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市場調查報告書
商品編碼
1936063
單晶鑽石晶片 - 全球市場佔有率及排名、總收入及需求預測(2026-2032 年)Single-crystal Diamond Wafers- Global Market Share and Ranking, Overall Sales and Demand Forecast 2026-2032 |
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單晶鑽石 (SCD) 晶片/基板是自主型、用於裝置製造的鑽石基板,在整個可用區域內保持結晶質(通常具有 (100)/(111) 取向、離軸和缺陷指數),並結晶質半導體級幾何形狀和表面質量(厚度/平整度/拋光度、可控度和可控度)以及目標值“控制等級”等級。
從產業定位來看,電子級SCD顯然與下一代半導體、輻射/粒子檢測器和量子應用密切相關,而摻雜/外延就緒的SCD基板支援垂直元件架構。此定義不包括多晶CVD散熱器或不符合晶圓/基板規格的非晶圓「板」。
單晶鑽石 (SCD) 晶片仍處於商業化的早期階段。其供應受限於以下兩點:(a) 將單晶生長製程擴展到晶片尺寸並維持可接受的缺陷密度和應力控制面臨挑戰;(b) 鑽石精密加工(平整度、亞表面損傷控制、拋光)以及後續半導體製造認證的成本/產能限制。然而,該行業的技術發展路徑清晰可見:(1) 晶片尺寸的縮小正從英寸級演示向更易於製造的尺寸推進(2 英寸尺寸被反复強調為工業發展的里程碑,而 100 毫米單片晶片的推出則是關鍵的演示點)。 (2) 製程路線的融合正從「馬賽克作為過渡方案」轉向更高產量比率的晶片級生長和定序/製造。 (3)應用重點正從以研發為導向的量子/檢測器應用轉向更大規模生產的熱整合/可鍵合整合和功率/射頻平台,這些平台通常需要更嚴格的晶圓級規格、可重複性和更標準化的供應鏈。預計在2025年至2032年間,競爭將集中在三個主要領域:可擴展的晶圓生長技術(同質/異質磊晶)、減少切縫損失並提高回收經濟性的晶圓製造方法,以及能夠縮短封裝和高功率電子產品客戶認證週期的“裝置就緒”表面/晶圓規格(鍵合性、晶體取向、均勻性)。
全球單晶鑽石晶片市場預計在 2025 年達到 649 萬美元,預計從 2026 年到 2032 年將達到 4,796 萬美元,複合年成長率為 31.71%。
2025 年北美單晶鑽石晶片市值為 371 萬美元,預計到 2032 年將達到 3,178 萬美元,2026 年至 2032 年的複合年成長率為 34.24%。
2025 年歐洲單晶鑽石晶片市值為 99 萬美元,預計到 2032 年將達到 528 萬美元,2026 年至 2032 年的複合年成長率為 25.52%。
預計到 2025 年,日本單晶鑽石晶片市場價值將達到 134 萬美元,到 2032 年將達到 735 萬美元,2026 年至 2032 年的複合年成長率為 26.19%。
2025年中國單晶鑽石晶片市場價值為31萬美元,預計到2032年將達到312萬美元,2026年至2032年的複合年成長率為39.69%。
全球單晶鑽石晶片市場的主要企業包括Orbray、Diamond Foundry Inc.、Element Six (E6)、EDP Corporation、Advent Diamond、 連貫、Compound Semiconductor (Xiamen) Technology和Great Lakes Crystal Technologies (GLCT)。到2025年,前三大公司將佔據約72%的市場。單晶鑽石(SCD)晶片仍處於商業化初期,越來越多的公司正在進入該領域。潛在的新參與企業包括Diamfab、WD Advanced Materials (WDAM)、HiQuTe Diamond、Applied Diamond Inc.、重慶源石元素科技發展有限公司和寧波晶鑽科技有限公司。
本報告提供了全球單晶鑽石晶片市場的全面資訊,包括總銷售量、收入、價格、市場佔有率和主要企業的排名,以及按地區/國家、規模和應用進行的分析。
本報告以2025年為基準年,以銷售和收入(百萬美元)為單位,對單晶鑽石晶片的市場規模、估計值和預測進行了闡述,並涵蓋了2021年至2032年的歷史數據和預測數據。本報告結合定量和定性分析,旨在幫助讀者制定成長策略、評估競爭格局、了解自身在當前市場中的地位,並就單晶鑽石晶片做出明智的商業決策。
市場區隔
公司
尺寸段
應用領域
按地區
Single-crystal diamond (SCD) wafers/substrates are freestanding, device-processable diamond substrates that maintain single crystallinity across the usable area (commonly specified by orientation such as (100)/(111), off-axis, and defect metrics), and are delivered with semiconductor-grade geometry and surface quality (thickness/flatness/polish, controlled damage layer) plus controlled impurity/defect content to meet "electronic-grade" or "quantum-grade" performance targets. In industry positioning, electronic-grade SCD is explicitly linked to next-generation semiconductors, radiation/particle detectors, and quantum applications, while doped/epi-ready SCD substrates enable vertical device structures; this definition excludes polycrystalline CVD heat spreaders and non-wafer "plates" that lack wafer/substrate specifications.
