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  ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 optimos ? -t2 power-transistor features ? n-channel - normal level - enhancement mode ? aec q101 qualified ? msl1 up to 260c peak reflow ? 175c operating temperature ? green product (rohs compliant) ? 100% avalanche tested maximum ratings, at t j =25 c, unless otherwise specified parameter symbol conditions unit continuous drain current i d t c =25c, v gs =10v 1) 120 a t c =100c, v gs =10v 2) 120 pulsed drain current 2) i d,pulse t c =25c 480 avalanche energy, single pulse 2) e as i d =60a 770 mj avalanche current, single pulse i as - 120 a gate source voltage v gs - 20 v power dissipation p tot t c =25c 250 w operating and storage temperature t j , t stg - -55 ... +175 c value v ds 100 v r ds(on),max (smd version) 3.5 m w i d 120 a product summary type package marking ipb120n10s4-03 pg-to263-3-2 4n1003 ipi120n10s4-03 pg-to262-3-1 4n1003 IPP120N10S4-03 pg-to220-3-1 4n1003 pg - to220 - 3 - 1 pg - to262 - 3 - 1 pg - to263 - 3 - 2 rev. 1.0 page 1 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 parameter symbol conditions unit min. typ. max. thermal characteristics 2) thermal resistance, junction - case r thjc - - - 0.6 k/w thermal resistance, junction - ambient, leaded r thja - - - 62 smd version, device on pcb r thja minimal footprint - - 62 6 cm 2 cooling area 3) - - 40 electrical characteristics, at t j =25 c, unless otherwise specified static characteristics drain-source breakdown voltage v (br)dss v gs =0v, i d = 1ma 100 - - v gate threshold voltage v gs(th) v ds = v gs , i d =180a 2.0 2.7 3.5 zero gate voltage drain current i dss v ds =100v, v gs =0v - 0.1 1 a v ds =100v, v gs =0v, t j =125c 2) - 10 100 gate-source leakage current i gss v gs =20v, v ds =0v - - 100 na drain-source on-state resistance r ds(on) v gs =10v, i d =100a - 3.4 3.9 m w v gs =10v, i d =100a, smd version - 3.0 3.5 values rev. 1.0 page 2 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 parameter symbol conditions unit min. typ. max. dynamic characteristics 2) input capacitance c iss - 7780 10120 pf output capacitance c oss - 2460 3200 reverse transfer capacitance c rss - 150 300 turn-on delay time t d(on) - 20 - ns rise time t r - 10 - turn-off delay time t d(off) - 45 - fall time t f - 40 - gate charge characteristics 2) gate to source charge q gs - 36 47 nc gate to drain charge q gd - 21 42 gate charge total q g - 108 140 gate plateau voltage v plateau - 4.7 - v reverse diode diode continous forward current 2) i s - - 120 a diode pulse current 2) i s,pulse - - 480 diode forward voltage v sd v gs =0v, i f =100a, t j =25c - 1.0 1.3 v reverse recovery time 2) t rr v r =50v, i f =50a, d i f /d t =100a/s - 80 - ns reverse recovery charge 2) q rr - 170 - nc values v gs =0v, v ds =25v, f =1mhz v dd =50v, v gs =10v, i d =120a, r g =3.5 w v dd =80v, i d =120a, v gs =0?to?10v 3) device on 40 mm x 40 mm x 1.5 mm epoxy pcb fr4 with 6 cm 2 (one layer, 70 m thick) copper area for drain connection. pcb is vertical in still air. 1) current is limited by bondwire; with an r thjc = 0.6k/w the chip is able to carry 186a at 25c. t c =25c 2) specified by design. not subject to production test. rev. 1.0 page 3 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 1 power dissipation 2 drain current p tot = f( t c ); v gs = 10 v