 V
2A
500
8
NFE31PT152Z1E9
20
1500pF +50/-20%
25 V
6A
1000
1000
9
NFE31PT222Z1E9
20
2200pF±50%
25 V
6A
10
NFE61PT102E1H9
20
1000pF +80/-20%
50 V
2A
1000
11
NFE61PT472C1H9
20
4700pF +80/-20%
50 V
2A
1000
12
NFM41PC204F1H3
20
0.2µF +80/-20%
50 V
2A
1000
Continued on the following page.
4
150
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Chip EMI Suppression Filter Design Kits
Continued from the preceding page.
oEKEMNFMCA
No.
Quantity (pcs.)
Capacitance
Rated Voltage
Rated Current
Insulation Resistance (MΩ min.)
1
NFM18CC220U1C3
Part Number
20
22pF±20%
16 V
300mA
1000
2
NFM18CC470U1C3
20
47pF±20%
16 V
300mA
1000
3
NFM18CC101R1C3
20
100pF±20%
16 V
300mA
1000
4
NFM18CC221R1C3
20
220pF±20%
16 V
300mA
1000
5
NFM18CC471R1C3
20
470pF±20%
16 V
300mA
1000
6
NFM18CC102R1C3
20
1000pF±20%
16 V
300mA
1000
7
NFM18CC222R1C3
20
2200pF±20%
16 V
300mA
1000
8
NFM18CC223R1C3
20
22000pF±20%
16 V
1000mA
1000
9
NFM21CC220U1H3
20
22pF±20%
50 V
300mA
1000
10
NFM21CC470U1H3
20
47pF±20%
50 V
300mA
1000
11
NFM21CC101U1H3
20
100pF±20%
50 V
300mA
1000
12
NFM21CC221R1H3
20
220pF±20%
50 V
300mA
1000
13
NFM21CC471R1H3
20
470pF±20%
50 V
300mA
1000
14
NFM21CC102R1H3
20
1000pF±20%
50 V
300mA
1000
15
NFM21CC222R1H3
20
2200pF±20%
50 V
300mA
1000
16
NFM21CC223R1H3
20
22000pF±20%
50 V
2000mA
1000
6
5
151
catalog
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C31E9.pdf 03.3.12
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Outlines of Major Noise Regulation Standards
1. EMI Regulations
Equipment
Countries
Generic Standard
Information Regulation
Japan
USA
Europe
CISPR61000-6-3
EN50081-1
(Residential, Commercial
(Residential, Commercial
and Light Industry)
and Light Industry)
IEC61000-6-4
EN50081-2
(Industrial)
(Industrial)
ITE : Information Technology
Equipment
Printer, Personal computer
VCCI
FCC Part 15
∗1
Subpart B
CISPR 11
∗1
FCC Part 18
EN55011
CISPR 12
JASO
FCC Part 15
Automotive
Subpart B
Directive
CISPR 13
∗1
CISPR 14
∗1
EN55014
CISPR 15
∗1
EN55015
CISPR 22
EN55022
Word processor, Display
ISM equipment, Microwave
Emission
Igniter
(Automobile, Motorboat)
TV, Radio, Audio, VTR
FCC Part 15
Subpart B
EN55013
Household electrical
equipment
Portable tool
Fluorescent Lamp, Luminary
Radio Act
Transceiver
(Reference) Power Supply
Higher Harmonic
Basic Standard
Immunity
Generic Standard
ITU-T
IEC61000-3
IEC61000-4
FCC Part 15
ARIB
Subpart C
(Voluntary Ragulation)
FCC Part 22
Industrial Voluntary
Regulation
In the process of
Regulating at JIS
ETS300 Series
EN61000-3
EN61000-4 Series
IEC61000-6-1
EN50082-1
(Residential, Commercial
(Residential, Commercial
and Light Industry)
IEC61000-6-2
In the process of
Regulating at JIS
and Light Industry)
EN50082-2
(Industrial)
(Industrial)
Industrial Process Measurement
and Control Equipment
Radio, TV
ITE : Information Technology
Equipment
CISPR 20
CISPR 24
Industrial Voluntary
Action
EN55020
EN55024
∗1 Electrical Appliance and Material Safety Law
There are EMI regulations in each country to meet EMI
noise levels emitted from digital equipment.
In the countries which regulate EMI, equipment which does
not satisfy with regulations is not allowed to be sold.
Continued on the following page.
152
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Outlines of Major Noise Regulation Standards
Continued from the preceding page.
