Capabilities

Decision intelligence for the built environment — and the systems to deploy it.

N.O.VATE pairs a decision-intelligence operating system with five physical and IP technologies that make high-value deployment inside existing buildings viable. We don't just tell you what a building should become — we make it real, faster and at lower cost than greenfield.

How it's built

One decision layer. One deployment layer.

Most platforms stop at analysis. N.O.VATE spans the full path — from governed capital decision to physical deployment inside the building you already own.

The decision layer

N.O.VATE OS is a decision-governance architecture that transforms heterogeneous information into governed capital decisions. It turns scattered property, power, zoning, fiber, and market data into a single, defensible assessment of what a building should become.

  • Detect Govern Decide workflow
  • 70+ evidence domains linked into one record
  • Every conclusion traceable to its sources
  • Generates defensible, partner-ready site assessments

The deployment layer

Five technologies with provisional patents convert the decision into physical reality — suspended, weight-dispersion infrastructure designed to reduce or potentially avoid structural reinforcement (subject to engineering validation) and deploy high-density compute inside existing structures.

  • Deploy in months, not years
  • 30–60% lower capital cost (modeled range, vs. greenfield)
  • Higher density from the same building
  • Works across office, commercial, and industrial stock
Phoenix Edge platform

One system. Five technologies.

Five provisional patents, one platform. Together they make deployment in existing buildings viable, repeatable, and faster than building new.

N.O.VATE™ OS
Decision-governance architecture
The intelligence layer — transforms heterogeneous property, power, fiber, and market data into governed capital decisions. Every conclusion is traceable to its sources and partner-ready.
N.O.VU™
Modular suspended infrastructure for retrofits
The suspended, weight-dispersion infrastructure designed to reduce or potentially avoid structural reinforcement inside existing buildings — the physical backbone that makes retrofit deployment viable.
N.O.DE™
Normalized integration endpoints for buildings
Standardizes how power, cooling, communications, and structural systems connect to existing buildings — so deployment is repeatable across diverse building types, not custom-engineered each time.
N.O.DiDiS™
Diodic flow-control for cooling
Distributed fixed-geometry diodic flow-control for liquid cooling distribution — enables high-density, reliable thermal management inside retrofitted buildings.
N.O.VA™
Deployable infrastructure vessel architecture
The deployable infrastructure vessel architecture — the structural vessel that carries the compute, energy, and cooling systems into the building and makes rapid deployment possible.
Pre-screening as a service

Send an address. We'll show you what's viable, what's unproven, and what should happen next.

Before anyone commits capital, N.O.VATE runs a directional pre-screen of any address — within about a day, with a preliminary evidence-readiness rating — then recommends a governed next step that preserves what's unproven.

What the pre-screen covers

Every pre-screen returns a directional read across the dimensions that decide whether a building can become a high-value deployment site.

  • Structural capacity for high-density load
  • Zoning and entitlement feasibility
  • Available power and upgrade path
  • Cooling and thermal fit
  • Fiber and network connectivity
  • Directional revenue potential (ROM)

What you get

A clear, source-backed answer: viable, viable-with-conditions, or not viable — plus the one or two constraints that matter most and a recommended next step. It's the fastest way to know whether a building is worth real diligence.

Send us an address
Have a building in mind?

Send us an address. We'll screen it and show you — within about a day — what's viable, what's unproven, and what should happen next.