MUR1620CTRG ON Semiconductor, MUR1620CTRG Datasheet - Page 3

DIODE ULT FAST 200V 8A TO220AB

MUR1620CTRG

Manufacturer Part Number
MUR1620CTRG
Description
DIODE ULT FAST 200V 8A TO220AB
Manufacturer
ON Semiconductor
Series
SWITCHMODE™r
Datasheets

Specifications of MUR1620CTRG

Voltage - Forward (vf) (max) @ If
1.2V @ 8A
Current - Reverse Leakage @ Vr
5µA @ 200V
Current - Average Rectified (io) (per Diode)
8A
Voltage - Dc Reverse (vr) (max)
200V
Reverse Recovery Time (trr)
85ns
Diode Type
Standard
Speed
Fast Recovery =< 500ns, > 200mA (Io)
Diode Configuration
1 Pair Common Anode
Mounting Type
Through Hole
Package / Case
TO-220-3 (Straight Leads)
Product
Ultra Fast Recovery Rectifier
Configuration
Dual Common Anode
Reverse Voltage
200 V
Forward Voltage Drop
1.2 V @ 8 A
Recovery Time
85 ns
Forward Continuous Current
16 A
Max Surge Current
100 A
Reverse Current Ir
5 uA
Mounting Style
Through Hole
Maximum Operating Temperature
+ 175 C
Minimum Operating Temperature
- 65 C
Current, Forward
16 A
Current, Reverse
500 μA
Current, Surge
100 A
Package Type
TO-220
Primary Type
Rectifier
Resistance, Thermal, Junction To Case
2 °C/W
Speed, Switching
Ultrafast
Temperature, Junction, Maximum
+175 °C
Temperature, Operating
-65 to +175 °C
Time, Recovery
85 ns
Voltage, Forward
1.2 V
Voltage, Reverse
200 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
MUR1620CTRGOS

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Manufacturer
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0.001
0.01
100
0.1
10
0.05
0.02
0.01
1
1.0
0.5
0.2
0.1
0.000001 0.00001
50% Duty Cycle
10%
1%
20%
5%
2%
0.01 0.02
Single Pulse
0.01
D = 0.5
SINGLE PULSE
0.05
0.1
0.05
0.0001
0.1
8.0
6.0
4.0
2.0
16
14
12
10
0
Figure 6. Thermal Response, Junction−to−Ambient
0
0.2
T
J
I
F(AV)
= 175°C
2.0
Figure 4. Power Dissipation (Per Leg)
0.001
, AVERAGE FORWARD CURRENT (AMPS)
Figure 5. Thermal Response
0.5
4.0
http://onsemi.com
1.0
PULSE TIME (sec)
6.0
t, TIME (ms)
0.01
SQUARE
WAVE
2.0
8.0
3
DUTY CYCLE, D = t
P
10
(pk)
5.0
0.1
dc
12
t
10
1
t
2
14
20
1
1
/t
2
16
Z
D CURVES APPLY FOR POWER
PULSE TRAIN SHOWN
READ TIME AT T
T
qJC(t)
J(pk)
50
− T
= r(t) R
10
C
100
= P
qJC
(pk)
1
200
Z
qJC(t)
100
500 1000
1000

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