0011325703 Allicdata Electronics
Allicdata Part #:

0011325703-ND

Manufacturer Part#:

0011325703

Price: $ 0.69
Product Category:

Uncategorized

Manufacturer: Molex, LLC
Short Description: WIRE CLAMP STOP PIN HSNG
More Detail: N/A
DataSheet: 0011325703 datasheet0011325703 Datasheet/PDF
Quantity: 1000
1 +: $ 0.63000
Stock 1000Can Ship Immediately
$ 0.69
Specifications
Series: *
Part Status: Active
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The 0011325703 application field and working principle is a process based on thermal spectroscopy to detect and measure eddy currents in the core of a magnetic material. This process is generally used in the fields of nondestructive testing (NDT) or predictive maintenance (PdM) when inspecting magnetic components or material for any discrepancies. The working principle of this process is based on thermomagnetic analysis of a core in a magnetic material. The core is heated with a portable, self-contained eddy current generator that uses a 50/60 Hz alternating current that is modulated by an appropriate waveform to measure eddy currents within the material. The amplitude and the frequency are controlled and monitored by a signal generator/processor unit which generates a unique, controllable waveform that can be tailored to the specific characteristics of the material being measured.

The frequency and amplitude of the waveform is regulated to create eddy currents in the heated core excess current, which creates a localized Joule heating in the core. This in turn creates a local thermal resistivity profile of the sample, allowing the detectable characteristics of the material to be exposed. An eddy current probe is used to garner electrical measurements from the heated core to detect any faults within the material. The waveform energies used are proportional to the sample size, so that the same probe is used on any given sample for accurate readings.

The 0011325703 application field and working principle are of great importance in the realm of NDT and PdM. Being able to detect defective material or components in a non-destructive manner is essential to the safety of consumers as well as manufacturers. This process can even be used to detect weakened junction locations in electrical joints, providing valuable information to engineers on the type of repair or maintenance needed. The 0011325703 process was originally developed by the Department of Defense, but has since been adopted by industry standards due to its high level of accuracy and efficient use of time and resources.

The 0011325703 application field and working principle are applicable in diverse industries such as aerospace, medical, electronics, energy production, and automotive. In general, thermomagnetic analysis is used to detect faults in a core component of a magnetic material with the generated eddy current waveform to measure the characteristics of the material. As the process is non-destructive, it can be used to inspect precision engineered parts or weapons for defects without damaging the material. The process is also extremely fast and accurate, making it an ideal technique to detect problems in different components in as little time and resources as possible.

Overall, the 0011325703 application field and working principle are of great importance in terms of providing safety and reliability in the production of components and materials. Its ability to detect faults without damaging the material is of great importance in the industries mentioned above as it provides assurance that the materials are of a certain quality and free from defects. Additionally, the flexibility of the system allows for a range of materials to be analyzed quickly and accurately, while its accuracy can be tailored to the material in question. This makes it ideal for a variety of industries, allowing it to be used effectively in a wide range of applications.

The specific data is subject to PDF, and the above content is for reference

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