Global Arrayed Waveguide Grating (AWG) Market Share Is Expected To Grow At A CAGR Of 12.95% By 2028

08-Nov-2022 | Facts and Factors

According to Facts and Factors, the global arrayed waveguide grating (AWG) market size was estimated to be worth roughly USD 100.18 million in 2021 and is predicted to grow to around USD 234.95 million by 2028. The global arrayed waveguide grating (AWG) market is predicted to grow at a CAGR of roughly 12.95% during the forecast period.

In wavelength division multiplexed (WDM) systems, arrayed waveguide gratings (AWG) are frequently used as optical (de)multiplexers. Due to their ability to multiplex a variety of wavelengths onto a single optical cable, these devices considerably boost the transmission capacity of optical networks. The fundamental optical principle that states that light waves of different wavelengths do not linearly interfere with one another is the foundation for the devices. If each channel in an optical communication network utilizes light with a slightly different wavelength, the light from many of these channels can be transmitted by a single optical fiber with very little crosstalk between the channels.

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Browse the full “Arrayed Waveguide Grating (AWG) Market Size, Share, Growth Analysis Report By Type (Thermal AWG and Athermal AWG), By Application (Internet Backbone Networks and Enterprise Networks) - and By Region - Global and Regional Industry Insights, Overview, Comprehensive Analysis, Trends, Statistical Research, Market Intelligence, Historical Data and Forecast 2022 – 2028" report at https://www.fnfresearch.com/arrayed-waveguide-grating-awg-market

The global arrayed waveguide grating (AWG) market is growing as electronic device adoption increases. The market for arrayed waveguide gratings is expanding quickly as a result of the growing adoption of electronic devices, an increase in data traffic brought on by data centers’ capacity to store large amounts of newly created data, and the rapid adoption of cloud computing. Additionally, during the projected period, the need for arrayed waveguide gratings may rise due to reasons such as a growing need for bandwidth, greater internet connectivity, and low power consumption.

Additionally, increased bandwidth demand opens up attractive opportunities. Participants in the industry would also profit from improved internet connectivity, rising bandwidth demand, and reduced power consumption throughout the anticipated period of 2022 to 2028. A boost in investments from significant companies would also further spur market expansion.

COVID-19 has an effect on the market for arrayed waveguide gratings (AWG). The industry has benefited from the rising use of electronic devices, increased data traffic, efficient handling of the enormous volumes of created data in data centers, and high-speed cloud computing. Additionally, the lockdown and restrictions are increasing the need for arrayed waveguide gratings because users are transferring data at a quicker rate and require a dependable internet connection.

The global Arrayed Waveguide Grating (AWG) market is segmented based on type, application, and region.

On the basis of type, the market is segmented as thermal AWG and athermal AWG. Among these, the thermal AWG dominated the global market. Some other names for an AWG device are optical waveguide, waveguide grating router, phase array, and phasar. An array of curved-channel waveguides with a set difference in the length of the optical path between the neighboring channels make up an AWG device. The Mach-Zehnder interferometer is a generalization known as an arrayed waveguide grating (AWG).

On the basis of application, the market is segmented as internet backbone networks and enterprise networks. Among these, the enterprise networks dominated the global market. The wavelength dependence of an AWG can be explained using the following straightforward physical concepts. The first-star coupler divides this signal's power into numerous components and directs them into the waveguides producing the grating when it is launched into one of the input waveguides.

Due to widespread internet use and the presence of major online firms like Google and Facebook, North America currently controls the majority of the global arrayed waveguide grating market. Europe and Japan are the next two largest markets. Manufacturers can now add AWG capabilities to active equipment to create InP-based Photonic Integrated Circuits  (PICs) at a lower cost of network deployment. For instance, add-drop multiplexing duties can be completed by the transceiver without the need for an external multiplexer. By employing fewer optical connectors, it is possible to avoid optical attenuation and reduce the cost of the component & installation.

Report Scope

Report Attribute

Details

Market Size in 2021

USD 100.18 Million

Projected Market Size in 2028

USD 234.95 Million

CAGR Growth Rate

12.95% CAGR

Base Year

2021

Forecast Years

2022-2028

Key Market Players

NTT, NeoPhotonics, Accelink, Broadex Technologies, Agilecom, Enablence, ShiJia photons, Wuhan Yilut Technology, POINTek, Shenzhen Gigalight, HYC, Flyin Optronics, DK Photonics Technology, and others.

Key Segment

By Type, Application, and Region

Major Regions Covered

North America, Europe, Asia Pacific, Latin America, and the Middle East &, Africa

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List of prominent players in the arrayed waveguide grating (AWG) market

  • NTT
  • NeoPhotonics
  • Accelink
  • Broadex Technologies
  • Agilecom
  • Enablence
  • ShiJia photons
  • Wuhan Yilut Technology
  • POINTek
  • Shenzhen Gigalight
  • HYC
  • Flyin Optronics
  • DK Photonics Technology
  • Others 

Recent Developments:

  • In December 2019, DigiLens Inc., a leader in holographic waveguide display technology for augmented reality, announced its expansion into China with the addition of Crystal Optech as its first Chinese licensee and Country Manager Xiaoshu Lin. DigiLens Crystal waveguides will be able to expand their market presence as a result of this relationship.

The global arrayed waveguide grating (AWG) market is segmented as follows:

By Type

  • Thermal AWG
  • Athermal AWG

By Application

  • Internet Backbone Networks
  • Enterprise Networks

By Region

  • North America
    • The U.S.
    • Canada
    • Mexico
  • Europe
    • France
    • The UK
    • Spain
    • Germany
    • Italy
    • Nordic Countries
      • Denmark
      • Sweden
      • Norway
    • Benelux Union
      • Belgium
      • The Netherlands
      • Luxembourg
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • Australia
    • South Korea
    • Southeast Asia
      • Indonesia
      • Thailand
      • Malaysia
      • Singapore
      • Rest of Southeast Asia
    • Rest of Asia Pacific
  • The Middle East & Africa
    • Saudi Arabia
    • UAE
    • Egypt
    • South Africa
    • Rest of the Middle East & Africa
  • Latin America
    • Brazil
    • Argentina
    • Rest of Latin America

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