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Aerospace System Engineer Jobs in Wisconsin (NOW HIRING)

Bachelor's degree in electrical or aerospace engineering * 5+ years of relevant experience * Strong RF and/or EMC engineering background * Substantial experience with large scale system-level EMC ...

Role - texte Competences - titreREGARDING THE POSITIONCompetences - texte The Aerospace Engineering ... Satellite communication systems * Satellite navigation * Remote sensing, imaging and image ...

V-model activities such as system requirements definition, system design, system verification and ... building, or aerospace industries. * Understanding of V-model systems engineering process.

V-model activities such as system requirements definition, system design, system verification and ... building, or aerospace industries. * Understanding of V-model systems engineering process.

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Aerospace System Engineer information

See Wisconsin salary details

$54K

$128.4K

$168.6K

How much do aerospace system engineer jobs pay per year?

As of Jul 27, 2026, the average yearly pay for aerospace system engineer in Wisconsin is $128,405.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,900.00 and $158,500.00 per year, depending on experience, location, and employer.

What is the difference between Aerospace System Engineer vs Aerospace Design Engineer?

AspectAerospace System EngineerAerospace Design Engineer
Primary FocusSystems integration, functionality, and overall system performanceComponent and subsystem design, development, and optimization
Required SkillsSystems engineering, systems architecture, integration, testingCAD, structural analysis, aerodynamics, materials
Work EnvironmentCollaborates across teams, often in systems labs or on aircraft/spacecraft projectsDesign studios, CAD environments, prototype labs
CertificationsTypically none specific, but systems engineering certifications are commonOften requires engineering licenses or design certifications

In summary, Aerospace System Engineers focus on integrating and managing entire aerospace systems, ensuring all components work together effectively. Aerospace Design Engineers concentrate on creating and refining individual components and subsystems. Both roles are essential and often collaborate closely in aerospace projects.

What are the key skills and qualifications needed to thrive as an Aerospace System Engineer, and why are they important?

To thrive as an Aerospace System Engineer, you need a solid background in aerospace engineering principles, systems integration, and problem-solving, typically supported by a bachelor's or master's degree in aerospace or mechanical engineering. Familiarity with CAD tools, simulation software (such as MATLAB/Simulink), and industry standards like DO-178C, as well as relevant certifications, is often required. Strong collaboration, attention to detail, and effective communication are vital soft skills for working across multidisciplinary teams and managing complex projects. These competencies ensure the delivery of safe, reliable, and innovative aerospace systems in a highly regulated and technologically advanced industry.

How does an Aerospace System Engineer typically collaborate with multidisciplinary teams during a project?

Aerospace System Engineers frequently work alongside specialists in avionics, propulsion, structural engineering, and software development to ensure that all systems integrate seamlessly. Effective communication and coordination are essential, as engineers must align requirements, resolve technical conflicts, and validate system interfaces. Regular meetings, design reviews, and documentation updates are common practices that facilitate this collaboration. By engaging with diverse teams, Aerospace System Engineers play a pivotal role in delivering safe, reliable, and high-performing aerospace solutions.

What are Aerospace System Engineers?

Aerospace System Engineers are professionals who design, develop, and oversee complex systems used in aircraft, spacecraft, satellites, and missiles. They integrate various engineering disciplines to ensure all components of an aerospace system work effectively together. Their work involves requirements analysis, system modeling, testing, troubleshooting, and ensuring compliance with safety and quality standards. Aerospace System Engineers often collaborate with multidisciplinary teams to solve challenging technical problems and optimize system performance throughout a project's lifecycle.
What job categories do people searching Aerospace System Engineer jobs in Wisconsin look for? The top searched job categories for Aerospace System Engineer jobs in Wisconsin are:
Infographic showing various Aerospace System Engineer job openings in Wisconsin as of July 2026, with employment types broken down into 87% Full Time, 9% Part Time, 2% Contract, and 2% Nights. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution, with an average salary of $128,405 per year, or $61.7 per hour.
Sr. Optical System Engineer

$130K - $168K/yr

Full-time

Posted 12 days ago


Thermo Fisher Scientific rating

7.7

Company rating: 7.7 out of 10

Based on 419 frontline employees who took The Breakroom Quiz

199th of 535 rated manufacturers


Job description

Work Schedule

Standard (Mon-Fri)

Environmental Conditions

Able to lift 40 lbs. without assistance, Laboratory Setting, Office

Job Description

LOCATION: This is a fully onsite position based at our Madison, WI site. Unfortunately, relocation assistance is NOT provided.  

