Electric Aircraft
Costa Rica Deploys 50 eVTOLs for Sustainable Tourism Transport
Eve Air Mobility, Aerosolutions, and Bluenest partner to modernize Costa Rica’s transport with electric aircraft, enhancing tourism and reducing emissions.

Transforming Sustainable Travel: Eve Air Mobility, Aerosolutions, and Bluenest’s eVTOL Initiative in Costa Rica
In a bold move to reshape regional mobility and reinforce its commitment to sustainable tourism, Costa Rica is positioning itself at the forefront of Advanced Air Mobility (AAM). On June 30, 2025, Eve Air Mobility signed a Letter of Intent (LOI) with Aerosolutions and Bluenest by Globalvia to deploy up to 50 electric vertical take-off and landing (eVTOL) aircraft and implement comprehensive TechCare services. This collaboration aims to establish an integrated AAM ecosystem in Costa Rica’s Pacific Northwest, particularly targeting high-demand tourist regions like Guanacaste.
With over 2.6 million annual visitors arriving by air in 2024, Costa Rica faces a pressing need to modernize its transportation infrastructure. The introduction of eVTOLs offers a transformative solution, providing low-emission, time-saving alternatives to traditional ground travel. This partnership not only addresses logistical inefficiencies but also reinforces Costa Rica’s leadership in ecotourism and sustainable innovation.
Building the Future of Regional Air Mobility
Strategic Collaboration and Deployment
The LOI outlines a comprehensive partnership between Eve Air Mobility, Aerosolutions, and Bluenest by Globalvia. Eve, a subsidiary of Embraer, brings its aerospace expertise and a backlog of 2,900 eVTOLs to the table. Aerosolutions, launching a new operator called Aeros Electric Airlines, will oversee flight operations, while Bluenest will develop the necessary vertiport infrastructure. Together, they aim to create a seamless, intermodal transport system that integrates air and ground travel.
The initial deployment will focus on routes between Liberia Airport and premium resorts in Guanacaste, covering distances of 20 to 50 kilometers. These routes, currently plagued by road congestion and long travel times, will be reduced to under 15 minutes via eVTOL. The aircraft themselves boast a 100 km range and cruise speeds of 160 km/h, making them ideal for short-haul regional transport.
Beyond aircraft delivery, the agreement includes access to Eve’s TechCare services, a comprehensive suite offering maintenance, battery management, pilot training, and digital operations. This ensures high aircraft availability, minimal downtime, and a streamlined user experience for both operators and passengers.
“We’re accelerating safe, sustainable mobility while bolstering Costa Rica’s ecotourism leadership.”, Johann Bordais, CEO of Eve Air Mobility
Infrastructure and Operational Planning
Bluenest, the AAM business line of Globalvia, will spearhead vertiport development. As the operator of Costa Rica’s key highway (Ruta 27), Globalvia’s experience enhances the potential for effective intermodal connections. Vertiports will be strategically located at airports and resorts, designed with minimal land use and equipped with solar-powered charging stations to align with environmental goals.
Workshops under the LOI will address critical areas such as airspace integration, pilot certification, and vertiport design. These collaborative efforts aim to align with Costa Rica’s Directorate of Civil Aviation (DGAC) and international standards from regulatory bodies like EASA and ANAC. This proactive approach is essential for ensuring safe, compliant, and scalable operations.
Phase 1 of the rollout (2025–2026) will focus on infrastructure and training, while Phase 2 (2027) aims to scale operations to 20 aircraft across 15 routes. By 2028, full deployment is expected, with potential expansion to San José’s Juan Santamaría International Airport, which handles over 1.77 million passengers annually.
Tourism, Sustainability, and Economic Impact
Costa Rica’s Tourism Economy and Challenges
Tourism is a cornerstone of Costa Rica’s economy, generating over $5 billion in 2024 and contributing 8.2% to GDP. However, the influx of over 880,000 tourists annually to regions like Guanacaste strains the existing road infrastructure. Travel times are often inflated by 40% during peak seasons, affecting visitor satisfaction and repeat tourism rates.
