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AR glass with anti reflective and anti reflective properties: a powerful tool for improving the accuracy of optical instruments
In the precise world of optical instruments, the direction of each beam of light, every reflection and transmission, are related to the performance of the instrument. Spectrometers, interferometers, and other key equipment in the field of optics have extremely high requirements for the performance of optical components.

When light shines on the surface of ordinary glass, due to the significant refractive index difference between glass and air (the refractive index of air is about 1.0, while that of ordinary glass is about 1.52), about 8% of the light will be reflected at the interface. This phenomenon may have a slight impact in single-layer glass applications, but in multi-layer optical systems composed of multiple lenses, prisms, filters, and other optical components, reflection loss occurs every time it passes through a glass surface. More seriously, these reflected lights will reflect multiple times inside the system to form stray light, causing interference such as halo and ghosting in the imaging system, ultimately significantly reducing the measurement accuracy and sensitivity of the instrument, directly affecting the accuracy and reliability of the detection data. The emergence of anti reflective AR glass is like injecting a powerful "precision enhancer" into precision optical instruments, becoming the core key to breaking through optical performance bottlenecks and unlocking new heights of imaging quality.

AR glass, also known as anti reflection glass, works based on the sophisticated theory of optical interference. Weiliang Optoelectronics AR glass uses precise nanoscale coating technology to significantly reduce the reflectivity of visible light to below 1%, with a maximum transmittance of up to 99%, greatly reducing losses during light penetration and achieving efficient transmission with almost zero obstruction. This excellent optical performance not only provides a pure and stable light source foundation for optical instruments, but also significantly improves the utilization of light, ensuring that the instrument can capture richer detailed information, thereby achieving high-precision optical imaging and data acquisition.

In optical instruments such as spectrometers and interferometers, AR glass is used to reduce surface reflection of optical components, reduce stray light interference, and improve instrument measurement accuracy and sensitivity. In some high-precision optical experimental devices, the performance requirements for AR glass are more stringent, requiring precise control of film thickness, refractive index, and other parameters to meet the experimental requirements for ultra-high stability and accuracy of the optical system. Weiliang Optoelectronics AR adopts self-developed formula, optical film system design, and wet multi-layer film formation to achieve anti reflection and anti reflection, and can control film thickness difference ≤ 5nm.

AR glass has become an indispensable key material in the field of modern optical instruments due to its unique optical properties. It not only improves the measurement accuracy and sensitivity of instruments, but also promotes the continuous advancement of optical technology towards higher precision and wider application range. With the continuous advancement of technology, Weiliang Optoelectronics AR glass will undoubtedly shine in more cutting-edge optical research and precision optical instruments, bringing more surprises and breakthroughs to human exploration of the micro and macro worlds.
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