Electronic Warfare  ·  Advanced Systems  ·  Mission Dominance
CONTROL THE SPECTRUM.
DOMINATE THE BATTLESPACE.

Advanced EW drones and metasurface technology engineered
for next-generation spectrum dominance.

8 Drone Platforms
10x Cost Advantage
360° Beamforming
AI Cognitive EW
Strategic Doctrine

Spectrum Superiority
Is Modern Air Superiority.

HollowPhase is building the next generation of electronic warfare drones to monopolize the battlespace. By combining advanced metasurface antenna technology with cognitive AI, our systems deliver jamming, deception, and spectrum control capabilities at a fraction of the cost of legacy solutions — enabling mass deployment where it was never before possible. The adversary cannot fight what they cannot detect, track, or communicate.

Gauss EW Drone
Flagship Platform

Control the
Electromagnetic Spectrum

Gauss is HollowPhase's flagship electronic warfare drone — an AI-driven platform that autonomously jams adversary communications, radars, and guidance systems. Built on metasurface antenna technology co-developed with Duke University's Center for Metamaterials, Gauss achieves advanced EW effects at a cost in the thousands, where legacy systems cost hundreds of thousands to millions.

Communications Jamming
Metasurface Antenna Suite
Cognitive EW & AI Adaptation
Radar Denial
GPS Resilience & Assured Navigation
Electromagnetic Stealth (RAM)
Additive Manufacturing — Rapid Scale
View Gauss →
Core Capabilities

Engineered. Manufactured. Deployed.

Electronic Warfare
Autonomous jamming and spectrum denial across communications, radar, and navigation frequencies.
Metasurface Antenna
Advanced beamforming and adaptive radiation patterns enabling laser-precise electromagnetic effects.
Modern Warfare
Designed for the contested electromagnetic battlespace — countering adversary drones, radars, and guided munitions.
Modular Design
Open architecture enabling rapid integration of new EW payloads, sensors, and customer-defined capabilities.
Additive Manufacturing
3D-printed airframes with embedded RAM material enable rapid production scaling and stealth tunability.
Scalable Solutions
Low unit cost enables mass deployment — one Gauss costs what a legacy EW solution charges per hour of operation.
Printing metasurface antenna panel
Metasurface Technology

One Antenna.
Endless Possibilities.

Developed in partnership with Duke University's Center for Metamaterials and Integrated Plasmonics under Director Dr. David Smith, HollowPhase's metasurface antenna suite achieves advanced beamforming effects at a fraction of the cost and size of conventional antenna systems.

Lightweight & Ultra-Low SWaP
Adaptive Beamforming
Low-Cost Scalability
AI-Assisted EW
CRPA Assured Navigation
10x Cost Reduction vs.
Legacy EW
80% Lighter Than
Conventional Arrays
±1° Beam Pointing
Precision
Explore Technology →
Systems Portfolio

A Fleet for Every Mission.

Gauss
Electronic Warfare
Active Development
Volta
EW Variant
In Design
Galvani
Strike Platform
Planned
Maxwell
ISR Sensor
Planned
Oersted
Endurance
Planned
Faraday
Close-In EW
Planned
Coulomb
Multi-Mission
Planned
Ampere
Interceptor
Planned
3D printing Gauss airframe
Production

Built at the Speed
of the Mission.

Every Gauss airframe is additively manufactured using lightweight, high-strength materials. Our 3D-printed process embeds radar absorbent material (RAM) directly into the chassis — enabling tunable stealth properties with every production run. This manufacturing approach allows HollowPhase to scale rapidly from prototype to fleet without traditional tooling lead times.

Material
Composite + RAM Filament
Stealth
Tunable RCS Reduction
Lead Time
Days, Not Months
Scalability
Rapid Fleet Production
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Our Mission

Mission First.
Allied Always.

HollowPhase exists to ensure that the United States and its allies maintain dominance of the electromagnetic spectrum in any future conflict. We build autonomous systems that are faster, smarter, and more affordable than anything the adversary can field — and we do it alongside the warfighters who depend on them.

Ethan Hoben  //  CEO & Chief Engineer
Chandler Kramer  //  Chief Software Engineer
Sean Mitchell  //  Chief Autonomy Engineer
Kevin McCafferty  //  Chief DevOps Engineer
Dr. David Smith  //  Duke CMIP Partner
Trusted by Those Who Defend
U.S. Army
U.S. Air Force
DARPA
DoD
Duke CMIP
Secure Contact

Ready to Dominate
the Spectrum?

Government, defense, and allied inquiries welcome. Fill out the form below and our team will respond within 48 hours.

// TRANSMISSION RECEIVED — Our team will contact you within 48 hours.