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IR3313PBF Datasheet(PDF) 3 Page - International Rectifier |
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IR3313PBF Datasheet(HTML) 3 Page - International Rectifier |
3 / 10 page IR3313PbF Protection Characteristics Tj=25°C, Rifb=500 to 3.5k Ω Symbol Parameter Min. Typ. Max. Units Test Conditions Vifb-Vin@Isd Over-current shutdown threshold 4 4.7 5.6 V Tsd Over temperature threshold ⎯ 165 ⎯ °C See fig. 5 OV Over voltage protection (not latched) 33 35 39 V Isdf Fixed over current shutdown 90 120 140 Vifb<Vifb-Vin@Isd Isd_1k Programmable over current shutdown 1k 30 40 50 A Rifb=1k Ω Treset Time to reset protection ⎯ 50 500 See fig. 5 Min. pulse Min. pulse width (no WAIT state) 200 400 1200 µs WAIT WAIT function timer 0.4 1 2 ms See fig. 4 and 5 Rds(on) rev. Reverse battery On state resistance 4 6.7 10 m Ω Vcc-Vin=-14V, Iout=30A Static Electrical Characteristics Tj=25°C, Vcc=14V (unless otherwise specified) Symbol Parameter Min. Typ. Max. Units Test Conditions Vcc op. Operating Voltage range 6 ⎯ 32 V Icc off Supply leakage current ⎯ 1.5 32 µA Vin=Vcc, Vcc-Vout=14V, Vcc-Vifb=14V Iin, on On state IN positive current 1.5 3 6 mA Vcc-Vin=14V Vih High level Input threshold voltage (4) ⎯ 5.4 6.2 Vil Low level Input threshold voltage (4) 4 4.9 5.8 Vhyst Input hysteresis Vih-Vil 0.2 0.4 1 V Iout Drain to source leakage current ⎯ 1.2 32 µA Vin=Vcc, Vcc-Vifb=0V, Vcc-Vout=14V On state resistance (5) Tj=25°C 4 5.5 7 Iout=30A, Vcc-Vin=14V On state resistance (5) Tj=25°C 4 6 10 Iout=17A, Vcc-Vin=6V Rds(on) On state resistance (5) Tj=150°C 7 10.5 13.5 m Ω Iout=30A, Vcc-Vin=14V V clamp1 Vcc to Vout clamp voltage 1 36 39 ⎯ Iout=50mA V clamp2 Vcc to Vout clamp voltage 2 ⎯ 40 43 V Iout=30A (4) Input thresholds are measured directly between the input pin and the tab. Any parasitic resistance in common between the load current path and the input signal path can significantly affect the thresholds. (5) Rdson is measured between the tab and the Out pin, 5mm away from the package. Switching Electrical Characteristics Vcc=14V, Resistive load=0.5 Ω, Tj=25°C Symbol Parameter Min. Typ. Max. Units Test Conditions Tdon Turn on delay time to 10% Vcc 8 32 80 Tr1 Rise time to Vcc-Vout=5V 3 16 40 Tr2 Rise time to Vcc-Vout=0.1Vcc 10 40 100 µs Eon Turn on energy ⎯ 4.5 ⎯ mJ Tdoff Turn off delay time 20 80 200 Tf Fall time to Vout=10% of Vcc 8 32 80 µs Eoff Turn off energy ⎯ 2 ⎯ mJ See figure 2 www.irf.com 3 |
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