2. Measurement Point and Noise Detection
Regulation
CISPR 22/
EN55022
VCCI
FCC Part 15
Polarization and Measuring Point
Frequency (Hz)
Radiated Interference
Horizontal Pol. Vertical Pol.
30M to 1GHz
Quasi-Peak Detection
Antenna
Main Interference Voltage
AC Main Ports
150k to 30MHz
Quasi-Peak Detection Mean Detection
Artificial Main Network
Radiated Interference
Horizontal Pol. Vertical Pol.
30M to 1GHz
Quasi-Peak Detection
Dipole Antenna
Main Interference Voltage
AC Main Ports
150k to 30MHz
Quasi-Peak Detection Mean Detection
Artificial Main Network
Radiated Interference
Horizontal Pol. Vertical Pol.
30M to 40GHz
Quasi-Peak Detection Mean Detection
Antenna
Main Interference Voltage
AC Main Ports
150k to 30MHz
Quasi-Peak Detection
Artificial Main Network
Measuring Item
Detection
Measuring Devices
PeakUQuasi-PeakUAverage
(Qp)
V
V
Peak Detection
Quasi-Peak Detection
Peak Detection
Average Detection
Quasi-Peak Detection
Average Detection
t
t
Short Repetition Period
Long Repetition Period
3. Limits of CISPR 22/EN55022
Conversion
←
Limitation for
Limitation for
10m Distance
3m Distance
R10 (dB µ V/m)
R3 (dB µ V/m)
r10 (µ V/m)
r3 (µ V/m)
R10=20 log r10
R3=20 log r3
R3=R10+20 (1-log3)
[Main Terminal Interference Voltage (Power Supply)]
90
Voltage [dBµV]
(1)CISPR 22 recommends measurement at 10m distance.
However, other distance is acceptable if the limitation is
converted according to the following calculation.
Limitation shown left is converted to limitation for 3m
79
class A Quasi-peak value 73
66
class A Mean value
70
56
50
60
56
class B Quasi-peak value 50
46
class B Mean value
30
10k
100k 150k 500k 1M
5M 10M 30M 100M
Frequency [Hz]
[Radiated Interference]
r3 = 10 r10
3
Field Strength [dBµV/m]
90
70
57
50
50
40
class A
47
class B
30
10M
30M
100M
230M
1G
Frequency [Hz]
On the border frequency, lower limit should be applied.
Class A Equipment : The equipment which is used in light
industrial commercial areas.
Class B Equipment : The equipment which is used in
residential areas.
Continued on the following page.
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Outlines of Major Noise Regulation Standards
Continued from the preceding page.
(2)Scope of CISPR 22 Regulation
This regulation applies to information technology
equipment (ITE) which are defined as:
(a) Equipment that receives data from external signal
sources;
(b) Equipment that processes received data;
(c) Equipment that outputs data
(d) Equipment that has less than 600V rated voltage in
power supply
[CISPR Regulations]
CISPR 10 Organization, Regulations and Procedures of CISPR
CISPR 11 Industrial, Scientific and Medical (ISM) Radio-Frequency
Equipment
CISPR 12 Vehicles, Motor Boats and Spark-Ignited Engine driven
CISPR 13 Sound and Television Receivers
CISPR 14 Household Electrical Appliances, Portable Tools and Similar
Electrical Apparatus
CISPR 15 Fluorescent Lamps and Iuminaries
CISPR 16 Radio Interference Measuring Apparatus and Measurement
Methods
CISPR 17 Passive Radio Interference Filters and Suppression
Components
CISPR 18 Power Transmission Cables and High Voltage equipment
CISPR 19 Microwave Ovens for Frequencies above 1GHz
CISPR 20 Immunity of Sound and TV Broadcast Receivers Veceivers
and Associated Equipment
CISPR 21 Interference to Mobile Radiocommunications in the Presence
of Impulsive Noise
CISPR 22 Information Technology Equipment
CISPR 23 Industrial Scientific and Medical (ISM) Equipment
CISPR 24 Immunity Regulation of Information Technology Equipment
CISPR 25 Receiver used on board vehicles, boats, and on devices
4. Limits of VCCI Voluntary Regulation
90
Voltage [dBµV]
(2)Scope of VCCI Voluntary Regulation
This regulation applies to information technology
equipment (same as CISPR Pub.22), but the application
is excluded on the following equipment:
· Equipment for which other regulations already exist
(e.g., household electrical appliances, radio and TV
receivers)
· In station equipment principal purpose of which is
electrical communication
· Industrial plant control system for which information
processing is a secondary system function
· Industrial, commercial and medical testing and
measuring systems for which data processing is a
secondary system function
· Information equipment for which CISPR is conducting
further deliberation
VCCI is the acronym of Voluntary Control Council for
Interference by Data Processing Equipment and
Electronic Office Machines.
