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7MBR150VR060-50

7MBR150VR060-50

  • 厂商:

    FUJI(富士电机)

  • 封装:

  • 描述:

    7MBR150VR060-50 - IGBT MODULE - Fuji Electric

  • 数据手册
  • 价格&库存
7MBR150VR060-50 数据手册
7MBR150VR060-50 IGBT MODULE (V series) 600V / 150A / PIM Features Low VCE(sat) Compact Package P.C.Board Mount Module Converter Diode Bridge Dynamic Brake Circuit RoHS compliant product IGBT Modules Applications Inverter for Motor Drive AC and DC Servo Drive Amplifier Uninterruptible Power Supply Maximum Ratings and Characteristics Absolute Maximum Ratings (at Tc=25°C unless otherwise specified) Items Collector-Emitter voltage Gate-Emitter voltage Inverter Collector current Collector power dissipation Collector-Emitter voltage Gate-Emitter voltage Brake Collector current Collector power dissipation Repetitive peak reverse voltage (Diode) Repetitive peak reverse voltage Average output current Surge current (Non-Repetitive) I2t (Non-Repetitive) Symbols VCES VGES Ic Icp -Ic -Ic pulse Pc VCES VGES IC ICP PC VRRM VRRM IO IFSM I2 t Tj Tjop Tc Tstg AC : 1min. M5 Conditions Maximum ratings 600 ±20 150 300 150 300 485 600 ±20 75 150 300 600 800 150 700 2450 175 150 150 150 125 -40 to +125 2500 3.5 Units V V A W V V A W V V A A A2 s Continuous 1ms 1ms 1 device Tc=80°C Tc=80°C Continuous 1ms 1 device Tc=80°C Tc=80°C Converter 50Hz/60Hz, sine wave 10ms, Tj=150°C half sine wave Inverter, Brake Converter Inverter, Brake Converter Junction temperature Operating junciton temperature (under switching conditions) Case temperature Storage temperature Isolation voltage Screw torque °C between terminal and copper base (*1) Viso between thermistor and others (*2) Mounting (*3) - VAC Nm Note *1: All terminals should be connected together during the test. Note *2: Two thermistor terminals should be connected together, other terminals should be connected together and shorted to base plate during the test. Note *3: Recommendable value : 2.5-3.5 Nm (M5) 1 7MBR150VR060-50 Electrical characteristics (at Tj= 25°C unless otherwise specified) Items Zero gate voltage collector current Gate-Emitter leakage current Gate-Emitter threshold voltage Symbols I CES I GES VGE (th) VCE (sat) (terminal) Collector-Emitter saturation voltage VCE (sat) (chip) Inverter Input capacitance Turn-on time Turn-off time Cies ton tr tr (i) toff tf VF (terminal) Forward on voltage VF (chip) Reverse recovery time Zero gate voltage collector current Gate-Emitter leakage current trr I CES I GES VCE (sat) (terminal) Brake Collector-Emitter saturation voltage VCE (sat) (chip) Turn-on time Turn-off time Reverse current Thermistor Converter Forward on voltage Reverse current Resistance B value ton tr toff tf IRRM VFM (chip) IRRM R B VGE = 15V I C = 75A VCE = 300V I C = 75A VGE = +15 / -15V RG =30Ω VR = 600V I F = 150A VR = 800V T = 25°C T = 100°C T = 25 / 50°C terminal chip I F = 150A I F = 150A VGE = 0V VCE = 600V VCE = 0V VGE = +20 / -20V VGE = 15V I C = 75A Tj=25°C Tj=125°C Tj=150°C Tj=25°C Tj=125°C Tj=150°C Conditions VGE = 0V, VCE = 600V VGE = 0V, VGE = ±20V VCE = 20V, I C = 50mA Tj=25°C Tj=125°C Tj=150°C Tj=25°C VGE = 15V Tj=125°C I C = 150A Tj=150°C VCE = 10V, VGE = 0V, f = 1MHz VGE = 15V I C = 150A VCC = 300V I C = 150A VGE = +15 / -15V R G = 9Ω Tj=25°C Tj=125°C Tj=150°C Tj=25°C Tj=125°C Tj=150°C