Results for: flyt
Walmart Begins On-Demand Drone Delivery Program with Flytrex
Just days after Amazon Prime Air has received FAA approval for drone deliveries, Walmart has initiated a program with Flytrex for its own drone delivery service. Upon announcing the new initiative, Walmart looked back on a quote from founder Sam Walton: “I have always been driven to buck the system, to innovate, to take things beyond where they’ve been.” It remains...

Walmart Begins On-Demand Drone Delivery Program with Flytrex

Just days after Amazon Prime Air has received FAA approval for drone deliveries, Walmart has initiated a program with Flytrex for its own drone delivery service.
Upon announcing the new initiative, Walmart looked back on a quote from founder Sam Walton: “I have always been driven to buck the system, to innovate, to take things beyond where they’ve been.” It remains a guiding principle at Walmart to this day, according to the company. “From being an early pioneer of universal bar codes and electronic scanning cash registers to our work on autonomous vehicle delivery, we’re working to understand how these technologies can impact the future of our business and help us better serve our customers.”
“Our latest initiative has us exploring how drones can deliver items in a way that’s convenient, safe, and – you guessed it – fast. Today, we’re taking the next step in our exploration of on-demand delivery by announcing a new pilot with Flytrex, an end-to-end drone delivery company.”
Related: FAA Approves UPS as Drone Airline for Commercial Deliveries
The pilot program launched as of September 9th in Fayetteville, North Carolina, and focuses on delivering select grocery and household essential items from Walmart stores using Flytrex’s automated drones. The drones, which are controlled over the cloud using a smart and easy control dashboard, will help us gain valuable insight into the customer and associate experience, from picking and packing to takeoff and delivery. The announcement of Walmart’s new program accompanies various other recent efforts as the U.S. retailer looks to bolster its delivery business.
Why it’s important:
In a press release, Walmart acknowledged the long road ahead; “we know that it will be some time before we see millions of packages delivered via drone. That still feels like a bit of science fiction, but we’re at a point where we’re learning more and more about the technology that is available and how we can use it to make our customers’ lives easier. Take for example our autonomous vehicle work with Gatik, Ford and Nuro – we’ve gained loads of valuable insight into how autonomous vehicles fit within our business.”
Ultimately, it’s learnings from pilots such as this that will help shape the potential of drone delivery on a larger scale and expand Walmart beyond its reputation as a company specializing in in-store shopping. Fortunately, Amazon’s Prime Air business arm has begun to pave the way for certification with its official Part 135 approval to begin operating commercial deliveries on a trial basis.
Source // Walmart press release
Russian Startup Flyter Successfully Tests Wing Components
Russian startup Flyter has taken the next important step in testing the design of its 2-seater PAC 720-200. Flyter has been around since February 2018. Since then, it unveiled its concept for the PAC 720-200, a two-seater VTOL aircraft that flies like a small plane but can take off like a helicopter. Flyter’s goal is to make an aircraft that...

Russian Startup Flyter Successfully Tests Wing Components

Russian startup Flyter has taken the next important step in testing the design of its 2-seater PAC 720-200.

The Flyter PAC 720-200 is capable of carrying 440 lbs with a max range of 560 miles.
Flyter has been around since February 2018. Since then, it unveiled its concept for the PAC 720-200, a two-seater VTOL aircraft that flies like a small plane but can take off like a helicopter. Flyter’s goal is to make an aircraft that can both use airports as well as access more remote locations.
The Flyter 720-200 features a total of eight downward-facing lift propellors. Flyter states that although the it would have liked to use only four props, efficiency and thrust requirements led to the four-prop design.
In the latest test, Flyter successfully proves many of the predicted thrust and efficiency calculations. The design itself is unique in that propellors sit under the wing rather than on top of it, and the test proved the functionality of this concept. While many eVTOL prototypes (such as the Boeing PAV) use only upward facing propellors and others use a combination of upward and downward facing propellors, Flyter is one of the only companies to use solely downward facing propellors.
Watch the company’s full description of the flight test below:
Flyter is also one of the only eVTOL developers in Russia, and is proceeding with testing on schedule. The company begun taking investors in April of this year. Rather than targeting an urban air taxi market, Flyter’s strategy is to provide a vehicle that can access remote locations of Russia. The company will make both a passenger and autonomous cargo version of the PAC 720-200, and intends to use hybrid power for maximum range.
For more about Flyter, visit its website here.
Why it’s important: Since Flyter is one of the only eVTOL developers in Russia, it has a good chance of being first to capture VTOL flight demand there. Through its latest round successful of testing, Flyter sets a precedent for future progress, securing itself as a technology leader in Russia. Flyter’s next steps will involve continuous testing and eventual prototyping and certification.
Flyter 720-200
Quick SummaryRussian startup Flyter was founded in February of 2018. In April 2018, it unveiled its first vehicle concept, the PAC 420–120, a fixed wing VTOL with both electric and hybrid versions. In April 2019, it introduced the 720-200 model, which is larger and capable of a heavier payload. Flyter plans to make both cargo and passenger versions of the 720-200, which...

