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EXHIBITORS 2026

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Sensata Technologies
Enabling Safe, Efficient eVTOL Flight Through Advanced Sensing & Electrification

Sensata Technologies is a global leader in sensor, control, and power-conversion solutions, offering a broad portfolio tailored to aerospace and advanced mobility applications. Their product offerings include position sensors, pressure and force transducers, high‑voltage contactors/fuses, battery‑management components, and pilot‑interface controls — all developed with aviation-grade reliability and certification pedigree.

In the eVTOL and Advanced Air Mobility (AAM) sector, Sensata plays a pivotal role by enabling critical subsystems that support electric propulsion, cockpit control, and power‑distribution safety. For example, their newly developed passive inceptor (pilot control interface) is designed specifically for fly‑by‑wire eVTOL‑type aircraft and has already been delivered in prototype form to several AAM manufacturers.

Similarly, their Electric Drive Position (EDP) sensors deliver precise rotor and motor‑position feedback tailored for axial‑flux electric motors, helping maximise efficiency while reducing weight — a crucial factor in vertical flight platforms.
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Pivotal
Personal eVTOL Aircraft for Individual Urban Air Mobility

Pivotal advances personal electric vertical takeoff and landing (eVTOL) flight with Helix, a low-barrier, pilot-friendly aircraft merging fun, function, and future-forward design to expand access and steer urban air mobility toward adventure.

Built for simplicity, safety, and ease of use, Helix employs a fixed-rotor multirotor configuration with no moving control surfaces or tilting wings. Semi-autonomous, assistive flight features help novice pilots, reducing the learning curve and enhancing safety while lightweight structures and electric propulsion keep handling easy.

Designed to comply with FAA Part 103 Ultralight Rules, Helix can be flown in the United States without a traditional pilot’s license, opening the door to broader personal ownership and use. Free from vertiport dependence, it can operate from small private properties or clear fields, significantly lowering adoption barriers.
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Amphenol Aerospace
High-Power Interconnect Solutions for Next-Gen eVTOL Systems

As urban air mobility rapidly evolves, Amphenol Aerospace provides mission-critical interconnect technologies to power the future of eVTOL aircraft.

With decades of aerospace leadership, Amphenol delivers high-voltage, high-current connectors designed to meet the unique challenges of electric flight—including altitude resilience, EMI protection, and SWaP optimization.

Their portfolio includes 38999 high-voltage connectors rated up to 1500 VDC at 50,000 feet, customizable High Power 5015 connectors, and the Voltarius™ interconnect system for fast-charging and propulsion applications.

Supporting advanced eVTOL platforms like those from Joby and Archer, Amphenol is helping manufacturers accelerate toward FAA certification and commercial launch. When reliability, power density, and safety matter most—Amphenol connects the future of flight.
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POLYVANTIS
Advanced Thermoplastic Glazing & Interior Materials for eVTOL

POLYVANTIS is a global multi-material supplier of high-quality acrylic (PMMA) and polycarbonate (PC) semi-finished products, bringing together iconic brands including PLEXIGLAS®, ACRYLITE®, LEXAN™ Film & Sheet, and EUROPLEX®. Across sheets and films, the company focuses on lightweight, durable thermoplastics engineered for demanding transportation environments—where optical clarity, impact resistance, and consistent processing are essential.

For the eVTOL community, POLYVANTIS’ aviation portfolio supports aircraft glazing and cabin interior applications—from passenger windows and cockpit glazing to interior panels—designed to meet stringent aviation expectations, including fire, smoke, and toxicity (FST) requirements.

Their materials help OEMs balance safety and weight targets while enabling modern cabin experiences through clarity, formability, and robust surface protection options (e.g., hard-coated and abrasion-resistant solutions depending on the grade).
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Q5D
Reinventing Aircraft Wiring for the Electric Aviation Era
Wiring harnesses are emerging as one of the industry’s biggest hidden challenges—adding weight, increasing assembly complexity and limiting manufacturing scalability. Q5D is fundamentally rethinking how aircraft electrical systems are designed and built.

Its patented robotic manufacturing technology deposits insulated wiring, conductive tracks and electrical connections directly onto complex three-dimensional structures, eliminating much of the manual harness assembly traditionally required in aerospace manufacturing. The result is lighter aircraft, simplified assembly, improved reliability and significantly greater manufacturing consistency.

For eVTOL manufacturers, the technology offers an opportunity to integrate wiring directly into airframes, battery enclosures and interior structures, reducing component count while supporting the growing number of sensors, flight-control systems, power electronics and data networks required by next-generation electric aircraft.

As the industry shifts from prototype development to scalable production, Q5D is demonstrating that manufacturing innovation can be just as important as aircraft innovation—helping OEMs reduce weight, simplify supply chains and prepare for high-rate production.
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TAT Technologies
Thermal Management Systems for Next-Generation eVTOL Aircraft

TAT Technologies provides aerospace thermal management, environmental control, and component support solutions for commercial, defense, and next-generation aircraft. Its portfolio includes heat exchangers, cold plates, power electronics cooling systems, air-cycle and vapor-cycle environmental control systems, and MRO services for thermal, APU, and landing gear systems.

For eVTOL manufacturers, TAT Technologies’ cooling systems address one of electric aviation’s most critical challenges: managing heat across batteries, motors, inverters, power electronics, and cabin environments. The company’s eVTOL solutions are designed to be efficient, modular, scalable, compact, and lightweight, with high-voltage and DO-160 compliant components suited to demanding electric aircraft mission profiles.

By combining decades of aerospace thermal expertise with dedicated next-generation aircraft solutions, TAT Technologies helps eVTOL developers improve reliability, passenger comfort, and system efficiency. Its technology positions the company as a valuable partner for building safer, cooler, and more scalable electric vertical flight platforms.
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Fictiv
Digital Manufacturing Platform for Faster eVTOL Development

Fictiv provides a digital manufacturing platform that helps engineering teams source custom mechanical parts from prototype through production. Its capabilities include CNC machining, 3D printing, injection molding, urethane casting, sheet metal, die casting, and compression molding, giving aircraft developers a flexible route to high-quality parts across multiple stages of product development.

For eVTOL manufacturers, Fictiv’s platform can accelerate the production of complex components such as housings, brackets, thermal management parts, tooling, cabin hardware, and test fixtures. With instant quoting, design-for-manufacturing feedback, material selection support, and access to vetted manufacturing capacity, Fictiv helps teams move quickly from CAD to physical parts while maintaining visibility, quality, and supply-chain control.

By simplifying custom part sourcing and supporting both rapid prototyping and scalable production, Fictiv helps eVTOL companies reduce development bottlenecks and respond faster to design iteration, testing, and certification needs. Its technology positions the company as a valuable manufacturing partner for eVTOL programs working to bring lightweight, reliable, and production-ready aircraft to market.
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USA Rare Earth
Securing the Critical Materials Behind Electric Flight

Securing resilient supplies of critical minerals has become as important as advancing aircraft technology. USA Rare Earth is building one of the first fully integrated domestic rare earth supply chains in the United States, supporting the production of the permanent magnets essential for high-performance electric motors used in eVTOL aircraft.

2026 marks a major step forward as the company accelerates development of its integrated U.S. platform—from rare earth mining and processing in Texas to magnet manufacturing at its new Oklahoma facility. By establishing a domestic source of rare earth oxides, metals and high-performance permanent magnets, USA Rare Earth aims to reduce dependence on overseas supply chains while strengthening America’s advanced manufacturing capabilities.

For the eVTOL industry, access to high-performance NdFeB permanent magnets is fundamental to the next generation of lightweight, high-efficiency electric propulsion systems. As demand accelerates across aerospace, automotive and defence sectors, supply chain security is becoming a strategic issue rather than simply a procurement challenge.

As electric aviation moves towards large-scale production, USA Rare Earth is helping ensure that one of its most critical technologies—the electric motor—has a secure and sustainable domestic supply chain.
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AIBOT
Building AI-Defined Aircraft for Autonomous Advanced Air Mobility

As Advanced Air Mobility moves toward real-world deployment, the industry faces a new challenge: developing intelligent, autonomous aircraft systems capable of combining safety, performance and scalability.

AIBOT is addressing this challenge through its AI-defined, software-driven aiEVTOL aircraft platform. Designed to integrate electric propulsion, autonomous flight technologies, advanced connectivity and high-performance computing, AIBOT’s ecosystem aims to make next-generation air mobility more accessible, efficient and intelligent.

In 2026, AIBOT continues to advance its flight testing, aircraft development and regulatory engagement, building on key milestones including successful eVTOL operations at the Norton Test Range. With a focus on autonomy, software-defined aviation and electric propulsion, the company is positioning itself as a pioneer in the future of connected, intelligent flight.

As the industry prepares for commercial Advanced Air Mobility, AIBOT is proving that the future of aviation will be shaped not only by electric aircraft—but by the AI-powered systems that enable them to fly smarter, safer and at scale.
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Infineon Technologies
Power Electronics Enabling the Next Generation of Electric Flight

Every eVTOL aircraft depends on one critical technology: efficient power electronics. Infineon Technologies is helping manufacturers maximise range, reduce weight and improve reliability through advanced semiconductor solutions that manage the flow of energy across electric propulsion, battery systems and flight controls.

Its portfolio—including CoolSiC™ silicon carbide power semiconductors, EiceDRIVER™ gate drivers, AURIX™ microcontrollers and XENSIV™ sensors—supports everything from traction inverters and battery management systems to electric motors and safety-critical control architectures. As the industry moves towards higher-voltage platforms and greater power densities, Infineon's wide-bandgap SiC and GaN technologies are enabling smaller, lighter and more efficient propulsion systems.

2026 has seen Infineon continue expanding its next-generation silicon carbide portfolio, including the latest CoolSiC™ Gen2 devices, delivering improved efficiency, reduced switching losses and higher power density—key technologies for extending flight range and accelerating the commercial viability of electric aircraft.

With decades of leadership in automotive electrification and a rapidly growing aerospace presence, Infineon is helping OEMs translate proven electric vehicle technologies into the next generation of certified electric aircraft.
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Constellium
Engineering the Lightweight Structures Behind Electric Flight

Drawing on decades of experience supplying the commercial aerospace industry, Constellium develops aerospace-grade plates, sheets, extrusions and precision components that combine exceptional strength with reduced weight and excellent manufacturability. Its proprietary Airware® aluminium-lithium alloys offer significant weight savings over conventional aerospace materials while maintaining the structural performance required for next-generation aircraft.


2026 has seen Constellium continue investing in advanced aerospace manufacturing and sustainable materials technologies, reinforcing its commitment to lightweight design and closed-loop aluminium recycling. As aircraft manufacturers increasingly balance performance with sustainability, the company is helping demonstrate that lower-weight structures and lower-carbon manufacturing can be achieved together.

For the AAM sector, Constellium offers more than aerospace materials—it provides the manufacturing scale, certification experience and engineering expertise needed to support the industry's transition from prototype aircraft to high-volume commercial production.

As electric aviation matures, Constellium is proving that the future of flight will be shaped as much by advances in materials engineering as by propulsion and battery technology.
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Nicomatic
Miniaturising the Electronics Behind Electric Flight

As eVTOL aircraft become increasingly electric and software-defined, the demand for compact, lightweight and highly reliable electrical interconnects has never been greater. Nicomatic Americas is helping manufacturers meet that challenge through advanced micro-connectors, cable assemblies and integrated interconnect solutions designed for mission-critical aerospace applications.

From flight control systems and avionics to battery management, cockpit electronics, actuators and power distribution, Nicomatic’s technologies enable high-density electrical architectures while reducing weight, saving space and improving system reliability. Its customised interconnect solutions help OEMs simplify integration, accelerate development and support certification-ready aircraft designs.

With engineering and manufacturing capabilities across North America and Europe, Nicomatic works closely with aerospace innovators to deliver rapid design support and tailored solutions for next-generation electric aircraft.

