亚太地区射频光纤市场 – 行业趋势及 2029 年预测

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亚太地区射频光纤市场 – 行业趋势及 2029 年预测

  • ICT
  • Published Report
  • May 2022
  • Asia-Pacific
  • 350 页面
  • 桌子數: 220
  • 图号: 60

亚太地区射频光纤市场,按模块(收发器、光放大器天线、光开关、光缆等)、频段(L 波段、S 波段、Ka 波段、C 波段、K 波段、X波段和 Ku 波段)、垂直(民用和军用)、频率范围(小于 30 GHz、30 GHz 至 40 GHz、40 GHz 至 50 GHz 和大于 50 GHz)、组织规模(大型组织、中型组织和小型组织)、应用(电信、广播、导航、雷达和宽带)划分 - 行业趋势和预测到 2029 年。

亚太地区射频光纤市场

市场分析和规模

技术发展带来了增强的互联网服务,以满足消费者对更快互联网连接的需求,从而增加了光纤网络的数量。随着人们越来越倾向于使用数字平台、互联网服务和在线服务来满足日常需求,这已经成为可能。互联网普及率的提高对高带宽、高速互联网服务的需求巨大,而这些服务由光纤网络有效提供。因此,光纤基础设施的不断增长增加了对光纤射频的需求。

亚太地区射频光纤市场

亚太地区射频光纤市场

推动市场增长的主要因素是消费者对高清内容的需求不断增长。光纤网络提供的高带宽是推动亚太地区光纤射频市场增长的主要因素。然而,建设基础设施所需的高昂初始成本可能会抑制市场的增长。

Data Bridge Market Research 分析,亚太地区光纤射频市场预计到 2029 年将达到 260,515.83 万美元的价值,预测期内复合年增长率为 9.8%。 “收发器”占最突出的模块模式部分。 亚太地区光纤射频市场报告还深入涵盖了定价分析、专利分析和技术进步。     

报告指标

细节

预测期

2022 至 2029 年

基准年

2021

历史岁月

2020 (可定制为 2019-2014)

定量单位

收入(千美元),定价(美元)

涵盖的领域

模块(收发器、光放大器、天线、光开关、光缆等)、频段(L波段、S波段、Ka波段、C波段、K波段、X波段和Ku波段)、垂直(民用和军用)、频率范围(小于30 GHz、30 GHz至40 GHz、40 GHz至50 GHz和大于50 GHz)、组织规模(大型组织、中型组织和小型组织)、应用(电信、广播、导航、雷达和宽带)

覆盖国家

中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾和亚太地区其他地区

涵盖的市场参与者

Broadcom, EMCORE Corporation, APIC Corporation, Optical Zonu Corp, Gooch & Housego PLC, ViaLite, Global Invacom, HUBER+SUHNER, Glenair, SEIKOH GIKEN CO., LTD., II-VI Incorporated, DEV Systemtechnik GmbH, Syntonics LLC, ETL Systems Ltd, Narda-MITEQ, Olabs Technology Company Limited, RFOptic Ltd., Elkay, MicroComp Nordic AB, among others

Market Definition

Radio over fiber (RF over fiber) is an analog transmission over fiber technology that uses a radio signal to amplitude modulate light and transport it over an optical fiber link to enable wireless access. Although radio transmission over fiber is utilized for various applications, including cable television (CATV) networks and satellite base stations, the term RoF is most commonly associated with wireless access. Wireless signals are transferred in optical form between a central station and a group of base stations in RoF systems before being broadcast. Each base station is configured to communicate with at least one user’s mobile station within the base station's radio range.

Asia-Pacific RF Over Fiber Market Dynamics

This section deals with understanding the market drivers, advantages, opportunities, restraints, and challenges. All of this is discussed in detail below:

  • Rising demand for fiber optic cable for higher bandwidth

Fiber optic bandwidth is high as data transmission speed and distance covered data without attenuation are possible. Optical fiber can transmit data as pulses of light through different objects such as glass wire, allowing data to travel at the speed of light. Optical communication helps a beam of light to carry information from transmitter to receiver. Optical frequency is usually close to an infrared ray and about one thousand GHz. Fiber optics provide the network with the utmost quality data and little signal interference.