VCCI is organized by the following organizations:
· Japan Electronics and Information Technology
Industries Association (JEITA)
· Japan Business Machine and Information System
Industries Association (JBMIA)
· Communication and Information network Association of
Japan (CIAJ)
[Main Terminal Interference Voltage (Power Supply)]
79
class A Quasi-peak value 73
66
class A Mean value
70
56
50
60
56 class B Quasi-peak value 50
46 class B Mean value
30
100k 150k 500k 1M
10k
5M 10M 30M 100M
Frequency [Hz]
[Radiated Interference]
90
Field Strength [dBµV/m]
(1)VCCI recommend measurement at 10m distance. 3m or
30m distance measurement are also allowed.
70
class A Quasi-peak value
50
57
50
47
40
class B Quasi-peak value
30
10M
30M
100M
230M
1G
Frequency [Hz]
On the border frequency, lower limit should be applied.
Class B ITE : Equipment that designed to be used at home.
Class A ITE : Equipment that does not meet interference
limits of class B equipment, but satisfies
interference limits of class A equipment.
Continued on the following page.
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typicalspecifications.
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Outlines of Major Noise Regulation Standards
Continued from the preceding page.
5. Limits of FCC Part 15 Subpart B
[Main Terminal Interference Voltage (Power Supply)]
90
Voltage [dBµV]
(1)Class A recommend to be measured with 10m distance.
Class B recommend to be measured with 3m distance.
(2)The FCC Part 15 regulation controls radiated interference
by establishing quasi-peak and mean value limits for frequencies ranging from 30MHz to 40GHz (or maximum
frequency's fifth harmonic, whichever is lower).
For AC main ports, the FCC Part 15 regulation controls
main terminal interference voltage by establishing quasipeak value limits for frequencies ranging from 450kHz to
30MHz.
79
class A Quasi-peak value 73
66
class A Mean value
70
56
60
56 class B Quasi-peak value 50
50
46 class B Mean value
30
Measurement Frequency Range for Radiated Interference
Maximum Frequency
the Equipment Internally
Generates, Uses or Operates
or Synchronizes (MHz)
Upper End of Measurement
Frequency Range
(MHz)
10k
100k 150k 500k 1M
5M 10M 30M 100M
Frequency [Hz]
[Radiated Interference]
30
1.705 to 108
1000
108 to 500
2000
500 to 1000
5000
Over 1000
Maximum Frequency's Fifth
Harmonic or 40GHz,
Whichever is Lower
Field Strength [dBµV/m]
90
Less than 1.705
Noise level is regulated up to lower
frequency of the 5th harmonics of
maximum signal frequency and 40GHz.
70
50
49.5
40
54
43.5
46
60
class A
56.9
54
class B
30
10M
30M
88M100M 216M
960M1G
Frequency [Hz]
On the border frequency, lower limit should be applied.
Class A Equipment : The digital equipment that is sold to in the
commercial, industrial and office use.
Class B Equipment : The digital equipment that is sold to be
used in residential area.
(3)There is no regulation on power interference.
[FCC Regulations]
Part 1
Part 2
Part 15
Part 18
Part 22
Part 68
Part 76
Procedures
Frequency Division and Radio Wave Treaty Issues and
General Rules
Radio Wave Equipment
• Intentionally electromagnetic radiation equipment
• Non-intentionally electromagnetic radiation equipment
• Incidentally electromagnetic radiation equipment
Industrial, Scientific and Medical Equipment
Public Mobile Wireless Operations
Connecting Terminal Equipment to Telephone Circuit Network
Cable Television
Continued on the following page.
155
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Outlines of Major Noise Regulation Standards
Continued from the preceding page.
6. Immunity Regulations in Europe Union
All electric/electronic equipment cannot be sold in Europe
without CE marking. To use CE marking, they must
satisfy related EC directives such as EMC directives.
For Information Technology Equipment, in EMC directive,
emission regulations are integrated, and immunity
regulations are applied. Although these immunity
regulations are prepared by CENELEC, almost all
contents are same as standards issued by IEC or CISPR.
All products which are sold in EU must satisfy EC directive which
contains immunity regulation.
