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  2007-07-24 1 bcr108... npn silicon digital transistor ? switching circuit, inverter, interface circuit, driver circuit ? built in bias resistor ( r 1 =2.2 k ? , r 2 =47 k ? ) ? bcr108s: two internally isolated transistors with good matching in one multichip package ? bcr108s: for orientation in reel see package information below ? pb-free (rohs compliant) package 1) ? qualified according aec q101 bcr108/f bcr108t/w bcr108s eha07184 3 2 1 c e b r 1 r 2 eha07174 6 54 3 2 1 c1 b2 e2 c2 b1 e1 1 r r 2 r 1 r 2 tr1 tr2 type marking pin configuration package bcr108 bcr108f bcr108s bcr108w whs whs whs whs 1=b 1=b 1=e1 1=b 2=e 2=e 2=b1 2=e 3=c 3=c 3=c2 3=c - - 4=e2 - - - 5=b2 - - - 6=c1 - sot23 tsfp-3 sot363 sot323 1 pb-containing package may be available upon special request
2007-07-24 2 bcr108... maximum ratings parameter symbol value unit collector-emitter voltage v ceo 50 v collector-base voltage v cbo 50 input forward voltage v i(fwd) 20 input reverse voltage v i(rev) 5 collector current i c 100 ma total power dissipation- bcr108, t s 102c bcr108f, t s 128c bcr108s, t s 115c bcr108w, t s 124c p tot 200 250 250 250 mw junction temperature t j 150 c storage temperature t stg -65 ... 150 thermal resistance parameter symbol value unit junction - soldering point 1) bcr108 bcr108f bcr108s bcr108w r thjs 240 90 140 105 k/w 1 for calculation of r thja please refer to application note thermal resistance
2007-07-24 3 bcr108... electrical characteristics at t a = 25c, unless otherwise specified parameter symbol values unit min. typ. max. dc characteristics collector-emitter breakdown voltage i c = 100 a, i b = 0 v (br)ceo 50 - - v collector-base breakdown voltage i c = 10 a, i e = 0 v (br)cbo 50 - - collector-base cutoff current v cb = 40 v, i e = 0 i cbo - - 100 na emitter-base cutoff current v eb = 5 v, i c = 0 i ebo - - 164 a dc current gain 1) i c = 5 ma, v ce = 5 v h fe 70 - - - collector-emitter saturation voltage 1) i c = 10 ma, i b = 0.5 ma v cesat - - 0.3 v input off voltage i c = 100 a, v ce = 5 v v i(off) 0.4 - 0.8 input on voltage i c = 2 ma, v ce = 0.3 v v i(on) 0.5 - 1.1 input resistor r 1 1.5 2.2 2.9 k ? resistor ratio r 1 / r 2 0.042 0.047 0.052 - ac characteristics transition frequency i c = 10 ma, v ce = 5 v, f = 1 mhz f t - 170 - mhz collector-base capacitance v cb = 10 v, f = 1 mhz c cb - 2 - pf 1 pulse test: t < 300s; d < 2%
2007-07-24 4 bcr108... dc current gain h fe = ? ( i c ) v ce = 5v (common emitter configuration) t a = parameter 10 -4 10 -3 10 -2 10 -1 a i c 0 10 1 10 2 10 3 10 h fe -40 c -25 c 25 c 85 c 125 c collector-emitter saturation voltage v cesat = ? ( i c ), i c /i b = 20 t a = parameter 10 -3 10 -2 10 -1 a i c 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 v 0.5 v cesat -40 c -25 c 25 c 85 c 125 c input on voltage v i (on) = ? ( i c ) v ce = 0.3v (common emitter configuration) t a = parameter 10 -5 10 -4 10 -3 10 -2 10 -1 a i c -1 10 0 10 1 10 v v i(on) -40 c -25 c 25 c 85 c 125 c input off voltage v i(off) = ? ( i c ) v ce = 5v (common emitter configuration) t a = parameter 10 -5 10 -4 10 -3 10 -2 10 -1 a i c -1 10 0 10 1 10 v v i(off) -40 c -25 c 25 c 85 c 125 c
2007-07-24 5 bcr108... total power dissipation p tot = ? ( t s ) bcr108 0 15 30 45 60 75 90 105 120 c 150 t s 0 25 50 75 100 125 150 175 200 225 250 mw 300 p tot total power dissipation p tot = ? ( t s ) bcr108f 0 15 30 45 60 75 90 105 120 c 150 t s 0 25 50 75 100 125 150 175 200 225 250 mw 300 p tot total power dissipation p tot = ? ( t s ) bcr108s 0 15 30 45 60 75 90 105 120 c 150 t s 0 25 50 75 100 125 150 175 200 225 250 mw 300 p tot total power dissipation p tot = ? ( t s ) bcr108w 0 15 30 45 60 75 90 105 120 c 150 t s 0 25 50 75 100 125 150 175 200 225 250 mw 300 p tot
2007-07-24 6 bcr108... permissible pulse load p totmax / p totdc = ? ( t p ) bcr108 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 2 10 3 10 - p totmax / p totdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5 permissible pulse load r thjs = ? ( t p ) bcr108 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p -1 10 0 10 1 10 2 10 3 10 k/w r thjs 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible pulse load p totmax / p totdc = ? ( t p ) bcr108f 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 2 10 3 10 p totmax / p totdc d=0 0.005 0.01 0.02 0.05 0.1 0.2 0.5 permissible puls load r thjs = ? ( t p ) bcr108f 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p -1 10 0 10 1 10 2 10 k/w r thjs d=0.5 0.2 0.1 0.05 0.02 0.01 0.005 0
