odys

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    Site is Encrypted

  • Country
    Hosted in United States

  • City
    Amsterdam, North Holland

  • Latitude\Longitude
    52.3716 / 4.8883    Google Map

  • Traffic rank
    #258,281 Site Rank

  • Site age
    5 yrs old

  • Site Owner information
    Whois info

Traffic rank
#258,281
Site age
5 yrs
Location
United States
Newest job postings for odys
via Lever schedule_type: Full-time
At Odys Aviation, we’re building advanced vertical takeoff and landing aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and in Techcrunch. We’re a team of expert... engineers from deep tech and aerospace working to At Odys Aviation, we’re building advanced vertical takeoff and landing aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and in Techcrunch.

We’re a team of expert... engineers from deep tech and aerospace working to remove the hassles of flying and reduce CO2 emissions for travelers globally. Previously, our team has built and flown custom drones. We’ve brought multiple automotive platforms into production. We’ve electrified transportation vehicles that magnetically levitate, that roll, that fly. Together, we’ve been learning, developing, building, testing, and preparing for this challenge our entire lives.

We are hiring for several positions within the Engineering department and this is an exciting and challenging opportunity to become one of the first members of the team. We are looking for an experienced engineer to join Odys as a mechanical design engineer focusing on powertrain development.

We are seeking a power electronics engineer who has good fundamentals, is self-motivated and is willing to take up the challenging yet exciting task of helping us build the next generation of advanced hybrid propulsion systems for aviation.

The scope of work would include but not be limited to high-speed generator design, propulsion motor design, power inverter & battery design, propulsion integration test rigs and more. The skills which would set candidates apart would be their ability to adapt with quick paced development cycles and design iterations. Good exposure to powertrain development, mastery over EDA tools, the ability to create innovative solutions and quick turn time on designs would be key to perform well in this role.

The ideal candidate will be based out of /or would be willing to relocate to the Los Angeles/Long Beach area since this will be an onsite position.

Required qualifications
• Bachelor's or Master's degree in Electrical Engineering, with a focus on hybrid or electric propulsion systems preferred.
• Minimum of 4+ years (with BS) or 2+ years (with MS) of experience in power electronics related to aerospace applications.
• Strong foundation in EE, with extensive experience in power electronics design for hybrid electric propulsion systems.
• In-depth understanding of inverter technology, motor control, and power conversion tailored to the unique requirements of hybrid electric aircraft.
• Proficiency in schematic capture and circuit simulation software, such as Altium Designer , with experience in high-power inverter design (50kW-200kW at 400V-1000V).
• Experience in design and analysis of electric propulsion systems, including thermal management, power distribution, and system integration.
• Hands-on experience with DO-160G testing, DO-254 development, and other relevant aerospace standards.
• Expertise in lab instruments critical for hybrid propulsion system development, such as oscilloscopes and EMC analyzers.
• Superior communication and organizational skills, with the ability to work in fast-paced, interdisciplinary teams.

Requirements
• Design high-voltage, high-power density motor controllers specifically for hybrid electric and eVTOL applications, overseeing all aspects of power electronics designs from component to system integration.
• Design and develop clear and comprehensive schematics for power electronics boards pertinent to hybrid electric aircraft systems.
• Select components that balance mass reduction with reliability and efficiency, suitable for hybrid electric propulsion applications.
• Design PCBs or work closely with PCB designers to create reliable and lightweight circuit layouts that meet the rigorous demands of hybrid electric propulsion systems.
• Collaborate with mechanical and aerospace engineers to optimize the placement of high-power modules/components and bus bars for efficient integration within hybrid electric propulsion systems.
• Draft detailed requirements, participate in DFMEAs, and implement test and validation plans tailored to hybrid electric propulsion systems.
• Guide new hybrid propulsion designs from conceptualization to production, working collaboratively with a cross-disciplinary team.
• Maintain start-to-finish ownership of hardware, ensuring that specifications, design, prototyping, and manufacturing align with hybrid propulsion system requirements.
• Troubleshoot and root cause analysis for any issues arising in prototype or production phases
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via Lever schedule_type: Full-time
At Odys, we’re building an advanced vertical takeoff and landing hybrid aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights worldwide are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and TechCrunch article for more... details. We’re a team of expert engineers from deep At Odys, we’re building an advanced vertical takeoff and landing hybrid aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights worldwide are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and TechCrunch article for more... details.

We’re a team of expert engineers from deep tech and aerospace, working to remove the hassles of flying and reduce CO2 emissions for travelers globally. Previously, our team has built and flown custom drones. We’ve brought multiple automotive platforms into production. We’ve electrified transportation vehicles that magnetically levitate, that roll, that fly. Together, we’ve been learning, developing, building, testing, and preparing for this challenge our entire lives.

Are you passionate about applying your flight dynamics and modeling skills to the solution of novel problems? Can you apply your broad understanding of physics to build models and predict and verify aircraft behavior? Do you want to join a talented team, furthering your engineering abilities and driving innovation at a crucial stage in the development life cycle of our products?

The flight dynamics and controls team is responsible for the design, implementation and validation of our aircraft models and control algorithms. As a flight dynamics and controls engineer you will be the closely working with the aerodynamics, mechanical and testing teams. You will be closely involved in all aspects of the design process, supporting the team with your unique abilities.

