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  MIG600J2CMB1W 2004-10-01 1/9 mitsubishi semiconductor MIG600J2CMB1W (600v/600a 2in1) high power switching applications motor control applications ? integrates inverter power circuits and control circuits (igbt drive unit, units for protection against short-circuit current, overcurrent, undervoltage and overtemperature) into a single package. ? the electrodes are isolated from the case. ? low thermal resistance ? v ce (sat) = 2.1 v (typ.) ? ul recognized: file no.e87989 ? weight: 380 g (typ.) equivalent circuit 1. fo (l) 2. gnd (l) 3. in (l) 4. v d (l) 5. fo (h) 6. gnd (h) 7. in (h) 8. v d (h) fo gnd in v d 1 2 3 4 gnd v s out c2/e1 fo gnd in v d 5 6 7 8 gnd v s out c1 e2
MIG600J2CMB1W 2004-10-01 2/9 package dimensions unit: mm 1. fo (l) 2. gnd (l) 3. in (l) 4. v d (l) 5. fo (h) 6. gnd (h) 7. in (h) 8. v d (h)
MIG600J2CMB1W 2004-10-01 3/9 signal terminal layout unit: mm 1. fo (l) 2. gnd (l) 3. in (l) 4. v d (l) 5. fo (h) 6. gnd (h) 7. in (h) 8. v d (h)
MIG600J2CMB1W 2004-10-01 4/9 maximum ratings (t j = 25c) stage characteristics condition symbol rating unit supply voltage p-n power terminal v cc 450 v collector-emitter voltage ? v ces 600 v collector current tc = 25c, dc i c 600 a forward current tc = 25c, dc i f 600 a collector power dissipation tc = 25c p c 2770 w inverter junction temperature ? t j 150 c control supply voltage v d -gnd terminal v d 20 v input voltage in-gnd terminal v in 20 v fault output voltage fo-gnd terminal v fo 20 v control fault output current fo sink current i fo 10 ma operating temperature ? tc ? 20~ + 100 c storage temperature ? t stg ? 40~ + 125 c isolation voltage ac 1 min v iso 2500 v screw torque (terminal) m6 ? 3 n ? m module screw torque (mounting) m5 ? 3 n ? m electrical characteristics 1. inverter stage characteristics symbol test condition min typ. max unit t j = 25c ? ? 1 collector cut-off current i cex v ce = 600 v t j = 125c ? ? 10 ma t j = 25c 1.8 2.1 2.5 collector-emitter saturation voltage v ce (sat) v d = 15 v i c = 600 a v in = 15 v 0 v t j = 125c ? 2.3 ? v forward voltage v f i f = 600 a, t j = 25c ? 2.2 2.6 v t on ? 2.2 3.0 t c (on) ? 0.4 ? t rr ? 0.2 ? t off ? 2.1 3.0 switching time t c (off) v cc = 300 v, i c = 600 a v d = 15 v, v in = 15 v ? 0 v t j = 25c, inductive load (note 1) ? 0.35 ? s note 1: switching time test circuit & timing chart
MIG600J2CMB1W 2004-10-01 5/9 2. control stage (t j = 25c) characteristics symbol test condition min typ. max unit high side i d (h) ? 13 17 control circuit current low side i d (l) v d = 15 v ? 13 17 ma input on signal voltage v in (on) 1.4 1.6 1.8 input off signal voltage v in (off) v d = 15 v 2.2 2.5 2.8 v protection i fo (on) ? 10 12 fault output current normal i fo (off) v d = 15 v ? ? 0.1 ma overcurrent protection trip level inverter oc v d = 15 v, t j < = ? ? a short-circuit protection trip level inverter sc v d = 15 v, t j < = ? ? a overcurrent cut-off time t off (oc) v d = 15 v ? 5 ? s trip level ot 110 118 125 overtemperature protection reset level otr case temperature ? 108 ? c trip level uv 11.0 12.0 12.5 control supply under voltage protection reset level uvr ? 12.0 12.5 13.0 v fault output pulse width t fo v d = 15 v 1 2 3 ms 3. thermal resistance (tc = 25c) characteristics symbol test condition min typ. max unit igbt ? ? 0.045 junction to case thermal resistance r th (j-c) frd ? ? 0.068 c/w case to fin thermal resistance r th (c-f) compound is applied ? 0.013 ? c/w
