203 results
Allen Bradley / Motors / 836 Pressure Controls
This pressure control switch allows adjustable differentials ranging from a minimum of 2.5 psi to a maximum of 15 psi. The operational temperature range extends from a low of -30°C to a high of 66°C, ensuring reliable functionality under diverse conditions. It can be stored in temperatures varying f
Allen Bradley / Motors / 836 Pressure Controls
The Allen-Bradley 836-C12S Electromechanical Pressure Controller is an external sensor device that is from the Allen-Bradley Bulletin 836 Pressure Controls device series. This pressure control device comes with an external set of copper alloy bellows. It can work while exposed to any substances that
Allen Bradley / Motors / 836 Pressure Controls
The Allen-Bradley/Rockwell Automation 836T-T252JX23X9 pressure control device is used to control and detect pressure in pneumatic and hydraulic systems. It comes with 2 contacts that are in charge of performing the trips when the pressure is too low or too high. The controller's internal bellows are
Allen Bradley / Motors / 836 Pressure Controls
This unit allows settings within a range of 20 to 300 psi for adaptable operation. It supports a line pressure of 600 psi and can handle surge pressures up to 750 psi. The rated voltage is 600 VAC, and it features a NEMA 1, 4, and 13 enclosure type, suitable for various environmental conditions.
Allen Bradley / Motors / 836 Pressure Controls
The 836-C60S controller from the 836 Pressure Controls series is an electromechanical pressure control switch from Allen-Bradley/Rockwell Automation. It has a 10 PSI pressure specification, a 0.4 PSI adjustable differential rating, an external bellows operator type, and a NEMA Type 4X enclosure.
Allen Bradley / Motors / 836 Pressure Controls
The Allen-Bradley 836T-D462JX81X9 Electromechanical Differential Pressure Controller is a member of the 836 series of differential pressure switches that are employed in a wide variety of industrial applications for the accurate measurement and control of different variables. Liquid level control in