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Suran Dunun Yaseen

الملخص

The purpose of this study is to explore how a miniaturized industrial-grade Helium-Neon (He-Ne) laser interferometer is designed and optimized. Greatly accurate though traditional interferometers may be, however, their weight and habit of being influenced by the environment have made it hard to make any practical use in the modern industrial worlds where portability is an absolute requirement for measuring devices like your carry bag. As a result, briefcase-sized systems which rest on sturdy, integrated hardware with drop-in matches are now in high demand with engineers and technicians everywhere. This study tries to develop a miniaturized He-Ne laser interferometer that can sit in the real industrial environment to measure and locate with high precision. The design process makes use of optical modeling by Gaussian beam theory, selective miniaturization of components, and isolation from thermal or vibration effects under real industrial conditions. The cavity length and mirror reflection coefficient, as well as those of diverging beam dimensions from an optimized approach, maintain work visibility more accurately quote Key system parameters include: The experimental model takes up compact optical mounts, piezoelectric actuators to control phase shift, and photo detector arrays along with on-chip real time signal measurement algorithms. The system is tested under a wide range of industrial simulation conditions: from temperature cycling to mechanical vibrations and changes in mounting position. Allen's deviation and Fourier transformation are used in signal analysis to find out how well the instrument performs Awards from 1995 to 1997 show that our main company--the old hands, the tough veterans of practically every kind of sensor we have ever had to make and sell--can reasonably expect their grandchildren to continue this venture. It should work out especially well within context for the post office Results show that the optimized compact interferometer has an accuracy of sub-microns, high stability and works reliably in confined environments. The research supports introducing such systems into advanced industrial metrology, robot calibration and quality control. This is also the next generation of precision manufacture, which could set a landmark in human industry as a whole.

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كيفية الاقتباس

Suran Dunun Yaseen. (2026). Design and Optimization of Compact He-Ne Laser Interferometers for Industrial Applications. QALAAI ZANIST SCIENTIFIC JOURNAL, 11(1), 650–663. https://doi.org/10.25212/lfu.qzj.11.1.29

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