日本芯片设备,持续卖爆
半导体行业观察·2025-12-27 01:33

Core Viewpoint - Japan's semiconductor manufacturing equipment sales continue to thrive, achieving record highs in November 2025, with sales exceeding 400 billion yen for 13 consecutive months, indicating strong market demand and growth potential in the semiconductor industry [1][2]. Group 1: Sales Performance - In November 2025, Japan's semiconductor equipment sales reached 420.67 billion yen, marking a 3.7% increase year-over-year and a record high for the same month historically [1]. - Cumulatively, from January to November 2025, sales totaled 4.635 trillion yen, a significant increase of 16.1% compared to the same period last year, surpassing the previous year's total of 3.992 trillion yen [2]. - The global market share of Japanese semiconductor equipment stands at 30%, making it the second largest in the world after the United States [2]. Group 2: Future Projections - The Semiconductor Equipment and Materials International (SEMI) predicts that global semiconductor equipment sales will reach a record high of $133 billion in 2025, with expected growth of 13.7% [4]. - For the years 2026 and 2027, global semiconductor equipment sales are projected to continue growing, reaching $145 billion and $156 billion, respectively [4]. - The demand for advanced logic, memory, and packaging technologies driven by AI investments is identified as the primary growth driver for semiconductor equipment sales [4]. Group 3: Segment Insights - SEMI forecasts that sales of front-end semiconductor manufacturing equipment (Wafer Fab Equipment) will increase by 11.0% to $115.7 billion in 2025, reflecting strong demand from AI-related investments [5]. - The growth in sales is also attributed to significant investments in advanced memory technologies, particularly in South Korea, which is expected to support equipment sales [6]. - By 2027, China, Taiwan, and South Korea are anticipated to remain the top three countries in semiconductor equipment procurement, with China continuing to invest in mature processes and specific advanced nodes [5][6].