UAV & Drones
MatrixSpace Launches Fusion 360 Multi-Sensor Portable Airspace Defense
MatrixSpace introduces Fusion 360, a multi-sensor C-UAS system integrating radar, RF, and optical sensors for commercial airspace security.

This article is based on an official press release from MatrixSpace and additional industry data.
MatrixSpace Unveils Fusion 360: A Multi-Sensor Approach to Portable Airspace Defense
On February 12, 2026, Burlington, Massachusetts-based MatrixSpace announced the launch of MatrixSpace Fusion 360, a new counter-unmanned aircraft system (C-UAS) designed to bring military-grade airspace awareness to commercial and public safety markets. The system integrates Radar-Systems, optical, and Radio Frequency (RF) sensors into a single, AI-native platform, aiming to solve the persistent issue of false alarms and “dark drone” detection in civilian environments.
According to the company’s announcement, the Fusion 360 system is engineered to address the logistical and financial barriers that have historically prevented stadiums, critical infrastructure, and local law enforcement from deploying advanced airspace security. By processing data at the “edge”, on the device itself rather than in a cloud server, MatrixSpace claims the system can deliver verified threat assessments rapidly, without the bandwidth dependencies of traditional systems.
Moving Beyond Single-Sensor Limitations
The core technological shift introduced with Fusion 360 is its “fusion-native” architecture. Traditional low-cost C-UAS solutions often rely on a single sensor type, such as RF detection, which can be ineffective against autonomous Drones that do not transmit signals. Conversely, standalone radar systems can struggle with false positives, mistaking birds for drones.
MatrixSpace states that Fusion 360 correlates data from three distinct sources to verify targets:
- 4D Imaging Radar: Detects physical movement, range, altitude, and velocity in various weather conditions.
- RF and Remote ID Sensors: Decodes signals from compliant drones and detects pilot emissions.
- Optical Verification: Automatically cues cameras to the radar track for visual confirmation.
Addressing the “Dark Drone” Threat
A significant capability highlighted in the release is the system’s ability to detect “dark drones”, unmanned aircraft that do not broadcast Remote ID or RF signals. By utilizing a radar-first architecture, the system tracks the physical object regardless of its electronic emissions. Once a track is established, the system’s AI cues a Pan-Tilt-Zoom (PTZ) camera to provide visual confirmation, allowing operators to distinguish between actual threats and benign objects.
Technical Specifications and Portability
The system is designed for low Size, Weight, Power, and Cost (SWaP-C), a critical requirement for temporary events and mobile security units. According to technical details released regarding the component specifications, the radar unit is approximately the size of a large smartphone (8.7cm x 14.1cm) and weighs roughly 0.45 kg.
In terms of performance, the system offers the following detection ranges:
- Small Drones (e.g., DJI Phantom 4): Detection at approximately 1 km, with tracking at 750 meters.
- General Aviation: Detection up to 2.5 km.
The platform runs on the MatrixSpace AiEdge software layer, which allows for local data processing. This capability ensures that the system remains operational even if connectivity to a central command center is severed, a vital feature for emergency response scenarios.
AirPro News Analysis
The launch of Fusion 360 represents a broader trend in the 2026 counter-drone market: the democratization of “layered” defense. Historically, fusing radar, RF, and optical data required complex integration of disparate systems from different vendors, often at a price point only accessible to national defense agencies.
By packaging these three layers into a portable, cohesive unit, MatrixSpace is directly challenging established players like Dedrone and Echodyne. While competitors often rely on integrating third-party hardware, MatrixSpace’s strategy of building both the radar hardware and the AI software allows for tighter integration and potentially lower costs. This move aligns with the increasing regulatory pressure on facility managers to monitor airspace following the FAA’s 2026 integration roadmap.
Company Background and Market Position
Founded in 2019, MatrixSpace is led by CEO Greg Waters, formerly of Integrated Device Technology and Skyworks Solutions. The company has raised approximately $62.3 million to date, including a Series B round completed in late 2025. The company has previously secured wins in the U.S. Army’s xTechCounter Strike competition, signaling that while its focus is shifting toward commercial accessibility, its underlying technology retains military validation.
The Fusion 360 launch positions the company to capture the “middle market” of airspace security, users who need more than a simple RF scanner but cannot afford heavy, fixed-site military installations.
Sources
Photo Credit: MatrixSpace
UAV & Drones
Mach Industries Wins DIU Contract for RIMES Maritime UAS
Mach Industries awarded a DIU contract to develop the Atlas hybrid-electric UAS for long-range Navy strike missions.

Mach Industries has secured a Defense Innovation Unit (DIU) contract to develop a hybrid-electric unmanned aerial system (UAS) capable of launching 1,000-pound payloads over 1,400 nautical miles from United States Navy vessels lacking traditional flight decks.
Announced in a June 16, 2026, press release, the award positions Mach Industries as the aircraft integrator for the Runway Independent Maritime Expeditionary Strike (RIMES) program. The company is partnering with propulsion developer Whisper Aero to deliver the new aircraft, designated as Atlas. The DIU initially published the RIMES solicitation in February 2026 to address the Navy’s need for long-range strike capabilities from expeditionary locations and smaller surface combatants.
