Full-Time

Electro-Optic and Infrared Systems Engineer

EO/IR

Updated on 8/23/2026

Pennsylvania State University

Pennsylvania State University

Land-grant university in University Park, PA

Compensation Overview

$121.7k - $231k/yr

No H1B Sponsorship

Freeport, PA, USA

In Person

Fully onsite in Freeport, Pennsylvania.

US Citizenship, US Top Secret Clearance Required

Bachelor's

Category
Electrical Engineering (1)
Required Skills
Python
MATLAB
OpenCV
Data Analysis
SolidWorks

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Requirements
  • Direct experience designing, analyzing, procuring, assembling, and testing complete electro-optic and infrared imaging systems for military applications.
  • Experience with infrared imaging systems.
  • Proficiency in a discipline core to the design and development of imaging systems before transitioning to a systems role.
  • Experience operating as a systems engineer for imaging systems.
  • Knowledge of focal plane array types, imaging sensors, camera specifications, and video interfaces.
  • Direct experience with visible and infrared imaging system design and characterization.
  • Strong knowledge of electro-optical assembly methods, including tolerancing and alignment.
  • Working knowledge of physics, electromechanical devices, and imaging sensors.
  • Familiarity with laboratory instrumentation and tools, including oscilloscopes, integrating spheres, spectroradiometers, interferometers, light sources, and motion stages.
  • A Bachelor's degree in Engineering or Science.
  • At least 5 years of relevant experience for the Advanced Professional level, or at least 14 years for the Senior Professional level.
  • Eligibility to obtain a government security clearance.
  • Eligibility to participate in the ARL drug testing program and comply with applicable electronic and physical monitoring requirements.
  • U.S. citizenship.
Responsibilities
  • Develop executable research plans for ambiguous electro-optic and infrared imaging challenges.
  • Perform physics-based modeling to predict imaging system performance using tools such as the Night Vision Integrated Performance Model and MODTRAN.
  • Drive system-level trade studies to develop architectures and allocate requirements across subsystems and engineering disciplines.
  • Select and evaluate cameras across visible, shortwave infrared, midwave infrared, and longwave infrared spectra.
  • Lead laboratory, environmental, and field testing, including authoring test plans, identifying test equipment, and executing tests.
  • Apply hands-on experience building and testing imaging systems to guide research design decisions.
  • Interface with sponsors, customers, and end users to understand problems, scope research, communicate technical execution, and convey results.
  • Track developments in imaging cameras, physics-based modeling, and imaging enhancement techniques and advise on their integration into research.
  • Provide input to the department's strategic research direction by establishing core competencies and evaluating capability alignment with sponsor needs.
  • Perform project planning, budgeting, and scheduling.
  • Manage vendors and suppliers from purchase orders through statements of work.
  • Lead engineers in day-to-day tasking to meet stakeholder requirements and expectations.
  • Provide technical leadership for imaging and electro-optic and infrared programs and initiatives.
  • Independently manage multiple or large electro-optic projects.
  • Develop and propose solutions for new applications.
  • Serve as a Trusted Agent to assess and validate state-of-the-art imaging systems and solutions from the Defense Industrial Base.
Desired Qualifications
  • Experience in an organization responsible for manufacturing electro-optic and infrared systems.
  • Experience using requirements management tools such as DOORS or Jama.
  • Experience with radiometry, link budgets, sensor-response prediction, and image-quality metrics.
  • Experience with software tools for instrument control, data analysis, and image processing, including LabVIEW, MATLAB, ImageJ, Python, and OpenCV.
  • Experience with real-time image processing.
  • Familiarity with laser range finders, LiDAR, and other laser systems.
  • Familiarity with optical components such as dichroic filters, polarizers, beam splitters, lasers, fast-steering mirrors, and shutters.
  • Experience with statistical analysis tools and methods for establishing measurement uncertainty.
  • Familiarity with optomechanical design techniques using mechanical design tools such as SOLIDWORKS.
  • Familiarity with sensors for measuring physical properties, including inertial measurement units, ultrasonic, proximity, photoelectric, and temperature sensors, and with signal-conditioning methods.
  • Knowledge of machine-vision algorithms and image-processing techniques.
  • Security clearance eligibility at the Secret level or higher and possible participation in a government background investigation to upgrade clearance.
Pennsylvania State University

Pennsylvania State University

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Pennsylvania State University is a multi-campus, land-grant public research university whose mission spans undergraduate and graduate education, research, and public service.

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