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市场调查报告书
商品编码
1662743
2030 年全球配线架市场预测:按类型、面板类型、安装类型、光纤类型、应用和地区进行分析Patch Panels Market Forecasts to 2030 - Global Analysis By Type, Panel Type, Mounting Type, Fiber Type, Application and By Geography |
根据 Stratistics MRC 的数据,全球配线架市场预计在 2024 年达到 13.6 亿美元,到 2030 年将达到 27.1 亿美元,预测期内的复合年增长率为 12.19%。配线架是管理和布线资料中心、通讯机房和办公室网路中大量电缆连接的重要网路工具。配线架充当中心位置,用于有效地连接和布线来自各种设备(包括电脑、伺服器、交换器等)的网路电缆。配线架通常具有多个端口,可快速轻鬆地重新配置网路连接,而不会影响底层布线基础设施。此外,透过消除混乱并降低讯号干扰和劣化的可能性,配线架(具有多种配置,包括光纤和铜(乙太网路)类型)可以改善电缆管理,简化故障排除并提高网路效能。
据光纤协会(FOA)称,光纤配线架对于确保高速资料传输的高效和安全连接至关重要。 FOA 的配线架符合 FOA 的光纤标准(例如 TIA-568),支援高达 100Gbps 的传输,可在资料中心和通讯网路等需要高频宽效能的环境中实现无缝资料流。
网路基础设施的需求不断增加
配线架市场的关键驱动因素是对先进和高效能网路基础设施的不断增长的需求。随着企业数位化业务来管理不断增长的资料量,他们需要强大、可扩展且可靠的网路系统。为了维持设备、伺服器和网路设备之间的正确连接,配线架提供了一个管理和组织网路连接的中心位置。此外,电子商务和远距办公的兴起加剧了这种需求,要求企业确保在多种设备和地点的持续连接。
维护和安装的复杂性
配线架是任何网路配置的重要组成部分,但安装起来可能很困难,特别是在通讯枢纽和资料中心等大型系统中。将配线架纳入现有网路需要精心的准备、专业的安装和先进的技术知识。此外,维护配线架系统需要不断监控、频繁更新和故障排除,这会增加操作的复杂性和成本。对于缺乏技术资源或专门 IT 人员的企业来说,配线架系统的持续维护需求可能会带来负担。
扩大光纤电缆的使用
光纤电缆比传统的铜缆提供更高的频宽、更快的资料传输速度并且更可靠,因此随着产业和服务供应商转向基于光纤的基础设施以支援更多资料密集型应用,对光纤配线架的需求将会增加。此外,光纤配线架可以有效管理和组织这些高速连接,使得它们在现代资料中心、电讯基础设施和高效能网路中具有不可估量的价值。随着通讯、资料中心甚至住宅对光纤网路的依赖性不断增加,配线架製造商有巨大的机会开发先进的光纤配线架,以满足对高密度、高效能网路解决方案日益增长的需求。
替代品和市场竞争
网路交换器、综合网路设备、光纤直连等替代产品对配线架市场构成了严重威胁。这些产品的优势在于系统更加整合、更加简化,可能不再需要单独的配线架。例如,现代网路交换器可以处理各种连接,包括铜缆和光纤电缆,无需使用配线架来管理每个单独的连接。此外,由于这些整合解决方案的接受度越来越高,传统配线架市场也面临威胁,因为这些整合解决方案通常可以提供更简单、更有效的网路管理。
配线架市场受到 COVID-19 疫情的严重影响,扰乱了供应链和需求动态。由于封锁和限制导致的劳动力短缺、製造延误和运输问题,配线架的生产和分销受到阻碍,导致各个地区短缺。在需求方面,由于企业为了优先满足当前业务需求而削减了IT基础设施的资本支出,网路扩展和升级部署暂时被推迟。然而,随着企业寻求加强其连接和资料管理基础设施,疫情期间远端工作和数位转型的加速,包括配线架在内的网路解决方案的需求再次出现增长。
预计预测期内电缆配线架部分将实现最大幅度成长。
预计预测期内电缆配线架部分将占据最大的市场占有率。这尤其重要,因为它支援在企业系统、资料中心、IT 和通讯网路等复杂配置中进行电缆管理、组织和布线。特别是在企业系统、资料中心和通讯网路等复杂配置中,轻鬆连接和断开电缆的能力可确保网路系统几乎不会中断地运作。随着越来越多的企业采用乙太网路供电 (PoE) 和更高速的乙太网路连接,对电缆配线架的需求预计将呈指数级增长。此外,其管理更大频宽的能力和更快网路速度的趋势使其成为住宅和商业市场的青睐。
预测期内,模组化光纤配线架部分预计将以最高的复合年增长率成长。
预计模组化光纤配线架部分在预测期内将呈现最高的成长率。这些面板提供了可扩展且适应性强的光纤网路解决方案,可让使用者根据需要新增和删除模组来建立自订配置。它的多功能性使其特别适合网路需求不断变化的环境,例如资料中心和企业网路。由于对高密度、高效能网路解决方案的需求不断增加,模组化光纤配线架变得越来越受欢迎。此外,它可以适应未来的网路升级和扩展而无需大规模的基础设施改造,这也刺激了市场占有率的增加。
预计预测期内亚太地区将占据最大的市场占有率。中国、日本和印度等国家资料中心的快速成长以及人工智慧技术的日益广泛使用是占据这种主导地位的主要原因。随着该地区基础设施的强劲发展和对高速互联网连接的需求不断增长,配线架被广泛应用于各个行业,包括通讯、商业企业和住宅网路。此外,亚太地区企业和消费者对可靠、有效的网路解决方案的需求预计将保持高位,从而巩固配线架在该地区市场的主导地位。
预计预测期内北美地区的复合年增长率最高。北美市场的成长归因于许多因素,例如该地区强劲的技术进步、各行各业对智慧型装置的采用日益广泛以及对高效能网路系统的需求不断增加。资料中心的扩展、云端运算的兴起以及物联网 (IoT) 正在推动对先进网路解决方案的需求。此外,美国和加拿大等国家正在大力投资升级其通讯基础设施,以支援高速网路和 5G 技术,进一步增加了对可靠、高效配线架的需求。
According to Stratistics MRC, the Global Patch Panels Market is accounted for $1.36 billion in 2024 and is expected to reach $2.71 billion by 2030 growing at a CAGR of 12.19% during the forecast period. An essential networking tool for managing and arranging numerous cable connections in data centers, telecommunications rooms, and office networks is a patch panel. It acts as a central location for the effective connection and routing of network cables from different devices, including computers, servers, and switches. Because patch panels often have several ports, network connections can be quickly and easily reconfigured without affecting the underlying cabling infrastructure. Moreover, by eliminating clutter and lowering the possibility of signal interference or degradation, patch panels-which come in a variety of configurations, including fiber optic and copper (Ethernet) types-improve cable management, streamline troubleshooting, and improve network performance.