Flyter 720-200

Quick Summary
Russian startup Flyter was founded in February of 2018. In April 2018, it unveiled its first vehicle concept, the PAC 420–120, a fixed wing VTOL with both electric and hybrid versions. In April 2019, it introduced the 720-200 model, which is larger and capable of a heavier payload. Flyter plans to make both cargo and passenger versions of the 720-200, which is capable of payloads up to 440lbs. Flyter is currently still looking for investors to develop a full-scale prototype.
720-200
Stage of Development
Preliminary Design
Technical Details
Aircraft Type: Winged VTOL
Powerplant: All-Electric and Hybrid-electric versions are in development
Range: 560 miles
Top Speed: 155 mph
Propeller Configuration: 8 underwing propellers and 1 tail-mounted pusher propeller
Passenger/Payload Capacity: Two passengers or up to 440 lbs payload
Autonomy Level: Pilot, Autonomous Capable
Wingspan/Dimensions: Length 20.5 feet, Wingspan 23 feet, Height 8.7 feet
Our Take on Flyter
Flyter's technology has made rapid progression considering the company has only existed since 2018 and has already released two versions of its eVTOL designs. The company has disclosed they are flexible to provide a propulsion platform that caters to market demand ranging from a traditional combustion engine to a fully electric platform. Although videos have been available since 2019 showing prototype build progress, the company admits it will require iterations upon its vehicle to optimize efficiency and reach a conclusion on the most suitable powerplant given the missions for which it is designed. However, Flyter has not made any new press releases since October of 2019.
References
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May 27, 2023Flyter Adds PAC 720-200 VTOL, Seeks Investors
Russian startup Flyter recently unveiled a new video showcasing its PAC 720-200 VTOL. In a recent press release, the company announced that it is now officially looking for investors to help fund the creation of a prototype. As of late March, Flyter released a new design of its VTOL vehicle designed for two passengers rather than just one. Other notable...

Flyter Adds PAC 720-200 VTOL, Seeks Investors

Russian startup Flyter recently unveiled a new video showcasing its PAC 720-200 VTOL. In a recent press release, the company announced that it is now officially looking for investors to help fund the creation of a prototype.
As of late March, Flyter released a new design of its VTOL vehicle designed for two passengers rather than just one. Other notable changes in the design include the addition of two additional under-wing rotors, a shift in the position of the forward thrust propeller, the removal of the fold-out barriers that once encased the rotor blades, and the elimination of an interchangeable cargo pod. In total, Flyter will now have three models available: both a cargo and passenger version of the 720-200 (capable of a 200kg payload weight), and the original 420-123 model.

The newer 720-200 ‘family’ eVTOL (left) positioned next to Flyter’s first model, the 420-120 VTOL.
The PAC 720 now also has one tail rather than two and eliminates the fold-out barriers that once enclosed the rotor blades. Another important design choice was that the new version the aircraft can carry two passengers rather than just one.
Flyter’s general VTOL design is unique in that it includes the vertical lift rotors under the wing of the aircraft. The company made this choice in order to create what the company calls the ‘Flyt-effect’, which uses an additional lift propellor to add extra efficiency. Flyter has already tested the effectiveness of this design on a small-scale model and is will soon build a full-scale model to further prove the design. The company hopes that building this full-scale stand will help to determine propellor thrust and define the location of thrust propellors on the pylons beneath the beam spar, under the wing console.

Flyter’s computer model of the full-scale test stand it plans on building next
Notably, Flyter has only existed since February of 2018 and has made significant progress since. The latest announcement shows that the company is still very much moving forward. Investors can learn more about Flyter here.
Why its important: Flyter’s unique under-wing design shows demonstrates the multifaceted approach that many companies are taking to UAM. The critical thinking shown here exemplifies the many different possible solutions for UAM aircraft. Additionally, the shift to a two-person vehicle shows that the company is continuing to move toward a market release.
Flyter PAC VTOL 420-120
Quick SummaryFlyter was founded in February of 2018. In April 2018, it unveiled its vehicle concept, the PAC 420–120, a fixed wing VTOL with both electric and hybrid versions. The PAC 420–120 is modular, meaning its payload pod is interchangeable between a passenger and a cargo version. The aircraft's name is derived from its take-off weight of 420kg and payload...