Must be legally authorized to work in the United States without sponsorship now or in the future. 
Must be able to pass a comprehensive background check, which includes a drug screen. 
 

As part of the Thermo Fisher Scientific team, you’ll discover meaningful work that makes a positive impact on a global scale. Join our colleagues in bringing our Mission to life every day to enable our customers to make the world healthier, cleaner, and safer. We provide our teams with the resources needed to achieve individual career goals while advancing solutions to some of the world’s toughest challenges, like protecting the environment, making sure our food is safe or helping find cures for cancer.

The Analytical Instruments Group (AIG) at Thermo Fisher Scientific provides a broad portfolio of instruments, software, and services that support a wide range of laboratory, production, and field applications. Our solutions are used by customers across pharmaceutical, biotechnology, academic, government, environmental, and industrial markets to advance research, improve productivity, and drive innovation. At the Madison, Wisconsin site, our teams design and manufacture advanced spectroscopy instrumentation used by scientists around the world for research, materials science, energy, and industrial applications.

Description 

We are seeking an experienced Optical Systems Engineer to architect and develop advanced optical systems for FTIR, NIR, and Raman spectroscopy instruments. This role focuses on system-level design, optical modeling, and cross-functional integration of complex photonic systems. The ideal candidate combines strong optical expertise with systems engineering experience and thrives in a collaborative, multidisciplinary environment. 

Key Responsibilities 

  • Design and develop optical systems, including imaging, illumination, sensing, or laser-based subsystems  

  • Translate product requirements into optical architectures and system-level specifications  

  • Perform optical modeling and simulation (e.g., Zemax, Code V, LightTools)  

  • Drive tolerance analysis, error budgeting, and performance optimization  

  • Collaborate with mechanical, electrical, software, and manufacturing teams to ensure robust system integration  

  • Own system-level trade studies and design decisions balancing performance, cost, and manufacturability  

  • Guide prototyping, testing, and validation of optical systems  

  • Develop and execute test plans; analyze data and iterate designs accordingly  

  • Support transfer to manufacturing, including alignment strategies and yield improvement  

  • Troubleshoot complex optical/system-level issues in development and production  

  • Mentor junior engineers and contribute to technical leadership within the team  

  • Interface with external vendors and partners for components and subsystems  

Requirements 

  • Advanced Degree in Optical Engineering, Physics or related discipline plus 3 years of experience, or Bachelor's Degree plus 5 years of experience developing complex optical systems 

  • Strong understanding of optical principles, including geometrical optics, wave optics, diffraction, and polarization 

  • Experience with optical design and simulation tools (e.g., Zemax) 

  • Experience designing and analyzing optical systems such as imaging systems, lasers, fiber optics, or photonic devices 

  • Familiarity with laboratory optical equipment (e.g., interferometers, spectrometers, alignment tools) 

  • Knowledge of optical tolerancing, fabrication processes, and metrology techniques 

  • Strong analytical and problem-solving skills with the ability to optimize complex system performance 

  • Experience collaborating with cross-functional teams across mechanical, electrical, and software engineering 

  • Programming experience (Python, MATLAB, or similar) for data analysis, modeling, or automation 

  • Experience working in regulated development environments (e.g., medical devices, aerospace, defense) is a plus 

  • Knowledge of opto-mechanical design considerations and thermal effects in optical systems 

  • Familiarity with ISO or other relevant industry standards 

  • Experience leveraging AI/ML or generative AI tools to enhance data analysis, optical modeling, or engineering productivity (e.g., code generation, data interpretation, or design exploration) 

  • Awareness of how AI/ML techniques may be applied to instrument data processing, signal analysis, or system optimization 

  • Strong written and verbal communication skills, including the ability to contribute to technical documentation and design reviews 

  • Demonstrated ability to manage technical work independently while contributing to team deliverables 


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