Technology & Innovation
NRG2fly Delivers First Megawatt Aircraft Charger to Væridion in Munich
NRG2fly installs first Megawatt Charging System at Væridion’s Munich facility, supporting fast charging for electric aircraft and regional flight decarbonization.

This article is based on an official press release from NRG2fly.
NRG2fly Delivers First Megawatt Aircraft Charger to Væridion’s Munich Facility
In March 2026, Dutch electric aviation infrastructure startup NRG2fly achieved a major operational milestone by delivering its first Megawatt Charging System (MCS) demonstrator to German electric aircraft developer Væridion. According to an official press release from NRG2fly, the prototype charger has been successfully installed at Væridion’s newly inaugurated production and test hangar at Oberpfaffenhofen Airport (EDMO) near Munich, Bavaria.
This delivery represents the first physical, working node in NRG2fly’s planned pan-European charging network for electric aviation. By providing the high-voltage infrastructure necessary to achieve sub-30-minute charging times, the partnership aims to prove the economic viability of regional electric flights and support broader European goals to decarbonize short-haul travel.
Advancing the Megawatt Charging System (MCS)
The aviation industry has long grappled with a lack of universal charging standards, which threatens to fragment the rollout of Electric-Aviation. While the Combined Charging System (CCS) is currently utilized for smaller electric planes, the Megawatt Charging System (MCS), a standard originally developed for heavy-duty electric trucks, is now being adapted to handle the massive power requirements of larger passenger aircraft.
According to the company release, NRG2fly is spearheading efforts to establish industry-wide charging standards and interoperability through its “Project Eurocharge.” Founded in 2022 by Maarten Steinbuch, Jurjen de Jong, and Jeroen Kroonen, the Dutch Startups secured undisclosed venture funding in mid-2025 to expand its network across European airports. The deployment of this MCS demonstrator highlights a critical industry push toward standardized, high-power infrastructure.
The Push for Sub-30-Minute Turnarounds
In commercial aviation, fast turnaround times are essential to profitability. Shrinking the charging window to under 30 minutes allows electric aircraft to maintain tight flight schedules. NRG2fly notes that this rapid turnaround capability is what will ultimately make electric aircraft economically competitive with traditional fossil-fuel alternatives, offering a zero-emission solution that can seamlessly integrate into existing regional airline operations.
Væridion’s Microliner Enters Industrialization Phase
Væridion, founded in 2021 by former Airbus and ZF engineers Ivor van Dartel and Sebastian Seemann, is the developer behind the Microliner. Company specifications describe the Microliner as a 9-passenger, fully battery-electric regional aircraft designed for short-haul routes of up to 400 to 500 kilometers. The aircraft features wing-integrated modular batteries and a multi-engine, single-propeller propulsion system.
On March 13, 2026, Væridion officially opened its first production hangar and test facility at Oberpfaffenhofen. The NRG2fly press release indicates that this facility marks Væridion’s transition from research and development to the industrialization and production phase. The new site includes infrastructure tailored for high-voltage battery testing and a dedicated electric propulsion test rig.
Strategic Growth and Asset Acquisitions
Væridion has maintained an aggressive development timeline, aiming to conduct prototype flights by 2027 and achieve type certification and commercial operations by 2030. In late 2024, the manufacturer reached a significant regulatory milestone, becoming the first general aviation manufacturer to secure a Pre-Application Contract (PAC) with the European Union Aviation Safety Agency (EASA).
Financial and operational momentum has also accelerated over the past two years. Væridion raised €14 million in a Series A funding round in December 2024, led by climate tech VC World Fund. Furthermore, in late 2025, Væridion acquired a specialized testing facility and advanced manufacturing equipment, including precision laser welding tools, from the insolvent eVTOL developer Lilium, bolstering its manufacturing capabilities at the Oberpfaffenhofen site.
AirPro News analysis
We view the physical deployment of megawatt-class charging hardware as a vital de-risking event for the electric regional air mobility sector. While novel aircraft designs often dominate industry headlines, the absence of standardized, high-throughput ground infrastructure remains a primary bottleneck for commercialization. By adapting the MCS standard from the heavy-duty trucking industry, NRG2fly and Væridion are bypassing the need to invent a bespoke aviation charging standard from scratch.
