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The FX1S20MTDSSK is a main unit in Mitsubishi's FX Series designed for versatile automation applications. It features a capacity for 2000 built-in program steps, along with 12 input channels and 8 transistor outputs, allowing effective control and monitoring of various processes.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Main unit |
| Product Line | FX Series |
| Part Number | FX1S20MTDSSK |
| Weight | 10.00 lbs (4.54 kg) |
| Built-in Program Steps Capacity | 2000 steps |
| Number of Inputs | 12 inputs |
| Ambient Operating Temperature | 0 to 55°C |
| Number of Outputs | 8 outputs |
| Input Type | 24 Volts DC sink/source |
| Output Type | Transistor output |
| Inductive Load | 12 watts at 24 Volts DC |
| Output Lamp Load | 0.9 watts at 24 Volts DC |
| Power Supply Voltage | 24 Volts DC |
| Storage Temperature | -20 to 70°C |
| Memory Type | EEPROM |
The Mitsubishi FX1S20MTDSSK is classified as a main unit and forms part of the efficient FX Series lineup. This unit is equipped with a robust built-in capacity that allows for 2000 program steps, providing flexibility for complex automation tasks. The device is designed to accommodate 12 inputs, with each input accepting 24 Volts DC in either sink or source configurations.
In terms of output, the FX1S20MTDSSK features 8 outputs utilizing transistor output types, which are efficient for various applications. The maximum inductive load it can handle is rated at 12 watts when operating on 24 Volts DC. Additionally, it has a specification for output lamp load of 0.9 watts under the same voltage conditions.
This unit operates effectively within a temperature range of 0 to 55°C, making it suitable for a variety of environmental conditions. For storage, it can withstand temperatures between -20 to 70°C, ensuring durability under less-than-ideal circumstances. The power supply voltage required for the FX1S20MTDSSK is consistently 24 Volts DC, enabling compatibility with many standard systems. It utilizes EEPROM memory, which provides reliable storage and retention of critical information for program execution.