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市場調查報告書
商品編碼
1934306
工業主機板市場 - 全球產業規模、佔有率、趨勢、機會及預測(按類型、應用、組件、銷售管道、地區和競爭格局分類),2021-2031年Industrial Mainboard Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type, By Application, By Component, By Sales Channel, By Region & Competition, 2021-2031F |
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全球工業主機板市場預計將從 2025 年的 23.6 億美元成長到 2031 年的 33.2 億美元,複合年成長率為 5.85%。
該市場主要由堅固耐用的印刷電路基板組成,這些電路板旨在承受惡劣的環境條件(例如極端高溫、振動和灰塵),並作為工業自動化和嵌入式系統的中央處理器,其耐用性和連接性超越了家用電子電器。這一成長主要受工業4.0的推進以及智慧製造環境中邊緣運算需求的不斷成長的推動。工業4.0需要堅固耐用的硬體來進行即時數據處理。根據JEITA預測,到2024年,全球電子和IT產業的產值預計將以每年9%的速度成長,達到3.7兆美元,凸顯了產業對先進電子基礎設施日益成長的依賴性。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 23.6億美元 |
| 市場規模:2031年 | 33.2億美元 |
| 複合年成長率:2026-2031年 | 5.85% |
| 成長最快的細分市場 | 售後市場 |
| 最大的市場 | 北美洲 |
市場發展的一大障礙在於難以將現代主機板整合到傳統的工業基礎設施中。許多製造工廠依賴與現有硬體不相容的過時系統,這導致需要進行昂貴的維修,甚至需要徹底改造營運。這種互通性差距通常需要大量的資金投入和先進的技術能力,使得注重成本的企業不願對其設施進行現代化改造。這最終阻礙了技術的廣泛應用。
工業自動化和機器人技術需求的不斷成長是全球工業主機板市場的主要驅動力。隨著生產設施向全自動化工作流程轉型,能夠管理複雜機器人控制設備和運動系統的高性能主機板至關重要。這些組件必須能夠承受持續的振動和熱應力,同時提供精確機械操作所需的計算穩定性。產業發展清晰地印證了這個趨勢。國際機器人聯合會 (IFR) 於 2025 年 9 月發布的《2025 年世界機器人》報告顯示,到 2024 年,全球工業機器人裝置量將達到 54.2 萬台,凸顯了為支撐自動化領域的爆炸式成長,硬體部署規模之大。
同時,工業4.0和智慧製造的快速普及正在改變技術需求,並推動市場轉型為高效能運算解決方案。現代工業主機板越來越需要處理邊緣級人工智慧處理,以實現即時預測性維護和機器視覺分析,而無需依賴雲端延遲。這種向智慧基礎設施的轉變也體現在戰略支出上:羅克韋爾自動化於2025年6月發布的第十份年度《智慧製造現狀報告》顯示,95%的製造商已經投資或計劃在未來五年內投資人工智慧和機器學習技術。這一投資趨勢直接惠及硬體供應商,他們看到對工業IoT和邊緣運算平台的持續需求推動了業務成長,研華科技2025會計年度的財務業績(第三季度合併銷售額同比成長19%)便印證了這一點。
全球工業主機板市場面臨的主要障礙之一是將現代組件整合到傳統工業設備中所帶來的巨大技術挑戰。生產車間普遍使用老舊設備,這些設備使用壽命長,且與目前的主機板通訊協定和介面存在固有的不相容性。這種互通性的缺失給現代化改造帶來了巨大的經濟負擔,迫使企業在昂貴的大規模維修和繼續使用舊硬體之間做出選擇。因此,注重成本的企業往往會推遲必要的升級,以避免營運中斷,這直接限制了新主機板的出貨量。
由於不願投資資本密集現代化改造,市場成長受到顯著限制。製造商因整合複雜性和高成本而猶豫不決,不願升級舊有系統,導致對先進電子基礎設施的需求下降。這種技術採納速度的放緩也反映在近期的產業績效數據中。根據德國電氣電子工業協會 (ZVEI) 預測,2024 年電氣和數位產業的產值預計將下降 7%,這切實體現了投資活動減少以及製造商在向現代硬體標準轉型過程中面臨的困難所帶來的影響。
向下一代DDR5記憶體和PCIe Gen 5介面的過渡正在推動工業主機板的根本性重新設計,以滿足現代互聯工廠對資料吞吐量指數級成長的需求。與以往的標準不同,這些先進的介面提供了高速周邊設備通訊和即時資料存取所需的頻寬,有效消除了控制複雜自動化的資料密集型控制系統中的瓶頸。隨著製造商不斷增強其基礎設施能力,組件市場的爆炸性成長也推動了這項硬體演進。根據半導體產業協會(SIA)2025年2月發布的《全球半導體營收報告》,2024年記憶體產品年營收將激增78.9%,這標誌著整個產業正朝著高頻寬運算架構進行大規模轉型,以支援資料密集型工作負載。
同時,對永續和環保印刷基板製造實踐的關注已從單純的監管合規發展成為主機板生產的核心市場需求,並成為一項重要的營運優先事項。製造商擴大採用無鹵層壓板、無鉛焊接和節能製造程序,以滿足嚴格的全球環境標準並減少工業電子產品的碳足跡。這種向循環經濟原則的策略轉變在整個電子供應鏈中都得到了體現。根據IPC International於2025年3月進行的「全球電子元件供應鏈永續性」調查,59%的電子產品製造商表示計畫在2025年加大永續性舉措,凸顯了該產業對綠色生產標準的日益重視。
The Global Industrial Mainboard Market is projected to expand from USD 2.36 Billion in 2025 to USD 3.32 Billion by 2031, registering a CAGR of 5.85%. This market comprises ruggedized printed circuit boards engineered to endure harsh conditions such as extreme heat, vibration, and dust, serving as central processing units for industrial automation and embedded systems with durability and connectivity superior to consumer-grade electronics. Expansion is largely fueled by the advancement of Industry 4.0, which necessitates robust hardware for real-time data processing and the growing need for edge computing in smart manufacturing environments. According to JEITA, global production for the electronics and IT sectors was estimated to increase by 9 percent annually to 3.7 trillion dollars in 2024, emphasizing the growing industrial dependence on sophisticated electronic infrastructure.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 2.36 Billion |
| Market Size 2031 | USD 3.32 Billion |
| CAGR 2026-2031 | 5.85% |
| Fastest Growing Segment | Aftermarket |
| Largest Market | North America |
A major obstacle to market advancement is the difficulty of assimilating modern mainboards into legacy industrial infrastructure. Numerous manufacturing plants depend on older systems that are incompatible with current hardware, requiring costly retrofitting or total operational overhauls. This gap in interoperability frequently demands significant capital expenditure and technical skill, causing cost-conscious enterprises to hesitate in modernizing their equipment, which subsequently impedes broader technological adoption.
