Datasheet CSD06060G, CSD06060B, CSD06060A Datasheet (CREE)

Page 1
CSD06060
TM
ZERO RECOVERY
RECTIFIER
Features Benefits _________
Zero Reverse Recovery Essentially No Switching Losses
Zero Forward Recovery Higher Efficiency
High Frequency Operation Reduction Of Rectifier Heat Sink
Temperature Independent Switching Behavior Parallel Devices without Thermal Runaway
Extremely Fast Switching
Positive Temperature Coefficient on V
F
Applications Package ______________
Switch Mode Power Supplies
Power Factor Correction
Motor Control
Maximum Ratings
Parameter Symbol Value Unit
Repetitive Peak Reverse Voltage V Surge Peak Reverse Voltage V
DC Blocking Voltage V Average Forward Current
TC=150°C
Repetitive Peak Forward Surge Current
TC=25°C, tP=10ms, Half Sine Wave
Non-Repetitive Peak Forward Surge Current
TC=25°C, tP=10µs, Half Sine Pulse
Power Dissipation
TC = 25°C
I
RRM
RSM
DC
F(AV)
I
FRM
I
FSM
P
tot
600 V 600 V
600 V
6 A
30 A
210 A
83.3 W
Operating Junction and Storage Temperature TJ , T
Page 1 • CSD06060, Rev C
stg
-55 to +175 °C
Page 2
CSD06060
Forward Current (A)
ELECTRICAL CHARACTERISTICS
Parameter
Forward Voltage IF = 6A TJ=25°C IF = 6A TJ=175°C Reverse Current VR = 600V TJ=25°C VR = 600V TJ=175°C
Symbol Min Typ Max Units
V
F
2.0 50
I
1.6
R
100
1.8
2.4
200
1000
V
µA
Total Capacitive Charge VR = 600V,IF = 6A, di/dt = 500 A/µs, TJ = 25°C
Q
C
17 nC
Total Capacitance VR = 0V, TJ = 25°C, f =1MHz VR = 200V, TJ = 25°C, f =1MHz VR = 400V, TJ = 25°C, f =1MHz
C
340
40 30
pF
NOTE:
1. This is a majority carrier diode, so there is no reverse recovery charge.
THERMAL CHARACTERISTICS
Characteristic Symbol Min Typ Max Units
Thermal Resistance from Junction to Case R
θJC
1.8 °C/W
Typical Performance
Figure 1. Forward Characteristics Figure 2. Reverse Characteristics
12
11
10
9
8
7
6
5
F
I
4
3
2
1
0
0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5
TJ = 25°C TJ = 75°C TJ = 125°C TJ = 175°C
VF Forward Voltage (V)
200
180
160
140
A)
µ
120
100
80
Reverse Current (
R
I
60
40
20
0
0 100 200 300 400 500 600 700
VR Reverse Voltage (V)
TJ = 25°C TJ = 75°C TJ = 125°C TJ = 175°C
Page 2 • CSD06060, Rev C
Page 3
CSD06060
Figure 3. Current Derating Figure 4. Capacitance vs. Reverse Voltage
20
18
16
14
12
10
8
Forward Current (A)
F(AV)
I
6
4
2
250
200
150
100
C Capacitance (pF)
50
0
25 50 75 100 125 150 175 200
TC Case Temperature (°C)
Figure 5. Transient Thermal Impedance
1.00E+01
1.00E+00
1.00E-01
Zth [°C/W]
1.00E-02
1.00E-03
1.00E-07 1.00E-06 1.00E-05 1.00E-04 1.00E-03 1.00E-02 1.00E-01 1.00E+00
0
1 10 100 1000
VR Reverse Voltage (V)
Page 3 • CSD06060, Rev C
time [s]
Page 4
CSD06060
¡¡¡
W
P
B
A
C
F
M
NOTE:
K
Min
Max
Min
MaxA.160
.190
4.06
4.83B.025
.040
0.63
1.02C.015
.022
0.38
0.56
D
.560
.590
14.22
14.99
E
.385
.415
9.78
10.54F.090
.110
2.29
2.79
G
.190
.210
4.83
5.33
H
.045
.055
1.14
1.40J.045
.055
1.14
1.40K.234
