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The Mitsubishi FX15 control board is engineered for versatility in various industrial applications. It features both USB and RS-422 communication ports to facilitate integration in automated systems. It also supports CC-Link and Ethernet networks, offering flexible connectivity options.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Control Board |
| Product Line | FX Series |
| Part Number | FX15 |
| Weight | 1.00 lbs (0.45 kg) |
| Power Supply | AC Power: 100 V AC/DC Power: 24 V DC |
| Output Type | Relay, Transistor, Triac |
| CPU Speed | Standard, Advanced |
| Operating Temperature Range | 0°C to 55°C |
| Communication Ports | USB, RS-422 |
| Network | CC-Link (Master/Slave), Ethernet |
| Temperature Control | Yes |
| Humidity | 10% to 90% RH (non-condensing) |
Designed for robust performance, the Mitsubishi FX15 control board is equipped for diverse servicing in automation projects. Weighing approximately 0.45 kilograms, it maintains a compact form while providing significant functionality. The board operates with various power supply sources, including alternating current at 100 V and direct current at 24 V.
Output is configurable through relay, transistor, or triac methods, which allows it to adapt to different system requirements. It can operate with standard and advanced CPU speed configurations, allowing users to choose the best speed for their tasks.
This module operates effectively within a temperature range from 0°C to 55°C, making it suitable for industrial environments. Its operational performance is further supported by the ability to manage humidity levels ranging from 10% to 90% relative humidity as long as conditions remain non-condensing.
Communication capabilities include USB and RS-422 ports, enhancing integration into existing systems. Networking is facilitated through both CC-Link (Master/Slave) and Ethernet connections, offering flexibility in system design and application. Furthermore, the FX15 includes temperature control functionality, ensuring precise management of environmental conditions within the system.