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IXYS MMO36-16IO1

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Description

IXYS 4569336 AC Controller Module

Part Number

MMO36-16IO1

Price

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Manufacturer

IXYS

Lead Time

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Category

PRODUCTS - M

Datasheet

pdf file

IXYS-MMO36-16IO1-datasheet-5453932391.pdf

78 KiB

Extracted Text

MLO 36 MMO 36 AC Controller Modules I = 39 A RMS V = 1200-1600 V RRM G1 MLO MMO MMO 36 V V Type K2 RSM RRM G1 K1 G1 K1 K1 V V DSM DRM G2 VV 1200 1200 MLO 36-12io1 MMO 36-12io1 1600 1600 MLO 36-16io1 MMO 36-16io1 K2 K2 G2 Symbol Test Conditions Maximum Ratings K1 = Cathode 1, G1 = Gate 1 K2 = Cathode 2, G2 = Gate 2 I T = 85�C, 50 - 400 Hz (for single controller) 39 A RMS K (MLO 36 has no G2 lead) I T = T 28 A TRMS VJ VJM I T = 85�C; (180� sine) 18 A TAVM K I T = 45�C; t = 10 ms (50 Hz), sine 360 A TSM VJ V = 0 t = 8.3 ms (60 Hz), sine 390 A R Features T = T t = 10 ms (50 Hz), sine 320 A VJ VJMThyristor controller for AC (circuit V = 0 t = 8.3 ms (60 Hz), sine 350 A R W1C acc. to IEC) for mains frequency 2 2I t T = 45�C t = 10 ms (50 Hz), sine 645 A s Direct copper bonded Al O -ceramic VJ 2 3 2 V = 0 t = 8.3 ms (60 Hz), sine 630 A s base plate R 2 Isolation voltage 3600 V~ T = T t = 10 ms (50 Hz), sine 510 A s VJ VJM 2 Planar passivated chips V = 0 t = 8.3 ms (60 Hz), sine 510 A s R UL registered, E 72873 (di/dt) T = T repetitive, I = 150 A 100 A/�scr VJ VJM T Long wire leads suitable for PC board f =50 Hz, t =200 �s P soldering V = 2/3 V D DRM I = 0.3 A non repetitive, I = I 500 A/�s G T TAVM Applications di /dt = 0.3 A/�sG Switching and control of single and three phase AC (dv/dt) T = T;V = 2/3 V 1000 V/�s cr VJ VJM DR DRM Softstart AC motor controller R = �; method 1 (linear voltage rise) GK Solid state switches P T = T t = 30 �s10W GM VJ VJM pLight and temperature control I = I t = 300 �s5W T TAVM p P 0.5 W Advantages GAVM Easy to mount with two screws V 10 V RGMSpace and weight savings T -40...+125 �C Improved temperature and power VJ T 125 �C cycling VJM T -40...+125 �C High power density stg V 50/60 Hz, RMS t = 1 min 3000 V~ ISOL I � 1 mA t = 1 s 3600 V~ ISOL M Mounting torque (M3) 0.7 � 0.1 Nm d (UNF 4-32) 6 � 0.9 lb.in. Weight typ. 15 g Data according to IEC 60747 and to a single thyristor/diode unless otherwise stated. IXYS reserves the right to change limits, test conditions and dimensions. © 2000 IXYS All rights reserved 1 - 3 MLO 36 MMO 36 Symbol Test Conditions Characteristic Values 10 1: I , T = 125°C GT VJ I , I T = T ; V = V ; V = V � 5mA 2: I , T = 25°C GT VJ R D VJ VJM R RRM D DRM V 3: I , T = -40°C GT VJ V I = 45 A; T = 25�C � 1.49 V V T T VJ G V For power-loss calculations only 0.85 V T0 r 15 m� T V V = 6 V; T = 25�C � 1.0 V 6 GT D VJ 1 3 T = -40�C � 1.15 V VJ 2 5 I V = 6 V; T = 25�C � 65 mA 4 GT D VJ 1 T = -40�C � 120 mA VJ I t = 50 �s, f = 60 Hz, I = I 6A GM p T TAVM 4: P = 0.5 W V T = T;V = 2/3 V � 0.2 V GAV GD VJ VJM D DRM 5: P = 1 W GM I � 1mA GD I , T = 125°C 6: P = 10 W GD VJ GM 0.1 I T = 25�C; t = 10 �s, V = 6 V � 150 mA L VJ P D 1 10 100 1000 mA I = 0.3 A; di /dt = 0.3 A/�s G G I G I T = 25�C; V = 6 V; R =�� � 100 mA Fig. 1 Gate trigger characteristics H VJ D GK t T = 25�C; V = 1/2 V � 2 �s gd VJ D DRM I = 0.3 A; di /dt = 0.3 A/�s 1000 G G T = 25°C VJ t T = T ; I = 11 A, t = 200 �s; -di/dt = 10 A/�s typ. 150 �s q VJ VJM T P μs V = 100 V; dv/dt = 10 V/�s; V = 2/3 V R D DRM t gd R per thyristor/diode; DC current 1.3 K/W thJC typ. Limit per module 0.65 K/W 100 R per thyristor/diode; DC current 1.5 K/W thJK per module 0.75 K/W d Creeping distance on surface 6 mm S d Creepage distance in air 6 mm A 2 10 a Max. allowable acceleration 50 m/s 1 10 100 mA 1000 I Dimensions in mm (1 mm = 0.0394") G MLO 36 MMO 36 Fig. 2 Gate trigger delay time 160 T = 125°C VJ A T = 85°C 140 K I RMS 120 100 80 60 40 20 MMO 36 MLO 36 0 0.01 0.1 1 s 10 t Fig. 3 Rated RMS current versus time (360° conduction) © 2000 IXYS All rights reserved 2 - 3 MLO 36 MMO 36 60 400 A 50 Hz W 80 % V 350 RRM 50 P tot 300 I TSM R K/W thKA 40 0.9 250 1.8 T = 45°C VJ 3 30 200 4.5 7.5 10.5 150 20 T = 125°C VJ 100 Circuit W1 10 1 x MMO 36 50 1 x MLO 36 0 0 0 25 50 75 100 125 °C 150 1 10 100 ms 1000 0 5 10 15 20 25 30 35 40 A t I T RMS A Fig. 5 Surge overload current Fig. 4 Load current capability for single phase AC controller I , I : Crest value, t: duration TSM FSM 180 1000 V = 0V W R 160 T = 45°C VJ 2 A s 140 P tot R K/W thKA 2 I t 0.3 120 T = 125°C 0.6 VJ 1 100 1.5 2.5 300 80 3.5 60 200 40 Circuit W3 3 x MMO 36 20 3 x MLO 36 0 100 0 5 10 15 20 25 30 35 40 A 0 25 50 75 100 125 15011 ms0 °C T I t A RMS 2 Fig. 6 Load current capability for three phase AC controller: 3xMMO 36/MLO 36 Fig. 7 I t versus time (1-10 ms) 2.0 30 Constants for A K/W Z calculation: 30° thJK 60° 25 I TAVM DC 1.6 R / (K/W) t / (s) thi i 120° Z 180° sin thJK 180° 0.017 0.008 120° DC 20 0.04 0.019 60° 1.143 0.16 1.2 30° 0.3 0.98 R for various thJK 15 conduction angles d : 0.8 R / (K/W) d : 10 thJK 1.5 DC 0.4 1.557 180° 5 1.579 120° 1.603 60° 1.616 30° 0.0 0 0.001 0.01 0.1 1 10 100 0 25 50 75 100 125 s °C t T K Fig. 8 Transient thermal impedance junction to heatsink Fig. 9 Maximum on-state current (per thyristor or diode) versus heatsink temperature © 2000 IXYS All rights reserved 3 - 3

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