Flyter PAC VTOL 420-120

Quick Summary
Flyter was founded in February of 2018. In April 2018, it unveiled its vehicle concept, the PAC 420–120, a fixed wing VTOL with both electric and hybrid versions. The PAC 420–120 is modular, meaning its payload pod is interchangeable between a passenger and a cargo version. The aircraft's name is derived from its take-off weight of 420kg and payload mass of 120kg. Flyter plans to release incrementally larger versions of the aircraft including the PAC 710–200 and the PAC 1350-400, and utilize a variety of powerplants from all-electric to internal combustion in order to fulfill its mission requirements.
Flyter is a Russia-based startup, and has intended for the PAC's to serve less as urban air taxis and as autonomous cargo vehicles that can transport payloads between remote regions of Russia.
Flyter
Solodovnikov Yuri
PAC 420–120
Stage of Development
Preliminary Design
Technical Details
Aircraft Type: Winged VTOL
Powerplant: All-Electric and Hybrid-electric versions are in development
Range: 99 miles (all electric); 5569 miles (hybrid-electric)
Top Speed: 150mph
Propeller Configuration: 4 underwing propellers and 1 tail-mounted pusher propeller
Passenger/Payload Capacity: Single Passenger or 265 lb payload
Autonomy Level: Autonomous or piloted
Dimensions: 19 ft wingspan, 17.8 ft length, 7 ft height
Other Information:
Operating Altitude: 500-3000 ft AGL
Our Take on Flyter:
Flyter is focused on quickly bringing a product to market that can solve an immediate problem. Various remote areas in Russian often wait up to 2 weeks for air transport and endure long gaps between deliveries of cargo and other goods; the PAC VTOL 420-120 aims to fill this gap in the country's transportation sector via the path of least resistance, which implies using a powerplant that will be most readily available and easiest to integrate at the time of manufacturing. While this means we could see an operational vehicle from Flyter sooner than other OEMs, the company admits it will also require iterations upon its vehicle to optimize efficiency and reach a conclusion on the most suitable powerplant given the missions for which it is designed.
References
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May 29, 2023Kakao Mobility pre-orders up to 50 of Vertical’s VX4 aircraft
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May 28, 2023Reliable Robotics Conducts Autonomous Flight Demonstration at Travis Air Force Base
May 27, 2023Hopflyt Venturi
Quick SummaryThe Hopflyt Venturi is a craft designed to become the leading mobility source for any journey under 200 miles, according to the Hopflyt website. It uses advanced aerodynamics principles (detailed in the Technical Specifications section) for improved performance.CompanyCEOProduct NameHopFlyt, a Lusby, MD, USA companyRob WinstonVenturiStage of DevelopmentPreliminary DesignPrototype BuildFlight TestingCertificationCommercially OperatingTechnical DetailsFrom the HopFlyt Website: Advanced Aerodynamic Design Utilizing...

Hopflyt Venturi

Quick Summary
The Hopflyt Venturi is a craft designed to become the leading mobility source for any journey under 200 miles, according to the Hopflyt website. It uses advanced aerodynamics principles (detailed in the Technical Specifications section) for improved performance.
Stage of Development
Preliminary Design
Technical Details
From the HopFlyt Website:
Advanced Aerodynamic Design
Utilizing a canard style design, the Venturi results in higher safety & a smoother ride experience for the passengers and the pilot alike. The wings tilt up for takeoff & landing, tilt down for forward flight and vary their angle while flying; hence "variable incidence."By using variable incidence wings & canards with channels, Venturi achieves wing-borne lift while hovering, which significantly reduces its battery power consumption. Combining these technologies with DEP reduces mechanical complexity by removing traditional flight control surfaces (i.e. ailerons, elevators, rudder and flaps). This reduces weight, improves reliability and reduces maintenance while allowing the aircraft to takeoff and land vertically. Wings and canards can vary angle in-flight and improve ride quality by keeping the fuselage at a level attitude during all phases of flight. The powered channel wing design creates high levels of lift by efficiently accelerating air over the wing resulting in longer battery life. While the contra-rotating propellers produce more thrust and reduce noise. Control of the Venturi is provided by Distributed Electrical Propulsion (DEP) and the independently variable incidence wings and canards.
Technical Details
Aircraft Type: VTOL, moveable wing
Powerplant: electric ducted fans
Range: 100 nm
Top Speed: 120 knots
Propeller Configuration: 6 ducted fan rotors (final configuration has 8 venturi "channels")
Passenger/Payload Capacity: 4 pax, 1800lb MTOW
Autonomy Level: Semi-autonomous
Wingspan/Dimensions: 24 ft x 26 ft
Our Take on HopFlyt
HopFlyt has a unique approach to creating their eVTOL from an aerodynamic standpoint - using power channels in the wings that aid in acceleration of flow in and around the propulsors of the aircraft - combined with a variable incidence angle wing to facilitate vertical takeoff and landing in addition to accelerated forward flight. The company has substantial experience in flight testing, has engineers from NASA, and an array of other resources. Subscale model testing has progressed, but no reports of their testing of a full scale prototype have emerged as of Q3 2020.
References
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May 28, 2023Reliable Robotics Conducts Autonomous Flight Demonstration at Travis Air Force Base
May 27, 2023FlytCycle
Quick SummaryThe FlytCycle was originally developed and tested in 2017, is the proof-of-concept prototype for Flyt Aerospace's upcoming Red Hummingbird aircraft. The FlytCycle features 12 electric motors each with a single propellor, and has been exhibited at the 2019 Webit tech festival in Europe.CompanyUse CasesFlyt AerospaceAir-Terrain-Vehicle, recreational or militaryStage of DevelopmentPreliminary DesignPrototype BuildFlight TestingCertificationCommercially OperatingTechnical DetailsAircraft Type: Wingless VTOL Powerplant: All-electric Range: 10-15...