IGBT Modules I F = 150A Characteristics min. typ. max. 1.0 200 6.2 6.7 7.2 2.25 2.70 2.55 2.65 1.60 2.05 1.90 2.00 9.7 0.36 1.20 0.25 0.60 0.07 0.52 1.20 0.03 0.45 2.25 2.70 2.15 2.10 1.60 2.05 1.50 1.45 0.35 465 3305 1.95 2.25 2.35 1.60 1.90 2.00 0.36 0.25 0.52 0.03 1.90 1.25 5000 495 3375 1.0 200 2.30 2.05 1.20 0.60 1.20 0.45 1.00 2.35 1.0 520 3450 Units mA nA V V nF µs V µs mA nA V µs mA V mA Ω K Thermal resistance characteristics Items Symbols Conditions Inverter IGBT Inverter FWD Brake IGBT Converter Diode with Thermal Compound Characteristics min. typ. max. 0.31 0.60 0.50 0.47 0.05 Units Thermal resistance (1device) Contact thermal resistance (1device) (*4) Rth(j-c) Rth(c-f) °C/W Note *4: This is the value which is defined mounting on the additional cooling fin with thermal compound. 2 7MBR150VR060-50 Characteristics (Representative) [ Inverter ] Collector current vs. Collector-Emitter voltage (typ.) Tj= 25oC / chip 300 VGE=20V 250 200 150 100 50 0 0 1 2 3 4 5 10V 15V 300 12V VGE=20V 15V 250 200 150 100 50 0 0 1 2 3 4 IGBT Modules [ Inverter ] Collector current vs. Collector-Emitter voltage (typ.) Tj= 150oC / chip Collector current: IC [A] Collector current: IC [A] 12V 10V 8V 8V 5 Collector-Emitter voltage: VCE[V] [ Inverter ] Collector current vs. Collector-Emitter voltage (typ.) VGE=15V / chip 300 Tj=25°C 250 Tj=125°C 200 150 100 50 0 0 1 2 3 4 5 Tj=150°C Collector-Emitter voltage: VCE[V] [ Inverter ] Collector-Emitter voltage vs. Gate-Emitter voltage (typ.) Tj= 25oC / chip 8 Collector - Emitter voltage: VCE [V] Collector current: IC [A] 6 4 2 Ic=300A Ic=150A Ic=75A 0 5 10 15 20 25 Collector-Emitter voltage: VCE[V] [ Inverter ] Capacitance vs. Collector-Emitter voltage (typ.) VGE=0V, f= 1MHz, Tj= 25oC Capacitance: Cies, Coes, Cres [nF] 100.0 Cies 10.0 Gate - Emitter voltage: VGE [V] [ Inverter ] Dynamic gate charge (typ.) Vcc=300V, Ic=150A, Tj= 25°C Collector - Emitter voltage: VCE [200V/div] Gate - Emitter voltage: VGE [5V/div] VGE 1. 0 Cres Coes 0. 1 VCE 0. 0 0 10 20 30 0 200 400 600 800 1000 Collector - Emitter voltage: VCE [V] Gate charge: Qg [nC] 3 7MBR150VR060-50 IGBT Modules [ Inverter ] Switching time vs. Collector current (typ.) Vcc=300V, VGE=±15V, Rg=9Ω, Tj= 125°C Switching time : ton, tr, toff, tf [ nsec ] Switching time : ton, tr, toff, tf [ nsec ] 10000 [ Inverter ] Switching time vs. Collector current (typ.) Vcc=300V, VGE=±15V, Rg=9Ω, Tj= 150°C 10000 1000 toff ton 1000 toff tr ton tr 100 tf 100 tf 10 0 100 200 300 400 10 0 100 Collector current: IC [A] [ Inverter ] Switching time vs. gate resistance (typ.) Vcc=300V, Ic=150A, VGE=±15V, Tj= 125°C Switching time : ton, tr, toff, tf [ nsec ] 10000 toff ton tr 1000 Collector current: IC [A] 200 300 400 [ Inverter ] Switching loss vs. Collector current (typ.) Vcc=300V, VGE=±15V, Rg=9Ω Switching loss : Eon, Eoff, Err [mJ/pulse ] 25 20 Eon(150°C) Eon(125°C) 15 Eoff(150°C) Eoff(125°C) 100 tf 10 5 Err(150°C) Err(125°C) 0 100 200 300 400 10 1.0 10.0 100.0 1000.0 0 Gate resistance : Rg [Ω] [ Inverter ] Switching loss vs. gate resistance (typ.) Vcc=300V, Ic=150A, VGE=±15V Switching loss : Eon, Eoff, Err [mJ/pulse ] 40 Eon(150°C) Eon(125°C) 30 Collector current: IC [A] [ Inverter ] Reverse bias safe operating area (max.) +VGE=15V,-VGE = 9Ω ,Tj
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