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The radio over fiber market share is expected to increase by USD 151.56 million from 2020 to 2025, and the market's growth momentum will accelerate at a CAGR of 7.39%.
This radio over fiber market research report provides valuable insights on the post COVID-19 impact on the market, which will help companies evaluate their business approaches. Furthermore, this report extensively covers radio over fiber market segmentation by product (0-2.9 GHz, 3-7 GHz, 8-17 GHz, 18-29 GHz, and >30 GHz), application (satcom, defense, telecom, and others), and geography (APAC, North America, Europe, South America, and MEA). The radio over fiber market report also offers information on several market vendors, including APIC Corp., DEV Systemtechnik GmbH, Emcore Corp., Global Invacom Group Ltd., HUBER+SUHNER AG, II-VI Inc., Intelibs Inc., Octane Wireless, Optical Zonu Corp., and RFOptic Ltd. among others.
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Based on our research output, there has been a negative impact on the market growth during and post COVID-19 era. The high dependency of wireless communication industry on ROF is notably driving the radio over fiber market growth, although factors such as RoF as an analog transmission system that reduces NF and DR may impede market growth. Our research analysts have studied the historical data and deduced the key market drivers and the COVID-19 pandemic impact on the radio over fiber industry. The holistic analysis of the drivers will help in deducing end goals and refining marketing strategies to gain a competitive edge.
Key Radio over Fiber Market Driver
One of the key factors driving growth in the radio over fiber market is the high dependency of wireless communication industry on RoF. The RoF technology is important for the wireless market, as it supports the ever-growing data traffic volumes and transports the information through optical fibers by modulating the light with the radio signal. The demand for increased capacity per unit area leads to higher operating frequencies above 6 GHz and smaller radio cells, such as in indoor applications where the high operating frequencies encounter high losses through the building walls. Large bandwidth, low attenuation loss, easy installation and maintenance, immunity to RF interface, dynamic resource allocation and operation flexibility, and low power consumption are the major attractions of the RoF system. These are mainly used in applications in video distribution systems, satellite control, cellular networks, vehicle communication, wireless LANs, and mobile broadband services. The huge bandwidth and less attenuation losses of optical fibers make them more attractive than coaxial cables and conventional wireless transmission. Therefore, such dependence on RoF for the wireless communication industry is expected to drive the growth of the global RoF market.
Key Radio over Fiber Market Challenge
The RoF as an analog transmission system that reduces NF and DR will be a major challenge for the radio over fiber market during the forecast period. RoF is an analog transmission system that is used to distribute RF signals over analog optical links. It also involves analog modulation and the detection of light. RoF limits the noise figure (NR) and dynamic range (DR) of the RoF links and is an important form of the analog communication system. Furthermore, in electrical communications, both fiber optic links NF and DR play an important role. For instance, in mobile communication systems, DR is important in Global System for Mobile (GSM) communications as the power received at the BS from the macro users (MUs) witnesses high fluctuations. It is certain that the power received from an MU can be much higher than the RF power received at an MU, which is several kilometers away but within the same cell. Handling such technical issues is a challenge for the global RoF market, as it involves additional circuits and control within the system. Thus, the reduction of NF and DR by RoF is one of the major challenges for the RoF market.
This radio over fiber market analysis report also provides detailed information on other upcoming trends and challenges that will have a far-reaching effect on the market growth. The actionable insights on the trends and challenges will help companies evaluate and develop growth strategies for 2021-2025.
The report analyzes the market's competitive landscape and offers information on several market vendors, including:
This statistical study of the radio over fiber market encompasses successful business strategies deployed by the key vendors. The radio over fiber market is concentrated and the vendors are deploying growth strategies such as technological innovations and increased expenses on R&D to compete in the market.
To make the most of the opportunities and recover from post COVID-19 impact, market vendors should focus more on the growth prospects in the fast-growing segments, while maintaining their positions in the slow-growing segments.
The radio over fiber market forecast report offers in-depth insights into key vendor profiles. The profiles include information on the production, sustainability, and prospects of the leading companies.
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62% of the market's growth will originate from APAC during the forecast period. China and Japan are the key markets for radio over fiber in APAC. Market growth in this region will be slower than the growth of the market in other regions.
With the growing telecom and satcom industries in this region, the connectivity of fiber optics is growing with the expansion of fiber optic lines to replace the existing coaxial line for communication and transfer of data. This will facilitate the radio over fiber market growth in APAC over the forecast period. This market research report entails detailed information on the competitive intelligence, marketing gaps, and regional opportunities in store for vendors, which will assist in creating efficient business plans.
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The radio over fiber market share growth by the 0-2.9 GHz segment will be significant during the forecast period. The 0-2.9 GHz RoF product series is expected to grow at a CAGR of 8.22% during the forecast period, and it is mainly used in the satcom and telecom segments. Advantages like low noise figures, compact structure, and efficient power modules make it suitable for the satellite communication network. The growth momentum is expected to accelerate during the forecast period mainly due to the increasing application of 0-2.9 GHz product series in the satcom and telecom.
This report provides an accurate prediction of the contribution of all the segments to the growth of the radio over fiber market size and actionable market insights on post COVID-19 impact on each segment.
Radio over Fiber Market Scope |
|
Report Coverage |
Details |
Page number |
120 |
Base year |
2020 |
Forecast period |
2021-2025 |
Growth momentum & CAGR |
Accelerate at a CAGR of 7.39% |
Market growth 2021-2025 |
USD 151.56 million |
Market structure |
Concentrated |
YoY growth (%) |
4.47 |
Regional analysis |
APAC, North America, Europe, South America, and MEA |
Performing market contribution |
APAC at 62% |
Key consumer countries |
China, US, Germany, Japan, and UK |
Competitive landscape |
Leading companies, Competitive strategies, Consumer engagement scope |
Key companies profiled |
APIC Corp., DEV Systemtechnik GmbH, Emcore Corp., Global Invacom Group Ltd., HUBER+SUHNER AG, II-VI Inc., Intelibs Inc., Octane Wireless, Optical Zonu Corp., and RFOptic Ltd. |
Market dynamics |
Parent market analysis, Market growth inducers and obstacles, Fast-growing and slow-growing segment analysis, COVID 19 impact and recovery analysis and future consumer dynamics, Market condition analysis for the forecast period |
Customization purview |
If our 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 report to meet your requirements. Get in touch
Executive Summary
Market Landscape
Market Sizing
Five Forces Analysis
Market Segmentation by Product
Market Segmentation by Application
Customer landscape
Geographic Landscape
Vendor Landscape
Vendor Analysis
Appendix
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