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Imaging Engineer Jobs in Michigan (NOW HIRING)

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Provide high quality realistic imaging and 3D animation videos for marketing. Note: This list of ... Programming experience is preferred. * Strong mechanical aptitude with a focus on safety and ...

Sr Research Engineer-RF

Ann Arbor, MI · On-site

$130K - $194K/yr

Relevant sensor types include electro-optic/infrared and active/passive radar imaging systems. Most ... Collaboration with engineers across different domains, including: mechanical, optical, digital

Lead Civil Engineer

Clarkston, MI · On-site

$125K - $150K/yr

... imaging, and EV charging solutions to keep businesses and people moving 24 hours a day, 7 days a ... The Engineer will be responsible for applying scientific and mathematical principles to design ...

Sr Research Engineer-RF

Ann Arbor, MI · On-site

$130K - $194K/yr

Relevant sensor types include electro-optic/infrared and active/passive radar imaging systems. Most ... Collaboration with engineers across different domains, including: mechanical, optical, digital

Sr Research Engineer-RF

Ann Arbor, MI · On-site

$130K - $194K/yr

Relevant sensor types include electro-optic/infrared and active/passive radar imaging systems. Most ... Collaboration with engineers across different domains, including: mechanical, optical, digital

Cloud Engineer

Farmington Hills, MI · On-site +1

$54.75 - $73.25/hr

... imaging, software deployment, configuration, and lifecycle management • Respond to incidents ... Engineering, or a related field, or equivalent work experience • 3+ years of experience in Linux ...

Showing results 41-60

Imaging Engineer information

See Michigan salary details

$27.5K

$65K

$95K

How much do imaging engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for imaging engineer in Michigan is $65,000.00, according to ZipRecruiter salary data. Most workers in this role earn between $43,600.00 and $72,800.00 per year, depending on experience, location, and employer.

What is an imaging engineer?

Imaging Engineers are professionals who design, develop, maintain, and troubleshoot imaging equipment, such as MRI, CT, X-ray, and ultrasound machines. They work in healthcare, research, and manufacturing settings to ensure imaging devices function accurately and safely. Their responsibilities may involve installing new equipment, calibrating devices, performing preventive maintenance, and training staff on proper usage. Imaging Engineers play a crucial role in supporting medical diagnostics and research by keeping advanced imaging technology operational.

What does an imaging engineer do?

The job duties of an imaging engineer involve working on the maintenance, installation, and calibration of diagnostic imaging equipment. Your exact responsibilities in this career depend on the specialty in which you work. You may install, repair, and perform the calibration of MRI or CT equipment, radiology equipment, arthroscopic surgical imaging devices, or other medical, clinical, and diagnostic imaging equipment. In addition to making repairs and performing maintenance, you may perform regular inspections to ensure that the imaging is accurate.

What are the key skills and qualifications needed to thrive as an imaging engineer, and why are they important?

To thrive as an Imaging Engineer, you need a solid background in engineering or physics, expertise in imaging modalities (such as MRI, CT, or ultrasound), and typically a relevant bachelor's or master's degree. Familiarity with medical imaging software, programming languages (like Python or MATLAB), and certifications such as Certified Radiology Equipment Specialist (CRES) are commonly required. Strong problem-solving skills, attention to detail, and effective communication help Imaging Engineers excel in troubleshooting and collaborating with healthcare professionals. These abilities are crucial for maintaining the safety, accuracy, and reliability of imaging equipment in clinical environments.

What are some common challenges imaging engineers face when troubleshooting imaging equipment, and how are these typically addressed?

Imaging Engineers often encounter challenges such as diagnosing complex hardware or software faults in imaging systems, keeping up with rapidly advancing technology, and minimizing equipment downtime in clinical or research environments. These challenges are typically addressed through systematic troubleshooting, liaising with equipment manufacturers, utilizing service manuals and diagnostic tools, and collaborating closely with biomedical engineers, IT staff, and end-users. Continuous training and hands-on experience are essential for staying current and effectively resolving technical issues.

What is the difference between Imaging Engineer vs Medical Imaging Technician?

AspectImaging EngineerMedical Imaging Technician
Required CredentialsBachelor's or higher in engineering, certifications in imaging technologyAssociate's or bachelor's in radiologic technology, state licensure
Work EnvironmentResearch labs, tech companies, manufacturing facilitiesHospitals, clinics, diagnostic centers
Employer & IndustryTech firms, healthcare device manufacturersHealthcare providers, diagnostic imaging centers

Imaging Engineers focus on developing and improving imaging technology, often working in research or manufacturing settings. Medical Imaging Technicians operate imaging equipment directly on patients in clinical environments. While both roles involve imaging technology, their responsibilities, credentials, and work settings differ significantly.

What are popular job titles related to Imaging Engineer jobs in Michigan? For Imaging Engineer jobs in Michigan, the most frequently searched job titles are:
What cities in Michigan are hiring for Imaging Engineer jobs? Cities in Michigan with the most Imaging Engineer job openings:
What are popular job titles related to Imaging Engineer jobs in MI? For Imaging Engineer jobs in MI, the most frequently searched job titles are:
Infographic showing various Imaging Engineer job openings in Michigan as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, and 4% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $65,000 per year, or $31.2 per hour.

Software Engineer III - Liberty Robotics

LMI Technologies

Dexter, MI • On-site

Full-time

Medical, Dental, Vision, Life

Re-posted 17 hours ago


Job description

At Liberty Robotics, we provide 3D volumetric vision guidance systems for robot applications. Our systems improve manufacturing, material/part handling, and logistics operations performed in industrial environments. We are looking for highly qualified applicants to join our core Technology Research team. We drive to inspire like-minded individuals who envision a future where manufacturing assembly and material handling processes are faster, safer, and more reliable.
We recently joined LMI Technologies, recognized as one of Canada’s Best Workplaces. Together, our teams work passionately toward the common goal of designing and delivering innovative 3D machine vision solutions to OEMs and System Integrators working in industrial factory automation around the world.
We are seeking an analytical and technically mature Software Engineer III to join our core team. Collaborating in a fast-paced environment alongside dedicated researchers and engineers, you will serve as a high-visibility individual contributor with complete, end-to-end software ownership.
This stable, core role is designed for a self-starting engineer who can seamlessly bridge the gap between high-level mathematical research and production-grade code. In this position, you will be responsible for taking advanced algorithmic concepts out of a clean simulation environment and successfully deploying them onto a loud, unpredictable manufacturing floor.
Typical Duties, Activities, Responsibilities
  • Algorithmic Design & Validation: Formulate, implement, and validate advanced 2D and 3D computer vision pipelines from mathematical first principles.
  • Transitioning Lab to Field: Port, optimize, and deploy production-quality code that interfaces with physical depth sensors, ensuring real-time control loops remain deterministic and lag-free.
  • Strategic R&D Decision Making: Evaluate system architectures to intelligently determine when to leverage classical image processing workflows versus modern deep learning models to eliminate operational latencies.
  • Technical Ownership & Code Quality: Champion software development best practices by leading meticulous peer code reviews, refactoring legacy components, and managing complex multi-codebase integrations.
  • Hands-on Validation: Collaboratively troubleshoot and fine-tune your vision pipelines live on physical hardware and prototype configurations.
Education and Qualifications
  • Education: Bachelor's degree in Computer Science, Electrical Engineering, Robotics, Mathematics, or a related technical field.
  • Spatial Mathematics: Solid foundational understanding of linear algebra, geometry, coordinate systems, and rigid-body transformations.
  • 3D Perception Stack: Hands-on experience with 3D computer vision and perception algorithms, including point cloud processing, 3D registration, pose estimation, object detection, object fitting, reconstruction, and related techniques.
  • 2D Image Processing: Experience with 2D image processing and computer vision methods, including image filtering, feature extraction, segmentation, object detection, image registration, and morphological operations.
