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  gsib620 thru gsib680 document number 88648 20-jul-05 vishay general semiconductor www.vishay.com 1 case style gsib-5s ~ ~ ~ ~ single-phase single in-line bridge rectifiers major ratings and characteristics i f(av) 6 a v rrm 200 v to 800 v i fsm 180 a i r 10 a v f 0.95 v t j max. 150 c features  ul recognition file number e54214  thin single in-line package  glass passivated chip junction  high surge current capability  high case dielectric strength of 1500 v rms  solder dip 260 c, 40 seconds typical applications general purpose use in ac-to-dc bridge full wave rec- tification for switching power supply, home appli- ances, office equipment, industrial automation applications mechanical data case: gsib-5s epoxy meets ul-94v-0 flammability rating terminals: matte tin plated (e3 suffix) leads, solder- able per j-std-002b and jesd22-b102d polarity: as marked on body mounting torque: 10 cm-kg (8.8 inches-lbs) max. recommended torque: 5.7cm-kg (5 inches-lbs) maximum ratings ratings at 25 c ambient temper ature unless otherwise specified. electrical characteristics ratings at 25 c ambient temper ature unless otherwise specified. parameter symbol gsib620 gsib640 gsib660 gsib680 unit maximum repetitive peak reverse voltage v rrm 200 400 600 800 v maximum rms voltage v rms 140 280 420 560 v maximum dc blocking voltage v dc 200 400 600 800 v maximum average forward rectified t c = 100 c output current at t a = 25 c i f(av) 6.0 (1) 2.8 (2) a peak forward surge current single sine-wave superimposed on rated load (jedec method) i fsm 180 a rating for fusing (t < 8.3 ms) i 2 t 120 a 2 sec operating junction and storage temperature range t j , t stg - 55 to + 150 c parameter test condition symbol gsib620 gsib640 gsib660 gsib680 unit maximum instantaneous forward voltage drop per leg at 3.0 a v f 0.95 v maximum dc reverse current at rated dc blocking voltage per leg t a = 25 c t a = 125 c i r 10 250 a
www.vishay.com 2 document number 88648 20-jul-05 gsib620 thru gsib680 vishay general semiconductor thermal characteristics ratings at 25 c ambient tem perature unless other wise specified. notes: (1) unit case mounted on al plate heatsink (2) units mounted on p.c.b. with 0.5 x 0.5" (12 x 12 mm) copper pads and 0.375" (9.5 mm) lead length (3) recommended mounting position is to bolt down on heatsink with silicone thermal compound for maximum heat transfer with #6 screw ratings and characteristics curves (t a = 25 c unless otherwise noted) parameter symbol gsib620 gsib640 gsib660 gsib680 unit typical thermal resistance per leg r ja r jc 22 (2) 3.4 (1) c/w figure 1. derating curve output rectified current figure 2. maximum non-repetitive peak forward surge current per leg 0 5 0 1 0 0 1 5 0 0 2 .0 4 .0 6 .0 8 .0 heatsink mounting, t c p.c.b. mounting, t a average forward output current (a) temperature ( c) 1 0 .0 1 1 0 1 0 0 0 6 0 3 0 1 2 0 9 0 1 8 0 1 5 0 2 1 0 number of cycles at 60 hz peak forward surge current (a) 1.0 cycle t j =t j max. single sine-wave figure 3. typical forward characteristics per leg figure 4. typical reverse characteristics per leg instantaneous forward voltage (v) 0.3 1.1 0.01 10 0.1 1 100 0.5 0.7 0.9 instantaneous forward current (a) tj = 125 c tj = 150 c tj=25c percent of rated peak reverse voltage (%) t j = 125c 1000.0 20 60 40 100 80 0.0 0.1 1.0 10.0 100.0 instantaneous reverse current ( a) tj = 150 c tj = 125 c tj=25c
gsib620 thru gsib680 document number 88648 20-jul-05 vishay general semiconductor www.vishay.com 3 package outline dimensi ons in millimeters figure 5. typical junc tion capacitance per leg 0 .1 1 1 0 1 0 0 1 0 1 0 0 1 ,0 0 0 junction capacitance (pf) reverse voltage (v) 1 figure 6. typical trans ient thermal impedance 0 .0 1 0 .1 1 1 0 1 0 0 0 .1 1 1 0 1 0 0 t, heating time (sec.) transient thermal impedance ( c/w) 2.5 0.2 2.2 0.2 1 0.1 10 0.2 7.5 0.2 4 0.2 5 20 0.3 17 . 5 0.5 11 0.2 2.7 0.2 3.5 0.2 3.2 0.2 0.7 0.1 4.6 0.2 3.6 0.2 + 7.5 0.2 30 0.3 case style gsib-5s
legal disclaimer notice vishay document number: 91000 www.vishay.com revision: 08-apr-05 1 notice specifications of the products displayed herein are subjec t to change without notice. vishay intertechnology, inc., or anyone on its behalf, assume s no responsibility or liability fo r any errors or inaccuracies. information contained herein is intended to provide a product description only. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document. except as provided in vishay's terms and conditions of sale for such products, vishay assumes no liability whatsoever, and disclaims any express or implied warranty, relating to sale and /or use of vishay products including liab ility or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyrigh t, or other intellectual property right. the products shown herein are not designed for use in medical, life-saving, or life-sustaining applications. customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify vishay for any damages resulting from such improper use or sale.


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