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  bym10-50 thru bym10-1000, gl41a thru gl41y document number 88546 07-oct-05 vishay general semiconductor www.vishay.com 1 p a t e n t e d * ? do-213ab *glass-plastic encapsulation is covered by patent no. 3,996,602, brazed-lead assembly to patent no. 3 , 930 , 306 surface mount glass passivated junction rectifier major ratings and characteristics i f(av) 1.0 a v rrm bym-50-1000 gl41a-y 50 v to 1000 v 50 v to 1600 v i fsm 30 a i r 10 a v f 1.1 v, 1.2 v t j max. 175 c features ? superectifier structure for high reliability condition ? patented glass-plastic encapsulation technique ? ideal for automated placement ? low forward voltage drop ? low leakage current ? high forward surge capability ? meets environmental standard mil-s-19500 ? meets msl level 1, per j-std-020c ? solder dip 260 c, 40 seconds typical applications for use in general purpose rectification of power sup- plies, inverters, converters and freewheeling diodes for consumer, automotive and telecommunication mechanical data case: do-213ab, molded epoxy over glass body epoxy meets ul-94v-0 flammability rating terminals: matte tin plated leads, solderable per j-std-002b and jesd22-b102d e3 suffix for commercial grade, he3 suffix for high reliability grade (aec q101 qualified) polarity: two bands indicate cathode end - 1st band denotes device type and 2nd band denotes repetitive peak reverse voltage rating maximum ratings (t a = 25 c unless otherwise noted) parameter symbol bym 10-50 bym 10-100 bym 10-200 bym 10-400 bym 10-600 bym 10-800 by m10-1000 unit standard recovery device: 1st band is white gl 41a gl 41b gl 41d gl 41g gl 41j gl 41k gl 41m gl 41t gl 41y polarity color bands (2nd band) gray red or ange yellow green blue violet white brown maximum repetitive peak reverse voltage v rrm 50 100 200 400 600 800 1000 1300 1600 v maximum rms voltage v rms 35 70 140 280 420 560 700 910 1120 v maximum dc blocking voltage v dc 50 100 200 400 600 800 1000 1300 1600 v maximum average forward rectified current (see fig. 1) i f(av) 1.0 a peak forward surge current 8.3 ms single half sine-wave superimposed on rated load i fsm 30 a maximum full load reverse current full cycle average at t a = 75 c i r(av ) 30 a operating junction and storage temperature range t j ,t stg - 65 to + 175 c
www.vishay.com 2 document number 88546 07-oct-05 bym10-50 thru bym10- 1000, gl41a thru gl41y vishay general semiconductor electrical characteristics (t a = 25 c unless otherwise noted) thermal characteristics (t a = 25 c unless otherwise noted) notes: (1) thermal resistance from junction to ambient, 0. 24 x 0.24" (6.0 x 6.0 mm) copper pads to each terminal (2) thermal resistance from juncti on to terminal, 0.24 x 0.24" (6.0 x 6.0 mm) copper pads to each terminal ratings and characteristics curves (t a = 25 c unless otherwise noted) parameter te s t c o n d i t i o n symbol bym 10-50 bym 10-100 bym 10-200 bym 10-400 bym 10-600 bym 10-800 by m10-1000 unit gl 41a gl 41b gl 41d gl 41g gl 41j gl 41k gl 41m gl 41t gl 41y maximum instantaneous forward voltage at 1.0 a v f 1.1 1.2 v maximum dc reverse current at rated dc blocking voltage t a = 25 c t a = 125 c i r 10 50 a typical junction capacitance at 4.0 v, 1 mhz c j 8.0 pf parameter symbol bym 10-50 bym 10-100 bym 10-200 bym 10-400 bym 10-600 bym 10-800 by m10-1000 unit gl 41a gl 41b gl 41d gl 41g gl 41j gl 41k gl 41m gl 41t gl 41y typical thermal resistance r ja r jt 75 (1) 30 (2) c/ w figure 1. forward current derating curve 25 50 75 100 125 150 175 0 0.25 0.50 0.75 1.0 a v erage for w ard rectified c u rrent (a) terminal temperat u re, c gl41a thr u gl41m gl41t thr u gl41y 60 hz resisti v e or ind u cti v e load figure 2. maximum non-repetitive peak forward surge current 1 10 100 10 5.0 15 20 25 30 peak for w ard s u rge c u rrent (a) nu m b er of cycles at 60hz gl41a thr u gl41m 0 t j = t j max. 8 .3 ms single half sine- w a v e
bym10-50 thru bym10-1000, gl41a thru gl41y document number 88546 07-oct-05 vishay general semiconductor www.vishay.com 3 package outline dimensions in inches (millimeters) figure 3. typical instantaneous forward characteristics figure 4. maximum non-repetitive peak forward surge current 0.4 0.6 0. 8 1.0 1.2 1.4 1.6 10 1 0.1 0.01 instantaneo u s for w ard c u rrent (a) instantaneo u s for w ard v oltage ( v ) gl41a thr u gl41j gl41k thr u gl41y t j = 25 c p u lse w idth = 300 s 1% d u ty cycle 0 20 40 60 8 0 100 0.01 0.1 1 10 percent of rated peak re v erse v oltage (%) instantaneo u s re v erse c u rrent ( a) t j = 100 c t j = 25 c figure 5. typical junction capacitance figure 6. typical trans ient thermal impedance 1 10 100 10 1 30 j u nction capacitance (pf) re v erse v oltage ( v ) t j = 25 c f = 1.0 mhz v sig = 50m v p-p 0.01 0.1 1 10 100 0.1 10 100 1 transient thermal impedance ( c/ w ) mo u nted on 0.20 x 0.27" (5 x 7mm) copper pad areas t - p u lse d u ration (sec.) solderable ends 1st band 0.022 (0.56) 0.018 (0.46) 0.205 (5.2) 0.185(4.7) d1= 0.105 0.095 (2.67) (2.41) d2=d1 +0 - 0.008 (0.20) 1st band denotes type and positive end (cathode) d2 0.022 (0.56) 0.018 (0.46) do-213ab
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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