CR3CM POWEREX | Alldatasheet

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Dimensions Inches Millimeters J 0.10 2.5 K 0.061 1.55 L 0.06 1.5 M 0.05 1.2 N 0.03 0.8 P 0.02 0.5 Dimensions Inches Millimeters A 0.93 ± 0.02 23.7 ± 0.5 B 0.47 Min. 12.0 Mon. C 0.39 Max. 10.0 Max. D 0.31 Max. 8.0 Max. E 0.18 Max. 4.5 Max. F 0.16 Max. 4.0 Max. G 0.126 ± 0.008 3.2 ± 0.2 Description: The Powerex CR3CM Lead-mount Phase Control SCRs are glass- passivated thyristors for use in low power control and rectification. These devices are molded silicone plastic types. Features: h Glass Passivated Applications: h Static Switch h Motor Control h Strobe Flasher Ordering Information: Example: Select the complete six or seven digit part number you desire from the table - i.e. CR3CM-8 is a 400 Volt, 3 Ampere Phase Control SCR. VDRM/VRRM Type Volts Code CR3CM 400 -8 600 -12 Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (412) 925-7272Lead-mount, Phase Control SCR

3 Amperes/400-600 Volts

Outline Drawing(Conforms to JEDEC TO-202) P-29 C C D H - DIA. E K J N N M L J B A F G ˆ P P À\´ ˆ À CATHODE \ ANODE ´ GATE ˆ ANODE OUTLINE DRAWING CONNECTION DIAGRAM À

Powerex,Inc.,200 Hillis Street,Youngw ood, Pennsylvania 15697-1800 (412) 925-7272 CR3CM Lead-mount, Phase Control SCR Absolute Maximum Ratings,Ta = 25 ° C unless otherwise specified Ratings Symbol CR3CM-8 CR3CM-12 Units Repetitive Peak Off-state Voltage VDRM 400 600 Volts Repetitive Peak Reverse Voltage VRRM 400 600 Volts Non-repetitive Peak Reverse Voltage VRSM 500 720 Volts DC Re verse Voltage VR(DC) 320 480 Volts DC Forward Voltage VD(DC) 320 480 Volts RMS On-state Current IT(RMS) 4.7 4.7 Amperes Average On-state Current (Nominal, See Graphs) Ta = 50°C IT(avg) 3 3 Amperes Non-repetitive Peak Surge, On-state Current One Cycle (60 Hz)ITSM 90 90 Amperes I2t for Fusing, t = 8.3 msec I2t 33 33 A2sec Peak Gate Pow er Dissipation PGM 0.5 0.5 W atts Average Gate Pow er Dissipation PG(avg) 0.1 0.1 W atts Peak Forward Gate Current IFGM 0.3 0.3 Amperes Peak Forward Gate Voltage VFGM 6 6 Volts Peak Reverse Gate Voltage VRGM 6 6 Volts Storage Temperature Tstg -40 to 125 -40 to 125 °C Operating Junction Temperature Tj -40 to 110 -40 to 110 °C W eight – 1.6 1.6 Grams Electrical and Thermal Characteristics,Tj = 25 ° C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Voltage – Blocking State Maximums Peak Forward Leakage IDRM Tj= 110°C, VD = VDRM – – 1.0 mA Peak Reverse Leakage IRRM Tj= 110°C, VR = VRRM – – 1.0 mA Current – Conducting State Maximums Peak On-state Voltage VTM Tc = 25°C, ITM = 10 A – – 1.6 Volts Thermal Resistance, Junction-to-case R th(j-c) – – – 10 °C/W Gate – Maximum Parameters Gate Current to Trigger IGT VD = 6V, RL = 60V, Tj= 25°C 1 – 200 mA Gate Voltage to Trigger VGT VD = 6V, RL = 60V, Tj= 25°C – – 0.8 Volts Minimum Non-triggering Gate Voltage VGD VD = 1/2VDRM , RGK = 1kV, Tj= 110°C 0.1 – – Volts