MIG600J2CMB1W 2004-10-01 6/9 switching time test circuit timing chart pg tlp559 (igm) 15 v 0.1 f 68 f 15 k ? f 68 f 15 k ? = 16 ma e2 input pulse v in waveform i c waveform v ce waveform 2.5 v 1.6 v 15 v 10% 10% t o ff t c (o ff ) 10% 10% t o n t c (o n ) 0 90% i rr t rr i rr 20% i rr 90%
MIG600J2CMB1W 2004-10-01 7/9 4. recommended conditions for application characteristics symbol test condition min typ. max unit supply voltage v cc p-n power terminal ? 300 400 v control supply voltage v d v d -gnd signal terminal 13.5 15 16.5 v carrier frequency fc pwm control ? ? 20 khz dead time t dead switching time test circuit (note 2) 5 ? ? s note 2: the table lists dead time requirements for the module input, excluding photocoupler delays. when specifying dead time requirements for the photocoupler input, please add photocoupler delays to the dead time given above. dead time timing chart t dead 15 v v in waveform 0 15 v 0 t dead v in waveform
MIG600J2CMB1W 2004-10-01 8/9 forward current i f (a) switching time ( s) collector-emitter voltage v ce (v) i c ? v ce collector current i c (a) collector-emitter voltage v ce (v) i c ? v ce collector current i c (a) collector current i c (a) switching time ? i c switching time ( s) collector current i c (a) switching time ? i c forward voltage v f (v) i f ? v f forward current i f (a) t rr , i rr ? i f peak reverse recovery current i rr (a) reverse recovery time t rr ( 10 ns) common emitter t j = 125c v d = 13 v v d = 15 v v d = 17 v 0 200 400 600 800 1000 1200 0 1 2 3 4 10 t j = 25c v cc = 300 v v d = 15 v l-load 1 0.1 t on t off t c ( on ) t c ( off ) 0.01 0 200 400 500 700 100 300 600 10 1 0.1 0.01 t on t off t c ( on ) t c ( off ) t j = 125c v cc = 300 v v d = 15 v l-load 0 200 400 500 700 100 300 600 common cathode : t j = 25c : t j = 125c 0 200 400 600 800 1000 1200 0 1 2 3 4 1000 100 10 1 t rr common cathode : t j = 25c : t j = 125c i rr 0 200 400 500 700 100 300 600 0 0 common emitter t j = 25c 200 400 600 800 1000 1200 v d = 17 v v d = 13 v v d = 15 v 1 2 3 4
MIG600J2CMB1W 2004-10-01 9/9 turn on loss e on (mj) transient thermal resistance r th (t) (c/w) case temperature tc (c) oc ? tc over current protection trip level oc (a) carrier frequency f c (khz) i d ? f c control circuit current i d (ma) collector-emitter voltage v ce (v) reverse bias soa collector current i c (a) pulse width t w (s) r th (t) ? t w collector current i c (a) turn on loss ? i c collector current i c (a) turn off loss ? i c turn off loss e off (mj) 1 0.001 0.1 0.01 0.001 0.0003 0.003 0.03 0.3 0.01 0.1 1 10 diode stage transistor stage tc = 25c 100 10 1 0.1 v cc = 300 v v d = 15 v l-load : t j = 25c : t j = 125c 0 200 400 500 700 100 300 600 100 10 1 0.1 v cc = 300 v v d = 15 v l-load : t j = 25c : t j = 125c 0 200 400 500 700 100 300 600 0 0 400 800 200 320 1120 640 960 600 oc 160 480 800 t j < = 125c v d = 15 v 0 0 10 15 25 5 20 20 40 60 v d = 15 v t j = 25c 80 100 1600 600 0 0 v d = 15 v 200 400 800 1000 1200 1400 25 50 75 150 125 100


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