CR6KM-12A KERSEMI | Alldatasheet

Document overview

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Technical content

Features

  • I T (AV) : 6 A
  • V DRM : 600 V
  • I GT : 10 mA
  • Viso : 2000 V
  • Insulated Type
  • Planar Passivation Type
  • UL Recognized : Yellow Card No. E223904 File No. E80271 Outline TO-220FN 1. Cathode 2. Anode 3. Gate

Applications

Switching mode power supply, regulator for autocycle, motor control, heater control, and other general purpose control Repetitive peak reverse voltage V RRM 600 V Non-repetitive peak reverse voltage V RSM 720 V DC reverse voltage V R (DC) 480 V Repetitive peak off-state voltage V DRM 600 V DC off-state voltage V D (DC) 480 V www.kersemi.com

Parameter Symbol Ratings Unit Conditions RMS on-state current I T (RMS) 9.4 A Average on-state current I T (AV)

6 A Commercial frequency, sine half wave

180° conduction, Tc = 85°C Surge on-state current I TSM

90 A 60Hz sine half wave 1 full cycle,

peak value, non-repetitive I t for fusing I t3 4 A s Value corresponding to 1 cycle of half wave 60Hz, surge on-state current Peak gate power dissipation P GM Average gate power dissipation P G (AV) 0.5 W Peak gate forward voltage V FGM Peak gate reverse voltage V RGM 10 V Peak gate forward current I FGM Junction temperature Tj – 40 to +125 °C Storage temperature Tstg – 40 to +125 °C Mass — 2.0 g Typical value Isolation voltage Viso 2000 V Ta = 25 °C, AC 1 minute, each terminal to case

Electrical Characteristics

Min. Typ. Max. Unit Test conditions Repetitive peak reverse current I RRM — — 2.0 mA Tj = 125 °C, V RRM applied Repetitive peak off-state current I DRM — — 2.0 mA Tj = 125 °C, V DRM applied On-state voltage V TM TM = 20 A, instantaneous value Gate trigger voltage V GT D = 6 V, I T = 1 A Gate non-trigger voltage V GD 0.2 — — V Tj = 125 °C, V D = 1/2 V DRM Gate trigger current I GT — — 10 mA Tj = 25 °C, V D = 6 V, I T = 1 A Holding current I H —1 5— m A T j = 2 5 °C, V D = 12 V Thermal resistance R th (j-c) —— 4 . 0 °C/W Junction to case Note1 Notes: 1. The contact thermal resistance R th (c-f) in case of greasing is 0.5°C/W. www.kersemi.com

Maximum On-State Characteristics On-State Current (A) On-State Voltage (V) Rated Surge On-State Current Surge On-State Current (A) Conduction Time (Cycles at 60Hz) Maximum Transient Thermal Impedance Characteristics (Junction to case) Transient Thermal Impedance (°C/W) Time (s) Gate Trigger Voltage vs. Junction Temperature Junction Temperature (°C) Gate Voltage (V) Gate Current (mA) Gate Trigger Current vs. Junction Temperature Junction Temperature (°C) Gate Characteristics 100 (%)Gate Trigger Current (Tj = t°C) Gate Trigger Current (Tj = 25°C) 100 (%)Gate Trigger Voltage (Tj = t°C) Gate Trigger Voltage (Tj = 25°C) 25 1 0 37 1 0 42 5 37 4 120 160 200 100 140 180 501 4 23 571 0 23 57 1 0 5 23 571 0 60–40 –60 0 20 40 80 100120 140 –20 23 57 23 57 2 35 7 2 35 –60 –40 –20 0 20 40 60 80 100 120 140 Tc = 125°C P GM = 5W P G(AV) = 0.5W V FGM = 6V V GT = 1V I FGM = 2A I GT = 10mA V GD = 0.2V Typical Example Typical Example www.kersemi.com

