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IGW30N100T TrenchStop(R) series Low Loss IGBT: IGBT in TrenchStop(R) and Fieldstop technology * TrenchStop(R) and Fieldstop technology for 1000 V applications offers: - low VCEsat - very tight parameter distribution - high ruggedness, temperature stable behavior - positive temperature coefficient in VCEsat * Designed for: - frequency Converters - uninterrupted Power Supply * Low EMI * Low gate charge * Qualified according to JEDEC for target applications * Pb-free lead plating; RoHS compliant * Complete product spectrum and PSpice Models: http://www.infineon.com/igbt/ !"#$% () *+ + , + +( + C G E & '" % &( . /- Maximum ratings Parameter 011 '20! 3#22 ! 012 % 4 '011 '20! '5!! $2 1#3#2 6 7 Symbol Value + 8 Unit , , , + &519 6 '011 '20! '5!! $2 2: 1#3#2 6 7 5!$ 0== 9 = 0 ! 2#$% ! + ?9 4 @ ++A B C C /+ G+I 8 #$ A =!03 ' 9 =0! + 9 G+8 8 *3 ) ( 2 3#22 ! 012 % ! $9# $2 ( 2 3#22 ! 012 % >2: &0D ! 6#99# . H20! % 2 3 2#0$ ! 25! ! 25! ! 2#$% F5$'2#0$ 2 3 :;< &E H016 !#$% 2 3 ! 25! D 9016 !#$% + 8 33 > 05$2#$% 20!J5 9'! D K#353 0= 305$2#$% !0' 99 9L Thermal Resistance Parameter Characteristic (M 2N !3 1 ! 9#92 $' F5$'2#0$ ' 9 N !3 1 ! 9#92 $' F5$'2#0$ 37# $2 Symbol Conditions OP QR OP R Max. Value 8 / Unit ST) ST) 1 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series U1 '2!#' 1 N ! '2 !#92#' 2 5$1 99 02N !D#9 9 '#=# 6 Parameter Static Characteristic 011 '20! 3#22 ! 7! "60D$ 012 % Symbol Conditions PVWR X B B + + +B P OR + X +BX B , 3, B B 3, , Value Unit min. typ. max. + + ++ + + 011 '20! 3#22 ! 9 25! 2#0$ 012 % (2 3#22 ! 2N! 9N016 012 % 012 % '011 '20! '5!! $2 " % '5!! $2 8/ ?, 8 $0$ $, H [ Y !0 % 2 (2 3#22 ! 1 ! $9'0$65'2 $' $2 %! 2 6 % 2 ! 9#920! %Z !B 2 5$1 99 02N !D#9 9 '#=# 6 U1 '2!#' 1 N ! '2 !#92#' Parameter Dynamic Characteristic $ 52 ' .52 52 ' '#2 $' '#2 $' '#2 $' Symbol Conditions \] E] ^] B = , B + + _ Value Unit min. typ. max. a -8 ++ $ $_ !9 2! $9= ! ' ( 2 'N !% bB c $2 !$ 1 3#22 ! #$65'2 $' 3 95! 6 33 > + - #$ A =!03 '9 HD#2'N#$% N ! '2 !#92#' $65'2# c0 6 2 Parameter IGBT Characteristic 5!$ 0$ 6 1 #9 2#3 5!$ 0== 6 1 a 11 2#3 5!$ 0$ $ !% 5!$ 0== $ !% 02 1 9D#2'N#$% $ !% 2#3 2#3 Symbol Conditions 2dPEeR 2^ 2dPEZZR 2Z UEe UEZZ U 8 B , T+ +8 [ cg + $_ g a cg g =!03 a#% U U$ !% 1099 9 #$'156 h2 #1i $6 6#06 ! !9 ! '0 ! 59#$% 2N S) *+ 650 " Value Unit min. typ. max. $9 + / +8 $9 $9 $9 3f 3f 3f !B 2 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series HD#2'N#$% N ! '2 !