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  provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 1 of 11 july, 2006 westcode an ixys company date:- 3 jul, 2006 data sheet issue:- 2 provisional data wespack phase control thyristor types N3022MK120 to n3022mk140 development type no.: nx149mk120-140 absolute maximum ratings voltage ratings maximum limits units v drm repetitive peak off-state voltage, (note 1) 1200-1400 v v dsm non-repetitive peak off-state voltage, (note 1) 1200-1400 v v rrm repetitive peak reverse voltage, (note 1) 1200-1400 v v rsm non-repetitive peak reverse voltage, (note 1) 1300-1500 v other ratings maximum limits units i t(av)m maximum average on-state current, t sink =55c, (note 2) 3022 a i t(av)m maximum average on-state current. t sink =85c, (note 2) 2001 a i t(av)m maximum average on-state current. t sink =85c, (note 3) 1048 a i t(rms)m nominal rms on-state current, t sink =25c, (note 2) 6085 a i t(d.c.) d.c. on-state current, t sink =25c, (note 4) 4994 a i tsm peak non-repetitive surge t p =10ms, v rm =60%v rrm , (note 5) 38.2 ka i tsm2 peak non-repetitive surge t p =10ms, v rm 10v, (note 5) 42.0 ka i 2 ti 2 t capacity for fusing t p =10ms, v rm =60%v rrm , (note 5) 7.3010 6 a 2 s i 2 t i 2 t capacity for fusing t p =10ms, v rm 10v, (note 5) 8.8210 6 a 2 s (continuous, 50hz) 100 (repetitive, 50hz, 60s) 200 (di/dt) cr critical rate of rise of on-state current (note 6) (non-repetitive) 400 a/s v rgm peak reverse gate voltage 5 v p g(av) mean forward gate power 4 w p gm peak forward gate power 30 w t j op operating temperature range -40 to +125 c t stg storage temperature range -40 to +150 c notes:- 1) de-rating factor of 0.13% per c is applicable for t j below 25c. 2) double side cooled, single phase; 50hz, 180 half-sinewave. 3) cathode side cooled, single phase; 50hz, 180 half-sinewave. 4) double side cooled. 5) half-sinewave, 125c t j initial. 6) v d =67% v drm , i tm =2000a, i fg =2a, t r 0.5s, t case =125c.
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 2 of 11 july, 2006 characteristics parameter min. typ. max. test conditions (note 1) units v tm maximum peak on-state voltage - - 1.25 i tm =3000a v v tm maximum peak on-state voltage - - 1.79 i tm =9000a v v t0 threshold voltage - - 0.981 v r t slope resistance - - 0 .090 m ? (dv/dt) cr critical rate of rise of off-state voltage 1000 - - v d =80% v drm , linear ramp, gate o/c v/ s i drm peak off-state current - - 100 rated v drm ma i rrm peak reverse current - - 100 rated v rrm ma v gt gate trigger voltage - - 3.0 v i gt gate trigger current - - 300 t j =25c v d =10v, i t =3a ma v gd gate non-trigger voltage - - 0.25 rated v drm v i h holding current - - 1000 t j =25c ma t gd gate-controlled turn-on delay time - 0.8 2.0 s t gt turn-on time - 1.4 3.0 v d =67% v drm , i t =2000a, di/dt=10a/s, i fg =2a, t r =0.5s, t j =25c s q rr recovered charge - 2600 - c q ra recovered charge, 50% chord - 1800 2100 c i rm reverse recovery current - 150 - a t rr reverse recovery time - 24 - i tm =1000a, t p =1000s, di/dt=10a/s, v r =50v s - 250 - i tm =1000a, t p =1000s, di/dt=10a/s, v r =50v, v dr =80%v drm , dv dr /dt=20v/s t q turn-off time - 300 - i tm =1000a, t p =1000s, di/dt=10a/s, v r =50v, v dr =80%v drm , dv dr /dt=200v/s s - - 0.0140 double side cooled k/w - - 0.0253 anode side cooled k/w r thjk thermal resistance, junction to heatsink - - 0.0314 cathode side cooled k/w f mounting force 2 5 - 31 note 2. kn w t weight - 270 - g notes:- 1) unless otherwise indicated t j =125 c. 2) for other clamp forces, please consult factory.
