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The 5G Testing Equipment Market size is forecast to increase by USD 605.76 million, at a CAGR of 8.43% between 2023 and 2028. Market growth relies on various factors, notably the escalating demand for enhanced network capacity to facilitate access to interconnected services. Additionally, the expansion of the telecom subscriber base and the rapid urban population growth contribute significantly. Furthermore, the increasing emphasis on research and development, alongside the deployment of 5G networks, plays a pivotal role in driving market expansion.
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The 5G Testing Equipment Market is witnessing rapid growth due to the burgeoning demand for advanced infrastructure to support the next generation of wireless communication. With the evolution of 5G device infrastructure and the surge in electric signals across various spectrums, the need for testing solutions is paramount. These solutions ensure optimal bandwidth utilization, device efficiency, and seamless integration with large data centers and automobiles. Furthermore, in domains such as entertainment, healthcare, and security, specialized testing equipment plays a crucial role in ensuring user-oriented, high connectivity, and low latency performance, vital for quick communication during emergencies. The widespread deployment of 5G necessitates rigorous testing for high-speed data transfer, addressing performance issues, and optimization of base stations and network equipment. This market is characterized by the demand for specialized testing equipment such as spectrum analyzers and channel emulators, which are indispensable for ensuring the robustness and reliability of 5G networks.
One of the key factors driving the 5G testing equipment market growth is the increasing demand for improved network capacity to access connected services. There has been an increasing demand for faster mobile communication to experience the seamless integrity of connected devices in recent years. In addition, Internet connectivity is an important access channel to support and enable communication over large-scale IoT devices.
Moreover, the advent of high-speed 4G LTE wireless networks has helped support high-bandwidth M2M applications. Furthermore, the rollout of 4G LTE Machine (LTE-M), LTE-Unlicensed (LTE-U), and 5G networks is expected to facilitate faster transmission and higher volumes of data in smart ecosystems. Hence, such factors are positively impacting the market. Therefore, it is expected to drive the market growth during the forecast period.
A key factor shaping the 5G testing equipment market growth is the software-defined testing for 5G equipment. There is an increasing shift towards a software-defined approach in the test and measurement industry to create flexible and efficient test sets for 5G equipment comprising highly complex radio frequency (RF) designs. In addition, test and measurement tools and methods earlier used rely on hardware-centric benchtop instruments.
Moreover, software modules allow engineers to develop test programs for multiple 5G technologies and standards quickly. In addition, test sets that can quickly adopt new 5G specifications through software are also able to accelerate 5G prototyping and deployment. Hence, such factors are positively impacting the market. Therefore, it is expected to drive the market growth and trends during the forecast period.
Issues related to the deployment of 5G technology are one of the key challenges hindering the 5G testing equipment market growth. 5G networks utilize extremely high frequencies in the range of 30 GHz-300 GHz when compared to 4G networks that use frequencies below 6 GHz. In addition, the transition from 4G to 5G will lead to higher data rates and higher frequency that may likely impose performance problems on the semiconductor ecosystem.
Moreover, reduced latency in 5G technology will also require careful consideration before deployment. In addition, new problems are likely to emerge in 5G technology because of miniaturization techniques including systems in packaging (SiP). Furthermore, the connection between antennas, front-end modules (FEMs), and transceivers will continue to cause variability, especially if these antennas are integrated with FEMs and transceivers. Hence, such factors are hindering the market growth during the forecast period.
The oscilloscopes segment is estimated to witness significant growth during the forecast period. The oscilloscope segment is used to display and analyze the waveform of electronic signals. In addition, these devices draw a graph of the instantaneous signal voltage as a function of time. Furthermore, the observed waveform can be analyzed for properties such as amplitude, rise time, frequency, time interval, and distortion.
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The oscilloscopes segment was the largest segment and was valued at USD 334.90 million in 2018. Moreover, digital oscilloscopes measure the sample 5G signals using an analog-to-digital converter (ADC). In addition, an attenuator is used first to scale the waveform. Furthermore, a vertical amplifier can then be used to provide additional scaling while passing the waveform to the ADC. Moreover, the automated incident capturing and storing facility of digital oscilloscopes enables technicians and engineers to gain a better understanding of the erroneous characteristics of components and signals being monitored. Hence, such factors are fuelling the growth of this segment which in turn drives the market growth during the forecast period.
The increasing adoption of 5G testing equipment by the telecom equipment manufacturers segment will increase the market growth. Telecommunications equipment is one that transmits many kinds of signals. In addition, departmental and power organizations, industrial companies, and telecom operators all contribute to the demand for telecommunications equipment. Moreover, to transmit and receive signals, all of these telecommunication networks are linked to the Internet. Furthermore, the global expansion of the deployment of 5G networks and long-term evolution (LTE) networks is increasing the demand for telecommunication equipment. Hence, such factors are fuelling the growth of this segment which in turn will drive the market growth during the forecast period.
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APAC is estimated to contribute 31% to the growth of the global market during the forecast period. Technavio’s analysts have elaborately explained the regional trends and drivers that shape the market during the forecast period. Another region offering significant growth opportunities to companies is North America. There is an increase in IoT technology in industrial applications across North America, especially in developed economies such as the US and Canada. In addition, the US, which is a major market in the region, is expected to witness substantial growth in the telecom sector. Moreover, the increasing adoption of wireless technologies in the US is one of the major growth drivers of the 5G testing equipment market in the region. In addition, the increasing adoption of technologies such as video streaming and online payments is also driving the growth of the 5G testing equipment market. Furthermore, with the increase in the use of mobile and smartphones as well as the expansion of device connectivity, the demand for IoT solutions is increasing in the region, which will ultimately shape and define the IoT space. Hence, such factors are driving the market growth in North America during the forecast period.
