Rockwell A-B 836E-DC1CN3D4 Electro-Mechanical Pressure Control Switch, Control Panel Accessory for Industrial Automation
The Allen Bradley 836E-DC1CN3D4 is a high-performance electro-mechanical pressure control switch designed for industrial applications. It ensures precise pressure regulation and monitoring, enhancing safety and efficiency in various industries including oil & gas, water treatment, and manufacturing.
Manufacturer:Rockwell Automation
Model Number:836E-DC1CN3D4
Type:Electro-Mechanical Pressure Control Switch
Operating Pressure Range:0-100 PSI
Switching Differential:±10% of set point
Operating Temperature Range:-20°C to +120°C
Mounting Options:Panel, Pipe Thread
Connection Size:1/4 NPT
Contact Rating:250V AC, 10A resistive load
Material:Stainless Steel, Brass
The Rockwell Automation 836E-DC1CN3D4 Electro-Mechanical Pressure Control Switch offers reliable and accurate pressure regulation for various industrial applications. Its robust design ensures long-lasting performance under harsh conditions.
With its wide operating pressure range from 0-100 PSI and a switching differential of ±10% of set point, this switch can precisely monitor pressure changes and control processes effectively. This makes it ideal for use in fluid handling systems where consistent pressure levels are critical.
Constructed from durable materials like stainless steel and brass, this switch is built to withstand demanding environments. It features versatile mounting options including panel and pipe thread, allowing for easy installation in a variety of setups.
The 836E-DC1CN3D4 is rated for operation at temperatures ranging from -20°C to +120°C, ensuring stable performance across a broad temperature spectrum. Its contact rating of 250V AC, 10A resistive load supports a wide array of electrical requirements without compromising safety or reliability.
Installation is straightforward thanks to the intuitive design and comprehensive user manuals available. Regular maintenance is minimal, contributing to reduced downtime and increased operational efficiency.


















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