CBB 161 IL Series

CBB 161 IL Series
Polypropylene Film Capacitors for Snubber Applications
Features
Very low dissipation factor
-
Highest peak pulse capability
-
Double-sided metallized electrodes
-
Internal series connection
-
Metal sprayed contacts for low ESL
-
Plates for direct IGBT connection
-
Self-healing
-
RoHS compliant (2011/65/EU)
CBB 161 IL
higher peak pulse
CBB 165 IS
Applications
-
High pulse and high frequency circuits
-
IGBT applications
-
Frequency converters
-
Photovoltaic and wind inverters
Item
Climatic Category
DC Voltage Rating UR,DC
AC Voltage Rating UR,AC
Test Voltage
Capacitance Range
Capacitance Tolerance
Capacitor Dissipation Factor
Dielectric Dissipation Factor
Insulation Resistance
Series Inductance
Life Time Expectancy
Reference Standard
Characteristics
40/85/56 (IEC 60068-2)
700 ~ 1600 VDC
380 ~ 550 VAC,
1,5 * UR,DC (20 °C, 10 s)
0,15 ~ 4,5 µF
±10 % (K), ±5 % (J)
-4
tan δ ≤ 5 * 10 (20 °C, 1 kHz)
-4
tan δo ≤ 2 * 10 (20 °C, 1 kHz)
≥ 30.000 MΩ µF (20 °C, 100 VDC, 1 min)
LS (typ.) ≤ 20 nH (20 °C)
≥ 300.000 h, Failure Rate ≤ 5 FIT (40 °C, 0,5 * UR,DC)
IEC 61071:2007
Ratings for CBB 161 IL Series
dV/dt
UR
CR
(V)
(µF)
20 °C
(V/µS)
700VDC
(380VAC)
2Q
0.60
0.80
1.00
1.20
1.80
2.20
2.50
3.00
4.00
325
325
325
325
325
325
325
325
325
(1) Maximum permissible peak current
Irms
(1)
ESRmax
100 kHz
70 °C
(A)
W1
H1
L1
(A)
100 kHz
20 °C (mΩ)
±1.0
(mm)
±1.0
(mm)
±1.0
(mm)
Ordering Code
195
260
325
390
585
715
813
975
1300
12
12
10
10
8
7
6
5
4
7.2
9.2
10.8
12.4
16.8
18.8
20.3
22.4
25
14
14
25.5
24
24
33
33.5
30
42
28
32
25.5
28
36
33
35.5
45
43
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
FCS2QIL604KF********
FCS2QIL804KF********
FCS2QIL105KF********
FCS2QIL125KF********
FCS2QIL185KF********
FCS2QIL225KF********
FCS2QIL255KF********
FCS2QIL305KF********
FCS2QIL405KF********
Î
“*” to be defined, see ordering code table
Customized products are available on request
2015 v5
CBB 161 IL Series
Ratings for CBB 161 IL Series
dV/dt
UR
CR
(V)
(µF)
20 °C
(V/µS)
0.47
0.55
0.68
0.80
1.20
1.50
1.80
2.20
2.80
0.33
0.45
0.55
0.65
1.00
1.20
1.40
1.80
2.20
2.20
2.50
3.00
3.30
3.50
4.50
0.22
0.30
0.40
0.47
0.68
0.80
1.00
1.20
1.50
1.50
1.80
2.00
2.20
2.50
3.00
0.15
0.20
0.30
0.33
0.47
0.56
0.65
0.80
1.00
1.00
1.20
1.40
1.60
1.70
2.00
400
400
400
400
400
400
400
400
400
500
500
500
500
500
500
500
500
500
350
350
350
350
350
350
650
650
650
650
650
650
650
650
650
455
455
455
455
455
455
800
800
800
800
800
800
800
800
800
560
560
560
560
560
560
850VDC
(450VAC)
K2
1000Vdc
(480Vac)
3A
1200Vdc
(500Vac)
3B
1600Vdc
(550Vac)
3C
(1) Maximum permissible peak current
Irms
(1)
ESRmax
100 kHz
70 °C
(A)
W1
H1
L1
(A)
100 kHz
20 °C (mΩ)
±1.0
(mm)
±1.0
(mm)
±1.0
(mm)
Ordering Code
188
220
272
320
480
600
720
880
1120
165
225
275
325
500
600
700
900
1100
770
875
1050
1155
1225
1575
143
195
260
306
442
520
650
780
975
683
819
910
1001
1138
1365
120
160
240
264
376
448
520
640
800
560
672
784
896
952
1120
12
12
10
10
9
8
7
6
5
12
12
10
10
9
8
7
6
5
6
5
5
4
4
4
12
12
11
10
10
9
8
7
6
6
6
5
5
4
4
12
12
11
11
10
10
9
8
7