As the industry moves towards increasingly integrated electrical systems, Nicomatic is demonstrating that the future of electric flight depends not only on batteries and propulsion—but on the reliable transmission of power, data and control signals throughout the aircraft.
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Collier Aerospace
Accelerating Lightweight Aircraft Design Through Digital Engineering
As eVTOL manufacturers race to reduce weight while meeting increasingly demanding certification requirements, digital engineering has become a critical competitive advantage. Collier Aerospace’s HyperX® structural optimisation platform helps aircraft developers design lighter, stronger and more manufacturable airframes while significantly reducing engineering effort and development time.

HyperX integrates structural analysis, sizing optimisation and certification reporting into a single workflow, enabling engineers to optimise composite laminates, metallic structures, stiffened panels and complex load-bearing components using finite element analysis.

By automating stress analysis, design iteration and certification-ready documentation, the platform allows engineering teams to evaluate structural trade-offs faster while generating fully traceable margins, equations and compliance reports.

As the industry moves from prototype development towards certified production, software is becoming as important as hardware. Digital optimisation enables OEMs to reduce structural mass, improve manufacturing efficiency and shorten development cycles—without compromising safety or certification confidence.

Used across commercial aerospace and increasingly relevant to Advanced Air Mobility, Collier Aerospace is helping engineers solve one of electric aviation’s most fundamental challenges: how to build aircraft that are lighter, stronger, certifiable and commercially viable.
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Schneider Electric
Powering the Infrastructure Behind Advanced Air Mobility

The industry faces a new challenge: delivering reliable, high-capacity electrical infrastructure capable of supporting rapid charging, fleet operations and resilient energy management.

Schneider Electric is helping solve that challenge through intelligent energy management, microgrids, digital automation and grid optimisation technologies. Its EcoStruxure™ platform enables airports, vertiports and charging hubs to integrate high-power charging, battery energy storage, renewable generation and real-time load management—helping operators maximise efficiency while maintaining grid stability.

2026 has seen Schneider continue expanding its investment in digital energy infrastructure and AI-enabled grid management, technologies that will play a vital role as electric aviation begins operating at scale. With decades of experience supporting critical infrastructure worldwide, the company is uniquely positioned to help airports and vertiport operators transition from demonstration projects to commercially viable networks.

As the industry prepares for the next generation of electric aviation, Schneider Electric is proving that the future of flight depends not only on aircraft—but on the intelligent energy systems that keep them flying.
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Bloomy
HIL Simulation & Validation Systems for eVTOL Flight Control & Battery Management

Bloomy is accelerating the development and certification of eVTOL aircraft with cutting-edge hardware-in-the-loop (HIL) test systems that validate flight control and energy management systems in real time.
Their eVTOL Integrated HIL Test System provides a repeatable, closed-loop environment to simulate control surfaces and battery behavior during all flight phases—forward, vertical, and transitional.

By combining Bloomy’s powerful BS1200 battery simulator with platforms from NI, The MathWorks, and others, the system enables high-fidelity testing for system integration labs (SILs), significantly reducing cost, complexity, and time to market.

From digital transformation to certification readiness, Bloomy delivers proven tools for efficient, scalable testing of mission-critical eVTOL electronics—from tip to tail.
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Lynx Software Technologies
Building the Certifiable Software Behind Electric Flight

As eVTOL aircraft become increasingly software-defined, ensuring that safety-critical systems remain secure, deterministic and certifiable has become one of the industry’s greatest engineering challenges. Lynx Software Technologies provides the trusted software platforms that enable next-generation aircraft to meet those demands.

Its LynxOS-178® real-time operating system and LYNX MOSA.ic™ framework allow flight-critical software, avionics, autonomy, connectivity and mission applications to run securely on a single computing platform while maintaining strict isolation between safety-critical and non-critical functions. This mixed-criticality architecture helps OEMs reduce hardware complexity, accelerate development and simplify certification under DO-178C.

As aircraft increasingly rely on multi-core processors, AI, connected systems and software updates, Lynx is helping manufacturers build secure, cyber-resilient and certification-ready digital architectures capable of supporting the next generation of electric aircraft.

Trusted across commercial aerospace, defence and space, Lynx Software Technologies is enabling OEMs to move beyond conventional avionics towards the software-defined aircraft of the future.
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Olsen Actuators & Drives
Olsen proudly partnered with a leading UK aerospace innovator to deliver a custom eVTOL actuator system that redefines performance and integration in next generation flight. Designed from the ground up, this complete solution combines precision actuation, advanced power electronics and safety critical control software. The actuator was engineered to fit within a compact, space constrained platform.

Delivering 17kN of force at 5mm/s while operating efficiently between 22–32V, the actuator weighs just 3.5kg. Tested and certified to DO160G, DO178 and DO254 aerospace standards, it demonstrates Olsen’s commitment to reliability, safety, and innovation.

Designed, manufactured, assembled and tested in the UK, Olsen’s lightweight aerospace actuators combine durability with precision engineering. Featuring high torque density gearheads and precision ground roller screws, our solutions offer long life, low maintenance and outstanding performance. Whether integrated within the actuator or supplied separately, our electronics deliver seamless control for tomorrow’s flight systems.
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Greene Tweed
Lightweight Composites & Sealing for eVTOL Reliability

Greene Tweed supplies the eVTOL sector with aerospace-proven thermoplastic composites, seals, and engineered interconnects that cut weight while boosting durability and safety. Its flagship Xycomp® DLF™ compression-molded composite replaces complex-shape metallic parts across airframes and interiors with typical 35–50% weight savings (and up to ~60% in targeted applications) while maintaining exceptional fatigue, vibration, and impact resistance—complete with ready-to-share design allowables. eVTOL use cases span seat and cabin components, brackets, fairings, and systems hardware where every gram matters.

Beyond structures, Greene Tweed’s Seal-Connect® electrical and fiber-optic connectors and advanced sealing technologies help ensure reliable power and data transmission in harsh aviation environments—lightweight, corrosion-resistant, and qualified for high temperature and pressure extremes. For high-energy systems, the company develops materials for battery enclosures—including Arlon® 3160XT (glass-reinforced, cross-linked PEEK) evaluated under UL 2596 Torch & Grit (TaG) screening—to enhance thermal and flame resistance for electric propulsion safety.
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Glenair
A World of Interconnect Solutions

Glenair, Inc. began operations in 1956 as the first company specifically founded to produce electrical connector accessories. Building on that foundation, we now offer a dozen, full-spectrum product lines designed to meet every interconnect requirement, including a broad range of military qualified and commercial connectors, including the MIL-DTL-38999 Series III and our ultralight Series 80 Mighty Mouse.

Glenair is a privately-held company whose strengths include ISO 9001 process quality, full-spectrum product lines, fast “turnaround” on quotes and custom orders, unsurpassed sales and technical support in every major market in the world, and the industry’s largest standing inventory of commercial and Mil-Spec electrical connector accessories.

Located in Glendale, California, our connectors, backshells and interconnect cable assemblies are all made either in America or in our facilities in Mansfield, England or Bologna, Italy. With so many interconnect manufacturers moving their production operations to Estonia, Mexico, India, China and elsewhere, Glenair is proud to continue our long-standing tradition of making our products in quality controlled plants here in the USA, or in the case of selected connector products, in Western Europe.
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VAC Magnetics
Magnetic Materials & Components for High-Performance eVTOL Propulsion

VAC is a global leader in advanced magnetic materials and components for next-generation electric motors and generators—critical to the success of eVTOL propulsion systems. With deep expertise in permanent magnets, cobalt-iron and nickel-iron alloys, lamination stacks, and custom rotor and stator assemblies, VAC enables lightweight, high-efficiency electric propulsion under the most demanding aerospace conditions. Their VACODYM® (NdFeB) and VACOMAX® (SmCo) magnet technologies offer superior energy density, thermal stability, and corrosion resistance—making them ideal for mission-critical e-flight applications. From materials science to final assembly, VAC offers a unique one-stop solution for electrified aviation.
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RAM Aviation, Space & Defense
Enabling Precision Control for Next-Generation Aerospace Systems

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: ensuring that eVTOL and advanced aircraft platforms can rely on compact, high-performance actuation and fluid-control components across increasingly complex electric and hybrid systems.

RAM Aviation, Space & Defense is helping address that challenge through precision solenoids, solenoid valves, manifolds, fuel-control valves, check valves and relief valves for demanding aerospace and defence applications. Its custom engineering and contract manufacturing capabilities support flight-critical systems where reliability, responsiveness and weight efficiency are essential.

In 2026, RAM ASD continues to build on its aerospace manufacturing heritage, supplying components for aircraft, space and defence platforms while supporting the broader shift toward electrified and autonomous aviation. As advanced aircraft architectures evolve, the company’s experience in precision control technologies positions it as a valuable supplier for next-generation air mobility systems.

As the industry prepares for scalable electric aviation, RAM ASD is proving that the future of flight depends not only on aircraft and propulsion—but on the precision components that keep critical systems performing safely and consistently.
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Sensata
Technologies

Enabling the Sensing and Protection Systems Behind Electric Aviation

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: ensuring that electric and hybrid-electric aircraft can operate safely, efficiently and reliably across high-voltage, flight-critical systems.

Sensata Technologies is helping address that challenge through sensor-rich solutions, electrical protection devices, cockpit controls and electrified flight technologies designed for demanding aerospace environments. Its Advanced Air Mobility portfolio supports eVTOL, eSTOL and eCTOL aircraft, with solutions for electric propulsion drivetrains, charging infrastructure, battery systems, thermal management and high-voltage protection.

In 2026, Sensata continues to support the electrification of aviation through lightweight, reliable and certified technologies for aircraft and infrastructure applications. As OEMs and AAM operators move from prototypes to scalable platforms, the company’s experience in mission-critical sensing, control and protection systems positions it as an important enabler of safer electric flight.

As the industry prepares for the next generation of aviation, Sensata Technologies is proving that the future of eVTOL depends not only on aircraft design—but on the intelligent sensing and protection systems that make electrified flight safe, connected and commercially viable.
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Free Flight Systems
Supporting the Avionics Backbone of Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: integrating eVTOL aircraft into increasingly complex low-altitude airspace with the precision, reliability and situational awareness required for safe operations.

FreeFlight Systems is helping address that challenge through certified avionics solutions including ADS-B, GNSS/SBAS receivers and radar altimetry systems engineered for rotorcraft, eVTOL and next-generation mobility platforms. Its technologies support surveillance, navigation, altitude awareness and airspace compliance—critical capabilities as aircraft move from demonstration flights into shared operating environments.

In 2026, FreeFlight Systems continues to support Urban Air Mobility programmes with 5G-resilient radar altimeters, ADS-B In solutions and lightweight avionics designed for seamless integration into advanced flight decks. With decades of experience in NextGen avionics, the company is positioned to help OEMs and operators build the safety foundation required for scalable electric flight.

As the industry prepares for the next generation of aviation, FreeFlight Systems is proving that the future of eVTOL depends not only on aircraft—but on the trusted avionics systems that allow them to operate safely in modern airspace.
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Astronics Corporation
Powering the Systems Behind Next-Generation Electric Flight

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: delivering reliable aircraft power systems capable of supporting high-voltage propulsion architectures, flight-critical electronics and increasingly complex eVTOL platforms.

Astronics Corporation is helping address that challenge through advanced aerospace technologies spanning electrical power distribution, power conversion, lighting, connectivity, avionics and test systems. Its eVTOL and Urban Air Mobility solutions are designed to support electric aircraft with scalable, lightweight and fault-protected power infrastructure for avionics, flight controls, navigation and other critical systems.

In 2026, Astronics continues to expand its role in the eVTOL sector, including a long-term agreement to supply low-voltage power distribution for Vertical Aerospace’s Valo aircraft, following earlier work with multiple electric aircraft OEMs. With deep aerospace certification experience and a growing portfolio of more-electric aircraft technologies, the company is positioned to help OEMs move from prototype platforms to production-ready aircraft.