Powerex,Inc.,200 Hillis Street,Youngw ood, Pennsylvania 15697-1800 (412) 925-7272 CR3CM Lead-mount, Phase Control SCR 0.6 3.8 3.4 3.0 2.6 2.2 1.8 1.4 1.0 MAXIMUM ON-STATE CHARACTERISTICS INSTANTANEOUS ON-STATE CURRENT, I TM , (AMPERES) INSTANTANEOUS ON-STATE VOLTAGE, V T, (VOLTS) 10-1 100 101 102 Tj = 25oC TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (JUNCTION-TO-CASE, JUNCTION-TO-AMBIENT) TIME, t, (S) TRANSIENT THERMAL IMPEDANCE, Zth(j-c), Zth(j-a), (°C/WATT) 10-3 10-1 102 103 10-2 100 101 10-1 100 100 101 102 JUNCTION-TO-AMBIENT JUNCTION-TO-CASE 10-2 10-1 100 101 102 GATE CHARACTERISTICS GATE CURRENT, I G , (mA) GATE VOLTAGE, V G , (VOLTS) 10-1 100 101 102 103 VGD = 0.1V VFGM = 6V VGT = 0.8V IGT = 200mA IFGM = 0.3A PGM = 0.5W PG(avg) = 0.1W Tj = 25° 100 120 140 160 MAXIMUM ALLOWABLE CASE TEMPERATURE (SINGLE-PHASE HALF WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) MAXIMUM ALLOWABLE CASE TEMPERATURE, T C , (°C) 0 1 2 3 54 u = 30° 60° 90° 180° RESISTIVE, INDUCTIVE LOADS 120° u 360° 100 120 140 160 ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (SINGLE-PHASE HALF WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) AMBIENT TEMPERATURE, T a, (°C) 0 0.4 0.8 1.2 1.6 u = 30° 60° 90° 180° RESISTIVE, INDUCTIVE LOADS NATURAL CONVECTION WITHOUT FIN 120° u 360° 100 120 140 160 ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (SINGLE-PHASE HALF WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) AMBIENT TEMPERATURE, T a, (°C) 0 1 2 3 54 u = 30° 60° 90° 180° RESISTIVE, INDUCTIVE LOADS NATURAL CONVECTION FIN: IRON PLATE PAINTED BLACK 50 X 50 X t1.2 120° u 360° MAXIMUM ON-STATE POWER DISSIPATION (SINGLE-PHASE HALF WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) MAXIMUM POWER DISSIPATION, (WATTS) 0 54321 u = 30° 60° 90° 120° 180°u 360° RESISTIVE, INDUCTIVE LOADS 100 MAXIMUM SURGE CURRENT FOLLOWING RATED LOAD CONDITIONS CYCLES AT 60 Hz MAXIMUM PEAK SURGE CURRENT, I TSM , (AMPERES) 100 101 102 100 120 140 160 MAXIMUM ALLOWABLE CASE TEMPERATURE (SINGLE-PHASE FULL WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) MAXIMUM ALLOWABLE CASE TEMPERATURE, T C , (°C) 0 1 2 3 54 u = 30° 60° 90° 180°120° u 360° u RESISTIVE LOADS

Powerex,Inc.,200 Hillis Street,Youngw ood, Pennsylvania 15697-1800 (412) 925-7272 CR3CM Lead-mount, Phase Control SCR ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (SINGLE-PHASE FULL WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) AMBIENT TEMPERATURE, T a, (°C) 0 0.4 0.8 1.2 1.6 u = 30° 180° u 360° u RESISTIVE LOADS NATURAL CONVECTION WITHOUT FIN 120° 90° 60° 100 120 140 160 ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (SINGLE-PHASE FULL WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) AMBIENT TEMPERATURE, T a, (°C) 0 1 2 3 4 5 u = 30° 180° u 360° u RESISTIVE LOADS NATURAL CONVECTION FIN: IRON PLATE PAINTED BLACK 50 X 50 X t1.2 120° 90° 60° GATE TRIGGER CURRENT VS. JUNCTION TEMPERATURE (TYPICAL) JUNCTION TEMPERATURE, T j, (°C) JUNCTION TEMPERATURE, T j, (°C) GATE TRIGGER CURRENT, (t °C) GATE TRIGGER CURRENT, (25 °C) x 100% -40 0 40 80 120 100 101 102 103 R GK = 1kV IGT = 30 mA 190 mA GATE TRIGGER VOLTAGE VS. JUNCTION TEMPERATURE (TYPICAL) GATE TRIGGER VOLTAGE, (t °C) GATE TRIGGER VOLTAGE, (25 °C) x 100% -40 0 40 80 120 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 TYPICAL EXAMPLE DISTRIBUTION HOLDING CURRENT VS. JUNCTION TEMPERATURE (TYPICAL) JUNCTION TEMPERATURE, T j, (°C) -40 10-1 100 101 102 0 40 80 120 HOLDING CURRENT, I H , (mA) R GK = 1kV TYPICAL EXAMPLE DISTRIBUTION 100 150 200 250 300 350 400 HOLDING CURRENT VS. GATE-TO-CATHODE RESISTANCE (TYPICAL) GATE-TO-CATHODE RESISTANCE, R GK , (kV) 10-1 100 101 102 HOLDING CURRENT, (R GK = rkV) HOLDING CURRENT, ( R GK = 1kV) x 100% IGT = 25 mA Tj = 25°C 50 mA BREAKOVER VOLTAGE VS. JUNCTION TEMPERATURE (TYPICAL) JUNCTION TEMPERATURE, T j, (°C) -40 100 120 140 160 BREAKOVER VOLTAGE, (t °C) BREAKOVER VOLTAGE, (25 °C) x 100% R GK = 1kV 0 40 80 120 REPETITIVE PEAK OFF-STATE CURRENT VS. JUNCTION TEMPERATURE (TYPICAL) JUNCTION TEMPERATURE, T j, (°C) -40 100 120 140 160 REPETITIVE PEAK OFF-STATE CURRENT, (t °C) REPETITIVE PEAK OFF-STATE CURRENT, (25 °C) x 100% 0 40 80 120 MAXIMUM ON-STATE POWER DISSIPATION (SINGLE-PHASE FULL WAVEFORM) AVERAGE ON-STATE CURRENT, I T(avg), (AMPERES) MAXIMUM POWER DISSIPATION, (WATTS) u = 30° 60° 90° 120° 180° RESISTIVE LOADS 1 2 3 4 5 u 360° u P-32