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SEMI Reports 2025 Annual Worldwide Silicon Wafer Shipments and Revenue Results
February 11, 2026 | PRNewswireEstimated reading time: 1 minute
Worldwide silicon wafer shipments in 2025 increased 5.8% to 12,973 million square inches (MSI) while wafer revenue slipped 1.2% to $11.4 billion over the same period, the SEMI Silicon Manufacturers Group (SMG) reported in its year-end analysis of the silicon wafer industry.
2025 marks an inflection year for wafer shipments, with silicon MSI resuming growth supported by strong demand for advanced epitaxial wafers in logic and polished wafers for high-bandwidth memory (HBM), driven by AI applications. Softness in wafer revenue is mostly attributed to the slow momentum in traditional semiconductor applications where the demand and pricing environment are yet to improve.
"The 2025–2026 wafer market is shaped by diverging trends across technology nodes," said Ginji Yada, Chairman of SEMI SMG and Executive Office Deputy General Manager, Sales and Marketing Division at SUMCO Corporation. "Demand for 300mm wafers remains strong in advanced applications, particularly in AI-driven logic and high-bandwidth memory (HBM), supported by the ongoing adoption of sub-3nm processes. These technology transitions are driving increased requirements for wafer quality and consistency, reinforcing the need for advanced material solutions. Investments in data centers and generative AI continue to underpin demand in leading-edge segments, where performance and reliability are critical.
"In contrast, the legacy semiconductor segment shows gradual signs of stabilization. Wafer and chip inventory levels in mature-node applications—such as automotive, industrial, and consumer electronics—have begun to normalize after extended inventory adjustments. While supply-demand conditions are improving sequentially, the pace of recovery remains moderate, with demand recovery still sensitive to macroeconomic factors and end-market dynamics. As a result, the overall market outlook reflects a two-track trajectory: sustained demand and technical advancement in advanced nodes, alongside a cautious and incremental rebound for demand in mature technology segments."
Silicon wafers are the fundamental building material for the majority of semiconductors, which are vital components of all electronic devices. The highly engineered thin disks are produced in diameters of up to 300 mm and serve as the substrate material on which most semiconductors are fabricated.
The SMG is a sub-committee of the SEMI Electronic Materials Group (EMG) and is open to SEMI members involved in manufacturing polycrystalline silicon, monocrystalline silicon or silicon wafers (e.g., as cut, polished, epitaxial). The SMG facilitates collective efforts on issues related to the silicon industry, including the development of statistics about the silicon industry.
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Texas Instruments to Acquire Silicon Labs
02/04/2026 | PRNewswireTexas Instruments and Silicon Labs announced they have signed a definitive agreement under which Texas Instruments will acquire Silicon Labs for $231.00 per share in an all-cash transaction, representing a total enterprise value of approximately $7.5 billion.
Veeco, imec Enable 300mm Barium Titanate Integration for Silicon Photonics
02/03/2026 | ImecVeeco Instruments Inc. and imec announced that they have collaboratively developed a 300mm high-volume-manufacturing-compatible process that enables the integration of barium titanate (BaTiO3 or BTO) on a silicon photonics platform.
Quobly Expands North American Presence with Canadian Subsidiary
01/30/2026 | PRNewswireQuobly, a French pioneer in silicon-based quantum computing, announces the opening of its Canadian subsidiary in Sherbrooke (Quebec).
Lightmatter, Cadence Collaborate to Accelerate Optical Interconnect for AI Infrastructure
01/27/2026 | BUSINESS WIRELightmatter, the leader in photonic (super)computing, announced a technical collaboration with Cadence to develop co-packaged optics (CPO) solutions that integrate Cadence’s silicon-proven, high-speed SerDes IP with Lightmatter’s Passage™ optical engine.
La Luce Cristallina Launches CMOS-Compatible Oxide Pseudo-Substrate
01/27/2026 | PRNewswireLa Luce Cristallina announced it has launched its new CMOS-compatible oxide pseudo-substrate, enabling high-quality, epitaxial strontium titanate (SrTiO₃) films to be grown directly on 200-mm silicon and silicon-on-insulator (SOI) wafers.