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? 1999 ixys all rights reserved 1-8 rectifier brake inverter v rrm = 1600v v ces = 1200 v v ces = 1200 v i favm = 11 a i c25 = 3.6 a i c25 = 3.6 a i fsm = 250 a v ce(sat) = 2.8 v v ce(sat) = 2.8 v mubw 4-12 a6 preliminary data converter - brake - inverter module (cbi1) features l npt igbt technology square rbsoa, no latchup l free wheeling diodes with hiperfast and soft recovery behaviour l isolation voltage 2500 v~ l built in temperature sense l high level of integration: one module for complete drive system l d irect c opper b onded al 2 o 3 ceramic base plate applications l ac motor control l ac servo and robot drives advantages l no need of external isolation l easy to mount with two screws l package designed for wave soldering l high temperature and power cycling capability input rectifier bridge d8 - d13 symbol conditions maximum ratings v rrm 1600 v i f t vj = 25c 36 a i favm t vj = 150c; t k = 70c 11 a i fsm t vj = 45c; t = 10 ms sine 50 hz 250 a i2t t vj = 125c 310 a2s t vj +150 c symbol conditions characteristic values (t vj = 25 c, unless otherwise specified) min. typ. max. i r v rrm = 1200 v; t vj = 25c 10 a t vj = 125c 3 ma v f i f = 36 a 1.15 1.4 v r thjc per die 1.4 c/w 920 ixys reserves the right to change limits, test conditions and dimensions.
? 1999 ixys all rights reserved 2-8 inductive load, t vj = 125c v cc = 600 v; i c = 1.5 a r g = 100 w ; v ge = 15 v v ge = 0 v v ce = 25 v f = 1 mhz mubw 4-12 a6 output inverter t1 - t6, d1 - d6 symbol conditions maximum ratings v ces t vj = 25c 1200 v v cgr t vj = 25c; r ge = 20k w 1200 v v ge t vj = 25c 20 v i c t c = 25c 3.6 a t c = 90c 2.4 a i cm t p = 1 ms = 1% duty cycle; t c = 25c 7.2 a t c = 110c 4.8 a t sc v ce = 600 v; t vj = 125c non-repetitive 10 s p tot t c = 25c 45 w t vj free-wheeling diode +150 c t vj igbt +150 c symbol conditions characteristic values (t vj = 25 c, unless otherwise specified) min. typ. max. i ces v ge = 0 v; v ce = 1000 v 1 25 a i ges v ce = 0 v; v ge = 25 v 0.1 100 na v ge(th) v ge = v ce ; i c = 0.1 ma 4.5 5.5 6.5 v v (br)ces v ge = 0 v; i c = 10 ma; t vj = -40c 1200 v v cesat v ge = 15 v; i c = 1.5 a; t vj = 25c 2.8 3.3 v t vj = 150c 4 4.5 v t f 100 ns t r 58 ns t d(on) 80 ns t d(off) 290 ns e off 0.12 mj e on 0.34 mj c iss 225 pf c oss 25 pf c rss 13 pf g fs v ce = 20 v; i c = 1.5 a 0.6 s q g v cc = 800 v; i c = 1 a pulse; v ge = 15 v 24.1 nc v f i f = 4 a; v ge = 0 v; t vj = 25c 2.3 3 v t vj = 100c 2 v t rr i f = 4 a; v ge = 0 v; t vj = 100c 55 ns v r = -300 v; di f /dt = -800 a/s q r i f = 4 a; v ge = 0 v; t vj = 100c 0.8 c v r = -300 v; di f /dt = -800 a/s i r 250 a r thjc igbt (per die) 2.3 c/w diode (per die) 2.25 c/w ? 1999 ixys all rights reserved 3-8 brake chopper t7, d7 symbol conditions maximum ratings v ces t vj = 25c 1200 v v cgr t vj = 25c; r ge = 20k w 1200 v v ge t vj = 25c 20 v i c t c = 25c 3.6 a t c = 90c 2.4 a i cm t p = 1 ms = 1% duty cycle; t c = 25c 7.2 a t c = 110c 4.8 a t sc v ce = 600 v; t vj = 125c non-repetitive 10 s p tot t c = 25c 45 w t vj free-wheeling diode +150 c t vj igbt +150 c symbol conditions characteristic values (t vj = 25 c, unless otherwise specified) min. typ. max. i ces v ge = 0 v; v ce = 1000 v 1 25 a i ges v ce = 0 v; v ge = 25 v 0.1 100 na v ge(th) v ge = v ce ; i c = 0.1 ma 4.5 5.5 6.5 v v (br)ces v ge = 0 v; i c = 10 ma; t vj = -40c 1200 v v cesat v ge = 15 v; i c = 1.5 a; t vj = 25c 2.8 3.3 v t vj = 150c 4 4.5 v t f 100 ns t r 58 ns t d(on) 80 ns t d(off) 290 ns e off 0.12 mj e on 0.34 mj c iss 225 pf c oss 25 pf c rss 13 pf g fs v ce = 20 v; i c = 1.5 a 0.6 s q g v cc = 800 v; i c = 1 a pulse; v ge = 15 v 24.1 nc v f i f = 4 a; v ge = 0 v; t vj = 25c 2.3 3 v t vj = 100c 2 v t rr i f = 4 a; v ge = 0 v; t vj = 100c 55 ns v r = -300 v; di f /dt = -800 a/s q r i f = 4 a; v ge = 0 v; t vj = 100c 0.8 c v r = -300 v; di f /dt = -800 a/s i r 250 a r thjc igbt (per die) 2.3 c/w diode (per die) 2.25 c/w inductive load, t vj = 125c v cc = 600 v; i c = 1.5 a r g = 100 w ; v ge = 15 v v ge = 0 v v ce = 25 v f = 1 mhz mubw 4-12 a6 ? 