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Mitsubishi FX Series FX3G60MTES

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FX3G60MTES

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The FX3G60MTES is a main control unit by Mitsubishi that is designed for automation and control systems. It features 60 total I/O points with 36 inputs and 24 outputs, utilizing a transistor output type for enhanced performance.

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Technical specifications for FX3G60MTES

ManufacturerMitsubishi
Product LineFX Series
Part NumberFX3G60MTES
Weight1.75 lbs (0.79 kg)
Input/Output Points60 (36 inputs, 24 outputs)
Power Supply TypeAC power supply
Input Type24V DC sink/source
Output TypeTransistor
Programming LanguageRelay symbol, ladder diagram, structured ladder, function block diagram, structured text, sequential function chart
Program Capacity32,000 steps
Max Input/Output Points128 points (256 points with AnyWireASLINK or CC-Link)
Operating Temperature0 to 55 degrees Celsius
Storage Temperature-25 to 75 degrees Celsius
Contact Instruction Processing Time210 ns
Power Supply Voltage100-240V AC
ProductMain unit

Mitsubishi's FX3G60MTES is an advanced main unit capable of processing complex control tasks. It comprises 60 input/output points, including 36 inputs and 24 outputs. The unit utilizes a 24V DC sink/source input type and transistor outputs to efficiently manage diverse operational requirements.

This module is powered by AC and accepts a voltage range of 100 to 240 volts. Its operational temperature range is 0 to 55 degrees Celsius, suiting a variety of environments. It can withstand temperatures between -25 to 75 degrees Celsius for storage, ensuring reliability in fluctuating conditions. Additionally, the contact instruction processing time is remarkably swift at 210 nanoseconds, which enhances system responsiveness.

The FX3G60MTES supports a program capacity of 32,000 steps, making it capable of handling intricate sequences easily. For expanded execution potential, it can accommodate a maximum of 128 input/output points; this capacity can be increased to 256 points when using AnyWireASLINK or CC-Link connections. The programming options provided include relay symbols, ladder diagrams, structured ladder logic, and function block diagrams, offering flexibility in system design and implementation.