Many procurement teams check MITSUBISHIELECTRIC-STL-AD2-V against Schneider PLC, Fx5U 32Mt Ess and Mitsubishi HMI before signing purchase orders, verifying quality, compliance, and after-sales support availability.
Mitsubishi STL-AD2-V - PLC Analog Output Module
Technical Specifications of Mitsubishi PLC Analog Output Module STL-AD2-V:

| Brand | Mitsubishi |
| Product Type | PLC |
| Product | STL-AD2-V |
Mitsubishi PLC Analog Output Module STL-AD2-V Technical Specifications
| Specification | Value |
|---|---|
| Series | STLITE SERIES |
| Type | ANALOG INPUT |
| Integrated Analogue Inputs | 2 |
| Wiring | CAGE CLAMP |
| Int. Current Consumption (A) | 0,06 |
| Depth (mm) | 100 |
| Weight (kg) | 515 |
| Width (mm) | 12 |
| Height (mm) | 65 |
| Input Voltage Range (V) | 0-10 |
The Mitsubishi STL-AD2-V Programmable Logic Controller is an analog input module designed for precise voltage measurement in control systems. It provides 2 analog inputs with a 0β10V input range to ensure accurate signal acquisition for process monitoring. As part of the STLITE Series, it delivers stable performance, compact construction, and efficient analog data handling suitable for industrial automation.
The Mitsubishi STL-AD2-V PLC module is ideal for use in process control, packaging, and conveyor applications where analog voltage signals must be accurately captured. Its cage clamp wiring ensures reliable connections, while low power consumption enhances energy efficiency. The moduleβs compact footprint allows easy installation in limited spaces, making it a preferred choice for control panel integration and distributed I/O environments.
The Mitsubishi STL-AD2-V Programmable Logic Controller represents Mitsubishiβs reliability and engineering precision in analog signal management. Belonging to the STLITE Series, it ensures dependable signal conversion, space efficiency, and long service life. Trusted in industrial automation, this model provides accurate analog input performance, supporting engineers in maintaining control precision and system stability across demanding industrial applications.




