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APT8DQ60KCT

APT8DQ60KCT

  • 厂商:

    ADPOW

  • 封装:

  • 描述:

    APT8DQ60KCT - ULTRAFAST SOFT RECOVERY RECTIFIER DIODE - Advanced Power Technology

  • 数据手册
  • 价格&库存
APT8DQ60KCT 数据手册
® 600V 8A APT8DQ60KCT APT8DQ60KCTG* *G Denotes RoHS Compliant, Pb Free Terminal Finish. ULTRAFAST SOFT RECOVERY RECTIFIER DIODE PRODUCT APPLICATIONS • Anti-Parallel Diode -Switchmode Power Supply -Inverters • Free Wheeling Diode -Motor Controllers -Converters -Inverters • Snubber Diode • PFC (KCT) TO PRODUCT FEATURES • Ultrafast Recovery Times • Soft Recovery Characteristics • Popular TO-220 Package • Low Forward Voltage • Low Leakage Current • Avalanche Energy Rated PRODUCT BENEFITS • Low Losses • Low Noise Switching • Cooler Operation • Higher Reliability Systems • Increased System Power Density 1 2 3 -22 0 1 2 3 1 - Anode 1 2 - Common Cathode Back of Case - Cathode 3 - Anode 2 MAXIMUM RATINGS Symbol VR VRRM VRWM IF(AV) IF(RMS) IFSM EAVL TJ,TSTG TL Characteristic / Test Conditions Maximum D.C. Reverse Voltage Maximum Peak Repetitive Reverse Voltage Maximum Working Peak Reverse Voltage All Ratings Per Leg: TC = 25°C unless otherwise specified. APT8DQ60KCT(G) UNIT 600 Volts Maximum Average Forward Current (TC = 128°C, Duty Cycle = 0.5) RMS Forward Current (Square wave, 50% duty) Non-Repetitive Forward Surge Current (TJ = 45°C, 8.3ms) Avalanche Energy (1A, 40mH) Operating and StorageTemperature Range Lead Temperature for 10 Sec. 8 16 110 20 -55 to 175 300 mJ °C Amps STATIC ELECTRICAL CHARACTERISTICS Symbol Characteristic / Test Conditions IF = 8A VF Forward Voltage IF = 16A IF = 8A, TJ = 125°C IRM CT Maximum Reverse Leakage Current Junction Capacitance, VR = 200V APT Website - http://www.advancedpower.com MIN TYP MAX UNIT 2.0 2.5 1.5 2.4 Volts VR = 600V VR = 600V, TJ = 125°C 25 500 16 053-4210 Rev D pF 9-2005 µA DYNAMIC CHARACTERISTICS Symbol trr trr Qrr IRRM trr Qrr IRRM trr Qrr IRRM Characteristic Reverse Recovery Time Reverse Recovery Time Reverse Recovery Charge Maximum Reverse Recovery Current Reverse Recovery Time Reverse Recovery Charge Maximum Reverse Recovery Current Reverse Recovery Time Reverse Recovery Charge Maximum Reverse Recovery Current IF = 8A, diF/dt = -1000A/µs VR = 400V, TC = 125°C IF = 8A, diF/dt = -200A/µs VR = 400V, TC = 125°C IF = 8A, diF/dt = -200A/µs VR = 400V, TC = 25°C Test Conditions IF = 1A, diF/dt = -100A/µs, VR = 30V, TJ = 25°C MIN TYP APT8DQ60KCT(G) MAX UNIT ns nC 14 19 17 2 90 160 3 43 250 11 - - Amps ns nC Amps ns nC Amps THERMAL AND MECHANICAL CHARACTERISTICS Symbol RθJC WT Characteristic / Test Conditions Junction-to-Case Thermal Resistance Package Weight MIN TYP MAX UNIT °C/W oz g 2.7 0.07 1.9 10 1.1 lb•in N•m Torque Maximum Mounting Torque APT Reserves the right to change, without notice, the specifications and information contained herein. 