2SK2446-L,S
F-III Series
> Features
High Current Low On-Resistance No Secondary Breakdown Low Driving Power High Forward Transconductance
N-channel MOS-FET
100V 0,055Ω 30A 80W
> Outline Drawing
> Applications
- Motor Control - General Purpose Power Amplifier - DC-DC converters
> Maximum Ratings and Characteristics
- Absolute Maximum Ratings (TC=25°C), unless otherwise specified
Item Drain-Source-Voltage Drain-Gate-Voltage (RGS=20KΩ) Continous Drain Current Pulsed Drain Current Gate-Source-Voltage Max. Power Dissipation Operating and Storage Temperature Range Symbol V DS V DGR ID I D(puls) V GS PD T ch T stg Rating 100 100 30 120 ±20 80 150 -55 ~ +150 Unit V V A A V W °C °C
> Equivalent Circuit
- Electrical Characteristics (TC=25°C), unless otherwise specified
Item Drain-Source Breakdown-Voltage Gate Threshhold Voltage Zero Gate Voltage Drain Current Gate Source Leakage Current Drain Source On-State Resistance Forward Transconductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Turn-On-Time ton (ton=td(on)+tr) Turn-Off-Time toff (ton=td(off)+tf) Diode Forward On-Voltage Reverse Recovery Time Reverse Recovery Charge Thermal Characteristics Symbol R th(ch-a) R th(ch-c) Test conditions channel to air channel to case Min. Typ. Max. 125 1,56 Unit °C/W °C/W Symbol V (BR)DSS V GS(th) I DSS I R g C C C t t t t V t Q
GSS DS(on)
fs iss oss rss d(on) r d(off) f SD rr rr
Test conditions ID=1mA VGS=0V ID=1mA VDS=VGS VDS=100V Tch=25°C VGS=0V Tch=125°C VGS=±20V VDS=0V ID=15A VGS=4V ID=15A VGS=10V ID=15A VDS=25V VDS=25V VGS=0V f=1MHz VCC=30V ID=30A VGS=10V RGS=25Ω IF=2xIDR VGS=0V Tch=25°C IF=IDR VGS=0V -dIF/dt=100A/µs Tch=25°C
Min. 100 1,0
Typ. 1,5 10 0,2 10 0,04 0,03 30 2500 500 250 20 140 500 260 0,9 130 1,0
Max. 2,5 500 1,0 100 0,07 0,055 3700 750 380 30 210 750 390 1,5
15
Unit V V µA mA nA Ω Ω S pF pF pF ns ns ns ns V ns µC
Thermal Resistance
N-channel MOS-FET
100V
0,055Ω 30A
2SK2446-L,S
F-III Series
Drain-Source On-State Resistance vs. Tch
RDS(on) = f(Tch); ID=15A; VGS=10V
80W
> Characteristics
Typical Output Characteristics
ID=f(VDS); 80µs pulse test; TC=25°C
Typical Transfer Characteristics
ID=f(VGS); 80µs pulse test; VDS=25V; Tch=25°C
↑
ID [A]
↑
1
RDS(ON) [Ω ]
↑ 2
ID [A]
3
VDS [V]
→
Tch [°C]
→
VGS [V]
→
Typical Drain-Source On-State-Resistance vs. ID
RDS(on)=f(ID); 80µs pulse test; TC=25°C
Typical Transconductance
gfs=f(ID); 80µs pulse test; VDS=25V; Tch=25°C
Gate Threshold Voltage
VGS(th)=f(Tch); ID=1mA; VDS=VGS
↑
RDS(ON) [Ω ]
↑
gfs [S]
↑ 5
VGS(th) [V]
4
6
ID [A]
→
ID [A]
→
Tch [°C]
→
Typical Capacitances
C=f(VDS); VGS=0V; f=1MHz
Typical Gate Charge Characteristic
VGS=f(Qg); ID=30A
Forward Characteristics of Reverse Diode
IF=f(VSD); 80µs pulse test; VGS=0V
↑
C [nF]
↑
VDS [V]
↑
VGS [V]
↑
IF [A]
7
8
9
VDS [V]
→
Qg [nC]
→
VSD [V]
→
Power Dissipation
PD=f(Tc)
Safe Operation Area
ID=f(VDS): D=0,01, Tc=25°C
Zth(ch-c) [K/W]
↑
Transient Thermal impedance
Zthch-c=f(t) parameter:D=t/T
↑
PD [W]
10
↑
ID [A]
12
Tch [°C]
→
VDS [V]
→
t [s]
→
This specification is subject to change without notice!
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