UAV & Drones
PowerLight and Kraus Hamdani Develop Laser-Charged Drones for Infinite Flight
PowerLight Technologies and Kraus Hamdani Aerospace advance laser power beaming to wirelessly charge drones, targeting indefinite flight endurance by 2026.

This article is based on an official press release from PowerLight Technologies.
PowerLight Technologies and Kraus Hamdani Target “Infinite Flight” with Laser-Charged Drones
In a significant development for unmanned aerial systems (UAS), PowerLight Technologies announced on December 16, 2025, that it has successfully completed subsystem testing for a new laser power beaming system. Developed under the PTROL-UAS (Power TRansmitted Over Laser to UAS) program and sponsored by United States Central Command (CENTCOM), the technology is designed to wirelessly charge drones while they remain airborne.
According to the company’s announcement, the system is now transitioning from component development to full system integration. The next phase involves flight testing scheduled for early 2026, utilizing the Kraus Hamdani Aerospace K1000ULE (Ultra Long Endurance) drone as the primary test platform. The ultimate goal of the collaboration is to achieve “infinite flight” capabilities, effectively removing the endurance limitations imposed by traditional onboard battery capacity.
Wireless Power at Altitude
The core of the announcement centers on PowerLight’s proprietary power beaming technology, which functions as a “wireless power line” through the air. The system comprises two primary hardware elements, a ground-based transmitter and an airborne receiver.
The press release details that the ground transmitter is a mobile, autonomous unit capable of delivering kilowatt-class power over distances spanning kilometers. It utilizes active optical tracking to maintain a precise lock on the moving drone. To ensure safety in mixed-use airspace, the system features a multi-layer safety architecture that instantly shuts off the beam if the lock is lost or an obstruction is detected. The company states that the technology has been validated for transmission to altitudes up to 5,000 feet.
On the receiving end, the drone is equipped with a lightweight module weighing approximately six pounds. This receiver utilizes specialized laser power converters to transform the invisible laser light back into electricity, recharging the drone’s batteries during flight. Additionally, the system includes an embedded control module that handles real-time telemetry and a bi-directional optical data link.
“This is much more than point-to-point power transfer… We are building an intelligent mesh energy network capability. Our transmitter communicates with the UAS, tracks its velocity and vector, and delivers energy exactly where it’s needed.”
, Tom Nugent, CTO of PowerLight Technologies
The K1000ULE Integration
To demonstrate the system’s viability, PowerLight has partnered with Kraus Hamdani Aerospace. The K1000ULE is a fully autonomous, solar-electric UAS already utilized by the US Navy and Army for Intelligence, Surveillance, and Reconnaissance (ISR) missions. While the K1000ULE already boasts significant endurance, capable of flying for over 24 hours continuously on solar and battery power, the addition of laser charging aims to extend this indefinitely.
Fatema Hamdani, CEO of Kraus Hamdani Aerospace, emphasized the strategic advantage of this integration in the company statement:
“A platform that doesn’t need to land to refuel or recharge is one that never blinks. Integrating PowerLight’s laser power beaming adds a new level of persistence, reshaping the operational reality of theater-wide missions.”
Strategic Implications and Future Testing
The “battery problem” remains a primary logistical hurdle for electric military drones, which typically require frequent landings to swap batteries or recharge. This creates coverage gaps in surveillance and increases the logistical footprint required to support drone operations. By enabling mid-air recharging, the PTROL-UAS program aims to close these gaps, allowing for persistent “eyes in the sky” and continuous communication relays in contested environments.
AirPro News Analysis
While high-energy lasers in defense are frequently associated with counter-UAS (C-UAS) weapons designed to destroy targets, PowerLight’s application represents a distinct divergence in directed energy strategy. Rather than delivering destructive heat, these systems must deliver stable, continuous energy transfer without damaging the receiving airframe. If successful, this technology could fundamentally alter military logistics. By reducing the need for forward-deployed fuel and battery stockpiles, commanders could maintain persistent aerial coverage with a significantly smaller logistical tail. Furthermore, the concept aligns with broader defense initiatives like DARPA’s POWER program, which envisions a high-altitude “energy web” where aircraft beam power to one another, effectively turning drones into flying energy relays.
Next Steps
Following the successful subsystem testing reported in December 2025, the program is moving immediately into the integration phase. PowerLight Technologies has confirmed that fully integrated flight testing is slated to begin in early 2026. These tests will attempt to demonstrate the system’s ability to keep a K1000ULE airborne and charged solely via the ground-based laser transmitter, validating the concept of indefinite endurance.
Sources
Photo Credit: PowerLight Technologies
UAV & Drones
Sikorsky Nomad 100 Completes Initial Flight Tests for DARPA
Sikorsky’s Nomad 100 UAS finishes initial testing under DARPA’s EVADE program, advancing toward multirole mission replication.