As the industry prepares for scalable electric aviation, Astronics is proving that the future of eVTOL depends not only on airframes and propulsion—but on the power and electronic systems that make safe, certified flight possible.
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Bender
Safeguarding the Electrical Systems Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: ensuring that high-voltage electric aircraft and charging systems can operate safely, reliably and continuously across demanding aviation environments.

Bender Inc is helping address that challenge through advanced ground-fault detection, insulation monitoring and electrical safety technologies for unearthed power systems. Its solutions support electric aircraft, eVTOL platforms, battery systems, fuel cells and charging infrastructure by detecting insulation faults early, reducing electrical risk and improving system availability.

In 2026, Bender continues to expand its role in electric aviation through technologies designed for safer, smarter and more resilient electrical infrastructure. With decades of expertise in electrical safety across critical industries, the company is well positioned to support manufacturers and operators as advanced aircraft move from prototype development to certified, scalable operations.

As the industry prepares for the next generation of electric flight, Bender Inc is proving that the future of Advanced Air Mobility depends not only on propulsion and aircraft design—but on the intelligent safety systems that keep electrified aviation reliable.
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Momentive
Advancing the Materials Behind Electric Vertical Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: protecting high-voltage electronics, batteries and propulsion systems from heat, vibration, moisture and environmental stress.

Momentive is helping address that challenge through advanced silicone materials for aerospace, aviation and eVTOL applications. Its adhesives, sealants, coatings, encapsulants and thermally conductive materials support heat dissipation, electrical insulation, environmental protection and long-term reliability across increasingly compact and power-dense electric aircraft systems.

In 2026, Momentive continues to support next-generation aerospace innovation through high-performance material solutions for electronics, propulsion, batteries and flight-critical components. With decades of experience in aviation, space and defence applications, the company is positioned to help eVTOL manufacturers move from prototype platforms to durable, certifiable aircraft.

As the industry prepares for scalable electric aviation, Momentive is proving that the future of flight depends not only on propulsion and aerodynamics—but on the advanced materials that protect the systems making electric flight possible.
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Dewesoft
Testing the Technologies Behind Advanced Air Mobility

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: validating increasingly complex electric aircraft systems with precision, speed and confidence.

DEWESoft is helping address that challenge through advanced data acquisition, measurement and testing solutions for eVTOL and aerospace applications. Its systems support structural, NVH, electric propulsion, flight testing and real-time telemetry—helping engineering teams capture synchronised data across aircraft components, subsystems and complete platforms.

In 2026, DEWESoft continues to expand its aerospace testing capabilities, supporting the development of electric aircraft, propulsion systems and next-generation flight technologies. With high-precision tools designed for demanding test environments, the company is positioned to help manufacturers accelerate development while improving performance, reliability and certification readiness.

As the industry prepares for scalable electric aviation, DEWESoft is proving that the future of eVTOL depends not only on aircraft innovation—but on the measurement systems that validate every step toward safe, certifiable flight.
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East/West Industries
Advancing Safety Systems for the Future of Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: ensuring that next-generation aircraft protect crew and passengers with the same rigour expected across certified aerospace and defence platforms.

East/West Industries Inc. is helping address that challenge through advanced aircraft seating, crashworthy systems, life-support equipment and safety-critical components for fixed-wing, rotary-wing and emerging aviation platforms. Its engineering and manufacturing expertise supports mission-ready systems designed to enhance survivability, reliability and operational safety in demanding flight environments.

In 2026, East/West continues to build on more than five decades of aerospace safety innovation, supporting aircraft manufacturers, operators and defence customers with solutions that protect lives while meeting stringent certification and performance requirements. As new aircraft architectures enter the market, the company’s experience in aircrew safety provides a valuable foundation for the wider Advanced Air Mobility ecosystem.

As the industry prepares for the next generation of flight, East/West Industries is proving that the future of eVTOL depends not only on propulsion and autonomy—but on safety systems designed to protect every mission.
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Element Materials Technology
Validating the Materials Behind Advanced Air Mobility

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: proving that new aircraft materials, batteries, electronics and systems can perform safely under demanding flight conditions.

Element Materials Technology is helping address that challenge through testing, inspection and certification services for aerospace materials, components and products. Its capabilities support composites, metals, batteries, environmental simulation, fire testing, EMC, vibration, fatigue and product qualification—helping aircraft developers validate safety, performance and compliance across the full development lifecycle.

In 2026, Element continues to expand its aerospace testing capabilities, supporting both established manufacturers and emerging electric aviation programmes. With global laboratories and expertise across highly regulated industries, the company is positioned to help eVTOL and advanced aircraft manufacturers move from prototype innovation to certifiable, production-ready platforms.

As the industry prepares for scalable electric aviation, Element Materials Technology is proving that the future of flight depends not only on aircraft innovation—but on the independent testing and certification confidence that makes new technologies safe to fly.
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Epsilon3
Digitising the Operations Behind Advanced Air Mobility

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: managing increasingly complex engineering, testing, manufacturing and flight operations with the reliability required for high-frequency aviation.

Epsilon3 is helping address that challenge through software built for complex aerospace operations. Its platform supports structured procedures, test campaigns, pre-flight checklists, maintenance workflows, telemetry integration, operator sign-off and audit-ready reporting—giving aviation and VTOL teams a digital operating system for safety-critical work.

In 2026, Epsilon3 continues to expand its role across aviation, VTOL, space and defence, supporting organisations that need to coordinate high-stakes operations with precision and traceability. Designed by leaders from SpaceX, Northrop Grumman and NASA, the company’s software is positioned to help advanced aircraft developers move from prototype testing to repeatable, scalable operations.

As the industry prepares for the next generation of electric flight, Epsilon3 is proving that the future of eVTOL depends not only on aircraft—but on the digital procedures and operational discipline that make complex missions safe, routine and repeatable.
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ERG Aerospace
Engineering Lightweight Materials for the Future of Electric Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: reducing aircraft weight while improving thermal management, impact protection and system reliability across increasingly power-dense electric platforms.

ERG Aerospace is helping address that challenge through Duocel®, its proprietary open-cell foam technology used in metal, carbon and ceramic materials. Engineered for lightweight structures, heat exchangers, energy absorbers, air-oil separators and thermal protection systems, Duocel® enables aerospace manufacturers to design compact, high-performance components for demanding flight environments.

In 2026, ERG Aerospace continues to support next-generation aviation through advanced foam-based solutions for aerospace, defence, space and eVTOL applications. Its materials are used in products including heat buffers, impact protection and thermal-management systems—technologies that can help electric aircraft manage weight, heat and safety requirements as they move toward production.

As the industry prepares for scalable Advanced Air Mobility, ERG Aerospace is proving that the future of eVTOL depends not only on propulsion and batteries—but on the lightweight material systems that make electric flight safer, more efficient and commercially viable.
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Quantum Motors
Driving High-Efficiency Propulsion for Electric Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: delivering electric propulsion systems with the efficiency, redundancy and thermal performance required for safe, lightweight eVTOL aircraft.

Quantum Motors is helping address that challenge through next-generation electric motor technologies designed to reduce energy loss, improve power density and minimise cooling requirements. Its axial-flux architecture and multi-phase motor approach are positioned for VTOL lift and cruise applications where every kilogram, watt and safety margin matters.

In 2026, Quantum Motors continues to build visibility within the eVTOL supply chain, promoting high-efficiency propulsion solutions for aircraft, drones and hydrogen-electric systems. As manufacturers work to extend range, improve safety and reduce system complexity, the company’s focus on compact, naturally cooled electric motors aligns with the performance demands of next-generation air mobility.

As the industry prepares for scalable electric aviation, Quantum Motors is proving that the future of eVTOL depends not only on aircraft design—but on propulsion technologies that make electric flight lighter, safer and more efficient.
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Henkel
Bonding the Materials Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: building eVTOL aircraft that are lightweight, durable and thermally protected while meeting the safety and reliability expectations of certified aviation.
Henkel is helping address that challenge through advanced adhesives, sealants, coatings and functional materials for aerospace and urban air mobility applications. Its solutions support structural bonding, composite assembly, battery systems, thermal management, lightning strike protection and electronics protection—helping aircraft manufacturers reduce weight, improve energy efficiency and protect critical systems.

In 2026, Henkel continues to support the evolution of eVTOL and next-generation aerospace platforms by applying decades of materials expertise from aviation, automotive electrification and electronics.

As manufacturers move from prototypes to production, Henkel’s adhesive technologies are positioned to help accelerate scalable, safe and sustainable electric flight.

As the industry prepares for the next generation of aviation, Henkel is proving that the future of eVTOL depends not only on aircraft design and propulsion—but on the material technologies that hold, protect and enable every critical system.
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Hesse Mechatronics
Bonding the Power Electronics Behind Electric Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: manufacturing high-performance battery packs and power electronics with the reliability, precision and scalability required for flight-critical electric aircraft.

Hesse Mechatronics is helping address that challenge through advanced ultrasonic wire bonding, smart welding and laser welding systems for battery cell contacting, power modules and electronics assembly. Its automated joining technologies support robust, lightweight and highly repeatable electrical connections—critical for eVTOL batteries, inverters, control systems and high-voltage architectures.

In 2026, Hesse continues to advance bonding and welding technologies for electromobility and power electronics, including intelligent process monitoring, AI-supported quality control and customised automation. As electric aircraft manufacturers move from prototype builds to industrial-scale production, the company’s expertise in zero-defect manufacturing is positioned to support safer, more reliable electrified flight.

As the industry prepares for scalable Advanced Air Mobility, Hesse Mechatronics is proving that the future of eVTOL depends not only on aircraft and propulsion—but on the precision manufacturing technologies that connect and validate every critical electrical system.
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Hoverdrone Developments
Expanding the Capabilities of Vertical Flight Through Advanced Drone Technology

As Advanced Air Mobility continues to evolve, the industry faces a new challenge: developing highly capable vertical flight platforms that can perform complex missions safely, efficiently and autonomously across commercial, industrial and emergency applications.

Hoverdrone Developments is helping address that challenge through the design and development of advanced VTOL aircraft engineered for demanding operational environments. By combining innovative airframe design, electric propulsion technologies and mission-focused engineering, the company is developing versatile aerial platforms capable of supporting inspection, logistics, surveillance, emergency response and other emerging low-altitude aviation applications.

In 2026, Hoverdrone Developments continues to advance its aircraft technologies while working to expand the practical use of unmanned and remotely operated VTOL systems. With a focus on reliability, operational flexibility and scalable deployment, the company is contributing to the broader ecosystem that is enabling the next generation of Advanced Air Mobility.

As the industry prepares for increasingly integrated airspace and autonomous operations, Hoverdrone Developments is demonstrating that the future of flight depends not only on new aircraft concepts—but on practical, mission-ready technologies that bring advanced aerial mobility into everyday use.
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Integrated Technologies Inc.
Certifying the Composite Structures Behind eVTOL Flight

As Advanced Air Mobility moves toward commercial certification, the industry faces a new challenge: proving that lightweight composite structures can meet the safety, repeatability and performance requirements of electric aircraft.

Integrated Technologies Inc. is helping address that challenge through advanced aerospace materials testing, composite manufacturing, non-destructive inspection and certification support. Based in Everett, Washington, InTec supports commercial, defence and aerospace customers with structural testing, laminate and sandwich panel fabrication, machining, NDI and material allowables development for next-generation aircraft programmes.

In 2026, InTec continues to build its role in the eVTOL supply chain, including support for Joby Aviation’s electric vertical take-off and landing aircraft testing requirements. With nearly four decades of aerospace experience, the company is positioned to help manufacturers move from prototype innovation to certifiable, production-ready composite structures.

