During technical comparisons, MITSUBISHIELECTRIC-Q612B appears alongside Schneider PLC, Fx5U 32Mt Ess and Mitsubishi HMI so engineers assess signal types, ingress protection, and ambient tolerances accurately.
Mitsubishi Q612B - PLC Programmable Logic Controller
Technical Specifications of Mitsubishi PLC Programmable Logic Controller Q612B:

| Brand | Mitsubishi |
| Product Type | PLC(Programmable Logic Controller) |
| Product | Q612B |
Mitsubishi PLC Programmable Logic Controller Q612B Technical Specifications
| Specification | Value |
|---|---|
| Series | MELSEC-Q SERIES |
| Type | EXTENSION BASE UNIT |
| Slots | 12 |
| Slots for Power Supply | 1 |
| Depth (mm) | 44,1 |
| Weight (kg) | 0,48 |
| Width (mm) | 439 |
| Height (mm) | 98 |
The Mitsubishi Q612B Programmable Logic Controller is an extension base unit designed for MELSEC-Q SERIES automation platforms. The Q612B model supports industrial system expansion with 12 module slots, 1 power supply slot, a 44.1 mm depth, and a 0.48 kg weight. Mitsubishi positions this base unit for structured and reliable hardware integration in medium to large automation projects.
In industrial use, the Mitsubishi Q612B Programmable Logic Controller enables additional module capacity for conveyors, packaging machinery, assembly lines, and central control systems. Its defined slot architecture supports efficient wiring, predictable communication between modules, and stable performance across varied automation tasks. The Q612B helps engineers build scalable, organized PLC configurations suited for multi-stage processes.
The Mitsubishi Q612B Programmable Logic Controller provides essential expansion capability for MELSEC-Q SERIES installations, backed by 12 slots, 1 power supply slot, suitable panel dimensions, and manageable weight. These characteristics make the Q612B suitable for manufacturing facilities, material handling systems, and industrial automation applications requiring dependable PLC scalability. Mitsubishiβs consistent hardware framework ensures long-term reliability in demanding operational environments.