2007-07-24 7 bcr108... permissible puls load r thjs = ? ( t p ) bcr108s 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p -1 10 0 10 1 10 2 10 3 10 k/w r thjs 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible pulse load p totmax / p totdc = ? ( t p ) bcr108s 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 2 10 3 10 - p totmax / p totdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5 permissible puls load r thjs = ? ( t p ) bcr108w 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p -1 10 0 10 1 10 2 10 3 10 k/w r thjs 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible pulse load p totmax / p totdc = ? ( t p ) bcr108w 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 2 10 3 10 - p totmax / p totdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
2007-07-24 8 bcr108... package sot23 package outline foot print marking layout (example) standard packing reel ?180 mm = 3.000 pieces/reel reel ?330 mm = 10.000 pieces/reel eh s bcw66 type code pin 1 0.8 0.9 0.9 1.3 0.8 1.2 0.25 m bc 1.9 -0.05 +0.1 0.4 0.1 2.9 0.95 c b 0...8? 0.2 a 0.1 max. 10? max. 0.08...0.15 1.3 0.1 10? max. m 2.4 0.15 0.1 1 a 0.15 min. 1) 1) lead width can be 0.6 max. in dambar area 12 3 3.15 4 2.65 2.13 0.9 8 0.2 1.15 pin 1 manufacturer 2005, june date code (ym)
2007-07-24 9 bcr108... package sot323 package outline foot print marking layout (example) standard packing reel ?180 mm = 3.000 pieces/reel reel ?330 mm = 10.000 pieces/reel 1.25 0.1 0.1 max. 2.1 0.1 0.15 +0.1 -0.05 0.3 +0.1 0.1 0.9 12 3 a 0.2 2 -0.05 0.65 0.65 m 3x 0.1 0.1 min. 0.1 m 0.2 a 0.2 4 2.15 1.1 8 2.3 pin 1 pin 1 2005, june date code (ym) bcr108w type code 0.6 0.8 1.6 0.65 0.65 manufacturer
2007-07-24 10 bcr108... p ackage sot363 package outline foot print marking layout (example) standard packing reel ?180 mm = 3.000 pieces/reel reel ?330 mm = 10.000 pieces/reel for symmetric types no defined pin 1 orientation in reel. small variations in positioning of date code, type code and manufacture are possible. manufacturer 2005, june date code (year/month) bcr108s type code pin 1 marking laser marking 0.3 0.7 0.9 0.65 0.65 1.6 0.2 4 2.15 1.1 8 2.3 pin 1 marking +0.1 0.2 1 6 23 5 4 0.2 2 +0.1 -0.05 0.15 0.1 1.25 0.1 max. 0.9 0.1 a -0.05 6x 0.1 m 0.65 0.65 2.1 0.1 0.1 0.1 min. m 0.2 a pin 1 marking
2007-07-24 11 bcr108... package tsfp-3 4 package outline foot print marking layout (example) standard packing reel ?180 mm = 3.000 pieces/reel reel ?330 mm = 10.000 pieces/reel 0.05 0.2 3 0.05 1.2 12 10? max. 0.05 0.8 1.2 0.05 0.04 0.55 0.05 0.2 0.05 0.15 0.05 0.2 0.4 0.05 0.4 0.05 0.4 0.45 1.05 0.4 0.4 bcr847bf type code pin 1 0.2 1.35 0.3 0.7 1.2 1.5 8 pin 1 manufacturer
2007-07-24 12 bcr108... edition 2006-02-01 published by infineon technologies ag 81726 mnchen, germany ? infineon technologies ag 2007. all rights reserved. attention please! the information given in this dokument shall in no event be regarded as a guarantee of conditions or characteristics (?beschaffenheitsgarantie?). with respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, infineon technologies hereby disclaims any and all warranties and liabilities of any kind, including without limitation warranties of non-infringement of intellectual property rights of any third party. information for further information on technology, delivery terms and conditions and prices please contact your nearest infineon technologies office ( www.infineon.com ). warnings due to technical requirements components may contain dangerous substances. for information on the types in question please contact your nearest infineon technologies office. infineon technologies components may only be used in life-support devices or systems with the express written approval of infineon technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system, or to affect the safety or effectiveness of that device or system. life support devices or systems are intended to be implanted in the human body, or to support and/or maintain and sustain and/or protect human life. if they fail, it is reasonable to assume that the health of the user or other persons may be endangered.


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