You will define the architecture for airborne, ground, and cloud systems while developing and deploying software across the entire stack. Your work will focus on integrating hardware and software to ensure high performance and reliability for autonomous aviation operations.
The Security Engineer will design, implement, and monitor security tools to protect internal infrastructure and client platforms. Responsibilities include managing endpoint security, identity access management, and performing incident response and threat hunting.
Architect and scale reliable CI/CD pipelines and manage AWS and on-premise computing resources using Terraform. The role focuses on improving the developer experience by bridging the gap between embedded flight software, simulation, and IT infrastructure.
The role is responsible for the entire certification lifecycle of FPGAs, including authoring DO-254 plans and standards. You will coordinate certification activities with the FAA and DERs to ensure safe airborne electronic hardware.
Own the FPGA integration and test environment, including simulation, timing analysis, and continuous integration for airborne radar products. Develop DO-254 compliant processes for peer review and testing to ensure safe and dependable electronic hardware.
Lead the design, development, and certification of safety-critical flight systems for unmanned aircraft. Define development plans and lead cross-functional technical activities including trade studies and system validation.
The role involves the design, simulation, and synthesis of FPGAs to support flight computers and air-to-air RADAR. You will collaborate cross-functionally to handle hardware integration and test support for the autonomy stack.
You will architect, implement, and verify core link management algorithms for traffic shaping and network performance monitoring. Additionally, you will drive the integration of complex third-party hardware and software systems into the autonomy platform.
Develop physics-based models for aircraft dynamics and conduct closed-loop testing of flight control systems. Perform simulation analysis, validate models against flight test data, and identify necessary flight tests to inform modeling.
Design, implement, and test flight control laws for automated aviation systems across all phases of flight. Collaborate with pilots and operations teams to develop flight test plans and ensure system performance through rigorous simulation and hardware testing.
You will architect and maintain the formal information schema that defines how systems and software lifecycle data relate to one another. Additionally, you will serve as the strategic interface between engineering teams and internal software developers to drive requirements for proprietary modeling tools.
Reliable Robotics Corporation·Full Time·6 months ago
United States$130K - $150K per year5-10 yrs expOthers
The role involves safely operating advanced aviation technology in autonomous and piloted Cessna 208 aircraft as part of the operations team, reporting to the Chief Pilot. Duties encompass operational test pilot work, Part 135 cargo airline piloting, and both remote and piloted flying in experimental aircraft.
Reliable Robotics Corporation·Full Time·6 months ago
United States$120K - $140K per year5-10 yrs expOthers
The role is critical for installing and maintaining advanced aviation technology, alongside performing routine, preventive, and scheduled maintenance and repairs on autonomous and piloted Cessna 208 aircraft.
The Senior Flight Navigation Engineer will contribute to the design, implementation, and testing of the navigation system, focusing on defining requirements, selecting sensors, developing sensor models, and implementing state estimation algorithms in flight software. Responsibilities also include establishing test methods and evaluating system performance through simulation, hardware-in-loop, and flight tests to enable uncrewed aircraft integration.
The engineer will define guidance system capabilities and requirements, design features to integrate with flight control systems and pilot displays, and implement flight guidance algorithms in simulation and flight software. Responsibilities also include reducing and analyzing test data and evaluating system performance through various testing methods.
The engineer will be responsible for analyzing phased array radar systems and developing radar processing algorithms for object tracking and image generation across all development phases. This includes designing algorithms in Matlab/Python, implementing them in C++ on hardware, owning real-time processing on FPGA/DSP platforms, and supporting flight testing.