(D3SBAx0) SILICON BRIDGE RECTIFIER
Description
D3SBA10 ~ D3SBA80
PRV : 100 ~ 800 Volts Io : 4.
0 Amperes
FEATURES :
* High current www.
DataSheet4U.
com * * * * * * * capability High surge current capability High reliability Low reverse current Low forward voltage drop Ideal for printed circuit board Very good heat dissipation Pb / RoHS Free
SILICON BRIDGE RECTIFIER
0.
150 (3.
8) 0.
134 (3.
4) 0.
189 (4.
8) 0.
173 (4.
4)
C3
0.
603(15.
3) 0.
579(14.
7)
+ ~ ~
0.
383(9.
7) 0.
367(9.
3)
0.
130(3.
7) 0.
146(3.
3)
0.
043 (1.
1) 0.
035 (0.
9)
0.
709 (18) 0.
669 (17)
0.
075 (1.
9) 0.
060 (1.
5)
MECHANICAL DATA :
* Case : Reliable low cost construction utilizing molded plastic technique * Epoxy : UL94V-O rate flame retardant * Terminals : Plated lead solderable per MIL-STD-202, Method 208 guaranteed * Polarity : Polarity symbols marked on case * Mounting position : Any * Weight : 4.
28 grams
0.
303 (7.
7) 0.
287 (7.
3)
0.
114 (2.
9) 0.
098 (2.
5) 0.
032 (0.
8) 0.
043 (1.
1)
Dimensions in inches and (millimeters)
Rating at 25 °C ambient temperature unless otherwise specified.
Single phase, half wave, 60 Hz, resistive or inductive load.
For capacitive load, derate current by 20%.
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
RATING
Maximum Reverse Voltage Maximum Average Forward Current (50Hz Sine wave, R-load) Maximum Peak Forward Surge Current ( 50 Hz, Half-cycle, Sinwave, Single Shot ) Current Squared Time at 1ms ≤ t < 10 ms, Tc=25 °C Maximum Forward Voltage per Diode at I F = 2.
0 A.
Maximum DC Reverse Current, V R=VRM ( Pulse measurement, Rating of per diode) Maximum Thermal Resistance, Junction to case Maximum Thermal Resistance, Junction to Ambient Operating Junction Temperature Range Storage Temperature Range Page 1 of 2
SYMBOL
V RM IF(AV)
D3SBA D3SBA D3SBA D3SBA D3SBA 10 20 40 60 80
100 200 400 600 800 4 (With heatsink, Tc = 108 °C) 2.
3 (Without heatsink, Ta = 25 °C) 80 32 1.
05 10 5.
5 (With heatsink) 30 (Without heatsink) 150 - 40 to + 150
0.
134(3.
4) 0.
122(3.
1)
0.
996 (25.
3) 0.
972 (24.
7)
UNIT
V A
IFSM I2 t VF IR RθJC RθJA TJ T STG
A A2S ...
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