PANASONIC 2SK0614

Silicon MOS FETs (Small Signal)
2SK0614 (2SK614)
Silicon N-Channel MOS FET
For switching
unit: mm
■ Features
5.0±0.2
0.7±0.2
5.1±0.2
● Low ON-resistance RDS(on)
● High-speed switching
● Allowing to be driven directly by CMOS and TTL
4.0±0.2
12.9±0.5
0.7±0.1
■ Absolute Maximum Ratings (Ta = 25°C)
Parameter
Symbol
Drain to Source voltage
Ratings
Unit
80
V
VDS
VGSO
Drain current
Max drain current
2.5+0.6
–0.2
20
V
ID
±0.5
A
IDP
±1
A
Allowable power dissipation
PD
750
mW
Channel temperature
Tch
150
°C
Storage temperature
Tstg
−55 to +150
°C
2.5+0.6
–0.2
1
2 3
2.3±0.2
Gate to Source voltage
0.45+0.15
–0.1
0.45+0.15
–0.1
1: Source
2: Drain
3: Gate
JEDEC: TO-92
EIAJ: SC-43
TO-92-A1 Package
■ Electrical Characteristics (Ta = 25°C)
Parameter
Symbol
Conditions
min
Drain to Source cut-off current
IDSS
VDS = 60V, VGS = 0
Gate to Source leakage current
IGSS
VGS = 20V, VDS = 0
Drain to Source breakdown voltage
VDSS
IDS = 100µA, VGS = 0
80
Gate threshold voltage
Vth
ID = 1mA, VDS = VGS
1.5
Drain to Source ON-resistance
RDS(on)*1
ID = 0.5A, VGS = 10V
Forward transfer admittance
| Yfs |
ID = 0.2A, VDS = 15V, f = 1kHz
typ
max
Unit
10
µA
0.1
µA
V
2
3.5
V
4
Ω
300
mS
45
pF
30
pF
8
pF
Turn-on time
ton
*2
15
ns
Turn-off time
toff*2
20
ns
Input capacitance (Common Source) Ciss
Output capacitance (Common Source)
Coss
VDS = 10V, VGS = 0, f = 1MHz
Reverse transfer capacitance (Common Source) Crss
*1
*2
Pulse measurement
t on, toff measurement circuit
Vout
68Ω
Vin = 10V
t = 1µS
f = 1MHZ
Vin
50Ω
VDD = 30V
10%
Vin
10%
90%
90% V
Vout
out
ton
toff
Note) The part number in the parenthesis shows conventional part number.
277
Silicon MOS FETs (Small Signal)
2SK0614
PD  Ta
ID  VDS
1.2
1.2
Ta=25˚C
600
400
5V
0.8
4.5V
0.6
4V
0.4
0.8
0.6
0.4
3.5V
200
0.2
0.2
3V
0
0
0
20
40
60
80 100 120 140 160
0
0
Ambient temperature Ta (˚C)
300
200
100
0
1
2
3
4
5
6
Gate to source voltage VGS (V)
Drain to source ON-resistance RDS(on) (Ω)
RDS(on)  Ta
6
ID=500mA
5
4
VGS=5V
3
10V
2
1
0
–50
–25
0
25
50
75
Ambient temperature Ta (˚C)
278
Input capacitance (Common source), Output capacitance (Common source),
Reverse transfer capacitance (Common source) Ciss,Coss,Crss (pF)
400
0
4
6
8
10
0
2
120
80
60
40
Ciss
20
Coss
Crss
0
1
3
10
30
100
300
6
8
10
RDS(on)  VGS
VGS=0
f=1MHz
Ta=25˚C
100
4
Gate to source voltage VGS (V)
Ciss, Coss, Crss  VDS
VDS=15V
f=1kHz
Ta=25˚C
500
2
Drain to source voltage VDS (V)
| Yfs |  VGS
600
Forward transfer admittance |Yfs| (mS)
1.0
Drain current ID (A)
800
VDS=10V
Ta=25˚C
VGS=5.5V
1.0
Drain current ID (A)
1000
1000
Drain to source voltage VDS (V)
Drain to source ON-resistance RDS(on) (Ω)
Allowable power dissipation PD (mW)
1200
ID  VGS
6
ID=500mA
5
4
3
Ta=75˚C
2
25˚C
–25˚C
1
0
0
4
8
12
16
20
Gate to source voltage VGS (V)
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2001 MAR