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市場調查報告書
商品編碼
1766039
PCIe 連接器市場預測(至 2032 年):按產品類型、連接器類型、通道、應用、最終用戶和地區進行的全球分析PCI-e Connectors Market Forecasts to 2032 - Global Analysis By Product Type (2.5 Gb/s, 5.0 Gb/s, 8.0 Gb/s, 16.0 Gb/s, 32.0 Gb/s and 64.0 Gb/s ), Connector Type, Number of Lanes, Application, End User and By Geography |
根據 Stratistics MRC 的預測,全球 PCIe 連接器市場規模預計在 2025 年達到 44.7 億美元,到 2032 年將達到 134.3 億美元,預測期內的複合年成長率為 17.0%。
PCIe(高速周邊組件互連)連接器是一種高速介面組件,用於將顯示卡、固態硬碟、網路卡和其他周邊設備等擴充卡連接到電腦主機板。這些連接器提供不同的通道配置,例如 x1、x4、x8 和 x16,分別表示其資料通道數量以及支援的頻寬。 PCI 和 AGP 等舊標準已被 PCIe 連接器所取代,後者旨在實現低延遲和高吞吐量。
根據 PCI SIG 介紹,20 多年來,PCIe 技術每一代的頻寬都加倍,例如,PCIe 6.0 提供 64GT/s,而 PCIe 7.0 現在達到 128GT/s。
高速資料傳輸的需求日益增加
PCIe 連接器能夠以最小的開銷實現點對點資料通訊,與舊式匯流排架構相比,資料傳輸速率顯著提升。 PCIe Gen 4.0、5.0 以及現在的 7.0 等技術提供了可擴展的解決方案來解決這些效能瓶頸,並已成為從遊戲系統到工業運算等各種應用的必備技術。此外,全球資料量的快速成長也推動了元件之間對高速、低延遲通訊的需求,尤其是在企業和雲端環境中。
昂貴的高級 PCIe 組件的成本
儘管 PCIe 連接器帶來了顯著的效能優勢,但實施最新一代 PCIe(例如 Gen 5.0 和 Gen 7.0)的成本可能過高,尤其對於中小型企業而言。由於需要先進的 PCB 材料、複雜的佈局和嚴格的訊號完整性測試,高速連接器及其相容硬體的開發和製造成本也會增加。此外,如果設計一個支援最新一代 PCIe 的系統需要升級晶片組、先進的冷卻解決方案和精密的供電組件,整體擁有成本也會增加。
物聯網設備和邊緣運算的成長
隨著邊緣運算和物聯網 (IoT) 應用的成長,分散式運算環境中對緊湊、高速且節能的互連的需求日益成長。 PCIe 使邊緣伺服器、閘道器和嵌入式系統中的高速資料交換成為可能。隨著物聯網設備被開發用於管理本地 AI 處理和即時分析,PCIe 連接器將成為連接感測器、記憶體、運算單元和加速器的關鍵。此外,這些部署為 PCIe 硬體整合提供了龐大的未開發市場,而 PCIe 硬體整合在智慧城市、工業自動化和 5G 邊緣網路中屢見不鮮。
供應鏈薄弱和零件短缺
正如新冠疫情及其導致的半導體供不應求所表明的那樣,全球電子元件供應鏈仍然脆弱。 PCIe連接器,尤其是需要複雜材料和高速訊號完整性,需要專門的製造技術和材料。原料供應、製造能力或物流中斷可能會影響生產計劃和成本。此外,依賴海外委託製造製造商和工廠的連接器製造商還面臨地緣政治和關稅風險。
新冠疫情對 PCIe 連接器市場產生了多方面的影響。在早期,供應鏈中斷、工廠關閉和零件短缺擾亂了市場,導致 IT 硬體生產和全球部署延遲。然而,隨著遠距辦公、線上教育和數位轉型計劃的蓬勃發展,對高效能運算系統、資料中心和儲存解決方案的需求不斷成長。這種變化導致 PCIe 連接器的採用在中長期呈現成長態勢,尤其是在消費性電子產品、雲端基礎架構和企業伺服器領域。
預計 8.0Gb/s(PCIe Gen 3)部分將成為預測期內最大的部分。
預計 8.0Gb/s(PCIe Gen 3)細分市場將在預測期內佔據最大市場佔有率。 PCIe Gen 3.0 將繼續廣泛應用,因為它在效能、成本和生態系統成熟度之間實現了最佳平衡。儲存設備、桌上型電腦、筆記型電腦和商用伺服器均廣泛使用 PCIe Gen 3.0。主機板和晶片組製造商長期以來一直支持該標準,確保了廣泛的兼容性,並使其成為大多數應用的可靠標準。此外,許多OEM)也支援廣泛實施 Gen 3.0,尤其是在不需要極高頻寬的情況下。
預計 M.2 PCIe 連接器領域在預測期內將實現最高複合年成長率
預計 M.2 PCIe 連接器領域將在預測期內實現最高成長率。 M.2 NVMe SSD 因其高速性能和小巧尺寸,在遊戲筆記型電腦、Ultrabooks和小型桌上型電腦中得到廣泛應用,這推動了這一成長。 M.2 連接器支援 PCIe Gen 3.0、4.0 以及現在的 Gen 5.0,從而實現了消費級和商用設備的性能可擴展性。此外,M.2 PCIe 連接器在現代電子設備中越來越普及,這極大地促進了市場在高速儲存和緊湊型設備需求不斷成長的背景下的快速擴張。
預計亞太地區將在預測期內佔據最大市場佔有率。這得益於其強大的電子製造生態系統,以及韓國、日本、台灣和中國大陸等地區的主要主機板、半導體和連接器製造商。 PCIe 連接對於該地區遊戲系統、筆記型電腦、桌上型電腦和資料中心硬體的大規模生產至關重要。此外,5G、物聯網和人工智慧等技術在消費性和商業應用中的快速應用也推動了需求成長。政府支持智慧製造和數位基礎設施的項目也有助於亞太地區在全球 PCIe 連接器市場佔據主導地位。
在預測期內,由於雲端運算基礎設施、人工智慧、機器學習和資料中心的快速發展,北美預計將呈現最高的複合年成長率。 Google、亞馬遜、微軟和英偉達等科技巨頭已在該地區佈局,並正在大力投資依賴 PCIe 連接實現可擴展性和速度的高性能電腦系統。公共和私營部門在邊緣運算、自主技術和 5G 部署方面的強勁投資也推動了成長。由於率先採用尖端 PCIe 技術並注重創新,北美是該行業成長最快的地區。
According to Stratistics MRC, the Global PCI-e Connectors Market is accounted for $4.47 billion in 2025 and is expected to reach $13.43 billion by 2032 growing at a CAGR of 17.0% during the forecast period. PCIe (Peripheral Component Interconnect Express) connectors are high-speed interface components used to connect expansion cards like graphics cards, SSDs, network cards, and other peripherals to a computer's motherboard. These connectors are available in different lane configurations, including x1, x4, x8, and x16, which indicate the number of data lanes and, in turn, the bandwidth they can support. Older standards like PCI and AGP have mostly been replaced by PCIe connectors, which are designed for low latency and high throughput.
