AccuGrid is the software intelligence that links the clean energy flowing through our neighborhoods with the explosive demand for AI supercomputing. Instead of building hardware, we build the digital brain that orchestrates it—quiet, efficient compute rigs placed directly in homes, where they stabilize local grids, unlock massive cost savings for AI developers, and give hosts predictable, flat‑rate electric bills.
Data demands and power grids are on a collision course. Centralized data centers consume massive amounts of energy, while home electrical capacity remains largely underutilized.
AI computations require immense processing power. Centralized data centers consumed **4.4% of U.S. electricity in 2023** and are projected to surge to **12% by 2028**. Building massive data centers requires years of grid upgrades, putting heavy strain on local electricity supplies and raising local electric rates.
While centralized grids are overloaded, local neighborhoods have electrical capacities that sit empty. The average home electrical service runs at only **40% to 58% utilization**, leaving more than half of the existing power headroom entirely idle.
We coordinate distributed hardware into a unified, responsive network. Instead of draining the grid, we help balance it.
We upgrade homes with a SPAN smart electrical panel and a whole-home backup battery at **zero upfront cost**, creating a highly resilient smart-home power foundation.
We install a fanless, weather-proof compute node outside the home. The software coordinates workloads in milliseconds, only running them during non-peak energy hours.
Instead of releasing heat into the atmosphere, we route liquid coolant directly to the home's water heater or space heating—providing free recycled warmth.
Our residential compute unit fits right alongside your outdoor air conditioning unit. Engineered without fans, it operates in complete silence, utilizing liquid coolant to capture and recycle computing heat.
We partner with Coesoft to pre-install an institutional-grade smart-energy and compute suite—SPAN panel, home battery, and edge node—at zero upfront cost, then convert it into predictable bills, free heat, blackout resilience, and a more valuable home.
Modern smart-energy upgrades normally cost a homeowner $7,500–$12,000. AccuGrid eliminates that barrier entirely—your SPAN panel, LFP battery, and XFRA edge node are installed and maintained free by our certified technicians.
One predictable subscription of about $150/month covers your entire baseline household electricity plus dedicated high-speed fiber internet. AccuGrid becomes the counterparty to your utility and ISP, absorbing all billing risk and peak-rate spikes.
A liquid-to-water heat exchanger routes GPU waste heat into your hot-water tank and space heating instead of venting it. Using each kilowatt twice trims up to $430/year off heating bills and cuts roughly one metric ton of CO₂ annually.
On a grid failure the home switches to its 15 kWh LFP battery automatically. The SPAN panel sheds non-essential circuits to protect the refrigerator, medical equipment, and Wi-Fi—extending backup runtime up to 40% longer than an unmanaged battery.
Adding solar, a heat pump, or a Level 2 EV charger usually forces a $2,000–$5,000 utility service upgrade (100A→200A panel). SPAN's dynamic load management runs these behind the meter, so you bypass the physical grid upgrade entirely.
Pre-integrated resilient energy infrastructure makes the home a premium asset—commanding a 4%–6% valuation premium—while qualifying for 30% federal tax credits under Inflation Reduction Act Sections 25C and 25D.
Data security is engineered at the silicon layer. Property hosts never see computing workloads, and compute developers never see host details.
Compute tasks are processed inside secure, hardware-encrypted micro-enclaves. Model weights and data inputs remain fully encrypted, completely inaccessible to any host or local network intrusion.
Active physical loop locks monitor node integrity. If a unit is unplugged or tampered with, all local cryptographic keys are erased in milliseconds, and the tasks are hot-migrated to another cluster node.