ON-REGION CHARACTERISTIC
60 7.0V 6.0V 4.5V 55
ID ,DRAIN - SOURCE CURRENT( A )
ON- RESISTANCE VARIATION WITH DRAIN CURRENT AND GATE VOLTAGE
3.0
DRAIN - SOURCE ON - RESISTANCE
10.0V
5.0V
VGS = 4.0V 2.5 2.0 4.5V 1.5 1.0 5.0V 6.0V 7.0V 10V
50 45 40 35 30 25 20 15 10 5 0
4.0V
3.5V VGS =3.0V 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 VDS,DRAIN- SOURCE VOLTAGE ( V ) 4.5 5.0
R DS(ON) ,NORMALIZED
0.5
0
0
10
20 30 40 I D ,DRAIN CURRENT( A )
50
60
ON- RESISTANCE VARIATION WITH TEMPERATURE
1.8
R ,NORMALIZED DRAIN - SOURCE ON - RESISTANCE
ON-RESISTANCE VARIATION WITH GATE-TO-SOURCE VOLTAGE 0.06 ID = 15A
R DS(ON) ,ON-RESISTANCE(OHM)
I D = 15A VGS= 10V
1.6 1.4
0.05
0.04
1.2 1.0
DS(ON)
0.03 TA = 125°C 0.02 TA = 25°C
0.8
0.6 -50
-25
25 50 75 100 125 0 Tj ,JUNCTION TEMPERATURE( °C )
150
175
0.01
2
6 8 4 VGS,GATE TO SOURCE VOLTAGE
10
TRANSFER CHARACTERISTICS
60
I S,REVERSE DRAIN CURRENT( A )
60
BODY DIODE FORWARD VOLTAGE VARIATION WITH SOURCE CURRENT AND TEMPERATURE
VGS= 0V
VDS =10V 50
I D,DRAIN CURRENT( A )
TA = -55°C
25°C 125°C
10 TA = 125°C 25°C
40 30
1 0.1
-55°C
20 10
0.01
0.001 0.0001 0 1.0 1.2 0.8 0.2 0.4 0.6 VSD ,BODY DIODE FORWARD VOLTAGE( V ) 1.4
0
1
3 4 2 VGS,GATE TO SOURCE VOLTAGE
5
GATE CHARGE CHARACTERISTICS
10
V GS ,GATE - SOURCE VOLTAGE ( V )
10000
CAPACITANCE CHARACTERISTICS
I D = 15A 8 VDS = 5V 10V 6
15V
CAPACITANCE( pF )
1000 Ciss Coss 100
4
Crss
2
0
0
4
8 12 Qg ,GATE CHARGE ( nC )
16
10
f = 1MHZ VGS= 0V 1 5
10
15
20
25
30
VDS ,DRAIN TO SOURCE VOLTAGE ( V )
SINGLEPULSE M AXIMUMPOW DISSIPATION ER
2400 SINGLE PULSE R = 2 .5°C/W TC = 25°C
JC
10
3
MAXIMUM SAFE OPERATING AREA
2000
POWER( W )
I D,DRAIN CURRENT( A )
1600
10
2
n) ds(o
35.0µS
it Lim
1m s DC 10m s
R
10 0µ S
1200 800 400
10
1
0 0.01
0.1
1
10 1 SINGLE PULSE TIM SEC) E(
100
1000
10 -1 10
0
VGS= 10V SINGLE PULSE R JC= 2.5 °C/W Tc = 25 °C
10 10 VDS,DRAIN - SOURCE VOLTAGE
0
1
10
2
T RANSIENT THERMAL RESPONSE CURVE
10
TRANSIENT THERMAL RESISTANCE r ( t ) ,NORMALIZED EFFECTIVE
10
0
D=0.5 0.20 0.10
10
-1
0.05
-2
10
0.02 0.01
P(pk)
t1
10
-3
t2
Single pulse 10
-4
1.R 2.R 3.T j
(t)=r(t)*R = 2.5° C/W JC + TC = P * R J C (t) t1 4.Duty Cycle,D = t2
JC
10
-7
10
-6
10
-5
10 10 t1 , TIME( ms )
-4
-3
10
-2
10
-1
10
0
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