Senior Vehicle Controls Software Engineer
Xos, Inc.
| Company | Xos, Inc. |
| Category | Engineering |
| Location | Los Angeles |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Senior |
| Salary | Not stated by the employer |
| Posted | 21 Apr 2026 |
| Last verified | 4 Aug 2026 |
| Source | Employer ATS (greenhouse) |
Description
Drive the Future with Xos
Xos (NASDAQ: XOS), is a technology company and electric truck manufacturer on a mission to decarbonize commercial transportation. We design and build state-of-the-art electric vehicles, develop advanced fleet management software, and create charging solutions that make fleet electrification seamless and cost-efficient. At Xos, we're problem-solvers, innovators, and go-getters, working together to drive a cleaner, more sustainable future. Join us and be part of the movement shaping the next generation of commercial transportation.
The Role
Xos is seeking a Senior Vehicle Controls Software Engineer to lead the development, integration, and validation of control systems across our electric vehicle platforms. In this role, you'll design and implement embedded control software that powers core vehicle systems including propulsion, energy management, thermal control, and safety. Success in this role requires strong expertise in embedded software and EV systems, couple with the ability to tackle complex engineering challenges with precision and creativity. You'll collaborate closely with cross-functional teams to deliver production-ready software that meets rigorous automotive standards and drive performance across our growing vehicle lineup.
**This is an on-site based role at our Los Angeles, CA HQ**
Responsibilities
Lead the design, development, and integration of vehicle control software across multiple electric vehicle platforms.
Define and maintain system and software architecture for propulsion, regenerative braking, energy management, and thermal control systems.
Oversee the validation and verification of control software, ensuring functionality, performance, and safety compliance.
Translate system level and stakeholder requirements into detailed technical specifications and software requirements.
Conduct system-level trade studies, simulations, and analyses to support design decisions and mitigate technical risks.
Collaborate with cross-functional engineering teams, including electrical, mechanical, and test, to ensure seamless system integration and traceability.
Support root cause analysis and resolution of complex technical issues using structured problem-solving methodologies (e.g. 8D, DMAIC).
Participate in supplier assessment and integration of critical components and subsystems affecting vehicle control performance.
Ensure adherence to functional safety processes (ISO 26262) and contribute to the development of safety-related work products.
Contribute to continuous improvement of software development, verification, and validation practices within the vehicle systems engineering function.
Additional duties and special projects as assigned.
Qualifications
Bachelor’s or Master’s degree in Electrical Engineering, Control Systems, Computer Engineering, Automotive Engineering, or a related field.
Minimum 5+ years of experience in embedded software development, with at least 3 years in vehicle control systems for electric or hybrid vehicles
Proficiency in C/C++, MATLAB/Simulink/Stateflow, and experience with software-in-the-loop (SIL) and hardware-in-the-loop (HIL) environments.
Demonstrated understanding of EV systems, including propulsion, motor/inverter control, battery management systems (BMS), and vehicle-level energy management.
Experience with functional safety standards (ISO 26262) and automotive development lifecycles.
Familiarity with software requirements management tools such as JIRA, Jama, Polarion, and version control systems
Strong analytical, diagnostic, and problem-solving skills with attention to technical detail.
Experience with model-based design workflows and code generation ( e.g. Embedded Coder)
Knowledge of communication protocols such as CAN, LIN, and Ethernet
Ability to travel domestically up to 20% as required to support testing, validation, and launch activiti