i d = f( t c ); v gs = 10 v; smd 3 safe operating area 4 max. transient thermal impedance i d = f( v ds ); t c = 25 c; d = 0; smd z thjc = f( t p ) parameter: t p parameter: d = t p / t 1 s 10 s 100 s 1 ms 1 10 100 1000 0.1 1 10 100 i d [ a ] v ds [v] single pulse 0.01 0.05 0.1 0.5 10 -6 10 -5 10 -4 10 -3 10 -2 10 -1 10 0 10 -3 10 -2 10 -1 10 0 10 1 z t h j c [ k / w ] t p [s] 0 50 100 150 200 250 300 0 50 100 150 200 p t o t [ w ] t c [ c] 0 20 40 60 80 100 120 140 0 50 100 150 200 i d [ a ] t c [ c] rev. 1.0 page 4 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 5 typ. output characteristics 6 typ. drain-source on-state resistance i d = f( v ds ); t j = 25 c; smd r ds(on) = f( i d ); t j = 25 c; smd parameter: v gs parameter: v gs 7 typ. transfer characteristics 8 typ. drain-source on-state resistance i d = f( v gs ); v ds = 6v r ds(on) = f( t j ); i d = 100 a; v gs = 10 v; smd parameter: t j 2 3 4 5 6 7 -60 -20 20 60 100 140 180 r d s ( o n ) [ m w ] t j [ c] 5 v 5.5 v 6 v 7 v 10 v 0 120 240 360 480 0 1 2 3 4 5 i d [ a ] v ds [v] 5 v 5.5 v 6 v 7 v 10 v 2 4 6 8 10 0 120 240 360 480 r d s ( o n ) [ m w ] i d [a] -55 c 25 c 175 c 0 120 240 360 480 3 4 5 6 7 i d [ a ] v gs [v] rev. 1.0 page 5 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 9 typ. gate threshold voltage 10 typ. capacitances v gs(th) = f( t j ); v gs = v ds c = f( v ds ); v gs = 0 v; f = 1 mhz parameter: i d 11 typical forward diode characteristicis 12 avalanche characteristics i f = f(v sd ) i a s = f( t av ) parameter: t j parameter: t j(start) 25 c 175 c 10 0 10 1 10 2 10 3 0 0.2 0.4 0.6 0.8 1 1.2 1.4 i f [ a ] v sd [v] 180 a 1800 a 1 1.5 2 2.5 3 3.5 4 -60 -20 20 60 100 140 180 v g s ( t h ) [ v ] t j [ c] ciss coss crss 10 2 10 3 10 4 0 5 10 15 20 25 30 c [ p f ] v ds [v] 10 1 25 c 100 c 150 c 1 10 100 1000 1 10 100 1000 i a v [ a ] t av [s] 25 c 175 c 10 0 10 1 10 2 10 3 0 0.2 0.4 0.6 0.8 1 1.2 1.4 i f [ a ] v sd [v] rev. 1.0 page 6 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 13 avalanche energy 14 drain-source breakdown voltage e as = f( t j ) v br(dss) = f( t j ); i d = 1 ma parameter: i d 15 typ. gate charge 16 gate charge waveforms v gs = f( q gate ); i d = 120 a pulsed parameter: v dd v gs q gate v g s(th) q g (th) q g s q g d q sw q g 94 96 98 100 102 104 106 108 110 -55 -15 25 65 105 145 v b r ( d s s ) [ v ] t j [ c] 20 v 80 v 0 1 2 3 4 5 6 7 8 9 10 0 20 40 60 80 100 120 v g s [ v ] q gate [nc] 120 a 60 a 30 a 0 500 1000 1500 2000 25 75 125 175 e a s [ m j ] t j [ c] rev. 1.0 page 7 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 published by infineon technologies ag 81726 munich, germany ? infineon technologies ag 2014 all rights reserved. legal disclaimer the information given in this document shall in no event be regarded as a guarantee of conditions or characteristics. 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 the 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 the nearest infineon technologies office. infineon technologies components may be used in life-support devices or systems only 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. rev. 1.0 page 8 2014-06-30
ipb120n10s4-03 ipi120n10s4-03, IPP120N10S4-03 revision history version revision 1.0 date 30.06.2014 changes data sheet revision 1.0 rev. 1.0 page 9 2014-06-30


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