MUR1620CT
THRU
MUR1660CT
16.0 AMPS. Switchmode Power Rectifiers
Voltage Range
200 to 600 Volts
Current
16.0 Ampere
Features
Ultrafast 35 and 60 Nanosecond Recovery times
O
175 Coperating Junction Temperature
Popular TO-220 Package
Epoxy meets UL94, V
O
@ 1/8”
High temperature glass passivated junction
High voltage capability to 600 volts
O
Low leakage specified @ 150 C case temperature
Current derating @ both case and ambient
temperatures
TO-220
Mechanical Data
Case: Epoxy, molded
O
Lead temperature for soldering purposes: 260 C
Max. for 10 seconds
Finish: all external surfaces corrosion resistant and
terminal leads are readily solderable
Shipped 50 units per plastic tube
Weight: 1.9 grams (approximately)
Dimensions in inches and (millimeters)
MAXIMUM RATINGS
Type Number
Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage
Average Rectified Forward Current
Per Leg
O
Total Device, (Rated V
R
), Tc=150 C
Total Device
Peak Rectified Forward Current
(Rated VR, Square Wave, 20 KHz), Tc=150℃
Per Diode Leg
Nonrepetitive Peak Surge Current
(Surge Applied at Rated Load Conditions
Halfwave, Single Phase, 60 Hz)
Operating Junction Temperature and Storage
Temperature
Typical Thermal Resistance, Junction to Case,
Mounted on 2” x 3” x 0.25 Al-Plate.
Maximum Instantaneous Forward Voltage (Note
1) (IF=8.0 Amps, Tc=25℃)
(IF=8.0 Amps, Tc=150℃)
Maximum Instantaneous Reverse Current
at Rated DC Blocking Voltage @ T
A
=25℃
@ T
A
=125℃
Maximum Reverse Recovery Time
(IF=0.5 Amp, IR=1.0 Amp, I
RR
=0.25 Amp)
Symbol
V
RRM
V
RWM
V
R
MUR
1620CT
200
MUR
1640CT
400
MUR
1660CT
600
Units
V
I
F(AV)
I
FM
I
FSM
T
J
,
T
STG
R
θ
JC
8.0
16
16
100
-65 to + 175
Amps
Amps
Amps
℃
℃/W
THERMAL CHARACTERISTICS, PER DIODE LEG
3.0
2.0
ELECTRICAL CHARACTERISTICS, PER DIODE LEG
VF
IR
0.975
0.895
5.0
250
25
1.30
1.300
10
500
50
1.50
1.20
V
uA
uA
nS
Trr
Note: 1. Pulse Test: Pulse Width = 300 us, Duty Cycle
≦2.0%.
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RATINGS AND CHARACTERISTIC CURVES (MUR1620CT THRU MUR1660CT)
FIG.1- CURRENT DERATING, CASE, PER LEG
10
I
F(A)
, AVERAGEPOWER DISSIPATION (W)
FIG.3- TYPICAL FORWARD VOLTAGE, PER LEG
100
9.0
8.0
7.0
6.0
5.0
4.0
3.0
2.0
1.0
0
140
145
150
155
160
165
SQUARE WAVE
dc
RATED V
R
APPLIED
70
50
30
20
Tj=175
0
C
I
F
, INSTANTANEOUS FORWARD CURRENT. (A)
10
7.0
5.0
25
0
C
100
0
C
170
o
175
180
T
C
, CASE TEMPERATURE. ( C)
FIG.2- TYPICAL REVERSE CURRENT, PER LEG
800
400
200
I
R
, REVERSE CURRENT. ( A)
3.0
2.0
80
40
20
8.0
4.0
2.0
0.8
0.4
0.2
0.08
0.04
0.02
0
0
20
40
60
Tj=175 C
0
1.0
0.7
0.5
100
0
C
25
0
C
0.3
0.2
80
100
120
140
160
180 200
V
R
, REVERSE VOLTAGE. (V)
*The curves shown are typical for hightest voltage deice in the
voltage grouping. Typical reverse current for lower voltage selections
can be estimated from these same curves if V
R
is sufficiently below
rated V
R
.
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
V
F
, INSTANTANEOUS VOLTAGE. (V)
FIG.4- TYPICAL CAPACITANCE, PER LEG
1000
I
F(A)
, AVERAGE FORWARD CURRENT. (A)
FIG.5- CURRENT DERATING, AMBIENT, PER LEG
14
12
dc
R JA = 16
O
C/W
R JA = 60
O
C/W
(NO HEATSINK)
300
Tj=25
0
C
10
8.0
6.0
4.0
2.0
0
SQUARE WAVE
100
dc
30
SQUARE WAVE
10
1.0
10
V
R
, REVERSE VOLTAGE. (V)
100
0
20
40
60
80
100
120
140
o
160
180
200
T
A
, AMBIENT TEMPERATURE. ( C)
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