Rockwell Automation 836-C3A Electro-Mechanical Pressure Control Switch, Module Category
The AB 836-C3A Electro-Mechanical Pressure Control Switch is designed for precise pressure management in industrial environments. It offers reliable performance in various applications including HVAC systems, fluid handling, and process control.
Type:Electro-Mechanical Precision Control Switch
Model:836-C3A
Manufacturer:Rockwell Automation
Voltage Rating:24V DC
Switching Capacity:10A @ 250V AC
Mechanical Life:10 million cycles
Environmental Protection:IP65
Actuator Type:Pushbutton
Operating Temperature Range:-20°C to +70°C
Contact Configuration:SPST (Single Pole Single Throw)
This advanced electro-mechanical pressure control switch from A-B is specifically engineered for demanding industrial environments where precise control over fluid pressure is critical. Built with durability and reliability in mind, the 836-C3A model offers a wide actuation range and can handle pressures up to 100 PSI, making it suitable for a variety of industrial processes.
The switch is designed with a robust stainless steel construction, providing excellent corrosion resistance and long-lasting performance in harsh environments. Its compact size and easy-to-use design make it simple to install and integrate into existing systems without requiring extensive modifications or downtime.
With its reliable contact rating of 10A at 250VAC, this switch ensures safe operation under a wide range of conditions, making it an ideal choice for process control and automation applications. The temperature range of -40°F to 200°F (-40°C to 93°C) allows for use in diverse operating environments, from cold storage facilities to high-temperature industrial settings.
Moreover, the 836-C3A comes with a 1/4″ NPT pressure connection, ensuring compatibility with standard plumbing components and facilitating quick and easy installation. With its user-friendly design and proven track record of performance, this switch is an essential component for any industrial control system looking to achieve optimal pressure regulation.











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