C6D06065A
®
Silicon Carbide Schottky Diode
V
RRM
Q
c
=
650 V
6A
23 nC
Z-Rec
Rectifier
Features
I
F
(T
C
=155˚C)
=
=
Package
•
•
•
•
•
•
•
New 6
th
Generation Technology
Low Forward Voltage Drop (V
F
)
Zero Reverse Recovery Current
Zero Forward Recovery Voltage
Low Leakage Current (I
r
)
Temperature-Independent Switching Behavior
Positive Temperature Coefficient on V
F
TO-220-2
Benefits
•
•
•
•
Higher System Level Efficiency
Increase System Power Density
Reduction of Heat Sink Requirements
Parallel Devices Without Thermal Runaway
PIN 1
PIN 2
CASE
Applications
•
•
•
•
•
Part Number
C6D06065A
Package
TO-220-2
Marking
C6D06065
Switch Mode Power Supplies (SMPS)
Server/Telecom Power Supplies
Industrial Power Supplies
Solar
UPS
Maximum Ratings
(T
C
= 25 ˚C unless otherwise specified)
Symbol
V
RRM
V
DC
I
F
I
FRM
I
FSM
I
F,Max
P
tot
T
J
, T
stg
Parameter
Repetitive Peak Reverse Voltage
DC Blocking Voltage
Continuous Forward Current
Repetitive Peak Forward Surge Current
Non-Repetitive Peak Forward Surge Current
Non-Repetitive Peak Forward Surge Current
Power Dissipation
Operating Junction and Storage Temperature
TO-220 Mounting Torque
Value
650
650
24
12
6
28
17
51
46
520
470
73
32
-55 to
+175
1
8.8
Unit
V
V
A
A
A
A
W
˚C
Nm
lbf-in
M3 Screw
6-32 Screw
T
C
=25˚C
T
C
=125˚C
T
C
=155˚C
Test Conditions
Note
Fig. 3
T
C
=25˚C, t
P
= 10 ms, Half Sine Wave
T
C
=110˚C, t
P
=10 ms, Half Sine Wave
T
C
=25˚C, t
p
= 10 ms, Half Sine Wave
T
C
=110˚C, t
p
= 10 ms, Half Sine Wave
T
C
=25˚C, t
P
= 10 µs, Pulse
T
C
=110˚C, t
P
= 10 µs, Pulse
T
C
=25˚C
T
C
=110˚C
Fig. 8
Fig. 8
Fig. 4
1
C6D06065A, Rev. -, 04-2019
Electrical Characteristics
Symbol
V
F
I
R
Q
C
C
E
C
Parameter
Forward Voltage
Reverse Current
Total Capacitive Charge
Total Capacitance
Capacitance Stored Energy
Typ.
1.27
1.37
2
15
23
394
44
36
3.5
Max.
1.50
1.60
30
120
Unit
V
μA
nC
pF
μJ
Test Conditions
I
F
= 6 A T
J
=25°C
I
F
= 6 A T
J
=175°C
V
R
= 650 V T
J
=25°C
V
R
= 650 V T
J
=175°C
V
R
= 400 V, I
F
= 6 A
T
J
= 25°C
V
R
= 0 V, T
J
= 25°C, f = 1 MHz
V
R
= 200 V, T
J
= 25˚C, f = 1 MHz
V
R
= 400 V, T
J
= 25˚C, f = 1 MHz
V
R
= 400 V
Note
Fig. 1
Fig. 2
Fig. 5
Fig. 6
Fig. 7
Note: This is a majority carrier diode, so there is no reverse recovery charge.
Thermal Characteristics
Symbol
R
θJC
Parameter
Thermal Resistance from Junction to Case
Typ.
