GBPC2506W Taiwan Semiconductor, GBPC2506W Datasheet

Bridge Rectifiers 25 Amp 600 Volt

GBPC2506W

Manufacturer Part Number
GBPC2506W
Description
Bridge Rectifiers 25 Amp 600 Volt
Manufacturer
Taiwan Semiconductor
Datasheet

Specifications of GBPC2506W

Product
Single Phase Bridge
Peak Reverse Voltage
600 V
Maximum Rms Reverse Voltage
420 V
Max Surge Current
300 A
Forward Voltage Drop
1.1 V
Maximum Reverse Leakage Current
5 uA
Maximum Operating Temperature
+ 150 C
Length
29 mm
Width
29 mm
Height
11.23 mm
Mounting Style
Through Hole
Minimum Operating Temperature
- 50 C
Package / Case
GBPC-W
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
T0

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
GBPC2506W-E4/51
Manufacturer:
VISHAY
Quantity:
5 000
Company:
Part Number:
GBPC2506W-E4/51
Quantity:
200
Part Number:
GBPC2506W-E451
Manufacturer:
ST
0
Features
Maximum Ratings and Electrical Characteristics
Rating at 25
Single phase, half wave, 60 Hz, resistive or inductive load.
For capacitive load, derate current by 20%
Maximum Recurrent Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage
Maximum Average Forward
Rectified Current
@T
Peak Forward Surge Current,
Single Sine-wave Superimposed
on Rated Load (JEDEC method ) GBPC35
Maximum Instantaneous
Forward Voltage Drop Per
Element at Specified Current
Maximum DC Reverse Current
at Rated DC Blocking Voltage Per Element
Typical Thermal Resistance (Note 1)
Operating and Storage Temperature Range
Notes: 1. Thermal Resistance from Junction to Case.
Type Number
C
= 55
260
lengths(For wire type)
UL Recognized file # E-96005
The plastic material used carries Underwriters
Laboratory Flammability Recognition 94V-0
Integrally molded heatsink provide very low
thermal resistance for maximum heat
dissipation
Surge overload ratings from 300 amperes to
400 amperes
Terminals solderable per MIL-STD-202,
Method 208 (For wire type)
Typical I
High temperature soldering guaranteed:
Isolated voltage from case to lead over 2500
volts
2. Suffix “W” - Wire Lead Structure/”M” - Terminal Location Face to Face.
o
C
o
C / 10 seconds / .375”, (9.5mm) lead
o
C ambient temperature unless otherwise specified.
R
less than 0.2 uA
GBPC25 12.5A
GBPC35 17.5A
GBPC15 7.5A
GBPC35
GBPC25
GBPC25
GBPC15
GBPC15
Symbol
T
V
V
High Current 15, 25, 35 AMPS. Single Phase
I
R
V
I
J
FSM
(AV)
V
RRM
RMS
I
,T
θJC
DC
R
F
STG
- 712 -
-005 -01
GBPC 15, 25, 35 SERIES
50
35
50
Glass Passivated Bridge Rectifiers
100
100
70
Dimensions in inches and (millimeters)
HOLE FOR #10 SCREW
.22(5.59)
.20(5.08)
1.14(29.0)
1.12(28.5)
.442(11.23)
.432(10.97)
GBPC
200
140
200
-02
DIA
.692(17.6)
.612(15.5)
-50 to +150
1.14(29.0)
1.12(28.5)
.752(19.1)
.672(17.1)
.692(17.6)
.612(15.5)
400
280
400
15.0
25.0
35.0
HOLE FOR #10 SCREW
-04
300
300
400
1.1
1.5
.22(5.59)
.20(5.08)
.25(6.35)
5
1.14(29.0)
1.12(28.5)
0.432(10.97)
0.442(11.23)
AC
GBPC-M
DIA
.602(15.3)
.522(13.3)
.692(17.6)
.612(15.5)
.96(24.5)
.85(21.5)
.034(0.86)
.030(0.76)
600
420
600
-06
.692(17.6)
.612(15.5)
1.14(29.0)
1.12(28.5)
.692(17.6)
.612(15.5)
HOLE FOR #10 SCREW
.22(5.59)
.20(5.08)
.26(6.60)
GBPC-W
.442(11.23)
.432(10.97)
DIA
1.14(29.0)
1.12(28.5)
.23(5.825)
.19(4.825)
0.967(24.57)
0.837(21.26)
.692(17.6)
.612(15.5)
800 1000
560
800 1000
-08
.042(1.07)
.038(0.97)
.490(12.4)
.410(10.4)
1.14(29.0)
1.12(28.5)
.752(19.1)
.672(17.1)
-10 Units
700
Version: B08
.493(12.525)
.454(11.525)
.752(19.1)
.672(17.1)
1.2(30.5)
MIN.
o
C/W
uA
o
V
V
V
A
A
V
C

Related parts for GBPC2506W

GBPC2506W Summary of contents

Page 1

... Operating and Storage Temperature Range Notes: 1. Thermal Resistance from Junction to Case. 2. Suffix “W” - Wire Lead Structure/”M” - Terminal Location Face to Face. GBPC 15, 25, 35 SERIES High Current 15, 25, 35 AMPS. Single Phase Glass Passivated Bridge Rectifiers GBPC 1.14(29.0) 1.12(28.5) HOLE FOR #10 SCREW ...

Page 2

RATINGS AND CHARACTERISTIC CURVES (GBPC25005 THRU GBPC2510) FIG.1- MAXIMUM FORWARD CURRENT DERATING CURVE 40 GBPC35 35 30 GBPC25 25 20 GBPC15 100 120 140 o CASE TEMPERATURE FIG.3- MAXIMUM NON-REPETITIVE ...

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