Furthermore, Væridion’s strategic acquisition of Lilium’s manufacturing assets in late 2025 suggests a highly pragmatic approach to scaling production capabilities while managing capital expenditures. If the sub-30-minute charging target is consistently met during the upcoming 2027 prototype flight tests, it will provide a compelling economic argument for regional operators looking to decarbonize short-haul routes without sacrificing fleet utilization rates.
Frequently Asked Questions
What is the Megawatt Charging System (MCS)?
The MCS is a high-power charging standard originally developed for heavy-duty electric trucks. It is now being adapted for electric aviation to deliver massive amounts of power quickly, enabling larger electric aircraft to fully charge in under 30 minutes.
When is the Væridion Microliner expected to fly?
According to the company’s stated timeline, Væridion aims to conduct initial prototype flights of the Microliner by 2027, with a target for full type certification and commercial operations by 2030.
Where is Væridion’s new facility located?
The new battery assembly plant and flight test hangar are located at Oberpfaffenhofen Airport (EDMO) in Bavaria, Germany, near Munich.
Sources: NRG2fly
Photo Credit: NRG2fly
Technology & Innovation
Hanwha Aerospace Ends $318M VX4 eVTOL Supply Deal
Hanwha Aerospace and Vertical Aerospace terminate 454.8 billion won VX4 supply contracts, signing an MOU for future collaboration.

This article summarizes reporting by Yonhap News Agency by Kim Boram.
South Korean supplier Hanwha Aerospace Co. and United Kingdom-based Vertical Aerospace Ltd. have mutually agreed to terminate component supply contracts for the VX4 electric vertical takeoff and landing (eVTOL) aircraft, ending a partnership originally valued at 454.8 billion won ($318 million).
The termination, signed on July 31, 2026, and announced in a regulatory filing on August 3, 2026, reflects broader timeline adjustments within the Advanced Air Mobility (AAM) sector. According to Yonhap News Agency, Vertical Aerospace initially targeted 2025 for the commercialization of its four-passenger VX4 air taxi. Industry-wide certification delays and shifting investment climates have since forced major aerospace suppliers to reassess their commitments.
Scope of the terminated VX4 agreements
The canceled agreements encompassed two major systems for the VX4. The initial contract, signed on August 23, 2022, covered the development and supply of Electric Motorized Actuators (EMA) and was valued at approximately 219.2 billion won. In October 2023, the partnership expanded with a 235.6 billion won contract for tilting and blade pitch systems.
BigGo Finance reported that the combined 454.8 billion won deal represented approximately 7.09 percent of Hanwha Aerospace’s consolidated revenue for the 2021 fiscal year. The original supply arrangement was scheduled to run through 2036, according to Maeil Business Newspaper (MK).
Despite the termination, the hardware had already reached the testing phase. Vertical Aerospace previously announced in July 2024 that its next-generation full-scale VX4 prototype, which commenced piloted flight testing, featured components supplied by Hanwha Aerospace.
Strategic realignment and future cooperation
The decision to end the supply contracts was driven by changing market realities rather than performance failures. A Hanwha Aerospace official told ChosunBiz that both companies had faithfully fulfilled their obligations. The official noted that the mutual termination was based on a strategic judgment, citing changes in market conditions and business direction compared to the original purpose of the partnership.
Speaking to MK, another company representative stated that Hanwha Aerospace is adjusting its Investments priorities based on a comprehensive review of market conditions and business viability.
The relationship between the two Manufacturers has not been entirely severed. On July 31, 2026, alongside the termination agreement, Hanwha Aerospace and Vertical Aerospace signed a new Memorandum of Understanding (MOU). MK reported that this MOU establishes a framework for potential future collaboration on development projects and mass-production supply once AAM market conditions stabilize.