According to the Fiber Optic Association (FOA), fiber optic patch panels are crucial in ensuring efficient and secure connections for high-speed data transmission. In compliance with FOA's fiber optic standards, such as TIA-568, patch panels support transmission speeds of up to 100 Gbps, allowing for seamless data flow in environments that demand high-bandwidth performance, like data centers and telecommunications networks.
Growing need for network infrastructure
The market for patch panels is primarily driven by the increasing demand for sophisticated and high-performance networking infrastructure. Strong, scalable, and dependable network systems are necessary as companies digitize their operations in order to manage the growing volume of data. In order to maintain proper connectivity between devices, servers, and networking equipment, patch panels offer a centralized location for managing and organizing network connections. Additionally, this need is further heightened by the rise in e-commerce and remote work arrangements, where companies must guarantee continuous connectivity across numerous devices and locations.
Complexity of maintenance and installation
Patch panels are crucial for network organization, but installing them can be challenging, particularly for large-scale systems like those found in telecom hubs and data centers. Patch panel integration into an existing network necessitates meticulous preparation, expert installation, and a high degree of technical know-how. Furthermore, continuous monitoring, frequent updates, and troubleshooting are necessary for patch panel system maintenance, which can raise operational complexity and expenses. Patch panel systems' continuous maintenance needs could be a deterrent for companies lacking technical resources or a dedicated IT staff.
Growing use of fiber-optic cabling
The demand for fiber optic patch panels will increase as industries and service provider's move to fiber optic-based infrastructures to support more data-intensive applications because fiber optic cables offer higher bandwidth, faster data transmission speeds, and greater reliability than traditional copper cables. Moreover, fiber optic patch panels are crucial in modern data centers, telecom infrastructure, and high-performance networks because they help manage and organize these high-speed connections efficiently. As companies like telecommunications, data centers, and even residential buildings increasingly rely on fiber optic networks, patch panel manufacturers have a significant opportunity to develop advanced fiber optic patch panels that meet the growing demand for high-density and high-performance network solutions.
Replacement goods and competition in the market
Alternative products like network switches, integrated network equipment, and direct fiber optic connections pose a serious threat to the patch panel market. These products sometimes have the benefit of more integrated, streamlined systems, which eliminates the need for separate patch panels. For instance, patch panels are no longer required to manage individual connections because modern network switches can handle a variety of connections, including copper and fiber cables. Additionally, the market for conventional patch panels is under threat from the growing acceptance of these integrated solutions, which frequently provide easier and more effective network management.
