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市场调查报告书
商品编码
1635871
2025-2033 年按技术(网路功能虚拟化、软体定义网路、多接入边缘运算)、设备、架构(5G 独立、5G NR 非独立)、频率、应用和区域分類的 5G 设备市场报告5G Equipment Market Report by Technology (Network Function Virtualization, Software Defined Networking, Multi-access Edge Computing ), Equipment, Architecture (5G Standalone, 5G NR Non-Standalone ), Frequency, Application, and Region 2025-2033 |
2024年全球5G设备IMARC Group规模达234亿美元。由于数据密集型应用程式的利用率不断提高、自动驾驶汽车、远端手术和扩增实境 (AR) 等应用程式的低延迟要求以及物联网 (IoT) 设备的采用不断增加,该市场正在经历稳定成长。目前,由于强大的技术生态系统和重要製造商的存在,北美占据了最大的市场份额。
市场成长与规模:由于资料使用量的增加以及对智慧城市计画的日益关注,市场正在见证强劲的成长。
技术进步:引进改良的第五代(5G)设备,具有更高的效率、更低的能耗和更强的效能,正在促进市场成长。
产业应用:5G 设备广泛应用于各行业,包括电信、汽车、医疗保健、製造和娱乐。
地理趋势:在高度发展的电信基础设施的推动下,北美引领市场。然而,由于对高速、可靠连接的需求不断增长,亚太地区正在成为一个快速成长的市场。
竞争格局:主要参与者正在致力于提高 5G 硬体和软体的效能、效率和功能。
挑战与机会:虽然市场面临安全问题等挑战,但在解决永续发展问题方面也遇到了机会。
未来展望:随着5G基础设施的不断发展,5G设备市场前景广阔。此外,对成本效益解决方案的日益关注预计将促进市场成长。
数据密集型应用程式的使用率不断提高
由于数据密集型应用程式使用量的增加,对 5G 设备的需求不断增长,推动了市场的成长。与此一致的是,智慧型手机、平板电脑和其他连接装置的使用率不断增加正在推动市场成长。此外,个人和组织都依赖资料驱动的服务。除此之外,高清视讯串流、基于云端的应用程式和线上游戏都需要大量频宽。此外,由于远距工作文化、线上学习和远距医疗的兴起,对强大和快速连接的需求不断增长,这提供了积极的市场前景。除此之外,5G 还可以提供更高的资料速率和更低的延迟,使用户能够体验与装置和应用程式更流畅、更能回应灵敏的互动。此外,希望增强连接基础设施的电信营运商和组织越来越多地采用 5G 设备,这也促进了市场的成长。在云端中运行的资料密集型应用程式需要高速连接才能获得最佳效能。
低延迟要求
低延迟是指网路或通讯系统中来源和目的地之间传输资料的最小延迟或滞后。此外,低延迟在需要即时通讯的应用中发挥着至关重要的作用,例如自动驾驶车辆、远端手术和扩增实境 (AR)。除此之外,5G 还具有超低延迟能力,这使其成为多种应用的理想选择。在自动驾驶汽车中,5G 可以实现车辆和基础设施之间的近乎即时通信,从而提高安全性和效率。此外,在远距医疗中,外科医生可以以最小的延迟进行远距手术,从而有可能挽救生命。与此一致,AR 和虚拟实境 (VR) 应用在 5G 的帮助下变得更加身临其境、响应迅速,从而增强了用户体验。此外,各行业正在寻求充分利用该技术的潜力来实现创新和时间敏感的应用。此外,在金融业,低延迟对于高频交易 (HFT) 和演算法交易系统至关重要。交易者依赖瞬间决策,轻微的延迟可能会导致财务损失。
越来越多地采用物联网 (IoT) 设备
全球大众对物联网 (IoT) 设备的使用不断增加,支撑着市场的成长。此外,这些设备的范围从智慧家电和穿戴式健身追踪器到工业感测器和智慧城市基础设施。除此之外,5G 还有助于同时支援大量连线。物联网应用通常需要低功耗和广域连接,而 5G 透过各种技术提供了这些连接。这使得物联网设备能够在农业、医疗保健、物流和公用事业等各个行业中高效且经济高效地部署。此外,5G 能耗更低、容量更大、覆盖范围更广,使其成为物联网部署的有吸引力的选择。与此相符,物联网设备会产生大量资料。透过分析这些资料,组织可以深入了解个人行为、设备性能和营运效率。因此,这些见解有助于提供明智的决策并推动创新。
The global 5G equipment market size reached USD 23.4 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 277.0 Billion by 2033, exhibiting a growth rate (CAGR) of 30.01% during 2025-2033. The market is experiencing steady growth driven by the rising utilization of data-intensive applications, low latency requirements in applications like autonomous vehicles, remote surgery, and augmented reality (AR), and increasing adoption of the Internet of Things (IoT) devices. At present, North America holds the largest market share owing to a robust technological ecosystem and presence of significant manufacturers.
