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APT47N60BCF Datasheet, PDF (1/5 Pages) Advanced Power Technology – Super Junction FREDFET | |||
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COOLMOS
Power Semiconductors
⢠Ultra Low RDS(ON)
⢠Low Miller Capacitance
⢠Ultra Low Gate Charge, Qg
⢠Avalanche Energy Rated
⢠Extreme dv/dt Rated
600V 46A 0.083â¦
APT47N60BCF APT47N60SCF
APT47N60BCFG* APT47N60SCFG*
*G Denotes RoHS Compliant, Pb Free Terminal Finish.
Super Junction FREDFET
⢠Intrinsic Fast-Recovery Body Diode
⢠Extreme Low Reverse Recovery Charge
⢠Ideal For ZVS Applications
⢠Popular TO-247 or Surface Mount D3 Package
(B)
TO-247
D3PAK
(S)
D
G
S
MAXIMUM RATINGS
All Ratings: TC = 25°C unless otherwise speciï¬ed.
Symbol Parameter
APT47N60B_SCF(G) UNIT
VDSS Drain-Source Voltage
600
Volts
ID
Continuous Drain Current @ TC = 25°C
Continuous Drain Current @ TC = 100°C
IDM
Pulsed Drain Current 1
VGS Gate-Source Voltage Continuous
46
29
Amps
115
±30
Volts
PD
Total Power Dissipation @ TC = 25°C
Linear Derating Factor
417
Watts
1.67
W/°C
TJ,TSTG
TL
dv/dt
IAR
EAR
EAS
Operating and Storage Junction Temperature Range
Lead Temperature: 0.063" from Case for 10 Sec.
Drain-Source Voltage slope (VDS = 480V, ID = 46A, TJ = 125°C)
Avalanche Current 2
Repetitive Avalanche Energy 2
Single Pulse Avalanche Energy 3
-55 to 150
260
80
20
1
1800
°C
V/ns
Amps
mJ
STATIC ELECTRICAL CHARACTERISTICS
Symbol Characteristic / Test Conditions
MIN TYP MAX UNIT
B(VR)DS
RDS(on)
Drain-Source Breakdown Voltage (VGS = 0V, ID = 250µA)
Drain-Source On-State Resistance 4 (VGS = 10V, ID = 29A)
600
0.083
IDSS
Zero Gate Voltage Drain Current (VDS = 600V, VGS = 0V)
Zero Gate Voltage Drain Current (VDS = 600V, VGS = 0V, TC = 150°C)
IGSS Gate-Source Leakage Current (VGS = ±20V, VDS = 0V)
6
5000
±100
VGS(th) Gate Threshold Voltage (VDS = VGS, ID = 2.9mA)
3
4
5
CAUTION: These Devices are Sensitive to Electrostatic Discharge. Proper Handling Procedures Should Be Followed.
APT Website - http://www.advancedpower.com
"COOLMOS⢠comprise a new family of transistors developed by Inï¬neon Technologies AG. "COOLMOS" is a trade-
mark of Inï¬neon Technologies AG."
Volts
Ohms
µA
nA
Volts
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