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 3 of 11 july, 2006 notes on ratings and characteristics 1.0 voltage grade table voltage grade v drm v dsm v rrm v v rsm v v d v r dc v 12 1200 1300 810 14 1400 1500 930 2.0 extension of voltage grades this report is applicable to other voltage grades when supply has been agreed by sales/production. 3.0 de-rating factor a blocking voltage de-rating factor of 0.13%/c is applicable to this device for t j below 25c. 4.0 repetitive dv/dt standard dv/dt is 1000v/s. 5.0 snubber components when selecting snubber components, care must be taken not to use excessively large values of snubber capacitor or excessively small values of snubber resistor. such excessive component values may lead to device damage due to the large resultant values of snubber discharge current. if required, please consult the factory for assistance. 6.0 rate of rise of on-state current the maximum un-primed rate of rise of on-state current must not exceed 400a/s at any time during turn- on on a non-repetitive basis. for repetitive performance, the on-state rate of rise of current must not exceed 200a/s at any time during turn-on. note that these values of rate of rise of current apply to the total device current including that from any local snubber network. 7.0 gate drive the nominal requirement for a typical gate drive is illustrated below. an open circuit voltage of at least 30v is assumed. this gate drive must be applied when using the full di/dt capability of the device. i gm i g t p1 4a/s the magnitude of i gm should be between five and ten times i gt , which is shown on page 2. its duration (t p1 ) should be 20s or sufficient to allow the anode current to reach ten times i l , whichever is greater. otherwise, an increase in pulse current could be needed to supply the necessary charge to trigger. the ?back-porch? current i g should remain flowing for the same duration as the anode current and have a magnitude in the order of 1.5 times i gt .
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 4 of 11 july, 2006 8.0 computer modelling parameters 8.1 device dissipation calculations t avttt av rff wrffvv i ?? ???++? = 2 2 2 00 2 4 and: kj th av ttt r t w ?=? ? = max where v t0 =0.981v, r t =0.09m ?, r th = supplementary thermal impedance, see table below and ff = form factor, see table below. supplementary thermal impedance conduction angle 30 60 90 120 180 270 d.c. square wave double side cooled 0.0175 0.0168 0.0162 0.0157 0.0150 0.0143 0.0140 square wave cathode side cooled 0.0357 0.0344 0.0335 0.0329 0.0322 0.0316 0.0314 sine wave double side cooled 0.0169 0.0163 0.0158 0.0151 0.0140 sine wave cathode side cooled 0.0349 0.0340 0.0334 0.0324 0.0318 form factors conduction angle 30 60 90 120 180 270 d.c. square wave 3.46 2.45 2 1.73 1.41 1.15 1 sine wave 3.98 2.78 2.22 1.88 1.57 8.2 calculating v t using abcd coefficients the on-state characteristic i t vs. v t , on page 6 is represented in two ways; (i) the well established v t0 and r t tangent used for rating purposes and (ii) a set of constants a, b, c, d, forming the coefficients of the representative equation for v t in terms of i t given below: () tttt idicibav ?+?+?+= ln the constants, derived by curve fitting software, are given below for both hot and cold characteristics. the resulting values for v t agree with the true device characteristic over a current range, which is limited to that plotted. 25c coefficients 125c coefficients a 1.0466959 a 0.7983324 b -0.03288316 b -0.01075591 c 2.12700710 -5 c 4.15701610 -5 d 8.42153210 -3 d 7.54164410 -3
