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The FX1S30MTDSSK is a main unit I/O module from Mitsubishi's FX Series. Operating at a rated supply voltage of 24 Volts DC, it includes 16 inputs and 14 outputs through 24 Volts DC sink/source configurations.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | I/O Module, Main Unit |
| Product Line | FX Series |
| Part Number | FX1S30MTDSSK |
| Weight | 10.00 lbs (4.54 kg) |
| Rated Supply Voltage | 24 Volts DC |
| Number of Inputs | 16 inputs |
| Ambient Operating Temperature | 0 to 55°C |
| Number of Outputs | 14 outputs |
| Input Type | 24 Volts DC sink/source |
| Output Type | Transistor output |
| Storage Temperature | -20 to 70°C |
| Resistive Load Switched Voltage | 5 to 30 Volts DC |
| Built-in Program Steps Capacity | 2000 steps |
| Memory Type | EEPROM |
| Output Isolation Type | Photocoupler |
| Input Isolation Type | Photocoupler |
The Mitsubishi FX1S30MTDSSK functions as a primary I/O module within the FX Series. This device operates on a steady supply voltage of 24 Volts DC, making it compatible with various systems. With a design that includes 16 input channels and 14 outputs, it effectively manages multiple connections in automation tasks. Each input is capable of accepting a 24 Volts DC sink or source, while the outputs utilize a transistor configuration for efficient signal handling.
Temperature management is crucial for optimal performance, and this module facilitates operation in environments ranging from 0 to 55°C. It can also withstand storage conditions between -20 and 70°C, ensuring its resilience across various situations. For added functionality, the FX1S30MTDSSK has a built-in capacity for 2000 program steps, supported by EEPROM memory, which maintains data integrity even in power loss scenarios. The use of photocouplers for both input and output isolation enhances safety by managing electrical isolation, crucial for sensitive components in industrial settings. Furthermore, the module effectively manages resistive loads switched at voltages ranging from 5 to 30 Volts DC, demonstrating versatility in various applications.