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GBJ2005 View Datasheet(PDF) - Diotech Company.

Part Name
Description
Manufacturer
GBJ2005
DIOTECH
Diotech Company. DIOTECH
GBJ2005 Datasheet PDF : 2 Pages
1 2
GBJ2005 THRU GB210
GLASS PASSIVATED BRIDGE RECTIFIER
Reverse Voltage - 50 to 1000 Volts Forward Current - 2.0 Ampere
FEATURES
Glass passivated chip junction
Reliable low cost construction utilizing molded
plastic technique
Ideal for printed circuit board
Low reverse leakage current
Low forward voltage drop
High surge current capabiliy
MECHANICAL DATA
Case:Molded plastic, GBJ
Terminals: Terminals: Leads solderable per MIL-STD-202
method 208 guaranteed
Epoxy: UL 94V-0 rate flame retardant
Mounting Position: Any
GBJ2
.125(3.17)
*45°
Chamfer
.106(2.7)
.091(2.3)
.81(20.6)
.77(19.6)
.44(11.2)
.42(10.7)
.142(3.6)
.133(3.4)
.055(1.4)
.047(1.2)
.56(14.2)
.50(12.7)
.043(1.1)
.035(0.9)
.210 .210 .210
.190 .190 .190
(5.3) (5.3) (5.3)
(4.8) (4.8) (4.8)
.020(0.51)
.045(1.14) .015(0.38)
.035(0.90)
Dimensions in inches and (millimeters)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25 C ambient temperature unless otherwise specified.
Single phase half-wave 60Hz,resistive or inductive load,for capacitive load current derate by 20%.
Parameter
Maximum Recurrent Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage
Maximum Average Forward Rectified Current with
Heatsink at TC = 50 OC
Peak Forward Surge Current, 8.3 ms Single Half-Sine
-Wave superimposed on rated load (JEDEC Method)
Maximum Forward Voltage at 2.0 A DC and 25 OC
Maximum Reverse Current at TA = 25 OC
at Rated DC Blocking Voltage TA = 125 OC
Typical Junction Capacitance 1)
Typical Thermal Resistance 2)
Operating and Storage Temperature Range
Symbols
VRRM
VRMS
VDC
GBJ
2005
50
35
50
I(AV)
I FSM
VF
IR
CJ
RθJC
TJ,TS
Note: 1. Mounted on 75 x 75 x 3.0mm Al. plate.
2. Mounted on PCB at 9.5mm lead length with 12mm2 copper pad.
GBJ
201
GBJ
202
GBJ
204
GBJ
206
GBJ
208
GBJ
210
Units
100 200 400 600 800 1000 V
70 140 280 420 560 700 V
100 200 400 600 800 1000 V
2
A
60
1.1
5.0
300
40
12
-55 to +150
A
V
µA
pF
OC/W
OC

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