Traditional infrastructure expansion is limited by environmental concerns. eVTOLs present a compelling alternative, covering 92% of tourist routes in the Pacific Northwest with zero-emission operations. This aligns with Costa Rica’s 2050 Carbon Neutrality Pledge and enhances its reputation as a leader in eco-conscious travel.
North American tourists, who make up 73% of arrivals, spend an average of $1,850 per trip. However, 23% cite transportation inefficiencies as a deterrent. By slashing travel times from two hours to 15 minutes, the eVTOL service could increase tourist spending by 15–20%, offering both economic and experiential benefits.
“Reducing congestion in Guanacaste reinforces our reputation for eco-innovation.”, Antonio Mota, CEO of Aerosolutions
TechCare: The Operational Backbone
TechCare, Eve’s integrated support platform, plays a pivotal role in the success of this initiative. It includes four key pillars: maintenance and repair, battery and energy management, training and certification, and digital operations. Each component is designed to ensure safety, efficiency, and sustainability in day-to-day operations.
Maintenance services leverage Embraer’s global network for predictive diagnostics, reducing unscheduled downtime to under 2%. Battery management, in partnership with BAE Systems, includes logistics optimization and recycling, ensuring 99% flight readiness. Training is conducted through Embraer-CAE using VR simulations, while digital operations manage air traffic and fleet routing through Vector software.
For Aerosolutions, TechCare translates into 30% lower operating costs compared to traditional aviation. The workshops included in the LOI will equip local teams with the skills and knowledge required to manage these advanced systems effectively, ensuring long-term sustainability and operational excellence.
Conclusion: A Blueprint for Sustainable Mobility
The collaboration between Eve Air Mobility, Aerosolutions, and Bluenest signifies more than a technological upgrade, it represents a paradigm shift in how regions like Costa Rica can address transportation inefficiencies while advancing sustainability goals. With the potential to reduce road congestion by 15–20% and enhance tourist experiences, this initiative sets a new standard for eco-friendly innovation in travel.
As the global AAM market continues to grow, Costa Rica’s model offers a replicable blueprint for other tourism-dependent economies. By combining cutting-edge technology with strategic infrastructure and service integration, the partnership not only meets current mobility challenges but also lays the foundation for a more connected, sustainable future.
FAQ
What is an eVTOL?
An eVTOL (electric vertical take-off and landing) aircraft is a type of air vehicle designed for urban air mobility. It uses electric propulsion to take off, hover, and land vertically, making it ideal for short-distance travel in congested areas.
Why was Costa Rica chosen for this initiative?
Costa Rica’s high tourism volume, commitment to sustainability, and traffic congestion issues make it an ideal testing ground for eVTOL services. The country’s infrastructure and regulatory environment also support innovative transportation solutions.
When will the service be operational?
The first phase of operations is scheduled to begin in late 2026, with full deployment anticipated by 2028, pending regulatory approvals and infrastructure development.
Sources
Photo Credit: Eve Air Mobility
Electric Aircraft
Sora Aviation Completes S-1 Subscale VTOL Flight Testing
Sora Aviation completed subscale VTOL flight testing for its 30-seat S-1 eVTOL in Wales, targeting a full-scale prototype flight in 2028.

This article summarizes reporting by eVTOL Insights by Jason Pritchard.
British electric aviation developer Sora Aviation announced on June 25, 2026, the successful completion of a subscale vertical take-off and landing (VTOL) flight testing program for its proposed 30-seat S-1 aircraft at the Snowdonia Aerospace Centre in Wales. The campaign generated critical flight data that will directly inform the design of the full-scale prototype, which is targeted to fly in 2028.
According to reporting by eVTOL Insights, the subscale demonstrator completed dozens of flights over several months. The testing allowed engineers to evaluate the aircraft’s stability, control, and flight characteristics during repeated VTOL operations in a lower-risk environment. This milestone is intended to de-risk the technology before the company begins construction on the full-scale prototype.