6
6
5
5
4
4
6.4
8.8
10.4
11.8
15.6
17.6
19.8
21.5
24
6.2
8.6
9.8
11.6
15.5
17.5
18.8
21
23
23
24
24
25
25
28
6
8.5
9.6
11.5
15.4
17.2
18.6
20.6
22
22
23
24
24
25
26
6
8.4
9.5
11.4
15.2
17
18.4
20.5
21
22
22
23
24
24
25
14
14
25.5
24
24
33
33.5
30
42
14
14
25.5
24
24
33
33.5
30
42
29.5
30
35
35
45
40
14
14
25.5
24
24
33
33.5
30
42
29.5
30
35
35
45
40
14
14
25.5
24
24
33
33.5
30
42
29.5
30
35
35
45
40
28
32
25.5
28
36
33
35.5
45
43
28
32
25.5
28
36
33
35.5
45
43
43.5
45
45
50
45
55
28
32
25.5
28
36
33
35.5
45
43
43.5
45
45
50
45
55
28
32
25.5
28
36
33
35.5
45
43
43.5
45
45
50
45
55
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
57.5
57.5
57.5
57.5
57.5
57.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
57.5
57.5
57.5
57.5
57.5
57.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
42.5
57.5
57.5
57.5
57.5
57.5
57.5
FCSK2IL474KF********
FCSK2IL554KF********
FCSK2IL684KF********
FCSK2IL804KF********
FCSK2IL125KF********
FCSK2IL155KF********
FCSK2IL185KF********
FCSK2IL225KF********
FCSK2IL285KF********
FCS3AIL334KF********
FCS3AIL454KF********
FCS3AIL554KF********
FCS3AIL654KF********
FCS3AIL105KF********
FCS3AIL125KF********
FCS3AIL145KF********
FCS3AIL185KF********
FCS3AIL225KF********
FCS3AIL225KH********
FCS3AIL255KH********
FCS3AIL305KH********
FCS3AIL335KH********
FCS3AIL355KH********
FCS3AIL455KH********
FCS3BIL224KF********
FCS3BIL304KF********
FCS3BIL404KF********
FCS3BIL474KF********
FCS3BIL684KF********
FCS3BIL804KF********
FCS3BIL105KF********
FCS3BIL125KF********
FCS3BIL155KF********
FCS3BIL155KH********
FCS3BIL185KH********
FCS3BIL205KH********
FCS3BIL225KH********
FCS3BIL255KH********
FCS3BIL305KH********
FCS3CIL154KF********
FCS3CIL204KF********
FCS3CIL304KF********
FCS3CIL334KF********
FCS3CIL474KF********
FCS3CIL564KF********
FCS3CIL654KF********
FCS3CIL804KF********
FCS3CIL105KF********
FCS3CIL105KH********
FCS3CIL125KH********
FCS3CIL145KH********
FCS3CIL165KH********
FCS3CIL175KH********
FCS3CIL305KH********
Î
“*” to be defined, see ordering code table
2015 v5
CBB 161 IL Series
Customized products are available on request
Dimensions
Terminal
Style
Length of
Case
Mounting Hole
Pitch Range
Gap between
Terminals
Width
Terminal
Thickness
Terminal
L1
P1 ± 1,0
P2 ± 1,0
Wp ± 0,3
(mm)
(mm)
(mm)
(mm)
42,5
Style 1
Style 3
Width
Hole
Length
Hole
Distance
Hole
Distance
Hole
Hole
Shape
Tp ± 0,1
C±1
S1 ± 0,1
N1 min
A ± 0,2
B ± 0,2
Screw
(mm)
(mm)
(mm)
(mm)
(mm)
(mm)
(Code)
21 ~ 27 code “24”
10
14
1,0
6,0
6,5
8,0
5,0
7,0
M6 (code 0,1)
21 ~ 27 code “24”
10
14
1,0
6,0
6,5
8,0
5,0
7,0
M6 (code 0,1)
37 ~ 43 code “40”
26
14
1,0
6,0
6,5
8,0
5,0
7,0
M6 (code 0,1)
21 ~ 27 code “24”
10
14
1,0
6,0
6,5
8,0
7,0
7,0
M6 (code 0,1)
21 ~ 27 code “24”
10
14
1,0
6,0
6,5
8,0
7,0
7,0
M6 (code 0,1)
37 ~ 43 code “40”
26
14
1,0
6,0
6,5
8,0
7,0
7,0
M6 (code 0,1)
37 ~ 43 code “40”
26
14
1,0
6,0
8,5
10,5
7,0
7,0
M8 (code 2,3)
42,5
55 ~ 65 code “60”
38
14
1,0
6,0
8,2
14,0
8,5
10,0
M8 (code 2,3)
57,5
70 ~ 80 code “75”
53
14
1,0
6,0
8,2
14,0
8,5
10,0
M8 (code 2,3)
57,5
42,5
Style 2
Distance
Terminal
57,5
Marking
No.
