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The FX-64MR from Mitsubishi serves as a modular controller equipped with relay outputs. Designed for various applications, it offers a maximum of 64 I/O points and operates reliably within a defined temperature range.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | FX Series |
| Part Number | FX-64MR |
| Weight | 3.75 lbs (1.70 kg) |
| Storage Temperature | -20°C to 70°C |
| Power Consumption | 7W |
| LED Indicators | Power, Run |
| Description | Modular controller with relay output |
| Voltage Range | 4.5 - 5.5 Volts |
| Program Memory | 128KB Flash |
| Clock Speed | 25 MHz |
| Max I/O Points | 64 |
| Input Voltage (V DC) | 24 |
| Relay Outputs | 32 |
| Digital Inputs | 32 |
| Processing Speed | 0.1 μs/instruction |
| Operating Temperature | -10°C to 55°C |
Mitsubishi's FX-64MR is a modular controller, engineered to handle relay outputs effectively. Its operational parameters result in a variety of applications across different sectors. The product requires an input voltage of 24V DC, ensuring stable functionality.
The unit features 32 digital inputs, allowing for extensive monitoring and control capabilities. This controller supports 32 relay outputs, making it useful for switching devices within an automation setup. Processing speed is a notable attribute, achieving 0.1 μs per instruction, which enhances responsiveness and performance.
This device is designed for an operating temperature range from -10°C to 55°C, making it adaptable for various environments. The FX-64MR’s program memory is capable of holding 128KB in Flash format, providing adequate space for complex programs.
Furthermore, it operates with a clock speed of 25 MHz, supporting efficient processing of tasks. The enclosure dimensions are compact at 160 mm in width, 110 mm in height, and 45 mm in depth, contributing to its manageable weight of 180 grams. LED indicators for Power and Run status offer visual feedback on the controller's operational status. The power consumption of the FX-64MR is kept low at 7W, ensuring energy efficiency during operation.