CP20TD1-12A POWEREX | Alldatasheet

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3Ø Converter + 3Ø Inverter + Brake

20 Amperes/600 Volts

Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 Description: DIP-CIBs are low profile, thermally efficient, transfer mold modules. Each module consists of a three- phase diode converter section, a three-phase inverter section and a brake circuit. Open emitters allow the designer to sense the current in each phase leg for accurate and low cost current sensing. A thermistor is included in the package for sensing the base- plate temperature. 5th Generation CSTBT chips yield low loss. The module is completely Pb-Free and hence RoHS compliant. Features: £ Compact Package £ Only 5.7mm Thick £ One Package for Entire Family £ Thermistor £ Open Emitters Applications: £ AC Motor Control £ Servo Motors £ Robotics £ HVAC Inverters Ordering Information: CP20TD1-12A is a 600 Volt,

20 Ampere DIP-CIB low profile,

thermally efficient, transfer mold module. Outline Drawing and Circuit Diagram Dimensions Inches Millimeters A 2.68 68.0 B 1.73 44.0 D 3.1 79.0 E 2.83 72.0 K 0.87 22.0 N 1.14 29.0 P 0.098 2.5 R 0.18 4.5 Dimensions Inches Millimeters T 0-5° 0-5° U 0 Min. 0 Min. V 8° 8° W 0.04 1.1 X 0.02 Max. 0.5 Max. Y 0.06 1.6 AA 0.08 Dia. 2.0 Dia. AB 0.1 Dia. 2.5 Dia. AC 0.03 Deep 0.8 Deep AD 0.057 1.45 AE 0.023 0.6 AF 0.04 1.1

3Ø Converter + 3Ø Inverter + Brake Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 2 04/06 Absolute Maximum Ratings, Tj = 25 °C unless otherwise specified Ratings Symbol CP20TD1-12A Units Junction Temperature* Tj -20 to 150 °C Storage Temperature Tstg -40 to 125 °C Mounting Torque, M4 Mounting Screws — 13 in-lb Module Weight Typical — 52 Grams Isolation Voltage (60Hz, Sinusoidal, AC 1 Min., Applied Between Pins and Heatsink) V ISO 2500 Volts Inverter Part Collector-Emitter Voltage (G-E Short) VCES 600 Volts Gate-Emitter Voltage (C-E Short) VGES ±20 Volts Collector Current (DC, TC = 78°C) IC 20 Amperes Peak Collector Current* (Pulse) ICM 40 Amperes Maximum Collector Dissipation (TC = 25°C) PC 96 Watts Emitter Current* (DC, TC = 56°C) IE** 20 Amperes Peak Emitter Current (Pulse) IEM**** 40 Amperes Brake Part Collector-Emitter Voltage (G-E Short) VCES 600 Volts Gate-Emitter Voltage (C-E Short) VGES ±20 Volts Collector Current* (DC, TC = 110°C) IC 10 Amperes Peak Collector Current** (Pulse) ICM 20 Amperes Maximum Collector Dissipation (TC = 25°C, Tj < 150°C) PC 70 Watts Repetitive Peak Reverse Voltage (Clamp Diode Part) VRRM 600 Volts Forward Current (Clamp Diode Part, Tj < 150°C) IFM 10 Amperes Converter Part Repetitive Peak Reverse Voltage VRRM 800 Volts Recommended AC Input Voltage) Ea 220 Volts DC Output Current (Three-phase Rectifying Circuit) IO 20 Amperes Surge Forward Current (1/2 Cycle at 60 Hz, Peak Value, Non-repetitive) IFSM 245 Amperes I2t for Fusing (Value for 1 Cycle of Surge Current) I2t 252 A2s *It is recommended to limit the average junction temperature below 125°C to ensure safe operation. TC is measured just underneath the power chip. *Pulse width and repetition rate should be such that the device junction temperature (Tj) does not exceed Tj(max.) rating. ****IE, VEC, trr, and Qrr represent characteristics of the anti-paralleled emitter-to-collector free-wheel diode (FWDi).