Sikorsky has concluded the initial ground and flight testing phase for its Nomad 100 uncrewed aerial system, advancing the platform toward multirole mission replication for the Defense Advanced Research Projects Agency (DARPA). The Lockheed Martin subsidiary announced the milestone on July 22, 2026, during the Farnborough International Airshow in the United Kingdom.
In a press release issued by Lockheed Martin, the company confirmed the testing supports the Early VTOL Aircraft Demonstration (EVADE) program managed by DARPA. The Nomad 100 represents Sikorsky’s entry into the uncrewed aerial system (UAS) market, utilizing a rotor blown wing architecture designed to combine the vertical lift capabilities of a Helicopters with the speed and endurance of a fixed-wing Military-Aircraft.
Technical specifications and EVADE program integration
The Nomad 100 is classified as a Group 3 UAS and features an 18-foot wingspan. The aircraft is engineered for runway-independent operations, allowing it to deploy from austere forward operating bases, unimproved landing zones, and ship decks. The platform is intended to operate in contested environments, specifically focusing on crewed-uncrewed teaming capabilities.
Under the EVADE program, the Nomad 100 is one of five platforms slated to integrate the MATRIX autonomy suite developed by Sikorsky. Following the completion of these initial tests, Sikorsky plans to transition the aircraft to a government facility for an intensive flight test campaign aimed at replicating complex multirole missions.
Expanding the MATRIX autonomy ecosystem
The advancement of the Nomad 100 follows broader efforts by Sikorsky to deploy its autonomous flight technology across multiple aircraft types. On July 20, 2026, the Manufacturers announced an agreement to integrate the MATRIX autonomy suite into the ALIA MV250 hybrid-vertical-take-off-and-landing (hVTOL) aircraft produced by BETA Technologies.
Sikorsky Vice President and General Manager Rich Benton stated that the ongoing flight testing of the Nomad 100 reflects the commitment of the company to advancing autonomous technology to fill operational gaps.
“Nomad will serve as part of a crewed-uncrewed team complementing missions anywhere from austere forward operating bases to ship decks and unimproved landing zones,” Benton said in the company statement.
AirPro News analysis
We view Sikorsky’s dual announcements at Farnborough as a clear indicator of the company’s strategy to decouple its MATRIX autonomy software from its proprietary hardware. By simultaneously advancing its own Nomad 100 platform for DARPA and integrating MATRIX into third-party aircraft like the BETA ALIA MV250, Sikorsky is positioning its autonomy suite as a universal operating system for next-generation vertical lift. The focus on runway independence and crewed-uncrewed teaming aligns directly with current United States Department of Defense procurement priorities for contested logistics.
Sources: Lockheed Martin (July 22, 2026)
Photo Credit: Lockheed Martin
UAV & Drones
Archer Aviation and Anduril Unveil Dual-Use VTOL Platform
Archer Aviation and Anduril Industries debut Halo and Thunder autonomous VTOL variants at Farnborough Airshow, targeting 2027 first flight.

Archer Aviation and Anduril Industries have jointly unveiled a new dual-use autonomous vertical takeoff and landing (eVTOL) aircraft platform at the Farnborough International Airshow, marking Archer’s strategic expansion beyond passenger air taxis into heavy-payload unpiloted logistics.
In a press release issued on July 22, 2026, Archer announced the commercial variant of the platform, named “Halo,” alongside strategic launch partner Marubeni Aerospace Corporation. This followed the July 20, 2026, debut of the defense variant, “Thunder,” by defense technology company Anduril Industries. The clean-sheet aircraft leverages eight years of electric vertical takeoff and landing (eVTOL) technology developed for Archer’s Midnight passenger aircraft, adapted specifically for unpiloted cargo, emergency, and military missions.
Engineering and performance specifications
The new platform utilizes a series hybrid-electric powertrain and dual optimum-speed tiltrotors to achieve runway-independent operations. Classified as a Group 5 autonomous aircraft, the design prioritizes heavy payload capacity, extended range, and rapid deployment capabilities. The aircraft is designed to be transported in standard shipping containers, facilitating global logistics and military forward-deployment.
According to reporting by The Air Current, Anduril executives shaped the aircraft’s parameters to carry a payload comparable to an Apache helicopter while maintaining the speed and range of a Bell MV-75 Cheyenne II. The joint venture is targeting 2027 for the first flight of the prototype.
Shane Arnott, Senior Vice President of Maneuver Dominance at Anduril Industries, highlighted the engineering strategy in an interview with Aerospace Global News. Arnott stated that harnessing commercial eVTOL technologies for defense applications is central to how the Thunder variant will deliver operational value, describing the platform as a step change in capability.
Commercial applications and the Marubeni partnership
For the commercial market, Archer’s Halo variant targets logistics and Cargo-Aircraft operations that currently rely on piloted aircraft. Marubeni Aerospace Corporation, a subsidiary of Marubeni Corporation, has signed on as the strategic launch partner to introduce the Halo platform to commercial operators.
“Currently, even in cargo transport operations that do not require onboard crew, flights are conducted with human pilots, absorbing the cost, scheduling constraints and human exposure that come with it,” said Satoru Nakagawa, President and CEO of Marubeni Aerospace Corporation. “Halo’s unmanned, autonomous flight capabilities can address these challenges.”
Archer Founder and CEO Adam Goldstein emphasized the platform’s distinct capabilities compared to the company’s existing passenger models. In the company’s release, Goldstein noted that the partnership with Anduril allowed Archer to build a clean-sheet aircraft in a completely different class of range, speed, and payload, calling it the most sophisticated vertical lift platform ever developed.
AirPro News analysis
We view the introduction of the Halo and Thunder platforms as a critical pivot for Archer Aviation. By diversifying its product line beyond the Midnight passenger eVTOL, Archer is insulating itself against the regulatory and infrastructure delays inherent in launching urban air mobility networks. The Partnerships with Anduril also opens access to lucrative defense contracts, particularly in the wake of the U.S. Army’s cancellation of the Future Attack and Reconnaissance Aircraft (FARA) program in early 2024. If the joint venture can meet its target of a 2027 First-Flight, the platform could capture significant market share in both military logistics and commercial heavy-lift cargo sectors.
Sources: Archer Aviation
Photo Credit: Archer Aviation
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
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