WTE B125C2200 3.7a bridge rectifier Datasheet

B40C3700/2200 – B380C3700/2200
WTE
POWER SEMICONDUCTORS
3.7A BRIDGE RECTIFIER
Features
!
Diffused Junction
!
!
!
!
!
Low Forward Voltage Drop
High Current Capability
High Reliability
High Surge Current Capability
Ideal for Printed Circuit Boards
A
B
C
+
~ ~ -
D
Mechanical Data
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!
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!
E
Case: Molded Plastic
Terminals: Plated Leads Solderable per
MIL-STD-202, Method 208
Polarity: As Marked on Body
Weight: 25.3 grams (approx.)
Mounting Position: Any
Marking: Type Number
H J J
K
RS-5
Dim
Min
Max
39.40
40.10
A
20.20
21.00
B
21.00
21.70
C
25.40
—
D
0.97 Ø
1.07 Ø
E
6.20
6.70
G
9.80
10.20
H
7.20
7.60
J
4.60
5.00
K
All Dimensions in mm
G
Maximum Ratings and Electrical Characteristics
@TA=25°C unless otherwise specified
Single Phase, half wave, 60Hz, resistive or inductive load.
For capacitive load, derate current by 20%.
Symbol
B40C3700/
2200
Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage
VRRM
VRWM
VR
100
200
300
600
900
V
Recommend Input Voltage
VRMS
40
80
125
250
380
V
Characteristic
Average Rectified Output Current
@TA = 45°C (Note 1)
B80C3700/ B125C3700/ B250C3700/ B380C3700/
Unit
2200
2200
2200
2200
IO
3.7
A
Non-Repetitive Peak Forward Surge Current
8.3ms Single half sine-wave superimposed on
rated load (JEDEC Method)
IFSM
100
A
Repetitive Peak Forward Surge Current
IFRM
15
A
Forward Voltage (per element)
VFM
1.0
V
Peak Reverse Current
@TC = 25°C
At Rated DC Blocking Voltage @TC = 150°C
IR
10
6.0
µA
mA
Rating for Fusing (t < 8.3ms) (Note 2)
I2t
50
A2s
Typical Thermal Resistance (Note 1)
RJA
3.0
K/W
Tj, TSTG
-55 to +150
°C
@IF = 3.0A
Operating and Storage Temperature Range
*Glass Passivated forms are available upon request.
Note: 1. Measured at 3"sq. x 0.11" thick AL. plate.
2. Non-repetitive for t > 1ms and < 8.3ms.
B40C3700/2200 – B380C3700/2200
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© 2002 Won-Top Electronics
100
IF, INSTANTANEOUS FWD CURRENT (A)
I(AV), AVERAGE OUTPUT CURRENT (A)
6
5
4
3
2
1
Single Phase Half Wave
60 Hz Resistive or Inductive Load
0
1.0
Tj = 25ºC
Pulse Width = 300 ms
0.1
0.6
20
40
60
80
100 120 140
TA , AMBIENT TEMPERATURE (ºC)
Fig. 1 Forward Current Derating Curve
0.7
0.8
0.9 1.0
1.1 1.2 1.3
VF, INSTANTANEOUS FWD VOLTAGE (V)
Fig. 2 Typical Forward Characteristics, per element
400
Cj, CAPACITANCE (pF)
125
IFSM, PEAK FWD SURGE CURRENT (A)
10
100
75
50
100
25
Tj = 25ºC
f = 1MHz
8.3ms Single Half Sine-Wave
JEDEC Method
10
0
10
100
NUMBER OF CYCLES AT 60 Hz
Fig. 3 Max Non-Repetitive Peak Fwd Surge Current
IR, INSTANTANEOUS REVERSE CURRENT (mA)
1
1
10
100
VR, REVERSE VOLTAGE (V)
Fig. 4 Typical Junction Capacitance Per Element
10
Tj = 100ºC
1.0
0.1
Tj = 25ºC
0.01
0
20
40
60
80
100 120 140
RATED PERCENT OF PEAK REVERSE VOLTAGE (%)
Fig. 5 Typical Reverse Characteristics
B40C3700/2200 – B380C3700/2200
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© 2002 Won-Top Electronics
ORDERING INFORMATION
Product No.
Package Type
Shipping Quantity
B40C3700/2200
SIL Bridge
200 Units/Box
B80C3700/2200
SIL Bridge
200 Units/Box
B125C3700/2200
SIL Bridge
200 Units/Box
B250C3700/2200
SIL Bridge
200 Units/Box
B380C3700/2200
SIL Bridge
200 Units/Box
Shipping quantity given is for minimum packing quantity only. For minimum order
quantity, please consult the Sales Department.
Won-Top Electronics Co., Ltd (WTE) has checked all information carefully and believes it to be correct and accurate. However, WTE cannot assume any
responsibility for inaccuracies. Furthermore, this information does not give the purchaser of semiconductor devices any license under patent rights to
manufacturer. WTE reserves the right to change any or all information herein without further notice.
WARNING: DO NOT USE IN LIFE SUPPORT EQUIPMENT. WTE power semiconductor products are not authorized for use as critical components in life
support devices or systems without the express written approval.
Won-Top Electronics Co., Ltd.
No. 44 Yu Kang North 3rd Road, Chine Chen Dist., Kaohsiung, Taiwan
Phone: 886-7-822-5408 or 886-7-822-5410
Fax: 886-7-822-5417
Email: [email protected]
Internet: http://www.wontop.com
B40C3700/2200 – B380C3700/2200
We power your everyday.
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© 2002 Won-Top Electronics
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