APT30D20BCT
APT30D20BCT is ULTRAFAST SOFT RECOVERY RECTIFIER DIODES manufactured by Advanced Power Technology.
FEATURES
- Ultrafast Recovery Times
- Soft Recovery Characteristics
- Popular TO-247 Package
- Low Forward Voltage
PRODUCT BENEFITS
- Low Losses
- Low Noise Switching
- Cooler Operation
- Higher Reliability Systems
- Increased System Power Density
- High Blocking Voltage
- Low Leakage Current
All Ratings Are Per Leg: TC = 25°C unless otherwise specified.
UNIT
Maximum Peak Repetitive Reverse Voltage Maximum Working Peak Reverse Voltage
Volts
Maximum Average Forward Current (TC = 85°C, Duty Cycle = 0.5) RMS Forward Current
30 70 320 -55 to 150 300
°C Amps
Non-Repetitive Forward Surge Current (TJ = 45°C, 8.3ms) Operating and Storage Temperature Range Lead Temperature: 0.063" from Case for 10 Sec.
STATIC ELECTRICAL CHARACTERISTICS
Symbol Characteristic / Test Conditions IF = 30A VF Maximum Forward Voltage IF = 60A IF = 30A, T J = 150°C IRM CT LS Maximum Reverse Leakage Current VR = VR Rated VR = VR Rated, TJ = 125°C Junction Capacitance, V R = 150V Series Inductance (Lead to Lead 5mm from Base) MIN TYP MAX UNIT
1.15 1.05 1.0 250 500 110 10
µA p F n H
053-2006 Rev
- Volts
405 S.W. Columbia Street Bend, Oregon 97702-1035 F-33700 Merignac
- France Phone: (541) 382-8028 Phone: (33) 5 57 92 15 15 FAX: (541) 388-0364 FAX: (33) 5 56 47 9 61
EUROPE
Avenue J.F. Kennedy Bât B4 Parc Cadéra Nord
DYNAMIC CHARACTERISTICS
Symbol trr1 trr2 trr3 tfr1 tfr2 IRRM1 IRRM2 Qrr1 Qrr2 V fr1 V fr2 di M/dt Characteristic Reverse Recovery Time, IF = 1.0A, di F /dt = -15A/µs, VR = 30V, T J = 25°C Reverse Recovery Time IF = 30A, di F /dt = -240A/ µs, VR = 100V Forward Recovery Time IF = 30A, di F /dt = 240A/ µs, V R = 100V Reverse Recovery Current IF = 30A, di F /dt = -240A/ µs, VR = 100V Recovery Charge IF = 30A, di F /dt = -240A/ µs, VR = 100V Forward Recovery Voltage IF = 30A, di F /dt = 240A/ µs, V R = 100V Rate of Fall of Recovery Current IF = 30A, di F /dt = -240A/ µs, V R = 100V (See Figure 10) TJ = 25°C TJ = 100°C TJ = 25°C TJ = 100°C TJ =...