Stabilize AI compute load swings

Absorb the extreme power volatility of GPU clusters in milliseconds — before it interferes with onsite generators or grid interconnections.

10C discharge rate

Real-time load balancing

ERCOT and SB6 compliant

Absorb AI load volatility before it reaches your infrastructure

GPU clusters swing demand by tens of megawatts in seconds — leading to voltage instability, equipment stress, and compliance exposure.

Stabilize GPU loads

Training clusters ramp and deramp at speeds that overwhelm conventional generators and grid connections. Torus absorbs the volatility so on-site generation and grid connections see a smoother, manageable load profile.

1

Torus monitors your facility's load profile in real time

Continuous measurement at the millisecond level — tracking power draw across GPU clusters, generation sources, and grid connection. The system learns the facility's load patterns and identifies the thresholds where intervention is needed.

2

A training cluster ramps, and the load swings by tens of megawatts

AI workloads create demand spikes faster than generation or grid connections can absorb. GPU power electronics also generate sub-synchronous oscillations that destabilize voltage across the facility's power distribution.

3

Torus absorbs the spike and damps the oscillation

Torus responds within milliseconds — injecting or absorbing power to keep the load profile smooth and voltage stable.

4

Stable power. Full compute.

Generation assets and grid connections see a smooth, predictable load. No voltage instability. No forced curtailment. For grid-connected operations, full compliance with dispatch requirements. For behind-the-meter generation, seamless load management.

The other power problems we solve for data centers…

Power your compute with Torus
Begin with a free system design, sized to your facility's load requirements.

Your questions, answered.