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  creat by art ? ul recognized file # e-326243 ? low power loss, high efficiency ? high current capability, low forward voltage drop ? guard-ring for overvoltage protection mechanical data mbrf10xx = specific device code g = green compound y = year ww = work week maximum ratings and electrical characteristics rating at 25 ambient temperature unless otherwise specified. single phase, half wave, 60 hz, resistive or inductive load. for capacitive load, derate current by 20% symbol mbrf 1035 mbrf 1045 mbrf 1050 mbrf 1060 mbrf 1090 mbrf 10100 mbrf 10150 mbrf 10200 unit v rrm 35 45 50 60 90 100 150 200 v v rms 24 31 35 42 63 70 105 140 v v dc 35 45 50 60 90 100 150 200 v i rrm a dv/dt v/us cj pf r jc 4 o c/w t j o c t stg o c 0.71 0.85 0.80 0.70 i r 0.70 15 10 0.57 peak repetitive reverse surge current (note 1) peak forward surge current, 8.3 ms single half sine- wave superimposed on rated load (jedec method) maximum average forward rectified current peak repetitive forward current (rated vr, square wave, 20khz) at tc=135 i frm version:h11 note 2: pulse test : 300us pulse width, 1% duty cycle note 1: 2.0us pulse width, f=1.0khz operating temperature range storage temperature range - 65 to + 150 - 65 to + 175 voltage rate of change (rated v r ) mbrf1035 - mbrf10200 marking diagram ito-220ac 10.0 amps. isolated schottky barrier rectifiers dimensions in inches and (millimeters) ? case:ito-220ac molded plastic body features ? high surge capability ? metal silicon junction, majority carrier conductio n ? high temperature soldering guaranteed: 260 /10 seconds, at terminals ? green compound with suffix "g" on packing code & prefix "g" on datecode ? for use in low voltage, high frequency inverters, free wheeling, and polarity protection applications ? terminals: pure tin plated, lead free, solderable per mil-std-750, method 2026 maximum reverse current @ rated vr t a =25 t a =125 ? polarity: as marked ? mounting torque: 5 in. - lbs, max ? mounting position:any maximum repetitive peak reverse voltage maximum rms voltage maximum dc blocking voltage ? plastic material used carriers underwriters laboratory classification 94v-0 ? weight: 1.74 grams typical thermal resistance type number 1 a a i f(av) 3 typical junction capacitance a i fsm maximum instantaneous forward voltage (note 2) if=10a, t a =25 if=10a, t a =125 v f 0.1 ma v 10 20 150 0.5 1.05 - 390 300 220 2 10000 6 pb rohs compliance rohs compliance
version:h11 ratings and characteristic curves (mbrf1035 thru mbrf10200) fig.1 forward current derating curve 0 5 10 15 50 60 70 80 90 100 110 120 130 140 150 case temperature ( o c) average forward a current (a) resistive or inductiveload mbrf1035-mbrf1045 mbrf1050-mbrf10200 fig. 2 maximum non-repetitive forward surge current per leg 0 25 50 75 100 125 150 0 1 10 100 number of cycles at 60 hz peak forward surge current (a) 8.3ms single half sine wave jedec method fig. 4 typical reverse characteristics per leg 0.001 0.01 0.1 1 10 100 0 20 40 60 80 100 120 140 percent of rated peak reverse voltage (%) instantaneous reverse current (ma) ta=75 ta=125 ta=25 mbrf1035-1045 mbrf1050-10200 fig. 5 typical junction capacitance per leg 100 1000 10000 0.1 1 10 100 reverse voltage (v) junction capacitance (pf) a ta=25 f=1.0mhz vsig=50mvp-p mbrf1090 - mbrf10200 mbrf1050 - mbrf1060 mbrf1035 - mbrf1045 fig. 3 typical forward characterisrics per leg 0.01 0.1 1 10 100 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 forward voltage (v) instantaneous forward current (a) ta=125 pulse width=300us 1% duty cycle ta=25 mbrf1035-1045 mbrf1050-1060 mbrf1090-10150 mbrf10200 fig. 6 typical transient thermal impedance per leg 0.1 1 10 100 0.01 0.1 1 10 100 t-pulse duration(s) transient thermal impedance ( /w)


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