.258
5.94
6.55L.090
.115
2.29
2.92
M
.146
.156
3.71
3.96
N
.103
.113
2.62
2.87P.540
.560
13.72
14.22
Q3°7°3°7°
R
.045
.060
1.14
1.52
S
Inches
Millimeters
.243 REF
6.17 REF
NOTE:
PIN 2
PIN 3
CASE
PIN
1 NC
Package Dimensions
Package TO-220-2
D
S
E
T
G
H
J
L
N
PIN 1
PIN 2
CASE
Inches Millimeters
Q
R
U
V
X (2X)
Y
POS
Min Max Min Max A .402 .408 10.211 10.364 B .120 .124 3.048 3.150 C .106 .110 2.692 2.794 D .245 .251 6.223 6.375 E .335 .345 8.509 8.763
F .149 .153 3.784 3.886 G .220 .240 5.588 6.096 H .540 .550 13.716 13.970
J
.100 REF 2.540 REF
K .080 2.032
L .050 .056 1.270 1.422 M .032 .038 .813 .956 N .197 .203 5.004 5.156 P .170 .180 4.318 4.572 Q .048 .052 1.219 1.321 R .583 .593 14.808 15.062 S 6.5° 8.5° 6.5° 8.5°
T 6.5° 8.5° 6.5° 8.5° U 6.5° 8.5° 6.5° 8.5° V .103 .107 2.616 2.718
W .015 .021 .381 .533
X 2.0° 4.0° 2.0° 4.0° Y .396 .406 10.058 10.312
1. Dimension L, M, W apply for Solder Dip Finish.
Package TO-220-3
N
K
P
E
R
H
F
S
B
G
¡
¡
¡
M
Q(5X)
D
C
L
A
J
POS
1. Dimension C apply for Solder Plate Finish.
¡
Page 4 • CSD06060, Rev C
Page 5
CSD06060
B
EFGHJLMNPQRSTUV
W
K
¡¡¡
Package Dimensions (Cont.)
Package TO-263-2
A
C
D
PIN 1
CASE
PIN 2
Part Number Package Marking
CSD06060A TO-220-2 CSD06060 CSD06060B TO-220-3 CSD06060
CSD06060G TO-263-2 CSD06060
POS
A .396 .406 10.058 10.312 B .297 .303 7.544 7.696 C .057 .063 1.448 1.600 D .237 .243 6.015 6.167 E .050 .070 1.270 1.778 F .048 .052 1.219 1.321 G H .335 .345 8.509 8.763
J .028 .032 .711 .813 K 2.0° 4.0° 2.0° 4.0° L .170 .180 4.318 4.572
M .048 .052 1.219 1.321
N .595 .615 15.113 15.621 P 0.00 .010 0.00 .254 Q R0.018TYP R0.022TYP R0.457TYP R0.559TYP R .090 .110 2.286 2.794 S .013 .017 .330 .432 T 6.5° 8.5° 6.5° 8.5° U .103 .107 2.616 2.718 V R0.028TYP R0.032TYP R0.711TYP R0.813TYP
W -- 5.0° -- 5.0°
Inches Millimeters
Min Max Min Max
.100TYP 2.540TYP
This product has not been designed or tested for use in, and is not intended for use in, applications implanted into the human body nor in applications in which failure of the product could lead to death,
Copyright © 2001 Cree, Inc. All rights reserved. Permission is given to reproduce this document provided the entire document (including this copyright notice) is duplicated.
personal injury or property damage, including but not limited to equipment used in the operation of nuclear facilities, life-support machines, cardiac
The information in this document is subject to change without notice.
defibrillators or similar emergency medical equipment, aircraft navigation or communication or control systems, air traffic control systems, or
Cree and the Cree logo are trademarks of Cree, Inc.
weapons systems.
Cree, Inc.
Power Products
4600 Silicon Drive Durham, NC 27703 USA
Tel: 919-313-5300 Fax: 919-313-5451
www.cree.com
Page 5 • CSD06060, Rev C
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