PM150CLB060 POWEREX | Alldatasheet
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Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 Intellimod™ L-Series Three Phase IGBT Inverter
150 Amperes/600 Volts
Description: Powerex Intellimod™ Intelligent Power Modules are isolated base modules designed for power switching applications operating at frequencies to 20kHz. Built-in control circuits provide optimum gate drive and protection for the IGBT and free-wheel diode power devices. Features: £ Complete Output Power Circuit £ Gate Drive Circuit £ Protection Logic – Short Circuit – Over Temperature Using On-chip Temperature Sensing – Under Voltage £ Low Loss Using 5th Generation IGBT Chip Applications: £ Inverters £ UPS £ Motion/Servo Control £ Power Supplies Ordering Information: Example: Select the complete part number from the table below -i.e. PM150CLB060 is a 600V,
150 Ampere Intellimod™ Intelligent
Power Module. Type Current Rating V CES Amperes Volts (x 10) PM 150 60 Outline Drawing and Circuit Diagram Dimensions Inches Millimeters A 4.72 120.0 B 2.17 55.0 C 0.63 16.0 D 4.17 106.0 E 0.28 7.0 F 0.78 19.75 G 2.62 66.5 H 0.13 3.25 J 0.63 16.0 K 0.08 2.0 L 0.10 2.5 M 2.81 71.5 N 0.20 5.0 P 0.31 7.75 Q 3.87 98.25 R 0.87 22.0 S 0.10 2.5 T 0.77 19.5 U 0.91 23.0 Dimensions Inches Millimeters V 0.16 4.0 W 1.01 25.75 X 2.00 50.75 Y 0.69 17.5 Z 0.30 7.5 AA 0.98 25.0 AB 0.10 Dia. Dia. 2.5 AC 0.22 Dia. Dia. 5.5 AD 0.67 17.0 AE 0.10 Dia. Dia. 2.5 AF 0.33 8.5 AG 0.08 2.0 AH 0.41 10.5 AJ 1.08 27.5 AK 0.04 1.0 AL 0.02 Sq. Sq. 0.5 AM 0.06 1.5 AN 0.04 1.0 VCC SI GND GND OUT FO IN OT VCC SI GND GND OUT FO IN OT VCC SI GND GND OUT FO IN OT VCC SI GND GND OUT FO IN OT PU UNNC FO VNC WN VN1 VN VWPC WP WFO VWP1 VVPC VP VFO VVP1 VUPC UP UFO VUP1 VWNNC VCC SI GND GND OUT FO IN OT VCC SI GND GND OUT FO IN OT 19 FO 17 VN
14 VN1
8 VVP1
2 UFO
6 VFO
5 VVPC
9 VWPC
10 WFO
12 VWP1
1 VUPC
4 VUP1
13 VNC
A GF L M H J J J KK K K V AB (4 PLACES) V N W X B V V V V V V V V S T UU U R P Q AC (2 PLACES) AJ AHAF AG AL AN AK CAD AE (2 PLACES) AM V V Y Y Z AA N P 1 5 9 13 1 9 WVUB
Intellimod™ L-Series Three Phase IGBT Inverter Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 Absolute Maximum Ratings, Tj = 25°C unless otherwise specified Characteristics Symbol PM150CLB060 Units Power Device Junction Temperature Tj -20 to 150 °C Storage Temperature Tstg -40 to 125 °C Module Case Operating Temperature (Note 1) TC -20 to 100 °C Mounting Torque, M5 Mounting Screws — 31 in-lb Mounting Torque, M5 Main Terminal Screws — 31 in-lb Module Weight (Typical) — 380 Grams Supply Voltage, Surge (Applied between P - N) VCC(surge) 550 Volts Self-protection Supply Voltage