Market Growth and Size: The market is witnessing robust growth due to the increasing data usage, along with the rising focus on smart city initiatives.
Technological Advancements: The introduction of improved fifth generation (5G) equipment with higher efficiency, lower energy consumption, and enhanced performance is facilitating the market growth.
Industry Applications: 5G equipment finds applications across various industries, including telecommunications, automotive, healthcare, manufacturing, and entertainment.
Geographical Trends: North America leads the market, driven by the presence of highly developed telecommunications infrastructure. However, Asia Pacific is emerging as a fast-growing market due to the escalating demand for high-speed and reliable connectivity.
Competitive Landscape: Key players are working on enhancing the performance, efficiency, and capabilities of 5G hardware and software.
Challenges and Opportunities: While the market faces challenges, such as security concerns, it also encounters opportunities in addressing sustainability concerns.
Future Outlook: The future of the 5G equipment market looks promising, with the increasing development of 5G infrastructure. In addition, the rising focus on cost-effective solutions is expected to bolster the market growth.
Growing utilization in data-intensive applications
The escalating demand for 5G equipment due to the rising usage of data-intensive applications is propelling the market growth. In line with this, the increasing utilization of smartphones, tablets, and other connected devices is impelling the market growth. Moreover, individuals and organizations are relying on data-driven services. Besides this, streaming high-definition videos, cloud-based applications, and online gaming all require substantial bandwidth. Furthermore, the growing need for robust and fast connectivity on account of the rising remote work culture, online learning, and telemedicine is offering a positive market outlook. Apart from this, 5G can deliver higher data rates and lower latency that enables users to experience smoother and more responsive interactions with their devices and applications. Additionally, the increasing adoption of 5G equipment among telecom operators and organizations looking to enhance their connectivity infrastructure is contributing to the market growth. Data-intensive applications running in the cloud require high-speed connections for optimal performance.
Low latency requirements
Low latency is the minimal delay or lag in transmitting data between a source and a destination in a network or communication system. In addition, low latency plays a crucial role in applications that require real-time communication, such as autonomous vehicles, remote surgery, and augmented reality (AR). Apart from this, 5G has ultra-low latency capabilities, which makes it the ideal choice for several applications. In autonomous vehicles, 5G enables near-instantaneous communication between vehicles and infrastructure, enhancing safety and efficiency. Moreover, in telemedicine, surgeons can perform remote procedures with minimal delay, potentially saving lives. In line with this, AR and virtual reality (VR) applications are becoming more immersive and responsive with 5G, enhancing the experiences of users. Furthermore, industries are seeking to utilize the full potential of this technology to enable innovative and time-sensitive applications. Additionally, in the financial industry, low latency is critical for high-frequency trading (HFT) and algorithmic trading systems. Traders rely on split-second decisions, and a slight delay can result in financial losses.
