MUR3020PTG, SUR83020PTG, MUR3040PTG, MUR3060PTG, SUR83060PTG
http://onsemi.com
5
MUR3060PTG, SURS3060PTG
100
0.10.2 0.4 0.6 0.8 1 1.2 1.4 1.6
0.2
0.3
0.5
1
2
3
5
10
20
30
50
i
F
, INSTANTANEOUS FORWARD CURRENT (AMPS)
vF, INSTANTANEOUS VOLTAGE (VOLTS)
Figure 11. Typical Forward Voltage (Per Leg)
100
0.02150
0.05
0.1
0.2
0.5
1
2
5
10
20
50
I
R
, REVERSE CURRENT ( A)
?
VR, REVERSE VOLTAGE (VOLTS)
Figure 12. Typical Reverse Current (Per Leg)
16
14
12
10
8
6
4
2
0
140 150 160 170 180
I
F(AV)
, AVERAGE FORWARD CURRENT (AMPS)
TC, CASE TEMPERATURE (5C)
Figure 13. Current Derating, Case (Per Leg)
dc
10
9
0
0 120 140 160 180 20020 40 60 80 100
TA, AMBIENT TEMPERATURE (5C)
Figure 14. Current Derating, Ambient (Per Leg)
P
F(AV)
, AVERAGE POWER DISSIPATION (WATTS)
16
14
12
10
8
6
4
2
0
0
IF(AV), AVERAGE FORWARD CURRENT (AMPS)
Figure 15. Power Dissipation (Per Leg)
24681012 14 16
dc
I
F(AV)
, AVERAGE FORWARD CURRENT (AMPS)
100?C
25?C
TJ
= 150
?C
200 250 300 350 400 450 500 550 600 650
25?C
100?C
TJ
= 150
?C
SQUARE WAVE
RATED VOLTAGE APPLIED
dc
RJA
= 60
?C/W
AS OBTAINED IN FREE AIR
WITH NO HEAT SINK.
SQUARE WAVE
SQUARE WAVE
dc
RJA
= 16
?C/W AS OBTAINED
FROM A SMALL TO-220
HEAT SINK.
20
10
(CAPACITIVE LOAD)
IPK
I
= 5
AV
SQUARE WAVE
TJ
= 125
?C
IPK
= ?
IAV
(RESISTIVE-INDUCTIVE LOAD)
200
8
7
6
5
4
3
2
1