Allied HFB05-601-RC High frequency ferrite bead Datasheet

RoHS
HFB03 & 05
Dimensions:
HFB03
High Frequency Ferrite Beads
Inches
(mm)
HFB05
0.039±0.006
0.063±0.008
(0.99±0.15)
(1.60±0.20)
0.020±0.006
0.031±0.006
(0.51±0.15)
(0.79±0.15)
0.020±0.006
0.031±0.006
(0.51±0.15)
(0.79±0.15)
0.010±0.006
0.016±0.008
(0.25±0.15)
0.016
(0.41)
(0.41±0.20)
0.016
(0.41)
0.018
(0.46)
0.023
(0.58)
0.041
(1.04)
0.031
(0.79)
Allied
Part
Number
Impedance(Ω)
@ 100 MHz
25%
HFB03-601-RC
600
HFB03-102-RC
1000
Features
Surface mount EMI suppression components
Nickel barrier termination for excellent resistance to solder heat
Offers Impedance performance at high frequencies
Multi layer technology
Flow and reflow soldering
Rated
Current
(mA)
1000
0.7
300
1400
1.1
250
HFB03
HFB05
Electrical
Impedance Range:
HFB03 600 to 1000Ω
HFB05 470 to 1500Ω
Tolerance: 25% over entire range
Operating Temp: -55ºC ~ +125ºC
Storage Temp: Under 25ºC at 40~60% Humidity
Rate Current: Based on temp rise not to exceed 30ºC
HFB05-471-RC
470
600
0.7
200
HFB05-601-RC
600
700
0.8
200
HFB05-102-RC
1000
1000
1.5
100
1.6
100
1500
1500
HFB05-152-RC
All specifications subject to change without notice.
HFB03-601-RC
HFB03-102-RC
2000
1000
IMPEDANCE(Ω)
Resistance to Solder Heat
Pre-Heat 150ºC, 1 minute
Solder Composition: Sn/Ag3.0/Cu0.5
Solder Temp: 260±5ºC for 10sec ±1 sec.
Minimum of 75% of Electrode covered with new solder.
Impedance within 30% of initial value.
IMPEDANCE(Ω)
1200
800
600
400
1500
1000
500
200
0
0
1
Test Equipment
(Z): HP4291A RF Impedance/Material Analyzer
(RDC): Chen Hwa 502BC
10
100
1000
1
10000
10
HFB05-471-RC
Physical
10000
900
800
1500
700
IMPEDANCE(Ω)
Marking: None
1000
HFB05-601-RC
2000
Packaging: HFB03 10000 pieces per 7 inch reel.
HFB05 4000 pieces per 7 inch reel.
100
FREQUENCY(MHz)
FREQUENCY(MHz)
IMPEDANCE(Ω)
•
•
•
•
•
DC
(Ω) Max.
Impedance(Ω)
@ 1 GHz
40%
1000
500
600
500
400
300
200
100
0
0
1
10
100
1000
FREQUENCY(MHz)
714-665-1140
ALLIED COMPONENTS INTERNATIONAL
REVISED 6/23/09
10000
1
10
100
1000
10000
FREQUENCY(MHz)
www.alliedcomponents.com
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