The 5G testing equipment market report includes the adoption lifecycle of the market, covering from the innovator’s stage to the laggard’s stage. It focuses on adoption rates in different regions based on penetration. Furthermore, the report also includes key purchase criteria and drivers of price sensitivity to help companies evaluate and develop their growth strategies.
Global 5G Testing Equipment Market Customer Landscape
Companies are implementing various strategies, such as strategic alliances, partnerships, mergers and acquisitions, geographical expansion, and product/service launches, to enhance their presence in the market.
Anritsu Corp: The company offers 5G testing equipment such as VectorStar, which includes a frequency range from 70 kHz to 220 GHz, and ShockLine vector network analyzer.
Artiza Networks Inc: The company offers 5G testing equipment such as DuoSIM 5G is tests the function and performance of gNodeBs and eNodeBs to help network operators and equipment vendors create and develop 5G radio access networks.
Ceragon Networks Ltd: The company offers 5G testing equipment such as EtherHaul hundred series 60, and Siklus mmWave wireless, under the subsidiary of Siklu Communication Ltd.
The research report also includes detailed analyses of the competitive landscape of the market and information about 20 market companies, including:
Qualitative and quantitative analysis of companies has been conducted to help clients understand the wider business environment as well as the strengths and weaknesses of key market players. Data is qualitatively analyzed to categorize companies as pure play, category-focused, industry-focused, and diversified; it is quantitatively analyzed to categorize companies as dominant, leading, strong, tentative, and weak.
The market research report provides comprehensive data (region wise segment analysis), with forecasts and estimates in "USD Million" for the period 2024 to 2028, as well as historical data from 2018 to 2022 for the following segments.
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The 5G network revolutionizes mobile communications with its promise of secure, high-speed internet connectivity, catering to smart city purposes and bridging the digital divide by offering advanced facilities and services. However, realizing its potential demands rigorous testing and measurement. The testing and measurement sector adopts a software-defined approach, utilizing software-defined testing tools to navigate the complexities of complex radio frequency designs and address 5G challenges such as Massive MIMO and Channel Sounding. Reprogrammable instrument tools enable efficient testing while managing customer spending on digitalization initiatives. As 5G drives the proliferation of mobile communications, ensuring Quality of Service (QoS) and optimizing wireless connections amid escalating data traffic become imperative for enterprises and advanced multimedia applications.
Moreover, the testing process involves evaluating device capabilities across various platforms, from mobile phones to wearables and connected cars, necessitating multimode integration and beamforming technologies. Moreover, with autonomous vehicles and connected car applications relying on Vehicle-to-Vehicle and Vehicle-to-Infrastructure communications, the testing landscape expands to encompass public safety applications, energy management, and heterogeneous architectures incorporating small cells, Massive MIMO systems, and network slicing across millimeter wave frequencies. Amidst challenges like signal propagation and interference, antenna design and sophisticated signal generator and spectrum analyzer technologies become indispensable for both IDMs and ODMs aiming to capitalize on high-speed data transfer and unlock the potential of 5G traffic.
Market Scope |
|
Report Coverage |
Details |
Page number |
174 |
Base year |
2023 |
Historic period |
2018-2022 |
Forecast period |
2024-2028 |
Growth momentum & CAGR |
Accelerate at a CAGR of 8.43% |
Market Growth 2024-2028 |
USD 605.76 million |
Market structure |
Fragmented |
YoY growth 2023-2024(%) |
7.19 |
Regional analysis |
North America, Europe, APAC, Middle East and Africa, and South America |
Performing market contribution |
APAC at 31% |
Key countries |
US, Canada, China, South Korea, and Germany |
Competitive landscape |
Leading Companies, Market Positioning of Companies, Competitive Strategies, and Industry Risks |
Key companies profiled |
Analog Devices Inc., Anritsu Corp., Artiza Networks Inc., Ceragon Networks Ltd., CommScope Holding Co. Inc., EXFO Inc., Fortive Corp., GL Communications Inc., Innowireless Co. Ltd., Intertek Group Plc, Keysight Technologies Inc., MACOM Technology Solutions Inc., Motorola Solutions Inc., National Instruments Corp., NetScout Systems Inc., PCTEL Inc., Rohde and Schwarz GmbH and Co. KG, Spirent Communications plc, Teradyne Inc., and Viavi Solutions Inc. |
Market dynamics |
Parent market analysis, Market forecasting growth inducers and obstacles, Fast-growing and slow-growing segment analysis, COVID-19 impact and recovery analysis and future consumer dynamics, and Market condition analysis for the forecast period. |
Customization purview |
If our market report has not included the data that you are looking for, you can reach out to our analysts and get segments customized. |
We can help! Our analysts can customize this market research report to meet your requirements.
1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation by Application
7 Market Segmentation by End-user
8 Customer Landscape
9 Geographic Landscape
10 Drivers, Challenges, and Trends
11 Vendor Landscape
12 Vendor Analysis
13 Appendix
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