This gives piezoelectric sensors ruggedness, an extremely high natural frequency and an excellent linearity over a wide amplitude range. Even though piezoelectric sensors are electromechanical systems that react to compression, the sensing elements show almost zero deflection. The high modulus of elasticity of many piezoelectric materials is comparable to that of many metals and goes up to 10 6 N/m². The rise of piezoelectric technology is directly related to a set of inherent advantages. The sensors are either directly mounted into additional holes into the cylinder head or the spark/glow plug is equipped with a built-in miniature piezoelectric sensor. ![]() In the automotive industry, piezoelectric elements are used to monitor combustion when developing internal combustion engines. They have been successfully used in various applications, such as in medical, aerospace, nuclear instrumentation, and as a tilt sensor in consumer electronics or a pressure sensor in the touch pads of mobile phones. Since then, this measuring principle has been increasingly used, and has become a mature technology with excellent inherent reliability. Pierre Curie discovered the piezoelectric effect in 1880, but only in the 1950s did manufacturers begin to use the piezoelectric effect in industrial sensing applications. They are used for quality assurance, process control, and for research and development in many industries. Piezoelectric sensors are versatile tools for the measurement of various processes. ![]() The prefix piezo- is Greek for 'press' or 'squeeze'. A piezoelectric disk generates a voltage when deformed (change in shape is greatly exaggerated)Ī piezoelectric sensor is a device that uses the piezoelectric effect to measure changes in pressure, acceleration, temperature, strain, or force by converting them to an electrical charge.
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