2SK3778-01
N-CHANNEL SILICON POWER MOSFET
Outline Drawings (mm)
200406
FUJI POWER MOSFET
Super FAP-G Series
Features
High speed switching, Low on-resistance Low driving power, Avalanche-proof No secondary breadown
Applications
Switching regulators UPS (Uninterruptible Power Supply) DC-DC converters
Maximum ratings and characteristic
Absolute maximum ratings (Tc=25°C unless otherwise specified)
Item Drain-source voltage Continuous Drain Current Pulsed Drain Current Gate-Source Voltage Maximum Avalanche current Non-Repetitive Maximum Avalanche Energy Repetitive Maximum Avalanche Energy Maximum Drain-Source dV/dt Peak Diode Recovery dV/dt Max. Power Dissipation Operating and Storage Temperature range Symbol V DS VDSX ID ID(puls] VGS IAR EAS EAR dV DS /dt dV/dt PD Tch Tstg Ratings 250 250 59 ±236 ±30 59 1115.2 41 20 5 410 2.50 +150 -55 to +150 Unit V V A A V A mJ mJ Remarks VGS=-30V
Equivalent circuit schematic
Drain(D)
Gate(G)
Note *1 Note *2 Note *3
Source(S) Note *1:Tch < 150°C,Repetitive and Non-repetitive = Note *2:StartingTch=25°C,IAS=24A,L=3.25mH, VCC=48V,RG=50Ω EAS limited by maximum channel temperature and avalanch current. See to the ‘Avalanche Energy’ graph Note *3:Repetitive rating:Pulse width limited by maximum channel temperature. See to the ‘Transient Theemal impedance’ graph Note *4:IF< -ID, -di/dt=50A/µs,VCC< BVDSS, Tch< 150°C = = =
kV/µs VDS= 250V < kV/µs Note *4 Tc=25°C W Ta=25°C °C °C
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 Total Gate Charge Gate-Source Charge Gate-Drain Charge 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 QG QGS QGD V SD trr Qrr Symbol Rth(ch-c) Rth(ch-a)
Test Conditions ID= 250µA VGS=0V ID= 250µA VDS=VGS Tch=25°C VDS =250V VGS=0V Tch=125°C VDS =200V VGS=0V VGS=±30V VDS=0V ID=29.5A VGS=10V ID=29.5A VDS=25V VDS =75V VGS=0V f=1MHz VCC=72V ID=29.5A VGS=10V RGS=10 Ω V CC=150V ID=59A VGS=10V IF=59A VGS=0V Tch=25°C IF=59A VGS=0V -di/dt=100A/µs Tch=25°C Test Conditions channel to case channel to ambient
Min.
250 3.0
Typ.
Max.
5.0 25 250 100 53
Units
V V µA nA mΩ S pF
12
43 24 3800 5400 530 795 35 52.5 40 60 62 93 70 105 20 30 80 120 30 45 25 38 1.20 1.50 370 4.5
ns
nC
V ns µC
Thermalcharacteristics
Item Thermal resistance www.fujielectric.co.jp/fdt/scd
Min.
Typ.
Max.
0.305 50.0
Units
°C/W °C/W
1
2SK3778-01
Characteristics
Allowable Power Dissipation PD=f(Tc)
FUJI POWER MOSFET
500
120
Typical Output Characteristics ID=f(VDS):80 µ s pulse test,Tch=25 °C
20V 10V 8V
100 400
80
PD [W]
ID [A]
300
7V 60
200 40
6.5V
100
20
VGS=6.0V
0 0 25 50 75 100 125 150
0 0 5 10
Tc [°C]
VDS [V]
Typical Transfer Characteristic ID=f(VGS):80 µ s pulse test,VDS=25V,Tch=25°C 100
100
Typical Transconductance gfs=f(ID):80 µ s pulse test,VDS=25V,Tch=25°C
10 10
ID[A]
1 1
0.1 0.1 0.1
0
1
2
3
4
5
6
7
8
9
10
gfs [S]
1
10
100
VGS[V]
ID [A]
0.20
Typical Drain-Source on-state Resistance RDS(on)=f(ID):80 µ s pulse test,Tch=25°C
VGS=6V 6.5V 0.15
Drain-Source On-state Resistance RDS(on)=f(Tch):ID=29.5A,VGS=10V
0.15 7V
RDS(on) [ Ω ]
0.10
RDS(on) [ Ω ]
max.
0.10
typ. 0.05
8V 0.05 20V 10V
0.00 0 10 20 30 40 50 60 70 80 90 100 110
0.00 -50 -25 0 25 50 75 100 125 150
ID [A]
Tch [°C]
2
2SK3778-01
Gate Threshold Voltage vs. Tch VGS(th)=f(Tch):VDS=VGS,ID=250µA
FUJI POWER MOSFET
7.0 6.5 6.0 5.5 5.0
14
Typical Gate Charge Characteristics VGS=f(Qg):ID=59A,Tch=25 °C
12 Vcc= 50V max. 10 125V 200V 8
VGS(th) [V]
4.5
3.5 3.0 2.5 2.0 1.5 1.0 0.5 0.0 -50 -25 0 25 50 75 100 125 150 min.
VGS [V]
4.0
6
4
2
0 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140
Tch [°C]
Qg [nC]
10
4
Typical Capacitance C=f(VDS):VGS=0V,f=1MHz
Ciss
1000
Typical Forward Characteristics of Reverse Diode IF=f(VSD):80 µs pulse test,Tch=25°C
10
3
100
C [pF]
Coss
IF [A]
Crss
10
2
10
10
1
1
10
0
10
-1
10
0
10
1
10
2
10
3
0.1 0.00
0.25
0.50
0.75
1.00
1.25
1.50
1.75
2.00
VDS [V]
VSD [V]
10
4
Typical Switching Characteristics vs. ID t=f(ID):Vcc=72V,VGS=10V,RG=10 Ω
1200
Maximum Avalanche Energy vs. starting Tch E(AV)=f(starting Tch):Vcc=48V,I(AV)
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