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 5 of 11 july, 2006 8.3 d.c. thermal impedance calculation = = ? ? ? ? ? ? ? ? ? ??= np p t pt p err 1 1 where p = 1 to n, n is the number of terms in the series and: t = duration of heating pulse in seconds. r t = thermal resistance at time t. r p = amplitude of p th term. p = time constant of r th term. the coefficients for this device are shown in the tables below: d.c. double side cooled term 1234 r p 9.16587510 -3 3.09004810 -3 4.53320610 -4 1.33755010 -3 p 0.3739650 0.1072757 0.02914000 4.43039110 -3 d.c. double side cooled term 1234 r p 0.02275 4.71057110 -3 3.06461310 -3 6.48591610 -4 p 2.682304 0.239177 0.06309731 2.00339310 -3 9.0 reverse recovery ratings (i) q ra is based on 50% i rm chord as shown in fig. 1 fig. 1 (ii) q rr is based on a 150 s integration time i.e. = s rrrr dtiq 150 0 . (iii) 2 1 t t factork =
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 6 of 11 july, 2006 curves figure 1 ? on-state characteristics of limit device 100 1000 10000 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 1.8 instantaneous on-state voltage - v tm (v) instantaneous on-state current - i tm (a) t j = 125c t j = 25c figure 2 ? gate characteristics ? trigger limits figure 3 ? gate characteristics ? power curves 0 1 2 3 4 5 6 7 0 0.2 0.4 0.6 0.8 1 gate trigger current - i gt (a) gate trigger voltage - v gt (v) i gd , v gd i gt , v gt min v g dc max v g dc t j =25c 125c 25c -10c -40c 0 2 4 6 8 10 12 14 16 18 0246810 gate trigger current - i gt (a) gate trigger voltage - v gt (v) p g 4w dc p g max 30w dc min v g dc max v g dc t j =25c N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2 N3022MK120-140 ad issue 2
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 7 of 11 july, 2006 figure 4 ? total recovered charge, q rr figure 5 ? recovered charge, q ra (50% chord) 1000 10000 100000 1 10 100 1000 di/dt (a/s) recovered charge - q rr (c) t j =125c 4000a 2000a 1000a 500a 1000 10000 1 10 100 1000 di/dt (a/s) recovered charge, 50% chord - q ra (c) t j =125c 4000a 2000a 1000a 500a figure 6 ? peak reverse recovery current, i rm figure 7 ? maximum recovery time, t rr (50% chord) 10 100 1000 10000 1 10 100 1000 di/dt (a/s) reverse recovery current - i rm (a) t j =125c 4000a 2000a 1000a 500a 1 10 100 1 10 100 1000 di/dt (a/s) reverse recovery time, 50% chord - t rr (s) t j =125c 4000a 2000a 1000a 500a N3022MK120-140 ad issue 2 N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 8 of 11 july, 2006 figure 8 ? on-state current vs. power dissipation ? double side cooled (sine wave) figure 9 ? on-state current vs. heatsink temperature ? double side cooled (sine wave) 0 1000 2000 3000 4000 5000 6000 7000 8000 0 1 000 2000 3000 4 000 mean forward current (a) (whole cycle averaged) maximum forward dissipation (w) 30 60 90 120 180 0 20 40 60 80 100 120 140 0 1 000 2000 3000 4000 mean forward current (a) (whole cycle averaged) maximum permissable heatsink temperature (c) 30 60 90 120 180 figure 10 ? on-state current vs. power dissipation ? double side cooled (square wave) figure 11 ? on-state current vs. heatsink temperature ? double side cooled (square wave) 0 1000 2000 3000 4000 5000 6000 7000 8000 0 10002000300040005000 mean forward current (amps) (whole cycle averaged) maximum forward dissipation (w) d.c. 270 180 120 90 60 30 0 20 40 60 80 100 120 140 0 10002000300040005000 mean forward current (amps) (whole cycle averaged) maximum permissible heatsink temperature (c) d.c. 270 180 120 90 60 30 N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2 N3022MK120-140 a d issue 2