3.0 Z JC, THERMAL IMPEDANCE (°C/W) θ 2.5 2.0 1.5 1.0 0.5 0 10-5 D = 0.9 0.7 0.5 0.3 0.1 0.05 10-4 SINGLE PULSE Note: PDM t1 t2 Duty Factor D = 1/t2 Peak TJ = PDM x ZθJC + TC t 10-3 10-2 10-1 1.0 RECTANGULAR PULSE DURATION (seconds) FIGURE 1a. MAXIMUM EFFECTIVE TRANSIENT THERMAL IMPEDANCE, JUNCTION-TO-CASE vs. PULSE DURATION RC MODEL Junction temp. (°C) 1.93 Power (watts) 0.773 Case temperature. (°C) 0.0246 0.00078 053-4210 Rev D 9-2005 FIGURE 1b, TRANSIENT THERMAL IMPEDANCE MODEL TYPICAL PERFORMANCE CURVES 30 25 trr, REVERSE RECOVERY TIME (ns) 120 100 80 60 40 20 0 APT8DQ60KCT(G) T = 125°C J V = 400V R 16A IF, FORWARD CURRENT (A) TJ = 175°C 20 15 8A 4A TJ = 125°C 10 5 0 TJ = 25°C TJ = -55°C 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 VF, ANODE-TO-CATHODE VOLTAGE (V) Figure 2. Forward Current vs. Forward Voltage 400 Qrr, REVERSE RECOVERY CHARGE (nC) 350 300 250 200 150 100 50 0 T = 125°C J V = 400V R 0 200 400 600 800 1000 1200 -diF /dt, CURRENT RATE OF CHANGE(A/µs) Figure 3. Reverse Recovery Time vs. Current Rate of Change IRRM, REVERSE RECOVERY CURRENT (A) 14 12 10 8 6 4 T = 125°C J V = 400V R 16A 16A 8A 4A 8A 4A 2 0 0 200 400 600 800 1000 1200 -diF /dt, CURRENT RATE OF CHANGE (A/µs) Figure 4. Reverse Recovery Charge vs. Current Rate of Change 1.2 Kf, DYNAMIC PARAMETERS (Normalized to X000A/µs) 1.0 0.8 0.6 0.4 Qrr 0.2 0.0 IRRM Qrr 0 200 400 600 800 1000 1200 -diF /dt, CURRENT RATE OF CHANGE (A/µs) Figure 5. Reverse Recovery Current vs. Current Rate of Change 20 18 16 14 IF(AV) (A) 12 10 8 6 4 2 Duty cycle = 0.5 T = 175°C J trr trr 25 50 75 100 125 150 TJ, JUNCTION TEMPERATURE (°C) Figure 6. Dynamic Parameters vs. Junction Temperature 60 CJ, JUNCTION CAPACITANCE (pF) 50 40 30 20 10 0 0 75 100 125 150 175 Case Temperature (°C) Figure 7. Maximum Average Forward Current vs. CaseTemperature 0 25 50 10 100 200 VR, REVERSE VOLTAGE (V) Figure 8. Junction Capacitance vs. Reverse Voltage 1 053-4211 Rev D 9-2005 APT8DQ60KCT(G) Vr +18V 0V D.U.T. 30µH trr/Qrr Waveform diF /dt Adjust APT6038BLL PEARSON 2878 CURRENT TRANSFORMER Figure 9. Diode Test Circuit 1 2 3 4 IF - Forward Conduction Current diF /dt - Rate of Diode Current Change Through Zero Crossing. IRRM - Maximum Reverse Recovery Current. Zero 1 4 5 3 2 trr - Reverse Recovery Time, measured from zero crossing where diode current goes from positive to negative, to the point at which the straight line through IRRM and 0.25 IRRM passes through zero. Qrr - Area Under the Curve Defined by IRRM and trr. 0.25 IRRM 5 Figure 10, Diode Reverse Recovery Waveform and Definitions TO-220 (KCT) Package Outline e3 100% Sn 1.39 (.055) 0.51 (.020) Cathode 10.66 (.420) 9.66 (.380) 5.33 (.210) 4.83 (.190) 6.85 (.270) 5.85 (.230) 16.51 (.650) 14.23 (.560) 3.42 (.135) 2.54 (.100) 4.08 (.161) Dia. 3.54 (.139) 6.35 (.250) MAX. 14.73 (.580) 12.70 (.500) 0.50 (.020) 0.41 (.016) 2.92 (.115) 2.04 (.080) 4.82 (.190) 3.56 (.140) Anode Cathode Anode 1.77 (.070) 3-Plcs. 1.15 (.045) 9-2005 1.01 (.040) 3-Plcs. 0.38 (.015) 2.79 (.110) 2.29 (.090) 5.33 (.210) 4.83 (.190) 053-4211 Rev D Dimensions in Millimeters and (Inches) APT’s products are covered by one or more of U.S.patents 4,895,810 5,045,903 5,089,434 5,182,234 5,019,522 5,262,336 6,503,786 5,256,583 4,748,103 5,283,202 5,231,474 5,434,095 5,528,058 and foreign patents. US and Foreign patents pending. All Rights Reserved.
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