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  ito-220ab/to-220f/to-220fh/to-220fg/to-220fb ? fmu22u thru fmu24u pb free plating product fmu22u thru fmu24u doubler polarity ultrafast recovery rectifier diodes pb features low forward voltage drop fast switching for high efficiency high current capability high surge current capability low reverse leakage current application automotive environment|dc motor control plating power supply|ups car amplifier and sound device system case: molded plastic to-220 isolated package polarity: u type( as marked ) mounting position: any terminals: solderable per mil-std-202 mechanical data epoxy: ul 94v-0 rate flame retardant ? 2006 thinki semiconductor co.,ltd. http://www.thinkisemi.com/ page 1/2 electrical characteristics weight: 2.2 gram method 208 to-220 fully isolated/insulated plastic package outline 3.3 0.8 3.9 1.35 10.0 4.0 4.4 0.85 2.54 2.54 4.2 2.8 c0.5 2.4 16.9 13.5 0.5 0.45 external dimensions (unit: mm) (full-mold) flammability: ul94v-0 or equivalent a fig. +0.2 ?.1 approximately parameter type no. absolute maximum ratings v rm (v) i fsm (a) v f (v) i f (a) i f / i rp (ma) i f / i rp (ma) rth ( j-c) i r (ma) i r (h) (ma) tj ( c) tstg ( c) electrical characteristics (ta = 25 c) ( c/ w) (g) mass others 70 5.0 40 50 100/100 100/200 ?0 to +150 35 30 4.0 2.1 a 200 65 1.30 0.98 0.1 0.25 300 10.0 400 1.0 0.5 0.2 i f (av) (a) fig. 50hz half-cycle sinewave single shot with heatsink v r =v rm , ta=100 c v r = v rm max per element max per element max per element t rr (ns) t rr (ns) fmu22u positive ct negative ct doubler common cathode case case case common anode series connection suffix "s" suffix "r" suffix "u" FMU-22U fmu23u fmu-23u fmu24u fmu-24u glass passivated chip junction free datasheet http:///
ratings and characteristic curves (fmu22 thru fmu24) fmu22s/fmu22r/fmu22u 10 50 60 40 30 20 70 0 1 5 50 10 20ms i fsm (a) 10 50 60 40 30 20 70 0 1 5 50 10 20ms i fsm (a) 10 50 60 40 30 20 65 0 1 5 50 10 20ms i fsm (a) 20 10 1 0.1 0.01 0.001 30 10 1 0.1 0.01 0.001 70 0 90 110 150 2 4 6 10 8 130 t /t 1/6 = t /t 1/ 3 , sinewave = t /t 1/2 = d.c. 60 0 80 100 120 160 2 4 6 8 10 140 t /t 1/6 = t /t 1/ 3 , sinewave = t /t 1/2 = d.c. 70 0 90 110 150 2 4 6 8 10 130 t /t 1/6 = t /t 1/ 3 , sinewave = t /t 1/2 = d.c. 0.3 0.5 0.7 0.9 0.1 1.1 1.3 1.5 t a 150? = 60? 100? 25? 30 10 1 0.1 0.01 0.001 0.3 0.5 0.7 0.9 0.1 1.1 1.3 1.5 t a 150? = 60? 100? 25? 0.3 0.5 0.7 0.9 0.1 1.1 1.3 t a 150? = 60? 100? 25? forward voltage v f (v) forward current i f (a) v f ? f characteristics (typical) overcurrent cycles i fms rating peak forward surge current i fsm (a) case temperature tc ( c) average forward current i f (av) (a) tci f(av) derating forward voltage v f (v) forward current i f (a) v f ? f characteristics (typical) overcurrent cycles i fms rating peak forward surge current i fsm (a) case temperature tc ( c) average forward current i f (av) (a) tci f(av) derating forward voltage v f (v) forward current i f (a) v f ? f characteristics (typical) overcurrent cycles i fms rating peak forward surge current i fsm (a) case temperature tc ( c) average forward current i f (av) (a) tci f(av) derating fmu23s/fmu23r/fmu23u fmu24s/fmu24r/fmu24u ? fmu22u thru fmu24u ? 2006 thinki semiconductor co.,ltd. http://www.thinkisemi.com/ page 2/2 fmu-22s/fmu-22r/FMU-22U fmu-23s/fmu-23r/fmu-23u fmu-24s/fmu-24r/fmu-24u free datasheet http:///


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