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APT5020BN Datasheet(PDF) 2 Page - Advanced Power Technology |
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APT5020BN Datasheet(HTML) 2 Page - Advanced Power Technology |
2 / 4 page 10-5 10-4 10-3 10-2 10-1 1.0 10 RECTANGULAR PULSE DURATION (SECONDS) FIGURE 1, MAXIMUM EFFECTIVE TRANSIENT THERMAL IMPEDANCE, JUNCTION-TO-CASE vs PULSE DURATION MIN TYP MAX 360 360 APT5020BN 112 APT5022BN 108 MIN TYP MAX APT5020BN 28 APT5022BN 27 APT5020BN 112 APT5022BN 108 1.3 215 430 860 37 14 DYNAMIC CHARACTERISTICS Symbol C iss C oss C rss Q g Q gs Q gd t d (on) t r t d (off) t f Test Conditions V GS = 0V V DS = 25V f = 1 MHz V GS = 10V V DD = 0.5 V DSS I D = I D [Cont.] @ 25 °C V GS = 15V V DD = 0.5 V DSS I D = I D [Cont.] @ 25 °C R G = 1.8 Ω MIN TYP MAX 2890 3500 590 830 230 350 140 210 18 27 75 110 19 38 43 86 85 125 56 112 UNIT pF nC ns APT5020/5022BN Characteristic Input Capacitance Output Capacitance Reverse Transfer Capacitance Total Gate Charge 3 Gate-Source Charge Gate-Drain ("Miller ") Charge Turn-on Delay Time Rise Time Turn-off Delay Time Fall Time Characteristic / Test Conditions / Part Number Continuous Source Current (Body Diode) Pulsed Source Current 1 (Body Diode) Diode Forward Voltage 2 (V GS = 0V, I S = -I D [Cont.]) Reverse Recovery Time (I S = -I D [Cont.], dl S /dt = 100A/ µs) Reverse Recovery Charge (I S = -I D [Cont.], dl S /dt = 100A/ µs) SOURCE-DRAIN DIODE RATINGS AND CHARACTERISTICS Symbol I S I SM V SD t rr Q rr UNIT Amps Volts ns µC Test Conditions / Part Number V DS = 0.4 V DSS , I DS = P D / 0.4 V DSS , t = 1 Sec. I DS = I D [Cont.], V DS = P D / I D [Cont.], t = 1 Sec. Symbol SOA1 SOA2 I LM Characteristic Safe Operating Area Safe Operating Area Inductive Current Clamped UNIT Watts Amps SAFE OPERATING AREA CHARACTERISTICS 1 Repetitive Rating: Pulse width limited by maximum junction temperature. See Transient Thermal Impedance Curve. (Fig.1) 2 Pulse Test: Pulse width < 380 µS, Duty Cycle < 2% 3 See MIL-STD-750 Method 3471 APT Reserves the right to change, without notice, the specifications and information contained herein. 0.5 0.1 0.05 0.01 0.005 0.001 Note: Duty Factor D = t1/t 2 Peak TJ = PDM x ZθJC + TC t1 t2 D=0.5 0.2 0.1 0.05 0.02 0.01 SINGLE PULSE |
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