FlytCycle

Quick Summary
The FlytCycle was originally developed and tested in 2017, is the proof-of-concept prototype for Flyt Aerospace's upcoming Red Hummingbird aircraft. The FlytCycle features 12 electric motors each with a single propellor, and has been exhibited at the 2019 Webit tech festival in Europe.
Stage of Development
Preliminary Design
Technical Details
Aircraft Type: Wingless VTOL
Powerplant: All-electric
Range: 10-15 minute flight time
Top Speed: Undisclosed
Propeller Configuration: 12 electric motors each with a single propeller
Passenger/Payload Capacity: Single-seater
Autonomy Level: Piloted
Dimensions: Undisclosed
Other Information
From the Fly Aerospace Site:
Latest News
Right now we're focused on recruiting and fundraising, but hope to get back to flying soon. We have custom components in production that will lead to dramatic performance improvements on the next version. Speaking of the next version...
About the FlytCycle
It's hard to believe, but we built the current FlytCycle prototype in just three short weeks. Since its completion we've already several hundred test flights and it's the best flying vehicle we've ever made, plus it's been a ton of fun to be able to fly it around and see what it can do! Although it's powerful enough to fly a person, it's small enough to fit in the bed of a standard pickup truck!
Our Take on FlytCycle
The FlytCycle is a rapidly developed and highly iteratively designed hover bike that was designed and built in under 3 weeks. The Flytcycle is currently barebones, but gave the team great insight for designing their next aircraft. Flyt had planned to release photos of this next version of its aircraft, named the Red Hummingbird, in March of 2020, but COVID-19 may have slowed down production. According to Flyt, the Red Hummingbird prototype was in fact completed in January of 2020, although no news has been published since then.
References
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May 28, 2023Reliable Robotics Conducts Autonomous Flight Demonstration at Travis Air Force Base
May 27, 2023ZeroAvia’s Hydrogen Engines to Power Natilus Autonomous Cargo Aircraft
ZeroAvia and Natilus have announced a strategic partnership to jointly develop hydrogen-electric engines for the Natilus Kona blended-wing-body (BWB) cargo aircraft. ZeroAvia’s ZA600 will be the sole hydrogen-electric propulsion source offered for the novel Kona short-haul feeder UAV, with the partnership focused on delivering zero-emission and lower cost operations. Natilus recently validated the performance of the BWB design with flight testing of...

ZeroAvia’s Hydrogen Engines to Power Natilus Autonomous Cargo Aircraft

ZeroAvia and Natilus have announced a strategic partnership to jointly develop hydrogen-electric engines for the Natilus Kona blended-wing-body (BWB) cargo aircraft. ZeroAvia’s ZA600 will be the sole hydrogen-electric propulsion source offered for the novel Kona short-haul feeder UAV, with the partnership focused on delivering zero-emission and lower cost operations.
Natilus recently validated the performance of the BWB design with flight testing of a quarter-scale Kona prototype aircraft, following three years of extensive wind-tunnel testing, while ZeroAvia has now conducted eight test flights of its prototype ZA600, 600kW engine in a 19-seat testbed aircraft.
ZeroAvia has already commenced flight testing of a 600kW prototype hydrogen-electric engine, which supports the development and certification of two initial engine classes: a 300-mile range in 9–19 seat aircraft by 2025, and up to 700-mile range in 40–80 seat aircraft by 2027. Based in the US and the UK, ZeroAvia has already secured experimental certificates for three prototype aircraft from the CAA and FAA.
In support of this effort, ZeroAvia also recently announced the creation of a hydrogen production facility at Birmingham Airport (BHX), featuring an on-site hydrogen production aircraft refueling facility, with the potential for multi-modal applications.
Subject to funding, planning, and regulatory permissions being secured, the ambition would be to use the pioneering plant to support early flight demonstrations, and also refuel road vehicles, potentially including local buses. In advance of this, BHX has commenced talks with a major automotive company about trialing hydrogen buses and cars on its airfield.
Why it’s important: The Natilus Kona, with its novel BWB design, offers increased volume for hydrogen storage, potentially transforming the air cargo delivery industry to one with low-cost, low carbon emissions, while also extending flight range. The partnership with ZeroAvia will leverage their expertise in hydrogen-electric powertrain technology with Natilus’ unique design to potentially create a scalable, long-range, and zero-emission air cargo delivery solution for the entire industry.
Related:
Embraer’s Eve Air Mobility eVTOL moves forward with testing
Eve Air Mobility (“Eve”) (NYSE: EVEX, EVEXW), a leading player in the electric vertical take-off and landing (eVTOL) industry, has made significant strides in its testing phase as it moves closer to achieving key program milestones. Eve’s commitment to a building-blocks approach helps ensure the continuous enhancement of its technology and eVTOL aircraft, allowing for the delivery of a highly...

Embraer’s Eve Air Mobility eVTOL moves forward with testing

Eve Air Mobility (“Eve”) (NYSE: EVEX, EVEXW), a leading player in the electric vertical take-off and landing (eVTOL) industry, has made significant strides in its testing phase as it moves closer to achieving key program milestones. Eve’s commitment to a building-blocks approach helps ensure the continuous enhancement of its technology and eVTOL aircraft, allowing for the delivery of a highly effective product to the market.

Eve Air Mobility, a spinoff from EmbraerX, is creating a unique eVTOL aircraft focused on efficiency, safety, low-noise profiles, and ultimately on making short-distance air travel more acccessible.
Eve recently completed propeller tests on its propeller rig in Brazil, focusing on measuring aerodynamic performance and sound properties for modeling and development purposes. The configuration and characteristics of propeller blades, such as torsion, shape, and quantity, are crucial in defining the vibration, load, and sound profile of the eVTOL. Additionally, they impact the energy requirements of the aircraft. By testing multiple models, Eve’s engineers are striving to enhance efficiency, reduce sound footprint, and lower operating costs.

