1/3 www.rohm.com c 2011 rohm co., ltd. all rights reserved. 2011.03 - rev.b power transistor ( ? 60v, ? 2a) 2sa2093 ? features ? dimensions (unit : mm) 1) high speed switching. (tf : typ. : 30ns at i c = ? 2a) 2) low saturation voltage, typically (typ. : ? 200mv at i c = ? 1.0a, i b = ? 0.1a) 3) strong discharge power for inductive load and capacitance load. 4) complements the 2sc5880 ? applications small signal low frequency amplifier high speed switching ? structure pnp epitaxial planar silicon transistor ? packaging specifications taping 2sa2093 type tv2 2500 package basic ordering unit (pieces) code ? absolute maximum ratings (ta=25 ? c) parameter v v v a a w c c symbol v cbo v ceo v ebo i c i cp p c tj tstg ? 60 ? 60 ? 6 ? 2.0 ? 4.0 1.0 150 ? 55 to 150 limits unit collector-base voltage collector-emitter voltage emitter-base voltage collector current power dissipation junction temperature range of storage temperature dc pulsed ? ? pw = 10ms taping specifications abbreviated symbol : a2093 (1) emitter (2) collector (3) base atv
2/3 www.rohm.com c 2011 rohm co., ltd. all rights reserved. 2011.03 - rev.b data sheet 2sa2093 ? electrical characteristics (ta=25 ? c) collector-emitter breakdown voltage collector-base breakdown voltage emitter-base breakdown voltage collector cut-off current emitter cut-off current collector-emitter saturation voltage dc current gain transition frequency corrector output capacitance turn-on time storage time fall time parameter symbol min. typ. max. unit condition bv ceo bv cbo bv ebo i cbo i ebo v ce (sat) h fe f t cob ton tstg tf i c = ? 1ma i c = ? 100 a i e = ? 100 a v cb = ? 40v v eb = ? 4v i c = ? 1.0a i b = ? 100ma v ce = ? 2v i c = ? 100ma v ce = ? 10v i e = 100ma f = 10mhz v cb = ? 10v i e = 0ma f = 1mhz ? single non repetitive pulse ? ? ? 60 ? 60 ? 6 ? ? ? 120 ? ? ? ? ? ? ? ? ? ? ? 200 ? 310 25 25 120 30 ? ? ? ? 1.0 ? 1.0 ? 500 390 ? ? ? ? ? v v v a a mv ? mhz pf ns ns ns i c = ? 2.0a i b1 = ? 200ma i b2 = 200ma v cc ? 25v ? h fe rank qr 120 ? 270 180 ? 390 ? electrical characteristic curves 0 ? 0.5 ? 1 ? 1 .5 ? 0.01 ? 0.1 ? 1 ? 10 v ce = ? 2v base to emitter voltage : v be (v) fig.1 grounded emitter propagation characteristic s collector current : i c (a) ta = 125 c ta = 25 c ta = ? 40 c ? 0.001 ? 0.01 ? 0.1 ? 1 0 ? 1 1 100 10 1000 collector current : i c (a) dc current gain : h fe fig.2 dc current gain vs. collector current ( ) ta = 25 c v ce = ? 5v v ce = ? 3v v ce = ? 2v ? 0.001 ? 0.01 ? 0.1 ? 1 0 ? 1 1 100 10 1000 collector current : i c (a) dc current gain : h fe fig.3 dc current gain vs. collector current ( ? ) v ce = ? 2v ta = 125 c ta = 25 c ta = ? 40 c ? 0.001 ? 0.01 ? 0.1 ? 1 0 ? 1 ? 0.01 ? 0.1 ? 1 ? 10 collector current : i c (a) fig.4 collector-emitter saturation voltage vs. collector current ( ) collector saturation voltage : v ce (sat) (v) ta = 25 c i c / i b = 20/1 i c / i b = 10/1 ? 0.001 ? 0.01 ? 0.1 ? 1 0 ? 1 ? 0.01 ? 0.1 ? 1 ? 10 collector current : i c (a) collector saturation voltage : v ce (sat) (v) i c / i b = 10 / 1 fig.5 collector-emitter saturation voltage vs. collector current ( ? ) ta = 125 c ta = 25 c ta = ? 40 c ? 0.001 ? 0.01 ? 0.1 ? 1 0 ? 1 ? 0.01 ? 0.1 ? 1 ? 10 i c / i b = 10 / 1 collector current : i c (a) fig.6 base-emitter saturation voltage vs. collecter curre nt base emitter saturation voltage : v be (sat) (v) ta = 125 c ta = 25 c ta = ? 40 c
3/3 www.rohm.com c 2011 rohm co., ltd. all rights reserved. 2011.03 - rev.b data sheet 2sa2093 emitter current : i e (a) fig.7 transition frequency transition frequency : ft (mhz) 0.001 0.01 0.1 1 1 0 1 100 10 1000 ta = 25 c v ce = ? 10v ? 0.1 ? 1 ? 10 ? 10 0 1 10 100 1000 collector to base voltage : v cb (v ) fig.8 collector output capacitance collector output capacitance : cob (pf) ta = 25 c f = 1mhz ? 0.01 ? 0.1 ? 1 ? 1 0 10 100 1000 collector current : i c (a) switching time : sw(ns) fig.9 switching time ta = 25 c v cc = ? 25v i c / i b = 10 / 1 tstg tf ton ? switching characteristics measurement circuits p w v in r l = 12.5 i c i b 1 i b 2 p w 50 s duty cycle 1% v cc ? 25 v ton tstg tf i c i b 2 i b 1 10% 90% b ase current w aveform c ollector current w aveform
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