SHINDENGEN
Super Fast Recovery Rectifiers
Dual
D10LC20UR
200V 10A
FEATURES
●
Low noise
●
trr35ns
●
Fully Isolated
OUTLINE DIMENSIONS
Case : ITO-220
Unit : mm
Molding
APPLICATION
●
Switching power supply
●
Free Wheel
●
Home Appliances, Office Equipment
●
Telecommunication, Factory Automation
RATINGS
●Absolute Maximum Ratings (If not specified Tc=25℃)
Item
Symbol
Conditions
Tstg
Storage Temperature
Operating Junction Temperature
Tj
V
RM
Maximum Reverse Voltage
I
O
Average Rectified Forward Current
50Hz sine wave, R-load, Rating for each diode Io/2, Tc=114℃
I
FSM
50Hz sine wave, Non-repetitive 1 cycle peak value, Tj=25℃
Peak Surge Forward Current
Vdis
Terminals to case, AC 1 minute
Dielectric Strength
Mounting Torque
TOR
(Recommended torque:
0.3N½m)
●Electrical Characteristics (If not specified Tc=25℃)
Item
Symbol
Conditions
V
F
I
F
=5A,
Pulse measurement, Rating of per diode
Forward Voltage
I
R
Reverse Current
V
R
=V
RM
, Pulse measurement, Rating of per diode
trr
I
F
=0.5A, I
R
=1A, Rating of per diode
Reverse Recovery Time
θjc
junction to case
Thermal Resistance
Ratings
-40∼150
150
200
10
80
1.5
0.5
Ratings
Max.0.98
Max.10
Max.35
Max.3.3
Unit
℃
℃
V
A
A
kV
N½m
Unit
V
μA
ns
℃/W
Copyright & Copy;2000 Shindengen Electric Mfg.Co.Ltd
D10LC20UR
100
Forward Voltage
10
Forward Current I
F
[A]
Tc=150°C [MAX]
Tc=150°C [TYP]
Tc=25°C [MAX]
Tc=25°C [TYP]
1
Pulse measurement per diode
0.1
0
0.2
0.4
0.6
0.8
1
1.2
1.4
1.6
Forward Voltage V
F
[V]
D10LC20UR
16
14
Forward Power Dissipation
DC
D=0.8
0.5
SIN
0.3
0.2
0.1
0.05
Forward Power Dissipation P
F
[W]
12
10
8
6
4
2
0
0
2
4
6
8
10
12
14
16
Average Rectified Forward Current I
O
[A]
Tj = Tjmax
I
O
0
t
p
D=t
p
/T
T
D10LC20UR
16
DC
Derating Curve
Average Rectified Forward Current I
O
[A]
14
12
10
8
6
4
2
0
D=0.8
0.5
SIN
0.3
0.2
0.1
0.05
0
20
40
60
80
100
120
140
160
Case Temperature Tc [°C]
V
R
= V
RM
I
O
0
0
V
R
t
p
D=t
p
/T
T
D10LC20UR
16
Derating Curve
Average Rectified Forward Current I
O
[A]
14
12
10
8
6
4
2
0
DC
D=0.8
0.5
SIN
0.3
0.2
0.1
0.05
0
20
40
60
80
100
120
140
160
Heatsink Temperature Tf [°C]
V
R
= V
RM
I
O
0
0
V
R
t
p
D=t
p
/T
T