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  creat by art ? excellent clamping capability ? low dynamic impedance ? typical i r less than 1ua above 10v bzw06-13 do-15 1.5k / ammo box maximum ratings and el ectrical characteristics symbol unit r jl /w t j , t stg version:e13 ordering information (example) part no. package packing inner tape packing code operating and storage temperature range -65 to +175 note 1: non-repetitive current pulse, per fig. 3 packing code (green) 52mm a0 a0g junction to leads 60 junction to ambient on printed circuit l lead=10mm r ja 100 /w watts steady state power dissipation at t l =75 lead lengths .375", 9.5mm p d 1.7 watts peak forward surge current, 8.3ms single half sine-wave superimposed on rated load (jedec method) i fsm 100 amps ? lead: axial leads, solderable per mil-std-202, method 208 ? weight: 0.354 gram type number value peak pulse power dissipation at t a =25 , tp=1ms(note 1) p pk minimum 600 ? polarity: color band denotes cathode except bipolar ? 600w surge capability at 10 x 1000 us waveform ? fast response time: typically less than 1.0ps from 0 volt to vbr for unidirectional and 5.0 ns for bidirectional ? high temperature soldering guaranteed: 260 / 10 seconds / .375", (9.5mm) lead length / 5lbs.,(2.3kg) tension ? green compound with suffix "g" on packing code & prefix "g" on datecode mechanical data ? case: molded plastic bzw06 series 600 watts transient voltage suppressor do-15 features ? plastic package has underwriters laboratory flammability classification 94v-0 ? exceeds environmental standards of mil-std-19500
version:e13 ratings and characteristic curves (bzw06 series) 0 20 40 60 80 100 120 0 20 40 60 80 100 120 140 160 180 200 peak pulse power(p pp ) or current (i pp ) a derating in percentage (%) t a , ambient temperature ( o c) fig.2 pulse derating curve 1 10 100 1000 0 1 10 100 1000 v cl , clamping voltage(v) ipp, peak pulse current(a) fig. 4 clamping voltage curve tp=20us tp=1ms tp=10ms bwz06-376 bwz06-188 bwz06-58 bwz06-33 bwz06-19 bwz06-10 bwz06-5v8 0 20 40 60 80 100 120 140 0 0.5 1 1.5 2 2.5 3 3.5 4 peak pulse current (%) t, time ms fig. 3 clamping power pulse waveform td peak value ippm tr=10usec half value-ippm/2 10/1000usec, waveform as defined by r.e.a. pulse width(td) is defined as the point where the peak current decays to 50% of ippm 10 100 1000 10000 100000 0.001 0.01 0.1 1 10 100 p ppm , peak pulse power, w tp, pulse width, (ms) fig. 1 peak pulse power rating curve non-repetitive pulse waveform shown in fig.3 ta = 25 10 100 1000 10000 1 10 100 1000 cj, junction capacitance (pf) a v( br ), breakdown voltage (v) fig. 5 typical junction capacitance ta=25 f=1.0mhz vsig=50mvp-p bzw 06 -1 3 bzw 06 - 58 bzw06-171
version:e13 ratings and characteristic curves (bzw06 series) 10 100 1000 10000 1 10 100 1000 cj, junction capacitance (pf) a v( br ), breakdown voltage (v) fig. 6 typical junction capacitance ta=25 f=1.0mhz vsig=50mvp-p bzw 06 -1 3 b bzw06-58b bzw06-171b 1 10 100 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 instantaneous forward current(a) forward voltage(v) fig.7 typical forward characteristics undirectional type 25 150 0.1 1 10 100 1000 10000 0 25 50 75 100 125 150 i r (t j ) / i r (t j =25 ) t j ( ) fig. 9 relative variation of leakage current vs junction temperature vr=vrm 1 10 100 0.01 0.1 1 10 100 1000 transient thermal impedance( /w) t, pulse duration (sec) fig. 8 typical transient thermal characteristics