  • Software Development: Industry experience developing software, algorithms, or perception systems for real-world applications.
  • Analytical Rigor: Strong analytical and problem-solving skills, with the ability to develop and validate algorithms.
  • Production Coding: Demonstrated ability to write efficient, maintainable, and production-quality software in C++ and/or Python.
  • Field Commitments: Willingness to travel to customer and OEM installation sites (approximately 1 week out of 10) to perform live field validations on active machinery.
  • Professional Tenure: Extensive career background comprising 5 to 10 years of focused technical expertise in 3D perception and image processing stacks.
Preferred Qualifications
  • Advanced Degree: M.S. or Ph.D. in Computer Science, Electrical Engineering, Robotics, Mathematics, or a related field.
  • Domain Expertise: Professional background within the Logistics or Automotive industry.
  • Imaging & Optics: Understanding of camera and imaging systems, including camera calibration, pinhole camera models, stereo vision, and depth sensing technologies.
  • Mathematical Optimization: Background in linear and nonlinear optimization, with practical experience applying optimization techniques to computer vision, robotics, or perception problems.
  • Advanced AI Evaluation: Knowledge of machine learning and deep learning techniques, including CNNs, Transformers, foundation models, multimodal learning, pre-training, fine-tuning, and model deployment, paired with the ability to evaluate the strengths and limitations of modern AI approaches.
  • Hardware Acceleration: GPU programming experience (e.g., CUDA, OpenCL, or related frameworks) is a plus.
  • Engineering Best Practices: Familiarity with software development best practices, including version control, testing, code reviews, and continuous integration.
  • Location Priority: Candidates located in, or willing to relocate to, the Ann Arbor, Michigan area are preferred.
Perks and Benefits
  • Location: Fully on-site at our technology hub in the Ann Arbor/Dexter, Michigan area.
  • Environment: A collaborative, innovative, and cubicle-free R&D laboratory designed for engineers who perform at their best under high personal accountability rather than heavy supervision.
  • Compensation: We offer competitive salary + Eligibility for Profit Sharing Program Participation (pending successful completion of probationary period and based on business performance).
  • Health Benefits: Your health and wellness are vital to the success of Liberty Robotics, and our benefit plans provide an important foundation of stability to you and your family. We are proud to provide the following benefits to our employees: Medical and Prescription Drug, Dental, Vision, Basic Life and Accidental Death & Dismemberment (AD&D) Insurance, Short-Term Disability, Long-Term Disability, Employee Assistance Program, Travel Assistance, and Will Prep.
  • Growth & Development: An annual Education Support Program for training and professional growth, plus annual performance reviews.
  • Enjoy free snacks and drinks, team-building events, tenure awards, and our official "May the 4th" (Star Wars Day) company holiday!
  • Please note that financial relocation assistance and immigration sponsorship are not available for this position.
  • We are recognized as a “Great Place to Work” for 10 consecutive years!
Our Recruitment Process
  • While we appreciate your interest in Liberty Robotics and LMI Technologies very much, we may only be able to respond to candidates selected for further consideration.
  • We believe in a transparent and collaborative hiring journey. Our goal is to ensure you are as excited about us as we are about you. Below is the typical path (can vary by position):
    • Talent Discovery (Human Resources): An initial screening call focused on your professional background, language and communication proficiency, and cultural alignment with the team as well as overview of role and company.
    • Technical Assessment!
    • Role Fit (Hiring Manager): A deep dive into your experience, knowledge and skills as well as sharing of role expectations and team initiatives:
      • 1st Round: General background and foundational knowledge in areas such as mathematics, image processing, and programming.
      • 2nd Round: Problem solving skills and ability to apply knowledge to practical challenges.
  • Cultural & Peer Alignment (Hiring Team & Stakeholders): A collaborative session with prospective colleagues and cross-functional partners to explore technical synergy, shared experiences, and the professional landscape at Liberty Robotics.

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