
BBU Innovation
Reliable Power Uninterrupted AI Computing

Power Challenges of High-Density AI Computing
The current 400V architecture has become a key bottleneck to scaling AI data centers.

Space & Thermal Constraints
Cooling equipment takes up critical white space, limiting the expansion of computing capacity.

Power Conversion Losses
Multi-stage power conversion results in energy losses and excess heat, making PUE (Power Usage Effectiveness) optimization more challenging.

Power Safety & Resilience
Mission-critical AI workloads require uninterrupted operation, making reliable continuous power essential.
Note: PUE is the ratio of total data center energy to IT equipment energy consumption. A value closer to 1.0 indicates lower cooling overhead.
The Ideal Solution for Energy Resilience

APh Battery Backup Units
High-power output and with enhanced safety, providing up to 300 seconds of reliable backup power

Non-Lithium Battery Technology

Bidirectional Fast Charging and Discharging

Operating Temperature
0°C to 40°C
Delivering Efficiency and Safety in Power Backup
Evolving BBUs: From Passive Backup to Active Power Dispatch
As AI data center architectural shift towards disaggregated power and compute racks, our two major patented technologies enable BBUs to evolve from passive backup to active power dispatch.

Dynamically allocates power to server racks based on real-time load demands.
Cross-Rack Power Dispatch
Prioritizes power distribution based on task urgency during disruptions, helping ensure data integrity.
Power Priority Score (PPS)