APT68GA60B
APT68GA60S
600V
High Speed PT IGBT
APT68GA60S
TO
POWER MOS 8 is a high speed Punch-Through switch-mode IGBT. Low Eoff is achieved
-24
7
through leading technology silicon design and lifetime control processes. A reduced Eoff D 3 PAK
VCE(ON) tradeoff results in superior efficiency compared to other IGBT technologies. Low
gate charge and a greatly reduced ratio of Cres/Cies provide excellent noise immunity, short
delay times and simple gate drive. The intrinsic chip gate resistance and capacitance of the
APT68GA60B
poly-silicone gate structure help control di/dt during switching, resulting in low EMI, even
when switching at high frequency.
Single die IGBT
®
FEATURES
TYPICAL APPLICATIONS
• Fast switching with low EMI
• ZVS phase shifted and other full bridge
• Very Low Eoff for maximum efficiency
• Half bridge
• Ultra low Cres for improved noise immunity
• High power PFC boost
• Low conduction loss
• Welding
• Low gate charge
• UPS, solar, and other inverters
• Increased intrinsic gate resistance for low EMI
• High frequency, high efficiency industrial
• RoHS compliant
Absolute Maximum Ratings
Vces
Parameter
Collector Emitter Voltage
Ratings
Unit
600
V
IC1
Continuous Collector Current @ TC = 25°C
IC2
Continuous Collector Current @ TC = 100°C
68
ICM
Pulsed Collector Current
202
VGE
Gate-Emitter Voltage
PD
Total Power Dissipation @ TC = 25°C
1
2
SSOA
Switching Safe Operating Area @ TJ = 150°C
TJ, TSTG
Operating and Storage Junction Temperature Range
TL
A
±30
V
520
W
202A @ 600V
-55 to 150
Lead Temperature for Soldering: 0.063" from Case for 10 Seconds
Static Characteristics
Symbol
121
7
°C
300
TJ = 25°C unless otherwise specified
Parameter
Test Conditions
Min
VBR(CES)
Collector-Emitter Breakdown Voltage
VGE = 0V, IC = 1.0mA
600
VCE(on)
Collector-Emitter On Voltage
VGE(th)
Gate Emitter Threshold Voltage
Zero Gate Voltage Collector Current
IGES
Gate-Emitter Leakage Current
Max
2.5
VGE = 15V,
TJ = 25°C
2.0
IC = 40A
TJ = 125°C
1.9
VGE =VCE , IC = 1mA
ICES
Typ
3
4.5
V
6
VCE = 600V,
TJ = 25°C
250
VGE = 0V
TJ = 125°C
2500
VGS = ±30V
Unit
μA
±100
nA
Thermal and Mechanical Characteristics
Symbol
Characteristic
Min
Typ
Max
Unit
RθJC
Junction to Case Thermal Resistance
-
-
0.24
°C/W
WT
Package Weight
-
5.9
-
g
10
in·lbf
Torque
Mounting Torque (TO-247 Package), 4-40 or M3 screw
Microsemi Website - http://www.microsemi.com
052-6326 Rev D 6 - 2011
Symbol
Dynamic Characteristics
Symbol
Parameter
Cies
Input Capacitance
Coes
Output Capacitance
Cres
Reverse Transfer Capacitance
Qg
Total Gate Charge 3
Qge
Gate-Emitter Charge
Qgc
SSOA
td(on)
tr
td(off)
tf
Gate- Collector Charge
Switching Safe Operating Area
Turn-On Delay Time
APT68GA60B_S
TJ = 25°C unless otherwise specified
Test Conditions
Min
Typ
Capacitance
5230
VGE = 0V, VCE = 25V
526
f = 1MHz
59
Gate Charge
198
VGE = 15V
32
VCE= 300V
L= 100uH, VCE = 600V
Inductive Switching (25°C)
202
VCC = 400V
27
Turn-Off Delay Time
VGE = 15V
133
IC = 40A
88
Turn-On Switching Energy
RG = 4.7Ω4
715
Eoff
Turn-Off Switching Energy 6
TJ = +25°C
607
td(on
Turn-On Delay Time
Inductive Switching (125°C)
20
tr
Current Rise Time
VCC = 400V
26
Turn-Off Delay Time
VGE = 15V
175
IC = 40A
129
Eon2
Turn-On Switching Energy
RG = 4.7Ω4
1117
Eoff
Turn-Off Switching Energy 6
TJ = +125°C
1025
tf
Current Fall Time
nC
21
Eon2
td(off)
pF
A
Current Rise Time
Current Fall Time
Unit
66
IC = 40A
TJ = 150°C, RG = 4.7Ω4, VGE = 15V,
Max
ns
μJ
ns
μJ
052-6326 Rev D 6 - 2011
1 Repetitive Rating: Pulse width and case temperature limited by maximum junction temperature.
2 Pulse test: Pulse Width < 380μs, duty cycle < 2%.
3 See Mil-Std-750 Method 3471.
4 RG is external gate resistance, not including internal gate resistance or gate driver impedance. (MIC4452)
5 Eon2 is the clamped inductive turn on energy that includes a commutating diode reverse recovery current in the IGBT turn on energy loss. A combi device is used for the
clamping diode.
6 Eoff is the clamped inductive turn-off energy measured in accordance with JEDEC standard JESD24-1.
7 Continuous current limited by package lead temperature.
Microsemi reserves the right to change, without notice, the specifications and information contained herein.
Typical Performance Curves
120
V
= 15V
TJ= 125°C
100
TJ= 150°C
TJ= 55°C
80
TJ= 25°C
60
40
20
0
1
2
3
4
5
250
9V
200
100
VGE, GATE-TO-EMITTER VOLTAGE (V)
IC, COLLECTOR CURRENT (A)
160
120
80
TJ= 25°C
40
TJ= -55°C
TJ= 125°C
0
2
6V
5V
0
4
8
12 16
20 24 28
32
VCE, COLLECTOR-TO-EMITTER VOLTAGE (V)
FIGURE 2, Output Characteristics (TJ = 25°C)
20
250μs PULSE
TEST
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