GCU04AA-130 MITSUBISHI | Alldatasheet
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Mar. 2004 MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE GCU04AA-130 OUTLINE DRAWING Dimensions in mm APPLICATION Current source inverters, DC choppers, Induction heaters, DC to DC converter G Symmetrical GCT unit G GCT and gate driver are connected (5) (37) 80±0.5 9MAX (20) 1 2 20±1V (R39.5) φ38±0.2 (68) (77) 6±0.5 6±0.5 6±0.56±0.5 160MIN (120) (190) (208) (104) (170) (20) (170) (220) 20MAX TPG TPK LED3 LED4 DE1 DE2 LED1 LED2 φ38±0.2 20V POWER SUPPL Y INPUT (MSTB2.5/2-G-5.08AU) FAULT SIGNAL OUTPUT (HFBR-1521) FIBER OPTIC INPUT (HFBR-2521) LED1 : GATE OFF (RED) LED2 : GATE ON (YELLOW) LED3 : G-K OK (GREEN) LED4 : POWER SUPPLY OK (GREEN) GATE TEST POINT CATHODE TEST POINT
Mar. 2004 On-state voltage Repetitive peak reverse current Repetitive peak off-state current Reverse gate current Critical rate of rise of off-state voltage Turn-on time Turn-on delay time Turn-on switching energy Storage time Turn-off switching energy Reverse recovery charge Reverse recovery energy Gate trigger current Gate trigger voltage 3000 V TM IRRM IDRM IGRM dv/dt tgt td Eon ts Eoff Q RR Erec IGT VGT UnitSymbol VRRM VRSM VDRM VDSM V(LTDS) Parameter V V V V V Voltage class 6500 6500 6500 6500 3600 Repetitive peak reverse voltage Non-repetitive peak reverse voltage Repetitive peak off-state voltage Non-repetitive peak off-state voltage Long term DC stability voltage MAXIMUM RATINGS MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE GCT PART Conditions Gate driver energized Gate driver energized Gate driver energized, λ = 100 Fit 280 180 2.8 3.3 × 104 1000 250 400 Applied for all condition angles f = 60Hz, sinewave θ = 180°, Tf = 55°C VDM = 4000V, VD = 3000V, LC = 0.3µH Tj = 25/125°C (See Fig. 1, 3) VD = 3000V, IT = 400A, CS = 0.06µF, RS = 15Ω Tj = 25/125°C, f = 60Hz (See Fig. 1, 2) IT = 400A, VR = 3000V, Tj = 25/125°C C S = 0.06µF, RS = 15Ω (See Fig. 4, 5) One half cycle at 60Hz, Tj = 125°C start Ratings A A kA A2s A/µs kW kW W W V V A A RMS on-state current Average on-state current Surge on-state current Current-squared, time integration Critical rate of rise of reverse recovery current Peak forward gate power dissipation Peak reverse gate power dissipation Average forward gate power dissipation Average reverse gate power dissipation Peak forward gate voltage Peak reverse gate voltage Peak forward gate current Peak reverse gate current IT(RMS) IT(AV) ITSM I2t diR/dt PFGM PRGM PFG(AV) PRG(AV) VFGM VRGM IFGM IRGM Symbol Parameter Conditions Unit diT/dt Critical rate of rise of on-state current 1000 A/µs V mA mA mA V/µs µs µs J/P µs J/P µC J/P A V
ELECTRICAL CHARACTERISTICS
Symbol Parameter Conditions Limits Min Typ Max Unit 7.5 150 100 0.7 2.9 1600 4.1 0.35 1.5 I T = 400A, Tj = 125°C VRM = 6500V, Tj = 125°C VDM = 6500V, Tj = 125°C, Gata driver energized VRG = 21V, Tj = 125°C VD = 3000V, Tj = 125°C Gate driver energized (Expo. wave) IT = 400A, VD = 3000V, di/dt = 1000A/µs C S = 0.06µF, RS = 15Ω , Tj = 125°C (See Fig. 1, 2) IT = 400A, VDM = 4000V, VD = 3000V C S = 0.06µF, RS = 15Ω , Tj = 125°C (See Fig. 1, 5) VR = 3000V, IT = 400A, di/dt = 1000A/µs C S = 0.06µF, RS = 15Ω , Tj = 125°C (See Fig. 4, 5) VD = 24V, RL = 0.1Ω , Tj = 25°C DC method ITQRM Repetitive controllable on-state current 400 A