As the industry prepares for scalable electric aviation, Integrated Technologies Inc. is proving that the future of eVTOL depends not only on bold aircraft designs—but on validated materials, repeatable processes and test data that turn innovation into airworthy reality.
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ITT Enidine
Protecting the Systems Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: ensuring that eVTOL aircraft can withstand vibration, shock, motion and noise across increasingly lightweight and high-performance platforms.

ITT Enidine is helping address that challenge through engineered energy absorption, vibration isolation, noise attenuation and motion control technologies for aerospace and defence applications. Its dampers, isolators, rate controls, snubbers and customised protection systems support aircraft interiors, avionics, landing systems, actuation and other mission-critical environments where safety, reliability and passenger comfort are essential.

In 2026, ITT Enidine continues to build on decades of aerospace experience as part of ITT’s Connect & Control Technologies portfolio. With expertise in highly engineered components for demanding aviation platforms, the company is positioned to support eVTOL and Advanced Air Mobility manufacturers as they move from prototype aircraft to certifiable, production-ready systems.

As the industry prepares for scalable electric aviation, ITT Enidine is proving that the future of eVTOL depends not only on propulsion and airframes—but on the protection technologies that keep aircraft systems stable, reliable and safe.
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JL Mag USA
Supplying the Magnetic Materials Behind Electric Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: delivering compact, lightweight and highly efficient electric propulsion systems capable of supporting the performance demands of eVTOL aircraft.

JL Mag is helping address that challenge through high-performance neodymium-iron-boron permanent magnets used in electric motors, actuators and other power-dense systems. Its magnetic materials support next-generation electrification across new energy vehicles, industrial motors, robotics and low-altitude aircraft—applications where efficiency, reliability and power density are critical.

In 2026, JL Mag continues to expand its role in emerging electrification markets, including low-altitude aircraft, while strengthening production capacity, R&D and advanced magnetic component development. As eVTOL manufacturers move from prototype aircraft to scalable production, the company’s expertise in rare-earth permanent magnets positions it as an important supplier to the electric aviation ecosystem.

As the industry prepares for the next generation of flight, JL Mag is proving that the future of eVTOL depends not only on aircraft design—but on the high-performance magnetic technologies that make electric propulsion lighter, more efficient and commercially viable.
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M4 Engineering
Engineering the Aircraft Concepts Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: designing aircraft that can balance performance, safety, efficiency and manufacturability across entirely new electric and hybrid-electric architectures.

M4 Engineering is helping address that challenge through advanced aerospace design, analysis, optimisation and certification-support services. Its expertise spans conceptual aircraft design, structures, aerodynamics, loads, simulation and multidisciplinary optimisation—capabilities that support eVTOL developers, aircraft OEMs and research programmes working to turn new mobility concepts into practical, flight-ready platforms.

In 2026, M4 Engineering continues to contribute to the future of electric aviation through work across urban air mobility, advanced rotorcraft, NASA research initiatives and next-generation aircraft development. With deep experience in complex aerospace engineering and a track record supporting pioneering AAM programmes, the company is positioned to help manufacturers bridge the gap between ambitious concepts and certifiable aircraft.

As the industry prepares for scalable electric flight, M4 Engineering is proving that the future of eVTOL depends not only on bold aircraft ideas—but on the rigorous engineering, analysis and optimisation that make those ideas safe, efficient and commercially viable.
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Quantum3D
Simulating the Future of Advanced Air Mobility

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: preparing pilots, operators, regulators and aircraft developers for complex eVTOL operations before fleets enter real-world service.

Quantum3D is helping address that challenge through advanced visual simulation, synthetic environments and dedicated eVTOL flight simulators. Its technologies combine realistic visuals, flight behaviour modelling, mixed-reality capabilities and high-performance image generation to support aircraft development, training, evaluation and operational readiness across emerging urban air mobility ecosystems.

In 2026, Quantum3D continues to expand its role in eVTOL simulation, including hands-on demonstrations of its eVTOL simulator for OEMs, operators, airports, regulators and training organisations. With deep experience in defence, civil aviation and commercial simulation, the company is positioned to help Advanced Air Mobility stakeholders reduce risk, accelerate learning and build confidence before aircraft enter scalable operations.

As the industry prepares for the next generation of electric aviation, Quantum3D is proving that the future of eVTOL depends not only on aircraft—but on the simulation environments that make testing, training and certification safer, faster and more repeatable.
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Radiall Group
Connecting the Systems Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: integrating lightweight, reliable and high-power interconnect systems across increasingly complex electric aircraft architectures.

Radiall is helping address that challenge through aerospace-grade connectors, cable assemblies, fibre-optic systems and high-power interconnect solutions designed for demanding aviation environments. Its technologies support avionics, sensors, power distribution, propulsion interfaces and communications systems—critical functions for eVTOL and Urban Air Mobility platforms where weight, reliability and installation simplicity are essential.

In 2026, Radiall continues to expand its role in next-generation aviation, including interconnect solutions developed specifically for UAM and eVTOL applications. With more than 50 years of aerospace experience and AS9100-certified capabilities, the company is positioned to help aircraft manufacturers move from prototype systems to certifiable, production-ready electric aircraft.

As the industry prepares for scalable electric aviation, Radiall is proving that the future of eVTOL depends not only on propulsion and airframes—but on the high-performance connectivity that allows every critical system to communicate, power and operate safely.
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Sift
Building the Data Infrastructure Behind Advanced Air Mobility

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: managing the vast volumes of sensor, telemetry and test data generated by increasingly complex electric aircraft systems.

Sift is helping address that challenge through a data infrastructure platform built for hardware engineering teams developing mission-critical machines. Its software enables real-time telemetry analysis, anomaly detection, automated data review, root-cause investigation and certification-ready reporting—helping aerospace teams move faster while maintaining safety and traceability.

In 2026, Sift continues to expand its role across aerospace, defence, transportation and robotics, supporting teams building and testing next-generation aircraft and complex autonomous systems. Founded by former SpaceX engineers, the company brings experience from high-cadence, high-reliability aerospace programmes to the emerging AAM ecosystem, where rapid iteration and operational confidence will be essential.

As the industry prepares for scalable electric aviation, Sift is proving that the future of eVTOL depends not only on aircraft—but on the data systems that help engineers validate, operate and continuously improve them.
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The Partner Companies
Scaling the Precision Manufacturing Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: building reliable, scalable supply chains capable of supporting high-volume production of complex, mission-critical aircraft components.

TPC is helping address that challenge through a global network of specialty manufacturers producing precision thin-metal parts, components and custom assemblies for aerospace, defence, energy, medical and technology markets.

Its capabilities span photochemical etching, ceramic metallisation, crystal growth, electropolishing, machining, fabrication and finishing—supporting the demanding requirements of next-generation electric aircraft systems.

In 2026, TPC continues to expand its role in the eVTOL supply chain, bringing together companies including E-Fab, Elcon Precision, Fotofab, Lattice Materials, L&T Precision, Microphoto, Optiforms, PEI, Pinnacle Precision Metal and UPG. With experience across aerospace and advanced manufacturing, the company is positioned to help eVTOL manufacturers move from prototype builds to repeatable, production-ready supply networks.

As the industry prepares for scalable electric aviation, TPC is proving that the future of eVTOL depends not only on aircraft innovation—but on the precision manufacturing partners that can deliver critical components reliably, consistently and at scale.
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TRUMPF
Industrialising the Manufacturing Behind Electric Flight

As Advanced Air Mobility moves toward certification and commercial deployment, the industry faces a new challenge: producing lightweight, high-performance aircraft components at the scale, precision and quality required for electric aviation.

TRUMPF is helping address that challenge through laser technology, additive manufacturing and advanced production systems for aerospace applications. Its 3D printing and laser solutions support lightweight structures, battery manufacturing, power electronics, propulsion components and high-precision metal processing—helping manufacturers reduce weight, improve efficiency and strengthen supply-chain resilience.

In 2026, TRUMPF continues to support aerospace manufacturers as they transition from conventional production methods to more flexible, digital and sustainable manufacturing. With expertise across lasers, machine tools, additive manufacturing and e-mobility production, the company is positioned to help eVTOL developers and aircraft OEMs move from prototype innovation to scalable industrial production.

As the industry prepares for the next generation of electric aviation, TRUMPF is proving that the future of eVTOL depends not only on aircraft design—but on the manufacturing technologies that make lightweight, efficient and sustainable flight possible.
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WEVO CHEMICAL CORPORATION
Advanced Materials for Safe and Reliable eVTOL Systems

Wevo develops customized polyurethane-, epoxy-, and silicone-based adhesives, sealants, potting compounds, gap fillers, coatings, and encapsulants. These material solutions help to solve critical technical challenges across a wide range of eVTOL applications.

Thermally conductive and flame-retardant solutions support efficient heat dissipation, mitigation of thermal propagation in battery systems, and the protection of sensitive power electronic components and avionics under harsh operating conditions.
For electric propulsion systems, Wevo’s solutions protect motors, power modules, and electronic assemblies against moisture, thermal stress, and vibration while contributing to lightweight and durable system design.

In addition, Wevo has developed chemically resistant, low-permeability sealing and bonding solutions for fuel cell stacks and balance-of-plant components such as humidifiers in hydrogen-powered eVTOL platforms.

With extensive expertise in customized material development, Wevo supports eVTOL manufacturers in developing safer, lighter, and more reliable electrical and electronic systems for next-generation electric aircraft.
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XFlier
Reimagining Personal eVTOL Flight Through Safer Aircraft Design

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: creating personal eVTOL aircraft that combine efficiency, safety and simplicity while addressing public concerns around exposed rotors, range and operational practicality.

XFlier is helping address that challenge through a patented passenger eVTOL concept developed by inventor Stian Nilsen. Its design features pivoting, airfoil-shaped wings and enclosed propulsion nacelles, enabling vertical take-off and landing while improving lift, energy efficiency and safety in forward flight. The aircraft concept is designed for two passengers, with autonomous or remote piloting envisioned as the technology matures.

In 2026, XFlier continues to build visibility within the emerging personal eVTOL sector, presenting an alternative configuration focused on redundancy, enclosed propulsion and longer-range electric flight. With its emphasis on reducing mechanical complexity and improving passenger and ground safety, the concept reflects the wider industry push toward practical, user-friendly personal air mobility.

As the industry prepares for the next generation of electric aviation, XFlier is proving that the future of eVTOL will not only depend on power and autonomy—but on aircraft designs that make personal flight safer, simpler and more accessible.
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YIVTOL
Making Personal Electric Flight Accessible

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: making electric vertical flight safe, affordable and accessible beyond traditional aviation users.

YIVTOL is helping address that challenge through the S-ZERO, an ultra-light personal eVTOL aircraft designed for short-range, low-altitude flight. Combining compact design, electric propulsion, simplified controls and rapid battery swapping, the aircraft is positioned for tourism, recreation, training and emerging personal air mobility applications.

In 2026, YIVTOL continues to build momentum following key testing and delivery milestones, including wind wall and wind tunnel testing for the S-ZERO and the start of global customer deliveries. With a focus on usability, safety and practical deployment, the company is contributing to China’s fast-growing low-altitude economy and the wider global market for personal electric aviation.

As the industry prepares for the next generation of electric aviation, YIVTOL is proving that the future of Advanced Air Mobility will not only be defined by air taxis and urban networks—but also by personal aircraft that make low-altitude flight more accessible.
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Enersens
Protecting the Thermal Systems Behind Electric Flight

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: protecting batteries, power electronics and propulsion systems from heat, fire and thermal propagation while keeping aircraft lightweight and efficient.

Enersens is helping address that challenge through silica aerogel-based thermal barrier materials for electric and hybrid aviation. Its Skogar® range is designed for battery packs, power electronics, fire-zone insulation and other high-temperature applications, offering ultra-lightweight protection for eVTOL, native-electric aircraft and electric aircraft retrofit programmes.

