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  ? 2000 ixys all rights reserved 1 - 4 symbol test conditions maximum ratings i trms , i frms t vj = t vjm 400 a i tavm , i favm t c = 85  c; 180  sine 250 a i tsm , i fsm t vj = 45  c; t = 10 ms (50 hz), sine 8500 a v r = 0 t = 8.3 ms (60 hz), sine 9000 a t vj = t vjm t = 10 ms (50 hz), sine 7000 a v r = 0 t = 8.3 ms (60 hz), sine 7600 a  i 2 dt t vj = 45  c t = 10 ms (50 hz), sine 360 000 a 2 s v r = 0 t = 8.3 ms (60 hz), sine 336 000 a 2 s t vj = t vjm t = 10 ms (50 hz), sine 245 000 a 2 s v r = 0 t = 8.3 ms (60 hz), sine 240 000 a 2 s (di/dt) cr t vj = t vjm repetitive, i t = 750 a 100 a/  s f =50 hz, t p =200  s v d = 2/3 v drm i g = 1 a non repetitive, i t = 250 a 800 a/  s di g /dt = 1 a/  s (dv/dt) cr t vj = t vjm ;v dr = 2/3 v drm 1000 v/  s r gk =  ; method 1 (linear voltage rise) p gm t vj = t vjm t p = 30  s 120 w i t = i tavm t p = 500  s60w p gav 20 w v rgm 10 v t vj -40...+140  c t vjm 140  c t stg -40...+125  c v isol 50/60 hz, rms t = 1 min 3000 v~ i isol  1 ma t = 1 s 3600 v~ m d mounting torque (m5) 2.5-5/22-44 nm/lb.in. terminal connection torque (m8) 12-15/106-132 nm/lb.in. weight typical including screws 320 g v rsm v rrm type v dsm v drm v v version 1 version 1 900 800 mcc 220-08io1 mcd 220-08io1 1300 1200 mcc 220-12io1 mcd 220-12io1 1500 1400 mcc 220-14io1 mcd 220-14io1 1700 1600 mcc 220-16io1 mcd 220-16io1 data according to iec 60747 and refer to a single thyristor/diode unless otherwise stated. ixys reserves the right to change limits, test conditions and dimensions i trms = 2x 400 a i tavm = 2x 250 a v rrm = 800-1600 v features  international standard package  direct copper bonded al 2 o 3 -ceramic base plate  planar passivated chips  isolation voltage 3600 v~  ul registered, e 72873  keyed gate/cathode twin pins applications  motor control  power converter  heat and temperature control for industrial furnaces and chemical processes  lighting control  contactless switches advantages  space and weight savings  simple mounting  improved temperature and power cycling  reduced protection circuits mcc 220 mcd 220 thyristor modules thyristor/diode modules 7 6 5 4 2 3 1 mcd mcc 3671 542 31542
? 2000 ixys all rights reserved 2 - 4 symbol test conditions characteristic values i rrm t vj = t vjm ; v r = v rrm ; v d = v drm 70 ma i drm 40 ma v t , v f i t , i f = 600 a; t vj = 25  c 1.53 v v t0 for power-loss calculations only (t vj = 140  c) 0.9 v r t 1.0 m  v gt v d = 6 v; t vj = 25  c2v t vj = -40  c3v i gt v d = 6 v; t vj = 25  c 150 ma t vj = -40  c 200 ma v gd t vj = t vjm ;v d = 2/3 v drm 0.25 v i gd 10 ma i l t vj = 25  c; t p = 30  s; v d = 6 v 200 ma i g = 0.45 a; di g /dt = 0.45 a/  s i h t vj = 25  c; v d = 6 v; r gk =  150 ma t gd t vj = 25  c; v d = 1/2 v drm 2  s i g = 1 a; di g /dt = 1 a/  s t q t vj = t vjm ; i t = 300 a, t p = 200  s; -di/dt = 10 a/  s typ. 200  s v r = 100 v; dv/dt = 50 v/  s; v d = 2/3 v drm q s t vj = 125  c; i t , i f = 400 a, -di/dt = 50 a/  s 760  c i rm 275 a r thjc per thyristor/diode; dc current 0.139 k/w per module other values 0.0695 k/w r thjk per thyristor/diode; dc current see fig. 8/9 0.179 k/w per module 0.0895 k/w d s creepage distance on surface 12.7 mm d a strike distance through air 9.6 mm a maximum allowable acceleration 50 m/s 2 optional accessories for modules keyed gate/cathode twin plugs with wire length = 350 mm, gate = yellow, cathode = red type zy 180l (l = left for pin pair 4/5) ul 758, style 1385, type zy 180r (r = right for pin pair 6/7) csa class 5851, guide 460-1-1 fig. 1 gate trigger characteristics fig. 2 gate trigger delay time mcc 220 mcd 220 dimensions in mm (1 mm = 0.0394") mcc mcd threaded spacer for higher anode/ cathode construction: type zy 250 , material brass 20 12 14
? 2000 ixys all rights reserved 3 - 4 fig. 3 surge overload current i tsm , i fsm : crest value, t: duration fig. 4  i 2 dt versus time (1-10 ms) fig. 4a maximum forward current at case temperature fig. 5 power dissipation versus on- state current and ambient temperature (per thyristor or diode) fig. 6 three phase rectifier bridge: power dissipation versus direct output current and ambient temperature mcc 220 mcd 220
? 2000 ixys all rights reserved 4 - 4 fig. 7 three phase ac-controller: power dissipation versus rms output current and ambient temperature mcc 220 mcd 220 10 -3 10 -2 10 -1 10 0 10 1 10 2 0.00 0.05 0.10 0.15 0.20 10 -3 10 -2 10 -1 10 0 10 1 10 2 0.00 0.05 0.10 0.15 t s z thjk k/w t s z thjc k/w 30 dc 0 0 30 dc fig. 8 transient thermal impedance junction to case (per thyristor or diode) fig. 9 transient thermal impedance junction to heatsink (per thyristor or diode) r thjc for various conduction angles d: dr thjc (k/w) dc 0.139 180  c 0.141 120  c 0.142 60  c 0.142 30  c 0.143 constants for z thjc calculation: ir thi (k/w) t i (s) 1 0.0037 0.0099 2 0.0177 0.168 3 0.1175 0.456 r thjk for various conduction angles d: dr thjk (k/w) dc 0.179 180  c 0.181 120  c 0.182 60  c 0.183 30  c 0.183 constants for z thjk calculation: ir thi (k/w) t i (s) 1 0.0037 0.0099 2 0.0177 0.168 3 0.1175 0.456 4 0.04 1.36 835


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