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Shanghai Xinkehui New Material Co., Ltd. is one of the largest optical &semiconductor supplier in China, founded in 2002. XKH was developed to provide academic researchers with wafers and other semiconductor related scientific materials and services. Semiconductor materials is our main core business, our team is technicality based, since it’s establishment, XKH is deeply involved in the research and development of advanced electronic materials, especially in the field of various wafer / substrate.
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InP wafers’ abstract Indium Phosphide (InP), with CAS No. 22398-80-7 and a melting point of 1600°C, belongs to the III-V family of binary compound semiconductors. It possesses a face-centered cubic crystal structure known as “zinc blende,” which is common among III-V semiconductors. InP is synthesized from high-purity indium and phosphorus elements, typically with purities of […]
Silicon Wafer’s abstract Silicon wafers are indispensable in semiconductor manufacturing for electronic devices. Their versatility in shape and abundant availability make them a preferred choice. This study explores the benefits of silicon wafer manufacturing, which involves molding them into various shapes like cylinders or squares. The process encompasses multiple steps, ensuring high-quality results. The primary […]
Sapphire Glass Ball Lens‘ abstract Introducing our Sapphire Glass Ball Lens, a revolutionary component poised at the forefront of cutting-edge medical technology. Crafted with precision and durability in mind, thisSapphire Glass Ball Lens stands as a beacon of innovation, enhancing the capabilities of medical devices across various applications. Designed to meet the exacting demands of […]
Aluminum Nitride (AlN) Substrate‘s product description Aluminum Nitride (AlN) is increasingly recognized as a pivotal material in the realm of advanced technological applications, particularly where superior thermal management and electrical insulation are paramount. With its unparalleled thermal conductivity of 170 W/mK, Aluminum Nitride (AlN) Substrate stands as the epitome of thermally conductive materials that also […]
Silicon-On-Insulator (SOI) Wafer’s abstarct Silicon-On-Insulator (SOI) wafers offer a revolutionary platform for semiconductor device fabrication, featuring a thin layer of silicon atop an insulating substrate. This innovative structure provides enhanced performance, reduced power consumption, and improved radiation tolerance compared to traditional bulk silicon substrates. SOI technology enables the development of advanced integrated circuits, microelectromechanical systems […]
Sapphire Wafer‘s product descriptions Sapphire wafers, composed of crystalline aluminum oxide, have garnered significant attention across multiple industries due to their exceptional properties. This abstract aims to provide an extensive overview of sapphire wafers, exploring their diverse applications, manufacturing processes, and performance characteristics. Initially used primarily in the semiconductor industry as substrates for gallium nitride […]
Silicon Carbide Wafer’s descriptions Silicon carbide (SiC), also known as carborundum, represents a versatile semiconductor compound comprised of silicon and carbon with the chemical formula Silicon Carbide Wafer. Renowned for its robustness and resilience, SiC finds widespread utilization in semiconductor electronic devices engineered to operate under extreme conditions characterized by high temperatures, high voltages, or […]
Sapphire Optical Plates‘ abstract Maximize your manufacturing efficiency by incorporating our state-of-the-art Sapphire Optical Plates into your production processes. Meticulously crafted with precision engineering, these plates are meticulously designed to cater to a wide array of industrial requirements. With unmatched durability and impeccable optical clarity, our Sapphire Optical Plates revolutionize your operations, ensuring seamless functionality […]
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Silicon carbide wafers(SiC) is a binary compound formed by silicon (Si) and carbon (C) in a 1:1 ratio, with its basic structural unit being the Si-C tetrahedron. Take an example: Si atoms have a larger diameter, equivalent to apples, while C atoms have a smaller diameter, equivalent to oranges. When an equal number of oranges […]
see moreRecently, a certain brand’s car launch event has attracted widespread attention, with the technical hotspot of SiC electronic control modules once again under discussion. The core material in this section is SiC, and this article will provide a detailed analysis of the SiC structure. SiC is a compound composed of two elements, similar to the […]
see moreFrom 2021 to 2022, there was a rapid growth in the global semiconductor market due to the emergence of special demands resulting from the COVID-19 outbreak. However, as the special demands caused by the COVID-19 pandemic ended in the latter half of 2022 and plunged into one of the most severe recessions in history in […]
see morewhat application of 4H-SEMI sic substrate? The application of 4H-SEMI SiC substrate is extensive and crucial in various industries. This high-quality substrate offers countless possibilities for technological advancements and innovative products. In power electronics, 4H-SEMI SiC substrate is widely used to produce high-power and high-frequency devices. Its superior electrical properties, such as high breakdown voltage […]
see moreSilicon carbide belongs to the category of wide-bandgap semiconductor materials. In comparison to traditional materials, silicon carbide exhibits outstanding physical properties that contribute to the reduction in size and weight of discrete devices, modules, and even entire system units, thereby enhancing overall efficiency. As a wide-bandgap semiconductor, silicon carbide offers unique advantages, including high-temperature stability, […]
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