Subscale testing and validation strategy
Sora Aviation Chief Executive Officer Furqan Afzal emphasized the company’s comprehensive approach to development. As reported by eVTOL Insights, Afzal stated the manufacturers invested in a rigorous validation strategy that combines simulation, laboratory testing, wind tunnel campaigns, and representative flight demonstrators.
“This milestone demonstrates the maturity of our development approach and the strength of the engineering foundations underpinning the S-1 programme,” Afzal said.
The data gathered at the Welsh testing facility will be used to refine the S-1’s engineering foundations. Aerospace Global News reported that Afzal views the flight data as validation of the aircraft’s potential, noting that the results reinforce the company’s confidence that the S-1 can deliver the required performance, safety, and economics for advanced air mobility operations.
S-1 program timeline and commercial milestones
The S-1 is designed as a 30-seat electric vertical take-off and landing (eVTOL) aircraft. Aerospace Global News reported that the full-scale prototype is projected to make its first flight in 2028. The flight testing milestone follows earlier component validation efforts. On January 20, 2026, Sora Aviation began testing the S-1’s energy storage system at a bespoke battery performance laboratory at the IAAPS centre, in collaboration with the University of Bath.
The company has also secured early commercial interest and explored alternative applications for the airframe. In March 2025, South Korean charter operator Moviation signed a pre-order agreement for 20 S-1 aircraft, intending to deploy them on high-demand airport shuttle routes, according to Aviation International News. Aviation Week reported in May 2026 that Sora Aviation was studying a conceptual hybrid-electric variant of the 30-seat aircraft for potential use as a United Kingdom Navy helicopter.
AirPro News analysis
We view the completion of subscale flight testing as a standard but essential risk-reduction step for any novel eVTOL configuration. By validating aerodynamic models and flight control laws on a subscale airframe, Sora Aviation can identify and correct stability issues before committing to the high costs of full-scale prototype manufacturing. The 30-seat capacity of the S-1 places it in a larger size category than many competing eVTOL designs, which typically target four to six passengers. This larger payload requirement will place significant demands on the aircraft’s battery and thermal management systems, making the concurrent testing at the IAAPS centre critical to the program’s viability.
Sources: Sora Aviation
Photo Credit: Sora Aviation
Electric Aircraft
VÆRIDION Microliner Passes PDR With 100+ Commitments
VÆRIDION completes Preliminary Design Review for its electric Microliner, securing 100+ commitments ahead of a 2027 first flight target.

Munich-based manufacturer VÆRIDION has secured more than 100 commitments for its all-electric Microliner aircraft following the successful completion of the program’s Preliminary Design Review (PDR) on June 11, 2026.
The milestone freezes the basic design of the nine-passenger commuter aircraft, allowing the engineering team to transition into detailed design and hardware fabrication. According to a company press release, the accumulation of over 100 commitments signals growing market confidence as VÆRIDION targets a 2027 first flight and commercial entry into service by 2030.
Engineering milestones and prototype development
The completion of the PDR marks a critical phase for the clean-sheet electric-aviation conventional takeoff and landing (eCTOL) aircraft. The Microliner features a glider-inspired wing design that integrates modular battery systems, paired with multi-engine, single-propeller propulsion.
With the preliminary design frozen, VÆRIDION is advancing toward building its first conforming prototype. The company has established a supply chain featuring several established aerospace manufacturers. Evolito will provide the electric propulsion systems, while MT-Propeller and GKN Aerospace are supplying key components. On April 23, 2026, VÆRIDION announced the selection of Garmin G600 TXi flight displays for the initial test aircraft, a decision Chief Technology Officer Markus Kochs-Kämper noted would meet the specific avionics requirements of the test campaign.
Industrialization and production targets
To support the transition from design to physical hardware, VÆRIDION has been expanding its physical footprint and capital reserves. On March 13, 2026, the company inaugurated its first manufacturing facility and test house at Oberpfaffenhofen Airport in Germany, occupying a site previously utilized by Lilium.
