800 VDC — High Voltage DC Distribution for Data Centers
The Challenges of Traditional Low-Voltage Power Distribution
Scaling data center power with legacy three-phase AC input and 50 V output increases complexity, reliability risk, cost, and weight:
- Massive busbars are required to avoid large-scale resistive losses.
- Losses generate heat that must be removed and cooled.
- High current demands can push standard connectors to their thermal limits, necessitating larger connectors.
800 VDC: Higher Voltage, Lower Current
The industry is rapidly moving to 800 VDC, also referred to as ±400 VDC or HVDC (high voltage DC). Higher voltage and far less current flowing:- Minimizes electrical losses
- Increases power path efficiency
- Reduces busbar size and weight requirements
- Eliminates connector overheating
- Eliminates the need for bulky high-current connectors
Enabling the Shift to 800 VDC
- Reinforced insulation
- Expanded creepage and clearance
- Pollution degree ratings
- High voltage spacing
Two approaches are emerging for 800 VDC distribution:
- Board-mounted conversion (direct-to-server): 800 VDC delivered directly to server boards
- Rack-mounted conversion: 800 VDC to 50 VDC at the rack with centralized power shelves. This
Hyperscale Infrastructure
The rapid growth of Al, cloud computing, and high-density data center deployments is driving unprecedented power demands. Traditional AC power distribution architectures introduce multiple conversion stages, resulting in increased energy losses, higher operating costs, larger infrastructure footprints, and greater system complexity.
Our Solution: High-Efficiency 800 VDC/HVDC Power Shelves
Advanced Energy’s high voltage DC (HVDC) power shelves enable efficient and scalable power distribution for modern Al, cloud, telecom, and hyperscale environments. By distributing power at higher DC voltages (e.g. 800 VDC architectures), our solutions reduce conversion losses, simplify power architectures, and enable higher-density deployments while maintaining industry-leading reliability.
Why HVDC?
HVDC distribution helps eliminate unnecessary conversion stages, improve efficiency, support higher rack power densities, simplify renewable energy integration, reduce infrastructure footprint, and enable more sustainable operations.
Built for Hyperscale, Al, and Cloud Infrastructure
Talk to us about how our purpose-built HVDC power shelves meet the needs of hyperscaler operators, cloud service providers, AI training facilities, and next-generation data centers.
Talk to us about AE can support your next-generation AI infrastructure.
Meeting global safety and EMI requirements, Advanced Energy’s 800 VDC solutions integrate OCP, OVP/UVP, and OTP protection and support megawatt-class racks with liquid-cooled PDBs.
Compact, Integrated 800 V PDBs
Custom PDBs integrate:- Hot-swap control
- Hold-up capacitance
- HVDC conversion
Hot-Swap Control at the HVDC Output
Advanced Energy’s hot-swap controllers:- Limit inrush current
- Discharge hold-up capacitors for safe servicing
- Monitor input voltage and current at power entry
- Enable digital system control via digital communication interface
High-Efficiency HVDC DC-DC Conversion
Designed for power-dense AI infrastructure, board-mounted isolated 16:1 converters provide:- Up to 98% efficiency under liquid cooling
- PMBus monitoring and control
- Reinforced insulation, optimized spacing, and high-voltage transformer design
Ultra-High-Density Non-Isolated DC DC Bus Converters
Advanced Energy’s NDQ bus converters deliver high-density, ultra-efficient 48 V to 12 V conversion for high-power computing and storage applications with:- 40 to 60 VDC input
- Up to 1600 W output and 97.7% peak efficiency
- Standard quarter-brick form factor and pin configuration
- Optional PMBus monitoring and control
- Selection of remote sense or current sharing