Atlas UAS and JetFoil propulsion specifications
The Atlas UAS utilizes a hybrid-electric design intended to operate from unimproved rotary-wing landing zones while maintaining the control simplicity of a fixed-wing aircraft. According to Mach Industries, the platform requires less than half the thrust-to-weight ratio typically needed for vertical flight.
Whisper Aero is supplying its JetFoil propulsion system for the Atlas. The manufacturer states the JetFoil enables 90 degrees of flow turning at 95 percent efficiency, generating a lift coefficient of 40 at 15 knots.
“We developed JetFoil to propel the next generation of conventional, short, and vertical takeoff and landing aircraft silently and efficiently,” said Mark Moore, Chief Executive Officer of Whisper Aero. “With JetFoil, Atlas can effectively meet the needs of the RIMES mission to operate even from Destroyer class vessels.”
Mach Industries President and Chief Strategy Officer Nathan Diller noted the platform is designed to deliver improvements in mission lethality, logistics footprint, acoustic signature, system safety, and energy efficiency.
Expanding distributed maritime lethality
The RIMES program targets a specific operational gap for the Department of the Navy. The military branch requires systems that can execute long-range strikes using standard munitions without relying on aircraft carriers or land-based runways.
Target vessels for the Atlas system include Arleigh Burke-class destroyers, Littoral Combat Ships, and future FF(X) frigates. Reporting from Breaking Defense indicates this initiative is designed to counter anti-ship weapons in contested environments by distributing heavy munition launch capabilities across a wider array of smaller ships.
DIU Director Owen West emphasized the economic and tactical drivers behind the program.
“We are determined to dramatically lower our cost-per kill, while reducing our risk to force, replacing warfighters with economical fires and robots,” West stated.
The exact financial value of the DIU contract awarded to Mach Industries was not disclosed in the announcement.
AirPro News analysis
We view the RIMES contract award as a clear indicator of the U.S. Navy’s commitment to distributed maritime operations. By enabling destroyers and frigates to launch 1,000-pound payloads over 1,400 nautical miles, the Navy can significantly complicate adversary targeting. The choice of a hybrid-electric platform is particularly notable. While traditional solid-rocket or turbojet boosters are standard for maritime strike missiles, the Atlas UAS approach suggests a prioritization of acoustic stealth and fuel logistics. If Whisper Aero’s JetFoil system meets its stated efficiency metrics in operational testing, it could validate a new propulsion paradigm for heavy-payload expeditionary drones.
Sources: Mach Industries (via PR Newswire)
Photo Credit: Mach Industries
UAV & Drones
Vigilant Aerospace Completes FlightHorizon PILOT DAA Flight Tests
Vigilant Aerospace tests FlightHorizon PILOT onboard detect-and-avoid system for drones ahead of FAA Part 108 BVLOS rulemaking.

Vigilant Aerospace Systems has completed a series of flight tests and demonstrations for its FlightHorizon PILOT system, an onboard detect-and-avoid (DAA) technology designed for uncrewed aircraft systems (UAS). The June 19, 2026, announcement details a technical milestone for the integration of autonomous drones into national airspace.
The tests, conducted at Oklahoma State University’s Uncrewed Aircraft Flight Station, demonstrated the system’s ability to track aircraft and calculate avoidance maneuvers using a low-power onboard computer. In a press release issued by the company, Vigilant Aerospace positioned the technology as a critical enabler for Beyond Visual Line of Sight (BVLOS) operations ahead of the FAA’s anticipated Part 108 flight rules.
System architecture and testing parameters
The recent flight tests evaluated two distinct versions of the technology. FlightHorizon PILOT-C is designed for cooperative airspace, utilizing transponders and digital radio receivers to track nearby traffic. FlightHorizon PILOT-M targets non-cooperative airspace by integrating additional sensors, including onboard radar, to detect aircraft lacking active transponders.
The core software is based on two licensed patents from the National Aeronautics and Space Administration (NASA). During the demonstrations, the system successfully processed sensor data through a single-board computer to execute avoidance maneuvers.
“These most recent flight test milestones provide a path to enabling the industry to execute safe beyond visual line-of-sight flight for both small and large UAS, with fully onboard safety systems,” said Kraettli L. Epperson, CEO of Vigilant Aerospace Systems.
Development pathway and regulatory alignment
The FlightHorizon PILOT system originated as a military project. Vigilant Aerospace initially developed the technology for the United States Air Force (USAF) under a Small Business Innovation Research (SBIR) contract. The transition to a civilian application received financial support through an Industry Innovation Program grant from the Oklahoma Center for the Advancement of Science and Technology (OCAST).
The commercialization of onboard DAA systems aligns with shifting regulatory frameworks. The FAA is currently drafting the Part 108 rule, which will establish standardized regulations for BVLOS drone operations in the US. Equipment capable of autonomous collision avoidance is expected to be a foundational requirement for operators seeking certification under the new framework.
