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SEMI Reports Worldwide Silicon Wafer Shipments Increase 3% YoY in Q3 2025
November 4, 2025 | SEMIEstimated reading time: 1 minute
The SEMI Silicon Manufacturers Group (SMG) reported today, in its quarterly analysis of the silicon wafer industry, that worldwide silicon wafer shipments increased 3.1% year-on-year to 3,313 million square inches (MSI) from the 3,214 MSI recorded during the same quarter of 2024. Sequentially, shipments slipped 0.4% quarter-over-quarter from the 3,327 MSI recorded during the second quarter of this year indicating softness in recovery particularly for epitaxial wafers slices.
“January through September silicon shipments registered a significant year-on-year increase primarily driven by the growth of 300 mm shipments for advanced logic, cloud infrastructure, and memory demand,” said Lee Chungwei (李崇偉), Chairman of SEMI SMG and Vice President and Chief Auditor at GlobalWafers. “AI empowers significant investments expansion in advanced processes contributing to the wafer demand growth.”
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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SEMI Reports Global Silicon Wafer Shipments to Rebound 5.4% in 2025, with New Record Expected by 2028
10/30/2025 | SEMIGlobal shipments of silicon wafers are projected to increase 5.4% in 2025 to 12,824 million square inches (MSI) followed by steady growth through 2028 when the market is expected to reach a new industry record of 15,485 MSI, SEMI reported in its annual silicon shipment forecast.
SEMI Reports Global Silicon Wafer Shipments to Rebound 5.4% in 2025, with New Record Expected by 2028
10/29/2025 | SEMIGlobal shipments of silicon wafers are projected to increase 5.4% in 2025 to 12,824 million square inches (MSI) followed by steady growth through 2028 when the market is expected to reach a new industry record of 15,485 MSI, SEMI reported today in its annual silicon shipment forecast.
Beyond Thermal Conductivity: Exploring Polymer-based TIM Strategies for High-power-density Electronics
10/13/2025 | Padmanabha Shakthivelu and Nico Bruijnis, MacDermid Alpha Electronics SolutionsAs power density and thermal loads continue to increase, effective thermal management becomes increasingly important. Rapid and efficient heat transfer from power semiconductor chip packages is essential for achieving optimal performance and ensuring long-term reliability of temperature-sensitive components. This is particularly crucial in power systems that support advanced applications such as green energy generation, electric vehicles, aerospace, and defense, along with high-speed computing for data centers and artificial intelligence (AI).
Is Glass Finally Coming of Age?
10/13/2025 | Nolan Johnson, I-Connect007Substrates, by definition, form the base of all electronic devices. Whether discussing silicon wafers for semiconductors, glass-and-epoxy materials in printed circuits, or the base of choice for interposers, all these materials function as substrates. While other substrates have come and gone, silicon and FR-4 have remained the de facto standards for the industry.
Interposers, Substrates, and Advanced Manufacturing
10/13/2025 | Marcy LaRont, I-Connect007I attend a lot of industry trade shows and conferences. Lately, during conversations with technologists, I’ve noticed that there is some confusion about what exactly constitutes an interposer. One question I hear every so often is, “Are all interposers substrates?” The short answer to that question is no. But some interposers are, in fact, full substrates.