Limit (Short Circuit protection Capability)* VCC(prot.) 400 Volts Isolation Voltage, AC 1 minute, 60Hz Sinusoidal VISO 2500 Volts *VD = 13.5 ~ 16.5V, Inverter Part, Tj = 125°C IGBT Inverter Sector Collector-Emitter Voltage (VD = 15V, VCIN = 15V) VCES 600 Volts Collector Current (TC = 25°C) ±IC 150 Amperes Peak Collector Current (TC = 25°C) ±ICP 300 Amperes Collector Dissipation (TC = 25°C) (Note 1) PC 480 Watts Control Sector Supply Voltage (Applied between VUP1-VUPC, VVP1-VVPC, VWP1-VWPC, VN1-VNC) V D 20 Volts Input Voltage (Applied between UP-VUPC, VP-VVPC, WP-VWPC, UN- VN- WN-VNC) V CIN 20 Volts Fault Output Supply Voltage VFO 20 Volts (Applied between UFO-VUPC, VFO-VVPC, WFO-VWPC, FO-VNC) Fault Output Current (UFO, VFO, WFO, FO Terminals) IFO 20 mA Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units IGBT Inverter Sector Collector-Emitter Cutoff Current ICES V CE = VCES, VD = 15V, Tj = 25°C — — 1.0 mA VCE = VCES, VD = 15V, Tj = 125°C — — 10 mA Diode Forward Voltage VEC -I C = 150A, VCIN = 15V, VD = 15V — 2.2 3.3 Volts Collector-Emitter Saturation Voltage V CE(sat) V D = 15V, VCIN = 0V, IC = 150A, — 1.6 2.1 Volts Tj = 25°C VD = 15V, VCIN = 0V, IC = 150A, — 1.5 2.0 Volts Tj = 125°C Inductive Load Switching Times ton 0.5 1.0 2.4 µs trr VD = 15V, VCIN = 0 ⇔ 15V — 0.2 0.4 µs tC(on) VCC = 300V, IC = 150A — 0.4 1.0 µs toff Tj = 125°C — 1.2 2.5 µs tC(off) — 0.5 1.0 µs
Intellimod™ L-Series Three Phase IGBT Inverter 150Amperes/600 Volts Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Control Sector Short Circuit Trip Level SC -20°C ≤ Tj ≤ 125°C, VD = 15V 300 420 — Amperes Short Circuit Current Delay Time toff(SC) VD = 15V — 0.2 — µs Over Temperature Protection OT Trip Level 135 145 155 °C (Detect Tj of IGBT Chip) OTR Reset Level — 125 — °C Supply Circuit Under-voltage Protection UV Trip Level 11.5 12.0 12.5 Volts (-20 ≤ Tj ≤ 125°C) UVR Reset Level — 12.5 — Volts Circuit Current ID VD = 15V, VCIN = 15V, VN1-VNC — 15 25 mA VD = 15V, VCIN = 15V, VXP1-VXPC — 5 10 mA Input ON Threshold Voltage Vth(on) Applied between UP-VUPC, 1.2 1.5 1.8 Volts Input OFF Threshold Voltage Vth(off) V P-VVPC, WP-VWPC, UN- VN- WN-VNC 1.7 2.0 2.3 Volts Fault Output Current* IFO(H) VD = 15V, VCIN = 15V — — 0.01 mA IFO(L) VD = 15V, VCIN = 15V — 10 15 mA Fault Output Pulse Width* tFO VD = 15V 1.0 1.8 — ms *Fault output is given only when the internal SC, OT and UV protections schemes of either upper or lower devide operate to protect it. Thermal Characteristics Characteristic Symbol Condition Min. Typ. Max. Units Junction to Case Thermal Resistance R th(j-c)Q IGBT (Per 1/6 Module) (Note 1) — — 0.26 °C/Watt Rth(j-c)D FWDi (Per 1/6 Module) (Note 1) — — 