Above: Eve truck testing rig, used for testing sound profiles and performance
In another significant development, Eve has commenced testing its vertical lift rotors on a specially designed truck-mounted platform. This mobile testbed aims to evaluate the performance of the rotors during the transition phase of flight. Eve’s engineering team is actively gathering data on the aerodynamic characteristics of the rotors in forward flight. The eVTOL by Eve employs a lift and cruise configuration, utilizing dedicated rotors for vertical flight and fixed wings for cruising. This configuration prioritizes safety, efficiency, reliability, and certifiability while simultaneously reducing operational costs and additional maintenance and repair expenses.
Alice Altissimo, the Vice President of Program Management and Operation at Eve, expressed satisfaction with the company’s program development activities thus far. Altissimo stated, “We are very pleased with our program development activities to date and making very good progress as we move toward the selection of primary suppliers and finalize the definition of our aircraft systems architecture. We continue to invest, and our team is working hard with the goal of developing a mature aircraft for certification and entry into service in 2026.”

Anticipating progress in the near future, Eve expects to finalize the selection of primary equipment suppliers in the first half of 2023. Subsequently, the company plans to commence the assembly of its first full-scale eVTOL prototype in the second half of 2023, followed by an extensive test campaign in 2024. Eve’s eVTOL is scheduled to achieve certification and enter service by 2026.
Collaborating with various partners, Eve is dedicated to accelerating the Urban Air Mobility ecosystem. Benefiting from a start-up mindset and backed by Embraer S.A.’s over 50-year history of aerospace expertise, Eve is taking a holistic approach to advancing the UAM ecosystem. Alongside its advanced eVTOL project, Eve provides a comprehensive global services and support network, as well as a unique air traffic management solution.
Why it’s important: By continuously enhancing its eVTOL technology through rigorous testing and collaborating with key partners, Eve is bringing its product closer to certification and commercialization. These developments signify the Eve’s commitment creating an eVTOL aircraft that can be certified in all parts of the world, and can be used to create reliable and versatile aerial mobility networks. By bringing its immense wealth of expertise to this new industry, Embraer’s Eve has immense potential to create an advanced and high-functioning aircraft, as well as the networks and software systems to help operate it.
Source // sUAS News, AAM international
Related:
- Kenya Airways to Purchase 40 Embraer EVE eVTOL Aircraft (June 2022)
- Ascent Partners with Embraer for 100 Eve eVTOLs (August 2021)
- FlyBIS to Purchase 40 eVTOLs from Eve (December 2022)
- EVE, Embraer-backed eVTOL startup, now trading on NYSE (July 2022)
Lilium Aircraft will Operate in Belgium, Switzerland, and Italy with New Orders
Through partnerships with business jet and private helicopter operators ASL Group and Air-Dynamic SA, Lilium has sold up to eleven more of its initial production aircraft to these major charter companies. On May 24th, Lilium signed an agreement with business jet operator ASL Group for the delivery of six Lilium Pioneer Edition Jets. The agreement includes deposit payments to Lilium....

Lilium Aircraft will Operate in Belgium, Switzerland, and Italy with New Orders

Through partnerships with business jet and private helicopter operators ASL Group and Air-Dynamic SA, Lilium has sold up to eleven more of its initial production aircraft to these major charter companies.

On May 24th, Lilium signed an agreement with business jet operator ASL Group for the delivery of six Lilium Pioneer Edition Jets. The agreement includes deposit payments to Lilium.
With these aircraft, ASL intends to create a sustainable, high-speed transportation network connecting major hubs across Belgium, Netherlands, Luxembourg, and Western Germany for its customers.
Philippe Bodson, owner and CEO of ASL Group said: “Our company is constantly seeking new ways to operate responsibly and contribute to a healthy future, both socially and ecologically. The Lilium Jet is a great opportunity to provide better value to our customers in a sustainable way. With zero operating emissions, vertical take-off landing capability, and a spacious premium cabin, Lilium represents the best option on the market.”
ASL Group is one of Europe’s leading business jet management and operator companies, with offices and bases in most Belgian and Dutch airports. It currently manages and operates more than 45 aircraft, and is currently seeking new and innovative ways to serve its customers.

Air-Dynamic meanwhile, operates in Switzerland and Italy, and has signed an agreement for delivery of up to five Lilium Pioneer jets, which also included deposit payments.
Notably, Air-Dynamic already operates both helicopters and business jets in these areas with over 20 years of experience, making it a prime candidate for adoption of Lilium’s eVTOL jet. By owning and operating these aircraft, Air Dynamic SA hopes to capitalize on the high-end European business travel and tourism market.
Said Raffaella Meledandri, CEO of Air-Dynamic SA, “This partnership represents an important step for Air-Dynamic SA and the entire aviation industry. We are excited to work with Lilium to develop innovative and sustainable solutions for the future of aviation. The first project’s goal is to connect Lugano directly with Milan City Center and in parallel to establish a good connection in Italy for the most touristic destinations such as Lake Como and Capri.”
Currently, Air-Dynamic SA specializes in networked routes across Switzerland, Italy, Côte d’Azur, and French Alps.
Why it’s important: Regional private jet and helicopter combination operators represent a prime and immediately applicable market for eVTOL aircraft with mid-range capabilities, such as the Lilium eVTOL. By purchasing these aircraft, operators can not only save on operating and maintenance costs, but can also offer their customers a unique and highly luxurious experience with this new kind of aircraft. Ultimately, these business models will also give Lilium and other eVTOL makers a chance to proof their viability and commercial feasibility, and build business towards expansion into more market segments.
Source // Lilium
Related:
- Lilium announces capital raise for up to $250 million (May 2023)
- Lilium and eVolare sign deal for up to 20 aircraft (December 2022)
- Lilium and Helity to Develop High Speed Electric Air Mobility Network in Southern Spain (August 2022)
- AAP Aviation to develop electric regional air mobility in Norway with the Lilium Jet (July 2022)
- Lilium Completes Transition from Hover to Winged Flight (June 2022)
Reliable Robotics Conducts Autonomous Flight Demonstration at Travis Air Force Base
Reliable Robotics has completed a series of flight tests in partnership with NASA to aid the FAA in the use of primary surveillance radar (PSR) data. The tests were conducted on Reliable’s modified Cessna Grand Caravan at Travis Air Force Base and successfully demonstrated an autonomous taxi, takeoff, and landing. Reliable is currently developing an FAA STC for its remote...

