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MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE CM50RL-24NF IC ..................................................................... 50A VCES ......................................................... 1200V Insulated Type 7-elements in a pack APPLICATION AC drive inverters & Servo controls, etc OUTLINE DRAWING & CIRCUIT DIAGRAM Dimensions in mm 11 7 13.62 40.78 12 35 12 A B U V W B (13.5) 32 6-M5 NUTS 10.75 (19.75) 12 22 23 12 23 12 23 12 12 (SCREWING DEPTH) 11.75 55 1 1 1 1 8 P 22 -0.5 16 23.2 +1 3 WP VP LABEL 120 106 0.5 17 17 2-5.5 MOUNTING HOLES UP CN N Housing Type of A and B (J.S.T.Mfg.Co.Ltd) A = B8P-VH-FB-B, B = B2P-VH-FB-B P UP-1 UP-2 B CN-7 CN-8 N CN-5 CN-6 U CN-3 CN-4 VP-1 VP-2 V WP-1 WP-2 W CN-1 CN-2 CIRCUIT DIAGRAM Jun. 2004 MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE ABSOLUTE MAXIMUM RATINGS (Tj = 25C) INVERTER PART Symbol VCES VGES IC ICM IE (Note 1) IEM (Note 1) PC (Note 3) Parameter Collector-emitter voltage Gate-emitter voltage Collector current Emitter current Maximum collector dissipation G-E Short C-E Short DC, TC = 94C*1 Pulse Pulse TC = 25C Conditions Ratings 1200 20 50 100 50 100 390 Unit V V A A A A W (Note 2) (Note 2) BRAKE PART Symbol VCES VGES IC ICM PC (Note 3) VRRM IFM Parameter Collector-emitter voltage Gate-emitter voltage Collector current Maximum collector dissipation Repetitive peak reverse voltage Forward current G-E Short C-E Short DC, TC = 104C*1 Pulse TC = 25C Clamp diode part Clamp diode part Conditions Ratings 1200 20 30 60 290 1200 30 Unit V V A A W V A (Note 2) (COMMON RATING) Symbol Tj Tstg Viso -- -- -- Parameter Junction temperature Storage temperature Isolation voltage Torque strength Weight Conditions Ratings -40 ~ +150 -40 ~ +125 2500 2.5 ~ 3.5 2.5 ~ 3.5 350 Unit C C V N*m N*m g Main Terminal to base plate, AC 1 min. Main Terminal M5 Mounting holes M5 Typical value Jun. 2004 MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE ELECTRICAL CHARACTERISTICS (Tj = 25C) INVERTER PART Symbol ICES VGE(th) IGES VCE(sat) Cies Coes Cres QG td(on) tr td(off) tf trr (Note 1) Qrr (Note 1) VEC(Note 1) Rth(j-c)Q Rth(j-c)R Rth(c-f) RG Parameter Collector cutoff current Gate-emitter threshold voltage Gate leakage current Collector-emitter saturation voltage Input capacitance Output capacitance Reverse transfer capacitance Total gate charge Turn-on delay time Turn-on rise time Turn-off delay time Turn-off fall time Reverse recovery time Reverse recovery charge Emitter-collector voltage Thermal resistance Contact thermal resistance External gate resistance Test conditions VCE = VCES, VGE = 0V IC = 5.0mA, VCE = 10V VGE = VGES, VCE = 0V IC = 50A, VGE = 15V VCE = 10V VGE = 0V VCC = 600V, IC = 50A, VGE = 15V VCC = 600V, IC = 50A VGE1 = VGE2 = 15V RG = 6.3, Inductive load switching operation IE = 50A IE = 50A, VGE = 0V IGBT part (1/6 module)*1 FWDi part (1/6 module)*1 Case to fin, Thermal compound Applied (1/6 module)*2 Tj = 25C Tj = 125C Min. -- 6 -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 6.3 Limits Typ. -- 7 -- 2.1 2.4 -- -- -- 250 -- -- -- -- -- 2 -- -- -- 0.085 -- Max. 1 8 0.5 3.0 -- 8.5 0.75 0.17 -- 100 50 300 350 100 -- 3.8 0.32 0.43 -- 96 Unit mA V A V nF nF nF nC ns ns ns ns ns C V C/W C/W C/W BRAKE PART Symbol ICES VGE(th) IGES VCE(sat) Cies Coes Cres QG VFM Rth(j-c)Q Rth(j-c)R RG Parameter Collector cutoff current Gate-emitter threshold voltage Gate leakage current Collector-emitter saturation voltage Input capacitance Output capacitance Reverse transfer capacitance Total gate charge Forward voltage drop Thermal resistance External gate resistance Test conditions VCE = VCES, VGE = 0V IC = 3.0mA VGE = VGES, VCE = 0V IC = 30A, VGE = 15V VCE = 10V VGE = 0V VCC = 600V, IC = 30A, VGE = 15V IF = 30A IGBT part*1 Clamp diode part*1 Tj = 25C Tj = 125C Min. -- 6 -- -- -- -- -- -- -- -- -- -- 10 Limits Typ. -- 7 -- 2.1 2.4 -- -- -- 150 -- -- -- -- Max. 1 8 0.5 3.0 -- 5.1 0.45 0.10 -- 3.8 0.43 0.65 100 Unit mA V A V nF nF nF nC V C/W C/W *1 : Tc measured point is just under the chips. If you use this value, Rth(f-a) should be measured just under the chips. *2 : Typical value is measured by using Shin-etsu Silicone "G-746". Note 1. IE, VEC, trr & Qrr represent characteristics of the anti-parallel, emitter to collector free-wheel diode (FWDi). 