2.05
Unit
°C/W
Note
Fig. 9
Typical Performance
20
18
16
Foward
I (A)
I I(A)
I(A)
(A)
(A)
I
Current, I
F
(A)
100
T
J
= -55°C
T
J
= 25°C
T
J
= 75°C
T
J
= 125°C
T
J
= 175°C
14
12
10
8
6
4
2
0
0.5
Reverse Leakage Current, I
RR
(uA)
I I
m
A)
( (
m
A)
80
60
I
R
(
R
A)
R
m
T
J
= 175 °C
T
J
= 125 °C
F
F FF F
40
T
J
= 75 °C
T
J
= 25 °C
T
J
= -55 °C
20
1.0
Foward Voltage, V
F
(V)
V
F
(V)
V V(V)
(V)
V (V)
FF F
1.5
2.0
2.5
0
0
100
200
V
Voltage,
Reverse
RR
(V)
V
R
(V)
V
R
(V)
V (V)
300
400
500
600
700
800
Figure 1. Forward Characteristics
Figure 2. Reverse Characteristics
2
C6D06065A, Rev. -, 04-2019
Typical Performance
80
70
60
I
F(peak)
(A)
II
F(peak)
(A)
I
F(peak)
(A)
I
F
(A)
F(peak)
(A)
10% Duty
10% Duty
20% Duty
20% Duty
30% Duty
30% Duty
50% Duty
50% Duty
70% Duty
70% Duty
DC
DC
80
14
70
70
12
60
60
10
50
P
Tot
(W)
P
Tot
(W)
Tot
(W)
P
Tot
(W)
P
P
Tot
(W)
TOT
TOT
50
40
30
20
10
50
8
40
40
6
30
30
4
20
20
2
10
10
0
25
50
75
T
C
˚C
T
C
C
˚C
T
CC
(°C)
T ˚C
100
125
150
150
175
175
0
25
50
50
75
75
T
C
˚C
T
CC
(°C)
T
C
˚C
T
C
˚C
T ˚C
100
100
125
125
150
150
175
175
Figure 3. Current Derating
Figure 4. Power Derating
12
35
30
10
Capacitive
Q (nC)
Q
C
(nC)
Charge,
QQ (nC)
Q (nC)
(nC)
C (pF)
Conditions:
T
J
= 25 °C
180
450
160
400
140
350
Capacitance
(pF)
C(pF)
(pF)
CC (pF)
Conditions:
T
J
= 25 °C
F
test
= 1 MHz
V
test
= 25 mV
25
8
20
6
15
120
300
100
250
80
200
150
60
100
40
50
20
CC
C
C
C
4
10
2
5
0
0
100
200
V
R
(V)
(V)
Reverse
V
R
(V)
V
R
(V)
V
Voltage,
R
R
R
300
400
500
500
600
600
700
700
0
0
1
(V)
V
R
Voltage,
Reverse
V
R
(V)
V
R
(V)
R
10
100
1000
Figure 5. Total Capacitance Charge vs. Reverse Voltage
Figure 6. Capacitance vs. Reverse Voltage
3
C6D06065A, Rev. -, 04-2019
Typical Performance
12
9
8
10
7
6
8
E
C
(
m
J)
1,000
12
10
Capacitance Stored Energy, E
C
(mJ)
I
(A)
Capacitance Stored
(
m
J)
Capacitance
E
Energy, E
C
(mJ)
8
6
100
4
2
0
10
0
10E-6
100
T
J_initial
= 25 °C
T
J_initial
= 110 °C
4
6
3
4
2
1
2
0
0
FSM
I
FSM
(A)
5
C
0
0
100
100
200
200
Reverse Voltage, V (V)
Reverse Voltage, V
R
R
(V)
V
R
(V)
300
300
400
400
500
500
600
600
700
200
100E-6
300
t
p
t
p
(s)
Reverse Voltage, V
R
(V)
Time,
(s)
400
1E-3
500
600
10E-3
700
Figure 7. Capacitance Stored Energy
Figure 8. Non-repetitive peak forward surge current
versus pulse duration (sinusoidal waveform)
Junction To Case Impedance, Z
thJC
(
(
o
o
C/W)
Z
thJC
Thermal Resistance (˚C/W)
Thermal Resistance (˚C/W)
C/W)
Thermal Resistance (˚C/W)
Thermal Resistance (˚C/W)
1
10
1
0.5
0.5
0.3
0.3
0.5
0.1
0.3
0.1
0.05
0.05
0.02
0.1
0.02
0.01
0.05
0.01
SinglePulse
SinglePulse
0.02
0.01
SinglePulse
100E-3
1
10E-3
10E-3
100E-3
1E-3
1E-3
10E-3
1E-6
1E-6
1E-6
10E-6
10E-6 100E-6
100E-6
1E-3
Time,
(Sec)
t
p
(s)
T(Sec)
T T(Sec)
T (Sec)
p
1E-3
10E-3 100E-3
10E-3
1
100E-3
10
100
1
Figure 9. Transient Thermal Impedance
4
C6D06065A, Rev. -, 04-2019
Package Dimensions
Package TO-220-2
POS
A
B
C
D
D1
D2
D3
E
E1
E2
F
G
H
L
M
N
P
Q
S
T
U
V
W
Min
.381
.235
.100
.223
.457-.490
.277-.303 typ
.244-.252 typ
.590
.302
.227
.143
1.105
.500
.025
.045
.195
.165
.048
3°
3°
3°
.094
.014
3°
.385
.130
.615
.326
251
.153
1.147
.550
.036
.055
.205
.185
.054
6°
6°
6°
.110
.025
5.5°
.410
.150
Inches
Max
.410
.255
.120
.337
Millimeters
Min
9.677
5.969
2.540
5.664
Max
10.414
6.477
3.048
8.560
11.60-12.45 typ
7.04-7.70 typ
6.22-6.4 typ
14.986
7.68
5.77
3.632
28.067
12.700
.635
1.143
4.953
4.191
1.219
3°
3°
3°
2.388
.356
3°
9.779
3.302
15.621
8.28
6.37
3.886
29.134
13.970
.914
1.550
5.207
4.699
1.372
6°
6°
6°
2.794
.635
5.5°
10.414
3.810
PIN 1
PIN 2
CASE
X
Y
z
NOTE:
1. Dimension L, M, W apply for Solder Dip Finish
Recommended Solder Pad Layout
TO-220-2
Part Number
C6D06065A
Package
TO-220-2
Marking
C6D06065
Note: Recommended soldering profiles can be found in the applications note here:
http://www.wolfspeed.com/power_app_notes/soldering
5
C6D06065A, Rev. -, 04-2019