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Mitsubishi FX Series FX2N128MT001

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FX2N128MT001

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The Mitsubishi FX2N128MT001 is a versatile combined digital input/output unit designed to handle multiple I/O tasks in automation applications. With a total capacity of 128 channels, it comprises 64 digital inputs and 64 digital outputs, utilizing transistor output technology.

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Technical specifications for FX2N128MT001

ManufacturerMitsubishi
Product LineFX Series
Part NumberFX2N128MT001
Weight3.00 lbs (1.36 kg)
Module TypeCombined digital input/output unit
Total I/O Capacity128 channels (64 inputs, 64 outputs)
Type of OutputTransistor
Voltage for Input Signals24V DC (+10%)
Current for Input Signal7 mA
ON-State Minimum Current4.5 mA
Operational Temperature Range0°C to 55°C
Power Input Voltage100V to 240V AC (+10%, -15%)
Power Interruption DurationUp to 10 ms
Power Supply Fuse Rating3A, 200V
Voltage Range for Output Load5V to 30V DC
Maximum Output Current per Point0.5 A
Processing Speed for Basic Instructions0.08 μs per cycle
Maximum Leakage at Output0.1 mA

The Mitsubishi FX2N128MT001 modular unit is crafted for efficient digital input and output management, making it an essential component in many automation settings. It supports a combined capacity of 128 channels comprising 64 inputs and 64 outputs, enabling comprehensive control functionality.

Inputs for this module accept a voltage of 24V DC with a tolerance of +10%. Each input requires 7 mA of current for proper operation. The ON-state minimum current is specified at 4.5 mA, ensuring adequate signaling. It is designed to function in operational temperatures between 0°C and 55°C, facilitating reliable performance across varying conditions.

As for power requirements, the module operates at an input voltage ranging from 100V to 240V AC, within the limits of +10% and -15%. It can maintain functionality for up to 10 ms during temporary power interruptions. For protection, it features a fuse rating of 3A at 200V.

The FX2N128MT001 provides an output voltage range from 5V to 30V DC, allowing it to accommodate different loads. Each output point can support a maximum current of 0.5 A. This unit demonstrates swift processing capabilities, achieving a speed of 0.08 μs per basic instruction cycle. For added reliability, the maximum leakage current at the output is capped at 0.1 mA, promoting efficient control without excessive energy loss.