#92#' $65'2# c0 6 2 +- Parameter IGBT Characteristic 5!$ 0$ 6 1 #9 2#3 5!$ 0== 6 1 a 11 2#3 5!$ 0$ $ !% 5!$ 0== $ !% 02 1 9D#2'N#$% $ !% 2#3 2#3 Symbol Conditions 2dPEeR 2^ 2dPEZZR 2Z UEe UEZZ U B +8 Value Unit min. typ. max. $9 , 8+ 8 / 8 $9 $9 $9 3f 3f 3f T+ !B +8 [ cg + $_ g a cg g =!03 a#% U U$ !% 1099 9 #$'156 h2 #1i $6 6#06 ! !9 ! '0 ! 59#$% 2N S) *+ 650 " 3 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 100 100 U* m,n U* m,n k 75 ++ k 10 2: +?9 + ?9 ?9 ++ . .ccU .ccU . 50 25 1 + ?9 ?9 + 39 4 0 10 = H) 100 _ *( a UbkU* l m_n 1000 1E+4 1E+5 1E+6 0.1 a#%5! 1 .ccU 10 . U 100 U .c ,(U m n A 1000 a#%5! + 011 '20! '5!! $2 9 =! J5 $' 4 > j+B +8[A =5$'2#0$ 0= 9D#2'N#$% 8 B +T a0!D !6 7# 9 9 = 0 ! 2#$% ! j+oB+ >4 450 400 & E &.)U 4 HH &, .* m)n U* m,n . .ccU k 70 60 50 40 30 20 10 25 50 75 100 125 150 n 350 300 250 200 150 100 50 0 175 0 ,HU U &U , k U m 2#0$ 9 25 50 ,HU U &U , k U m 75 100 125 150 n 175 a#%5! &0D ! 6#99# 2 3 ! 25! A > j+- =5$'2#0$ 0= ' 9 a#%5! / 011 '20! '5!! $2 9 =5$'2#0$ 0= ' 9 2 3 ! 25! j+A > B p+ 4 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series B B + + ++ 90 U* m,n 90 U* m,n + + ++ 80 70 60 50 40 30 20 10 0 0 > 80 70 60 50 40 30 20 10 k . .ccU .ccU . k - - 1 .ccU 2 . U 3 U 4 .c ,(U m n 5 6 0 0 > 1 .ccU 2 . U 3 U 4 .c ,(U m n 5 6 a#%5! #' 1 052 52 'N ! '2 !#92#' A a#%5! 8 #' 1 052 52 'N ! '2 !#92#' +A 90 80 U* m,n +- 3.5 U H, k , .* m n 3.0 2.5 2.0 1.5 1.0 0.5 0.0 -50 -25 +, , 8, 70 60 50 40 30 20 10 0 0 > . k .ccU 2 B (, U U 4 6 U .c ,(U m n 8 10 12 PR .ccU . U fk* 0 25 .* U &U , k U m 50 75 100 125 150 175 n a#%5! - #' 1 2! $9= ! 'N ! '2 !#92#' A a#%5! #' 1 '011 '20! 3#22 ! 9 25! 2#0$ 012 % 9 =5$'2#0$ 0= F5$'2#0$ 2 3 ! 25! >B + A 5 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 1000 1000 UH m$9n UH m$9n 2dPEZZR 2Z 2dPEeR 2^ 2dPEZZR 2Z 2dPEeR 2^ _ *( _ *( 100 100 2 H) 10 a#%5! 2 H) 0 10 .ccU 20 . 30 k 40 U* m,n 50 60 10 10.0 a#%5! + 20.0 B (, U UH H . m[n 30.0 40.0 50.0 60.0 70.0 #' 1 9D#2'N#$% 2#3 9 9 =5$'2#0$ 0= '011 '20! '5!! $2 +8 >#$65'2# 10 6 B +T B +8[ 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA #' 1 9D#2'N#$% 2#3 9 9 =5$'2#0$ 0= % 2 ! 9#920! +8 >#$65'2# 10 6 B +T , 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA _ UH_.c4 .c ,(U m n U B P OR (, U U 1000 7.0 6.5 6.0 5.5 5.0 4.5 4.0 3.5 3.0 -50 -25 0 25 50 75 100 125 150 175 n 2 3#$ 3K UH m$9n 2dPEZZR 2Z 2dPEeR 2^ 2 H) _ *( 100 10 25 50 fk* 75 .* U &U , k U m 100 125 150 n 175 fk* .* U &U , k U m a#%5! ++ #' 1 9D#2'N#$% 2#3 9 9 =5$'2#0$ 0= F5$'2#0$ 2 3 ! 