1C3D06060G Rev. F
C3D06060G
Silicon Carbide Schottky Diode
Z-Rec® RectifieR
Features
• 600-VoltSchottkyRectier
• ZeroReverseRecoveryCurrent
• ZeroForwardRecoveryVoltage
• High-FrequencyOperation
• Temperature-IndependentSwitchingBehavior
• ExtremelyFastSwitching
• PositiveTemperatureCoefcientonVF
Benets
• ReplaceBipolarwithUnipolarRectiers
• EssentiallyNoSwitchingLosses
• HigherEfciency
• ReductionofHeatSinkRequirements
• ParallelDevicesWithoutThermalRunaway
• AEC-Q101QualiedandPPAPCapable
Applications
• SwitchModePowerSupplies
• PowerFactorCorrection
-TypicalPFCPout:600W-1200W
• MotorDrives
-TypicalPower:2HP-3HP 
Package
TO-263-2 
Maximum Ratings (TC=25˚Cunlessotherwisespecied)
Symbol Parameter Value Unit Test Conditions Note
VRRM RepetitivePeakReverseVoltage 600 V
VRSM SurgePeakReverseVoltage 600 V
VDC DCBlockingVoltage 600 V
IFContinuousForwardCurrent
20
9.5
6
A
TC=25˚C
TC=135˚C
TC=155˚C
IFRM RepetitivePeakForwardSurgeCurrent 41
27 ATC=25˚C,tP =10ms,HalfSineWave,D=0.3
TC=110˚C,tP=10ms,HalfSineWave,D=0.3
IFSM Non-RepetitivePeakForwardSurgeCurrent 70
55 ATC=25˚C,tp=10mS,HalfSineWave,D=0.3
TC=110˚C,tp=10mS,HalfSineWave,D=0.3
IFSM Non-RepetitivePeakForwardSurgeCurrent 200 A TC=25˚C,tP =10µs,Pulse
Ptot PowerDissipation 91
39 WTC=25˚C
TC=110˚C
TJ,Tstg OperatingJunctionandStorageTemperature -55to
+175 ˚C
PIN1
PIN2 CASE
Part Number Package Marking
C3D06060G TO-263-2 C3D06060
VRRM = 600 V
IF (TC=135˚C) =9.5A
Qc  = 16nC
2C3D06060G Rev. F
Electrical Characteristics
Symbol Parameter Typ. Max. Unit Test Conditions Note
VFForwardVoltage 1.6
1.9
1.8
2.4 VIF = 6 A TJ=25°C
IF = 6 A TJ=175°C
IRReverseCurrent 10
20
50
200 μAVR = 600 V TJ=25°C
VR = 600 V TJ=175°C
QCTotalCapacitiveCharge 16 nC
VR=600V,IF = 6A
di/dt=500A/μs
TJ=25°C
C TotalCapacitance
294
27
26
pF
VR=0V,TJ=25°C,f=1MHz
VR=200V,TJ=25˚C,f=1MHz
VR=400V,TJ=25˚C,f=1MHz
Note:
