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 SEMiX151GD066HDs
Absolute Maximum Ratings Symbol
IGBT VCES IC ICnom ICRM ICRM = 2xICnom VCC = 360 V VGE 15 V Tj = 150 C VCES 600 V VGES tpsc Tj = 175 C Tc = 25 C Tc = 80 C 600 201 152 150 300 -20 ... 20 6 -40 ... 175 Tc = 25 C Tc = 80 C 219 161 150 IFRM = 2xIFnom tp = 10 ms, sin 180, Tj = 25 C 300 980 -40 ... 175 600 -40 ... 125 AC sinus 50Hz, t = 1 min 4000 V A A A A V s C A A A A A C A C V
Conditions
Values
Unit
SEMiX(R)13
Trench IGBT Modules
SEMiX151GD066HDs
Tj Inverse diode IF IFnom IFRM IFSM Tj Module It(RMS) Tstg Visol
Preliminary Data Features
* Homogeneous Si * Trench = Trenchgate technology * VCE(sat) with positive temperature coefficient * UL recognised file no. E63532
Tj = 175 C
Typical Applications
* Matrix Converter * Resonant Inverter * Current Source Inverter
Characteristics Symbol
IGBT VCE(sat) VCE0 rCE VGE(th) ICES Cies Coes Cres QG RGint td(on) tr Eon td(off) tf Eoff Rth(j-c) Rth(j-s) per IGBT per IGBT IC = 150 A VGE = 15 V chiplevel Tj = 25 C Tj = 150 C Tj = 25 C Tj = 150 C VGE = 15 V Tj = 25 C Tj = 150 C 5 Tj = 25 C Tj = 150 C f = 1 MHz f = 1 MHz f = 1 MHz 9.2 0.58 0.27 1200 2.00 140 40 3.8 385 40 6.1 0.29 1.45 1.70 0.9 0.85 3.7 5.7 5.8 0.15 1.9 2.1 1 0.9 6.0 8.0 6.5 0.45 V V V V m m V mA mA nF nF nF nC ns ns mJ ns ns mJ K/W K/W
Remarks
* Case temperature limited to TC=125C max. * Product reliability results are valid for Tj=150C * For short circuit: Soft RGoff recommended * Take care of over-voltage caused by stray inductance
Conditions
min.
typ.
max.
Unit
VGE=VCE, IC = 2.4 mA VGE = 0 V VCE = 600 V VCE = 25 V VGE = 0 V VGE = - 8 V...+ 15 V Tj = 25 C VCC = 300 V IC = 150 A Tj = 150 C RG on = 4.5 RG off = 4.5
GD (c) by SEMIKRON Rev. 12 - 02.12.2008 1
SEMiX151GD066HDs
Characteristics Symbol Conditions
Tj = 25 C Tj = 150 C Tj = 25 C Tj = 150 C Tj = 25 C Tj = 150 C IRRM Qrr Err Rth(j-c)
SEMiX151GD066HDs
min.
typ.
1.4 1.4
max.
1.6 1.6 1.1 0.95 3.3 4.3
Unit
V V V V m m A C mJ
Inverse diode VF = VEC IF = 150 A VGE = 0 V chiplevel VF0 rF
0.9 0.75 2.0 3.0
1 0.85 2.7 3.7 155 24 5.8
SEMiX(R)13
Trench IGBT Modules
IF = 150 A Tj = 150 C di/dtoff = 3000 A/s T = 150 C j VGE = -8 V Tj = 150 C VCC = 300 V per diode per diode
0.36
K/W K/W
Rth(j-s) Module LCE RCC'+EE' Rth(c-s) Ms Mt w
Preliminary Data Features
* Homogeneous Si * Trench = Trenchgate technology * VCE(sat) with positive temperature coefficient * UL recognised file no. E63532
20 res., terminal-chip per module to heat sink (M5) to terminals (M6) 3 2.5 TC = 25 C TC = 125 C 0.7 1 0.04 5 5 350 0,493 5% 3550 2%
nH m m K/W Nm Nm Nm g
Typical Applications
* Matrix Converter * Resonant Inverter * Current Source Inverter Temperature sensor R100 B100/125 Tc=100C (R25=5 k) R(T)=R100exp[B100/125(1/T-1/T100)]; T[K];
k K
Remarks
* Case temperature limited to TC=125C max. * Product reliability results are valid for Tj=150C * For short circuit: Soft RGoff recommended * Take care of over-voltage caused by stray inductance
GD 2 Rev. 12 - 02.12.2008 (c) by SEMIKRON
SEMiX151GD066HDs
Fig. 1 Typ. output characteristic, inclusive RCC'+ EE'
Fig. 2 Rated current vs. temperature IC = f (TC)
Fig. 3 Typ. turn-on /-off energy = f (IC)
Fig. 4 Typ. turn-on /-off energy = f (RG)
Fig. 5 Typ. transfer characteristic
Fig. 6 Typ. gate charge characteristic
(c) by SEMIKRON
Rev. 12 - 02.12.2008
3
SEMiX151GD066HDs
Fig. 7 Typ. switching times vs. IC
Fig. 8 Typ. switching times vs. gate resistor RG
Fig. 9 Typ. transient thermal impedance
Fig. 10 Typ. CAL diode forward charact., incl. RCC'+EE'
Fig. 11 Typ. CAL diode peak reverse recovery current
Fig. 12 Typ. CAL diode recovery charge
4
Rev. 12 - 02.12.2008
(c) by SEMIKRON
SEMiX151GD066HDs
SEMiX 13
GD
This is an electrostatic discharge sensitive device (ESDS), international standard IEC 60747-1, Chapter IX This technical information specifies semiconductor devices but promises no characteristics. No warranty or guarantee expressed or implied is made regarding delivery, performance or suitability.
(c) by SEMIKRON
Rev. 12 - 02.12.2008
5


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