Increasing adoption of the Internet of Things (IoT) devices
The increasing utilization of the Internet of Things (IoT) devices among the masses across the globe is supporting the growth of the market. In addition, these devices range from smart home appliances and wearable fitness trackers to industrial sensors and smart city infrastructure. Besides this, 5G assists in supporting a massive number of connections simultaneously. IoT applications often require low-power and wide-area connectivity, which 5G provides through various technologies. This enables efficient and cost-effective deployment of IoT devices across various industries, such as agriculture, healthcare, logistics, and utilities. Furthermore, 5G has lower energy consumption and offers increased capacity and improved coverage, making it an attractive choice for IoT deployments. In line with this, IoT devices generate vast amounts of data. Organizations can gain valuable insights into the behavior of individuals, equipment performance, and operational efficiency by analyzing this data. As a result, these insights assist in providing informed decision-making and driving innovation.
Network Function Virtualization (NFV)
Software Defined Networking (SDN)
Multi-access Edge Computing (MEC)
Network function visualization (NFV) accounts for the majority of the market share
Network function virtualization (NFV) is a technology that virtualizes network functions traditionally performed by hardware appliances. In addition, NFV plays a crucial role in enabling the flexibility and scalability required for virtualized network services. NFV reduces the need for specialized hardware, making networks more agile and cost-effective.
Software defined networking (SDN) is a technology that separates the control plane from the data plane in network architecture, enabling centralized control and programmability of network resources. SDN enhances network management, optimization, and resource allocation. SDN enables dynamic network configuration, allowing operators to adapt to changing traffic patterns and service requirements efficiently.
Multi-access edge computing (MEC) extends cloud computing capabilities to the edge of the network, closer to the end-users or devices. MEC is essential for low-latency applications like augmented reality (AR), autonomous vehicles, and IoT. MEC enables real-time processing and data analytics at the edge, reducing latency and improving user experiences.
Macrocell
Small Cell
Others
Macrocell holds the largest market share
Macrocell is a large-scale cellular base station that covers a wide geographic area, often referred to as macro cell sites. It is crucial for providing broad coverage in urban, suburban, and rural areas. It is used to deliver 5G services in outdoor environments and is essential for supporting high-density areas with a large number of users.
A small cell is a compact and low-power cellular base station that is designed to provide coverage and capacity in specific localized areas. It plays a critical role in densifying the network and filling coverage gaps. It is deployed in urban settings, indoor environments, and areas with high user density, such as stadiums, shopping malls, and transportation hubs.
5G Standalone (NR + Core)
5G NR Non-Standalone (LTE Combined)
5G standalone (NR + core) represents the leading market segment
5G standalone (NR + core) architecture is a fully independent 5G network that operates without relying on the existing fourth generation (4G) long-term evolution (LTE) infrastructure. It includes both 5G new radio (NR) and a dedicated 5G core network. 5G NR serves as the radio access technology, while the 5G core network provides advanced features and capabilities tailored specifically to 5G services. 5G standalone is designed to unlock the full potential of 5G, offering lower latency, increased capacity, and support for a wide range of use cases, including IoT and ultra-reliable communication.
5G NR non-standalone (LTE combined) architecture combines 5G NR with the existing LTE network infrastructure. 5G NR operates alongside LTE, sharing some network functions and resources. It provides an initial step towards 5G deployment, allowing for faster adoption by leveraging the existing LTE infrastructure. In contrast, 5G NR non-standalone offers enhanced mobile broadband capabilities.
Sub 6 GHz
Above 6 GHz
Sub 6 GHz exhibits a clear dominance in the market
Sub 6 gigahertz (GHz) is a frequency below 6 GHz in the radio spectrum. This frequency range is often referred to as the mid-band and includes frequencies used by existing 4G LTE networks, such as 2.4 GHz and 3.5 GHz. Besides this, sub-6 GHz 5G offers a balance between coverage and capacity. It can provide wider coverage areas as compared to higher-frequency bands and is suitable for urban and suburban areas.
