Senior Electrical Design Automation Engineer
General Motors
- Location
- Warren, Michigan, United States of America
- Work model
- On-Site
- Level
- Senior
- H-1B history
- 267 approvals (FY2023)
- Posted
- Sep 17, 2026
Skills
About this role
Job Description
Work Arrangement: Hybrid: This role is categorized as hybrid. This means the successful candidate is expected to report to Warren, MI three days (Tues., Wed., Thurs.) a week, at minimum.
Our Mission
There’s never been a more exciting time to work at General Motors! We are passionate about our bold vision of a world with Zero Crashes, Zero Emissions, and Zero Congestion . Our culture is built on inclusivity, where diverse perspectives are embraced, and every employee can contribute to their fullest potential. We offer flexible and tech-savvy work environments, foster innovation through collaboration, and encourage community engagement through volunteerism.
The Role
We are seeking a Senior Electrical Design Automation Engineer to lead the integration, extension, and automation of Siemens Capital and related electrical-engineering toolchains. This role combines electrical architecture expertise with software-development discipline to create plugins, APIs, services, workflows, and AI agents that improve design quality, accelerate release, and maintain traceability from logical connectivity through physical implementation and manufacturing documentation. A key focus will be converting existing PSDS and electrical-engineering processes into intelligent AI-agent workflows that reduce manual effort, scale engineering expertise, and transform design, problem resolution, validation, and release activities. The successful candidate will work across electrical engineering, software engineering, manufacturing, PLM, IT, suppliers, and engineering-tool vendors. They will own solutions from requirements and architecture through implementation, validation, deployment, adoption, and support.
What You'll Do
Capital integration and toolchain ownership Architect integrations across Siemens Capital Logic, Capital Harness, Capital Topology, Capital Integrator, Capital Platform Designer, and adjacent systems Define data models, interfaces, mappings, and transformation rules across logical, physical, 3D, PLM, requirements, and manufacturing representations Evaluate Capital capabilities, identify gaps, and recommend configuration, customization, plugin, or service-based solutions Establish reusable integration patterns, coding standards, versioning practices, and deployment methods Partner with vendors and internal platform teams to resolve issues and influence product roadmaps Plugin, API, and automation development Design, develop, test, document, and support plugins, APIs, connectors, scripts, and services for electrical design workflows Automate model creation, connectivity checks, design-rule validation, drawing generation, bill-of-material extraction, reporting, and release preparation Build reliable import, export, comparison, and validation pipelines to identify missing data, invalid connectivity, inconsistencies, and release defects Apply software-engineering practices including source control, code review, automated testing, logging, error handling, and configuration management Support CI/CD where appropriate for engineering applications and automation services AI tools for PSDS within VSEE Develop, deploy, and maintain AI agents and AI-enabled tools for the Power and Signal Distribution Systems (PSDS) organization within VSEE Convert existing PSDS engineering, design-release, quality, and knowledge-management processes into secure, usable, and maintainable AI workflows Integrate AI tools with engineering data and systems while preserving data quality, access controls, traceability, and engineering accountability Electrical engineering and system integration Apply knowledge of electrical architecture, wiring systems, power and signal distribution, grounding, shielding, connectors, terminals, splices, and communication networks Maintain traceability from requirements and logical connectivity through physical routing, drawings, bills of material, manufacturing outputs, verification, and change