Diamond Applications Span Diverse Fields, with AI Computing Heat Dissipation Emerging as a Key Growth Catalyst: Guotai Haitong

Stock News07-29

Investment bank Guotai Haitong has released a research report highlighting the extensive applications of diamonds, spanning traditional manufacturing tools for cutting, drilling, and polishing, as well as consumer-grade jewelry and chip heat dissipation. China has long produced over 90% of the world's synthetic diamonds, reaching approximately 16.6 billion carats in 2023.

AI computing heat dissipation is identified as a core new driver for diamond demand, alongside other growth areas such as PCB drill bits, semiconductor tools, diamond dicing blades, thinning grinding wheels, and lab-grown diamonds. The report outlines the key viewpoints below.

Diamonds Possess Multiple Properties, with China as the Top Producer

Diamonds feature high hardness, high thermal conductivity, excellent electrical insulation, full-band high light transmittance, and an ultra-wide bandgap, making them suitable for diverse uses. Natural diamond output is limited, while synthetic production relies on two complementary methods: High Pressure High Temperature (HTHP) for granular single crystals and lab-grown diamonds, and Chemical Vapor Deposition (CVD) for sheet-like functional films. China's synthetic diamond output has consistently exceeded 90% of global production, reaching 16.6 billion carats in 2023.

Raw Materials and Traditional Demand

Diamond products are categorized into single crystals, micro-powders, composites, and lab-grown diamonds, with current demand primarily driven by tool-based processing and lab-grown diamonds. In 2025, the global value of traditional industrial applications is estimated at approximately 5.3 billion yuan (China: 4.8 billion yuan), while the global value of rough lab-grown diamonds is about 5.6 billion yuan (China: 3.5 billion yuan). Traditional abrasive and cutting tool markets are mature with stable volumes and prices, while rough lab-grown diamonds are experiencing price declines (CAGR of approximately 25%) due to capacity expansion.

New Growth Points

1) AI computing heat dissipation is a core growth driver: As thermal flux in high-performance chips rises and traditional copper-aluminum cooling approaches its limits, diamond heat spreaders and heat sinks are achieving a breakthrough from zero to one. The global market size could leap from roughly 300 million yuan in 2025 to a trillion-yuan level by 2030 (CAGR over 200%). Under a neutral scenario, the chip-level diamond heat sink market is forecast at 51.6 billion yuan in 2030, with an optimistic scenario exceeding 100 billion yuan. The diamond-copper liquid cooling solution market is projected at 56.7 billion yuan in 2030 under a neutral scenario. Akash has already delivered commercial diamond cooling solutions for NVIDIA's H200, and Lenovo AI thin laptops, along with the Zhengzhou Supercomputing node, have implemented diamond-copper cooling solutions.

2) PCB drill bits and semiconductor tools: Upgraded computing architectures are driving PCB evolution toward high-end HDI, packaging substrates, and M9+ materials. Traditional tungsten steel drill bits are hitting performance limits, accelerating the verification of diamond-coated and PCD polycrystalline drill bits. The diamond drill bit market is expected to reach 1.55 billion yuan by 2030 (CAGR of 30-40% from 2025 to 2030).

3) Diamond dicing blades and thinning grinding wheels: Precision processing tools for semiconductors are experiencing steady growth, driven by wafer expansion and advanced packaging.

4) Lab-grown diamonds: China's lab-grown diamond market is projected to exceed 102.5 billion yuan by 2030 (CAGR of 9% from 2026 to 2030), with the global market reaching approximately 270 billion yuan. Global production is highly concentrated in China, while consumption is primarily in the U.S., creating a mismatch. Indian import and export data has stabilized and recovered since the second half of 2025, with penetration rates fluctuating upward.

Risk Factors

Risks include intensified competition leading to faster-than-expected price declines in core products, delayed commercialization of diamond applications in AI and other emerging fields, or displacement by superior alternative materials, and slower-than-anticipated development of downstream industries such as AI and lab-grown diamonds.

Disclaimer: Investing carries risk. This is not financial advice. The above content should not be regarded as an offer, recommendation, or solicitation on acquiring or disposing of any financial products, any associated discussions, comments, or posts by author or other users should not be considered as such either. It is solely for general information purpose only, which does not consider your own investment objectives, financial situations or needs. TTM assumes no responsibility or warranty for the accuracy and completeness of the information, investors should do their own research and may seek professional advice before investing.

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