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  feb.1999 mitsubishi thyristor modules tm25rz/ez-m,-h medium power general use insulated type outline drawing & circuit diagram dimensions in mm application dc motor control, nc equipment, ac motor control, contactless switches, electric furnace temperature control, light dimmers tm25rz/ez-m,-h ? i t (av) average on-state current ............ 25a ? i f (av) average forward current ............ 25a ? v rrm repetitive peak reverse voltage ........ 400/800v ? v drm repetitive peak off-state voltage ........ 400/800v ? mix double arms ? insulated type ? ul recognized yellow card no. e80276 (n) file no. e80271 93.5 80 17.5 20 20 3?5 2 f 6.5 26 12.5 k1 g1 tab#110, t=0.5 30 21 6.5 9 (rz) a 1 k 2 cr k 1 k 1 g 1 a 2 (ez) a 1 cr k 1 k 2 k 1 g 1 sr a 2 sr label
feb.1999 absolute maximum ratings unit v v v v v v mitsubishi thyristor modules tm25rz/ez-m,-h medium power general use insulated type m 400 480 320 400 480 320 h 800 960 640 800 960 640 symbol v rrm v rsm v r (dc) v drm v dsm v d (dc) parameter repetitive peak reverse voltage non-repetitive peak reverse voltage dc reverse voltage repetitive peak off-state voltage non-repetitive peak off-state voltage dc off-state voltage unit a a a a 2 s a/ m s w w v v a c c v nm kgcm nm kgcm g conditions single-phase, half-wave 180 conduction, t c =93 c one half cycle at 60hz, peak value value for one cycle of surge current v d =1/2v drm , i g =0.5a, t j =125 c charged part to case main terminal screw m5 mounting screw m6 typical value ratings 39 25 500 1.0 10 3 100 5.0 0.5 10 5.0 2.0 C40~125 C40~125 2500 1.47~1.96 15~20 1.96~2.94 20~30 160 symbol i t (rms) , i f (rms) i t (av) , i f (av) i tsm , i fsm i 2 t di/dt p gm p g (av) v fgm v rgm i fgm t j t stg v iso parameter rms current average current surge (non-repetitive) current i 2 t for fusing critical rate of rise of on-state current peak gate power dissipation average gate power dissipation peak gate forward voltage peak gate reverse voltage peak gate forward current junction temperature storage temperature isolation voltage mounting torque weight voltage class electrical characteristics unit ma ma v v/ m s v v ma c/w c/w m w limits symbol i rrm i drm v tm , v fm dv/dt v gt v gd i gt r th (j-c) r th (c-f) parameter repetitive peak reverse current repetitive peak off-state current foward voltage critical rate of rise of off-state voltage gate trigger voltage gate non-trigger voltage gate trigger current thermal resistance contact thermal resistance insulation resistance test conditions t j =125 c, v rrm applied t j =125 c, v drm applied t j =125 c, i tm =i fm =75a, instantaneous meas. t j =125 c, v d =2/3v drm t j =25 c, v d =6v, r l =2 w t j =125 c, v d =1/2v drm t j =25 c, v d =6v, r l =2 w junction to case (per 1/2 module) case to fin, conductive grease applied (per 1/2 module) measured with a 500v megohmmeter between main terminal and case min. 500 0.25 10 10 typ. max. 4.0 4.0 1.5 3.0 50 0.8 0.2 note: items of the above table applies to the thyristor part and the diode part as circled in the following tables.