0.43 °C/Watt Rth(j-c)Q IGBT (Per 1/6 Module) (Note 2) — — 0.20 °C/Watt Rth(j-c)D FWDi (Per 1/6 Module) (Note 2) — — 0.33 °C/Watt Contact Thermal Resistance Rth(c-f) Case to Fin Per Module, — — 0.038 °C/Watt Thermal Grease Applied (Note 1) If you use this value, Rth(f-a) should be measured just under the chips. Recommended Conditions for Use Characteristic Symbol Condition Value Units Supply Voltage VCC Applied across P-N Terminals ≤400 Volts Control Supply Voltage* VD Applied between VUP1-VUPC, 15.0 ± 1.5 Volts VVP1-VVPC, VWP1-VWPC, VN1-VNC Input ON Voltage VCIN(on) Applied between UP-VUPC, ≤0.8 Volts Input OFF Voltage VCIN(off) V P-VVPC, WP-VWPC, UN- VN- WN-VNC ≥9.0 Volts PWM Input Frequency fPWM ≤20 kHz Arm Shoot-through Blocking Time tDEAD Input Signal ≥2.0 µs *** With ripple satisfying the following conditions: dv/dt swing ≤ ±5V/µs, Variation ≤ 2V peak to peak. Arm UP VP WP UN VN WN Axis IGBT FWDi IGBT FWDi IGBT FWDi IGBT FWDi IGBT FWDi IGBT FWDi Note 2: TC (under the chip) Measurement PointNote 1:TC (base plate) Measurement Point Y X BOTTOM VIEW TOP VIEW TC MEASUREMENT POINT
Intellimod™ L-Series Three Phase IGBT Inverter Powerex, Inc., 200 E. Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 EMITTER CURRENT, IE, (AMPERES) REVERSE RECOVERY CURRENT, Irr, (AMPERES) 102 100 101 101 100 103102 100 100 101 10-1 10-2 103102 EMITTER CURRENT, IE, (AMPERES) REVERSE RECOVERY TIME, trr, (µs) COLLECTOR CURRENT, IC, (AMPERES) SWITCHING LOSS, ESW(on), (mJ/PULSE) 101 100 100 101 10-1 10-2 103102 101 100 100 101 10-1 10-2 103102 SWITCHING LOSS (ON) VS. COLLECTOR CURRENT (TYPICAL) COLLECTOR CURRENT, IC, (AMPERES) SWITCHING LOSS, ESW(off), (mJ/PULSE) SWITCHING LOSS (OFF) VS. COLLECTOR CURRENT (TYPICAL) REVERSE RECOVERY CHARACTERISTICS (TYPICAL) EMITTER-COLLECTOR VOLTAGE, VEC, (VOLTS) EMITTER CURRENT, IE, (AMPERES) FREE-WHEEL DIODE FORWARD CHARACTERISTICS (TYPICAL) 103 102 101 100 COLLECTOR-CURRENT, IC, (AMPERES) COLLECTOR-EMITTER SATURATION VOLTAGE, VCE(sat), (VOLTS) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL) 0 120 150906030 2.0 1.5 1.0 0.5 TIME, (s) TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (IGBT & FWDi) 101 10-110-210-3 100 101 100 10-1 10-3 10-2 Zth = Rth • (NORMALIZED VALUE) Single Pulse TC = 25°C Per Unit Base = Rth(j-c) = 0.26°C/W (IGBT) Rth(j-c) = 0.43°C/W (FWDi) NORMALIZED TRANSIENT THERMAL IMPEDANCE, Zth(j-c') REVERSE RECOVERY CHARACTERISTICS (TYPICAL) VCC = 300V VD = 15V INDUCTIVE LOAD Tj = 25°C Tj = 125°C VCC = 300V VD = 15V INDUCTIVE LOAD Tj = 25°C Tj = 125°C VD = 15V Tj = 25°C Tj = 125°C VD = 15V Tj = 25°C Tj = 125°C VCC = 300V VD = 15V Tj = 25°C Tj = 125°C VCC = 300V VD = 15V Tj = 25°C Tj = 125°C