In 2026, Enersens continues to scale its aerogel materials platform for aerospace, defence, energy systems and advanced industrial applications. Following its selection to provide thermal barriers for the Lilium Jet’s battery system, the company is positioned to support aircraft manufacturers as they move from prototype development toward safer, certifiable electric flight.

As the industry prepares for the next generation of aviation, Enersens is proving that the future of eVTOL depends not only on propulsion and battery performance—but on the advanced thermal protection systems that make electric flight safe, reliable and scalable.
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Applus+ Laboratories
Testing and Certifying the Technologies Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: proving that eVTOL aircraft, drones and autonomous aerial systems can meet rigorous safety, performance and certification requirements.

Applus+ Laboratories USA Inc. is helping address that challenge as part of Applus+ Laboratories’ global testing, inspection and certification network. Its aerospace capabilities support materials, structures, systems, high-voltage components, electric propulsion, batteries, EMC, environmental performance, fire testing and certification-ready reporting for advanced aircraft programmes.

In 2026, Applus+ Laboratories continues to support eVTOL OEMs with end-to-end testing and engineering services, from laboratory-based validation to in-flight testing and certification support. With accredited facilities across North America, Europe and Asia, the company is positioned to help manufacturers move from prototype development to safe, compliant and scalable electric aviation.

As the industry prepares for the next generation of flight, Applus+ Laboratories USA Inc. is proving that the future of eVTOL depends not only on aircraft innovation—but on the independent testing and certification confidence that enables new aircraft to enter shared airspace safely.
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COTESA
Manufacturing the Composite Structures Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: producing lightweight, high-strength aircraft structures that can meet the performance, safety and certification demands of electric aviation.

COTESA GmbH is helping address that challenge through advanced composite fibre components for aerospace and automotive applications. Its capabilities span CFRP profiles, stiffeners, frames, multidimensional GFRP sandwich structures and hybrid components, supporting aircraft manufacturers that require weight-efficient, durable and production-ready structural solutions.

In 2026, COTESA continues to build on its role as a leading composite supplier for aviation, with EN 9100:2018 certification, NADCAP Composite accreditation and long-term participation in major aircraft programmes. As eVTOL and advanced aircraft manufacturers move from prototype platforms toward industrial production, the company’s expertise in composite development, process design and series manufacturing is positioned to support safer, lighter and more efficient flight.

As the industry prepares for the next generation of electric aviation, COTESA is proving that the future of eVTOL depends not only on propulsion and batteries—but on the lightweight composite structures that make advanced aircraft efficient, certifiable and scalable.
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EV Bots, Inc.
Automating the Charging Infrastructure Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: keeping electric aircraft, ground vehicles and support fleets charged, inspected and operational with minimal downtime.

EV Bots Inc is helping address that challenge through autonomous robotic systems designed to charge, inspect and maintain electric fleets on demand. Its mobile charging and inspection platform brings energy and service capability directly to vehicles, reducing dependence on fixed infrastructure while improving operational efficiency across mixed electric fleets.

In 2026, EV Bots continues to develop autonomous charging robots that combine AI, robotics, battery systems and fleet intelligence. While initially focused on commercial electric vehicles, the company’s approach aligns with the needs of future vertiports, airports and advanced mobility hubs, where automated charging, inspection and maintenance will be essential to keeping high-frequency electric operations running safely and efficiently.

As the industry prepares for scalable electric aviation, EV Bots is proving that the future of Advanced Air Mobility depends not only on aircraft and charging stations—but on intelligent automation that keeps the entire electric mobility ecosystem moving.
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Kingdom Built Tech
Building the Operational Infrastructure for Urban Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: managing low-altitude airspace safely, securely and at scale as eVTOL aircraft, vertiports and regional mobility networks begin to converge.

Kingdom Built Tech is helping address that challenge through AeroRegis, a digital operations infrastructure platform designed for urban air mobility. AeroRegis enables cities, operators, vertiport developers and aviation stakeholders to coordinate flight corridors, maintain real-time airspace visibility, monitor safety and telemetry, and support AI-assisted decision-making while keeping human oversight central to operations.

In 2026, Kingdom Built Tech continues to advance AeroRegis as a governance and coordination layer for emerging low-altitude aviation. Built on KBT’s experience in defence mission systems, secure software modernisation and command-and-control environments, the platform is positioned to help regions move beyond aircraft demonstrations toward managed, scalable airspace operations.

As the industry prepares for the next generation of electric aviation, Kingdom Built Tech is proving that the future of eVTOL depends not only on aircraft and vertiports—but on the digital infrastructure that allows cities to manage the sky safely and responsibly.
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ViscoTec
Dispensing the Materials Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: applying adhesives, sealants, potting compounds and thermal interface materials with the precision and repeatability required for flight-critical electric aircraft systems.

ViscoTec America Inc. is helping address that challenge through high-precision dispensing and dosing technologies for aerospace, e-mobility, electronics and battery production. Its progressive cavity pump systems support the automated application of low- to high-viscosity materials, including structural adhesives, gap fillers, sealants, core fillers and thermal pastes used across batteries, power electronics, composites and aircraft interiors.

In 2026, ViscoTec continues to support eVTOL manufacturing by enabling reliable material application in battery packs, electric motors, avionics, airframes and charging-related systems. With proven experience in aerospace dispensing and electromobility production, the company is positioned to help aircraft manufacturers move from prototype assembly to repeatable, scalable production.

As the industry prepares for the next generation of electric aviation, ViscoTec America is proving that the future of eVTOL depends not only on propulsion and aircraft design—but on the precision manufacturing technologies that ensure every material is placed exactly where performance and safety require it.
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i-charging
Delivering the High-Power Charging Infrastructure Behind Advanced Air Mobility

As Advanced Air Mobility moves toward commercial deployment, the industry faces a new challenge: building charging infrastructure that can support high-power, high-frequency electric operations across airports, vertiports, fleets and mobility hubs.

i-charging is helping address that challenge through fast and ultra-fast DC charging solutions designed for scalable electric mobility infrastructure. Its portfolio includes all-in-one chargers, fleet charging systems, heavy-duty charging solutions, energy management tools and modular platforms capable of supporting future megawatt charging requirements—technologies that can help operators integrate electric aircraft, ground support vehicles and multimodal transport fleets.

In 2026, i-charging continues to expand its platform architecture for multiple electric mobility applications, from urban retail and fleet depots to heavy-duty freight terminals and urban air mobility. With solutions designed to scale in power, outputs and applications as operational demand grows, the company is positioned to support the transition from early electric aviation projects to reliable, high-capacity charging networks.

As the industry prepares for the next generation of electric flight, i-charging is proving that the future of Advanced Air Mobility depends not only on aircraft—but on adaptable charging systems that can evolve with the mobility networks they serve.
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Dewesoft
Integrated Testing Solutions for eVTOL Development and Certification

Dewesoft provides state-of-the-art data acquisition and analysis systems for comprehensive eVTOL testing—from structural integrity and electrical propulsion to NVH, flight control, and environmental validation. With flexible, high-speed DAQs and synchronized measurement across analog, digital, and bus data, Dewesoft enables precise testing at every stage of development. Their solutions support Iron Bird test benches, efficiency mapping, noise/vibration testing, wind tunnel validation, and power system analysis. Backed by award-winning software and a 7-year warranty, Dewesoft empowers eVTOL manufacturers to accelerate innovation with confidence, precision, and reliability.
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NeoGraf Solutions
Advanced Thermal Management for eVTOL Battery Safety & Performance

NeoGraf Solutions is a global leader in graphite-based thermal management technologies critical to the safety, efficiency, and reliability of eVTOL aircraft. As battery-powered aviation platforms face increasing energy density demands, NeoGraf’s flexible graphite solutions address the industry’s most pressing challenge: heat.

Their lightweight, high-performance products—including eGraf® SpreaderShield™ heat spreaders and NeoNxGen™ materials—dissipate hot spots and mitigate thermal runaway risk in high-voltage battery systems. Additionally, GraFoil® GTB gaskets provide high-temperature sealing that withstands harsh operating conditions without compromising reusability.

Proven in EV and aerospace sectors, NeoGraf’s materials are already helping eVTOL developers enhance battery safety, extend pack life, and meet demanding regulatory standards—making them a trusted partner for next-generation aviation.
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BRS Aerospace
Whole-Aircraft Recovery Systems for eVTOL Safety

BRS Aerospace is a pioneer in whole-aircraft ballistic recovery parachute systems, with more than four decades of experience designing safety solutions for light aircraft, unmanned vehicles, military platforms, and type-certified airplanes. Its systems are engineered to deploy a parachute capable of lowering the entire aircraft to the ground in the event of loss of control, structural failure, or other in-flight emergencies.

For eVTOL manufacturers, BRS Aerospace offers a proven safety technology that can support aircraft resilience, passenger confidence, and certification-focused design. As electric vertical flight platforms introduce new propulsion architectures and urban operating environments, whole-aircraft recovery systems provide an additional layer of protection for pilots, passengers, and communities below.

By bringing decades of parachute recovery expertise into the advanced air mobility sector, BRS Aerospace helps eVTOL developers integrate practical, life-saving safety systems from the earliest stages of aircraft design. Its technology positions the company as a key safety partner for the next generation of electric vertical take-off and landing aircraft.
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Advantech International
Precision Components for Mission-Critical Electric Flight

AdvanTech International is enabling the evolution of eVTOL aircraft with advanced sensing technologies, structural fasteners, and thermal management solutions engineered for the demanding environments of urban air mobility. With a multi-industry legacy and aerospace-grade quality, AdvanTech delivers key components that enhance safety, performance, and reliability.

Supporting propulsion, navigation, and airframe integration, AdvanTech provides precision rotational position sensors, inertial measurement units (IMUs), and gyroscopes for accurate flight control, alongside high-efficiency battery cooling plates, heat sinks, and thermal materials to manage the heat loads of electric propulsion systems.

Through a global supply network and technical design assistance, AdvanTech enables eVTOL OEMs to optimize structures with lightweight fasteners, battery terminal pins, and custom cold-formed parts—reducing weight while maintaining durability and structural integrity.

By combining aerospace-proven technologies with flexible manufacturing capabilities, AdvanTech International helps accelerate the safe, efficient deployment of eVTOL platforms—advancing the future of connected, electric air mobility.
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Horizon Aircraft
Not every mission needs to be vertical

How do you bridge the gap between conventional aviation and eVTOL? Rather than designing a pure urban air taxi, Horizon is developing a hybrid-electric aircraft capable of conventional runway operations while retaining vertical take-off and landing capability when required.
Headquartered in Canada, with a growing presence across the North American aerospace ecosystem, Horizon’s Cavorite X7 combines patented fan-in-wing technology with hybrid-electric propulsion to deliver longer range, higher cruise speeds and greater operational flexibility than many battery-only eVTOL concepts. By using conventional runways for the majority of missions, the aircraft can conserve energy while maintaining the option to operate from vertiports and confined landing areas.

Recent flight-testing has continued to validate Horizon’s unique transition architecture, while the company advances certification planning and expands partnerships across engineering, manufacturing and aerospace systems. Its hybrid-electric strategy also reflects a growing industry consensus that multiple propulsion architectures may coexist, particularly for regional mobility, emergency services, defence and special mission applications where payload and range remain critical considerations.

For the U.S. market, Horizon is positioning the Cavorite X7 as more than an urban air mobility platform. The aircraft is being developed with applications spanning regional air transport, medical evacuation, government operations, defence, cargo logistics and business aviation—markets where operational flexibility and infrastructure independence can deliver immediate value.

As the industry increasingly focuses on commercial viability rather than technological novelty, Horizon Aircraft is demonstrating that the future of Advanced Air Mobility may not be defined by choosing between conventional aircraft and eVTOL—but by intelligently combining the strengths of both.
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ERG Aerospace
Duocel® Foam Solutions for Lightweight eVTOLs

ERG Aerospace is the originator and sole manufacturer of Duocel® open-cell foams—engineered in aluminum, copper, carbon, and silicon carbide—to deliver high surface area, controllable porosity, and solid-ligament strength in a lightweight, machinable matrix. This U.S-made material platform underpins aerospace-grade solutions where fluid flow, heat transfer, and energy absorption are critical.