Your Responsibilites
• Develop flight dynamics modeling strategies and methodologies
• Identify requirements and analyze aerodynamic data to be used in modeling
• Develop methods for automated model validation and testing
• Define and quantify model limitations and uncertainties
• Design and validate navigation, guidance and control algorithms
• Closely collaborate with aerodynamics, controls and mechanical design teams to rapidly iterate on designs
• Integrate in house and third-party models of system components into the full aircraft simulation model
• Support test method and test rig design to acquire experimental data

Your Qualifications
• Bachelor’s degree (MSc or PhD preferred) in mechanical, electrical, aerospace, or related fields
• Minimum 2 years of experience in flight dynamics modeling or control systems
• Strong knowledge of aircraft flight dynamics, stability and controls
• Strong knowledge of modeling and analyzing complex, nonlinear physical systems, aerodynamics and aircraft flight dynamics
• Good knowledge of feedback control systems and their design, especially for aircraft
• Experience with validation of flight dynamics models against experimental and flight test data
• Excellent skills in MATLAB/Simulink and Excel
• Able to work with minimal supervision in a fast-paced environment

Your Nice-to-Have Skills
• Experience with other aircraft modeling and visualization tools (e.g., X-Plane, Flightlab, etc)
• Experience with aircraft system identification tools (e.g., CIFER, SIDPAC, etc)
• Experience with prototyping flight computer hardware (e.g. Pixhawk, Embention Veronte, etc)
• Experience with auto code generation for embedded environments
• Coding skills (Python, C/C++)
• Experience with HIL/SIL/MIL
• Experience with vertical takeoff and landing aircraft
Show more details...
via Lever schedule_type: Full-time
At Odys Aviation, we’re building advanced vertical takeoff and landing aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and in Techcrunch. We’re a team of expert engineers... from deep tech and aerospace working to At Odys Aviation, we’re building advanced vertical takeoff and landing aircraft for major airlines. This will cut travel time in half on the world’s busiest routes by using city helipads and local airports. More than 40% of all flights are less than 1,000 miles - let’s skip the airport and make these routes sustainable. Check out our intro video and in Techcrunch. We’re a team of expert engineers... from deep tech and aerospace working to remove the hassles of flying and reduce CO2 emissions for travelers globally. Previously, our team has built and flown custom drones. We’ve brought multiple automotive platforms into production. We’ve electrified transportation vehicles that magnetically levitate, that roll, that fly. Together, we’ve been learning, developing, building, testing, and preparing for this challenge our entire lives.

We are hiring for several positions within the Systems Engineering department and this is an exciting and challenging opportunity to become one of the first members of the team. We are looking for a candidate who is interested in leading the model-based aircraft and system identification, specification, and architecting activities.

We are seeking a Systems Engineer/Modeler (SEM) to support Model-Based Systems Engineering (MBSE), development of system requirements and architectural modeling, and requirements and verification in support of the development of the electric Integrated Flight and Propulsion Control System (IFPCS).

The SEM will work with the MBE Requirements and Design Engineers to contribute to building the digital thread for the TC development program. The SEM will be responsible for building the model representation of the Digital Thread and the MBSE Architecture and Product Lifecycle Management (PLM) effort.

The ideal candidate will be required to incorporate system requirements into a model-based environment. This entails an understanding of aircraft interface identification, verification and validation planning, risk analysis, and requirements analysis for the aircraft’s systems and subsystems.

Odys Aviation is seeking a highly motivated and dynamic System Engineer to join our team in a hybrid capacity, primarily based on-site either at our Long Beach headquarter or in our Munich office, with the opportunity for remote work to enhance work-life balance and flexibility.

Your Responsibilities
• Ensures the best global tradeoff between vehicle aeromechanics, aerodynamics and electric propulsion & energy storage system
• Understands all major relationships and between the various systems (motor efficiency vs cooling vs aero drag vs HV battery mass)
• Defines and track requirements for various systems within the overall Flight/Propulsion Control or Electrical Power, Electrical Propulsion systems
• Works closely with design engineers to define requirements for selection of appropriate components.
• Works closely with the test-team to build up a V&V strategy and test various designs.
• Systems Engineering and specification of electrical system requirements
• Electrical System Design (e.g. simulation, modeling, engineering testing)Functional design (e.g. functional allocation from top-level functions to break down to electrical system)
• Validate Odys Aviations requirement management toolset
• Electrical system integration tasks (electrical integration by help of wiring diagram, software integration by help of ICD/IDD, mechanical integrations by help of ICD)
• System integration test definitions (design verification tests, functional integration testing, ground/flight test)

Your Background Should Be
• Educated to a 5 years’ degree level (or equivalent) in electrical engineering or similar
• 5+ years of work experience on safety critical software and systems
• Advanced skills in Systems Engineering / V-process
• Comfortable leading a System Engineering activity splitting a system into subsystems and their interfaces, then deriving requirements for these sub-systems
• Experience with a requirement management tool
• Knowledge of SysML or similar modeling languages
• Advanced skills in Matlab/Simulink
• Advanced skills in electrical systems
• Advanced skills in electrical systems modeling
• Good skills in Electrical Machines and circuit design
• Good skills in Power Electronics
• Basic skills in High Voltage DC applications
• Basic skills in control engineering
• Exposure to flight Avionics and FBW systems(desirable)
• Aircraft-system-subsystem integration experience is desirable
• Demonstrated project execution experience
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