MCO450 IXYS | Alldatasheet

Document overview

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Technical content

Features

G Direct copper bonded Al2O 3 -ceramic with copper base plate G Planar passivated chips G Isolation voltage 3600 V~ G UL applied G Keyed gate/cathode twin pins

Applications

G Motor control, soft starter G Power converter G Heat and temperature control for industrial furnaces and chemical processes G Lighting control G Solid state switches Advantages G Improved temperature and power cycling G Reduced protection circuits 4.5-7/40-62 11-13/97-115 650 VRSM VRRM Type VDSM VDRM VV 2100 2000 MCO 450-20io1 2300 2200 MCO 450-22io1 MCO 450 High Power Single Thyristor Module 35 4 2 3 2 54 030

© 2000 IXYS All rights reserved 2 - 4 MCO 450 300 400 0.25 300 350 50 500 10 Symbol Test Conditions Characteristic Values IRRM TVJ = TVJM ; VR = VRRM mA VT IT =A ; T VJ = 25/G176CV VT0 For power-loss calculations only (TVJ = TVJM )V rT m /G87 VGT VD = 6 V; TVJ = 25/G176CV TVJ = -40/G176CV IGT VD = 6 V; TVJ = 25/G176Cm A TVJ = -40/G176Cm A VGD TVJ = TVJM ;V D = 2/3 VDRM V IGD TVJ = TVJM ;V D = 2/3 VDRM mA IL TVJ = 25/G176C; VD = 6 V; tP = /G109sm A diG /dt = A//G109s; IG = 1 A IH TVJ = 25/G176C; VD = 6 V; RGK = /G165 mA tgd TVJ = 25/G176C; VD = 1/2 VDRM /G109s diG /dt = A/ /G109s; IG = A tq TVJ = TVJM ; VR = 100 V; VD = 2/3 VDRM ; tP = 200 /G109s typ. /G109s dv/dt = V/ /G109s; IT = A; -di/dt = A/ /G109s R thJC DC current K/W R thJK DC current K/W dS Creep distance on surface mm dA Strike distance in air mm a Maximum allowable acceleration m/s 2 30 400 600 1.15 0.77 0.42 12.7 9.6 0.072 0.096 Dimensions in mm (1 mm = 0.0394") 0.01 0.1 1 10 100 10-3 10-2 10-1 100 101 102 0.1 IG VG A A IG 1: IGT , TVJ = 130°C 2: IGT , TVJ = 25°C 3: IGT , TVJ = -40°C µs tgd V 4: PGM = 20 W 5: PGM = 60 W 6: PGM = 120 W IGD , TVJ = 130°C 1 5 Limittyp. TVJ = 25°C Fig. 1 Gate trigger characteristics Fig. 2 Gate trigger delay time Optional accessories for modules Keyed Gate/Cathode twin plugs with wire length = 350 mm, gate = yellow, cathode = red UL 758, style 1385, File E 38136, CSA class 5851, guide 460-1-1, appl. 41234Type ZY 180 L (L = Left for pin pair 4/5)

© 2000 IXYS All rights reserved 3 - 4 MCO 450 Fig. 6 Power dissipation versus on- state current and ambient temperature Fig. 3 Surge overload current I TSM : Crest value, t: duration Fig. 4 I2t versus time (1-10 ms) Fig. 5 Maximum forward current at case temperature Fig. 7 Three phase rectifier bridge: Power dissipation versus direct output current and ambient temperature 0 300 600 900 1200 500 1000 1500 2000 2500 3000 3500 4000 0.001 0.01 0.1 1 2000 4000 6000 8000 10000 12000 14000 0 200 400 600 800 200 400 600 800 1000 0 25 50 75 100 125 150 11 0 105 106 107 0 25 50 75 100 125 150 I2t ITAVM IdAVM A TA TC s t ms t A2s 0 25 50 75 100 125 150 100 200 300 400 500 600 700 800 80 % VRRM TVJ = 45°C 50 Hz TVJ = 130°C TVJ = 130°C TVJ = 45°C ITAVM W Ptot A °C RthKA K/W 0.03 0.07 0.12 0.2 0.3 0.4 0.6 6xMCO450 Circuit TA R thKA K/W 180° sin 120° 60° 30° DC 180° sin 120° 60° 30° DC VR = 0VITSM A A 0.01 0.02 0.03 0.045 0.06 0.08 0.12 Ptot W

© 2000 IXYS All rights reserved 4 - 4 MCO 450 Fig.10 Transient thermal impedance junction to heatsink 0 300 600 900 500 1000 1500 2000 2500 3000 3500 4000 t ZthJK s t 10-3 10-2 10-1 100 101 102 0.00 0.02 0.04 0.06 0.08 0.10 0.12 0.14 K/W ZthJC IRMS Ptot 0 25 50 75 100 125 150A 6xMCO450 Circuit 10-3 10-2 10-1 100 101 102 0.00 0.02 0.04 0.06 0.08 0.10 0.12 DC 180° 120° 60° 30° DC 180° 120° 60° 30° TA W K/W s R thKA K/W 0.01 0.02 0.03 0.045 0.06 0.08 0.12 Fig. 9 Transient thermal impedance junction to case Fig. 8 Three phase AC-controller: Power dissipation versus RMS output current and ambient temperature R thJC for various conduction angles d: d R thJC (K/W) DC 0.072 180/G176 0.0768 120/G176 0.081 60/G176 0.092 30/G176 0.111 Constants for ZthJC calculation: iR thi (K/W) t i (s) 1 0.0035 0.0054 2 0.0186 0.098 3 0.0432 0.54 4 0.0067 12 R thJK for various conduction angles d: d R thJK (K/W) DC 0.096 180/G176 0.1 120/G176 0.105 60/G176 0.116 30/G176 0.135 Constants for ZthJK calculation: iR thi (K/W) t i (s) 1 0.0035 0.0054 2 0.0186 0.098 3 0.0432 0.54 4 0.0067 12 5 0.024 12