Reliable Robotics Conducts Autonomous Flight Demonstration at Travis Air Force Base

Reliable Robotics has completed a series of flight tests in partnership with NASA to aid the FAA in the use of primary surveillance radar (PSR) data.

The tests were conducted on Reliable’s modified Cessna Grand Caravan at Travis Air Force Base and successfully demonstrated an autonomous taxi, takeoff, and landing. Reliable is currently developing an FAA STC for its remote pilot technology on the Caravan, but intends to make it available for other aircraft types in the future.
The tests were intended to demonstrate a high-precision, high-integrity navigation system that enables automatic takeoff and landing. More specifically demonstrating to the FAA their detect and avoid (DAA) capabilities. This technology helps to ensure safe distances between aircraft and minimize the risk of mid-air collisions. Successful demonstration of this software is on of the key hurdles needed to realize fully autonomous/remote pilot operations.
The test conducted with NASA involved feeding live radar data into a NASA facility and subjecting two aircraft to multiple encounter scenarios. These scenarios simulated approaching each other from different angles and speeds, simulating unintended near misses. Throughout the test, data from the FAA and DoD surveillance radar system was collected, alongside high-precision position information gathered onboard the aircraft. This data was subsequently cross-compared to evaluate the effectiveness of radar systems in ensuring separation.
Assuming successful outcomes, the end goal is to publish a formal paper that establishes the suitability of ground surveillance radar equipment as a vital component in solving the detect-and-avoid problem. This research holds promise for further enhancing aviation safety and paving the way for more advanced automation in the skies.
“Everything went the way that we expected,” said Robert Rose, CEO of Reliable Robotics. “There’s still a lot more work that needs to be done, but we were excited to kick this work off.”
Why it matters: Detect and Avoid software and collaboration with the FAA in the development of collision avoidance technologies will be of paramount importance for the long term success of fully autonomous aerial mobility platforms. Reliable’s work and eventual STC for the Cessna Caravan are steps in the right direct towards making remote piloting a reality.
Kakao Mobility pre-orders up to 50 of Vertical’s VX4 aircraft
Vertical Aerospace just announced that South Korean mobility technology company, Kakao Mobility, has pre-ordered up to 50 of Vertical’s VX4 aircraft, adding South Korea to Vertical’s list of customer launch markets. Kakao Mobility, the largest Mobility-as-a-Service (MaaS) platform in South Korea with more than 30 million registered users, is the mobility subsidiary of South Korean internet giant, Kakao Corporation. Kakao...

Kakao Mobility pre-orders up to 50 of Vertical’s VX4 aircraft

Vertical Aerospace just announced that South Korean mobility technology company, Kakao Mobility, has pre-ordered up to 50 of Vertical’s VX4 aircraft, adding South Korea to Vertical’s list of customer launch markets.
Kakao Mobility, the largest Mobility-as-a-Service (MaaS) platform in South Korea with more than 30 million registered users, is the mobility subsidiary of South Korean internet giant, Kakao Corporation. Kakao Mobility runs the country’s most popular taxi-hailing app, Kakao T, providing taxi-hailing, designated driver booking, parking space search, and Kakao Navi app providing real-time traffic information services.
Vertical and Kakao Mobility will establish a Joint Working Group (JWG) to drive the commercialization of AAM services in South Korea, including the exploration of network and fleet planning, infrastructure requirements, regulatory development, and consumer awareness of eVTOL mobility solutions.

