logo
logo
Sign in

Optical Transceiver Market by Form Factor (SFF and SFP; SFP+ and SFP28; XFP; CXP) Data Rate, Wavelenghth, Fiber Type, Connector, Distance, Protocol and Application

avatar
Sneha Patil
Optical Transceiver Market by Form Factor (SFF and SFP; SFP+ and SFP28; XFP; CXP) Data Rate, Wavelenghth, Fiber Type, Connector, Distance, Protocol and Application

Optical Transceivers Market

 

According to analysis by Persistence Market Research, the global optical transceivers market is expected to surge at a CAGR of 14.6% and top a valuation of US$ 34 Bn by the end of 2032. Upgraded parts for effective network utilization are optical transceivers. The main element promoting the use of optical transceiver components is their affordable network information transfer. Optical transceivers also outperform conventional transceiver devices in terms of preference since they requires less maintenance as compared to conventional devices. Optical transceivers offer a lot of bandwidth and are widely employed in high-speed network infrastructures such as broadband Internet connections. To upgrade communication networks and data center networks for effective traffic management at faster rates, optical transceivers are used.

 

Request for Free Sample Copy of Optical Transceivers Market @https://www.persistencemarketresearch.com/samples/4798

 

Increasing Demand for Energy-efficient & Compact Transceivers

 

Smaller, less expensive, and energy-efficient optical transceivers are in high demand right now. Due to their energy-efficient features, low-cost transceivers have seen an increase in demand in telecom and data center applications. Since the introduction of the CFP module, numerous technological advancements have led to the creation of small form factors.

 

High data transmission speeds and longer reach are needed by data centers and businesses, which has increased port density and improved power usage. This is sufficient to fuel market expansion for inexpensive optical transceivers.

 

Furthermore, the market for optical transceivers has been boosted by products from well-known companies such as Accelink (China), which provide multi-channel 100/400G optical transceivers for datacom applications, Lumentum (US), which provides SFP+ optical transceiver modules for metro networks, and Broadcom (US), which provides affordable SFF optical transceiver modules for data center applications.

 

Request For Customization @https://www.persistencemarketresearch.com/request-customization/4798

 

More Valuable Insights on Offer

 

Persistence Market Research’s report on the optical transceivers industry research is segmented into five major sections – form factor (SFF & SFP, CFP, QSFP, XFP, CXP, and others), fiber type (single mode fiber and multimode fiber), data rate (less than 10 gbps, 10 gbps to 40 gbps, 41 gbps to 100 gbps, and more than 100 gbps), application (telecommunications, data centers, and enterprises), and region (North America, Latin America, Europe, East Asia, South Asia & Pacific, and the Middle East & Africa), to help readers understand and evaluate the lucrative opportunities in the optical transceivers market.

 

Buy Now this Report @https://www.persistencemarketresearch.com/checkout/4798

 

 

 

 

About Us

Persistence Market Research (PMR), as a 3rd-party research organization, does operate through an exclusive amalgamation of market research and data analytics for helping businesses ride high, irrespective of the turbulence faced on the account of financial/natural crunches.

 

 

Contact Us

 

Persistence market research

Address – 305 Broadway, 7th Floor, New York City, NY 10007 United States

U.S. Ph. – +1-646-568-7751

USA-Canada Toll-free – +1 800-961-0353

Sales – [email protected]

 

 

Germany Office

Persistence Market Research

Potsdamer Platz 10 Haus 2, 5th Floor Berlin,

Germany 10785

Call +1 888-863-4084

 

 

collect
0
avatar
Sneha Patil
guide
Zupyak is the world’s largest content marketing community, with over 400 000 members and 3 million articles. Explore and get your content discovered.
Read more