Own hardware lifecycle systems engineering from requirements to sustainment.
Advance digital engineering practices linking various engineering data.
Provide technical leadership for Government aerospace integration efforts.
Conduct trade studies and convert results into design decisions.
Translate customer needs into system and verification requirements.
Benefits
Opportunities for professional development and advanced training.
Collaborative work environment with multidisciplinary teams.
Engagement in cutting-edge aerospace technology projects.
Potential for career advancement within the organization.
Full Job Description
Lead multidisciplinary aerospace engineering for avionics and mission hardware, integrating aerodynamics, thermal, structural, stress, electronics packaging, and mechanical design across the hardware lifecycle.
Develop and design flightworthy avionics hardware architectures that balance thermal performance, structural integrity, aerodynamic effects, packaging, maintainability, reliability, and aircraft integration constraints.
Own hardware lifecycle systems engineering from requirements and trade studies through detailed design, analysis, integration, verification, qualification, production transition, and sustainment.
Advance digital engineering and digital-thread practices by linking requirements, models, analyses, interfaces, design data, verification evidence, configuration baselines, and lifecycle decisions.
Provide technical leadership for Government aerospace integration efforts, leading multidisciplinary teams, technical reviews, risk resolution, customer coordination, and delivery of high-confidence hardware solutions.
Lead multidisciplinary trade studies across aerodynamics, thermal, structures, stress, electronics packaging, materials, interfaces, and aircraft integration; convert results into clear design decisions and requirements.
Develop and review CAD, CFD, FEA, thermal, structural, stress, and packaging analyses; correlate models with test data, assess margins and uncertainty, and support design maturation and qualification.
Translate Government and customer needs into system, subsystem, interface, and verification requirements; manage technical baselines, interfaces, changes, risks, and lifecycle traceability.
Build and maintain the digital thread connecting requirements, MBSE models, CAD/CAE data, analyses, ICDs, configuration artifacts, test results, verification evidence, and technical decisions.
Lead design reviews, integration/test readiness, anomaly resolution, qualification, airworthiness support, supplier coordination, and mentoring of engineers across multidisciplinary avionics hardware efforts.
Requires a Bachelors degree in Mechanical Engineering, Aerospace Engineering, Electrical Engineering, Systems Engineering, or related Engineering degree field. Advanced degree preferred and may be considered in lieu of some years of work experience.
11+ years: Experience must directly support aerospace/avionics hardware development, integration, and verification. Leading aerospace or avionics hardware development involving thermal, structural, stress, aerodynamic, packaging, mechanical, or electrical integration across flight systems.
11+ years: Applying engineering analysis tools such as CFD, FEA, thermal networks, structural/stress analysis, CAD/CAE, or electronics packaging methods to drive design, margins, and qualification.
11+ years: Applying systems engineering across the hardware lifecycle: requirements, architecture, interfaces, trade studies, configuration control, integration, verification, qualification, and sustainment.
11+ years: Leading multidisciplinary engineering teams and Government integration activities, including technical reviews, risk resolution, customer communication, digital engineering, and delivery accountability.
A valid/clear driver's license is required.
About Southwest Research Institute (SwRI)
Southwest Research Institute (SwRI) is a non-profit research and development organization headquartered in San Antonio, Texas. The institute was founded in 1947 and has since grown to employ over 3,000 people across multiple locations in the United States. SwRI provides research and development services to a variety of industries, including automotive, aerospace, and energy. The institute's research areas include automation and data systems, chemistry and chemical engineering, and space science and engineering. SwRI has a long history of working with government agencies, including NASA and the Department of Defense, as well as private companies.