AirPro News analysis
We view this contract termination as a pragmatic recalibration rather than a sudden collapse of confidence in Vertical Aerospace. The AAM sector is currently navigating a difficult transition phase characterized by prolonged regulatory certification paths and a tightening global investment environment. By converting a binding, capital-intensive supply contract into a flexible MOU, Hanwha Aerospace limits its near-term financial exposure while maintaining a foothold in the eVTOL market. For Vertical Aerospace, the dissolution of the 2036 supply timeline underscores the reality that initial commercialization targets, such as the original 2025 goal, were overly optimistic given the regulatory hurdles facing novel aircraft architectures.
Sources: Yonhap News Agency
Photo Credit: Vertical Aerospace
Technology & Innovation
Joby Aviation and Atoms Partner to Build US Vertiport Network
Joby Aviation and Atoms announced a vertiport partnership targeting four US states ahead of FAA eVTOL type certification.

Joby Aviation and infrastructure firm Atoms announced a strategic partnerships on August 4, 2026, to acquire and develop a network of vertiports across four initial U.S. states, signaling a shift in the electric air taxi industry’s focus from aircraft certification to ground infrastructure.
In a press release issued by Joby Aviation, the companies detailed plans to build multimodal transportation hubs in Florida, New York, Texas, and California. The facilities will integrate eVTOL aircraft operations with autonomous ground vehicles, ridesharing services, and on-site charging capabilities to support early commercial air taxi flights.
Infrastructure as the next aviation bottleneck
Atoms Real Estate, the infrastructure arm of the industrial AI company led by Travis Kalanick, will manage the complex, power-intensive deployments required for the vertiports. These hubs are designed to facilitate passenger connections, aircraft servicing, and last-mile ground transportation in dense urban environments.
“Smart cities require innovative real estate and infrastructure development,” said Travis Kalanick, Founder and CEO of Atoms. “As new transport modes and smart city services become available, designing and deploying a new asset class to support them is critical. We’re focused on serving city stakeholders with inspired, efficient buildouts that deliver great experiences for residents and communities alike.”
Joby Aviation Founder and CEO JoeBen Bevirt noted that thoughtful urban planning often takes a decade or more. He emphasized that making electric flight a daily reality requires a new generation of transportation hubs connecting aircraft, ground transport, and local communities.
Regulatory alignment and the eIPP
The vertiport expansion aligns with Joby’s preparations for early operations under the White House-backed eVTOL Integration Pilot Program (eIPP). On March 9, 2026, Joby announced its selection as a partner in multiple winning applications for the eIPP, which spans 10 U.S. states.
Established by Presidential Executive Order, the eIPP permits eVTOL manufacturers to introduce their technology to communities and conduct early operations prior to full Federal Aviation Administration (FAA) type certification. The program is designed to accelerate regulatory coordination among the FAA, the U.S. Department of Transportation (DOT), and local municipal authorities.
Joby has already flown its first FAA-conforming aircraft and is currently in the final stage of FAA type certification. The manufacturers has previously demonstrated its operational capabilities through piloted test flights in the San Francisco Bay Area and New York City.
AirPro News analysis
We view the Joby and Atoms partnership as a necessary evolution in the advanced air mobility sector. For years, the primary hurdle for eVTOL manufacturers has been navigating the FAA certification process. As companies like Joby approach the final stages of type certification, the lack of physical, power-intensive ground infrastructure has emerged as the most significant barrier to scaled commercial operations.
By partnering with a dedicated real estate and infrastructure firm, Joby is attempting to offload the capital-intensive and politically complex process of urban land acquisition and grid integration. The selection of Florida, New York, Texas, and California as initial target markets directly mirrors the regions with the highest anticipated demand for early air taxi services, though securing local zoning approvals in these dense urban environments will likely remain a formidable challenge.
Sources: Joby Aviation
Photo Credit: Joby Aviation
Technology & Innovation
NOEMI Aerospace Develops Amphibious Firefighting Aircraft Variant
NOEMI Aerospace targets a 4-tonne water payload and 2,800-ft scooping distance for its amphibious firefighting aircraft variant.

NOEMI Aerospace is developing a dedicated amphibious firefighting variant of its upcoming aircraft platform, aiming to deliver a 4-tonne water payload capability with significantly shorter scooping distances than legacy water bombers.