1. Thisisamajoritycarrierdiode,sothereisnoreverserecoverycharge.
Thermal Characteristics
Symbol Parameter Typ. Unit
RθJC ThermalResistancefromJunctiontoCase 1.65 °C/W
Typical Performance
60
70
80
90
100
Reverse Current (uA)
Reverse Characteristics
0
10
20
30
40
50
0 200 400 600 800 1000 1200
I
R
Reverse Current (uA)
V
R
Reverse Voltage (V)
Figure1.ForwardCharacteristics Figure2.ReverseCharacteristics
100
90
80
70
60
50
40
30
20
10
0
020040060080010001200
VR Reverse Voltage (V)
IR Reverse Current (μA)
12
11
10
9
8
7
6
5
4
3
2
1
0
0.00.51.01.52.02.53.0
VF Forward Voltage (V)
IF Forward Current (A)
8
10
12
Forward Current (A)
Forward Characteristics
0
2
4
6
0 0.5 1 1.5 2 2.5 3
IF
Forward Current (A)
VFForward Voltage (V)
TJ = 25°C
TJ = 75°C
TJ =125°C
TJ = 175°C
TJ = 25°C
TJ = 75°C
TJ =125°C
TJ = 175°C
3C3D06060G Rev. F
Figure3.CurrentDerating Figure4.Capacitancevs.ReverseVoltage
Figure5.TransientThermalImpedance
Typical Performance
1.0E-03
1.0E-02
1.0E-01
1.0E+00
1.0E+01
1.E-07 1.E-06 1.E-05 1.E-04 1.E-03 1.E-02 1.E-01 1.E+00
Time (s)
Zth (°C/W)
350
300
250
200
150
100
50
0
1 101001000
C Capacitance (pF)
V
R
Reverse Voltage (V)
200
250
300
350
C Capacitance (pF)
Capacitance vs. Reverse Voltage
0
50
100
150
200
110 100 1000
C Capacitance (pF)
V
R
Reverse Voltage (V)
Series1
0
5
10
15
20
25
30
35
40
45
50
100
125
150
175
I
F
Peak Forward Current (A)
T
C
Case Temperature (°C)
*Frequency > 1KHz
20% Duty*
30% Duty*
50% Duty*
70% Duty*
DC
4C3D06060G Rev. F
Typical Performance
Figure6.PowerDerating
0
10
20
30
40
50
60
70
80
90
100
25 50 75 100 125 150 175
Power Dissipation (W)
T
C
Case Temperature (°C)
Diode Model
VT
RT
Diode Model CSD06060
Vf
T
= V
T
+ If*R
T
VT= 0.975 + (Tj * -1.0*10-3)
RT= 0.09 + (Tj * 0.51*10-3)
Note: Tj = Diode Junction Temperature In Degrees Celsius
valid from 25°C to 175°C
5C3D06060G Rev. F
Recommended Solder Pad Layout
Part Number Package Marking
C3D06060G TO-263-2 C3D06060
TO-263-2
Note: Recommended soldering proles can be found in the applications note here:
http://www.cree.com/power_app_notes/soldering
POS Inches Millimeters
Min Max Min Max
A0.17 0.18 4.32 4.57
A1 -0.01 -0.25
b 0.028 0.037 0.71 0.94
b2 0.045 0.055 1.15 1.4
c0.018 0.024 0.46 0.61
c2 0.048 0.055 1.22 1.4
D 0.35 0.37 8.89 9.4
D1 0.315 0.324 8.01 8.23
E0.395 0.405 10.04 10.28
E1 0.31 0.318 7.88 8.08
e0.1 BSC. 2.54 BSC.
L 0.58 0.62 14.73 15.75
L1 0.09 0.11 2.29 2.79
L2 0.045 0.055 1.15 1.39
L3 0.05 0.07 1.27 1.77
θ
Package Dimensions
PackageTO-263-2
PIN1
PIN2 CASE
Note:
*Tab“M”maynotbepresent
M
66 C3D06060G Rev. F
Copyright © 2014 Cree, Inc. All rights reserved.
The information in this document is subject to change without notice.
Cree, the Cree logo, and Zero Recovery are registered trademarks of Cree, Inc.
Cree, Inc.
4600 Silicon Drive
Durham, NC 27703
USA Tel: +1.919.313.5300
Fax: +1.919.313.5451
www.cree.com/power
• RoHSCompliance
The levels of RoHS restricted materials in this product are below the maximum concentration values (also referred
to as the threshold limits) permitted for such substances, or are used in an exempted application, in accordance
with EU Directive 2011/65/EC (RoHS2), as implemented January 2, 2013. RoHS Declarations for this product can
be obtained from your Cree representative or from the Product Documentation sections of www.cree.com.
• REAChCompliance
REACh substances of high concern (SVHCs) information is available for this product. Since the European Chemi-
cal Agency (ECHA) has published notice of their intent to frequently revise the SVHC listing for the foreseeable
future,please contact a Cree representative to insure you get the most up-to-date REACh SVHC Declaration.
REACh banned substance information (REACh Article 67) is also available upon request.
• 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, personal injury or property
damage, including but not limited to equipment used in the operation of nuclear facilities, life-support machines,
cardiacdebrillatorsorsimilaremergencymedicalequipment,aircraftnavigationorcommunicationorcontrol
systems,orairtrafccontrolsystems.
Notes