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Nagano Keiki KE22 Pneumatic Transmitters Differential Pressure

Nagano Keiki KE22 Pneumatic Transmitters Differential Pressure

The Nagano Keiki KE22 Pneumatic Transmitter Differential Pressure is a precision-engineered device designed to accurately capture on-site pressure, liquid levels, or differential pressure, subsequently converting this data into a consistent air pressure signal of 20 to 100kPa. This signal is directly proportional to the measured pressure value and is then transmitted to a control room receiver, serving as a crucial instrument in various industrial measurement and control applications. Highlighted by its exceptional features, the KE22 brings a multitude of advantages to the table. Operating on a pneumatic principle, it stands out for its capability to function effectively even in environments prone to explosiveness and corrosion. The transmitter’s force-balanced design not only contributes to its structural integrity but also minimizes movement within the pressure element and link mechanism. This intrinsic construction ensures long-term accuracy, including impressive shock resistance, consistent linearity, and hysteresis performance.

One of its standout attributes is the integration of the pressure-receiving element directly within the compact body. This clever design feature not only optimizes the transmitter’s size but also facilitates effortless zero adjustment from the exterior. The process of calibration becomes a hassle-free task that can be conducted without the need to remove the cover, ensuring the span remains unaffected. The Nagano Keiki KE22 Pneumatic Transmitter Differential Pressure is synonymous with quality, bearing the reputable Nagano Keiki name. With its remarkable characteristics, it shines as an invaluable tool for multiple scenarios, offering a robust solution for accurate pressure measurement and transmission. 

More About Nagano Keiki KE22 Pneumatic Transmitters Differential Pressure

Features: 

› Because this transmitter is a pneumatic type. It can be used in explosive and corrosive atmospheres.

› Forced-balance type allows a rigid body construction without hardly any pressure element and link mechanism changes. Therefore, vibration resistance, linearity, and hysteresis precision can be maintained for a long time.

› Since the pressure receiving element is built into the body, it is extremely compact and zero adjustment is easily performed from the outside without removing the cover and affecting the span.

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