Panasonic 2SK2126 Datasheet

Power F-MOS FETs
2SK2126
Silicon N-Channel Power F-MOS FET
Features
Avalanche energy capacity guaranteed: EAS > 100mJ
V
= ±30V guaranteed
High-speed switching: t
No secondary breakdown
Applications
Contactless relay
Diving circuit for a solenoid
Driving circuit for a motor
Control equipment
Switching power supply
Absolute Maximum Ratings (T
Parameter
Drain to Source breakdown voltage Gate to Source voltage
Drain current
Avalanche energy capacity Allowable power dissipation Channel temperature Storage temperature
*
L = 8mH, IL = 5A, VDD = 50V, 1 pulse
= 40ns
f
DC Pulse
TC = 25°C Ta = 25°C
Symbol
V
DSS
V
GSS
I
D
I
DP
*
EAS
P
D
T
ch
T
stg
= 25°C)
C
Ratings
55 to +150
500 ±30
±5 ±10 100
50
2
150
Unit
V V A A
mJ
W
°C °C
φ3.2±0.1
15.0±0.313.7
–0.2
+0.5
8.0±0.2
4.1±0.2
Solder Dip
7
9.9±0.3
231
3.0±0.2
1.2±0.15
1.45±0.15
0.75±0.1
2.54±0.2
5.08±0.4
unit: mm
4.6±0.2
2.9±0.2
2.6±0.1
0.7±0.1
1: Gate 2: Drain 3: Source
TO-220E Package
Electrical Characteristics (T
Parameter
Drain to Source cut-off current Gate to Source leakage current Drain to Source breakdown voltage Gate threshold voltage Drain to Source ON-resistance Forward transfer admittance Diode forward voltage Input capacitance (Common Source) Output capacitance (Common Source) Reverse transfer capacitance (Common Source) Turn-on time (delay time) Rise time Fall time Turn-off time (delay time) Thermal resistance between channel and case
C
Symbol
I
DSS
I
GSS
V
DSS
V
th
R
DS(on)
| Yfs | V
DSF
C
iss
C
oss
C
rss
t
d(on)
t
r
t
f
t
d(off)
R
th(ch-c)
= 25°C)
Conditions
VDS = 400V, VGS = 0 VGS = ±30V, VDS = 0 ID = 1mA, VGS = 0 VDS = 25V, ID = 1mA VGS = 10V, ID = 3A VDS = 25V, ID = 3A IDR = 5A, VGS = 0
VDS = 20V, VGS = 0, f = 1MHz
VGS = 10V, ID = 3A VDD = 150V, RL = 50
min
500
2
2
typ
1.35
3.5
700 100
35 20 40 40 80
max
0.1 ±1
5
1.7
1.6
2.5
Unit
mA
µA
V V
S
V pF pF pF
ns ns ns ns
°C/W
1
Power F-MOS FETs 2SK2126
Area of safe operation (ASO) PD Ta EAS T
100
I
DP
10
)
I
A
D
(
D
1
Drain current I
0.1
0.01 1 10 100 1000
Non repetitive pulse T
1ms 10ms
=25˚C
C
Drain to source voltage VDS (V
ID V
DS
8
V
=15V
GS
7
10V
7V
6
) A
(
5
D
4
6.5V
t=100µs
DC
)
60
) W
(
50
D
40
30
20
10
Allowable power dissipation P
0
020
(1) TC=Ta (2) Without heat sink
=2W)
(P
D
(1)
(2)
40 60 80 100 120 140 160
Ambient temperature Ta (˚C
ID V
GS
6
5
) A
(
4
D
3
TC=0˚C
150˚C
100˚C25˚C
VDS=25V
120
) mJ
(
100
80
60
40
20
Avalanche energy capacity EAS
0
25 50
)
Junction temperature Tj (˚C
6
)
5
V
(
th
4
3
j
VDD=50V I
=5A
D
75 100 125 150 175
)
Vth T
C
VDS=25V
=1mA
I
D
3
Drain current I
2
1
0
0 102030405060
6V
5.5V
Drain to source voltage VDS (V
VDS V
40
) V
(
30
DS
20
10
GS
Drain to source voltage V
0
0 5 10 15 20 25 30
Gate to source voltage VGS (V
50W
5V
TC=25˚C
ID=10A
5A
2.5A
1.25A
2
Drain current I
1
0
012108264
)
)
Gate to source voltage VGS (V
6
)
(
5
DS(on)
4
3
2
1
Drain to source ON-resistance R
0
012345
Drain current ID (A
R
DS(on)
I
T
C
D
VGS=10V
=150˚C
100˚C
25˚C
0˚C
2
1
Gate threshold voltage V
0
0 25 50 75 100 125 150
)
Case temperature TC (˚C
| Yfs |  I
6
) S
(
5
|
fs
4
3
2
1
D
VDS=25V T
=25˚C
C
)
Forward transfer admittance |Y
0
012345
)
Drain current ID (A
)
2
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