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THN4201E 012R2 15B05 6710QXV CDRH7 MAX10 15B05 APE4108
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  0.4 +0.1 -0.1 2.9 +0.1 -0.1 0.95 +0.1 -0.1 1.9 +0.1 -0.1 2.4 +0.1 -0.1 1.3 +0.1 -0.1 0-0.1 0.38 +0.1 -0.1 0.97 +0.1 -0.1 0.55 0.4 1.base 2.emitter 3.collector 12 3 unit: mm sot-23 0.1 +0.05 -0.01 features high dc current gain: h fe = 200 typ. v ce =6.0v,i c =1.0ma high voltage: v ce o =50v h fe classification markingl4l5l6l7 hfe 90to180 135to270 200to400 300to600 2SC1623 absolute maximum ratings ta = 25 parameter symbol rating unit collector to base voltage v cbo 60 v collector to emitter voltage v ceo 50 v emitter to base voltage v ebo 5v collector current (dc) i c 100 ma collector power dissipation p c 200 mw junction temperature t j 150 storage temperature range t stg -55to+150 electrical characteristics ta = 25 parameter symbol testconditons min typ max unit collector cutoff current i cbo v cb = 60v, i e =0 0.1 a emitter cutoff current i ebo v eb =5v,i c =0 0.1 a dc current gain * h fe v ce =6v,i c = 1ma 90 200 600 collector-emitter saturation voltage * v ce(sat) i c = 100ma , i b = 10ma 0.15 0.3 v base-emitter saturation voltage * v be(sat) i c = 100ma , i b =10ma 0.86 1 v base-emitter voltage * v be v ce =6v,i c = 1ma 0.55 0.62 0.65 v output capacitance c ob v cb =6v,i e = 0 , f = 1.0mhz 3.0 pf transiton frequency f t v ce =6v,i e = -10ma 250 mhz *. pw 350s,duty cycle 2% product specification sales@twtysemi.com 1 of 4 http://www.twtysemi.com 4008-318-123
typical characteristics fig.1 total power dissipation vs. ambient temperature fig.2 normalized collector cutoff current vs. ambient temperature fig.3 collector current vs.collector to emitter voltage fig.4 collector current vs. collector to emitter voltage fig.5 dc current gain vs. collector current fig.6 dc current gain vs.collector current 2SC1623 product specification sales@twtysemi.com 2 of 4 http://www.twtysemi.com 4008-318-123
fig. 7 collector current vs.base to emitter voltage fig. 8 collector and base saturation voltage vs.collector current fig. 9 gain bandwidth product vs. emitter current fig. 10 input and output capacitance vs. reverse voltage fig. 11 small signal current gain vs. dc current gain fig.12 input impedance voltage feedback ratio and output admittance vs.small signal current gain 2SC1623 product specification sales@twtysemi.com 3 of 4 http://www.twtysemi.com 4008-318-123
fig.13 normalzed h-parameter vs.collector current fig.14 normalzed h-parameter vs.collector to emitter voltage 2SC1623 product specification sales@twtysemi.com 4 of 4 http://www.twtysemi.com 4008-318-123


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