Small Cell 5G Network Market – Global Industry Size, Share, Trends, Competition Forecast and Opportunities, 2018-2028, Segmented By Radio Technology (Standalone and Non-Standalone), By Cell Type (Femtocells, Picocells and Microcells), By Frequency Band (Low Band, Mid Band and Millimeter Wave), By End User (Residential, Commercial, Industrial, Smart City, Transportation & Logistics, Government & De

Published Date: November - 2024 | Publisher: MIR | No of Pages: 320 | Industry: ICT | Format: Report available in PDF / Excel Format

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Small Cell 5G Network Market – Global Industry Size, Share, Trends, Competition Forecast and Opportunities, 2018-2028, Segmented By Radio Technology (Standalone and Non-Standalone), By Cell Type (Femtocells, Picocells and Microcells), By Frequency Band (Low Band, Mid Band and Millimeter Wave), By End User (Residential, Commercial, Industrial, Smart City, Transportation & Logistics, Government & De

During the projected period, it is expected that the global small cell 5G network market would expand. The deployment of the next generation 5G Radio Access Network has expanded due to the consumer demand for rapid mobile internet access. In order to provide better coverage capacity at a reasonable price, small cell 5G networks are increasingly being installed across industrial, enterprise, and residential applications. Because of all these factors, the market for small cells with 5G networks is anticipated to expand more throughout the forecast period

Small Cell 5G are base stations that cater to a small segment of the macro site. In other words, small cells 5G are low-power, short-range, wireless transmission systems (base stations) covering a small geographical area or indoor/outdoor applications. They are usually deployed in dense urban areas such as stadiums, malls, train stations, and areas with higher data capacity. Moreover, small cells play a significant role in efficiently delivering high-speed mobile broadband and other low-latency applications. Furthermore, small cells are broadly divided into three categories based on coverage area and the number of users they can support, including femtocells, picocells, and microcells.

Increasing Deployment of 5G Network

Globally, the rollout of 5G networks is accelerating, especially in industrialized nations like the United States, Germany, France, and the United Kingdom. The small cell 5G network industry benefits from the fast speeds and short latencies of 5G networks. The problem of clogged mobile traffic will only be resolved with the help of next-generation wireless networks. Governments all around the world have created supporting regulations to aid businesses in R&D and theirpursuit of 5G commercialization. Due to its extremely fast data rates, increased capacity, and decreased latency, 5G technology is anticipated to be implemented in China for a wide range of life-changing applications, from 3D video to immersive media and audio quality. By 2025, China aims to have 576 million 5G connections, or about 40% of all 5G connections worldwide. Small cells are a perfect fit for the 5G revolution because they enhance data capacity while also helping service providers cut costs by doing away with pricey rooftop systems and installation expenses. The performance of mobile devices is further aided by the tiny cell 5G network, which effectively reduces the power consumption of smartphones and significantly lengthens their battery life.

Growing Adoption of Internet of Things (IoT) Applications

The Internet of Things (IoT), which is rapidly evolving, will provide new business models and procedures in many industries. In recent years, the growth of smartphones has transformed telecom networks into data-centric networks. The delivery of services, network effectiveness, and process agility will change as a result of new business models linked to the Internet of Things (IoT). The development of IoT will require a lot of technology from many industries to serve a variety of applications with different requirements. Networks should offer viable business models that serve the needs of a wide range of customers with different wants and price points in order to address these problems.

The Rise in Mobile Data Traffic

Mobile data flow is the movement of internet material to different mobile consumer electronics, including smartphones and tablets. The market is expanding as a result of the global increase in mobile data traffic. By 2024, there will be 136 EB of monthly mobile traffic worldwide, representing a factor of 5 growth. A third of all mobile data traffic worldwide is anticipated to be carried by 5G networks by 2024. Thus, as a result of the noticeable increase in mobile data traffic, there will certainly be a significant surge in demand for technologically advanced telecommunication networks. The demand for network upgrades will rise as a result of the exponential rise in mobile data traffic, which is anticipated to drive the market for small cell 5G networks.

Market Segments

Small Cell 5G Network Market is segmented into radio technology, cell type, frequency band, end user and region and competitive landscape. Based on radio technology, the market is segmented into standalone and non-standalone. Based on cell type, the market is segmented into femtocells, picocells and microcells. Based on frequency band, the market is segmented into low band, mid band and millimeter wave. Based on end user, the market is segmented into residential, commercial, industrial, smart city, transportation & logistics, government & defense, and others.


MIR Segment1

Market Players

Recent Developments

In 2021, Nokia Corporation launched small cell 5G networks ‘AirScale’ for premium outdoor and indoor 5G network coverage. Nokia Corporation’s small cell 5G networks products will have increased band frequency, capacity, and coverage in dense urban environments.

Wireless Telecom Group, Inc. announced in July 2022 that a Network Listening Mode (NLM) software package had been released under the CommAgility name to aid in the speedy and seamless deployment of 5G small cells. The new software streamlines the integration of NLM capabilities for 5G small cell manufacturers, enabling small cells to complete critical synchronization, network monitoring, and setup phases automatically. The NLM software provides a useful method for adding small cells to a network without wasting crucial time for reconfiguration, which reduces risk, accelerates time to market, and minimizes development costs.

Attribute

Details

Base Year

2022

Historic Data

2018 – 2021

Estimated Year

2023

Forecast Period

2024 – 2028

Quantitative Units

Revenue in USD Million, and CAGR for 2018-2022 and 2023-2028

Report coverage

Revenue forecast, company share, growth factors, and trends

Segments covered

·         By Radio Technology

·         By Cell Type

·         By Frequency Band

·         By End User

·         By Region

Regional Scope

North America, Europe, Asia Pacific, South America and Middle East & Africa

Country Scope

U.S.; Canada; Mexico; U.K.; Germany; Italy; France, Spain; Russia; Turkey; China; India; Japan; South Korea; Indonesia; Thailand; Philippines; Malaysia; Vietnam; Saudi Arabia; UAE; South Africa; Egypt; Nigeria; Brazil; Argentina; Colombia

Key companies profiled

Huawei Technologies Co., Ltd., Samsung Electronics Co., Ltd., Nokia Corporation, Telefonaktiebolaget LM Ericsson, ZTE Corporation, Fujitsu Limited, CommScope Inc., Comba Telecom Systems Holdings Ltd., Altiostar Networks India Private Limited, Airspan Networks Inc., Ceragon Networks Ltd., Corning Incorporated, Beijing Baicells Technologies Co Ltd.

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