Maximum Average Power Dissipation (Single-Phase Half Wave) Average Power Dissipation (W) Average On-State Current (A) Allowable Case Temperature vs. Average On-State Current (Single-Phase Half Wave) Allowable Case Temperature vs. Average On-State Current (Single-Phase Full Wave) Allowable Case Temperature vs. Average On-State Current (Rectangular Wave) Case Temperature (°C)Case Temperature (°C)Case Temperature (°C) Average On-State Current (A) Maximum Average Power Dissipation (Single-Phase Full Wave) Average Power Dissipation (W) Average On-State Current (A) Average On-State Current (A) Average On-State Current (A) Maximum Average Power Dissipation (Rectangular Wave) Average Power Dissipation (W) Average On-State Current (A) 160 120 140 100 0 8 0 246 7 135 θ = 30° 60° 120° 90° 180° 0 16 0 4 8 12 1426 1 0 θ = 30° 60° 120° 90° 180° 0 16 0 4 8 12 1426 1 0 θ = 30° 60° 120° 90° 180° 160 120 140 100 0 16 0 48 1 2 1 426 θ = 30° 120° 180° 60° 90° 160 120 140 100 0 16 0 4 8 12 1426 θ = 30° 120° 180° DC 270° 90° 60° 0 16 0 4 8 12 1426 1 0 θ = 30° 60° 120° 90° 180° 270° DC θ 360° Resistive, inductive loads θ 360° Resistive, inductive loads θ θ 360° Resistive loads θ θ 360° Resistive loads θ 360° Resistive, inductive loads θ 360° Resistive, inductive loads www.kersemi.com

Breakover Voltage vs. Junction Temperature Junction Temperature (°C) 100 (%) Breakover Voltage (Tj = t°C) Breakover Voltage (Tj = 25°C) 100 (%) Holding Current (Tj = t°C) Holding Current (Tj = 25°C) Holding Current vs. Junction Temperature Junction Temperature (°C) Breakover Voltage vs. Rate of Rise of Off-State Voltage Rate of Rise of Off-State Voltage (V/µs) 100 (%) Breakover Voltage (dv/dt = vV/µs) Breakover Voltage (dv/dt = 1V/µs) 2310 571 0 23 57 1 0 23 57 1 0 160 100 120 140 160 120 140 100 0 160 0 40 80 120 14020 60 100 –60 –40 –20 0 20 40 60 80 100 120 140 –60 –40 –20 0 20 40 60 80 100 120 140 160 120 140 100 2310 571 0 23 57 1 0 23 57 1 0 –60 –40 –20 0 20 40 60 80 100 120 140 Turn-Off Time vs. Junction Temperature Turn-Off Time (µs) Junction Temperature (°C) Gate Trigger Current vs. Gate Current Pulse Width 100 (%)Gate Trigger Current (tw) Gate Trigger Current (DC) Junction Temperature (°C) 100 (%) Repetitive Peak Reverse Voltage (Tj = t°C) Repetitive Peak Reverse Voltage (Tj = 25°C) Gate Current Pulse Width (µs) Repetitive Peak Reverse Voltage vs. Junction Temperature Typical Example Typical Example Tj = 125°C Typical Example Distribution Typical Example V D = 300V, dv/dt = 20V/µs V R = 50V I T = 6A, – di/dt = 5A/µs Typical Example Typical Example www.kersemi.com

2.0 Cu alloy

Symbol Dimension in Millimeters Min Typ Max A A A b D E e x y y ZD ZE 10 ± 0.3 15 ± 0.314 ± 0.5 3 ± 0.33.6 ± 0.3 2.54 ± 0.25 1.1 ± 0.2 1.1 ± 0.2 0.75 ± 0.15 2.54 ± 0.25 6.5 ± 0.3 2.6 ± 0.2 4.5 ± 0.2 2.8 ± 0.2 0.75 ± 0.15 φ 3.2 ± 0.2 Note 1) The dimensional figures indicate representative values unless otherwise the tolerance is specified. Order Code Lead form Standard packing Quantity Standard order code Standard order code example Straight type Plastic Magazine (Tube) 50 Type name CR6KM-12A Lead form Plastic Magazine (Tube) 50 Type name – Lead forming code CR6KM-12A-A8 Note : Please confirm the specificat ion about the shipping in detail. www.kersemi.com