Flared gas → compute
Gas that would otherwise be burned at the flare stack powers our modular data centres at oil and gas sites — converting a waste stream into productive infrastructure.
Energy × compute
Kala Data builds compute from the power source up — an AI cloud for builders, and new revenue for energy producers.
On-demand B200, H200 and H100 capacity for training, inference and agents, from energy-advantaged sites to GPUs in the city. Transparent hourly pricing.
Explore GPU compute →Convert stranded, flared or curtailed energy into revenue with modular, dispatchable data centres. Deployed anywhere, grid or off-grid.
Explore energy partnerships →Vertical integration
GPU compute and Kala Mesh workload orchestration — one platform, one API, one bill.
Modular immersion-cooled sites we deploy, plus capacity in established city data centres for low-latency workloads.
Prefabricated, dispatchable, immersion-cooled units deployed directly onto energy assets — grid or off-grid.
Stranded, flared, curtailed and underutilised power — turned into useful compute at the source.
One platform underneath both businesses — our AI cloud runs on the same energy-backed modular infrastructure we deploy for energy partners.
Climate-aligned compute
Most data centres compete for the same constrained grid capacity. Kala deploys where energy already exists but can't reach a buyer — flared gas, curtailed renewables, stranded power. The compute is the buyer.
Gas that would otherwise be burned at the flare stack powers our modular data centres at oil and gas sites — converting a waste stream into productive infrastructure.
Wind and solar generation is routinely curtailed when the grid can't absorb it. Our dispatchable data centres absorb that excess, turning grid waste into AI workloads.
Remote or behind-the-meter power with no viable route to market becomes a productive asset — generating revenue for energy producers without new transmission infrastructure.