半绝缘型碳化硅衬底片

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打开AR眼镜新应用场景,半绝缘型碳化硅衬底片放量在即 | 投研报告
Zhong Guo Neng Yuan Wang· 2025-04-27 01:58
Core Insights - The report by Dongwu Securities highlights the potential of silicon carbide (SiC) materials as ideal substrates for AR glasses due to their high refractive index and thermal conductivity [1][3] - AR glasses are positioned as a perfect carrier for AI applications, merging virtual and real-world information seamlessly [2] Industry Overview - The global shipment of AR glasses is projected to reach 553,000 units in 2024, representing a year-on-year increase of 7.8%, with China accounting for 286,000 units [2] - The optical display system, comprising optical combiners and micro-displays, is the core component of AR glasses, constituting over 40% of the total cost [2] Technology Trends - Surface relief grating (SRG) waveguide technology is identified as the future mainstream trend for AR glasses' optical display systems, offering controllable manufacturing costs and excellent optical performance [2] - SiC materials combined with SRG waveguides and etching processes are crucial for significant advancements in AR glasses, enhancing field of view (FOV) and addressing issues like color dispersion and light loss [3] Cost Reduction Strategies - The need for semi-insulating SiC substrates in large sizes is emphasized as a key factor for cost reduction, with breakthroughs in 12-inch substrate mass production being essential for making AR glasses more accessible to the consumer market [4] - It is estimated that if AR glasses reach a shipment volume of 100 million units, approximately 10 million 12-inch SiC substrates will be required [4] Investment Recommendations - The report recommends focusing on companies such as Jing Sheng Mechanical and Tian Yue Advanced as key investment opportunities in the AR glasses sector [5]
碳化硅SiC行业深度:打开AR眼镜新应用场景,半绝缘型碳化硅衬底片放量在即
Soochow Securities· 2025-04-25 12:34
Investment Rating - The report recommends a focus on investment in companies such as Jing Sheng Mechanical & Electrical and Tian Yue Advanced [2]. Core Insights - AR glasses are seen as the perfect carrier for AI applications, combining virtual and real-world elements. The global shipment of AR glasses is expected to reach 553,000 units in 2024, a year-on-year increase of 7.8%, with China accounting for 286,000 units [2][11][17]. - The optical display system is the core component of AR glasses, comprising optical combiners and micro-displays, which account for over 40% of the total cost [2][26]. - The surface relief grating waveguide (SRG) is identified as the future mainstream trend for AR glasses' optical display systems, offering controllable manufacturing costs and excellent optical performance [2][57]. - Silicon carbide (SiC) materials are highlighted as ideal substrates for AR glasses due to their high refractive index and thermal conductivity, enabling a field of view (FOV) of over 80 degrees with a single-layer SiC lens [2][66]. - The need for semi-insulating SiC substrates is emphasized, with a focus on achieving mass production of 12-inch substrates to reduce costs significantly [2][63]. Summary by Sections Section 1: AR Glasses and Their Market - AR glasses are defined as smart wearable devices that overlay virtual information onto the real world, enhancing user experience [5][10]. - The market for AR glasses is expected to peak in 2024, with significant improvements in portability, functionality, and technology [17][18]. Section 2: Optical Waveguide Structures - The report discusses various optical waveguide structures, with SRG being the most suitable for mass production due to its manufacturing feasibility and optical performance [57][58]. - The advantages of SiC in optical waveguide applications include the ability to reduce color separation and improve thermal management, which is crucial for AR glasses' performance [70][71]. Section 3: Silicon Carbide Materials - SiC materials are noted for their high refractive index, which enhances the FOV and mitigates issues like rainbow patterns in optical waveguides [66][70]. - The report emphasizes the importance of achieving large-size SiC substrates to lower production costs and facilitate the entry of AR glasses into the consumer market [2][63].