This JWG builds on Vertical’s existing consortium partnership with Kakao Mobility, LG Uplus, GS E&C, and the continued engagement with Korea’s Ministry of Land, Infrastructure and Transport, for the K-UAM Grand Challenge (K-UAM GC).
Stephen Fitzpatrick, Vertical’s Founder and CEO, said “We are delighted to be partnering with Kakao Mobility. With its over 30 million registered users, Kakao Mobility is the go-to choice to ‘hail a ride’ and with our partnership, we look forward to people across South Korea being able to fly in a VX4 in the years to come. We are thrilled to be working together to make our joint vision a reality’.”
Alex Ryu, CEO of Kakao Mobility commented, “Kakao Mobility is the leading mobility platform and in an AI-enabled world with needs for faster, eco-friendly means of moving, we understand that UAM will be a game-changer in the near future. We are excited to take part in Vertical Aerospace’s mission to launch its VX4 globally and to bring an UAM service to Korean market. We will be expanding our business not only on the ground but to the sky through this partnership. As a consolidated mobility platform, Kakao Mobility will develop the “De Facto Standard” for UAM services. We look forward to collaborating closely to complete the K-UAM Grand Challenge successfully and into commercialization shortly after K-UAM GC.”
Vertical already has strong ties to South Korea with Hanwha, a key partner for the VX4 certification aircraft. Vertical is leveraging Hanwha’s four decades of industrial expertise to collaborate on the development and supply of actuator systems for the VX4.
Related:
- Vertical Aerospace moves towards Certification with VX4 eVTOL Aircraft
- Marubeni Pre-Orders 25 Aircraft from Vertical Aerospace, Conducts Proof of Concept Operations in Osaka
- Vertical to Partner with Babcock for Development of eVTOL EMS Applications
Why it’s important: South Korea is one of the largest economies in the world and is home to globally leading technology companies. Seoul, as well as other regions including Busan, is expected to have a significant Urban Air Mobility (UAM) market potential. The agreement with Kakao Mobility marks Vertical’s first partnership with a mobility technology company, enabling Vertical to leverage their existing customer base and vehicle network to create a seamless air-to-ground passenger journey and UAM ecosystem in the country.
BLADE to Open Newport NJ Helistop, Open Route connecting Newport to Manhattan
Blade Air Mobility announced today that they have entered into an agreement with Newport Helipad to operate and revitalize the Newport Helistop, denoted 91NJ, located in Newport, Jersey City, New Jersey. This area is one of the largest and most successful mixed-use communities on the Hudson River waterfront, and the agreement is subject to the execution of definitive documentation. Blade...

BLADE to Open Newport NJ Helistop, Open Route connecting Newport to Manhattan

Blade Air Mobility announced today that they have entered into an agreement with Newport Helipad to operate and revitalize the Newport Helistop, denoted 91NJ, located in Newport, Jersey City, New Jersey. This area is one of the largest and most successful mixed-use communities on the Hudson River waterfront, and the agreement is subject to the execution of definitive documentation.

Blade plans to manage and operate the Helistop on behalf of Newport for both Blade flights and third-party operations. The Helistop is located on the Hudson River waterfront, approximately 3,800 feet from Manhattan. “All large communities will need an urban air mobility strategy to bolster their attractiveness to corporations and residents alike in an increasingly competitive market,” said Nate Alexander, Blade’s Senior Director, Rotorcraft Operations. Notably, this agreement will help to demonstrate the proper processes and working relationships required to safely grow urban air mobility in the greater New York City metropolitan area using conventional aircraft today, while preparing for the deployment of aerial mobility aircraft in the future.
Under the agreement, Blade will begin a pilot program for charter flights and explore the viability of the first-ever scheduled, by-the-seat service between the Helistop and local New York City area airports and heliports; the program will provide a convenient travel option for commuters, particularly for Newport tenants and employees of major banks and corporations that maintain large office presences around the Helistop. A flight from the Helistop to JFK Airport will take approximately 5 minutes versus up to 2 ½ hours by car.
In an effort to mitigate any potential noise impact on the neighboring communities, only helicopter flights for public transportation or emergency services will be permitted at the Helistop. Tourist flights, as well as helicopter operators who violate the New York City Economic Development Corporation’s designated noise abatement routing for tourist flights along the New Jersey and New York City Hudson River corridor, will not be allowed to utilize the Helistop.
The agreement will also provide Blade with the opportunity to construct an exclusive-use, Blade branded terminal at the Helistop to facilitate safe and efficient operations for Blade flights and provide lounge amenities for Blade fliers.
Why it’s important: This agreement is the first of its kind in 13 years in the NYC area, as opening new or reopening existing heliports and vertical aircraft operation locations requires a large amount of coordination and approvals. BLADE’s ability to successfully execute this deal serves as a case study for future expansions in the area. Further, it underscores the types of working relationships needed for continuing growth as additional routes come to fruition for advanced aerial mobility deployment and the continuing commercialization of last-mile urban transportation, thereby relieving road congestion and reducing carbon emissions.
Doroni Aerospace Launches Series A Reg D Investment Round
Doroni Aerospace, Inc., a startup in the aerial mobility industry, is making an innovative 2-seater eVTOL (electric vertical takeoff and landing aircraft). The company recently announced the launch of its Series A Reg D funding round, providing investors with an online platform to participate in this investment opportunity. This marks a significant milestone for Doroni as it propels the development...

Doroni Aerospace Launches Series A Reg D Investment Round

Doroni Aerospace, Inc., a startup in the aerial mobility industry, is making an innovative 2-seater eVTOL (electric vertical takeoff and landing aircraft). The company recently announced the launch of its Series A Reg D funding round, providing investors with an online platform to participate in this investment opportunity. This marks a significant milestone for Doroni as it propels the development and growth of its cutting-edge technology.

