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Optical Transceiver Market (Form Factor - SFF, SFP, CFP, CXP, XFP, and QSFP; Date Rate - Less than 10gbps, 10gbps to 40gbps, 41gbps to 100gbps, More than 100gbps, and Less than 10gbps; Fiber Type - Single Mode Fiber, and Multi-mode Fiber; Wavelength - 850nm Band, 1310nm Band, and 1550nm Band; Application - Telecommunication, Data Center, and Enterprise): Global Industry Analysis, Trends, Size, Share and Forecasts to 2028

Optical Transceiver Market (Form Factor - SFF, SFP, CFP, CXP, XFP, and QSFP; Date Rate - Less than 10gbps, 10gbps to 40gbps, 41gbps to 100gbps, More than 100gbps, and Less than 10gbps; Fiber Type - Single Mode Fiber, and Multi-mode Fiber; Wavelength - 850nm Band, 1310nm Band, and 1550nm Band; Application - Telecommunication, Data Center, and Enterprise): Global Industry Analysis, Trends, Size, Share and Forecasts to 2028

Report Code: ICT003142 Category: Electronics, ICT and Semiconductors Published: December, 2022

A recent report published by Infinium Global Research on the optical transceiver market provides an in-depth analysis of segments and sub-segments in the global as well as regional optical transceiver market. The study also highlights the impact of drivers, restraints, and macro indicators on the global and regional optical transceiver market over the short term as well as the long term. The report is a comprehensive presentation of trends, forecasts, and dollar values of the global optical transceiver market. According to the report, the global optical transceiver market is projected to grow at a CAGR of nearly 15% over the forecast period of 2022-2028. 

Market Insight

The global optical transceiver market was valued at about USD 9 Billion in 2022 and is expected to reach nearly USD 20 Billion in 2028, with a CAGR of nearly 15% during the forecast period. The optical transceiver is used to send and receive data. The data is transmitted using fibre optics at extremely high speeds and over great distances in the form of light pulses. To transform optical signals into electrical signals and electrical signals into optical signals. It can be hooked into or incorporated into another device in a data network to send and receive a signal. The optical transceivers come in a variety of form factors, sizes, and shapes. The type of data, required speed, and required distance determine which form factor should be used. Different protocols, or set of rules, govern how various types of data are sent. The optical transceiver is used to send and receive data. The data is transmitted using fibre optics at extremely high speeds and over great distances in the form of light pulses. To transform optical signals into electrical signals and electrical signals into optical signals. It can be hooked into or incorporated into another device in a data network to send and receive a signal. The optical transceivers come in a variety of form factors, sizes, and shapes. The type of data, required speed, and required distance determine which form factor should be used. Different protocols, or set of rules, govern how various types of data are sent. 

Sales of low-cost transceivers will increase as a result of rising demand for energy-efficient features in telecom and data entry applications. The market need calls for smaller, less expensive, and more energy-efficient energy transceivers. There have been a number of technological advancements since the CFP module was introduced. Longer reach and high-density data transmission have led to improved port density and efficient power utilization. Data centres need optical transceivers to communicate, and long-haul applications need them to work with complicated networks. A compact, power-efficient transceiver is offered by companies like Fujitsu optical component. The market will expand as a result of their fastest speed and widest data connectivity. The data centre network has a large number of networks, which increases data flow and complicates the network. The customer experienced delivery delays as a result. All of these elements lead to the requirement for a more compact shape in order to facilitate interoperability and expand available space inside the network. The business needs to take a cutting-edge strategy to lessen network complexity, which is a market restraint. Developing nations are significantly impacted by the expansion of the telecommunications infrastructure. Smart devices and other connected devices are in higher demand than ever in the market today. Interconnected technologies are crucial in telecommunications for converting and transporting data into usable information. An essential component of this type of infrastructure is the high-speed fibre optic network. It is capable of quickly and efficiently moving a lot of data from one end to the other. 


Optical Transceiver Market


Asia-Pacific is one of the emerging markets for optical transceivers because of the rising popularity of high bandwidth-intensive applications, internal user adoption of smartphones, network establishment, and connection. Asia-Pacific is becoming a sought-after location for large investments and corporate expansion. With support for 5G technologies in the Asian market, commercial deployment has already begun in South Korea and will begin in Japan and China in 2020. A major manufacturer and provider of smartphones, smart devices, and numerous other electronic devices in Asia Pacific. These elements become driving forces for optical transceivers. Due to the fact that this transceiver is either utilized in addition to or in combination with this electron. 

Segment Covered

The report on the global optical transceiver market covers segments such as form factor, date rate, fiber type, wavelength, and application. On the basis of form factor, the sub-markets include SFF, SFP, CFP, CXP, and XFP. On the basis of date rate, the sub-markets include less than 10gbps, 10gbps to 40gbps, 41gbps to 100gbps, more than 100gbps, and less than 10gbps. On the basis of fiber type, the sub-markets include single mode fiber, multi-mode fiber. On the basis of wavelength, the sub-markets include 850nm band, 1310nm band, and 1550nm band. On the basis of application, the sub-markets include telecommunication, data center, enterprise. 

Companies Profiled:

The report provides profiles of the companies in the market such as Accelink Technology Co. Ltd, Amphenol Corporation, Applied Optoelectronics Inc (AOI), Broadcom Inc., Cisco Systems, Inc., Eoptolink Technology Inc., FUJITSU OPTICAL COMPONENTS LIMITED, Hisense Broadband, Inc., Huawei Technologies Co. Ltd, Infinera Corporation. 

Report Highlights:

The report provides deep insights into demand forecasts, market trends, and micro and macro indicators. In addition, this report provides insights into the factors that are driving and restraining the growth in this market. Moreover, The IGR-Growth Matrix analysis given in the report brings insight into the investment areas that existing or new market players can consider. The report provides insights into the market using analytical tools such as Porter's five forces analysis and DRO analysis of the optical transceiver market. Moreover, the study highlights current market trends and provides forecasts from 2022-2028. We also have highlighted future trends in the market that will affect the demand during the forecast period. Moreover, the competitive analysis given in each regional market brings insight into the market share of the leading players.


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