25! 8 B +T >#$65'2# 10 6 , B +8[ 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA a#%5! + (2 3#22 ! 2N! 9N016 012 % 9 =5$'2#0$ 0= F5$'2#0$ 2 3 ! 25! -3,A > 6 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 8.0 _ *( U*U (l c.HHUH m3fn _ *( U*U (l c.HHUH m3fn 8.0 7.0 6.0 5.0 4.0 3.0 2.0 1.0 0.0 10.0 a#%5! +/ UEZZ UEeq 7.0 6.0 5.0 4.0 3.0 2.0 1.0 0.0 0.0 10.0 20.0 30.0 . UEZZ UEeq U H) .ccU k 40.0 U* m,n 50.0 60.0 U H) 20.0 B (, U UH H . m[n 30.0 40.0 50.0 60.0 70.0 a#%5! + #' 1 9D#2'N#$% $ !% 1099 9 9 =5$'2#0$ 0= '011 '20! '5!! $2 +8 >#$65'2# 10 6 B +T B +8[ 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA #' 1 9D#2'N#$% $ !% 1099 9 9 =5$'2#0$ 0= % 2 ! 9#920! +8 >#$65'2# 10 6 B +T , 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA 4.0 _ *( U*U (l c.HHUH m3fn _ *( U*U (l c.HHUH m3fn 6.0 5.0 UEZZ UEeq 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0.0 25 50 75 100 125 150 175 UEZZ UEeq 4.0 3.0 2.0 1.0 0.0 300 U H) U H) fk* .* U &U , k U m n 400 .ccU 500 . U 600 U .c ,(U m n 700 800 a#%5! + #' 1 9D#2'N#$% $ !% 1099 9 9 =5$'2#0$ 0= F5$'2#0$ 2 3 ! 25! 8 B +T >#$65'2# 10 6 , B +8[ 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA a#%5! +8 #' 1 9D#2'N#$% $ !% 1099 9 9 =5$'2#0$ 0= '011 '20! 3#22 ! 012 % +B +T >#$65'2# 10 6 , B +8[ 4 $ 3#' 2 92 '#!'5#2 #$ a#%5! UA 7 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 20 18 .c ,(U m n 1E+4 \ E ^ 16 ,* U m an ,&, 14 12 10 8 6 4 2 0 0 > 1000 (, U U U 100 B 50 bB (, U _, (U m$ n 100 150 200 250 300 10 0 10 .ccU . 20 U 30 U .c ,(U m n =5$'2#0$ 0= 40 50 a#%5! +- #' 1 % 2 'N !% ,A a#%5! + #' 1 ' '#2 $' 9 '011 '20! 3#22 ! 012 % = + _A >B 1 ,c UH H ,* U mST)n 4 + 0.1 + 9#$%1 519 Y Or ,*H U* _U 0.01 1E-6 a#%5! + #L + !\mST)nL 8 \m9nL U / 8 U/ 8 U + 8 1E-5 1E-4 2: &kcHU ) 4 _ m9n 0.001 0.01 0.1 1 (M 2! $9# $2 2N !3 1 ! 9#92 $' >4 2:T A 8 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 9 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series 10 Rev 2.4 2009-12-02 IGW30N100T TrenchStop(R) series Published by Infineon Technologies AG 81726 Munich, Germany 81726 Munchen, Germany (c) 2008 Infineon Technologies AG 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 Warnings For further information on technology, delivery terms and conditions and prices, please contact the nearest Infineon Technologies Office (www.infineon.com). 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. 11 Rev 2.4 2009-12-02 |
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