M81500FP POWEREX | Alldatasheet

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Intellimod™ HVIC Single Chip Inverter M81500FP 103/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com Dimensions Inches Millimeters A 0.47 ±0.012 11 .93±0.3 D 0.063 1 .6 E 0.03 0.75 F 0.035 Max. 0.9 Max. G 0.08 2.0 H 0.086 Max. 2.2 Max. J 0.07 1 .765 Dimensions Inches Millimeters L 0 ~10° P 0.45 11 .43 Q 0.063 1 .6 R 0.05 1 .3 S 0.05 1 .27 T 0.0315 0.8 U 0.02 0.5 Description: M81500FP is a high voltage three-phase motor driver fabricated by a 500V high voltage SOI (Silicon On Insulator) process. This driver contains level shift high-side driver, low-side driver, IGBT's, free-wheel diodes, protective functions for over- current, under-voltage protection circuits and thermal shutdown circuit. Features: £ 500V Floating Supply Voltage £ Built in Bootstrap Diodes £ 3-Phase Bridge Output using IGBTs £ Built in Free-Wheel Diodes Applications: £ Exhaust Fans £ Dishwashers £ Air Conditioners £ Small Servo Motors £ Small Motor Control Ordering Information: M81500FP Outline Drawing and Circuit Diagram PIN NUMBER RECOMMENDED MOUNT PAD A C B D (TYP .) Q R S UT VT(TYP .) K N M L J P G H E F DETAIL "A" DETAIL "A" 33 22

1 V D

4 F O

6 C IN

8 N 1

9 GND

10 GND

11 GND

12 GND

13 GND

15 U PIN

16 U NIN

17 V PIN

18 V NIN

19 W PIN

20 W NIN

21 N 2

22 GND

23 GND

25 U FB

26 P 2

28 V FB

30 W FB

31 P 1

32 GND

33 GND

BOOTSTRAP DIODES (BSDs) ARE BUILT IN INPUT ACTIVE HIGH 9−13 COMPFILTER (0.5µs)

Intellimod™ HVIC Single Chip Inverter 2 03/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com Absolute Maximum Ratings, Ta = 25°C unless otherwise specified Characteristics Symbol M81500FP Units Collector-Emitter Voltage VCES -0.5 ~ 500 Volts Control Power Supply Voltage VD -0.5 ~ 23 Volts Input Voltage (UPIN, VPIN, WPIN, UNIN, VNIN, WNIN) VIN -0.5 ~ VCC+0.5 Volts Collector Current IC 0.6 Amperes Peak Collector Current ICP 1 .0 Amperes Power Dissipation (On Board, Ta = 25°C) PD 2.6 Watts Power Dissipation (On Board, TC = 25°C) PD 25 Watts Junction Temperature Tj -20 ~ 150 °C Operating Temperature Topr -20 ~ 125 °C Storage Temperature Tstg -55 ~ 150 °C Recommended Conditions for Use Characteristic Symbol Condition Min. Typ. Max. Units High Voltage Supply VCC Applied across P-N Terminals 50 280 450 Volts Control Power Supply Voltage VD 15.675 16.5 17 .325 Volts Input Voltage VIN 0 — 7 Volts (UPIN, VPIN, WPIN, UNIN, VNIN, WNIN)