Item
1
Brand
2
Series Designation
3
Capacitance, Tolerance, and Rated Voltage
4
Date Code
2015 v5
CBB 161 IL Series
Internal Construction
No.
Item
Material
1
Dielectric Film
Polypropylene
2
Single-sided Metallized Film
PP + Al
3
Double sided Metallized Carrier Film
PET + Al
4
Metal Sprayed Contact
Zn + Sn/Zn
No.
Item
Material
5
Terminals
Sn-coated Cu
6
Potting Compound
Epoxy
7
Case
Flame retardant PBT
Ordering Code
1
FC
2
3
S
Capacitor
type
Product
shape
4
5
3B
7
6
DC rated
voltage code Series code
(V)
Film cap. = FC Square = S 630
700
850
1000
1200
1600
2000
2500
3000
=
=
=
=
=
=
=
=
=
8
IL
2J CBB161 = IL
2Q CBB165 = IS
K2
3A
3B
3C
3D
3E
3F
9
105
10
Capacitance
code
(µF)
0,22
0,33
0,47
0,68
0,82
1,0
1,2
1,5
2,0
2,2
2,5
3,0
3,3
4,0
4,7
5,0
6,0
6,8
10,0
=
=
=
=
=
=
=
=
=
=
=
=
=
=
=
=
=
=
=
11
K
12
F
Capacitance
tolerance
Length of
case L1
(mm)
224 ±5%
334 ±10%
474
684
824
105
125
155
205
225
255
305
335
405
475
505
605
685
106
=J
=K
42,5 = F
47 = G
57,5 = H
13 14
27
Nominal
pitch P1
(mm)
24
40
60
75
=
=
=
=
24
40
60
75
15
1
16
17
13
18 19
14
20
1
Gap
Width of
betw een
terminal
Hole shape
plates P2 plates Wp
(mm)
(mm)
= 1 10 = 10 14 = 14 Circular M6 =
= 2 26 = 26
Oval M6
=
= 3 38 = 38
Circular M8 =
53 = 53
Oval M8
=
21
E
Plate style
style 1
style 2
style 3
22
3
For internal use
22 23 24 25 26 27 28
JE
x x x x x
For specials only
0
1
2
3
2015 v5
Jianghai Film Capacitors
Warranty: The information contained in this datasheet does neither form part of
any quotation nor of a contract, it is believed to be accurate, reliable and up to date.
Quality data are based on the statistical evaluations of a large quantity of parts and
do not constitute a guarantee in a legal sense. However, agreement on these
specifications does mean that the customer may claim for replacement of individual
defective capacitors within the terms of delivery. We cannot assume any liability
beyond the replacement of defective components. This applies in particular to any
further consequences of component failure. Furthermore it must be taken into
consideration that the figures stated for lifetime, failure rates and outlier
percentages refer to the average production status and are therefore to be
understood as mean values (statistical expectations) for a large number of delivery
lots of identical capacitors. These figures are based on application experience and
data obtained from preceding tests under normal conditions, or – for purpose of
accelerated aging – more severe conditions. JIANGHAI reserves the right to
change these specifications without prior notice. Any application information given
is advisory and does not form part of any specification. The products are not
primarily designed for use in life supporting applications, devices or systems where
malfunction of these products can reasonably be expected to result in personal
injury. JIANGHAI customers using or selling these products for use in such
applications without prior written consent of JIANGHAI do so at their own risk and
agree fully to indemnify JIANGHAI for any damage resulting from such improper
use or sale. This version of the datasheet supersedes all previous versions.
Voltage between terminals UTT: Voltage between terminals (at 20°C, 10s):
1.5×URDC
Voltage between terminals and case UTC: Voltage between terminals and
case (at 20°C, 10s): 2 × Ui + 1000 or 3000 (VAC), whichever value is larger.
Buzzing noise: Any buzzing noise produced by a capacitor is caused by the
vibration of the film due to the Coulomb force that is generated between the
electrodes with opposite poles. If the wave-form with a high distortion rate or
frequency is applied across the capacitor, the buzzing noise will become louder.
But the buzzing noise is of no harm to the capacitor.
Surface over temperature △ θ case: When current continuously flow
through the capacitor, the temperature inside the capacitor will rise induced by
dissipated heat. If the temperature exceeds the maximum allowed hot-spot
temperature, it might cause a short circuit or fire. The limits described in the
catalogue must not be exceeded and it's necessary to check the temperature
on the capacitor’s surface in operation.
Flame retardation: Although flame retarding PU resin or plastic case material
is used in the coating or encapsulation of plastic film capacitors, continuous
exposure to high temperature ambient or fire will break the coating layer or
plastic case of the capacitor, and may lead to melting and ignition of the
capacitor element.