According to PCI SIG, PCIe technology has doubled its bandwidth every generation for over two decades-for example, PCIe 6.0 offered 64 GT/s and PCIe 7.0 now reaches 128 GT/s-maintaining full backward compatibility and enabling up to 512 GB/s in a 16 lane configuration.
Increased need for fast data transmission
PCIe connectors enable point-to-point data communication with minimal overhead, allowing significantly faster data transfer rates compared to older bus architectures. Technologies like PCIe Gen 4.0, 5.0, and now 7.0 provide scalable solutions that address these performance bottlenecks, making them essential in applications ranging from gaming systems to industrial computing. Additionally, the need for high-speed, low-latency communication between components is growing as the global volume of data continues to skyrocket, especially in enterprise and cloud environments.
Expensive advanced PCIe component prices
The cost of implementing the newest PCIe generations (such as Gen 5.0 and Gen 7.0) can be prohibitive, particularly for small and medium-sized businesses, despite the fact that PCIe connectors provide notable performance benefits. The development and manufacturing costs of high-speed connectors and compatible hardware are increased by the need for sophisticated PCB materials, intricate layouts, and stringent signal integrity testing. Furthermore, the total cost of ownership may also increase if upgraded chipsets, sophisticated cooling solutions, and precise power delivery components are needed to design systems that support the latest PCIe generations.
Growth of IoT devices and edge computing
Compact, fast, and energy-efficient interconnects are becoming more and more necessary in distributed computing environments as edge computing and Internet of Things (IoT) applications grow. Fast data exchange in edge servers, gateways, and embedded systems is made possible by PCIe. PCIe connectors will be essential for connecting sensors, memory, compute units, and accelerators as IoT devices develop to manage local AI processing and real-time analytics. Moreover, these deployments offer a huge unexplored market for PCIe hardware integration, and they are frequently found in smart cities, industrial automation, and 5G edge networks.
Supply chain weaknesses and shortages of components
Global supply chains for electronic components are still vulnerable, as demonstrated by the COVID-19 pandemic and the ensuing shortages of semiconductors. Specialized manufacturing techniques and materials are required for PCIe connectors, especially those with complex material requirements and high-speed signal integrity. Production schedules and expenses can be affected by any disruption in the supply of raw materials, manufacturing capacity, or logistics. Additionally, there are geopolitical and tariff risks for connector manufacturers who depend on contract manufacturers or facilities abroad.