Principal EC Directive
EMC Directive
89/336/EEC
92/31/EEC
Low-Voltage Electrical
Products Directive
73/23/EEC
Machines Directive
89/392/EEC
7. Immunity Regulations in Japan
Equipment
TV,Radio,Audio
ITE
Association
JEITA (Japan Electronis and Information Technology)
Office Machine
JBMIA (Japan Business Machine and Information System Industries Association)
Mi
CIAJ (Communication and Information network Association of Japan)
ARIB (Association of Radio Industories and Business)
Machine To Builders
JMTBA (Japan Machine Tool Builders' Association)
Industrial Measuring Control Equipment
JEMIMA (Japan Electric Measuring Instruments Manufacturers' Association)
Industrial Robot
JARA (Japan Robot Association)
The table on the right shows the preparation situation of
JIS for EMC. At this moment, the immunity standards by
JIS does not have a legal force like Electrical Application
and Material Safety Law/VCCI.
Classification
Information Regulation
JIS
Terms
ISO60050-161
(IEV terms 161)
JIS C 0161
Basic Standard
Generic Standard
156
IEC61000-4- 2
IEC61000-4- 3
IEC61000-4- 4
IEC61000-4- 5
IEC61000-4- 6
IEC61000-4- 7
IEC61000-4- 8
IEC61000-4-11
IEC61000-4-14
IEC61000-4-17
IEC61000-6-1
IEC61000-6-2
JIS C 1000-4-2
JIS C 1000-4-3
JIS C 1000-4-4
JIS C 1000-4-5
JIS C 1000-4-6
JIS C 1000-4-7
Under preparation
C31E9.pdf 03.3.12
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Noise Suppression Principles by DC EMIFILr
1. Function of DC EMI Suppression Filters
DC EMI suppression filters absorb and eliminate high frequency noise which may produce electromagnetic
interference in PC board circuits.
These filters are used in secondary circuits, and are small
in size and light in weight, which further enhances their
excellent noise suppression functions.
Chip and adhesive type filters can be mounted on PC
boards automatically.
These filters are effective in the suppression of radiation
noise in computers, peripheral equipment, and digital
circuit application equipment (including various types of
microcomputer application equipment), and function to
suppress noise in audio/visual equipment, which uses
digital memory chips and DSP.
These filters are also effective for improving the noise
immunity of equipment used in noisy environments (such
as electronic equipment for automobiles).
2. Noise Filter Suppression Principles
Generally, noise problems occur when the noise source
and electronic equipment sensitive to the influence of
noise are located in close proximity to one another.
In such situations, as shown in Figure at right, noise is
conducted through a conductor, which produces an
inductive field around the noise source.
To overcome such noise problems, it is preferable to
reduce the amount of noise generated by the noise
source or improve the noise resistance of adjacent
equipment.
In order to satisfy equipment performance specifications
and eliminate noise effectively at the same time, however,
it is customary to reduce the amount of noise generated
by the noise source, if it can't be eliminated altogether.
[EMI Propagation Mode and Model of Noise Filter Suppression]
r
q
EMI Source
Equipment or Device
Affected by EMI
e
w
qConduction mode
eConduction mode
Radiation mode
wRadiation mode
rRadiation mode
Conduction mode
r
EMI Filter
q
EMI Source
EMI Filter
EMI Filter
e
EMI Filter
Equipment or Device
Affected by EMI
w
Shield
Shield
3. Configuration of EMI Suppression Filters (DC)
DC EMI suppression filters are used to suppress noise
produced by conductors. Noise radiation can be
suppressed, if it is eliminated with a filter in advance.
Generally, such noise suppression is achieved with DC
EMI suppression filters, according to the capacitive and
inductive frequency characteristics of the respective
conductors in the circuit.
Filters of this kind can be roughly divided into those :
(1) employing a capacitor,
(2) employing an inductor,
(3) employing a capacitor and inductor combination.
Continued on the following page.
157
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Noise Suppression Principles by DC EMIFILr
Continued from the preceding page.
4. Capacitive Noise Suppression
When a capacitor is connected (bypass capacitor) to
ground from a noisy signal line or power line, the circuit
impedance decreases as the frequency increases. Since
noise is a high frequency phenomenon, it flows to ground
if a capacitor has been connected to ground, thereby
making it possible to eliminate noise. (See Fig.)
EMI suppression filters employing a capacitor in this way
are used to eliminate this type of noise.
5. High frequency Capacitor Characteristics Used
for EMI Suppression Filters
Even general-purpose capacitors can be used for noise
suppression. However, since noise has an extremely high
frequency range, general-purpose capacitors may not
function as effective bypass capacitors, due to the large
residual inductance built into the capacitor.
