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AR anti reflective film: Nano coating black technology, secret to a 99% increase in transmittance - Shanghai Roll Soft Manufacturer

In the field of optics, AR anti reflective films stand out with their "nano coating black technology" and almost perfect transmittance, becoming the key to improving the performance of optical devices. Behind its soaring transmittance to 99%, there are precise scientific principles and innovative processes.

The core technology of AR anti reflection coating, also known as anti reflection coating, lies in nano coating. Traditional optical materials lose some light on their surfaces due to reflection, which affects imaging clarity and equipment efficiency. AR anti reflective film is achieved by coating multiple layers of nanoscale thin films on the surface of the substrate, with each layer's thickness precisely controlled at around one fourth of the wavelength of light. When light shines on the surface of a thin film, reflection occurs at the interface of different film layers. These reflected lights interfere with each other, and the peaks and valleys cancel each other out, greatly reducing the reflected light and allowing more light to penetrate the material, achieving a leap in transmittance.

Taking smartphone screens as an example, ordinary glass screens can produce glare due to reflection in strong light, affecting the visual experience. After applying AR anti reflective film, the nano coating effectively suppresses light reflection, making the screen still clear and visible in sunlight. In the field of high-end camera lenses, AR anti reflective films also play a key role. Multi layer nano coatings not only reduce light reflection, but also eliminate color difference and ghosting, making the captured images more realistic in color reproduction and richer in details.

In the photovoltaic industry, the application of AR anti reflective films has opened up a new path for improving the efficiency of solar cells. The AR anti reflective film on the surface of solar panels reduces light reflection, allowing more solar energy to be absorbed by the cells and converted into electrical energy, thereby improving the photoelectric conversion efficiency. Data shows that solar panels using high-quality AR anti reflective films can increase their power generation efficiency by 5% -10%, significantly increasing the economic benefits of solar energy utilization.

However, achieving a transmittance of 99% is not an easy task. This requires precise control of the material ratio, coating layers and thickness of the nano coating, as well as strict production processes. During the production process, it is necessary to use advanced technologies such as magnetron sputtering and ion beam deposition in a highly clean environment to stack materials with different optical properties layer by layer, with each layer achieving nanometer level accuracy. In addition, it is necessary to consider the wear resistance, corrosion resistance and other properties of the film layer to ensure that the AR anti reflection film remains stable and reliable in complex environments.

With the development of technology, the application fields of AR anti reflective films are constantly expanding, from smart wearable devices, car display systems, to medical optical instruments, aerospace equipment. This nano coating black technology is continuously bringing innovation to various industries with its excellent performance, illuminating the future development path of the optical field.



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