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高性能硅光电倍增器(SiPM)
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9成高端设备看别人脸色,被外国企业垄断20年,国产设备终突围!
Xin Lang Cai Jing· 2025-07-27 22:25
Core Viewpoint - The successful domestic production of high-performance silicon photomultiplier (SiPM) technology by China has broken a 20-year monopoly held by German and Japanese companies, enabling the country to develop advanced medical devices and scientific instruments with a solid "Chinese core" foundation [1][12]. Group 1: Technology Breakthrough - The domestic company Zhongjing Optoelectronics, a subsidiary of China General Nuclear Power Corporation, has established a leading SiPM packaging production line with a yield rate exceeding 90% [1][3]. - The production of SiPM requires extremely high cleanliness standards, surpassing that of surgical rooms, indicating a significant mastery of core technology [3]. - The production line has received EU RoHS environmental certification and is set to pursue stricter ISO certification, positioning it for international market entry [3]. Group 2: Importance of SiPM - SiPM is described as a highly sensitive "photoelectric converter" capable of detecting single photons and converting them into measurable electrical signals [4]. - Compared to traditional photomultiplier tubes (PMT), SiPM operates at a lower voltage (under 100 volts), is more energy-efficient, and is more robust due to its solid-state design [6]. Group 3: Applications of SiPM - SiPM is crucial in high-end medical imaging devices like PET/CT and SPECT, where it converts gamma photons released from radioactive drugs into electrical signals, enhancing tumor detection accuracy [7]. - In high-energy physics, SiPM is used in experiments at CERN and Cherenkov telescopes to capture fleeting light produced by high-energy particles [7]. - SiPM is also essential for advanced driver-assistance systems, improving the performance of LiDAR in adverse weather conditions [9]. - Additionally, SiPM plays a role in radiation monitoring in nuclear power plants and customs checkpoints, ensuring public safety [9]. Group 4: Historical Context and Challenges - Previously, the SiPM market was dominated by foreign companies, with 90% of the market share held by German and Japanese firms due to high technical barriers and complex semiconductor processes [11]. - The breakthrough by Zhongjing Optoelectronics involved the independent development of key technologies such as external resistance quenching (EQR) SiPM and position-sensitive SiPM, directly competing with international standards [12].
打破垄断!重大突破!
证券时报· 2025-06-25 07:56
Core Viewpoint - The domestic high-performance silicon photomultiplier (SiPM) has achieved significant breakthroughs in localization, marking a successful end to foreign monopolies in this field [1][2]. Group 1: Company Achievements - China General Nuclear Power Corporation's subsidiary, CGN Technology Development Co., Ltd., has successfully established a SiPM packaging production line with a device yield exceeding 90% [2]. - The successful production line fills the gap in domestic high-performance SiPM products, providing strong support for the stability of the industrial chain [4]. - The production line has passed EU RoHS certification and is on track to obtain ISO certification, laying a solid foundation for large-scale application and market expansion [4]. Group 2: Market Potential and Applications - SiPMs are widely used in advanced fields such as nuclear medical imaging, nuclear measurement and control equipment, high-energy physics research, and biological sciences due to their high sensitivity, low noise, and low power consumption [4]. - The domestic SiPM market has long been dominated by foreign companies, and achieving self-control of core components has been included in national development plans [4]. Group 3: Future Plans and Strategies - The company aims to continuously optimize and enhance SiPM product performance based on market demand and customer feedback, focusing on building core competitiveness [6]. - CGN Technology Development Co., Ltd. is committed to becoming a leader in the non-power nuclear technology application industry and is exploring new models for mixed-ownership development [7].