3Ø Converter + 3Ø Inverter + Brake Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 Electrical Characteristics, Tj = 25 °C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Inverter Part Collector-Cutoff Current ICES VCE = VCES, VGE = 0V — — 1.0 mA Gate-Emitter Threshold Voltage VGE(th) IC = 2.0mA, VCE = 10V 5.0 6.0 7.0 Volts Gate-Emitter Cutoff Current IGES VGE = 20V, VCE = 0V — — 1.0 µA Collector-Emitter VCE(sat) I C = 20A, VGE = 15V, Tj = 25°C — 1.8 2.5 Volts Saturation Voltage* IC = 20A, VGE = 15V, Tj = 125°C — 1.9 — Volts Input Capacitance Cies — 1.57 — nF Output Capacitance Coes V CE = 10V, VGE = 0V, f = 1MHz — 0.24 — nF Reverse Transfer Capacitance Cres — 0.06 — nF Total Gate Charge QG V CC = 300V, IC = 20A, VGE = 15V — 65 — nC Turn-on Delay Time td(on) — 80 — ns Turn-on Rise Time tr VCC = 300V, IC = 20A, — 50 — ns Turn-off Delay Time td(off) VGE = ±15V, RG = 33Ω, — 200 — ns Turn-off Fall Time tf Tj = 25°C, — 400 — ns Reverse Recovery Time trr Inductive Load — — — ns Reverse Recovery Charge Qrr — — — µC Emitter-Collector Voltage** VEC IE = 20A, VGE = 0V — 1.7 2.4 Volts External Gate Resistance Rg — 33 — 330 Ω Brake Part Collector-Cutoff Current ICES VCE = VCES, VGE = 0V — — 1.0 mA Gate-Emitter Threshold Voltage VGE(th) IC = 1.0mA, VCE = 10V 5.0 6.0 7.0 Volts Gate-Emitter Cutoff Current IGES VGE = 20V, VCE = 0V — — 1.0 µA Collector-Emitter VCE(sat) I C = 10A, VGE = 15V, Tj = 25°C — 1.8 2.5 Volts Saturation Voltage* IC = 10A, VGE = 15V, Tj = 125°C — 1.9 — Volts Input Capacitance Cies — 0.8 — nF Output Capacitance Coes V CE = 10V, VGE = 0V, f = 1MHz — 1.3 — nF Reverse Transfer Capacitance Cres — 0.03 — nF Total Gate Charge QG V CC = 300V, IC = 10A, VGE = 15V — 33 — nC Turn-on Delay Time td(on) — 80 — ns Turn-on Rise Time tr VCC = 300V, IC = 10A, — 50 — ns Turn-off Delay Time td(off) VGE = ±15V, RG = 62Ω, — 200 — ns Turn-off Fall Time tf Tj = 25°C, — 400 — ns Reverse Recovery Time trr Inductive Load — — — ns Reverse Recovery Charge Qrr — — — µC Forward Voltage Drop VFM IF = 10A, Clamp Diode Part — 1.7 2.4 Volts External Gate Resistance Rg — 62 — 620 Ω *Pulse width and repetition rate should be such as to cause negligible temperature rise. **TC is measured just underneath the power chip.

3Ø Converter + 3Ø Inverter + Brake Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 4 04/06 Electrical Characteristics, Tj = 25 °C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Converter Part Repetitive Reverse Current IRRM VR = VRRM, Tj = 125°C — — 1.0 mA Forward Voltage Drop VFM IF = 20A — — 1.4 Volts Thermal and Mechanical Characteristics, Tj = 25 °C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Common Rating Contact Thermal Resistance Rth(c-f) Case-to-Fin, Thermal Grease Applied — 0.047 — °C/W Inverter Part Thermal Resistance, Junction to Case R th(j-c)Q IGBT Part, Per 1/6 Module — — 1.3 °C/W Thermal Resistance, Junction to Case R th(j-c)D FWDi Part, Per 1/6 Module — — 1.7 °C/W Brake Part Thermal Resistance, Junction to Case R th(j-c)Q IGBT Part — — 1.6 °C/W Thermal Resistance, Junction to Case R th(j-c)D FWDi Part — — 2.1 °C/W Converter Part Thermal Resistance, Junction to Case R th(j-c) Per 1/6 Module — — 1.3 °C/W NTC Thermistor Part Resistance Rth TC = 25°C 9.5 10.0 10.5 k Ω B Constant* B(25/100) Resistance at 25°C, 100°C — 3450 — K *Thermistor resistance RX at arbitrary temperature TX(K) can be calculated with the B constant formula TX T25 where R25 is the resistance at TC = 25°C, T25 = 298K.

