Technology
How it works
Three interlocking technology pillars form the Metagrid architecture. Each has clear build targets and validation gates.
01
Metamaterials
Engineered surface structures that shape and confine electromagnetic fields with sub-wavelength precision.
WHAT WE'RE BUILDING
Flat-lens antenna arrays for directed power transfer
Frequency-selective surfaces for beam confinement
Reconfigurable metamaterial elements for adaptive steering
WHAT MUST BE PROVEN
Efficiency at target distances and power levels
Fabrication scalability and cost at volume
Thermal management under continuous operation
02
Adaptive Beamforming & Control
Real-time beam steering, load balancing, and safety interlock systems driven by sensor feedback.
WHAT WE'RE BUILDING
Closed-loop beam tracking and power regulation
Multi-receiver load management algorithms
Fail-safe cutoff and exposure monitoring
WHAT MUST BE PROVEN
Latency and reliability of safety interlocks
Scalability of control algorithms to many nodes
Robustness in dynamic, obstructed environments
03
Hierarchical Distribution
A tiered relay architecture that routes power through zones, balancing capacity, safety, and redundancy.
WHAT WE'RE BUILDING
Tier-structured relay node network design
Zone-based power routing and handoff protocols
Redundancy and graceful degradation strategies
WHAT MUST BE PROVEN
End-to-end efficiency across relay tiers
Scalability from room to building to campus
Economic viability vs. wired alternatives