Communications
Focused on AI servers and communications infrastructure, supporting the power revolution of the computing era with efficient power semiconductors.
Meeting the Power Challenges of the AI Computing Era
From 5G base stations to cloud data centers, communications infrastructure is entering an AI-driven era of computing power, where AI server training and inference clusters impose unprecedented demands on power systems in terms of power density and conversion efficiency. The multi-stage power architecture in high-performance computing platforms — from AC-DC front-end rectification and 48V intermediate bus to point-of-load DC-DC conversion — relies at every stage on efficient power semiconductors to reduce energy losses and improve power utilization. Targeting communications and AI computing infrastructure, Yangje Technology provides system-level power semiconductor solutions including SiC MOSFETs, super-junction MOSFETs, Schottky diodes, fast-recovery diodes, and TVS/ESD protection devices, supporting the efficient and stable operation of communications equipment and server power supplies.
Efficient Conversion, Reliable Protection
AI server power systems, which carry the power supply demands of large-scale GPU clusters, have extremely high requirements for power device switching speed, thermal management capability, and long-term reliability. Yangje Technology's SiC products are already widely deployed in AI server power supply applications, helping customers achieve higher power output within limited rack space. Meanwhile, the company's extensive portfolio of protection devices provides reliable ESD and surge protection for high-speed data interfaces and communications buses, ensuring signal integrity and system safety. In the face of continuously growing global computing demands, Yangje Technology draws on the supply assurance capabilities of the IDM model and a continuously innovating product matrix to provide trustworthy power semiconductor support for the construction of communications and AI infrastructure.