  • Efficient performance of fiber optic cable as compared to copper cable

Copper cable bandwidth is restricted in terms of speed and frequencies. The range of frequencies over which data are transmitted is much wider in optical fiber. Fiber can carry far more information in minutes from one area to another while the copper cable transmits data slowly, using electrical signals than optical fiber, which carries data through light-based signals.

  • Increased adoption of mobile devices

The increasing disposable income of the consumers and the need for advanced electronic products are driving the consumer electronics market. Consumers are becoming techno-savvy and adopting new technologies at work, in daily routine, personal entertainment and others. Smart devices are adopting a major market share due to improved control, features and other functions.

  • Low power consumption benefit of RFoF

The energy required per bit of data conveyed can also determine a system's energy efficiency. The power consumption can be defined as the power consumption per user vs. the average access rate (Watts/Mbps). The power consumption of an access network infrastructure is created using network segmentation. Manufacturer data on equipment energy consumption for a variety of typical types of hardware is used to calculate the energy consumption of each portion of the system for a range of access rates. This perspective provides a better platform for predicting the rise in power consumption as the number of users and access rate per user grows fast.

  • Easy installation and maintenance of RFoF

Most RoF techniques eliminate the necessity for local oscillators and related equipment at the Remote Antenna Units (RAU). The complex and expensive equipment is maintained at the head end of RoF systems, making RAUs simpler. The high cost and high power consumption of high-frequency electro-optical modulators and electronics must be avoided at the CS (central station). In addition, due to their high production and maintenance costs, sophisticated implementations of downlink transmission systems should also be avoided. The head end houses the modulation and switching equipment, which several RAUs share. As a result of this configuration, RAUs are smaller and lighter, lowering system installation and maintenance costs.

  • Technological limitation of RFoF

Chromatic dispersion in single-mode fiber-based RoF systems can limit fiber connection lengths and cause phase de-correlation, resulting in higher RF carrier phase noise. Modal dispersion severely limits the available link bandwidth and distance in multi-mode fiber-based RoF systems. Although the RoF transmission method is analog, the radio system that is distributed does not have to be analog (e.g., WLAN and UMTS) and can use extensive multi-level signal modulation formats such as Quadrature Amplitude Modulation (QAM) or orthogonal frequency division multiplexing (OFDM).

  • High initial cost of investment

RF over fiber network offers several beneficial factors such as high bandwidth, high speed, and lightweight, but all this comes with a high investment cost. The fiber optic network components are quite expensive. This is why copper cables are still preferred, where cost is a major factor in choosing the type of network. This may restrain the growth of the Asia-Pacific RF over fiber market. Adding the cost of transceivers and all other components increase the overall costs, leading to high investment costs by the company. The telecom industries prefer using copper cable infrastructure for end-users due to its low cost.

Post COVID-19 Impact on Asia-Pacific RF Over Fiber Market

COVID-19 created a major impact on the Asia-Pacific RF over fiber market as almost every country has opted for the shutdown of every production facility except those dealing in producing the essential goods. The government has taken strict actions such as the shutdown of production and sale of non-essential goods, blocked international trade, and many more to prevent the spread of COVID-19. The only business dealing with this pandemic situation is the essential services that are allowed to open and run the processes.

The growth of the Asia-Pacific RF over fiber market is rising due to the government policies to boost international trade post covid. Also, the benefits offered by RF over fiber for optimizing costs and routes are raising the demand for RF over fiber in the market. However, factors such as congestion associated with trade routes and trade restrictions between some nations are restraining the market growth. The shutdown of production facilities during the pandemic has had a significant impact on the market.

Manufacturers are making various strategic decisions to bounce back post-COVID-19. The players are conducting multiple research and development activities to improve the technology involved in the RF over fiber. With this, the companies will bring advanced and accurate solutions to the market. In addition, the government initiatives to boost international trade have led to the market's growth.

Recent Developments

  • In March 2022, Broadcom Inc. announced the demonstration of its 100G/lane optical PAM-4 DSP PHY with an integrated trans-impedance amplifier (TIA) and high-swing laser driver. It is built on a 112G PAM-4 DSP platform, which provides the highest level of CMOS integration and superior performance with lower power consumption. Thus, the company will be able to expand its product portfolio in the market
  • In November 2021, HUBER+SUHNER launched Rail Antenna, which can boost 4G and 5G connectivity. This new SENCITY Rail MIMO+ Rooftop antenna increases potential 4G and 5G data throughout trains using advanced dual-polarization antenna technology. With this, the company will be able to expand its product portfolio in the market

Asia-Pacific RF Over Fiber Market Scope

Asia-Pacific RF over fiber market is segmented on the basis of modules, frequency band, vertical, frequency range, and application. The growth amongst these segments will help you analyse meager growth segments in the industries and provide the users with a valuable market overview and market insights to help them make strategic decisions for identifying core market applications.

