C2D10120D V = 1200 V RRM Silicon Carbide Schottky Diode ** I (T =135C) = 18 A F C Zero r yecover RectifieR ** Q = 56 nC c Features Package 1.2kV Schottky Rectifier Zero Reverse Recovery Current Zero Forward Recovery Voltage High-Frequency Operation Temperature-Independent Switching Behavior Extremely Fast Switching Positive Temperature Coefficient on V F TO-247-3 Benefits Replace Bipolar with Unipolar Rectifiers Essentially No Switching Losses Higher Efficiency Reduction of Heat Sink Requirements Parallel Devices Without Thermal Runaway Applications Part Number Package Marking Switch Mode Power Supplies Power Factor Correction C2D10120D TO-247-3 C2D10120 Motor Drives Maximum Ratings (T =25C unless otherwise specified) C Symbol Parameter Value Unit Test Conditions Note V Repetitive Peak Reverse Voltage 1200 V RRM V Surge Peak Reverse Voltage 1200 V RSM V DC Blocking Voltage 1200 V DC 18/36 T =25C C I Continuous Forward Current (Per Leg/Device) 9/18 A T =135C F C 5/10 T =157C C * I Repetitive Peak Forward Surge Current 30 A T =25C, t =10 ms, Half Sine Wave FRM C P * I Non-Repetitive Peak Forward Surge Current 100 A T =25C, t =10 s, Pulse FSM C P 138/276 T =25C C P Power Dissipation (Per Leg/Device) W tot 60/120 T =110C C -55 to T , T Operating Junction and Storage Temperature C J stg +175 Nm 1 M3 Screw TO-247 Mounting Torque lbf- 8.8 6-32 Screw in * ** Per Leg, Per Device 1 C2D10120D Rev. HV Forward Voltage (V) V Reverse Voltage (V) F R Electrical Characteristics (Per Leg) Symbol Parameter Typ. Max. Unit Test Conditions Note 1.6 1.8 I = 5 A T =25C F J V Forward Voltage V F 2.6 3.0 I = 5 A T =175C F J 50 200 V = 1200 V T =25C R J I Reverse Current A R 100 1000 V = 1200 V T =175C R J V = 1200 V, I = 5 A R F Q Total Capacitive Charge 28 nC di /dt = 500 A/s C T = 25C J 455 V = 0 V, T = 25C, f = 1 MHz R J C Total Capacitance 45 pF V = 200 V, T = 25C, f = 1 MHz R J 33 V = 400 V, T = 25C, f = 1 MHz R J Note: 1. This is a majority carrier diode, so there is no reverse recovery charge. Thermal Characteristics Symbol Parameter Typ. Unit ** 1.08 R Thermal Resistance from Junction to Case C/W * JC 0.54 ** * Per Leg, Both Legs Typical Performance (Per Leg) 200 10 9 180 8 160 7 140 120 6 5 100 80 4 3 60 2 40 1 20 0 0 0 1.0 2.0 3.0 4.0 5.0 0 500 1000 1500 Figure 1. Forward Characteristics Figure 2. Reverse Characteristics 2 C2D10120D Rev. H I Forward Current (A) F I Reverse Current (A) R