2SK2902-01MR
N-CHANNEL SILICON POWER MOS-FET
Features
High speed switching Low on-resistance No secondary breadown Low driving power Avalanche-proof
FUJI POWER MOS-FET
TO-220F15
Applications
Switching regulators UPS (Uninterruptible Power Supply) DC-DC converters
2.54
3. Source
Maximum ratings and characteristicAbsolute maximum ratings
(Tc=25°C unless otherwise specified)
Item Drain-source voltage Continuous drain current Pulsed drain current Gate-source voltage Maximum Avalanche Energy Max. power dissipation Operating and storage temperature range Symbol V DS ID ID(puls] VGS EAV *1 PD Tch Tstg Rating 60 ±45 ±180 ±30 461.9 40 +150 -55 to +150 Unit
Equivalent circuit schematic
Drain(D)
V A A V mJ W °C °C *1 L=0.304mH, Vcc=24V
Gate(G) Source(S)
Electrical characteristics (Tc =25°C unless otherwise specified)
Item Drain-source breakdown voltaget Gate threshold voltage Zero gate voltage drain current Gate-source leakage current Drain-source on-state resistance Forward transcondutance Input capacitance Output capacitance Reverse transfer capacitance Turn-on time ton Turn-off time toff Avalanche capability Diode forward on-voltage Reverse recovery time Reverse recovery charge Symbol BVDSS VGS(th) IDSS IGSS RDS(on) gfs Ciss Coss Crss td(on) tr td(off) tf IAV V SD t rr Qrr Test Conditions ID=1mA VGS=0V ID=10mA VDS=VGS VDS =60V VGS=0V VGS=±30V VDS=0V ID=22.5A VGS=10V ID=22.5A VDS=25V VDS=25V VGS =0V f=1MHz VCC=30V ID=45A VGS=10V RGS=10 Ω L=100 µH Tch=25°C IF=45A VGS=0V Tch=25°C IF=45A VGS=0V -di/dt=100A/µs Tch=25°C
Min.
60 2.5 Tch=25°C Tch=125°C
Typ.
Max.
3.5 500 1.0 100 14.5 3450 1370 390 30 80 120 80 1.5
Units
V V µA mA nA mΩ S pF
3.0 10 0.2 10 12.0 10.0 25.0 2300 910 260 18 55 70 48 45 1.0 60 0.11
ns
A V ns µC
Thermalcharacteristics
Item Thermal resistance Symbol Rth(ch-c) Rth(ch-a) Test Conditions channel to case channel to ambient
Min.
Typ.
Max.
3.125 62.5
Units
°C/W °C/W
1
2SK2902-01MR
Characteristics
Power Dissipation PD=f(Tc)
50 10
3
FUJI POWER MOSFET
Safe operating area ID=f(VDS):D=0.01,Tc=25°C
40 10
2
t= 1µs 10µs
30
D.C.
ID [A]
PD [W]
100µs 10
1
1ms 10ms 100ms
t D= T t T
20
10 10
0
0 0 50 100 150
10 -1 10
-1
10
0
10
1
10
2
10
3
Tc [°C]
VDS [V]
Typical output characteristics ID=f(VDS):80µs pulse test,Tc=25°C
100 100 VGS=20V 10V 80 8V 6V 5.5V 10 60 5V
Typical transfer characteristics ID=f(VGS):80µs pulse test,VDS=25V,Tch=25°C
ID [A]
40 4.5V 1
20
4.0V
3.5V 0 0 1 2 3 4 5 0.1 0 2 4 6 8 10
VDS [V]
ID [A]
VGS [V]
Typical forward transconductance gfs=f(ID):80µs pulse test,VDS=25V,Tch=25°C
10
2
Typical Drain-Source on-State Resistance RDS(on)=f(ID):80µs pulse test,Tch=25°C
50 VGS= 3.5V 4.0V 4.5V 5.0V
40
RDS(on) [m Ω ]
30 5.5V
gfs [s]
10
1
20
6V 8V 10V 20V
10
10 100
0
10
1
10
2
00
20
40
60
80
100
ID [A]
ID [A]
2
2SK2902-01MR
Drain-source on-state resistance RDS(on)=f(Tch):ID=22.5A,VGS=10V
35 5.0 4.5 30 4.0 25 3.5
FUJI POWER MOSFET
Gate Threshold Voltage vs. Tch VGS(th)=f(Tch):VDS=VGS,ID=10mA
max.
RDS(on)[m Ω ]
20
3.0 max.
VGS(th) [V]
typ. 2.5 min. 2.0 1.5 1.0
15 typ. 10
5 0.5 0 0.0 -50 -25 0 25 50 75 100 125 150
-50
0
50
100
150
Tch [°C]
Tch [°C]
50
Typical Gate Charge Characteristics VGS=f(Qg):ID=45A,Tch=25°C
VDS
Typical capacitances C=f(VDS):VGS=0V,f=1MHz
25 10n
VGS 40 20 Ciss Vcc=48V 30 VDS [V] 30V 12V 15 1n Coss
VGS [V]
C [F]
20
10 100p
Crss
10
5
0 0 20 40 60 80 100 120 140
0
10p -2 10
10
-1
10
0
10
1
10
2
Qg [nC]
VDS [V]
Typical Forward Characteristics of Reverse Diode IF=f(VSD):80µs pulse test,Tch=25°C
110 100 90 80 70 60 50 10V 40 10 30 20 10 5V VGS=0V
2
10
4
Typical Switching Characteristics vs. ID t=f(ID):Vcc=30V,VGS=10V,RG=10 Ω
10
3
IF [A]
t [ns]
td(off) tf tr
td(on) 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 10
1
10
-1
10
0
10
1
10
2
VSD [V]
ID [A]
3
2SK2902-01MR
FUJI POWER MOSFET
Transient thermal impedance Zthch=f(t) parameter:D=t/T
Maximum Avalanche Current vs. starting Tch I(AV)=f(starting Tch)
50
10
1
40
0
0.5 10 0.2
Zthch-c [K/W]
0.1 0.05
-1
30
I(AV) [A]
10
0.02
t t T
20
0.01
T
D=
10
0 10 -5 10
-2
10
-4
10
-3
10
-2
10
-1
10
0
10
1
t [s]
0 0 50 100 150
Starting Tch [°C]
Maximum Avalanche energy vs. starting Tch Eas=f(starting Tch):Vcc=24V, I(AV)
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