For the eVTOL community, Duocel® empowers thermal management and powertrain reliability: high-efficiency heat exchangers and liquid/phase-change cold plates improve cooling of batteries, inverters, and motors, while air/oil separators and diffusers enhance propulsion system durability. The open-cell architecture enables compact, low-mass designs with excellent permeability and tunable density for optimum performance.

Duocel® also advances safety and structural performance. Energy-absorbing cores mitigate crash loads without pneumatic rebound; metal-foam flame arrestors, bird-strike protection, and lightweight structural inserts add resilience in harsh environments and high temperatures. With proven brazing/bonding integration paths and decades of flight heritage, ERG helps eVTOL OEMs reduce weight, manage heat, and build safer vehicles ready for certification.
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Collinear Group
Certification Strategy & Regulatory Readiness for eVTOL Innovation

Collinear Group is a leading aviation consultancy advancing regulatory strategy and certification readiness for next-generation aircraft.

As a champion of Honeywell Aerospace Technologies’ Regulatory Readiness Level (RRL) framework, Collinear helps eVTOL developers navigate the complex path to type certification with greater clarity, structure, and transparency.

By aligning stakeholders around standardized certification milestones, Collinear enables faster regulatory engagement, improved risk management, and stronger investor confidence.

With deep expertise in airworthiness, compliance, and program lifecycle management, Collinear Group is shaping the future of aviation certification for the eVTOL era.
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Dassault Systèmes
Virtual Twin & Simulation Platform for eVTOL Innovation

Dassault Systèmes (3DS) is a global leader in 3D design, simulation, product lifecycle management (PLM), and digital twin solutions—serving over 370,000 customers worldwide across industries including aerospace and defense. Their 3DEXPERIENCE® platform unifies design, simulation, collaboration, and manufacturing workflows, helping organizations move from concept to certified product in a connected, model‑driven environment.

For the evolving eVTOL sector, Dassault Systèmes offers specialized capabilities via its SIMULIA and CATIA tools to simulate aerodynamics, aeroacoustics, structural behavior, battery performance, and system integration in a unified environment. These tools allow OEMs to iterate designs rapidly, optimize trade‑offs among weight, noise, energy consumption, and structural integrity, and validate safety or certification scenarios without relying exclusively on physical prototypes.

Dassault Systèmes has already been selected by eVTOL and urban air mobility companies (e.g. AutoFlight) to deploy end‑to‑end digital development platforms using 3DEXPERIENCE. In addition, SIMULIA CFD tools are being used by major aerospace OEMs (for instance Embraer’s eVTOL initiatives) to simulate acoustic performance and refine designs for urban deployment.

In the fast‑moving eVTOL community, the ability to design, validate, certify, and scale aircraft digitally is critical. Dassault Systèmes offers a digital backbone that helps reduce development time, lower risk, support multi‑disciplinary engineering, and ensure traceability from concept through manufacture. Their virtual twin and simulation frameworks empower eVTOL developers to bring safer, quieter, lighter, and more efficient vertical flight systems to market fasteb>
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OPAL-RT TECHNOLOGIES
Real-Time Simulation & HIL for eVTOL Readiness

OPAL-RT provides real-time simulation and Hardware-in-the-Loop (HIL) solutions that help eVTOL developers design, test and validate control systems more efficiently. Especially focusing on electrical applications our open, modular platform supports high-fidelity models for example for batteries, power electronics, energy management, and multi-motor architectures. By reducing reliance on physical testing, OPAL-RT enables faster iteration, earlier fault detection, and safer integration of complex subsystems.

With tools tailored to electric aviation needs, we help teams to increase testing performance, manage system interactions, and prepare technologies for certification. OPAL-RT empowers the eVTOL industry to accelerate development and deliver reliable, next-generation air mobility solutions.
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Lufthansa Consulting
Lufthansa Consulting is a globally recognized aviation advisory firm with over 35 years of experience supporting airlines, airports, governments, and OEMs in navigating transformation, growth, and operational excellence. As a leading voice in the emerging Advanced Air Mobility (AAM) market, Lufthansa Consulting is actively shaping the future of autonomous eVTOL (A-eVTOL) operations through strategic insights, regulatory engagement, and market-entry planning.

The firm’s recent thought leadership explores how Autonomous Passenger-Carrying eVTOLs (A-eVTOLs) can provide a scalable, economically viable solution to meet growing urban and regional mobility demands. Unlike piloted eVTOLs, A-eVTOLs offer lower crew costs, increased fleet flexibility, and potential for shared ownership models. Lufthansa Consulting identifies “Future-Liners”—a new class of airline-like operators that manage A-eVTOLs remotely—as the operational backbone of this emerging model, supported by robust OEM design, safety redundancy, and ground-based control systems.

With its expertise across strategy, operations, regulatory frameworks, and stakeholder alignment, Lufthansa Consulting provides the aviation ecosystem with a roadmap for unlocking the full potential of A-eVTOLs. Whether advising on vertiport integration, future-liner business models, or OEM certification pathways, Lufthansa Consulting is a key partner in bringing the autonomous air mobility vision to life.
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Speedgoat
Real-Time Simulation & Testing Solutions for eVTOL Development

Speedgoat accelerates the design, testing, and certification of eVTOL systems with cutting-edge hardware-in-the-loop (HIL) and rapid control prototyping (RCP) platforms tightly integrated with Simulink® Real-Time™. Aerospace innovators rely on Speedgoat to validate flight control systems, hybrid-electric propulsion, power management, and battery systems under realistic, real-time conditions.

With dedicated workflows for flight controllers, BMS, autoflight systems, FADEC, and sensor fusion, Speedgoat enables engineers to simulate full aircraft behavior—including flap actuation, avionics protocols, and electrical loads—before physical prototypes are built. Their powerful real-time target machines and support for aerospace standards like DO-178C ensure that development stays compliant, efficient, and scalable.

From flight testing to virtual SIL labs, Speedgoat equips eVTOL teams with the tools needed to bring safe, intelligent aircraft to market faster—transforming how urban air mobility takes off.
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Advantech International
Precision Components & Sensing Systems for Next-Generation eVTOL Aircraft

AdvanTech International is enabling the evolution of eVTOL aircraft with advanced sensing technologies, structural fasteners, and thermal management solutions engineered for the demanding environments of urban air mobility. With a multi-industry legacy and aerospace-grade quality, AdvanTech delivers key components that enhance safety, performance, and reliability.

Supporting propulsion, navigation, and airframe integration, AdvanTech provides precision rotational position sensors, inertial measurement units (IMUs), and gyroscopes for accurate flight control, alongside high-efficiency battery cooling plates, heat sinks, and thermal materials to manage the heat loads of electric propulsion systems.

Through a global supply network and technical design assistance, AdvanTech enables eVTOL OEMs to optimize structures with lightweight fasteners, battery terminal pins, and custom cold-formed parts—reducing weight while maintaining durability and structural integrity.

By combining aerospace-proven technologies with flexible manufacturing capabilities, AdvanTech International helps accelerate the safe, efficient deployment of eVTOL platforms—advancing the future of connected, electric air mobility.
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Aircraft Extrusion Company
Essential Aluminum Extrusions Powering eVTOL Structural Fabrication

Located in Chico, California, Aircraft Extrusion Company is a leading provider of aerospace-grade aluminum extrusions. Specializing in alloys such as 2024, 6061, and 7075, Aircraft Extrusion supplies standard and custom profiles—including seat tracks, aircraft tubes, and complex structural shapes—to designers, OEMs, maintenance facilities, and production shops across aviation sectors.

Aircraft Extrusion offers one of the industry’s most extensive databases, with over 40,000 cross-referenced part numbers from legacy catalogs like Tiernay Metals, plus more than 2,000 items in stock across multiple alloys. Their manufacturing and inspection protocols are built around excellence—ISO 9001:2015 and AS9100 D-certified quality systems, CNC metrology, Statistical Process Control, and ultra-durable packaging ensure parts meet aerospace-grade reliability and traceability.

As eVTOL platforms advance from prototypes to production, the need for lightweight, high-strength structural materials grows exponentially. Aircraft Extrusion enables fast turnaround for critical components—from fuselage stringers and internal framing to landing gear assemblies—critical in maintaining development momentum. Their rapid quote system, responsive technical support, and supply chain integrity make Aircraft Extrusion a vital enabler for eVTOL manufacturers targeting certification benchmarks and production ramp-up.
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CAMP Systems
Maintenance & Compliance Management for the Emerging eVTOL Ecosystem

CAMP Systems, a leading provider of aviation maintenance tracking and engine health monitoring solutions, is poised to play a key role in supporting the operational integrity of the eVTOL sector as it scales toward commercialization.

With over five decades of experience managing airworthiness for fixed-wing and rotorcraft fleets, CAMP offers expertise in predictive maintenance, regulatory compliance, and aircraft health monitoring—all of which are critical to the safety and reliability of electric vertical takeoff and landing operations.

As eVTOL fleets grow, the demand for digital tools to track battery performance, electric motor wear, and mission-critical maintenance intervals will intensify. CAMP’s cloud-based systems and data analytics, combined with its strong OEM relationships, position it to expand into electric aviation—enabling eVTOL operators to reduce downtime, ensure regulatory compliance, and extend fleet lifespan.

By leveraging its trusted infrastructure, CAMP Systems can become a foundational player in the UAM ecosystem, offering scalable, aircraft-agnostic solutions that support the long-term safety and sustainability of advanced air mobility..
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Bloomy
HIL Simulation & Validation Systems for eVTOL Flight Control & Battery Management

Bloomy is accelerating the development and certification of eVTOL aircraft with cutting-edge hardware-in-the-loop (HIL) test systems that validate flight control and energy management systems in real time.
Their eVTOL Integrated HIL Test System provides a repeatable, closed-loop environment to simulate control surfaces and battery behavior during all flight phases—forward, vertical, and transitional.

By combining Bloomy’s powerful BS1200 battery simulator with platforms from NI, The MathWorks, and others, the system enables high-fidelity testing for system integration labs (SILs), significantly reducing cost, complexity, and time to market.

From digital transformation to certification readiness, Bloomy delivers proven tools for efficient, scalable testing of mission-critical eVTOL electronics—from tip to tail.
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Hexcel Corporation
Advanced Composite Materials for the Future of Urban Air Mobility

Hexcel is a global leader in advanced lightweight composites, powering the next generation of electric aviation with carbon fiber, prepregs, honeycomb, and engineered core materials. As a trusted partner to leading eVTOL innovators like Archer Aviation, Hexcel delivers aerospace-grade solutions that reduce weight, dampen noise, and enhance structural performance—key to enabling efficient, safe, and certifiable eVTOL aircraft. With deep experience in material certification and vertical integration from raw fiber to finished parts, Hexcel plays a pivotal role in making high-rate, energy-efficient eVTOL production a reality.
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Kaman Corporation
Advanced Bearings, Drive Systems & Titanium Hardening for High-Performance eVTOL Applications

Kaman Corporation, through its subsidiary Kamatics, supplies mission-critical components to the aerospace and eVTOL sectors—including advanced bearings, drive systems, and structural assemblies. Leveraging its proprietary Titanium Diffusion Hardening (TDH) process, Kaman enables the use of lightweight titanium in high-load, high-wear applications—boosting strength, wear resistance, and performance in demanding eVTOL environments. With over 55 years of aerospace expertise and a proven track record in rotorcraft innovation, Kaman is a trusted partner in pushing the limits of durability, efficiency, and material science for next-generation vertical flight.
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Wingard
Precision Metal Components and Motor Cores for eVTOL Propulsion Systems

Wingard & Company supports the eVTOL industry with high-performance aerospace-grade components, specializing in precision metal stampings, electric motor laminations, and custom assemblies essential for propulsion, actuation, and onboard electrical systems.

