4 Styles of Pressure Transducers

A pressure transducer converts pressure into an electrical signal. This occurs by a deflection of an internal diaphragm inside the transducer when pressure is applied to the unit. This process applies strain to the gauges inside the transducer, which creates an electrical resistance change that matches the pressure applied to the transducer. These units are used to measure the pressure inside objects and areas where the pressure rating is important. Pressure transducer suppliers create several different types of transducers for specific uses and applications that factories can choose from when replacing their current pressure monitoring systems.

General purpose: General purpose pressure transducers can be used in nearly any application. They are designed to be used in nearly any form, including inside liquids, vapors, physical particles, and other areas. These are the most commonly used forms of pressure transducers.

Heavy duty: Heavy duty pressure transducers are used for exceptionally heavy environments. Heavy duty units are often used in large industrial factories where the use of a general purpose pressure transducer could not handle the high pressures and volumes. Many heavy duty transducers also have additional electrical-resistant features that make them ideal for using around other industrial machines.

High stability and accuracy: High stability pressure transducers have a much smaller margin of error than general purpose transducers. This is extremely important for applications where pressure reading accuracy is essential to the manufacturing process.

Special purpose: Pressure transducer suppliers make special purpose pressure transducers for specific industrial uses, such as in the placement of viscous liquids, reading pressure in high or low temperature extremes, wireless transducers, and many other uses that a factory may have. These customization options make it possible for every factory to complete their processes accurately and efficiently from start to finish.

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