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VW 2x60 AC Controller Modules IRMS = 2x 60 A VRRM = 800-1600 V VRSM VDSM VV 800 1200 1400 1600 VRRM VDRM 800 1200 1400 1600 Type 1 2 5 4 45 12 VW2x60-08io1 VW2x60-12io1 VW2x60-14io1 VW2X60-16IO1 7 6 9 10 9 10 67 Symbol IRMS ITRMS ITAVM ITSM Test Conditions TC = 85C, 50 - 400 Hz (per phase) TVJ = TVJM TC = 85C; (180 sine) TVJ = 45C; VR = 0 TVJ = TVJM VR = 0 t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine Maximum Ratings 60 43 27 520 560 470 510 1350 1320 1100 1090 100 A A A A A A A A2s A2s A2s A2s A/ms Features q q q q q Thyristor controller for AC (circuit W2C acc. to IEC) for mains frequency Soldering connections for PCB mounting Isolation voltage 3600 V~ Planar passivated chips UL applied I2t TVJ = 45C VR = 0 TVJ = TVJM VR = 0 Applications q (di/dt)cr TVJ = TVJM repetitive, IT = 45 A f =50 Hz, tP =200 ms VD = 2/3 VDRM IG = 0.45 A non repetitive, IT = ITAVM diG/dt = 0.45 A/ms TVJ = TVJM; VDR = 2/3 VDRM RGK = ; method 1 (linear voltage rise) TVJ = TVJM IT = ITAVM tp = 30 ms tp = 300 ms q q 500 1000 10 5 0.5 10 -40...+125 125 -40...+125 A/ms V/ms W W W V C C C V~ V~ q Switching and control of three phase AC circuits Softstart AC motor controller Solid state switches Light and temperature control (dv/dt)cr PGM PGAVM VRGM TVJ TVJM Tstg VISOL Md Weight Advantages q q q Easy to mount with two screws Space and weight savings Improved temperature and power cycling 50/60 Hz, RMS IISOL 1 mA t = 1 min t=1s 3000 3600 Mounting torque (M5) typ. 2-2.5/18-22 Nm/lb.in. 35 g Data according to IEC 60747 refer to a single thyristor/diode unless otherwise stated. IXYS reserves the right to change limits, test conditions and dimensions (c) 2000 IXYS All rights reserved 1-3 739 VW 2x60 Symbol ID, IR VT VT0 rT VGT IGT VGD IGD IL IH tgd tq RthJC RthJK dS dA a Test Conditions TVJ = TVJM; VR = VRRM; VD = VDRM IT = 80 A; TVJ = 25C Characteristic Values 5 1.65 0.85 11 typ. 1.5 1.6 100 200 0.2 5 450 200 2 150 0.92 0.23 1.22 0.31 12.7 9.4 50 mA V V mW V V mA mA V mA mA 0.1 IGD, TVJ = 125C 3 10 V VG 1: IGT, TVJ = 125C 2: IGT, TVJ = 25C 3: IGT, TVJ = -40C For power-loss calculations only VD = 6 V; VD = 6 V; TVJ = TVJM; TVJ = 25C TVJ = -40C TVJ = 25C TVJ = -40C VD = 2/3 VDRM 1 1 2 5 4 6 TVJ = 25C; tP = 10 ms IG = 0.45 A; diG/dt = 0.45 A/ms TVJ = 25C; VD = 6 V; RGK = TVJ = 25C; VD = 1/2 VDRM IG = 0.45 A; diG/dt = 0.45 A/ms TVJ = TVJM; IT = 20 A, tP = 200 ms; di/dt = -10 A/ms VR = 100 V; dv/dt = 15 V/ms; VD = 2/3 VDRM per thyristor; DC per module per thyristor; DC per module Creeping distance on surface Creepage distance in air Max. allowable acceleration 4: PGAV = 0.5 W 5: PGM = 5 W 6: PGM = 10 W mA ms ms K/W K/W K/W K/W mm mm m/s2 10 1 10 100 1000 IG mA Fig. 1 Gate trigger characteristics 1000 TVJ = 25C s tgd 100 typ. Limit 1 10 100 Dimensions in mm (1 mm = 0.0394") IG mA 1000 Fig. 2 Gate trigger delay time 80 A 70 IT 60 50 TVJ = 25C 40 30 100 20 50 10 0 0.0 0 0.01 VW2x60 300 A TVJ = 125C TK = 85C 250 IRMS 200 TVJ =125C 150 0.5 1.0 1.5 VT V 2.0 0.1 1 t s 10 (c) 2000 IXYS All rights reserved 2-3 739 Fig. 3 Forward current versus voltage drop per leg Fig. 4 Rated RMS current versus time (360 conduction) VW 2x60 200 W 180 160 Ptot 140 120 100 80 60 40 20 0 0 10 20 30 40 50 IRMS 60 A 0 25 50 75 100 TA Circuit W3C2 1x VW2x60 125 C 150 100 RthKA K/W 0.2 0.5 1 1.5 2 3 5 500 A 400 ITSM 300 TVJ = 45C 50 Hz 80 % VRRM 200 TVJ = 125C 0 0.001 0.01 t 0.1 s 1 Fig. 5 Load current capability for two phase AC controller 200 W 180 160 Ptot 140 120 100 80 60 40 20 0 0 10 20 30 40 50 60 A 0 ITAVM 25 50 75 100 TA 125 C 150 Circuit B2C 2x VW2x60 RthKA K/W 0.2 0.5 1 1.5 2 3 5 Fig. 6 Surge overload current 10000 VR = 0V A2s It TVJ = 45C 2 1000 TVJ = 125C 100 1 t ms 10 Fig. 7 Power dissipation versus direct output current and ambient temperature cyclo converter, four quadrant operation 1.50 K/W 1.25 ZthJK 1.00 Constants for ZthJK calculation: Rthi / (K/W) ti / (s) 0.021 0.003 0.94 0.226 0.003 0.022 0.191 0.45 RthJK for various conduction angles: 30 DC Fig. 8 It versus time (per thyristor) 45 A 40 ITAVM 35 30 25 20 15 10 5 0 10 0 25 50 75 TC 739 DC 180 sin 120 60 30 0.75 0.50 RthJK / (K/W) 1.22 1.27 1.3 1.35 1.37 d: DC 180 120 60 30 0.25 0.00 0.001 0.01 0.1 1 t s 100 125 C Fig. 9 Transient thermal impedance junction to heatsink (per thyristor) (c) 2000 IXYS All rights reserved Fig. 10 Maximum forward current at case temperature 3-3 |
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