Cyngn is seeking a Senior Systems Engineer to lead system definition and architecture for autonomous vehicle and robotics platforms. This role is a senior, hands-on systems position responsible for converting high-level product requirements (L0/L1 user stories and product intent) into detailed, testable engineering specifications, architectures, and verification plans using a structured V-model systems engineering approach.
This is a generalist systems role spanning sensors, compute, power distribution, actuation, and safety-critical behaviors. The ideal candidate has deep experience in industrial robotics or vehicle systems, understands safety certification expectations, and can bridge product intent with disciplined engineering execution.
Define system architectures and interfaces for autonomous vehicle and robotics platforms, including:
Sensors (perception and low-level feedback)
Compute and embedded controllers
Power distribution and protection
Actuation and drive systems
Own requirements decomposition, allocation, and traceability across mechanical, electrical, firmware, and software domains.
Develop system-level verification and validation plans, including test strategies, acceptance criteria, and pass/fail definitions aligned with the systems engineering V-model.
Lead technical trade studies, risk assessments, and architectural decisions with a focus on safety, reliability, and manufacturability.
Act as the systems engineering point of contact for industrial safety certification, ensuring system requirements and test plans support compliance.
Collaborate with product management, safety engineering, hardware, firmware, software, and test teams to ensure aligned execution.
Drive cross-functional design reviews, requirements reviews, and system readiness milestones.
Support integration, debugging, and validation of vehicle and robotic systems during development and deployment phases.
Incorporate industrial safety requirements into system architecture, requirements, and test planning.
Support compliance efforts related to ANSI B56 standards for industrial trucks and autonomous mobile robots (AMRs).
Work closely with safety and compliance teams to define safety functions, fault responses, and operational limits.
Ensure system behaviors are well-defined for normal operation, degraded modes, and fault conditions.
Contribute to safety-related documentation, including requirements, test evidence, and certification support artifacts.
Bachelor’s or Master’s degree in Systems Engineering, Electrical Engineering, Mechanical Engineering, Robotics, or related field.
8+ years of experience in systems engineering for complex electro-mechanical systems (robotics, vehicles, industrial automation, autonomy).
Strong experience translating product-level requirements into detailed engineering specifications and verification plans.
Solid understanding of industrial safety standards, particularly ANSI B56 and related AMR / industrial vehicle safety frameworks.
Hands-on familiarity with low-level sensors and feedback systems, including:
Encoders (incremental, absolute)
Angle and position sensors
Temperature sensors
Current and voltage sensing
Working knowledge of motor systems and actuation, including:
Motor commutation concepts (e.g., BLDC, PMSM)
Feedback and control considerations
Fault detection and protection
Experience defining interfaces between sensors, embedded controllers, power electronics, and higher-level compute.
Strong technical communication skills with the ability to clearly document and review complex system behavior.
Comfortable working on-site 5 days per week in Mountain View, CA
Experience with autonomous mobile robots, industrial vehicles, or material handling equipment.
Prior involvement in safety certification, audits, or compliance testing for industrial or robotic systems.
Familiarity with system integration, bring-up, and hardware validation testing.
Experience working in fast-paced product development environments with cross-functional teams.
| Location | Mountain View, CA |