Mar. 2004 MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE Power supply voltage Gate power consumption Delay time of on gate current Delay time of off gate current Control signal Power supply connector Status signal DC power supply IT = 230Arms, f = 780Hz, duty = 0.33 Ta = 25°C Ta = 25°C Optical fiber data link Transmitter : HFBR-1521 : Agilent Receiver : HFBR-2521 : Agilent Phoenix contact Type name : MSTB25/2-G-508AU V GIN PGIN tfd trd V W µs µs GATE DRIVER PART Symbol Parameter Conditions Limits Min Typ Max Unit 3.0 3.0 (Note 1) Mounting force Weight Pole piece diameter (GTC device) Housing thickness (GTC device) ±0.2mm ±0.5mm FM kN g mm mm Symbol Parameter Conditions Limits Min 7.3 Typ 8.6 700 Max Unit MECHANICAL DATA Junction operating temperature Storage temperature Ambient operation temperature Thermal resistance Recommend : ≤ 40°C Junction to Fin Tj Tstg Ta R t(j-f) K/W Symbol Parameter Conditions Limits Min –10 –10 –10 Typ Max 125 0.04 Unit THERMAL DATA
Mar. 2004 Fig. 1 Turn-on and Turn-off waveform Fig. 2 Turn-on test circuit Fig. 3 Turn-off test circuit (With clamp circuit) Fig. 5 Turn-off and Reverse recovery test circuitFig. 4 Reverse recovery waveform MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE td ; 0VRG ~ 0.9VD tgt ; 0VRG ~ 0.1VD ts ; 0VRG ~ 0.9IT diG /dt ; 0.1IGM ~ 0.9IGM tw ; 0VRG ~ 0.9IGM diGQ /dt ; 0.1IRG ~ 0.9IRG tfd ; 50% on signal ~ 0VRG trd ; 50% off signal ~ 0VRG Integration area for Eoff ; 5%VD ~ until 100µs VD VRG IGM ts VRG IT VD diGQ /dt diG /dt IGQ IG tgt td tfd trd Control signal tw t(Eoff) = 100µs DUT L VD Rs Cs Rc L (load) FWDi DUT CDi Cc VD Lc ANL 90%IRM VRM trr IT 50%IRM VR Q RR = (trr×IRM )/2 Integration area for Erec ; 0IT ~ until 100µs[] di/dt (0 ~ 50%IRM ) t(Erec) = 100µs 50%IT Cs Cs L (load) DUT DUT VD Rs Rs ANL
Mar. 2004 Note 1. Status signal 1. Status signal from LED (1) Status signal Status of GCT On state Off state LED 1 (Red) LED 2 (Yellow) OFF ON ON OFF 2. Status signal from Transmitter (L : Light NL : No light) Control signal (GDU input) Status signal (GDU output) Control signal (Control board) NL L L L NL NL Control signal (GDU input) Status signal (GDU output) Control signal (Control board) L Normal Fault L NL L L NL NL Control signal (GDU input) Status signal (GDU output) Control signal (Control board) L NL Normal Fault L NL L NL (Always No light) (Always light) L L NL NL Control signal (GDU input) Status signal (GDU output) Control signal (Control board) (1) Normal operation (3) Fault signal (G-K short) (2) Fault signal (O/V or U/V) (4) Fault signal (fiber optic) MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE 20±1V Voltage down 20±1V Voltage down Normal Normal G-K short G-K short Normal Fault Fault Fault PS LED (LED 4) (Green) G-K LED (LED 3) (Green) (2) Fault signal Status G-K Power Supply On Off Off Off On Off On Off
Mar. 2004 PERFORMANCE CURVES MITSUBISHI GCT (Gate Commutated Turn-off) THYRISTOR UNIT GCU04AA-130 HIGH POWER INVERTER USE PRESS PACK TYPE MAXIMUM ON-STATE CHARACTERISTIC ON-STATE CURRENT I T (A) ON-STATE VOLTAGE V TM (V) TURN ON SWITCHING ENERGY E on (J/P) TURN ON CURRENT I T (A) Eon VS IT (Max) TURN OFF SWITCHING ENERGY E off (J/P) TURN OFF CURRENT I T (A) Eoff VS IT (Max) MAXIMUM THERMAL IMPEDANCE CHARACTERISTIC (JUNCTION TO FIN) Zth (K/W) TIME (S) REVERSE RECOVERY ENERGY Erec (J/P) ON-STATE CURRENT I T (A) Erec VS IT (Max) 101 012345 7 69 81 0 103 102 1.0 5000 0.8 0.6 0.4 0.2 0.0 400300200100 CONDITION VD =3000V, Tj=125°C di/dt=1000A/µs Cs=0.06µF, Rs=15Ω 3.5 2.5 1.5 0.5 100 200 300 400 500 CONDITION VD =3000V, VDM =V D +2.5×IT Tj=125°C, Cs=0.06µF Rs=15Ω 100 200 300 400 500 CONDITION VR =3000V, Tj=125°C di/dt=1000A/µs Cs=0.06µF, Rs=15Ω 0.000 0.050 0.060 0.030 0.040 0.020 0.010 Tj=125°C Tj=25°C 10–2 10–12 35 7 1002 35 7 1012 35 710–3 2 35 7