Doroni Aerospace has witnessed tremendous success over the past six months, including the completion of an impressive 53 successful test flights and raising $3.6 million through equity crowdfunding from over 1,900 investors. The latest Reg D investment round plays a crucial role in the company’s journey towards obtaining official certification from the Federal Aviation Administration (FAA). Doroni plans to initiate deliveries of the first units sold in the second half of 2025.
With the closing of the Series A Reg D Offering, Doroni Aerospace is embarking on the next phase of its mission to change personal mobility and transportation. This development ushers in a new chapter for the company, enabling it to further develop its mobility platform, attract new partners and investors, and scale its operations.
“This offering represents a significant milestone in our endeavor to revolutionize the aviation and personal mobility industry. By pushing the boundaries of technology, we aim to provide our customers with unparalleled convenience and sustainability, setting new benchmarks for the transportation segment,” said Yaakov Werdiger, COO of Doroni Aerospace.
Despite raising less than the industry standard funding thus far, Doroni Aerospace has achieved remarkable success in its operations. According to the company, this achievement is a testament to the team’s agility and strategy. Consequently, Doroni now positions itself favorably in the eyes of potential investors, showcasing its ability to maximize resources and deliver on investment resources.
Doroni Aerospace’s flagship product, the H1, a two-seater personal eVTOL, is currently available for pre-order and has already begun receiving deposits. With an estimated starting retail price of $250,000, the H1 will offer individuals a unique opportunity to own, fly, and store their own eVTOL in a standard two-car garage. The aircraft qualifies for the light sport category, allowing owner operators to complete a 20-hour training course provided by the company, in order to begin flying.
“We are thrilled by the extraordinary success of our flight tests, which have truly demonstrated the immense capabilities of the Doroni eVTOL. We are resolute in our mission to revolutionize personal transportation, creating innovative and cutting-edge solutions that will reshape our interactions with space and beyond,” said Doron Merdinger, CEO, and Founder of Doroni Aerospace.
Doroni Aerospace is also receiving the support of Space Florida, a state agency dedicated to preserving Florida’s leading position in the global aerospace industry. Space Florida is actively assisting Doroni in expanding its operations by providing land, facilities, and tooling. Tony Gannon, VP Research & Innovation, and Matt Chesnut, VP Business and Economic Development, serve as close collaborators and fervent supporters of Doroni’s vision.
Why it’s important: Doroni’s innovative 2-seater eVTOL and its success in test flights and fundraising exemplify the potential of the private-ownership segment for electric vertical takeoff and landing aircraft. By providing accredited investors with an opportunity to participate in Doroni’s growth, the new investment not only signifies a major milestone for the company but also showcases the viability and attractiveness of the private eVTOL market. According to the company, Doroni’s advancements in technology, coupled with its commitment to sustainability and convenience, can inspire other companies in the small-aircraft aerial mobility sector. The success of Doroni Aerospace in revolutionizing personal mobility further accelerates the overall progress and development of the aerial mobility industry, bringing us closer to a future where flying cars and sustainable transportation options become a reality worldwide.
Source // Globe Newswire, Doroni
Biden Administration Announces Team for Advanced Aerial Mobility
In a groundbreaking move towards the future of aerial mobility, the United States announced on May 16th the formation of a dedicated team tasked with establishing a comprehensive national strategy for the integration of flying air taxis into the transportation ecosystem. This initiative ultimately aims to transform the way many people commute, reducing congestion and providing faster and more efficient...

Biden Administration Announces Team for Advanced Aerial Mobility

In a groundbreaking move towards the future of aerial mobility, the United States announced on May 16th the formation of a dedicated team tasked with establishing a comprehensive national strategy for the integration of flying air taxis into the transportation ecosystem. This initiative ultimately aims to transform the way many people commute, reducing congestion and providing faster and more efficient transportation options.

The new team, composed of experts from NASA, the Transportation Security Administration, the Federal Aviation Administration and the Federal Communications Commission, will collaborate closely with other government agencies, industry leaders, and stakeholders to define the regulatory framework, safety standards, infrastructure requirements, and operational guidelines for the deployment of eVTOL air taxis across the United States.
As reported in the press release issued by the U.S. Department of Transportation, this initiative aligns with the government’s vision of fostering innovation and emerging technologies to address the challenges of urban transportation. By bringing together key players from both the public and private sectors, the team will work towards shaping a sustainable and accessible aerial mobility ecosystem.
Through this announcement, the DOT has stated that it’s first goal is to work with the public and stakeholders to understand “ the critical issues of importance in drafting a national AAM strategy”. In particular, they seek to develop a multi-step plan for the 2 year, 4-8 year, and 8 year plus marks to overcome barriers and assist in integrating this new mode of transportation into existing networks and cities.
This announcement follows several headlines from major airlines like American, United, and Delta, who have announced partnerships to begin operating these new kinds of urban eVTOL aircraft between city centers and airports. Additionally, the U.S government has also already made efforts in partnership with companies like Joby Aviation to help these new aircraft reach certification. Learn more about these partnerships on TransportUP.com.

Above: Image from Urban Airspace Mapping program chosen by NASA
Why it’s important: The successful integration of air taxis into existing transportation networks will require collaborative efforts from all stakeholders involved. By creating a cohesive national strategy, the U.S. can to streamline the regulatory processes, ensure public safety, and maximize the potential benefits of this emerging technology sooner rather than later.
Although programs have already been established in several departments of the U.S government like the FAA and NASA, this new team announces a overall coordinated team on the national level to begin implementing this technology. The formation of the signals the strength of the Biden Administration’s belief in the potential of this technology.
Related:
- Joby Completes Second Stage of Certification Process (February 2023)
- Archer and United to Fly eVTOL Route in Chicago Starting in 2025 (March 2023)
- American Airlines Solidifies Delivery Slots for Vertical Aerospace eVTOL Aircraft (July 2022)
- FAA Releases New Concept of Operations for Aerial Mobility (May 2023
Source // Reuters, Avfoil
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