GaN II technology is the next big step in a hassle-free charging experience, Anker CEO Steven Yang said in a statement. This growth will continue in the aftermarket, with Apple, Xiaomi, and Samsung opting for out-of-the-box solutions. Fast charging is the killer application for the GaN market, as 10 smartphone makers have launched more than 18 smartphones with inbox GaN chargers, Yole said.
Yole expects the GaN consumer power supply market to be the main driver of growth, as this sector is forecast to grow from almost $29 million in 2020 to around $672 million in 2026, with a compound annual growth rate of 69%. That’s a lot of companies building infrastructure for the GaN manufacturing industry. Big players in developing the applications include EPC, Transphorm, and Infineon, while Power Integrations and Navitas are increasing their market share in the power GaN market. Manufacturers include ST Microelectronics, TSMC, Texas Instruments, and others. GaN is also growing in automobiles, datacenters, and aerospace. The GaN power components market doubled in 2020 and is expected to surpass $1 billion in 2026, Yole said. Power supply makers such as Eltek, Delta, and BelPower adopted GaN chips in recent years, giving the technology its first real traction, according to market analyst firm Yole Development. EPC targeted GaN chips at applications that didn’t exist five years ago, such as wireless charging of devices without cords, sensing systems for autonomous vehicles, and high-speed mobile communications. In fact, the GaN chips can be made on top of a silicon wafer, without expensive packaging for protection.Īt first, GaN was relegated to power amplifiers in cell phones, radar systems, and high-end military systems. In contrast to rival tech like gallium arsenide, the GaN chips can be processed without expensive machinery or special processes. The advantage of gallium nitride is that it can be manufactured in the same factories that produce silicon chips. While silicon is still used in most chargers, GaN provides a safer and more efficient way to disperse heat, allowing chargers to safely operate at faster speeds, Anker said. GaN has a wider bandgap than silicon, allowing it to sustain higher voltages than silicon.
“We see a huge pull in the market toward smaller chargers.” GaN technology “People love the fact that you have smaller chargers,” Power Integrations CEO Balu Balakrishnan said in an interview with VentureBeat.
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