Mitsubishi AJ65SBT-RPG - PLC Network Communication Module
The Mitsubishi AJ65SBT-RPG Programmable Logic Controller is a Repeater Module with a CC-Link network interface for stable industrial communication performance. It belongs to the Mitsubishi brand under the Mitsubishi Programmable Logic Controller category and the CC-LINK series. Operating on a 24V DC power supply, this module has a depth of 40 mm, width of 87.3 mm, height of 54 mm, and weight of 0.2 kg, ensuring reliable data transmission.

| Brand | Mitsubishi |
| Product Type | PLC Counter & Network Module |
| Product | AJ65SBT-RPG |
Mitsubishi PLC Network Communication Module AJ65SBT-RPG Technical Specifications
| Specification | Value |
|---|---|
| Series | CC-LINK |
| Type | REPEATER |
| Network Interface | CC-LINK |
| Power Supply (V) | 24 |
| Current Type | DC |
| Depth (mm) | 40 |
| Weight (kg) | 0,2 |
| Width (mm) | 87,3 |
| Height (mm) | 54 |
The Mitsubishi AJ65SBT-RPG Programmable Logic Controller from the CC-LINK series is a Repeater Module designed to extend and maintain communication quality in industrial networks. With a CC-Link interface and 24V DC operation, it supports consistent data flow between PLC systems. Its compact structure and robust construction allow integration into various automation environments where signal integrity is essential.
The Mitsubishi AJ65SBT-RPG is widely applied in automated systems such as conveyor lines, packaging machinery, and assembly operations. By enhancing data communication across CC-Link networks, it ensures uninterrupted connectivity, reduces communication loss, and maintains synchronization across large-scale control networks in industrial automation setups.
The Mitsubishi AJ65SBT-RPG Programmable Logic Controller represents Mitsubishiβs commitment to industrial efficiency and reliability. As part of the CC-LINK series, it provides consistent signal stability, dependable operation, and easy integration with existing PLC networks. Ideal for engineers and system integrators, this model ensures long-term performance in complex communication environments.