3Ø Converter + 3Ø Inverter + Brake Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 Eon Err Eoff COLLECTOR-EMITTER VOLTAGE, VCE, (VOLTS) COLLECTOR CURRENT, IC, (AMPERES) OUTPUT CHARACTERISTICS (INVERTER PART - TYPICAL) 0 1 2 3 4 VGE = 19V 13.5 16.5 15Tj = 125°C EMITTER-COLLECTOR SATURATION VOLTAGE, VEC, (VOLTS) COLLECTOR-CURRENT, -IC, (AMPERES) EMITTER-COLLECTOR SATURATION VOLTAGE CHARACTERISTICS (INVERTER PART - TYPICAL) Tj = 25°C Tj = 125°C COLLECTOR-EMITTER SATURATION VOLTAGE, VCE(sat), (VOLTS) COLLECTOR-CURRENT, IC, (AMPERES) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (INVERTER PART - TYPICAL) 0 0.5 2.51.5 3.02.0 VGE = 15V Tj = 25°C Tj = 125°C 1.0 0 0.5 2.51.5 3.02.01.0 VGE = 15V Tj = 25°C Tj = 125°C TIME, (s) TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (INVERTER PART - IGBT & FWDi) 101 100 10-2 10-110-3 100 101 10-2 10-1 Zth = Rth • (NORMALIZED VALUE) NORMALIZED TRANSIENT THERMAL IMPEDANCE, Zth(j-c') COLLECTOR CURRENT, IC, (AMPERES) SWITCHING LOSS, Eon, Eoff, Err, (mJ/PULSE) 0 1 05 4030 3520 2515 SWITCHING LOSS VS. COLLECTOR CURRENT (INVERTER PART - TYPICAL) VCC = 300V VGE = ±15V RG = 33Ω Tj = 125°C Inductive Load Eon Eoff GATE RESISTANCE, RG, (Ω) SWITCHING LOSS, Eon, Eoff, Err, (mJ/PULSE) 0 100 150 250 30020050 350 SWITCHING LOSS VS. GATE RESISTANCE (INVERTER PART - TYPICAL) VCC = 300V VGE = ±15V IC = 20A Tj = 125°C Inductive Load Err Single Pulse TC = 25°C IGBT FWDi DIODE FORWARD VOLTAGE, VF, (VOLTS) DIODE FORWARD CURRENT, IF, (AMPERES) DIODE FORWARD VOLTAGE CHARACTERISTICS (CONVERTER PART - TYPICAL) 0 0.5 1.0 2.01.5 VGE = 15V Tj = 25°C Tj = 125°C GATE CHARGET, QG, (nc) GATE-EMITTER VOLTAGE, VGE, (VOLTS) GATE CHARGE (INVERTER PART - TYPICAL) 0 2010 30 40 90807050 60 IC = 20A VCC = 200V VCC = 300V TEMPERATURE, TC, (°C) NTC THERMISTOR RESISTANCE, Rth, (kΩ) NTC THERMISTOR TEMPERATURE CHARACTERISTICS (TYPICAL) 25 50 100 12575

3Ø Converter + 3Ø Inverter + Brake Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 6 04/06 COLLECTOR-EMITTER SATURATION VOLTAGE, VCE(sat), (VOLTS) COLLECTOR-CURRENT, IC, (AMPERES) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (BRAKE PART - TYPICAL) 0 0.5 1.5 2.0 2.5 3.0 VGE = 15V Tj = 25°C Tj = 125°C 1.0 0 0.5 1.5 2.0 2.5 3.0 VGE = 15V Tj = 25°C Tj = 125°C 1.0 EMITTER-COLLECTOR SATURATION VOLTAGE, VEC, (VOLTS) COLLECTOR-CURRENT, -IC, (AMPERES) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (BRAKE PART - TYPICAL)