Intellimod™ HVIC Single Chip Inverter 303/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Floating Bootstrap Standby Current I FB *P IN = *NIN = 0V (* = U, V, W), FB = 16.5V — 0.2 0.6 mA (Applied between UFB-U, VFB-V, WFB-W) (U-Phase, V-Phase, W-Phase Common) Power Supply Voltage Standby Current I D *PIN = *NIN = 0V 0.4 1 .0 1 .8 mA High Level Input Threshold Voltage V IH *PIN, *NIN Pin 3.5 — — Volts Low Level Input Threshold Voltage V IL *PIN, *NIN Pin — — 1 .5 Volts High Level Input Bias Current IIH V IN = 5V — 25 50 µA Low Level Input Bias Current IIL V IN = 0V — 0 2 µA Floating Bootstrap Supply UV FBuvr U-Phase, V-Phase, W-Phase Common 7 .9 8.7 9.7 Volts Reset Voltage Floating Bootstrap Supply UV FBuvt U-Phase, V-Phase, W-Phase Common 7 .4 8.2 9.0 Volts Trip Voltage Floating Bootstrap Supply UV FBuvh U-Phase, V-Phase, W-Phase Common 0.35 0.5 — Volts Hysteresis Voltage Floating Bootstrap Supply UV tFBuv U-Phase, V-Phase, W-Phase Common — 6.0 — µs Filter Time Power Supply UV Reset Voltage V Duvr U-Phase, V-Phase, W-Phase Common 7 .9 8.7 9.7 Volts Power Supply UV Trip Voltage VDuvt U-Phase, V-Phase, W-Phase Common 7 .4 8.2 9.0 Volts Power Supply UV Hysteresis Voltage V Duvh U-Phase, V-Phase, W-Phase Common 0.35 0.5 — Volts Power Supply UV Filter Time tVDuv U-Phase, V-Phase, W-Phase Common — 6.0 — µs Short Current Trip Level VSC C IN Pin Input Voltage (FO : H → L) 0.43 0.50 0.55 Volts Fault Output Voltage VFoL C IN = 1V, IFO = 1mA — — 0.95 Volts Output ON Delay Time ton V CC = 280V, VD = 16.5V, IC = 0.5A, L = 5mH — 0.4 — µs Output OFF Delay Time toff V CC = 280V, VD = 16.5V, IC = 0.5A, L = 5mH — 0.9 — µs FWD Reverse Recovery Time trr V CC = 280V, VD = 16.5V, IC = 0.5A, L = 5mH — 220 — ns Input Filter Time (ON) tinon 90 150 210 ns Input Filter Time (OFF) tinoff 100 170 240 ns Output Saturation Voltage VCE(sat) V D = 16.5V, IF = 0.5A — 2.3 3.0 Volts (U-Phase, V-Phase, W-Phase Common) Diode Forward Voltage VFfwd I F = 0.5A — 1 .95 2.5 Volts (U-Phase, V-Phase, W-Phase Common) Bootstrap Diodes Forward Voltage VF bsd I F = 600µA — 0.75 1 .0 Volts (U-Phase, V-Phase, W-Phase Common) Over-Temperature Trip Level OTt Chip Temperature (FO: H → L) — 140 — °C Over-Temperature Reset Level OTr Chip Temperature (FO: H → L) — 120 — °C Over-Temperature Hysteresis Level OT h OTt - OTr — 20 — °C

Intellimod™ HVIC Single Chip Inverter 4 03/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com HIN HIN = UPIN, VPIN, WPIN LIN = UNIN, VNIN, WNIN LIN ON ON ONONON ONUPPER-ARM IGBT LOWER-ARM IGBT HIN FO LIN VD VDuvt VDuvr VDuvh twFOP tVDuv ON ON ON ONONONONONUPPER-ARM IGBT LOWER-ARM IGBT FBuvt FBuvr FBuvh tFBuv ON ONON HIN FB FO(H) UPPER-ARM IGBT VIN UPIN, VPIN, WPIN, UNIN, VNIN, WNIN OUT (IGBT Current Wave Form) U, V, W Each Phase t(on) t(off) 50% 50% 10% 10% 90% 90% trr Irr x 0.5 Irr Timing Requirement Timing Diagram 1. Input / Output Timing Diagram ACTIVE HIGH (When input signal, HIN or LIN is "H", then IGBT Upper or Lower arm is "ON".) In the case of both input signals, HIN and LIN of same phase are "H", IGBT Upper and Lower is "OFF". 2. VD Floating Bootstrap (FB) Supply Under-Voltage Lockout Timing Diagram When VD supply voltage keeps lower UV trip voltage (VDuvt = VDuvr – VDuvh) for VD supply UV filter time, output signal becomes "OFF". And then VD supply voltage is higher than UV reset voltage, input signal (LIN) is H; the Lower-arm IGBT becomes "ON". At this time, the Upper-arm IGBT continues operating according to the input. When Floating Bootstrap supply voltage keeps lower UV trip voltage (FBuvt = FBuvr – FBuvh) for supply UV filter time, the Upper-arm IGBT becomes "OFF". And then, Floating Bootstrap supply voltage is higher than UV reset voltage, the Upper-arm IGBT keeps "OFF" until next input signal HIN is "H".