In an August 4, 2026 press release, the Norwegian manufacturers announced it is actively seeking government agencies and industrial partners to launch the firefighting program. Company leadership indicated this specialized variant could potentially reach the market before the baseline passenger aircraft.
Performance and payload specifications
The proposed firefighting aircraft is designed to carry approximately 4 tonnes of water or 3 tonnes of fire retardant. According to the company, the aircraft will offer a ferry range of 2,000 nautical miles and a maximum cruise speed of 190 knots, depending on the final propulsion configuration.
A key operational advantage of the NOEMI design is its required open water distance for scooping. Aviation International News reported the aircraft requires 2,800 feet of water to scoop a full load, compared to the 4,500 feet required by the widely used Canadair CL-415. This reduced distance allows operators to utilize smaller lakes and rivers closer to fire zones, increasing the frequency of water drops.
While the baseline passenger variant is designed around a fully electric aviation propulsion system, the firefighting variant will likely utilize a hybrid-electric or conventional fuel system to maximize payload.
“If you start to downsize that battery package and integrate a hybrid system, you really increase the useful load dramatically,” NOEMI Aerospace Founder and Chief Executive Officer Eric Lithun told Aviation International News.
Multi-mission strategy and prototype funding
The firefighting variant is part of a broader multi-mission strategy NOEMI Aerospace unveiled on May 19, 2026. The company, formerly known as Elfly Group, is designing a core amphibious airframe that can be adapted for passenger transport, cargo, skydiving, and military operations.
“Our strategy has always been to develop one highly capable platform that can serve multiple markets,” NOEMI Aerospace Chief Engineer Simon Bendrey stated in the press release. “Firefighting is one of the most attractive adjacent opportunities because it requires many of the same strengths our aircraft is already designed to deliver.”
Development of the core platform is supported by recent government funding. On July 15, 2026, Innovation Norway awarded NOEMI Aerospace a €3 million grant. According to eVTOL Insights, this grant is matched by €4 million in private investments, fully funding the €7 million flight test program for the TAC-1 full-scale experimental prototype.
The company is currently assembling the TAC-1 prototype at Torp Sandefjord Airport (TRF) in Norway. Aviation Week reported that initial propeller testing on a ground rig is expected by the end of the third quarter of 2026, with the TAC-1 targeting a first flight in late 2027. Type certification for the baseline passenger aircraft is targeted for 2030.
AirPro News analysis
The global aerial firefighting fleet is facing a capacity crisis. Climate change is extending fire seasons and increasing fire intensity, while the primary workhorse of the industry, the Canadair CL-415, has been out of production for nearly a decade. While De Havilland Canada is working to launch the updated DHC-515, delivery slots are limited and heavily backlogged by European government orders.
NOEMI Aerospace is positioning its platform to fill this exact gap. The decision to pivot from pure electric to hybrid-electric or conventional propulsion for the firefighting variant is a necessary engineering compromise. Current battery energy density cannot support the high payload and rapid turnaround requirements of aerial firefighting. By swapping heavy battery packs for a hybrid system, NOEMI reclaims the weight capacity needed for a 4-tonne water payload.
We note a typographical error in the manufacturer’s August 4 press release, which lists a 32-tonne retardant capacity in its bulleted specifications. Given the aircraft’s maximum water payload of 4 tonnes and a separate mention of a 3-tonne retardant payload earlier in the same document, the 3-tonne figure is the accurate specification.
Sources: NOEMI Aerospace
Photo Credit: NOEMI Aerospace
-
Regulations & Safety6 days agoICON Aircraft Launches ICON Sense Amphibious Safety System
-
Route Development7 days agoWashington Dulles Airport $20 Billion Overhaul Announced
-
Aircraft Orders & Deliveries3 days agoYakovlev MC-21-310 Completes Maiden Flight at Irkutsk Plant
-
Technology & Innovation4 days agoCosmic Aerospace Unveils Cosmic One Under FAA MOSAIC Rules
-
Technology & Innovation6 days agoAir India, SkyDrive and Suzuki Sign eVTOL Medical Logistics MoU
