Data Center with radio-native infrastructure that carries real-time machine data from edge to cloud. AI-driven and telecom-free, built for the data demands of the AI economy.
The Problem
AI cannot function without continuous, high-throughput data. Yet today's data-collection and transport infrastructure wasn't built for AI. It was built for voice calls and browser traffic.
Current 5G bands (FR1 & FR2) are saturated. Electric vehicles, drones, IoT sensors and AI devices generate terabytes daily. The pipe is simply too small.
Laying fiber costs millions per mile and can't serve mobile assets. X Spaces uses radio waves, serving moving targets like drones and EVs with the same infrastructure that serves static enterprises.
Hyperscalers spend billions annually on telecom capacity they cannot control or optimize. A vendor-neutral, AI-native RAN changes the economics of data-center operations entirely.
Drone swarms, autonomous vehicles, defense systems and financial trading all require sub-millisecond data delivery. Legacy networks cannot meet these SLAs at scale.
The Platform
AI-native radio transport without the cost of fiber. X Spaces unifies compute, open wireless and 6G research into one platform, from spectrum to AI compute, with zero telecom middlemen.
Next-gen compute facilities purpose-built for AI, with integrated 5G/6G fronthaul, edge-RIC control and multi-spectrum SDR transport. Carrier-grade infrastructure in Secaucus, NJ, at the edge of New York City.
Open RAN architecture with AI/ML embedded directly at the Radio Unit and Distributed Unit layer, enabling real-time, autonomous network optimization. AI-driven radio management adapts in real time for better coverage at lower cost.
A converged wireless-optical data network that feeds AI workloads with high-throughput, low-latency data from any connected device or sensor at scale, built on dynamic spectrum sharing across FR1, FR2 and the new FR3 band.
Partnering with Cornell Tech and Northeastern University on NTIA-funded 6G standards research. X Spaces contributes to 3GPP Release 21 through a live experimental network operating across New York City.
Architecture
A fully owned, four-tier O-RAN pipeline from spectrum to AI compute, with zero telecom middlemen.
SDR-based Neural O-RU devices collect data from EVs, drones and sensors across the FR1, FR2 and FR3 spectrum bands.
AI-integrated O-DU + O-CU process data with real-time Near-RT RIC control, beamforming and network slicing.
Low-latency data center in Secaucus, NJ, serving financial institutions and mobile workloads across the NYC metro.
Multi-tenant AI cloud with Non-RT RIC / SMO orchestration, geo-redundancy and API-driven services exposure.
The Difference
Most data centers use AI as a post-processing analytics layer. X Spaces embeds AI directly into the operational control plane, making real-time decisions at the radio, network and compute level simultaneously.
AI sits above the network. The network is dumb. Humans manage spectrum and routing. Telecom provides the pipe. There is no real-time control loop.
AI is the network. Every radio unit is a neural node. The data pipeline self-optimizes. No telecom dependency. Closed-loop autonomous operation from edge to cloud. A single RU delivers 4,540 Mbps across 450 active UEs.
AI/ML embedded in the Low-PHY layer for autonomous beamforming and interference mitigation, with no human intervention.
Programmable apps on the RAN Intelligent Controller for dynamic spectrum sharing, QoS and energy optimization.
AI allocates dedicated network slices per vertical in real time, based on traffic patterns and SLA requirements.
Dynamic power management across all spectrum bands (FR1+FR2+FR3) cuts operational cost based on live traffic load.
Technology
X Spaces holds a proprietary stack spanning radio systems, AI networking and spectrum management, developed over years of engineering and research investment.
Flexible radio hardware configurable across 5G and 6G bands, adapting without hardware replacement as spectrum evolves.
Machine learning focuses antenna signal in real time, improving coverage and reducing interference across the network.
4G, 5G and 6G services share the same airwaves intelligently, protecting existing investments while enabling new deployments.
A real-time AI controller makes thousands of radio decisions per second to maintain optimal network performance.
Multi-hop mesh networking keeps links alive even when primary paths fail. Critical for public safety and defense.
Direct wireless communication between vehicles, drones and infrastructure, the backbone of autonomous transport.
Why X Spaces
AI-native infrastructure that delivers measurable advantage across three dimensions, for every enterprise customer.
Industries
Deploying AI-native networks for critical sectors from one 5G/6G AI RAN stack, where connectivity failure carries real consequences.
Ultra-low-latency data delivery for HFT, risk management and real-time analytics across the 270+ financial institutions in the NYC metro, with sub-ms SLAs standard cloud providers cannot match.
Distributed Open RU systems with massive MIMO connect vehicles with the low-latency, high-density data links required for Level 4+ autonomy and coordinated traffic management.
Carrier-grade SDR platform for drone-swarm coordination and DoD applications across FR1, FR2 and FR3. Multi-spectrum dynamic sharing enables simultaneous military and civilian operations.
Ambient IoT connectivity for energy grids, water management and smart-city infrastructure, with low-complexity devices and flexible RAN architecture and battery-less operation.
Private 5G networks for warehouses, factories and ports, connecting robots and control systems with industrial-grade reliability.
Secure campus connectivity for connected medical devices, remote patient monitoring and high-bandwidth telemedicine delivery.
Intellectual Property
X Spaces holds 120+ US PTO patents covering the full technology stack, from fronthaul transport to AI-integrated baseband processing. These are the architectural blueprints for the next generation of network infrastructure.
Patents covering Neural O-RU and Neural O-DU designs, with AI-native processing at the PHY layer.
FR1+FR2+FR3 dynamic spectrum sharing and interference-mitigation methods.
Cost-effective FH transport design for Open RU aggregation and multi-hop mesh networks.
xApp / dApp frameworks for real-time RAN intelligent control and network slicing.
Research & Standards
X Spaces works alongside universities, government agencies and standards bodies to help define next-generation wireless.
Recipient of an NTIA spectrum award: federal funding backing X Spaces' 6G research and NYC testbed deployment.
Contributing to the international standard that will define 6G, aligning X Spaces technology with the global wireless roadmap while influencing its direction.
A live experimental 6G network operating across New York City, generating real-world propagation data to advance design in dense urban environments.
Active contributor to the global body defining open, interoperable wireless standards adopted by carriers worldwide.
Academic & Industry Partners
6G joint research program · NYC campus collaboration
Institute for the Wireless Internet of Things · 5G/6G
National Telecommunications & Information Administration
WG2 · WG4 · WG6 contributions to open RAN standards
Let's Talk
Data center space, private 5G deployment, or a 6G research partner: X Spaces is ready to work with you.