Global Wide Bandgap Semiconductors: Which Growth Opportunities Showcase Vast Potential?
Transition of EVs to 800 V battery systems, 5G deployments, need for higher efficiency, and focus on sustainability will fuel transformational growth of wide bandgap semiconductors through 2032
The global wide bandgap (WBG) semiconductor sector will witness unprecedented growth as industries look for energy-efficient and high-performance electronics. This analysis focuses on silicon carbide (SiC) and gallium nitride (GaN)-based devices (SiC power, GaN power, and radio frequency [RF] GaN semiconductor), which are gaining prominence across end-user industries due to their ability to support high voltage, switching frequency, and efficiency.
• What is the growth potential of WBG semiconductors in each end-user vertical?
• How will electric mobility, 5G deployments, and renewable electricity transform this sector?
• What is the impact of vertical integration and the ongoing geopolitical chaos on the growth of this sector?
• How are factors like miniaturization driving the need for speed, power, performance, and efficiency in modern-day electronic devices?
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