Above 6 GHz includes the higher-frequency spectrum bands, often referred to as millimeter wave (mmWave). It includes bands, such as 28 GHz and 39 GHz, that offer significantly higher data rates but have a limited coverage range and can be affected by obstacles like buildings and trees. Above 6 GHz 5G is ideal for dense urban environments and applications requiring ultra-high data speeds, such as fixed wireless access and AR.
Automotive
Consumer Electronics
Commercial
Industrial
Consumer electronics represent the biggest market share
Consumer electronics encompass a wide range of devices, including smartphones, tablets, smart televisions (TVs), and wearable devices. 5G in consumer electronics delivers faster download and streaming speeds, improved online gaming experiences, and enhanced connectivity for IoT devices. Furthermore, the growing demand for higher performance and connectivity in devices is offering a positive market outlook.
The automotive sector leverages 5G technology for various applications, including connected vehicles, autonomous driving, and vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication. 5G enables low-latency communication, real-time data exchange, and enhanced safety features in automotive systems. It supports features like advanced driver assistance systems (ADAS), vehicle telematics, and in-car entertainment, making vehicles smarter and safer.
The commercial sector includes companies of all sizes that utilize 5G technology for improved connectivity, productivity, and experiences of individuals. 5G enables faster and more reliable data transfer for organizations, supporting applications like video conferencing, cloud computing, and remote work. It also facilitates the deployment of private 5G networks in commercial settings for enhanced security and tailored connectivity solutions.
Industrial segment covers various industries, such as manufacturing, logistics, energy, and healthcare. 5G is used in industrial automation for applications like remote monitoring, predictive maintenance, and robotics. It supports the Industrial Internet of Things (IIoT) by providing low-latency and high-reliability connectivity to enable smart factories and efficient production processes.
North America
United States
Canada
Asia Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
North America leads the market, accounting for the largest 5G equipment market share
The market research report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America accounted for the largest market share due to the presence of highly developed telecommunications infrastructure, with established players, such as telecom operators, equipment manufacturers, and technology giants. In addition, favorable government initiatives are propelling the market growth. Apart from this, the rising adoption of digital services and IoT applications among individuals is supporting the growth of the market.
Asia Pacific stands as another key region in the market, as governing agencies in the region are investing in 5G infrastructure. Apart from this, the escalating demand for high-speed and reliable connectivity is contributing to the growth of the market. Moreover, the presence of telecommunications equipment manufacturers in the region is bolstering the market growth.
Europe maintains a strong presence in the market, with the increasing development of advanced 5G solutions. In line with this, the rising adoption of 5G technology is supporting the market growth.
Latin America exhibits growing potential in the 5G equipment market on account of the highly developed telecommunications infrastructure and technology giants. In addition, the increasing utilization of 5G in various industries, including healthcare and agriculture, is impelling the market growth in the region.
The Middle East and Africa region shows a developing market for 5G equipment, primarily driven by the escalating demand for high-speed connectivity. In line with this, the rising focus on 5G infrastructure development is bolstering the market growth.
Key players are working on enhancing the performance, efficiency, and capabilities of 5G hardware and software. They are also actively participating in standardization bodies and industry associations to help establish 5G standards, ensuring interoperability and seamless integration of 5G equipment. Besides this, companies are introducing new 5G equipment, including antennas, routers, modems, and network components. In addition, they are focusing on rigorous testing and certification of 5G equipment for compliance with industry standards and regulatory requirements to ensure network reliability and security. Furthermore, companies are working with enterprises to deploy private 5G networks tailored as per specific industry needs, such as manufacturing, logistics, and healthcare.
The market research report has provided a comprehensive analysis of the competitive landscape. Detailed profiles of all major companies have also been provided. Some of the key players in the market include:
Airspan Networks
Cisco Systems Inc
CommScope
Fujitsu Limited
Huawei Technologies Co. Ltd.
NEC Corporation (AT&T Inc.)
Nokia Corporation
Qualcomm Inc.
Samsung Electronics Co. Ltd.
Telefonaktiebolaget LM Ericsson
ZTE Corporation
Kindly, note that this only represents a partial list of companies, and the complete list has been provided in the report.