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 9 of 11 july, 2006 figure 12 ? on-state current vs. power dissipation ? cathode side cooled (sine wave) figure 13 ? on-state current vs. heatsink temperature ? cathode side cooled (sine wave) 0 500 1000 1500 2000 2500 3000 3500 0 500 1000 1 500 2 000 2500 mean forward current (a) (whole cycle averaged) maximum forward dissipation (w) 30 60 90 120 180 0 20 40 60 80 100 120 140 0 5 00 1000 1500 2000 2500 mean forward current (a) (whole cycle averaged) maximum permissable heatsink temperature (c) 30 60 90 120 180 figure 14 ? on-state current vs. power dissipation ? cathode side cooled (square wave) figure 15 ? on-state current vs. heatsink temperature ? cathode side cooled (square wave) 0 500 1000 1500 2000 2500 3000 3500 0 500 1000 1500 2000 2500 3000 mean forward current (amps) (whole cycle averaged) maximum forward dissipation (w) d.c. 270 180 120 90 60 30 0 20 40 60 80 100 120 140 0 500 1000 1500 2000 2500 3000 mean forward current (amps) (whole cycle averaged) maximum permissible heatsink temperature (c) d.c. 270 180 120 90 60 30 N3022MK120-140 ad issue 2 N3022MK120-140 ad issue 2 N3022MK120-140 ad issue 2 N3022MK120-140 ad issue 2
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 10 of 11 july, 2006 figure 16 ? maximum surge and i 2 t ratings 10000 100000 1000000 total peak half sine surge current (a) 1.00e+06 1.00e+07 1.00e+08 maximum i 2 t (a 2 s) 13 510 1 5 10 50 100 duration of surge (ms) duration of surge (cycles @ 50hz) i 2 t: 60% v rrm i tsm : 60% v rrm i 2 t: v rrm 10v i tsm : v rrm 10v t j (initial) = 125c figure 17 ? transient thermal impedance 0.00001 0.0001 0.001 0.01 0.1 0.0001 0.001 0.01 0.1 1 10 100 time (s) thermal impedance (k/w) ksc 0.0314k/w asc 0.0253k/w dsc 0.0140k/w N3022MK120-140 ad issue 2 N3022MK120-140 ad issue 2
westcode westcodewestcode westcode an ixys company wespack phase control thyristor types N3022MK120 to n3022mk140 provisional data sheet. types N3022MK120 to n3022mk140 issue 2 page 11 of 11 july, 2006 outline drawing & ordering information 101a353 ordering information (please quote 10 digit code as below) n3022 mk    0 fixed type code fixed outline code voltage code v drm /100 12-14 fixed turn-off time code order code: n3022mk140 ? 1400v v drm , v rrm , 14mm clamp height capsule. westcode ixys semiconductor gmbh edisonstra?e 15 d-68623 lampertheim tel: +49 6206 503-0 fax: +49 6206 503-627 e-mail: marcom@ixys.de an ixys company westcode semiconductors ltd langley park way, langley park, chippenham, wiltshire, sn15 1ge. tel: +44 (0)1249 444524 fax: +44 (0)1249 659448 e-mail: wsl.sales@westcode.com ixys corporation 3540 bassett street santa clara ca 95054 usa tel: +1 (408) 982 0700 fax: +1 (408) 496 0670 e-mail: sales@ixys.net www.westc ode.com www.ixys.com westcode semiconductors inc 3270 cherry avenue long beach ca 90807 usa tel: +1 (562) 595 6971 fax: +1 (562) 595 8182 e-mail: wsi.sales@westcode.com the information contained herein is confidential and is protected by copyright. the information may not be used or disclosed except with the written permission of and in the manner permitted by the proprietors westcode semiconductors ltd. in the interest of product improvement, westcode reserves the right to change specifications at any time without prior notice. devices with a suffix code (2-letter, 3-letter or letter/digit/letter combination) added to their generic code are not necessar ily subject to the conditions and limits contained in this report. ? westcode semiconductors ltd.


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