Mutual Inductance Electronic Micrometer
Item Name Code (INC) 09785
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One or more components, specifically designed for measuring and indicating and/or recording very small linear distances in air or across nonmetallic materials by mutual inductance variation or variation in self-inductance, these properties being essentially a linear function of distance from a reference metallic surface to an inductance probe.
Additional Information for Mutual Inductance Electronic Micrometer
A Mutual Inductance Electronic Micrometer is a type of measuring instrument that falls under the supply class Combination And Miscellaneous Instruments in the supply group Instruments And Laboratory Equipment.
Mutual inductance refers to the phenomenon where the magnetic field produced by one coil induces a voltage in another coil. In the case of a Mutual Inductance Electronic Micrometer, this principle is used to measure small distances or displacements with high precision.
The micrometer consists of two coils, a primary coil and a secondary coil, which are placed in close proximity to each other. When a current is passed through the primary coil, it generates a magnetic field. This magnetic field induces a voltage in the secondary coil, which is proportional to the distance between the coils.
By measuring the voltage induced in the secondary coil, the micrometer can accurately determine the distance or displacement being measured. This makes it a valuable tool in various applications where precise measurements are required, such as in laboratory experiments, manufacturing processes, or quality control.
The electronic aspect of the micrometer refers to the use of electronic components, such as amplifiers and signal processing circuits, to enhance the accuracy and reliability of the measurement. These components help to amplify and process the voltage signal from the secondary coil, allowing for more precise and consistent measurements.
Overall, a Mutual Inductance Electronic Micrometer is a specialized instrument used for high-precision distance or displacement measurements, utilizing the principle of mutual inductance and incorporating electronic components for enhanced accuracy and reliability.
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