Develop complex radar electronics intelligence capabilities for new, sustainment and modernization programs.
Develop, integrate, and test hardware/firmware/software within complex intelligence systems (ELINT). This may include leading a multi-disciplinary team.
Support department roadmaps, IRAD's, marketing, and Strategic planning.
Design architectures within a high growth environment and then lead a multi-disciplinary team to develop, integrate, and test complex systems.
Support Department management in specific marketing activities, writing proposals, and developing product/technology roadmaps.
Meet with internal and external customers to establish technical requirements and facilitate development of specification documents and system architectures
Lead trade studies within and across the relevant domains.
Work collaboratively to establish hardware requirements for complex radar processing hardware (ELINT).
Interact directly with clients and company staff to establish system requirements and design architectures that meet client expectations.
Requirements
leadership
radar processing
engineering degree
electronic intelligence
antenna design
driver's license
5-10 years: Experience leading engineering teams.
5-10 years: Experience developing, deriving, allocating and testing complex microwave/radar processing system requirements.
Requires a Bachelors degree in Computer Engineering, Electrical Engineering or related Engineering degree with related experience.
5-10 years: Experience designing electronic intelligence system architectures, microwave frequency antennas, and radar signal processing systems.
A valid/clear driver's license is required.
Benefits
Information not given or found
Training + Development
Information not given or found
Interview process
Information not given or found
Visa Sponsorship
Information not given or found
Security clearance
government security investigation for classified information access.
Company
Overview
With decades of experience, SWRI Structural Geology & Geomechanics provides innovative solutions for geotechnical challenges.
Their team works on large-scale projects across energy, infrastructure, and natural resources, applying cutting-edge techniques.
Their deep expertise spans from geomechanical analysis to structural geological modeling, offering both research and consultancy.
The company is known for its high-impact projects in complex geological environments, such as oilfields and mining sites.
One standout project involved evaluating the impact of subsurface pressures on energy extraction, providing vital data to optimize efficiency.
They specialize in risk analysis and ground stability assessments, ensuring safety in critical infrastructure projects.
Culture + Values
Field investigations of mechanical stratigraphy and natural deformation in sedimentary strata.
2D and 3D geometric and kinematic modeling, balancing, and restoration with seismic interpretation.
Physical analog modeling of geologic structures using dynamic structured light for digital terrain analyses.
Stress analysis using 3DStress® for fault and fracture tendencies.
2D and 3D geomechanical modeling for subsurface stress prediction and hydraulic fracturing simulation.
Field and classroom training for reservoir characterization and performance insights.
Environment + Sustainability
4 MW Electricity
Supercritical CO2 Plant
Generating power using supercritical CO2 technology to reduce environmental impact.
27,000 RPM
Turbine Speed
Achieved full design speed, demonstrating advanced turbine capabilities.
2.3 T Hydrogen
Clean Hydrogen Production
Continuously producing clean hydrogen for thousands of hours.
2023 Vehicle Completion
Zero Emission Engine
Targeting zero or near-zero emissions in heavy-duty vehicles.
Developing gas-turbine combustion systems using low- and zero-carbon fuels (hydrogen, propane, renewable diesel)
Building a high-temperature tubular membrane CO₂ separator for industrial carbon capture
Developing advanced chemical recycling facility for post-consumer plastics via pyrolysis and catalysis, booked through end-2025
Developed methane burner (99.5% destruction) reducing greenhouse gas leaks under ARPA-E’s REMEDY program
Project Z: techno-economic modeling toward onsite zero-carbon electricity generation and roadmap for net-zero power
Inclusion & Diversity
No publicly stated DEI strategy or gender-related statistics found for SwRI Structural Geology & Geomechanics on provided sources.