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ENS0575 C93419 MC12025D 00DT1 HY5DU A6277SA YU2KTR B102J
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  dimensions in inches and (millimeters) db dbs .404(10.3) .386(9.80) .255(6.5) .245(6.2) .013(0.33) .0088(0.22) .013(0.33) .003(0.076) .060(1.53) .040(1.02) .205(5.2) .195(5.0) .047(1.20) .040(1.02) .335(8.51) .320(8.13) 0 45 .130(3.30) .120(3.05) features  glass passivated junction  ideal for printed circuit board  reliable low cost construction utilizing molded plastic technique  high temperature soldering guaranteed: 260 o c / 10 seconds / 0.375? ( 9.5mm ) lead length at 5 lbs., ( 2.3 kg ) tension  small size, simple installation  high surge current capability maximum ratings and electrical characteristics rating at 25 o c ambient temperature unless otherwise specified. single phase, half wave, 60 hz, resistive or inductive load. for capacitive load, derate current by 20% hdb 101g hdb 102g hdb 103g hdb 104g hdb 105g hdb 106g hdb 107g type number symbol hdbs 101g hdbs 102g hdbs 103g hdbs 104g hdbs 105g hdbs 106g hdbs 107g units maximum recurrent peak reverse voltage v rrm 50 100 200 400 600 800 1000 v maximum rms voltage v rms 35 70 140 280 420 560 700 v maximum dc blocking voltage v dc 50 100 200 400 600 800 1000 v maximum average forward rectified current @t a = 40 o c i (av) 1.0 a peak forward surge current, 8.3 ms single half sine-wave superimposed on rated load (jedec method ) i fsm 50 a maximum instantaneous forward voltage @ 1.0a v f 1.0 1.3 1.7 v maximum dc reverse current @ t a =25 o c at rated dc blocking voltage @ t a =125 o c i r 5.0 500 ua ua maximum reverse recovery time ( note 2 ) trr 50 75 ns typical thermal resistance ( note 3 ) r ja r jl 40 15 o c/w operating temperature range t j -55 to +150 o c storage temperature range t stg -55 to +150 o c notes: 1. dbs for surface mount package. 2. reverse recovery test conditions: i f =0.5a, i r =1.0a, i rr =0.25a. 3. thermal resistance from junction to am bient and from junct ion to lead mounted on p.c.b. with 0.2? x 0.2?? (5 x 5mm) copper pads hdb(s)101g - hdb(s)107g 1.0 amp. glass passivated bridge high efficient rectifiers http://www.luguang.cn mail:lge@luguang.cn
tj=125 c 0 fig.6- reverse recovery time characteristic and test circuit diagram 50 noninductive  non inductive oscilloscope (note 1) pulse generator (note 2) dut (+) 50vdc (approx) (-) notes: 1. rise time=7ns max. input impedance= 1 megohm 22pf 2. rise time=10ns max. sourse impedance= 50 ohms (-) (+) 10 noninductive -1.0a -0.25a 0 +0.5a trr 1cm set time base for 5/ 10ns/ cm ratings and characteristic curves (hdb(s)101g thru hdb(s)107g) fig.2- typical forward characteristics instantaneous forward current. (a) 10 1 0.1 0.01 0.001 forward voltage. (v) fig.4- typical junction capacitance fig.5- typical reverse characteristics instantaneous reverse current. (ma) 0 20 40 60 80 100 120 140 1000 100 10 1 0.1 percent of rated peak reverse voltage. (%) fig.1- maximum forward current derating curve ambient temperature. ( c) o fig.3- maximum non-repetitive forward surge current 100 120 140 150 copper pauls .51" x .51" (13mm x 13mm) .06" (1.5mm) pcb 20 40 60 80 0 0.5 1.0 average forward current. (a) 60hz resistive or inductive load hdb106g~hdb107g hdb105g HDB101G ~hdb104g tj=25 c 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 tj=25 c 0 0.1 0.5 1 52 10 20 50 100 200 500 reverse voltage. (v) 800 tj=25 c 0 HDB101G~hdb105g hdb106g~hdb107g junction capacitance.(pf) 70 60 50 40 30 20 10 0 70 60 50 40 30 20 10 0 peak forward surge current. (a) 1 2 5 10 20 100 50 number of cycles at 60hz 8.3ms single half sine wave jedec method h db(s)1 0 1g - h db(s)1 07 g 1.0 amp. glass passivated bridge high efficient rectifiers http://www.luguang.cn mail:lge@luguang.cn


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