All the capacitors used in MURATA's EMI suppression
filters employ a 3 terminal structure or thru-type structure,
which functions effectively even at high frequencies,
thereby minimizing the influence of residual inductance.
Consequently, an effective filter circuit can be formed
even at frequencies exceeding 1GHz. (Refer to Fig.)
[Capacitive Noise Suppression]
Noise+Signal/DC Power
Noise
Z =
1
2πfc
Signal/DC Power
f : Frequency
c : Capacitance Value
[Equivalent circuit of general-purpose capacitor and 3
terminal capacitor in the high frequency area and
comparison of insertion loss]
(a) Construction of capacitor
2-terminal capacitor
3-terminal capacitor
Dielectric
Electrode
Dielectric
Electrode
Lead
Lead
(b) Equivalent circuit of capacitors which is concerning ESL effect.
(c) Improvement of Insertion Loss Characteristics
Insertion Loss [dB]
0
C=2200pf
20
3(B term
(D uilt- inal
SS in
c
9H Bea apa
B3 d) cito
2E
r
22
2Q
55
)
40
60
80
1
5
r
l
cito
na
pa 55)
mi itor
a
r
c
Q
e
l
2
2-t pac
ina E22
ca
erm B32
3-t N9H
S
(D
Idea
Cha l
r
capa acteristi
c of
citor
10
50 100
Frequency [MHz]
500 1000
6. Inductive Noise Suppression
When an inductor is inserted in series in a noise
producing circuit (See Fig.), its impedance increases with
frequency. In this configuration it is possible to attenuate
and eliminate noise components (high frequency
components). The MURATA EMI suppression filter
functions in this way.
[Inductive Noise Suppression]
Noise
Noise+Signal/DC Power
Z =2πfL
Signal/DC Power
f : Frequency
L : Capacitance Value
Continued on the following page.
158
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Noise Suppression Principles by DC EMIFILr
Continued from the preceding page.
General-purpose inductors also function to suppress
noise when configured in series with a noise producing
circuit. However, when general-purpose inductors are
used, resonance may result in peripheral circuits, signal
wave forms may become distorted, and satisfactory
impedance may not be obtained at noise frequencies
(due to insufficient high frequency impedance
characteristics).
The inductors used for MURATA's EMI suppression filters
are designed to function nearly as a resistor at noise frequencies, which greatly reduces the possibility of
resonance and leaves signal wave forms undistorted.
And since sufficient impedance is obtained for
frequencies ranging to hundreds of MHz, these
specifically designed inductors operate effectively to
suppress high-frequency noise. (See Fig.)
[Equivalent Circuit]
R(f)
(Resistance element becomes dominant at high frequency.)
[Example of impedance frequency characteristics of
inductor type EMIFILr]
BL02RN2
160
140
120
Impedance [Ω]
7. Characteristics of Inductors Used
in EMI Suppression Filters
Z
100
R
80
60
40
X
20
0
0.5
1
2
5 10 20 50 100 200 500 1000
Frequency [MHz]
8. Capacitive-Inductive EMI Suppression Filters
If capacitive and inductive suppression characteristics are
combined, it is possible to configure a much higher
performance filter. In signal circuit applications where this
combination is applied, noise suppression effects which
have little influence on the signal wave form become
possible.
This type of filter is also effective in the suppression of
high-speed signal circuit noise. When used in DC power
circuits, capacitive-inductive filters prevent resonance
from occurring in peripheral circuits, thus making it
possible to achieve significant noise suppression under
normal service conditions.
9. Other EMI Suppression Filters
In addition to the capacitive-inductive filter, MURATA also
has an EMI suppression filter (EMIGUARDr) combining
a capacitor with a varistor, useful for surge absorption;
and a common mode choke coil effective, for common
mode noise suppression.
MURATA also has a range of built-in filter connectors
which greatly reduce filter mounting space requirements.
Continued on the following page.
159
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Noise Suppression Principles by DC EMIFILr
Continued from the preceding page.
10. Expressing EMI Suppression Filter Effects
EMI Suppression Filter effects are expressed in terms of
the insertion loss measured in the circuit, normally
specified in MIL-STD 220A. As shown in the 50Ω
impedance circuit in the Figure at right, insertion loss is
represented by the logarithmic ratio of the circuit output
voltage with and without a filter in the circuit, which is
multiplied by 20 and expressed in dB.