2. Pulse width and repetition rate should be such that the device junction temp. (Tj) does not exceed Tjmax rating. 3. Junction temperature (Tj) should not increase beyond 150C. 4. Pulse width and repetition rate should be such as to cause neglible temperature rise. Jun. 2004 MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE PERFORMANCE CURVES OUTPUT CHARACTERISTICS (TYPICAL) COLLECTOR CURRENT IC (A) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL) COLLECTOR-EMITTER SATURATION VOLTAGE VCE (sat) (V) 100 VGE = 20V 4 15 13 Tj = 25C 12 VGE = 15V 80 3 60 11 2 40 20 10 9 1 Tj = 25C Tj = 125C 0 0 20 40 60 80 100 0 0 2 4 6 8 10 COLLECTOR-EMITTER VOLTAGE VCE (V) COLLECTOR CURRENT IC (A) COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL) COLLECTOR-EMITTER SATURATION VOLTAGE VCE (sat) (V) FREE-WHEEL DIODE FORWARD CHARACTERISTICS (TYPICAL) 103 EMITTER CURRENT IE (A) 7 5 3 2 10 Tj = 25C 8 102 7 5 3 2 6 4 IC = 100A IC = 50A IC = 20A 0 6 8 10 12 14 16 18 20 101 7 5 3 2 2 Tj = 25C Tj = 125C 0 1 2 3 4 5 100 GATE-EMITTER VOLTAGE VGE (V) EMITTER-COLLECTOR VOLTAGE VEC (V) CAPACITANCE-VCE CHARACTERISTICS (TYPICAL) 102 CAPACITANCE Cies, Coes, Cres (nF) 7 5 3 2 7 5 3 2 7 5 3 2 7 5 3 2 HALF-BRIDGE SWITCHING CHARACTERISTICS (TYPICAL) 103 7 5 3 2 101 SWITCHING TIME (ns) tf td(off) td(on) tr Cies 102 7 5 3 2 100 Coes Cres 10-1 VGE = 0V 10-2 -1 10 2 3 5 7 100 2 3 5 7 101 2 3 5 7 102 COLLECTOR-EMITTER VOLTAGE VCE (V) Conditions: 101 VCC = 600V 7 5 VGE = 15V RG = 6.3 3 2 Tj = 125C Inductive load 100 0 10 23 5 7 101 2 3 5 7 102 COLLECTOR CURRENT IC (A) Jun. 2004 MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE REVERSE RECOVERY TIME trr (ns) REVERSE RECOVERY CURRENT lrr (A) NORMALIZED TRANSIENT THERMAL IMPEDANCE Zth (j-c) (ratio) REVERSE RECOVERY CHARACTERISTICS OF FREE-WHEEL DIODE (TYPICAL) 103 7 Conditions: 5 VCC = 600V VGE = 15V 3 RG = 6.3 2 Tj = 25C Inductive load 102 7 5 3 2 TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (IGBT part & FWDi part) 10-3 2 3 5 710-2 2 3 5 710-1 2 3 5 7 100 2 3 5 7 101 100 Single Pulse, 7 5 TC = 25C 3 Under the chip 2 10-1 7 5 3 2 10-1 7 5 3 2 Irr trr 101 0 10 2 3 5 7 101 2 3 5 7 102 IGBT part: 10-2 Per unit base = 7 5 Rth(j-c) = 0.32C/W FWDi part: 3 Per unit base = 2 Rth(j-c) = 0.43C/W 10-3 10-2 7 5 3 2 10-3 10-5 2 3 5 710-4 2 3 5 7 10-3 EMITTER CURRENT IE (A) TIME (s) SWITCHING LOSS vs. COLLECTOR CURRENT (TYPICAL) 101 7 SWITCHING LOSS vs. GATE RESISTANCE (TYPICAL) Conditions: VCC = 600V 5 VGE = 15V 3 IC = 50A Tj = 125C 2 Inductive load C snubber at bus 101 7 7 5 3 2 102 SWITCHING LOSS (mJ/pulse) 5 3 2 Esw(on) 100 7 Conditions: 5 10-1 0 10 VCC = 600V VGE = 15V 3 RG = 6.3 Tj = 125C 2 Inductive load C snubber at bus 2 3 5 7 101 2 3 5 7 102 SWITCHING LOSS (mJ/pulse) Esw(off) Esw(off) Esw(on) 100 0 10 2 3 5 7 101 2 3 5 7 102 COLLECTOR CURRENT IC (A) GATE RESISTANCE RG () RECOVERY LOSS vs. IE (TYPICAL) 101 7 RECOVERY LOSS vs. GATE RESISTANCE (TYPICAL) 102 7 RECOVERY LOSS (mJ/pulse) RECOVERY LOSS (mJ/pulse) 5 3 2 5 3 2 100 7 5 3 2 Err 10-1 0 10 Conditions: VCC = 600V VGE = 15V RG = 6.3 Tj = 125C Inductive load C snubber at bus 5 7 101 2 3 5 7 102 101 7 5 3 2 Conditions: VCC = 600V VGE = 15V IE = 50A Tj = 125C Inductive load C snubber at bus Err 2 3 100 0 10 2 3 5 7 101 2 3 5 7 102 EMITTER CURRENT IE (A) GATE RESISTANCE RG () Jun. 2004 MITSUBISHI IGBT MODULES CM50RL-24NF HIGH POWER SWITCHING USE GATE CHARGE CHARACTERISTICS (TYPICAL) 20 GATE-EMITTER VOLTAGE VGE (V) IC = 50A VCC = 400V 16 VCC = 600V 12 8 4 0 0 100 200 300 400 GATE CHARGE QG (nC) Jun. 2004 |
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