The market for patch panels was significantly impacted by the COVID-19 pandemic, which caused disruptions to supply chains and demand dynamics. Production and distribution of patch panels were hampered by labor shortages, manufacturing delays, and transportation issues brought on by lockdowns and restrictions, resulting in shortages in various regions. On the demand side, businesses and organizations cut back on capital expenditures on IT infrastructure as they prioritized immediate operational needs, which temporarily slowed down the adoption of network expansions and upgrades. However, as remote work and digital transformation accelerated during the pandemic, there was resurgence in demand for network solutions, including patch panels, as businesses looked to fortify their connectivity and data management infrastructure.
The Cable Patch Panels segment is expected to be the largest during the forecast period
The Cable Patch Panels segment is expected to account for the largest market share during the forecast period. These panels are essential parts of network infrastructure because they make it possible to manage, organize, and route cables-especially in intricate configurations like enterprise systems, data centers, and telecommunication networks. They make it simple to connect and disconnect, guaranteeing that network systems can function with little interruption. The need for cable patch panels is anticipated to increase dramatically as more companies implement Power over Ethernet (PoE) and high-speed Ethernet connections. Furthermore, they are the preferred option in both the residential and commercial markets due to their capacity to manage larger bandwidths and the trend of faster networking speeds.
The Modular Fiber Patch Panels segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the Modular Fiber Patch Panels segment is predicted to witness the highest growth rate. These panels provide a scalable and adaptable fiber optic network solution, enabling users to add or remove modules as necessary to create custom configurations. They are especially well-suited for settings with changing network needs, like data centers and enterprise networks, because of their versatility. Modular fiber patch panels are becoming more and more popular due to the growing need for high-density, high-performance networking solutions. Moreover, the fact that they can handle upcoming network upgrades and expansions without requiring major infrastructure modifications adds to their rising market share.
During the forecast period, the Asia-Pacific region is expected to hold the largest market share. The quick growth of data centers and the growing use of AI technologies in nations like China, Japan, and India are the main causes of this dominance. Patch panels are widely used in a variety of industries, including telecommunications, commercial enterprises, and residential networks, in part due to the region's strong infrastructure development and the rising demand for high-speed internet connectivity. Additionally, patch panels are predicted to continue to be in high demand as companies and consumers in the Asia-Pacific area look for dependable and effective networking solutions, securing the region's dominant position in the market.
Over the forecast period, the North American region is anticipated to exhibit the highest CAGR. The market's growth in North America can be attributed to a number of factors, including the region's strong technological advancements, the growing adoption of smart devices across industries, and the growing demand for high-performance networking systems. The expansion of data centers, the proliferation of cloud computing, and the Internet of Things (IoT) are all driving the demand for advanced networking solutions. Furthermore, countries such as the United States and Canada are investing heavily in upgrading their telecommunications infrastructure to support high-speed networks and 5G technologies, which further fuels the need for dependable and efficient patch panels.
Key players in the market
Some of the key players in Patch Panels market include 3M Company, Huawei Technologies Co., Ltd., Schneider Electric, Corning Incorporated, Nexans, Siemon , Amphenol Corporation, Nippon Seisen , TE Connectivity, Sumitomo Electric Industries, Leviton Manufacturing Co., Inc., Trinity Electronics Systems Ltd., Megladon Manufacturing Group, Ltd., Vertiv Group Corp and Potel-Group,
In October 2024, Schneider Electric has formed a strategic partnership with Noida International Airport to introduce building and energy management solutions. Through this collaboration, Schneider Electric will roll out complete building management solutions, comprising Electrical SCADA and Advanced Distribution Management System, aimed at significantly boosting the airport's operational efficiency and sustainability.
In April 2024, Huawei and EDMI announced signing a patent license agreement under fair, reasonable, and non-discriminatory (FRAND) conditions. Huawei will grant a cellular IoT Standard Essential Patents (SEPs) license, including NB-IoT, LTE-M and LTE Cat. 1 to EDMI. This agreement represents recognition of the strength of Huawei's cellular IoT SEPs from industry peers. It also enables EDMI to secure its own business and provide comprehensive legal protection to its customers.
In March 2024, 3M and HD Hyundai Korea Shipbuilding & Marine Engineering (KSOE) have signed a joint research project agreement to develop large liquid hydrogen storage tanks using Glass Bubbles from 3M - a high-strength, low-density hollow glass microsphere. The collaborative research will focus on developing a high-performance vacuum insulation system for liquified hydrogen storage and transportation.