By Modules

  • Transceivers
  • Optical Amplifiers
  • Antennas
  • Optical Switches
  • Optical Cables
  • Others

On the basis of modules, the Asia-Pacific RF over fiber market is segmented into transceivers, optical amplifiers, antennas, optical switches, optical cables, and others.

By Frequency Band

  • L Band
  • S Band
  • Ka Band
  • C Band
  • K Band
  • X Band
  • Ku Band

根据频段,亚太地区光纤射频市场细分为L波段、S波段、Ka波段、C波段、K波段、X波段和Ku波段。

按垂直

  • 民事
  • 军队

在垂直基础上,亚太地区光纤射频市场细分为民用和军用。

按频率范围

  • 低于 30 GHz
  • 30 GHz 至 40 GHz
  • 40 GHz 至 50 GHz
  • 超过 50 GHz

根据频率范围,亚太地区光纤射频市场细分为低于 30 GHz、30 GHz 至 40 GHz、40 GHz 至 50 GHz 和高于 50 GHz。

按组织规模 

  • 大型组织
  • 中型组织
  • 小型组织

根据组织规模,亚太地区光纤射频市场细分为大型组织、中型组织和小型组织。

按应用 

  • 电信
  • 播送
  • 导航
  • 雷达
  • 宽带

射频光纤市场

根据应用,亚太地区光纤射频市场细分为电信、广播、导航、雷达和宽带。

亚太地区射频光纤市场区域分析/见解

对亚太地区光纤射频市场进行了分析,并按国家、模块、频段、垂直、频率范围和应用提供了市场规模洞察和趋势,如上所述。

亚太地区射频光纤市场报告涉及的国家包括中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾和亚太地区其他地区。

由于中国主要公司的高制造和外包制造能力将带动该地区的出口,预计中国将主导亚太地区。

报告的国家部分还提供了影响市场当前和未来趋势的各个市场影响因素和市场监管变化。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测各个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了亚太品牌的存在和可用性以及它们因来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税的影响和贸易路线。   

竞争格局和亚太地区射频光纤市场份额分析

亚太地区 RF 光纤市场竞争格局提供了有关竞争对手的详细信息。详细信息包括公司概况、公司财务状况、收入、市场潜力、研发投资、新市场计划、亚太地区业务、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度、应用主导地位。以上提供的数据点仅与公司对亚太地区 RF 光纤市场的关注有关。

亚太地区射频光纤市场的一些主要参与者包括 Broadcom、EMCORE Corporation、APIC Corporation、Optical Zonu Corp、Gooch & Housego PLC、ViaLite、Global Invacom、HUBER+SUHNER、Glenair、SEIKOH GIKEN CO., LTD.、II-VI Incorporated、DEV Systemtechnik GmbH、Syntonics LLC、ETL Systems Ltd、Narda-MITEQ、Olabs Technology Company Limited、RFOptic Ltd.、Elkay、MicroComp Nordic AB 等。


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研究方法

Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.

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Frequently Asked Questions

The growth of the Asia-Pacific RF Over Fiber Market's CAGR of 9.8% by 2029
Asia-Pacific RF Over Fiber Market value $260,515.83 thousand by 2029.
Asia-Pacific RF Over Fiber Market segmented are modules, frequency band, frequency range, organization size & application.
The top players in the Asia Pacific RF Over Fiber Market are Broadcom, EMCORE Corporation, APIC Corporation, Optical Zonu Corp, Gooch & Housego PLC, ViaLite, Global Invacom, HUBER+SUHNER, Glenair, SEIKOH GIKEN CO., LTD., II-VI Incorporated, DEV Systemtechnik GmbH, Syntonics LLC, ETL Systems Ltd, Narda-MITEQ, Olabs Technology Company Limited, RFOptic Ltd., Elkay, MicroComp Nordic AB, etc.