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6MBP15RH060 IGBT-IPM R series s Features * Low power loss and soft switching * High performance and high reliability IGBT with overheating protection * Higher reliability because of a big decrease in number of parts in built-in control circuit IGBT Modules 600V / 15A / 6 in one-package s Applications * Inverter for motor drive * AC and DC servo drive amplifier * UPS (Uninterruptible power supply) s Maximum ratings and characteristics q Absolute maximum ratings (Tc=25C unless otherwise specified) Item DC bus voltage DC bus voltage (Surge) DC bus voltage (Short operating) Collector-Emitter voltage Collector current Symbol VDC VDC (surge) VSC VCES IC ICP -IC PC Tj VCC Vin Iin VALM IALM Tstg Tcop Viso Mounting (M4) Rating 450 500 400 600 15 30 15 40 150 -0.3 to 20 Vz 1 Vcc 15 -40 to 125 -20 to 100 AC 2500 2.0 Unit V V V V A A A W C V V mA V mA C C V N*m Collector power dissipation Junction temperature Input voltage of power supply for pre-driver Input signal voltage Input singal current Alarm signal voltage Alarm signal current Storage temperature Operating case temperature Isolating voltage (Terminal to base, 50/60Hz sine wave 1min.) Screw torque DC 1ms Duty=44.1% One transistor q Electrical characteristics of power circuit (Tc=Tj=25C, Vcc=15V) Item Symbol Condition Collector current at off signal input ICES VCE=600V, Vin open Collector-Emitter saturation voltage VCE (sat) Ic=15A Forward voltage of FWD VF -Ic=15A Min. - - - Typ. - - - Max. 1.0 2.7 3.5 Unit mA V V 6MBP15RH060 q Electrical characteristics of control circuit (Tc=Tj=25C, Vcc=15V) Item Power supply current of P-line pre-driver (one unit) Power supply current of N-line pre-driver Input signal threshold voltage Input zener voltage IGBT chips overheat protection temperature level Hysteresis Collector current protection level OC detecting resistance value Protection delay time Undervoltage protection level Hysteresis Alarm signal hold time Symbol ICCP ICCN VIn (th) VZ TjoH TjH IOC VOC ROC tDOC VUV VH tALM Condition Vin=H Vin=H Turn-on Turn-off Rin=20k Surface of IGBT N-side, (N1-N2 open) Between N1 and N2 Tj=25C Fig. 1, Fig. 2 Min. - - 1.00 1.25 - 150 - 21 190 - - 11.0 0.2 1.0 Typ. IGBT Modules Max. 5.0 10.0 1.70 1.95 - - - 33 210 - 7.0 12.5 0.8 - Unit mA mA V V V C C A mV m s V V ms 2.0 4.0 1.35 1.60 8.0 - 20 27 200 7.5 5.0 - - 2.0 q Switching characteristics (Tc=Tj=25C, Vcc=15V) Item Switching time (IGBT) See Fig. 3 Switching time (FWD) Symbol ton toff trr Condition Ic=15A, VDC=300V Inductive-Load Min. 0.5 - - Typ. - - - Max. - 3.5 0.5 Unit s s s Fig.2 Definition of tsc Fig.1 Definition of OC delay time Fig.3 Definition of switching time q Thermal characteristics (Tc=Tj=25C, Vcc=15V) Item Junction to case thermal resistance IGBT FWD Case to fin thermal resistance with compound q Recommendable value Item DC bus voltage Operating power supply voltage range of pre-drive Switching frequency Flatness of heat sink Mounting screw torque (M4) Symbol Rth (j-c) Rth (j-c) Rth (c-f) Min. - - - Typ. - - 0.05 Max. 3.1 5.4 - Unit C/W C/W C/W Symbol VDC VCC fsw - - Min. 200 13.5 1 -100 1.3 Typ. - 15 - - - Max. 400 16.5 20 100 1.7 Unit V V kHz m N*m 6MBP15RH060 s Block diagram IGBT Modules Pre-driver 1 includes following functions. (P-side) * Amplifier for drive * Power supply undervoltage protection * IGBT chip overheating protection Pre-driver 2 includes following functions. (N-side) * Amplifier for drive * Power supply undervoltage protection * IGBT chip overheating protection * Overcurrent protection * Alarm signal output s Outline drawings, mm 641 50.80.8 7.62 2.54 7.62 0.3 7.62 2.54 2-o4.50.3 1 4 7 10 15 31.50.8 16.50.8 P U V W N1 N2 57.60.8 8 0.6 12.3 20.1 13.8 4.1 13.8 12.3 8.2 5 20.1 0.6 100.5 16.50.5 600.3 701 46.51 Shows theory dimensions Mass : 50g 6MBP15RH060 s Characteristics (Representative) IGBT Modules Collector current vs. Collector-emitter voltage Collector current vs. Collector-emitter voltage Switching losses vs. Collector current Switching losses vs. Collector current Switching time vs. Collector current Switching time vs. Collector current 6MBP15RH060 IGBT Modules Forward voltage vs. Forward current Forward voltage vs. Forward current Transient thermal resistance Power supply current vs. Switching frequency Overcurrent protection vs. Case temperature |
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