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PR6423/011-110+CON021 Eddy Current Signal Converter

PR6423/011-110+CON021 Eddy Current Signal Converter

Manufacturers :EPRO

Model(s)  :PR6423/011-110+CON021

Additional Information :Eddy Current Signal Converter

Estimated Shipping Size
Dimensions: 263 × 58 × 28mm
Weight:.4.3 kg
Country of Origin: United States of America

 

Categories: ,

Description

Overview


Essential details:PR6423/011-110+CON021 Eddy Current Signal Converter

PR6423/011-110+CON021 Eddy current signal converter is a device used to convert the signal detected by the eddy current sensor into a readable electrical signal. It is commonly used in the field of non-destructive testing (NDT), such as detecting defects in metal materials, measuring the thickness of materials, etc.

The working principle of eddy current signal converter is based on eddy current detection technology. When the eddy current sensor is close to the metal material being tested, eddy currents are generated in the material. These eddies create a magnetic field, the strength and direction of which are related to the properties and defects of the material. The eddy current signal converter detects changes in this magnetic field to determine the properties and defects of the material.

PR6423/011-110+CON021 Eddy current signal converter usually consists of a sensor probe, a signal conditioning circuit and an output interface. The sensor probe is used to detect eddy current signals, the signal conditioning circuit is used to amplify, filter and digitize the signals, and the output interface is used to output the processed signals to external devices, such as computers or monitors.

Eddy current signal converter has the advantages of fast detection speed, high precision and non-contact detection, so it has been widely used in the industrial field.

PR6423/003-030-CN

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PR6423/011-110+CON021 Eddy Current Signal Converter

PR6423/011-110+CON021 In addition to eddy current testing, non-destructive testing (NDT) has other commonly used methods, including:
Radiography Testing (RT) : The use of X-rays or gamma rays to penetrate the object being examined, by detecting the degree of attenuation of the rays to determine the internal defects of the object.
Ultrasonic Testing (UT) : Using the reflection, refraction and attenuation of ultrasonic waves propagating inside objects to detect defects inside objects.
Magnetic Particle Testing (MT) : magnetic powder is applied to the surface of the object to be detected, and defects on the surface of the object are detected by detecting the accumulation of magnetic powder.
PR6423/011-110+CON021 Penetrant Testing (PT) : Penetrant is applied to the surface of the object being tested to detect defects on the surface of the object by detecting the penetration of the penetrant.
Visual Testing (VT) : Observing defects on the surface of the object being detected by the naked eye or a magnifying glass.
Each of these methods has advantages and disadvantages and is suitable for different types of materials and defect detection. In practical applications, the appropriate nondestructive testing method is usually selected according to the nature of the object being tested and the testing requirements.