Mitsubishi RJ71C24-R2 - PLC Network Communication Module
The Mitsubishi RJ71C24-R2 Programmable Logic Controller features a RS-232 communication interface designed for reliable and efficient industrial data exchange. It is part of the Mitsubishi automation product range and listed under Mitsubishi Programmable Logic Controller systems. Belonging to the MELSEC IQ-R SERIES, this module measures 27.8mm width, 98mm height, 110mm depth, and weighs 0.14kg, offering compact and dependable performance for industrial network communication.

| Brand | Mitsubishi |
| Product Type | PLC Counter & Network Module |
| Product | RJ71C24-R2 |
Mitsubishi PLC Network Communication Module RJ71C24-R2 Technical Specifications
| Specification | Value |
|---|---|
| Series | MELSEC IQ-R SERIES |
| Interface | RS-232 |
| Depth (mm) | 110 |
| Weight (kg) | 0,14 |
| Width (mm) | 27,8 |
| Height (mm) | 98 (106) |
The Mitsubishi RJ71C24-R2 Programmable Logic Controller from the MELSEC IQ-R SERIES is built for efficient data communication using an RS-232 interface. Compact and lightweight, with 27.8mm width, 98mm height, and 110mm depth, it enables smooth and stable serial data transfer in industrial automation systems. The module integrates seamlessly into existing PLC networks to enhance connectivity and performance.
The Mitsubishi RJ71C24-R2 is commonly used in automation systems for conveyors, assembly lines, packaging, and process control applications. Its RS-232 interface ensures reliable data transmission between PLCs, HMIs, and other connected devices, supporting stable communication and operational consistency in manufacturing environments.
The Mitsubishi RJ71C24-R2 Programmable Logic Controller provides dependable RS-232 communication capabilities within the MELSEC IQ-R SERIES. Known for Mitsubishiβs trusted engineering quality, this compact module ensures long-term reliability and performance in demanding industrial conditions, making it a preferred choice for automation engineers seeking precise control and consistent communication across systems.


