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ESM4045DV 数据表(PDF) 2 Page - STMicroelectronics |
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ESM4045DV 数据表(HTML) 2 Page - STMicroelectronics |
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2 / 8 page ![]() THERMAL DATA Rthj-case Rthj-case Rthc-h Thermal Resistance Junction-case (transistor) Max Thermal Resistance Junction-case (diode) Max Thermal Resistance Case-heatsink With Conductive Grease Applied Max 0.83 1.5 0.05 oC/W oC/W oC/W ELECTRICAL CHARACTERISTICS (Tcase = 25 oC unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit ICER # Collector Cut-off Current (RBE = 5 Ω) VCE = VCEV VCE = VCEV Tj = 100 oC 1.5 20 mA mA ICEV # Collector Cut-off Current (VBE = -5) VCE = VCEV VCE = VCEV Tj = 100 oC 1 13 mA mA IEBO # Emitter Cut-off Current (IC = 0) VEB = 5 V 1 mA VCEO(SUS)* Collector-Emitter Sustaining Voltage (IB = 0) IC = 0.2 A L = 25 mH Vclamp = 450 V 450 V hFE ∗ DC Current Gain IC = 35 A VCE = 5 V 220 VCE(sat) ∗ Collector-Emitter Saturation Voltage IC = 25 A IB = 0.5 A IC = 25 A IB = 0.5 A Tj = 100 o C IC = 35 A IB = 2 A IC = 35 A IB = 2 A Tj = 100 o C 1.15 1.3 1.4 1.5 2 2 V V V V VBE(sat) ∗ Base-Emitter Saturation Voltage IC = 35 A IB = 2 A IC = 35 A IB = 2 A Tj = 100 oC 2.3 2.3 3 V V diC/dt Rate of Rise of On-state Collector VCC = 300 V RC = 0 tp = 3 µs IB1 = 0.75 A Tj = 100 oC 200 250 A/ µs VCE(3 µs) Collector-Emitter Dynamic Voltage VCC = 300 V RC = 12 Ω IB1 = 0.75 A Tj = 100 oC 4.5 8 V VCE(5 µs) Collector-Emitter Dynamic Voltage VCC = 300 V RC = 12 Ω IB1 = 0.75 A Tj = 100 oC 2.5 4.5 V ts tf tc Storage Time Fall Time Cross-over Time IC = 25A VCC = 50 V VBB = -5 V RBB = 0.6 Ω Vclamp = 450 V IB1 = 0.5 A L = 0.1 mH Tj = 100 oC 3.2 0.25 0.75 5 0.5 1.5 µs µs µs VCEW Maximum Collector Emitter Voltage Without Snubber ICWoff = 42 A IB1 = 2 A VBB = -5 V VCC = 50 V L = 0.06 mH RBB = 0.6 Ω Tj = 125 oC 450 V VF ∗ Diode Forward Voltage IF = 35 A Tj = 100 oC 1.5 1.85 V IRM Reverse Recovery Current VCC = 200 V IF = 35 A diF/dt = -200 A/ µs L < 0.05 µH Tj = 100 oC 20 24 A ∗ Pulsed: Pulse duration = 300 µs, duty cycle 1.5 % To evaluate the conduction losses of the diode use the following equations: VF = 1.5 + 0.001 IF P = 1.5 IF(AV) + 0.001 I 2 F(RMS) # See test circuits in databook introduction ESM4045DV 2/8 |
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