feb.1999 mitsubishi thyristor modules tm25rz/ez-m,-h medium power general use insulated type maximum ratings item thyristor diode v rrm v rsm v r (dc) v drm v dsm v d (dc) i t (rms) i f (rms) i t (av) i f (av) i tsm i fsm i 2 t di/dt item thyristor diode p gm pg (av) v fgm i fgm t j t stg electrical characteristics item thyristor diode i rrm i drm dv/dt v gt v gd v tm v fm i gt r th (j-c) performance curves maximum forward characteristic rated surge (non-repetitive) current gate characteristics maximum transient thermal impedance (junction to case) current (a) gate voltage (v) surge (non-repetitive) current (a) transient thermal impedance ( c/w) conduction time (cycle at 60hz) forward voltage (v) gate current (ma) time (s) r th (c-f) ? 10 ? 10 ? 10 0 10 0 10 1 10 1 10 0 10 1 10 4 10 2 10 3 10 ? 10 3 10 2 10 1 10 0 10 70 50 30 20 7 5 3 2 0 100 500 200 300 400 10 1 100 7 5 3 2 7 5 3 2 7 5 3 2 3 2 7 5 3 2 7 5 3 2 4 7 5 4 v gt =3.0v i gt = 50ma i fgm =2.0a p gm =5.0w v fgm =10v v gd =0.25v p g(av) = 0.50w t j = 25? 0.6 7 5 3 2 7 5 3 2 7 5 3 2 1.0 1.4 1.8 2.6 2.2 t j =125? 7 5 3 2 7 5 3 2 7 5 3 2 0.2 0.4 0.6 0.8 1.0 0 7 5 3 2 0.3 0.5 0.7 0.9 0.1
feb.1999 maximum average power dissipation (single phase halfwave) limiting value of the average current (single phase halfwave) average power dissipation (w) average current (a) average current (a) maximum average power dissipation (rectangular wave) limiting value of the average current (rectangular wave) average current (a) average current (a) limiting value of the rms current (reverse-parallel connection, three-phase three-line connection) maximum average power dissipation (reverse-parallel connection, three-phase three-line connection) average power dissipation (w) rms current (a) rms current (a) average power dissipation (w) case temperature ( c) case temperature ( c) case temperature ( c) mitsubishi thyristor modules tm25rz/ez-m,-h medium power general use insulated type q 360 0 040 20 10 50 30 10 535 15 25 20 30 40 q =30 60 270 dc 180 120 90 130 50 60 70 80 90 100 110 120 040 20 10 30 35 15 525 q =30 60 90 dc 270 q 360 180 120 0 080 20 10 80 30 70 60 50 40 30 20 10 40 50 60 70 q =180 60 90 30 q 360 q 80 080 20 10 130 30 85 40 90 95 100 105 110 115 120 125 50 60 70 q 360 q q =30?60?90 180 0 025 10 5 15 20 40 5 10 15 20 25 30 35 q =30 60 120 90 180 q 360 130 80 02025 510 15 90 100 110 120 q =30 60 90 120 180 q 360 resistive, inductive load per single element resistive, inductive load per single element resistive, inductive load per single element resistive, inductive load per single element resistive, inductive load per single module resistive, inductive load per single module
feb.1999 case temperature ( c) (per single module) power dissipation (w) (per single module) maximum power dissipation (single phase fullwave rectified) limiting value of the dc output current (single phase fullwave rectified) dc output current (a) (per two modules) dc output current (a) (per two modules) mitsubishi thyristor modules tm25rz/ez-m,-h medium power general use insulated type case temperature ( c) (per single module) power dissipation (w) (per single module) maximum power dissipation (three-phase fullwave rectified) limiting value of the dc output current (three-phase fullwave rectified) dc output current (a) (per three modules) dc output current (a) (per three modules) 0 080 40 20 80 60 70 60 50 40 30 20 10 10 70 30 50 q =30 60 120 90 q 360 80 080 40 20 130 60 85 10 70 30 50 90 95 100 105 110 115 120 125 90 q =30 60 120 q 360 0 050 20 10 80 30 70 60 50 40 30 20 10 40 q =30 60 120 90 180 q 360 q 130 80 050 20 10 30 40 85 90 95 100 105 110 115 120 125 q 360 q q =30 60 90 180 120 resistive, inductive load resistive, inductive load resistive, inductive load resistive, inductive load


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