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PM75RLA120 Datasheet(PDF) 4 Page - Mitsubishi Electric Semiconductor |
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PM75RLA120 Datasheet(HTML) 4 Page - Mitsubishi Electric Semiconductor |
4 / 6 page MITSUBISHI <INTELLIGENT POWER MODULES> PM75RLA120 FLAT-BASE TYPE INSULATED PACKAGE Oct. 2003 3.5 3.5 — — — — Main terminal screw : M5 Mounting part screw : M5 — Symbol Parameter Mounting torque Mounting torque Weight Condition Unit N • m N • m g Limits Min. Typ. Max. 2.5 2.5 — 3.0 3.0 380 MECHANICAL RATINGS AND CHARACTERISTICS — — — — — VCE(sat) ICES VFM V mA Min. Typ. Max. V Collector-Emitter Saturation Voltage FWDi Forward Voltage Collector-Emitter Cutoff Current IF = 40A (Fig. 2) Tj = 25 °C Tj = 125 °C Unit Parameter Symbol Condition Limits 2.3 2.4 3.5 1 10 1.8 1.9 2.5 — — Tj = 25 °C Tj = 125 °C BRAKE PART VD = 15V, IC = 40A VCIN = 0V, Pulsed (Fig. 1) VCE = VCES, VCIN = 15V (Fig. 5) VD = 15V, VCIN = 15V Applied between : UP-VUPC, VP-VVPC, WP-VWPC UN • VN • WN • Br-VNC ID °C V mA ms 30 10 1.8 2.3 — — — 155 — 12.5 — 0.01 15 — mA Circuit Current Input ON Threshold Voltage Input OFF Threshold Voltage Short Circuit Trip Level Short Circuit Current Delay Time Over Temperature Protection Supply Circuit Under-Voltage Protection Fault Output Current Minimum Fault Output Pulse Width Vth(ON) Vth(OFF) SC toff(SC) OT OTr UV UVr IFO(H) IFO(L) tFO Trip level Reset level Trip level Reset level CONTROL PART — — 1.2 1.7 150 80 — 135 — 11.5 — — — 1.0 Parameter Symbol Condition Max. Min. Typ. Unit Limits 20 5 1.5 2.0 — — 0.2 145 125 12.0 12.5 — 10 1.8 (Note-3) Fault output is given only when the internal SC, OT & UV protections schemes of either upper or lower arm device operate to protect it. Detect Tj of IGBT chip –20 ≤ Tj ≤ 125°C VD = 15V, VCIN = 15V (Note-3) VD = 15V (Note-3) V µs VN1-VNC VXP1-VXPC Inverter part Brake part A RECOMMENDED CONDITIONS FOR USE Recommended value Unit Condition Symbol Parameter V Applied across P-N terminals Applied between : VUP1-VUPC, VVP1-VVPC VWP1-VWPC, VN1-VNC (Note-4) Applied between : UP-VUPC, VP-VVPC, WP-VWPC UN • VN • WN • Br-VNC Using Application Circuit of Fig. 8 For IPM’s each input signals (Fig. 7) Supply Voltage Control Supply Voltage Input ON Voltage Input OFF Voltage PWM Input Frequency Arm Shoot-through Blocking Time ≤ 800 15.0 ± 1.5 ≤ 0.8 ≥ 9.0 ≤ 20 ≥ 2.5 VCC VCIN(ON) VCIN(OFF) fPWM tdead VD V V kHz µs (Note-4) With ripple satisfying the following conditions dv/dt swing ≤ ±5V/µs, Variation ≤ 2V peak to peak –20 ≤ Tj ≤ 125°C, VD = 15V (Fig. 3,6) VD = 15V (Fig. 3,6) |
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