Rated Voltage UR: Rated Voltage is the maximum operating peak voltage of either
polarity but of a non-reversing type waveform, for which the capacitor has been
designed, for continuous operation. The Rated Voltage is marked on the capacitor
and defined in the datasheets as UR.
Humid ambient: If used for a long time in a humid ambient, the capacitor might
absorb humidity and oxidize the electrodes causing damage to the capacitor. In
case of AC application, high humidity would increase the corona effect. This
phenomenon causes a drop in capacitance and an increase of capacitor losses.
Operating voltage: The plastic film capacitor varies in the maximum applicable
voltage depending on the applied voltage waveform, current waveform, frequency,
ambient temperature (capacitor surface temperature), capacitance value, etc. Be
sure to use capacitors within the specified values by checking the voltage
waveform, current waveform, and frequency applied to them (In the application of
high frequency, the permissible voltage varies with the type of the capacitor. Refer
to the specification for details.).
Storage conditions:
1) Capacitors must not be stored in corrosive atmospheres, particularly not when
chlorides, sulfides, acids, lye, salts, organic solvents or similar substances are
present.
2) It must not be stored in high temperature and/or high humidity environments.
The following storage conditions must be kept (applicable only for storage in the
original package):
Temperature: ≤ 35 °C
Humidity: ≤ 80% RH, no dew allowed on the capacitor.
Storage time: ≤ 24 months (from the date marked on the capacitor's body or
on the label sticking to the package)
Non-recurrent surge voltage Us:Peak voltage induced by a switching or any
other disturbance of the system which is allowed for a limited number of times and
for durations shorter than the basic period.
- Maximum duration: 50 ms / pulse
- Maximum number of occurrences: 1000 (during load)
Maximum rate of voltage rise dV/dt: Maximum permissible repetitive rate of
voltage rise of the operational voltage.
Charging and discharging: Because the charging and discharging current of
capacitor is obtained by the product of voltage rise rate (dV/dt) and capacitance,
low voltage charging and discharging may also cause deterioration of capacitor
such as shorting and open due to sudden charging and discharging current. When
charging and discharging, pass through a resistance of 20Ω/V to1000Ω/V or more
to limit the current.
When connecting multiple film capacitors in parallel in withstand voltage test or life
test, connect a resistance of 20Ω/V to1000Ω/V or more in series to each capacitor
(For detail see the specification). In addition, capacitors must be discharged via a
resistor before handling. Because the capacitors do not have any discharge
resistors built-in, there is a risk of residual voltages and electric energy contents
that maybe dangerous.
Mounting: Other devices, which are mounted near the capacitor, should not touch
the capacitor. Additional heat coming from other components near the capacitor
may reduce the lifetime of the capacitor. Do never attempt to bend or twist the
capacitor after mounting and avoid any mechanical stress on the terminals. Never
exceed the max. permissible torques when tightening the terminal screws or the
mounting bolt’s cap nuts.
Caution during use of Capacitors: Do not touch the terminals of capacitors.
Keep the capacitor free from conductive solution, such as acids, alkali and so on.
Ensure that the operating environment of the equipment into which the capacitor
has been built is within the specified conditions mentioned in the catalogue or
specification sheets.
Definition of electrical parameters: Separate documents as application notes,
equivalent circuit diagrams and so on are available on request.
Packaging: Please refer to the data book for details. Further information is
available on request.
Operating Current:The pulse (or AC) current flowing through the capacitor is
expressed as: I = C x dV/dt. Due to the fact that the dissipation factor of the
capacitor is greater than zero, heat will be generated in any application where
alternating currents or pulses occur. The resulting internal temperature rise may
cause a severe deterioration of the capacitor’s withstanding voltage, or may lead to
a breakdown (even smoke or fire may result).Therefore, the safe use of capacitor
must be within the rated voltage (or category voltage) and the permissible current
ranges. The rated current must be considered by dividing into pulse current (peak
current) and continuous current (rms current) depending on the break down mode,
and when using, should make sure the both currents are within the permissible
range.
Temperature range: Use film capacitors only within the specified operating
temperature range.
Expected lifetime:The expected lifetime of the capacitor depends on the applied
voltage and the hot spot temperature during operation. For capacitors applied in
different situations, the obtainable average service lives are different. The
capacitors used in DC-Link circuits will have an expected lifetime of approximately
100000 hours at rated voltage and 70℃ hot spot temperature.
Insulation voltage Ui: rms value of AC voltage designed for the insulation
between terminals of the capacitor to case or earth. The insulation voltage is
equal to the rated voltage of the capacitor, divided by 2 , unless otherwise
specified.
Jianghai Europe Electronic Components GmbH v2 0514