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  sen - r - 1050 - xxx sensitron semiconductor techn ical data sheet 4199 , rev. - 221 west industry court deer park, ny 11729 - 4681 phone (631) 586 - 7600 fax (631) 242 - 9798 world wide web site - http://www.sensitron.com e - mail address - sales@sensitron.com transient voltage suppressor 5000 watt series glass passivated die/cell features description 5000w peak pulse power dissipation glass passivated junction low incremental surge resistance excellent clamping capability repetition rate (duty cycle): 0.05 % fast response time: typically less than 1.0 ps typical ir less than 1a above 10v applications pow er supply surge protection data link surge protection lightning transient suppression electrostatic protection this is a transient voltage suppressor series extending from 5.0 volts to 100 volts. it is available in either uni - directional or bi - directional configurations. the cel l version is available in a type 1 configuration with double tabs. a type 2 configuration with silicone edge protection protecting the edge of the die and the die cavity between the double tabs is also available as a custom option. electrical characteristics parameter symbol test conditions min typ max unit peak pulse power pppm ta = 25 8 c, tp = 1 ms (note 1) 5000 watts electrical parameters see table maximum solder temperature tmax 10 second exposure 250 8 c operating & storage temperature tj, tstg - 55 175 8 c note 1: non - repetitive current pulse, per fig. 3 and derated above ta = 25 8 c per fig. 2. a b c d e f g 220 13.5 277 98 305 277 98 note 1: all dimension in mil note 2: the dimension is for low voltage parts (<40v) only. the dimension b, d and g will be larger for high voltage parts (>40v). b d g c e f a chip tvs t1 cell tvs t2 cell
sen - r - 1050 - xxx sensitron semiconductor techn ical data sheet 4199 , rev. - 221 west industry court deer park, ny 11729 - 4681 phone (631) 586 - 7600 fax (631) 242 - 9798 world wide web site - http://www.sensitron.com e - mail address - sales@sensitron.com note 2: die only configuration requires user to provide adequate energy absorption. sen - r - 1050 - xxx 5000 watt tvs series part number v r (v) vz min @ iz (v) vz max @ iz (v) iz (ma) vcc (v) ip (a) ir max @ v r (ua) sen - r - 1050 - 001 5.0 6.40 7.00 50 9.2 544.0 10000 sen - r - 1050 - 0 02 6.0 6.67 7.37 50 10.3 486.0 10000 sen - r - 1050 - 003 6.5 7.22 7.98 50 11.2 447.0 4000 sen - r - 1050 - 004 7.0 7.78 8.60 50 12.0 417.0 2000 sen - r - 1050 - 005 7.5 8.33 9.21 5 12.9 388.0 500 sen - r - 1050 - 006 8.0 8.89 9.83 5 13.6 368.0 300 sen - r - 1050 - 007 8.5 9.44 10 .40 5 14.4 348.0 100 sen - r - 1050 - 008 9.0 10.00 11.10 5 15.4 325.0 40 sen - r - 1050 - 009 10.0 11.10 12.30 5 17.0 295.0 30 sen - r - 1050 - 010 11.0 12.20 13.50 5 18.2 275.0 10 sen - r - 1050 - 011 12.0 13.30 14.70 5 19.9 252.0 10 sen - r - 1050 - 012 13.0 14.40 15.90 5 21.5 233.0 10 sen - r - 1050 - 013 14.0 15.60 17.20 5 23.2 216.0 10 sen - r - 1050 - 014 15.0 16.70 18.50 5 24.4 205.0 10 sen - r - 1050 - 015 16.0 17.80 19.70 5 26.0 193.0 10 sen - r - 1050 - 016 17.0 18.90 20.90 5 27.6 181.0 10 sen - r - 1050 - 017 18.0 20.00 22.10 5 29.2 172.0 10 s en - r - 1050 - 018 20.0 22.20 24.50 5 32.4 154.0 10 sen - r - 1050 - 019 22.0 24.00 26.90 5 35.5 141.0 10 sen - r - 1050 - 020 24.0 26.70 29.50 5 38.9 129.0 10 sen - r - 1050 - 021 26.0 28.90 31.90 5 42.1 119.0 10 sen - r - 1050 - 022 28.0 31.10 34.40 5 45.4 110.0 10 sen - r - 1050 - 0 23 30.0 33.30 36.80 5 48.4 103.0 10 sen - r - 1050 - 024 33.0 36.70 40.60 5 53.3 93.9 10 sen - r - 1050 - 025 36.0 40.00 44.20 5 58.1 86.1 10 sen - r - 1050 - 026 40.0 44.40 49.10 5 64.5 77.6 10 sen - r - 1050 - 027 43.0 47.80 52.80 5 69.4 72.1 10 sen - r - 1050 - 028 45.0 50.00 5 5.30 5 72.7 68.8 10 sen - r - 1050 - 029 48.0 53.30 58.90 5 77.4 64.7 10 sen - r - 1050 - 030 51.0 56.70 62.70 5 82.4 60.7 10 sen - r - 1050 - 031 54.0 60.00 66.30 5 87.1 57.5 10 sen - r - 1050 - 032 58.0 64.40 71.20 5 93.6 53.5 10 sen - r - 1050 - 033 60.0 66.70 73.70 5 96.8 51.7 10 sen - r - 1050 - 034 64.0 71.10 78.60 5 103.0 48.6 10 sen - r - 1050 - 035 70.0 77.80 86.00 5 113.0 44.3 10 sen - r - 1050 - 036 75.0 83.30 92.10 5 121.0 41.4 10 sen - r - 1050 - 037 78.0 86.70 95.80 5 126.0 39.7 10 sen - r - 1050 - 038 85.0 94.40 104.00 5 137.0 36.5 10 sen - r - 1050 - 039 90.0 100.00 111.00 5 146.0 34.3 10 sen - r - 1050 - 040 100.0 110.00 123.00 5 162.0 30.9 10 sen - r - 1050 - 041 110.0 122.00 135.00 5 177.0 28.3 10 sen - r - 1050 - 042 120.0 133.00 147.00 5 193.0 26.0 10 sen - r - 1050 - 043 130.0 144.00 159.00 5 209.0 24.0 10 se n - r - 1050 - 044 150.0 167.00 185.00 5 243.0 20.6 10 sen - r - 1050 - 045 160.0 178.00 197.00 5 259.0 19.3 10 sen - r - 1050 - 046 170.0 189.00 209.00 5 275.0 18.2 10 sen - r - 1050 - 047 180.0 200.00 233.00 5 289.0 17.3 10