Intellimod™ HVIC Single Chip Inverter 503/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com ON ON ON ON ON ONONONONONON The output resumes when the input transitions Lo → Hi after C IN becomes Lo. LIN tSC1 CIN HIN FO UPPER-ARM IGBT LOWER-ARM IGBT ONONONON ON ON ON ON ON ON ON ON LIN CHIP TEMPERATURE OTt OTh tOT tOT OTr OTt OTh OTr HIN FO UPPER-ARM IGBT LOWER-ARM IGBT 3. Short Current Lockout Timing Diagram 4. Over-Temperature Lockout Timing Diagram COLLECTOR-EMITTER VOLTAGE, VCE(sat), (VOLTS) COLLECTOR-CURRENT, IC, (AMPERES) COLLECTOR-EMITTER VOLTAGE CHARACTERISTICS (U-PHASE LOWER-ARM - TYPICAL) Tj = 25°C Tj = 125°C FORWARD CURRENT, IF, (AMPERES) FORWARD VOLTAGE, VF, (VOLTS) FORWARD VOLTAGE CHARACTERISTICS (U-PHASE LOWER-ARM - TYPICAL) 3.0 2.0 2.5 1.0 1.5 0.5 Tj = 25°C Tj = 125°C FORWARD CURRENT, IF, (µA) FORWARD VOLTAGE, VF, (VOLTS) BOOTSTRAP DIODE CHARACTERISTICS (U-PHASE - TYPICAL) 1.0 0.8 0.6 0.4 0.2 1.0 0.8 0.6 0.4 0.2 800600 700300 400 500200100 Tj = 25°C Tj = 125°C

Intellimod™ HVIC Single Chip Inverter 6 03/10 Rev. 1 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com JUNCTION TEMPERATURE, Tj, (°C) SWITCHING LOSS, PSW(off), (mJ/PULSE) SWITCHING LOSS (OFF) VS. JUNCTION TEMPERATURE CHARACTERISTICS (TYPICAL) 0.06 -50 0.04 0.05 0.02 0.03 0.01 15025 50 125100750-25 IC = 1.0A IC = 0.8A IC = 0.5A IC = 0.2A JUNCTION TEMPERATURE, Tj, (°C) SUPPLY RESET VOLTAGE, VDuvr, SUPPLY TRIP VOLTAGE, VDuvt, (VOLTS) SUPPLY VOLTAGE VS. JUNCTION TEMPERATURE CHARACTERISTICS (TYPICAL) VDuvr VDuvt JUNCTION TEMPERATURE, Tj, (°C) FLOATING BOOTSTRAP RESET VOLTAGE, FBuvr, FLOATING BOOTSTRAP TRIP VOLTAGE, FBuvt, (VOLTS) FLOATING BOOTSTRAP VOLTAGE VS. JUNCTION TEMPERATURE CHARACTERISTICS (TYPICAL) FBuvr FBuvt JUNCTION TEMPERATURE, Tj, (°C) SWITCHING LOSS, PSW(on), (mJ/PULSE) SWITCHING LOSS (ON) VS. JUNCTION TEMPERATURE CHARACTERISTICS (TYPICAL) 0.10 0.04 0.06 0.08 -50 0.02 15025 50 125100750-25 10.0 8.5 9.0 9.5 -50 8.0 7.5 7.0 15025 50 125100750-25 10.0 8.5 9.0 9.5 -50 8.0 7.5 7.0 15025 50 125100750-25 IC = 1.0A IC = 0.8A IC = 0.5A IC = 0.2A SUPPLY VOLTAGE, VD, (VOLTS) STANDBY CURRENT, ID, (mA) STANDBY CURRENT VS. SUPPLY VOLTAGE CHARACTERISTICS (TYPICAL) 1.2 0.8 1.0 0.4 0.6 0.2 Tj = -40°C Tj = 25°C Tj = 125°C FLOATING BOOTSTRAP VOLTAGE, UFB, (VOLTS) FLOATING BOOTSTRAP CURRENT, IFB, (mA) FLOATING BOOTSTRAP CHARACTERISTICS (TYPICAL) 0.30 0.25 0.20 0.10 0.15 0.05 Tj = -40°C Tj = 25°C Tj = 125°C JUNCTION TEMPERATURE, Tj, (°C) SWITCHING TIME, ton,toff, (ns) SWITCHING TIME VS. JUNCTION TEMPERATURE CHARACTERISTICS (TYPICAL) ton toff VCC = 300V VD = 16.5V IC = 0.5A 1200 600 800 1000 -50 400 200 15025 50 125100750-25