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Glass-ceramic is produced through a crystallization heat treatment process at a specific temperature, resulting in the uniform precipitation of numerous tiny crystals within the glass. This forms a dense multiphase composite consisting of microcrystalline and glass phases. Not only does it retain the fundamental advantages of glass, such as high softening temperature, excellent electrical insulation, and good chemical stability, but it also embodies the superior properties of ceramics, including high wear resistance, hardness, mechanical strength, and thermal stability. Through ion exchange, the glass becomes more resistant to impact, drops, and scratches. It is widely used in the fields of mobile phone cover glass and smart wearable devices.
Glass-ceramic
With years of experience in the research and development of special functional glass, Gabrielle Optech has innovatively launched GPL series of glass fibers with low dielectric (DK), low loss (DF) and llow expansion. These glass fibers are primarily used in 5G/6G communications, AI servers, AI glasses, AIPC and other fields. By significantly reducing the dielectric loss of communication components, they can effectively enhance the efficiency of high-frequency signal transmission. Additionally, they possess core advantages such as low heat generation, low latency, low power consumption, high reliability, and miniaturization. Gabrielle Optech can provide low dielectric and low expansion yarn as well as electronic glass fiber cloth.
Electronic Glass Fiber Yarn
TE series glass exhibits specific expansion coefficient, excellent thermal, mechanical, chemical properties, along with superior optical transmittance across the entire wavelength range. It is used in wafer manufacturing, packaging and testing of semiconductor glass carrier and substrate. Professional customized services can be provided according to customer requirements.
Semiconductor Carrier and Substrate Glass
Glass used in the field of diffractive waveguide is a special type of optical glass with a high refractive index (greater than 1.8). Gabrielle Optech high refraction glass enables stronger light deflection capability when transmitting light, significantly improving imaging quality, efficiency, and FOV of optical systems. It is mainly applied in high-end optics, HUDs, AR waveguides, MR devices, optical fiber communications, and other fields.
Glass for Diffraction Optical Waveguides
Sealing glass has high air tightness and insulation, appropriate expansion coefficient, excellent acid and alkali resistance and other properties. It is primarily utilized for the air tight sealing between metals, ceramics and glass to meet the sealing requirements of products with different sealing temperatures. Functional glass powder has excellent dielectric constant, high resistivity, good chemical stability and other characteristics. Adding it to ceramic matrix materials can reduce the sintering temperature of ceramic materials, and meet the application requirements of functional glass powder in LTCC and MLCC fields.
Sealing Glass and Functional Glass Powder
Low expansion glass-ceramic is produced through precise control of the ratio between the crystalline and glass phases. Its core characteristic lies in a near-zero thermal expansion coefficient across a broad temperature range, coupled with exceptional uniformity, high strength and high hardness, which makes it an ideal choice in extreme harsh environment. It is widely used in ultra precision fields such as the blanks of large astronomical telescopes, resonator cavities of laser gyroscopes, spacecraft window materials, optical platforms of photolithography machines and precision instrument bases.
Low Expansion Glass-Ceramic
Near-infrared filter glass can provide reliable protection for the sensitive electronic and optical components on the back of the lidar window, and withstand harsh environments. Its core feature is that it has high transmittance for the near-infrared 905nm and 1550nm wavebands, and extremely low transmittance for the ultraviolet and visible wavebands. It can effectively filter the stray light at non laser application wavelengths, improve the signal-to-noise ratio of the system, and significantly enhance the 3D scanning ability of the lidar. It is mainly used in the field of automotive and lidar protective windows.
Near-infrared Filter Glass
High-strength glass can withstand high-temperature and high-pressure environments, with a softening temperature exceeding 900 °C. It possesses high mechanical strength, excellent thermal shock resistance, and high-temperature deformation resistance, while maintaining exceptional chemical stability and thermal stability even in high-temperature environments.It is mainly used in aerospace, petroleum exploration, natural gas exploration, chemical and other fields.
High-strength Glass
The company currently produces over 100 types of environmentally friendly optical glass, manufactured using Gabrielle’s self-developed special glass furnaces, which significantly reduce production costs and provide customers with more competitively priced products. These glasses are widely used in scopes, security systems, cameras, and other fields.
Eco Friendly Optical Glass
Fluorophosphate optical glass exhibits low dispersion, a relatively negative temperature coefficient of refractive index, and a high special relative partial dispersion value. It demonstrates excellent transmittance across the ultraviolet to near-infrared wavelength bands. The glass can effectively minimize chromatic aberration in optical system design, making it ideal for optical systems that require high chromatic aberration correction.
Fluorophosphate Optical Glass
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