The single-crystal diamond (SCD) wafers are still early-commercial: supply is constrained by (a) the challenge of scaling single-crystal growth to wafer size with acceptable defect density and stress control, and (b) the cost/throughput limits of diamond precision processing (flatness, subsurface damage control, polishing) and subsequent qualification in semiconductor manufacturing. The industry's technology trajectory is nevertheless clear: (1) wafer size scaling is progressing from inch-class demonstrations toward more manufacturable formats (2-inch class being repeatedly highlighted as an industrial stepping stone; 100 mm monolithic wafer announcements have become an important proof point), (2) process route convergence is moving from "mosaic as a bridging solution" toward higher-yield wafer-scale growth and singulation/processing, and (3) application pull is shifting from R&D-heavy quantum/detector uses toward higher-volume thermal/bondable integration and power/RF platforms, which typically demand tighter wafer-level specifications, repeatability, and a more standardized supply chain. Over 2025-2032, expect competition to focus on three levers: scalable wafer growth (homo/heteroepitaxy), wafer fabrication methods that reduce kerf loss and improve reuse economics, and "device-ready" surface/wafer specifications (bondability, orientation, uniformity) that shorten customer qualification cycles in packaging and high-power electronics.
The global market for Single-crystal Diamond Wafers was estimated to be worth US$ 6.49 million in 2025 and is projected to reach US$ 47.96 million, growing at a CAGR of 31.71% from 2026 to 2032.
The North American market for Single-crystal Diamond Wafers was valued at US$ 3.71 million in 2025 and is projected to reach US$ 31.78 million by 2032, at a CAGR of 34.24% from 2026 to 2032.
The Europe market for Single-crystal Diamond Wafers was valued at $ 0.99 million in 2025 and is projected to climb to US$ 5.28 million by 2032, at a CAGR of 25.52% from 2026 to 2032.
The Japan market for Single-crystal Diamond Wafers was valued at $ 1.34 million in 2025 and is projected to total US$ 7.35 million by 2032, at a CAGR of 26.19% from 2026 to 2032.
The China market for Single-crystal Diamond Wafers was valued at $ 0.31 million in 2025 and is projected to total US$ 3.12 million by 2032, at a CAGR of 39.69% from 2026 to 2032.
The global key companies in the Single-crystal Diamond Wafers market include Orbray, Diamond Foundry Inc, Element Six (E6), EDP Corporation, Advent Diamond, Coherent, Compound Semiconductor (Xiamen) Technology and Great Lakes Crystal Technologies (GLCT), etc. In 2025, the three largest players accounted for approximately 72% of revenue. The single-crystal diamond (SCD) wafers are still early-commercial, and more and more companies are entering this field. Potential entrants include Diamfab, WD Advanced Materials (WDAM), HiQuTe Diamond, Applied Diamond Inc, Chongqing Origin Stone Element Science and Technology Development and Ningbo Crysdiam Technology, etc.
This report provides a comprehensive view of the global market for Single-crystal Diamond Wafers, covering total sales volume, sales revenue, pricing, the market share and ranking of key companies, along with analyses by region & country, by Size, and by Application.
The Single-crystal Diamond Wafers market size, estimations, and forecasts are presented in terms of sales volume (Pieces) and revenue ($ millions), with 2025 as the base year and historical and forecast data from 2021 to 2032. The report combines quantitative and qualitative analysis to help readers develop growth strategies, assess the competitive landscape, evaluate their position in the current marketplace, and make informed business decisions regarding Single-crystal Diamond Wafers.
Market Segmentation
By Company
Segment by Size
Segment by Application
By Region