With over 60 years of manufacturing expertise and AS9100D certification, Wingard delivers critical parts for electric vertical takeoff and landing (eVTOL) aircraft—including stator and rotor laminations, lightweight structural components, and high-magnetic-performance motor cores. These are tailored to meet the demanding weight, power, and reliability requirements of next-generation air mobility platforms.

Their in-house capabilities—from laser cutting and vacuum bonding to CNC machining and magnetic testing—enable rapid prototyping, tight tolerance control, and scalable production. As a trusted ITAR-approved supplier, Wingard plays a vital role in advancing safe, efficient, and electrified flight for urban and regional air mobility.
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TORAY
Lightweight Composite Materials for High-Performance eVTOL Structures

Toray supports the eVTOL revolution with aerospace-grade thermoset and thermoplastic composite materials engineered to reduce weight, enhance structural integrity, and enable scalable manufacturing of electric aircraft.

With a proven legacy in aerospace and high-performance automotive, Toray’s materials empower the design of strong, lightweight airframes, propulsion housings, battery enclosures, and interior components—helping OEMs maximize range, payload, and efficiency. Their advanced fiber-reinforced solutions also provide noise-dampening and thermal resilience critical for urban air mobility.

From rotor blades and seat structures to lightning-strike protection and high-rate tooling, Toray delivers a comprehensive portfolio of materials that accelerate certification and production readiness—shaping the future of advanced air mobility with performance you can count on.
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LifePort
Lightweight Interiors & Medical Mission Equipment for eVTOL Platforms

LifePort brings decades of aerospace expertise to the emerging eVTOL industry with advanced interior solutions, mission equipment, and lightweight composite structures tailored for urban air mobility applications.

Known for their work in air medical systems and VIP interior customization, LifePort offers modular, weight-optimized cabin solutions ideal for eVTOL air taxis and EMS aircraft. Their AeroSled® and AeroVac® systems, already proven in rotorcraft and fixed-wing platforms, are well-suited for electric aircraft requiring compact, high-performance equipment for critical care and rapid deployment.

Through the integration of Aeromatrix Composites, LifePort strengthens its offering of high-performance composite components—supporting eVTOL OEMs with scalable manufacturing, durability, and flight safety compliance.

Whether enhancing cabin comfort, enabling medevac operations, or reducing structural mass, LifePort delivers proven aerospace innovation to the next generation of vertical lift aircraft.
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AVL
Complete Testing & Simulation Solutions for eVTOL Electrification

AVL is a global leader in advanced testing, simulation, and engineering solutions for electric and hybrid aviation systems. Supporting the entire eVTOL development cycle, AVL delivers cutting-edge tools for testing electric propulsion, high-voltage batteries, fuel cells, and power electronics—alongside system integration and software regression testing via its AVL Copper Bird™ platform. With decades of experience in mobility innovation, AVL empowers eVTOL manufacturers to accelerate development, improve reliability, and meet certification targets with precision and speed.
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Simutech Group Inc
Simulation-Driven Propulsion & Energy Storage Innovation for eVTOL Aircraft

SimuTech Group empowers the eVTOL revolution through cutting-edge simulation technologies that accelerate the development of electric, hybrid, and hydrogen propulsion systems. As North America’s largest certified Ansys partner, SimuTech supports startups and OEMs in designing propulsion and energy storage systems that are lighter, quieter, cleaner, and safer.

By integrating multiphysics tools across structural, thermal, electromagnetic, and control domains, SimuTech enables:
Electric drivetrain and motor optimization
Thermal and EMI management for battery and fuel cell systems

Vibration analysis and structural resilience under flight loads

Embedded control system development and functional safety validation

From cryogenic hydrogen storage to high-power battery packs, SimuTech’s simulation expertise ensures eVTOL systems meet rigorous performance and certification standards—reducing physical prototyping, enhancing safety, and shortening time to market. With deep aerospace know-how and full-system modeling capabilities, SimuTech is a trusted innovation partner fueling the future of sustainable vertical flight.
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Taylor Devices, Inc.
Advanced Shock Absorption and Landing Gear Solutions for eVTOL Aircraft

Taylor Devices delivers next-generation energy absorption systems tailored for eVTOL landing gear applications, providing robust, compact, and maintenance-free solutions that enhance safety, range, and payload capacity.

With over six decades of aerospace experience, Taylor Devices engineers custom landing gear shock absorbers and isolators specifically suited to the demands of electric vertical takeoff and landing aircraft. Their non-pressurized designs outperform conventional high-pressure systems with superior reliability, zero maintenance requirements, and exceptional performance across extreme temperature ranges.

Ideal for lightweight, compact eVTOL platforms, Taylor’s arresting and landing gear technologies reduce cost and complexity while improving operational safety and resilience—even in unmanned and autonomous configurations. Trusted across aerospace and defense, Taylor Devices empowers the future of advanced air mobility with shock management systems built for mission-critical reliability.
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R-tek Thermal Solutions
Custom Thermal Management for eVTOL Electronics and Battery Systems

R-TEK provides specialized thermal interface materials and design support to meet the critical thermal management demands of eVTOL platforms, ensuring safety, performance, and reliability across battery systems, avionics, and power electronics.

As an independent thermal solutions provider, R-TEK partners with global suppliers and integrators to identify and deliver application-specific materials for managing heat in compact, high-power-density environments like eVTOL. Their offerings include polymer-based thermal pads, coatings, adhesives, and encapsulants tailored to support rapid prototyping, high-efficiency cooling, and robust environmental performance.

From pre-production engineering and global fulfillment to hands-on design assistance and fast-turn prototyping, R-TEK empowers eVTOL developers with flexible, cost-efficient thermal solutions that enhance performance and accelerate time to market—ensuring flight-critical components remain cool, compact, and compliant.
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Kistler Instrument Corp
Precision Measurement Technologies for eVTOL Ground and Flight Testing

Kistler supports the development and certification of eVTOL aircraft with industry-leading sensor and data acquisition solutions tailored to the unique demands of electric vertical lift systems. Backed by over 60 years of aerospace testing experience, Kistler’s advanced instrumentation ensures performance, safety, and structural integrity from prototype to operation.

Kistler provides a comprehensive portfolio of lightweight, high-sensitivity sensors for vibration analysis, structural health monitoring, and propulsion system validation in both ground-based and airborne test environments. Their technologies are ideal for testing electric motors, battery systems, flight loads, landing gear, and critical safety components.

From triaxial accelerometers to multi-component force sensors, Kistler enables:

Real-time vibration monitoring of electric propulsion systems

Thrust, torque, and reaction force measurements

Battery thermal runaway and safety testing

Payload stability and landing gear impact testing

Zero-defect production monitoring with full traceability

With a proven track record supporting leaders like Airbus and DLR, Kistler delivers aerospace-grade testing solutions essential for advancing Advanced Air Mobility (AAM) certification and operational readiness.
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Theion
High-Energy Lithium-Sulfur Batteries for Next-Gen eVTOL Aircraft

Theion is transforming electric aviation with its next-generation lithium-sulfur battery technology, purpose-built for the demanding performance requirements of eVTOL aircraft. Offering up to three times the energy density of conventional lithium-ion cells, Theion’s solid-state solution enables longer range, greater payload capacity, and extended flight times for air taxis, cargo drones, and advanced air mobility platforms.

Engineered for faster charging and enhanced safety, Theion’s batteries mitigate issues like dendrite formation and thermal instability, addressing critical challenges in eVTOL operations. With a focus on lightweight materials and high specific energy, their technology supports more sustainable and scalable electrified flight.

Backed by a growing Berlin-based manufacturing footprint, Theion is accelerating the commercial readiness of its lithium-sulfur platform—powering the future of high-performance, zero-emission vertical lift with safe, high-capacity energy storage for the skies.
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Technology Marketing Inc.
Composite Materials Enabler for eVTOL Manufacturing

Technology Marketing Inc. has built its reputation as a premier distributor and manufacturer of advanced fiber-reinforced composite materials for aerospace and high-performance industries. Serving sectors that demand ultra-lightweight and high-strength structures, TMI offers a broad catalog—including tooling materials, resin systems, woven reinforcements, prepregs, structural foam core, mold releases, elastomers, abrasives, and process accessories—tailored to precision composite fabrication.

As the eVTOL industry accelerates toward certification and scaled production, materials consistency and structural performance are mission-critical. TMI delivers the essential composite constituents—resins, reinforcements, adhesives, tooling aids—that underpin high-rate manufacturing of battery enclosures, fuselage skins, rotor blades, interior components, and structural frames. Their ISO-certified quality systems and decades of materials expertise ensure reliability in aerospace-grade fabrication processes.

Beyond distribution, TMI has extended its technical footprint through partnerships like the exclusive North American distribution of digital vacuum sensors (VacPuc), enhancing composite layup quality and process control in advanced manufacturing environments. Additionally, TMI expanded its manufacturing breadth by acquiring the intellectual property of SR Composites’ Sprayomer technology—further enabling scalable, high-performance composite applications.
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L&L Products
Advanced Material Solutions for Next-Gen Mobility

L&L Products is a global leader in material science and engineering solutions, specializing in static sealing, acoustic management, vibration reduction, structural reinforcement, and composite technologies. With over six decades of experience and a presence in more than 30 countries, L&L serves industries where performance, safety, and innovation intersect—including aerospace, automotive, and electric mobility.

Enabling Lightweight, Quiet, and Resilient eVTOL Design

For the eVTOL sector, L&L delivers lightweight composite reinforcements, structural bonding adhesives, and acoustic solutions that enhance aircraft integrity and passenger comfort. Their Continuous Composite Systems™ (CCS™) and Composite Body Solutions™ (CBS™) offer significant weight savings and structural rigidity, while DECI-TEX® acoustic fiber systems and advanced sealing technologies help ensure a quiet, sealed, and efficient cabin experience—critical for urban air mobility.

L&L Products combines material expertise with advanced engineering to help eVTOL manufacturers solve complex design and manufacturing challenges. With technologies designed for multi-material bonding, vibration isolation, and scalable robotic application, L&L supports the industry’s push toward safer, lighter, and more sustainable air vehicles. As the eVTOL landscape takes flight, L&L stands ready as a trusted innovation partner...
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CR Flight
High‑Performance Propulsion Systems for eVTOL Platforms

CR Flight, based in Woodside, California, engineers advanced electric propulsion systems tailored for drone, UAV, and eVTOL markets. Their signature offering, eVector™, is a patented counter-rotating propulsion architecture that enables a single motor to independently drive two propellers in opposite directions. This design leverages reactive forces for dramatic gains in thrust, torque balance, and cooling—all within a single, plug-and-play unit.

eVector systems increase continuous thrust by up to 100% and boost efficiency by 30–50%, translating into significantly longer flight durations and improved lift capacity—critical for heavy-lift UAVs and crewed eVTOL operations. Because the dual propellers run at lower RPMs, thermal load is minimized, eliminating the need for external cooling and enabling quieter operation—key for urban air mobility applications where noise, endurance, and reliability are vital.

CR Flight offers more than just propulsion hardware—they deliver an integrated solution backed by U.S.-based engineering support and global logistics via partner Vector Technics. Their standard BLDC motors and eVector™ variants are already field-tested across UAV and eVTOL pilot platforms, cargo drones, and industrial robotics. CR Flight’s scalable propulsion portfolio is a compelling fit for eVTOL OEMs seeking performance, durability, and simplicity in propulsion integration.
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UTAC
Testing, Certification & Engineering Foundation for eVTOL Readiness

UTAC is a global leader in mobility testing and certification, with a heritage going back nearly a century. Their capabilities span vehicle & component testing, active and passive safety, emissions, acoustics, EMC/electromagnetic compatibility, and durability. These services are focused on ensuring that mobility systems — especially new electric propulsion, battery, and hybrid technologies — meet stringent regulatory and performance standards.