AirPro News analysis
The successful demonstration of a low-footprint DAA system addresses one of the most persistent technical bottlenecks in the commercial drone sector. While ground-based radar and observer networks have facilitated early BVLOS waivers, scaling commercial operations requires the aircraft to carry its own separation assurance technology. If the FAA’s upcoming Part 108 rule mandates onboard DAA for specific operational risk categories, systems like FlightHorizon PILOT will transition from experimental capabilities to mandatory compliance equipment. We expect the market for lightweight, multi-sensor DAA suites to accelerate rapidly as the rulemaking process concludes.
Sources: Vigilant Aerospace Systems
Photo Credit: Vigilant Aerospace Systems
UAV & Drones
ERC System Unveils Victor U250 Hybrid-Electric Cargo Drone
ERC System launched the Victor U250 cargo drone at ILA Berlin 2026, targeting 250 kg payload and military logistics gaps.

Munich-based advanced air mobility startup ERC System unveiled the Victor U250, a hybrid-electric heavy-lift cargo drone, at the ILA Berlin Air Show on June 10, 2026. Concurrently, the company signed a Memorandum of Understanding with defense contractor Rheinmetall and the German State of North Rhine-Westphalia to establish a dedicated production facility for the uncrewed aircraft.
In a press release issued by ERC System, the company detailed that the aircraft is designed to bridge a critical logistics gap for military and disaster-response operators. The platform targets the payload space between small uncrewed aerial vehicles and conventional heavy-lift helicopters, utilizing a hybrid-electric propulsion system that combines infrastructure-independent vertical takeoff capabilities with the speed and range of fixed-wing flight.
Technical specifications and capabilities
The Victor U250, along with its military variant designated the U250-M, is designed with a lift-and-cruise architecture. Key specifications released by the manufacturer include:
- Payload capacity: 250 kilograms (551 pounds)
- Flight range: 300 kilometers (186 miles)
- Cruise speed: 250 kilometers per hour (155 miles per hour)
Reporting by Aviation Week indicates the drone has a wingspan of approximately 8 meters (26 feet) and is sized to fit inside a standard 20-foot ISO shipping container for rapid transportability. The cargo bay accommodates two ISO-standard pallets and features front-loading access with aerial drop capabilities.
ERC System Chief Commercial Officer Maximilian Oligschläger outlined the market rationale to Aviation Week:
“Militaries have identified a gap. There are a lot of drones that can carry 20 kg, and above 500 kg there are helicopters, but there are very few products that can carry 150-300 kg vertically.”
Production scaling and Rheinmetall partnership
To support the industrialization of the Victor platform, ERC System secured a strategic partnership with Rheinmetall. The Memorandum of Understanding, signed alongside representatives from North Rhine-Westphalia, outlines plans to build a manufacturing facility in the region.
In a statement released by Rheinmetall, CEO Armin Papperger noted the agreement lays the foundation for scaling the Victor U250 technologically and industrially within Germany. The planned facility is expected to create a three-digit number of jobs by 2029. Aviation Week reported that the partners aim to scale production to approximately 250 aircraft annually by 2032.
Certification pathway and flight testing
ERC System plans to begin flight testing the first Victor prototype in the third quarter of 2026, with initial deliveries targeted for 2028. The program builds on data gathered from the company’s Romeo flight demonstrator.
According to AIN, the Romeo prototype weighs approximately 2.7 tonnes, making it the heaviest uncrewed electric vertical takeoff and landing (eVTOL) aircraft currently flying in the European Union. The demonstrator has been operating under the Specific Operations Risk Assessment (SORA) SAIL III stage established by the European Union Aviation Safety Agency (EASA). ERC System expects additional Victor aircraft to join the flight test program in 2027 to support further EASA SORA approvals, having already applied for a Design Verification Report under the SAIL IV stage.
AirPro News analysis
The launch of the Victor U250 highlights a distinct pivot within the European advanced air mobility sector toward dual-use and defense applications. As capital markets for commercial passenger eVTOLs tighten, startups are finding immediate traction by addressing the tactical logistics requirements of European militaries. By partnering with an established defense prime like Rheinmetall, ERC System mitigates the manufacturing scale-up risks that have historically bottlenecked aerospace startups. This industrial backing positions the Victor U250 as a viable near-term procurement option rather than a distant conceptual project.
Sources: ERC System
Photo Credit: ERC System
-
Aircraft Orders & Deliveries2 days agoPhilippine Airlines Orders Up to 20 Boeing 787-10 Dreamliners
-
Aircraft Orders & Deliveries2 days agoAerCap Orders 15 Boeing 787-9 Dreamliners at Farnborough 2026
-
Aircraft Orders & Deliveries1 day agoRiyadh Air Orders 31 A350-1000s and 67 Boeing 787s
-
Commercial Aviation2 days agoIndiGo Signs Record 1000 LEAP-1A Engine MoU with CFM
-
Aircraft Orders & Deliveries2 days agoSMBC Aviation Capital Orders 100 Boeing 737 MAX at Farnborough
