Solid-State Transformers Gain Traction as AI Data Centers Push Shift to High-Voltage DC
Key Takeaways
The rapid growth of artificial intelligence is placing surging demands on data center power infrastructure. Traditional power distribution systems, built around 400V AC buses and multiple conversion stages down to low-voltage server supplies, are increasingly strained.
To address these challenges, the industry is transitioning toward 800V HVDC architectures. NVIDIA has announced a transition to 800V HVDC starting in 2027, replacing traditional 12V/48V systems. This approach enables direct conversion from 13.8kV AC to 800V DC, significantly reducing the number of conversion stages.
Solid State Transformers (SSTs) are emerging as a critical technology in this shift. They replace traditional transformers and enable direct high-voltage power conversion, delivering more efficient, flexible, and scalable power delivery for next-generation AI facilities.
The rise of SSTs is creating demand for a new generation of high-voltage silicon carbide devices. SST architectures commonly employ cascaded H-bridge topologies. Front-end AC-DC stages typically require SiC devices rated between 2,300 V to 6,500 V, while downstream DC-DC stages generally utilize devices rated between 1,200 V to 2,300 V
As system voltages increase, attention is shifting toward 10 kV-class SiC MOSFETs. These devices offer substantially lower switching losses than traditional insulated-gate bipolar transistor (IGBT) modules while enabling simpler system architectures.
Compared with conventional multilevel SiC or IGBT-based designs, 10 kV SiC devices can reduce component counts, improve efficiency and simplify thermal management—advantages that are particularly important in high-power SST systems.
High-voltage devices also require advanced gate-driver technologies capable of delivering high isolation voltage and robust performance under extreme dv/dt conditions. Functional operating voltage of 3.0KV needed for 2.0KV Bus Voltage.
As solid-state transformers move toward commercialization, onsemi is positioning itself as a provider of the high-voltage silicon carbide technologies required to enable more efficient, scalable and cost-effective power conversion. The company's portfolio spans commercial SiC power modules, next-generation high-voltage devices and advanced power protection technologies that address emerging demand from AI data centers, grid modernization projects, industrial power systems and electrification infrastructure.
Key offerings include:
Solid-State Transformers (SSTs) represent a key advancement in addressing the surging power demands of next-generation AI facilities. By reducing conversion stages and improving overall system efficiency, SSTs help overcome the limitations of traditional transformer-based systems. As adoption increases, demand for high-voltage silicon carbide (SiC) devices are expected to grow, positioning onsemi to support the development and deployment of these next-generation power systems with the efficiency, reliability, and resilience required for the AI era.