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The FX1S14MTDK model from Mitsubishi's FX Series functions as a main unit in industrial automation systems. It operates efficiently at a power supply voltage of 24 volts DC and features a robust memory type of EEPROM.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | FX Series |
| Part Number | FX1S14MTDK |
| Weight | 10.00 lbs (4.54 kg) |
| Memory Type | EEPROM |
| Power Supply Voltage | 24 Volts DC |
| Ambient Operating Temperature | 0 to 55°C |
| Number of Inputs | 8 digital inputs |
| Built-in Program Steps Capacity | 2000 steps |
| Output Type | Transistor output |
| Rated Output Current | 0.5 Amps per point with resistive load |
| Output Response Time | Less than 0.2 milliseconds |
| Number of Outputs | 6 digital outputs |
| Input Isolation Type | Photocoupler |
| Unit Type | Main unit |
| Output Isolation Type | Photocoupler |
| Inductive Load | 12 watts at 24 Volts DC |
| Storage Temperature | -20 to 70°C |
The FX1S14MTDK from Mitsubishi stands as a component in the FX Series, serving as a main unit designed for various control tasks. This unit requires a supply voltage of 24 volts DC to function optimally. It is equipped with EEPROM memory for reliable data retention. Operating effectively in temperatures from 0 to 55°C, it ensures stable performance in standard industrial settings and can withstand storage temperatures between -20 to 70°C.
This main unit integrates 8 digital inputs alongside 6 digital outputs, all controlled through a transistor output configuration. Each output can carry a rated current of 0.5 amps with a resistive load, ensuring adequate power distribution for connected devices. The output response time is recorded at less than 0.2 milliseconds, allowing for quick reaction to control commands.
For enhanced operational safety, the input and output circuits are isolated using photocoupler technology, providing protection against electrical interference. This unit also supports an inductive load capacity of 12 watts at 24 volts DC, making it suitable for diverse application requirements. The built-in program steps capacity is set at 2000 steps, enabling varied control logic and sequencing procedures to be easily implemented.