The global gallium nitride (Gan) device market share is set to gain impetus from the high demand for fast chargers worldwide. The study mentions that the GaN device market size was USD 20.56 billion in 2019 and is projected to reach USD 28.40 billion by 2027, exhibiting a CAGR of 4.28% during the forecast period.
The Gallium Nitride (GaN) device market refers to the production and sale of electronic devices that use Gallium Nitride as a semiconductor material. These devices include transistors, diodes, power amplifiers, and integrated circuits. This market is driven by the increasing demand for high-performance electronic devices that offer higher power density, better thermal management, and greater efficiency. The market is also driven by the growing adoption of GaN technology in various applications such as automotive, industrial, telecommunications, and aerospace.
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Drivers & Restraints-
Expansion of Telecommunications Domain to Accelerate Growth
The demand for energy efficient GaN devices is surging rapidly owing to the expansion of the telecommunications domain. Most of the internet service providers are nowadays focusing on providing lower latency with optical cable wires, ubiquitous connectivity, and network with higher capacity. Apart from that, the rising utilization of GaN devices in the 5G infrastructure is likely to propel the gallium nitride device market growth in the near future. However, the high cost associated with the maintenance and development of gallium nitride devices may hinder growth.
Segment-
Opto-semiconductor Device Segment to Grow Rapidly Backed by Increasing Usage in Lasers
Based on device type, the opto-semiconductor device segment procured the highest gallium nitride market share in 2019. This growth is attributable to their increasing usage in various aerospace applications, such as Light Detection and Ranging (LiDAR) and pulsed lasers. Besides, they are used in optoelectronics, LEDs, lasers, photodiodes, and solar cells.
Regional Insights-
High Demand for Wireless Devices to Favor Growth in Europe
Geographically, North America generated USD 7.38 billion in 2019 because of the presence of numerous prominent manufacturers, such as MACOM, Cree, Inc., Northrop Grumman Corporation, Efficient Power Conversion Corporation, Microsemi, and others in this region.
Europe, on the other hand, is anticipated to grow significantly on account of the rising demand for wireless devices in Germany, France, and the U.K. In Asia Pacific, the rising demand for gallium nitride devices from emerging nations, such as India and China would aid growth.
COVID-19: Increasing Sales of Smartphones and Laptops to Affect Growth
The COVID-19 pandemic is set to positively affect growth. Governments of various countries have implemented stringent lockdown measures to curb the spread of coronavirus. Owing to the work from culture, nowadays people are investing more in smartphones, IoT-based devices, laptops, and chargers. These factors are expected to surge the sales of these devices throughout 2020. We are also delivering accurate research reports to help you battle this pandemic and regain business confidence.
Competitive Landscape-
Key Companies Focus on Winning New Contracts to Intensify Competition
The global market for gallium nitride devices is highly fragmented with the presence of numerous reputed manufacturers. Most of them are focusing on achieving new contracts from significant governments, as well as private agencies to deliver their in-house products. Below are the two latest industry developments:
- June 2020: Raytheon Missiles & Defense provided a contract worth USD 2.3 billion to the U.S. Missile Defense Agency (MDA). The latter will deliver seven GaN-based Army Navy/Transportable Radar Surveillance (AN/TPY-2) units. It is a part of the company’s Terminal High Altitude Area Defense (THAAD) system.
- July 2019: Transphorm announced a new contract worth USD 18.5 million from the U.S. Department of Defense (DoD) Office of Naval Research (ONR). It includes a Base Program that is aimed at commercializing nitrogen polar GaN.