Market Driver
The escalating demand for industrial automation and robotics serves as a primary driver for the Global Industrial Mainboard Market. As production facilities shift toward fully autonomous workflows, there is an essential need for ruggedized mainboards that can manage complex robotic controllers and motion systems. These components must withstand persistent vibration and thermal stress while providing the computational stability required for exact mechanical movements. This trend is highlighted by the sector's growth; according to the International Federation of Robotics' 'World Robotics 2025' report from September 2025, global industrial robot installations hit 542,000 units in 2024, demonstrating the immense scale of hardware deployment needed to sustain this automation surge.
Concurrently, the swift adoption of Industry 4.0 and smart manufacturing is transforming technical requirements, pushing the market toward high-performance computing solutions. Modern industrial mainboards are increasingly required to handle edge-level artificial intelligence processing to enable real-time predictive maintenance and machine vision analysis, eliminating reliance on cloud latency. This movement toward intelligent infrastructure is reflected in strategic spending; according to Rockwell Automation's '10th Annual State of Smart Manufacturing Report' from June 2025, 95 percent of manufacturers have invested in or intend to invest in AI and machine learning technologies within the next five years. This investment trend directly favors hardware suppliers, as shown by Advantech's financial results in 2025, where third-quarter consolidated revenue grew 19 percent year-over-year, fueled by continuous demand for industrial IoT and edge computing platforms.
Market Challenge
The principal barrier hindering the Global Industrial Mainboard Market is the significant technical challenge involved in incorporating modern components into legacy industrial setups. Manufacturing settings often maintain long lifecycles, leading to a predominance of aging machinery that is inherently incompatible with the protocols and interfaces of current mainboards. This lack of interoperability compels enterprises to decide between costly, extensive retrofitting or persisting with outdated hardware, creating a substantial financial deterrent to modernization. As a result, cost-conscious organizations frequently postpone essential upgrades to prevent operational interruptions, which directly curbs the volume of new mainboard units shipped.
This reluctance to commit to capital-intensive modernization notably restricts market growth. When manufacturers hesitate to replace legacy systems because of integration complexities and high costs, the demand for sophisticated electronic infrastructure diminishes. This retardation in technology adoption is reflected in recent sector performance data. According to ZVEI, production in the electrical and digital industry was projected to decrease by 7 percent in 2024, demonstrating the concrete effects of lowered investment activity and the difficulties manufacturers encounter when shifting to updated hardware standards.
Market Trends
The shift toward Next-Generation DDR5 Memory and PCIe Gen 5 Interfaces is fundamentally redesigning industrial mainboards to accommodate the exponential increase in data throughput demanded by modern connected factories. In contrast to legacy standards, these advanced interfaces offer the bandwidth needed for high-speed peripheral communication and immediate data access, effectively eliminating bottlenecks in data-intensive control systems that govern complex automation. This hardware evolution is supported by explosive growth in the component market as manufacturers enhance their infrastructure capabilities. According to the Semiconductor Industry Association's 'Global Semiconductor Sales Report' from February 2025, annual sales of memory products jumped by 78.9 percent in 2024, signaling a massive industrial shift toward high-bandwidth computing architectures to sustain data-heavy workloads.
At the same time, the emphasis on Sustainable and Eco-Friendly PCB Manufacturing Practices has become a definitive operational priority, evolving from simple regulatory compliance to a core market prerequisite for mainboard production. Manufacturers are increasingly utilizing halogen-free laminates, lead-free soldering, and energy-efficient manufacturing processes to meet strict global environmental standards and lower the carbon footprint of industrial electronics. This strategic move toward circular economy principles is measurable across the wider electronics supply chain. According to IPC International's 'Sustainability in the Global Electronics Supply Chain' survey from March 2025, 59 percent of electronics manufacturing firms stated plans to ramp up their sustainability initiatives in 2025, highlighting the sector's growing dedication to green production standards.
Report Scope
In this report, the Global Industrial Mainboard Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Industrial Mainboard Market.
Global Industrial Mainboard Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: