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  features 6 ka, 8/20 ? surge capability low clamping voltage under surge bidirectional tvs excellent performance over temperature applications high power dc bus protection absolute maximum ratings (@ t a = 25 ? unless otherwise noted) ptvs6-xxxc-th series high current tvs diodes *rohs directive 2002/95/ec jan. 27, 2003 including annex and rohs recast 2011/65/eu june 8, 2011. speci cations are subject to change without notice. the device characteristics and parameters in this data sheet can and do vary in different applications and actual device perfor mance may vary over time. users should verify actual device performance in their speci c applications. general information the model ptvs6-xxxc-th series high current bidirectional tvs diodes are designed for use in high power dc bus clamping applications. these devices offer bidirectional port protection and are available with standoff voltage ratings of 58 v and 76 v. the devices are rohs* compliant. they also meet iec 61000-4-5 8/20 s current surge requirements. *rohs compliant electrical characteristics (@ t a = 25 ? unless otherwise noted) parameter test conditions min. typ. max. unit i d standby current v d = v wm 10 a v (br) breakdown voltage i br = 10 ma ptvs6-058c-th PTVS6-076C-TH 64 85 66 92 70 95 v v c clamping voltage (1) per iec61000-4-5 (8/20 s current waveform) i pp = 6 ka ptvs6-058c-th PTVS6-076C-TH 110 140 v v (br) temperature coef? cient 0.1 %/c c capacitance f = 10 khz, v d = 1 vrms ptvs6-058c-th PTVS6-076C-TH 4.5 3.3 nf asia-paci c: tel: +886-2 2562-4117 ?fax: +886-2 2562-4116 emea: tel: +36 88 520 390 ?fax: +36 88 520 211 the americas: tel: +1-951 781-5500 ?fax: +1-951 781-5700 www.bourns.com (1) v c measured at the time which is coincident with the peak surge current. rating symbol value unit repetitive standoff voltage ptvs6-058c-th PTVS6-076C-TH v wm 58 76 v peak current rating per 8/20 s iec 61000-4-5 i ppm 6ka operating junction temperature range t j -55 to +125 c storage temperature range t s -55 to +150 c lead temperature, soldering (10 s) 260 c
120 0 0 25 50 100 75 125 150 175 ambient temperature (c) percent of rated value 110 100 90 80 70 60 50 40 30 20 10 12 -12 -40 -20 0 20 40 -60 -80 100 120 140 junction temperature (c) v br change vs. temperature (%) 10 8 6 4 2 0 -2 -4 -6 -8 -10 normalized to 25 c ptvs6-xxxc-th series high current tvs diodes performance graphs v-i characteristic percentage v br change vs. junction temperature typical surge current derating this graph shows the typical device surge current derating versus ambient temperature when subjected to the 8/20 ? current waveform per the iec 61000-4-5 speci cation. this device is not intended for continuous operation at temperatures above 125 ?. speci cations are subject to change without notice. the device characteristics and parameters in this data sheet can and do vary in different applications and actual device perfor mance may vary over time. users should verify actual device performance in their speci c applications.
rev. 11/15 product dimensions ptvs6-xxxc-th series high current tvs diodes typical part marking ptvs6-058c-th .......................................................................6058 PTVS6-076C-TH .......................................................................6076 dimensions: mm (inches) epoxy encapsulation materials conform to ul 94v-0. silver plated lead nish conforms to the solderability requirements of jesd 22-b102, pb free solder. package dimensions are shown below: how to order ptvs 6 - 076 c - t h series ptvs = power tvs high current diode peak current rating 6 = 6 ka repetitive standoff voltage 058 = 58 v 076 = 76 v suf x c = bidirectional device package t = through-hole temperature h = high temperature series d c h g a f e b dim. ptvs6-058c-th PTVS6-076C-TH a 24.15 ?0.72 (0.951 ?0.028) b 2.40 ?0.50 (0.094 ?0.020) c 1.75 ?1.25 (0.069 ?0.049) d 12.00 (0.472) max. e 1.25 ?0.05 (0.049 ?0.002) f 11.50 (0.453) max. g 5.00 (0.197) max. 6.00 (0.236) max. h 6.00 ?1.00 (0.236 ?0.039) speci cations are subject to change without notice. the device characteristics and parameters in this data sheet can and do vary in different applications and actual device perfor mance may vary over time. users should verify actual device performance in their speci c applications.


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