For the eVTOL community, UTAC’s “Cleaner” category of services helps validate alternative propulsion systems, powertrain electrification, sustainable certification, and ensures alignment with emissions or environmental standards. Their “Regulations” and “Certification & Homologation” activities help aircraft, component, and infrastructure developers navigate compliance in multiple jurisdictions — a crucial element for airworthiness and market access.

UTAC maintains advanced test tracks and proving grounds in Europe, North America, and elsewhere to simulate real‑world conditions — extreme weather, vibration, noise, reliability, and endurance. Their digital, connected mobility, and simulation services also support systems integration, sensor performance, and autonomous flight features. Together, these capabilities allow eVTOL manufacturers to validate designs, iterate rapidly, and assure safety in operationally realistic conditions.
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American Skyport
Multimodal Skybridge Infrastructure for eVTOL & Air Taxi Networks

American Skyport, LLC is pioneering a multimodal transportation model—what they call the “Skybridge”—that integrates electric vertical take‑off and landing (eVTOL) air routes with ground mobility services like ride‑hailing and last‑mile connections. Their vision aims to create high-speed, low-emission corridors connecting city centers, suburbs, and rural areas via eVTOL operations paired with interoperable land transport systems.

Essential to their ecosystem is a robust energy backbone that powers both eVTOLs and electric vehicles. American Skyport provides advanced, renewable-based charging infrastructure tailored to aerial and terrestrial electric vehicles, ensuring scalable and efficient energy delivery for growing mobility networks. Additionally, they leverage purchasing scale and manufacturer partnerships to offer competitive access to eVTOL sales—making personal aerial transport more accessible.

American Skyport also collaborates with agencies such as FEMA, the U.S. Coast Guard, National Guard, and USAID to support emergency response and defense applications. Their integrated aerial transport infrastructure is positioned to serve missions requiring rapid logistics, medical evacuation, disaster relief, or remote access operations.

By delivering end-to-end infrastructure—from vertiport-like hubs to energy solutions and accessible vehicle procurement—American Skyport positions itself as a critical integrator within the eVTOL ecosystem. Their Skybridge model aligns with advanced air mobility deployment trends, offering operators, communities, and government stakeholders a cohesive foundation for operational, safe, and scalable eVTOL service networks.
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VICOR
High‑Density Power Architecture for eVTOL Systems

Vicor Corporation is a leader in modular power systems, providing compact, high‑density DC‑DC, AC‑DC and custom power conversion modules and systems used in cutting‑edge industries including aerospace, defense, and electric mobility.

Their design philosophy emphasizes modularity, thermal efficiency, and scalability—delivering power solutions that are lighter, more efficient, and faster to integrate than traditional discrete designs.

For the eVTOL community, Vicor’s offerings directly address some of the most challenging power architecture demands. Their regulated and fixed‑ratio DC‑DC converters support high voltage to low voltage conversions (e.g. from battery bus to avionics, motor controllers, or control electronics) with high efficiency and minimal footprint. Vicor modules provide clean, reliable, and thermally manageable power to flight systems, sensors, propulsion electronics, and power distribution networks—enabling designers to reduce weight and improve energy utilization in vertical flight platforms.

Because eVTOL platforms demand tight integration, redundancy, and adaptable power paths, Vicor’s modular architecture allows OEMs to tailor power delivery networks (PDNs) by stacking, combining, or replacing modules as system requirements evolve. Their approach shortens development cycles, simplifies thermal design, and enables incremental upgrades—qualities that help eVTOL developers move closer to certification deadlines and efficient production.
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Ramco Systems
Digital MRO & ERP Solutions for the eVTOL Ecosystem

Ramco Systems is accelerating the adoption and operational readiness of eVTOL aircraft with next-gen aviation software that connects the entire lifecycle—from design and production to flight operations and predictive maintenance.

Tailored to the unique needs of electric vertical takeoff and landing platforms, Ramco’s Aviation ERP suite enables OEMs, operators, and MRO providers to manage manufacturing, supply chain, maintenance, and flight operations within a single, integrated platform. With advanced tools like AI-powered diagnostics, IoT-enabled monitoring, and predictive maintenance analytics, Ramco ensures eVTOLs remain airworthy, efficient, and safe throughout their operational lifecycle.

As the eVTOL sector shifts from prototype to scale, Ramco’s cloud-based, mobile-first solutions empower real-time decision-making, digital documentation, and regulatory compliance—supporting everything from autonomous UAS operations to hybrid helicopter-eVTOL fleet management.

By bridging aviation expertise with transformative IT, Ramco is helping shape the digital backbone of tomorrow’s urban air mobility.
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The Soundcoat Company
Noise, Vibration & Thermal Management Solutions for eVTOL Aircraft

The Soundcoat Company supports the next generation of electric vertical takeoff and landing (eVTOL) aircraft with advanced noise, vibration, and thermal insulation technologies that enhance cabin comfort, operational safety, and community acceptance.

As eVTOL platforms push to deliver quieter, more efficient urban air mobility, Soundcoat provides aerospace-grade acoustic and damping solutions tailored to electric propulsion systems and lightweight structures. Their products mitigate engine noise, aerodynamic turbulence, and structural vibration—key contributors to passenger discomfort and urban noise pollution.

With AS9100:2016 certification and decades of experience in aerospace and aviation, Soundcoat collaborates with OEMs to meet strict industry standards while optimizing interior acoustic environments and thermal protection. From launch vehicles to rotorcraft to next-gen eVTOLs, Soundcoat helps reduce noise and elevate flight performance in the skies of tomorrow.
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Element Materials Technology
Certification & Testing Backbone for eVTOL Innovation

Element Materials Technology is a global leader in testing, inspection, calibration and certification services, providing aerospace OEMs and suppliers with the assurance that critical components and systems are safe, compliant and ready for service.

For the eVTOL community, Element brings a comprehensive suite of capabilities tailored to the unique demands of vertical flight platforms — including battery qualification, composite material testing, EMI/EMC evaluation, environmental simulation (altitude, vibration, climate), and aircraft‑structure endurance verification. These services help eVTOL developers move from concept to certification with confidence and meet the rigorous safety standards required for advanced air mobility.

With laboratories across 30+ countries and a deep aerospace pedigree, Element supports eVTOL manufacturers with the local access and global footprint needed for scalable development, rapid turnaround and certification readiness.
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CSG Talent
Recruitment Expertise for the eVTOL Revolution

CSG Talent is a global executive search and recruitment firm specializing in future-focused industries, including aerospace and eVTOL. Their Future Mobility team connects eVTOL innovators with top-tier talent in propulsion, autonomy, certification, and leadership roles—critical for scaling next-gen aircraft programs.
With deep sector knowledge and a global network, CSG helps eVTOL companies overcome hiring challenges by delivering tailored recruitment solutions—from executive search to contract staffing. As the eVTOL industry accelerates, CSG Talent ensures companies are equipped with the people to power the future of flight.
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MTorres
The MTorres was designed and developed as an industrial group, qualified in advanced technology to develop high-complexity innovative solutions in industrial process automation for the problems our customers may have. In this sense, our desire is always to provide with new solutions that improve productivity and efficiency, so that customers may consider us as part of them and defenders of their interests.

In its forty years of existence the group has maintained sustained development, so that today it is one of the leading international groups in the markets where it operates: Paper converting and aerospace sectors. Therefore, currently, this Group has managed its products to be present in over 70 countries with more than 620 customers. This expansion is based on its own technology and the company policy of dedication to work and reinvestment in order to guarantee its progress in the future.

Commitment to Total Quality, based on improvement and efficiency both in Products and Service, has met with the explicit recognition of its customers, who include some of the most prestigious and demanding companies in the market.
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TE Connectivity
High-Performance Interconnect Solutions for eVTOL Aircraft

TE Connectivity delivers mission-critical interconnect technologies that power the electrification, control, and digital backbone of eVTOL platforms. With deep expertise in aerospace, automotive, and energy sectors, TE offers a broad portfolio of high-voltage connectors, lightweight wiring, optical networks, sensors, and contactors tailored to the unique SWaP (Size, Weight, and Power) demands of electric vertical takeoff and landing systems. From propulsion and power distribution to avionics, infotainment, and structural integration, TE’s scalable, high-bandwidth solutions help eVTOL manufacturers design safer, lighter, and more connected aircraft—ready for the next era of urban air mobility.
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Omniseal Solutions
Omniseal Solutions part of the Saint-Gobain family, helps eVTOL OEMs solve their toughest propulsion and energy-system challenges—improving efficiency and reliability, extending range, and managing noise and vibration. We co-engineer precision sealing solutions, friction and wear components, and lightweight electrical and thermal insulators. This allows customers to control leakage, friction, heat, and vibration where reliability and certification matter most.

In electric propulsion systems, our solutions support electric motors and gearboxes—reducing drag loss and optimizing leakage and wear life—and enable thermal management of power electronics to reduce losses and extend service life. In battery systems, we provide low-permeation cooling circuits, robust manifold and connector sealing, dielectric isolation, and venting strategies that protect packs under demanding conditions. In hydrogen fuel-cell systems, we address H2 tightness and durability across stacks, valves, pumps, compressors, and refueling connections—including materials and designs suited for cryogenic transfer.

From concept through application test support and AS9100 global manufacturing, we work hand-in-hand with our customers to protect critical applications in the most demanding environments. We are passionately driven to push Beyond the Boundaries of Possible.
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UMBRAGROUP
UMBRAGROUP has been founded in Italy in 1972. Today we are an international Group with manufacturing facilities in Italy, Germany, and the United States. We are a global benchmark in high-precision motion systems for the most demanding sectors: aerospace, defense, and industrial.

For over fifty years, we have transformed expertise and research into cutting-edge solutions. Through vertically integrated processes and a deeply rooted culture of innovation, we develop motion technologies that anticipate the challenges of tomorrow.

We’re contributing to the transition toward a more efficient and sustainable aviation. For the VTOL market UMBRAGROUP has a wide range of applications tailored on its customer’s needs.

In the aerospace industry, we are problem solving partner with leading global players to create advanced motion solutions, working side by side with our customers. Our focus is on delivering innovations that are lighter, safer, and engineered for exceptional performance.
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Gentiam Power
Gentiam Power specializes in powertrain integration for hybrid and electric aircraft, helping OEMs accelerate development with modular, scalable, and high-performance powertrain solutions.

With expertise across aerospace, automotive, marine, and high-power applications, we bridge the gap between vehicle manufacturers and component suppliers to streamline system design, validation, and deployment. Our structured approach includes fault-tolerant architectures, system-level modeling, and rigorous testing, ensuring reliable and efficient electrified propulsion.

Gentiam Power has contributed to multiple hVTOL, UAV, and hybrid-electric aircraft programs, bringing deep experience in motors, batteries, engines, and powertrain controls.
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Cosmon
AI Agents for Advanced Engineering

Cosmon develops AI agents that transform how eVTOL engineers work in CAD and CAE environments. Built on advanced foundational LLMs, our Nexus platform brings contextual intelligence directly into the tools engineers already use—from design and simulation to analysis and optimization—with zero workflow disruption.

For eVTOL manufacturers facing tight certification timelines and complex multi-physics challenges, Cosmon’s agents automate tedious geometry cleanup, intelligent meshing, and boundary condition validation while catching configuration errors and physics violations before they cascade. Our agents don’t just advise—they actively work alongside engineers to accelerate design iterations, interpret analysis results, and explore optimization spaces that would take weeks manually.

With SOC2 compliance, end-to-end encryption, and on-premise deployment options, your proprietary eVTOL designs remain confidential. Cosmon integrates seamlessly with industry-standard tools including Solidworks, NX, Ansys, ANSA, and Creo, multiplying engineering productivity while maintaining the rigorous standards required for aircraft certification. Focus on innovation—let Cosmon handle the complexity.
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