sen - r - 1050 - xxx sensitron semiconductor techn ical data sheet 4199 , rev. - 221 west industry court deer park, ny 11729 - 4681 phone (631) 586 - 7600 fax (631) 242 - 9798 world wide web site - http://www.sensitron.com e - mail address - sales@sensitron.com 100 1000 10000 100000 1 10 100 1000 0.1 1 10 100 0.1 1.0 10.0 100.0 1000.0 10000.0 fig. 1 - peak pulse power rating curve non - repetitive pulse waveform shown in fig.3 ta = 25c pppm - peak pulse power (kw) td - pulse width (sec.) 0 25 50 75 100 0 25 50 75 100 125 150 175 200 fig.2 - pulse derating curve ta - ambient temperature (c) pppm - peak pulse power (kw) 0 50 100 150 0.0 1.0 2.0 3.0 4.0 fig.3 - pulse waveform t - time(ms) ippm - peak pulse current,% tj = 25c pulse width(td) is defined as the point where the peak current decays to 50% of i ppm 10/1000sec.waveform as defined by r.e.a. peak value ippm td tr = 10 sec. fig. 4 - typical junction capacitance cj, junction capacitance tj = 25c f = 1mhz vsig = 50mvp - p vbr - breakdown voltage (v) measured at zero bias measured at stand - off voltage vwm 0 2 4 6 8 0 25 50 75 100 125 150 175 200 fig. 5 - steady state power derating curve ppm(a v),steady state power dissipation (w) tl - lead temperature (c) 60hz resistive or inductive load 200 250 300 350 400 450 500 1 10 100 fig.6 - maximum non - repetitive forward surge current number of cycles at 60 hz ifsm,peak forward surge currnet (a) 8.3ms single half sine - wave (jedec method)
? 221 west industry court  deer park, ny 11729-4681  (631) 586-7600 fax (631) 242-9798 ? ? world wide web - http://www.sensitron.com ? e-mail address - sales@sensitron.com ? sensitron semiconductor technical data disclaimer: 1- the information given herein, including the specifications and dimens ions, is subject to change wi thout prior notice to impr ove product characteristics. before ordering, purchas ers are advised to contact the sensitron semiconductor sales department for the latest version of the datasheet(s). 2- in cases where extremely high reliabilit y is required (such as use in nuclear power control, aerospace and aviation, traffic equipment, medical equipment, and safety equipment), safety should be ensured by using semiconductor devices t hat feature assured safety o r by means of users? fail-safe prec autions or other arrangement. 3- in no event shall sensitron semiconducto r be liable for any damages that may result from an accident or any other cause duri ng operation of the user?s units according to the datasheet(s). sensitron semiconducto r assumes no responsibility for any intellec tual property claims or any other problems that may result from applications of informatio n, products or circuits described in the d atasheets. 4- in no event shall sensitron semiconduc tor be liable for any failure in a semic onductor device or any secondary damage result ing from use at a value exceeding the absolute maximum rating. 5- no license is granted by the datasheet(s) under any patents or other rights of any third party or sensitron semiconductor. 6- the datasheet(s) may not be reproduced or duplicated, in any form , in whole or part, without the expressed written permissio n of sensitron semiconductor. 7- the products (technologies) de scribed in the datasheet(s) are not to be provi ded to any party whose purpose in their applica tion will hinder maintenance of international peace and safety nor are they to be applied to that purpose by their direct purchasers or a ny third party. when exporting these products (technologies), the necessary procedures are to be taken in accordance with related laws a nd regulations.


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