test stand-off reverse maximum current voltage leakage temperature @ v wm coefficient i t v wm i d vc i ppm vc i ppm v br mavuavava %/ unidirectional bidirectional min nom max max max max (note 2) bzw06-13 bzw06-13b 14.3 15 15.8 1 12.8 5 21.2 28.0 27.2 147 0.084 bzw06-15 bzw06-15b 17.1 18 18.9 1 15.3 1 25.2 24.0 32.5 123 0.088 bzw06-19 bzw06-19b 20.9 22 23.1 1 18.8 1 30.6 19.6 39.3 102 0.092 bzw06-20 bzw06-20b 22.8 24 25.2 1 20.5 1 33.2 28.0 42.8 93 0.094 bzw06-23 bzw06-23b 25.7 27 28.4 1 23.1 1 37.5 16.0 48.3 83 0.096 bzw06-26 bzw06-26b 28.5 30 31.5 1 25.6 1 41.5 14.5 53.5 75 0.097 bzw06-28 bzw06-28b 31.4 33 34.7 1 28.2 1 45.7 13.1 59.0 68 0.098 bzw06-31 bzw06-31b 34.2 36 37.8 1 30.8 1 49.9 12.0 64.3 62 0.099 bzw06-33 bzw06-33b 37.1 39 47.0 1 33.3 1 53.9 11.1 69.7 57 0.100 bzw06-37 bzw06-37b 40.9 43 45.2 1 36.8 1 59.3 10.1 75.0 52 0.101 bzw06-40 bzw06-40b 44.7 47 49.4 1 40.2 1 64.8 9.3 84.0 48 0.101 bzw06-48 bzw06-48b 53.2 56 58.8 1 47.8 1 77.0 7.8 100 40 0.103 bzw06-58 bzw06-58b 64.6 68 71.4 1 58.1 1 92.0 6.5 121 33 0.104 bzw06-70 bzw06-70b 77.9 82 86.1 1 70.1 1 113 5.3 146 27 0.105 bzw06-85 bzw06-85b 95 100 105 1 85.5 1 137 4.4 178 23 0.106 BZW06-102 BZW06-102b 114 120 126 1 102 1 165 3.6 212 19 0.107 bzw06-128 bzw06-128b 143 150 158 1 128 1 207 2.9 265 15 0.108 bzw06-154 bzw06-154b 171 180 189 1 154 1 246 2.4 317 13 0.108 bzw06-171 bzw06-171b 190 200 210 1 171 1 274 2.2 353 11 0.108 bzw06-188 bzw06-188b 209 220 231 1 188 1 301 2.0 388 10.3 0.108 bzw06-213 bzw06-213b 237 250 263 1 213 1 344 2.0 442 9.0 0.110 bzw06-256 bzw06-256b 285 300 315 1 256 1 414 1.6 529 7.6 0.110 bzw06-273 bzw06-273b 304 320.0 336 1 273 1 438 1.6 564 7.1 0.110 bzw06-299 bzw06-299b 332 350.0 368 1 299 1 482 1.6 618 6.5 0.110 bzw06-342 bzw06-342b 380 400 420 1 342 1 548 1.3 706 5.7 0.110 bzw06-376 bzw06-376b 418 440 462 1 376 1 603 1.3 776 5.7 0.110 notes: 1. pulse test tp<50ms 2. v br = t*(tamb - 25) * v br (25 ) 3. v r =0v, f=1mhz, for bidirectional types , capacitance value is divided by 2. version:e13 clamping voltage @i ppm (8/20 us) electrical characteristics (t a =25 unless otherwise noted) breakdown v br (note 1) device v voltage clamping voltage @i ppm (10/1000 us)
ordering information do-15 52mm do-15 52mm do-15 abzte O O symbol a b c d 0.8 3.0 1.2 note: "x" is device code from "13" thru "376b". axial lead taping specifications outline suggested mounting hole rule unit(mm) 6.4 bzw06-xx (note) 1.5k / ammo box a0 a0g 3.5k / 13" reel r0 r0g 1k / bulk packing b0 b0g part no. package packing inner tape packing code packing code (green)
dimensions min max min max a 2.60 3.60 0.102 0.142 b 0.70 0.90 0.028 0.035 c 25.40 - 1.000 - d 5.80 7.60 0.228 0.299 e 25.40 - 1.000 - p/n = specific device code g = green compound yww = date code dim. unit(mm) unit(inch) marking diagram


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