The COVID-19 pandemic affected the market for PCIe connectors in a variety of ways. Early on, the market was disrupted by supply chain failures, plant closures, and component shortages, which caused delays in the production and worldwide rollout of IT hardware. Yet, the need for high-performance computing systems, data centers, and storage solutions-all of which mainly depend on PCIe-based connectivity-rose as remote work, online education, and digital transformation projects gained momentum. This change led to a mid- to long-term rise in PCIe connector adoption, especially in consumer electronics, cloud infrastructure, and enterprise servers, which helped the market bounce back and expand in spite of early setbacks.
The 8.0 Gb/s (PCIe Gen 3) segment is expected to be the largest during the forecast period
The 8.0 Gb/s (PCIe Gen 3) segment is expected to account for the largest market share during the forecast period. PCIe Gen 3.0 continues to be widely used because it strikes the best possible balance between performance, cost, and ecosystem maturity, even though newer generations offer higher data rates. Storage devices, desktop and laptop computers, and business servers all make extensive use of it. Manufacturers of motherboards and chipsets have long supported it, guaranteeing broad compatibility and making it a reliable standard for the majority of applications. Furthermore, a lot of OEMs still favor Gen 3.0 for widespread implementations, particularly in situations where extremely high bandwidth is not necessary.
The M.2 PCIe connectors segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the M.2 PCIe connectors segment is predicted to witness the highest growth rate. The widespread use of M.2 NVMe SSDs in gaming laptops, ultrabooks, and small desktop computers because of their high-speed performance and small form factor is what is driving this growth. PCIe Gen 3.0, 4.0, and now Gen 5.0 are supported by M.2 connectors, enabling scalable performance for both consumer and business devices. Moreover, M.2 PCIe connectors are becoming more and more common in contemporary electronics, which greatly aids in their quick market expansion as demand for faster storage and smaller device footprints increases.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, driven by its robust electronics manufacturing ecosystem and the existence of significant manufacturers of motherboards, semiconductors, and connectors in nations like South Korea, Japan, Taiwan, and China. PCIe connectivity is essential to the region's high-volume manufacturing of gaming systems, laptops, desktop computers, and data center hardware. Additionally, driving demand is the quick uptake of technologies like 5G, IoT, and AI in consumer and business applications. Government programs supporting smart manufacturing and digital infrastructure also help explain Asia-Pacific's market dominance for PCIe connectors worldwide.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, driven by the quick development of cloud computing infrastructure, AI, machine learning, and data centers. Tech behemoths like Google, Amazon, Microsoft, and NVIDIA are based in the area and are making significant investments in high-performance computer systems that rely on PCIe-based connectivity for scalability and speed. Growth is also fueled by robust public and private sector investment in edge computing, autonomous technologies, and 5G deployments. North America is the region with the fastest rate of growth in this industry due to its early adoption of cutting-edge PCIe generations and emphasis on innovation.
Key players in the market
Some of the key players in PCI-e Connectors Market include TE Connectivity, Apacer Technology Inc., Kyocera Corporation, Analog Devices Inc, 3M Electronics, Vector Electronics & Technology Inc., Amphenol, Hirose Electric Inc, Artesyn Technologies, Delphi Technologies, Adam Technologies, Inc., Samtec, JAE Electronics, Corning Incorporated, Molex, Renesas Electronics Corporation, National Instruments Corporation and Axiomtek Co., Ltd.
In February 2025, TE Connectivity plc has entered into a definitive agreement to acquire Richards Manufacturing Co. from funds managed by Oaktree Capital Management, L.P. and members of the Bier family, long-standing owners and leaders of the business. The transaction will strengthen TE's position in serving electrical utilities in North America by combining complementary product portfolios and adding the expertise of the Richards team, enabling TE to benefit from strong growth trends in underground electrical networks.
In December 2024, 3M and US Conec Ltd. have entered into a strategic licensing agreement for 3M Expanded Beam Optical Interconnect technology, aimed at enhancing performance and scalability for next-generation data centers and advanced network architectures. This collaboration merges 3M's optical innovations with US Conec's expertise in high-density connectivity solutions.
In September 2024, Analog Devices, Inc and Tata Group have announced a strategic alliance to explore potential collaborative manufacturing opportunities. Tata Electronics, Tata Motors, and Tejas Networks signed a Memorandum of Understanding (MoU) with ADI to enhance strategic and business cooperation, explore opportunities for semiconductor manufacturing in India, and use ADI's products in Tata applications including electric vehicles and network infrastructure.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.