Chief Executive Officer Ivor van Dartel stated in April 2026 that the company was in execution mode and actively fundraising to contract the next stages of development. VÆRIDION has applied for development assistance through the European Union Innovation Fund, backed by the European Investment Bank, to support industrialization efforts at the Oberpfaffenhofen factory. The manufacturer is ultimately targeting a production rate of 40 to 50 aircraft per year.
Operational capabilities and certification path
The Microliner is designed to serve regional commuter routes with a maximum range of 400 kilometers under Instrument Flight Rules (IFR) conditions. The aircraft aims to provide zero-emission regional connectivity, a sector drawing increased attention from operators looking to reduce carbon footprints on short-haul networks.
VÆRIDION is working toward certification with the European Union Aviation Safety Agency (EASA). The regulatory approval process is scheduled to align with the company’s target of a 2030 entry into service.
AirPro News analysis
Securing 100 commitments at the PDR stage provides VÆRIDION with crucial market validation as it enters the capital-intensive prototype fabrication phase. While the eCTOL market is less crowded than the electric vertical takeoff and landing (eVTOL) space, the technical challenges of battery energy density and weight remain significant hurdles for any electric regional aircraft.
We note that VÆRIDION’s strategy of partnering with established aerospace suppliers like Garmin and GKN Aerospace reduces some developmental risk compared to a fully vertically integrated approach. However, maintaining the timeline for a 2027 first-flight will depend heavily on the success of the company’s current fundraising rounds and the timely delivery of conforming components to the Oberpfaffenhofen facility.
Sources: VÆRIDION
Photo Credit: VÆRIDION
Electric Aircraft
AIR selects Dynon Avionics for exclusive eVTOL avionics integration
AIR partners with Dynon Avionics to customize SkyView HDX for its eVTOL aircraft, targeting FAA certification in 2026.

This article is based on an official press release from AIR via PR Newswire.
On June 3, 2026, Israeli electric vertical takeoff and landing (eVTOL) manufacturer AIR announced a strategic partnership with U.S.-based Dynon Avionics. According to the company’s official press release, Dynon will serve as the exclusive avionics provider across AIR’s entire smart aircraft portfolio.
This collaboration bridges the gap between traditional general aviation and the emerging Advanced Air Mobility (AAM) sector. By adapting Dynon’s widely utilized SkyView HDX flight display system for electric powered-lift operations, AIR aims to streamline the piloting experience for its upcoming vehicles while relying on proven aerospace technology.
The integration agreement covers both the piloted AIR ONE, a two-seat personal eVTOL designed for private ownership, and the uncrewed AIR ONE Cargo, a heavy-lift unmanned aerial system (UAS) utilized by defense and logistics organizations.
Adapting Proven Avionics for Electric Flight
Rather than developing a proprietary flight display from scratch, AIR has opted to customize Dynon’s flagship SkyView HDX avionics platform specifically for its eVTOL architecture. Originally introduced in 2016 for experimental and light sport airplanes, the SkyView HDX system features touchscreens that combine a primary flight display, moving-map navigation, synthetic vision, autopilot, and ADS-B traffic and weather data.
Customizing for eVTOL Operations
Because the AIR ONE utilizes electric propulsion rather than a traditional piston engine, Dynon’s engineering team adapted the SkyView HDX to meet the unique demands of powered-lift flight. According to the release, the customized system tracks electric propulsion metrics and battery energy management, ensuring pilots have clear, intuitive access to critical flight data.
“SkyView HDX is built to adapt to evolving aircraft architectures. Partnering with AIR allows us to take the proven reliability of SkyView HDX, which pilots rely on daily, and extend it directly into the advanced air mobility space.”
AIR’s Path to Commercialization and Manufacturing
AIR is positioning itself uniquely within the AAM market by focusing on personal and cargo air mobility rather than commercial air taxi services. The company’s flagship product, the AIR ONE, is designed as a “flying sports car” for private owners. According to company specifications, the aircraft features a target range of 100 miles, cruise speeds up to 155 mph, and a payload capacity of 550 pounds.
Production and Financial Traction
The avionics partnership comes at a time of significant growth for the Israeli manufacturer. As of March 2026, AIR reported surpassing $1 billion in its order backlog. This figure represents over 3,300 waitlisted customers, including 3,290 reservations specifically for the AIR ONE personal eVTOL. Furthermore, the company stated it has already generated over $35 million in booked revenue, primarily driven by deliveries of its heavy-lift UAS variants.
To support this backlog, AIR transitioned to commercial-scale serial manufacturing in July 2025 by opening a 32,000-square-foot production facility in Pardes Hanna, Israel. The company notes that this facility is capable of assembling up to six aircraft simultaneously.
“From the start, AIR has focused on making advanced flight systems intuitive, safe, and accessible. Working with Dynon allows us to bring proven avionics capability into a fundamentally new aircraft environment that demands more than a standard integration, while keeping the simplicity and operational clarity that define how we think about flight.”
Regulatory Tailwinds: The FAA MOSAIC Rule
The timing of this avionics integration aligns closely with a major regulatory shift in the United States. The Federal Aviation Administration’s (FAA) Modernization of Special Airworthiness Certification (MOSAIC) rule, finalized in July 2025, fundamentally changes how personal aircraft are certified.
Certification Timeline
Previously, Light Sport Aircraft (LSA) regulations excluded powered-lift aircraft and enforced strict weight limits. The MOSAIC rule removes these prescriptive weight limits in favor of performance-based metrics, officially allowing powered-lift aircraft like eVTOLs to be certified in the LSA category. While pilot privileges under MOSAIC took effect in October 2025, the new aircraft certification provisions for manufacturers take effect on July 24, 2026. AIR expects the FAA to approve the AIR ONE under these new rules this year, enabling the company to begin fulfilling its U.S. backlog.
AirPro News analysis
We view this partnership as a prime example of traditional general aviation technology successfully pivoting to support the booming AAM sector. It demonstrates that eVTOL manufacturers do not necessarily need to reinvent the wheel regarding cockpit displays; they can adapt proven, trusted systems to save on development costs and certification hurdles. Furthermore, by integrating a familiar system like Dynon’s SkyView HDX, AIR is strategically lowering the barrier to entry for existing private pilots transitioning to electric aircraft. Finalizing its supply chain and technology stack just ahead of the July 2026 MOSAIC implementation positions AIR favorably to capitalize on the emerging personal eVTOL market.
Frequently Asked Questions (FAQ)
- What is the AIR ONE?
The AIR ONE is a two-seat personal electric vertical takeoff and landing (eVTOL) aircraft designed for private ownership. It features a target range of 100 miles and cruise speeds up to 155 mph. - Why did AIR partner with Dynon Avionics?
AIR selected Dynon to adapt its proven SkyView HDX flight display system for electric powered-lift operations, providing pilots with a familiar, reliable, and intuitive interface for tracking electric propulsion and battery management. - When will the AIR ONE be available in the U.S.?
AIR expects to receive FAA approval for the AIR ONE this year under the new MOSAIC regulations, which take effect for manufacturers on July 24, 2026. This certification will allow the company to begin fulfilling its U.S. order backlog.
Sources: AIR via PR Newswire
Photo Credit: AIR
-
Aircraft Orders & Deliveries1 day agoPhilippine Airlines Orders Up to 20 Boeing 787-10 Dreamliners
-
Aircraft Orders & Deliveries1 day agoAerCap Orders 15 Boeing 787-9 Dreamliners at Farnborough 2026
-
Commercial Aviation23 hours agoIndiGo Signs Record 1000 LEAP-1A Engine MoU with CFM
-
Aircraft Orders & Deliveries22 hours agoRiyadh Air Orders 31 A350-1000s and 67 Boeing 787s
-
Regulations & Safety1 day agoBridger Aerospace Integrates TracPlus Data into IGNIS Platform