1999 ixys all rights reserved 4-8 mubw 4-12 a6 dimensions in mm (1 mm = 0.0394") module symbol conditions maximum ratings t stg -40...+125 c v isol i isol 1 ma; 50/60 hz; t = 1 min 2500 v~ m d mounting torque (m4) 2.0 - 2.2 nm 18 - 20 lb.in. d s creepage distance on surface 12.7 mm d a strike distance in air 12.7 mm weight typ. 42 g temperature sensor r symbol conditions maximum ratings rt amb = 20c 4.7 k w for additional data see c620/4.7k 5% s+m ntc thermistor catalog ? 1999 ixys all rights reserved 5-8 mubw 4-12 a6 10 -3 10 -2 10 -1 10 0 10 1 0 50 100 150 200 250 300 23456789 110 200 400 600 800 100 1000 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 10 20 30 40 50 i 2 t i fsm a i f a v f t s t ms a 2 s v forward characteristics surge overload current i fsm : crest value, t: duration i 2 t versus time (1-10 ms) typ. lim. t vj = 180c t vj = 25c 50hz, 80%v rrm t vj = 45c t vj = 180c v r = 0 v t vj =45c t vj =180c input rectifier bridge d8 - d13 transient thermal resistance junction to heatsink (z thjh is measured using 50 m thermal grease) z thjh [k/w] 0.001 0.01 0.1 1 10 0.00001 0.0001 0.001 0.01 0.1 1 10 100 t (s) d = 0 d = 0.005 d = 0.01 d = 0.02 d = 0.05 d = 0.1 d = 0.2 d = 0.5 ? 1999 ixys all rights reserved 6-8 mubw 4-12 a6 typ. output characteristics 25c 0 1 2 3 4 5 6 7 8 024 6810 uce(v) ic(v) a,b,c k j i h g f e d ugs ( v ) a 5v b 6v c 7v d 8v e 9v f 10v g 11v h 12v i 13v j 14v k 15v output inverter t1 - t6 0 400 800 1200 0.0 0.5 1.0 1.5 2.0 2.5 v ce i cpuls / i c v t v j = 150 c v ge = 15 v 0 400 800 1200 0 2 4 6 8 10 v ce i csc / i c v t v j = 150 c v ge = 15 v t sc 10 s l < 50 nh di/dt = 200 a/s 600 a/s 1000a/s reverse biased safe operating area short circuit safe operating area ? 1999 ixys all rights reserved 7-8 mubw 4-12 a6 typ. switching times 1 10 100 1000 50 150 250 350 450 rg(ohm) t(ns) td(off ) tf (off ) td(on) tr(on) typ. switching losses 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 50 150 250 350 450 rg(ohm) e(mws) e( of f 25 c) e(off 125c) e(on25c) e(on125c) igbt z thjh [k/w] 0.001 0.01 0.1 1 10 0.00001 0.0001 0.001 0.01 0.1 1 10 100 t (s) d = 0 d = 0.005 d = 0.01 d = 0.02 d = 0.05 d = 0.1 d = 0.2 d = 0.5 typ. switching times 1 10 100 1000 0.75 1.25 1.75 2.25 2.75 i(a) t(ns) td(off) tf(off) td(on) tr(on) typ. switching losses 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 0.75 1.25 1.75 2.25 2.75 i(a) e(mws) e(off25c) e(off125c) e(on25c) e(on125c) output inverter t1 - t6 transient thermal resistance junction to heatsink i c = 1.5 a v ce = 600 v t vj = 125c r g = 250 w v ce = 600 v t vj = 125c r g = 250 w v ce = 600 v i c = 1.5 a v ce = 600 v (z thjh is measured using 50 m thermal grease) ? 1999 ixys all rights reserved 8-8 fred z thjh [k/w] 0.001 0.01 0.1 1 10 0.00001 0.0001 0.001 0.01 0.1 1 10 100 t (s) d = 0 d = 0.005 d = 0.01 d = 0.02 d = 0.05 d = 0.1 d = 0.2 d = 0.5 mubw 4-12 a6 output inverter d1 - d6 transient thermal resistance junction to heatsink 200 600 1000 0 400 800 90 100 110 120 130 140 150 0 40 80 120 160 0.0 0.5 1.0 1.5 2.0 k f t vj c -di f /dt 0 200 400 600 800 1000 0 40 80 120 0.0 0.4 0.8 1.2 v fr di f /dt v 200 600 1000 0 400 800 0 10 20 30 40 100 1000 0 500 1000 1500 2000 01234 0 5 10 15 20 25 30 i rm q r i f a v f -di f /dt -di f /dt a/ m s a v nc a/ m s a/ m s t rr ns t fr a/ m s m s i f = 20a i f = 10a i f = 5a t vj = 100c v r = 600v t vj = 100c i f = 10a peak reverse current i rm versus -di f /dt reverse recovery charge q versus -di f /dt forward current i f versus v f t vj = 100c v r = 600v t vj = 100c v r = 600v i f = 20a i f = 10a i f = 5a q r i rm dynamic parameters q r , i rm versus t vj recovery time t rr versus -di f /dt peak forward voltage v fr and t fr versus di f /dt i f = 20a i f = 10a i f = 5a t fr v fr t vj = 25c t vj =100c t vj =150c 8-12 (z thjh is measured using 50 m thermal grease) |
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