Senior Embedded Systems Software Engineer
Neon Aerospace
| Company | Neon Aerospace |
| Category | Uncategorised |
| Location | Irvine |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 12 May 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (greenhouse) |
Description
Aerospace is at a turning point — costs are rising, supply chains are strained, and old ways of building can’t keep up. At Neon Aero, we’re breaking that mold. We move fast, think big, and combine start-up agility with aerospace expertise to design, build, and scale aircraft in ways the industry has never seen. Our team leverages automation, AI-driven tools, and a fully connected digital backbone to accelerate innovation and reduce barriers to production.
Here, you won’t just take a job — you’ll help reinvent how the world flies. If you’re ready to solve complex problems, push technology further, and work alongside some of the brightest minds in aerospace, this is your chance to make a real impact.
We’re seeking a Senior Embedded Systems Software Engineer with strong systems intuition and a passion for building robust, safety-critical control software. This role sits at the intersection of embedded platform software, and system-level control logic owning the supervisory control layers that coordinate actuators, motor drives, and flight-level systems.
You will architect and implement system control logic, state machines, sequencing, diagnostics, and communication interfaces that ensure safe, deterministic operation across complex aerospace systems. While this role interfaces closely with actuator control, BMS , and vehicle control software, its primary focus is system behavior, integration, and correctness…not fast inner-loop control.
Key Responsibilities
System Control Architecture & Logic
Design and own system-level control architecture spanning actuator control, power sequencing, and operational state management.
Develop supervisory logic, state machines, and mode management that coordinate lower-level motor control, embedded platform software, and hardware subsystems.
Define and implement safe power-up, power-down, input processing, fault response, and degraded operating modes consistent with system safety assessments and aerospace certification requirements.
Embedded Software Development
Develop and maintain embedded software in C/C++ or MATLAB /Simulink on real-time microcontroller platforms (e.g., TI C2000, NXP , or comparable safety-oriented MCUs).
Architect scalable and maintainable software frameworks supporting control execution, communication, diagnostics, and monitoring.
Work across BSPs, middleware, and application layers to ensure deterministic behavior and system robustness.
System Interfaces & Communication
Define, implement, and document system interfaces between controllers, subsystems, and external equipment.
Author and maintain Interface Control Documents (ICDs) for communication protocols such as CAN (including safety-oriented profiles), ARINC 825, and other aerospace or automotive buses.
Ensure reliable data exchange, arbitration, and fault handling across system boundaries.
Model-Based Design & Validation
Use MATLAB /Simulink to develop and validate system-level control logic, sequencing, and coordination strategies.
Support model-based design workflows spanning MIL, SIL , and HIL environments.
Leverage simulation and lab data to validate system behavior across nominal, corner-case, and fault scenarios.
Integration, Test & Bring-Up
Lead system-level integration activities across motor control, BMS , sensors, and vehicle control software.
Support hardware bring-up, HIL testing, and lab validation, diagnosing issues that span software, hardware, and system interactions.
Develop test strategies, automation hooks, and data analysis workflows to ensure repeatable verification.
Safety, Process & Lifecycle Support
Support development of safety-critical embedded software by following disciplined software development processes.
Contribute to requirements definition, traceability, verification planning, and certification
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