Therefore, an insertion loss of 20dB indicates an output
voltage ratio (B/C) of 1/10, and an insertion loss of 40dB
indicates an output voltage ratio (B/C) of 1/100.
[Measuring Circuit of Insertion Loss]
Measuring Circuit of Insertion Loss
50Ω
(a)
B(V)
A(V)
50Ω
(b)
A(V)
EMI
Suppression
Filter
C(V)
Insertion Loss = 20 log B (dB)
C
160
50Ω
50Ω
C31E9.pdf 03.3.12
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This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
Murata EMI Filter Selection Simulator Ver.2.5.0
Recommended Chip Ferrite Beads Search procedure has been added
1
Select circuit.
(Select a new simulation
circuit from File menu.)
• Simulation results with various charts are quickly displayed on your PC.
• Results can be displayed in standard format or user defined scaling.
• Simulates various types of circuit such as Differential ModeTransmission, ceramic
capacitor, EMIFILr three terminal capacitor AND chip ferrite beads.
• Provides a simulation function that select best suited Chip Ferrite Beads.
1
2
3
4
Set Driver IC.
Select filter.
4
9
Set
Receiver IC.
7
Click
measuring
point.
4
3
5
7
6
Filters can be selected from
"frequency-impedance
characteristics" charts.
Set
Transmission
Line.
6
2
Select a new simulation circuit from File
menu.
(EMI filters or/and chip
capacitor from the pulldown list.)
5
Select circuit.
Enter
"Input Signal".
Simulation results are shown
in the window.
8
Two ways of setting the
driver/receiver IC parameter
Impedance automatically
calculated.
The logic IC of TTL and CMOS can
be selected from pull-down list or
the LCR values can also be created.
Impedance characteristics of
transmission line are automatically
calculated.
Find
Find Recommended
Recommended Ferrite
Ferrite Beads
Beads
(Only for chip ferrite bead)
NEW
The software will recommend the most appropriate ferrite
beads solution based on specified search condition.
8
Click
"Start
Simulation"
button.
9
Simulation
results are
displayed.
The recommended parts will be displayed along with electrical
characteristics, the voltage waveform and spectrum chart.
EMIFILr is the trademark of Murata Manufacturing Co., Ltd.
This simulator can be downloaded from Murata web site.
http://www.murata.com/emi/
161
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C31E9.pdf 03.3.12
Note:
1. Export Control
For customers outside Japan
Murata products should not be used or sold for use in the development, production, stockpiling or utilization of any conventional weapons or mass-destructive
weapons (nuclear weapons, chemical or biological weapons, or missiles), or any other weapons.
For customers in Japan
For products which are controlled items subject to the “Foreign Exchange and Foreign Trade Law” of Japan, the export license specified by the law is required
for export.
<
<
>
>
2. Please contact our sales representatives or product engineers before using the products in this catalog for the applications listed below, which require especially
high reliability for the prevention of defects which might directly damage to a third party's life, body or property, or when one of our products is intended for use
in applications other than those specified in this catalog.
q Aircraft equipment
w Aerospace equipment
e Undersea equipment
r Power plant equipment
t Medical equipment
y Transportation equipment (vehicles, trains, ships, etc.)
u Traffic signal equipment
i Disaster prevention / crime prevention equipment
o Data-processing equipment
!0 Application of similar complexity and/or reliability requirements to the applications listed in the above
3. Product specifications in this catalog are as of January 2003. They are subject to change or our products in it may be discontinued without advance notice.
Please check with our sales representatives or product engineers before ordering. If there are any questions, please contact our sales representatives or
product engineers.
4. Please read rating and
CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
5. This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or
transact the approval sheet for product specifications before ordering.
6. Please note that unless otherwise specified, we shall assume no responsibility whatsoever for any conflict or dispute that may occur in connection with the effect
of our and/or a third party's intellectual property rights and other related rights in consideration of your use of our products and/or information described or
contained in our catalogs. In this connection, no representation shall be made to the effect that any third parties are authorized to use the rights mentioned
above under licenses without our consent.
7. No ozone depleting substances (ODS) under the Montreal Protocol are used in our manufacturing process.
http://www.murata.com/
Head Office
2-26-10, Tenjin Nagaokakyo-shi, Kyoto 617-8555, Japan Phone: 81-75-951-9111
International Division
3-29-12, Shibuya, Shibuya-ku, Tokyo 150-0002, Japan
Phone: 81-3-5469-6123 Fax: 81-3-5469-6155 E-mail: [email protected]
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