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Imaging Engineer Jobs in Austin, TX (NOW HIRING)

Lead Optical Engineer (Austin, TX)

Austin, TX · On-site

$127K - $165K/yr

Non-imaging concentrating optics experience is required for this role. This position is based in ... Master's or PhD in Optical Engineering, Physics, Electrical Engineering, or a related discipline ...

Lead Optical Engineer (Austin, TX)

Austin, TX · On-site

$127K - $165K/yr

Non-imaging concentrating optics experience is required for this role. This position is based in ... Master's or PhD in Optical Engineering, Physics, Electrical Engineering, or a related discipline ...

... imaging technology. At Graftek, every day and every problem is unique. We thrive on solving real\-world challenges through hands\-on engineering, creative problem\-solving, and close collaboration ...

Utilize non-imaging ray-tracing software, such as LightTools or FRED, for performance simulations ... Master's or PhD in Optical Engineering, Physics, Electrical Engineering, or a related discipline ...

Company Description Arisontek Job Title OnBase Developer Relevant Experience (in Yrs) Min 8 years ... Basic Function Onbase workflow , Imaging and capturing Onbase Adminstration Qualifications ...

We design and integrate multi-axis robotic arms, perception systems including custom imaging ... As an Electrical Engineer on the Surgery & Robot Hardware Team, you will be expected to design ...

Company Description Arisontek Job Title OnBase Developer Relevant Experience (in Yrs) Min 8 years ... Basic Function • Onbase workflow , Imaging and capturing • Onbase Adminstration Qualifications ...

Conduct preliminary tests of new imaging technologies for robotic surgeries * Collaborate with engineering teams to evaluate and implement process improvements * Prepare relevant documentation and ...

The Failure Analysis Engineer will be responsible for FIB/SEM cross section and other physical ... Perform FIB cross-sectioning, SEM imaging, and EDS analysis on thermoelectric thin-film devices and ...

Senior IT Solutions Engineer

Austin, TX · On-site

$122K - $168K/yr

Who We Are Applied Materials is a global leader in materials engineering solutions used to produce ... Own Windows OS imaging, golden image standards, lifecycle planning, upgrade strategies, and ...

Showing results 21-40

Imaging Engineer information

See Austin, TX salary details

$31.2K

$73.9K

$108K

How much do imaging engineer jobs pay per year?

As of Sep 4, 2026, the average yearly pay for imaging engineer in Austin, TX is $73,921.00, according to ZipRecruiter salary data. Most workers in this role earn between $49,600.00 and $82,800.00 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 Austin, TX?

For Imaging Engineer jobs in Austin, TX, the most frequently searched job titles are:

What job categories do people searching Imaging Engineer jobs in Austin, TX look for?

The top searched job categories for Imaging Engineer jobs in Austin, TX are:

What cities near Austin, TX are hiring for Imaging Engineer jobs?

Cities near Austin, TX with the most Imaging Engineer job openings:

Infographic showing various Imaging Engineer job openings in Austin, TX as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, and 4% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $73,921 per year, or $35.5 per hour.

Lead Optical Engineer (Austin, TX)

Exowatt

Austin, TX • On-site

$127K - $165K/yr

Full-time

Medical, Dental, Retirement

Re-posted 20 days ago


Job description

Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand. Founded in 2023 and backed by leading investors including Andreessen Horowitz, Sam Altman, and Felicis, we're committed to providing clean, modular, and scalable power that meets the rapidly growing demands of AI infrastructure. Our mission is to make sustainable renewable energy always available and almost free, enabling technological advancement while protecting our planet.

We are seeking a highly skilled and motivated Lead Optical Engineer to own concentrator design, optical testing, and model validation for the P3. In this role, you will design and optimize non-imaging optics for maximum flux transfer, build and automate optical test setups, validate models against on-sun performance, and work across the optic-to-thermal boundary that defines the P3 architecture. You will collaborate closely with the Optical Product Development, R&D, and thermal teams to ensure alignment between design intent, test outcomes, and delivered system performance.

Non-imaging concentrating optics experience is required for this role.

This position is based in Austin, TX preferred, however an alternate location of Miami, FL is possible for the right candidate. If hired for this role, relocation to one of these sites is required. We provide relocation assistance.

What You'll Do:
  • Design and optimize non-imaging concentrating optics - Fresnel primaries and secondary optical elements - to maximize flux transfer, uniformity, and intercept factor rather than image quality.

  • Build an optical error budget that rolls slope error, tracking error, and alignment tolerances into an intercept-factor model, and validate it against hardware.

  • Design for uniform irradiance on the receiver, mitigating hot spots and the material stress that uneven flux drives on a thermal absorber.

  • Design, automate, and optimize optical test setups for our concentrators and complex opto-mechanical assemblies, ensuring efficiency and precision.

  • Characterize concentration ratio, acceptance angle, focal-spot flux distribution, and end-to-end optical efficiency, and validate these against Monte Carlo ray-tracing models.

  • Automate ray-tracing, test procedures, and analysis using Python (and C++/MATLAB as needed) to streamline workflows and improve accuracy.

  • Conduct on-sun testing - flux mapping, calorimetry, and pyrheliometer-based efficiency measurement - and reconcile field results with simulation.

  • Feed validated optical performance into annual optical-efficiency models, thermal models, and the system digital twin (developed with NVIDIA and AWS).

  • Characterize soiling, UV degradation, and abrasion on polymer optics, and evaluate anti-reflective and anti-soiling coatings to support a 30-year field lifespan.

  • Define and validate manufacturing tolerances for optical components produced at high volume in domestic factory settings.

  • Collaborate with optical, mechanical, electrical, thermal, and systems engineering teams to ensure alignment across product development stages.

  • Maintain clear, organized technical documentation for internal teams and external stakeholders.

What You Have:
  • Education & foundation

    • Master's or PhD in Optical Engineering, Physics, Electrical Engineering, or a related discipline, with a minimum of 3 years of industry experience, or equivalent work experience.

    • Hands-on experience with optical systems in a lab environment, including assembly, alignment, integration, and testing.

    Core non-imaging design competencies

    • Concentrator design experience with Fresnel lenses (ideally molded PMMA or silicone-on-glass), compound parabolic concentrators (CPCs), parabolic troughs, heliostats, or secondary optical elements (SOEs). Designing a coupled primary + secondary stage for CPV or CSP is an ideal match.

    • Fluency in the language of concentration limits - etendue conservation, geometric concentration ratio, acceptance angle, and the concentration-acceptance product (CAP).

    • Command of the edge-ray principle and tailored-optics design, optimizing for flux transfer over image quality; familiarity with Winston/Minano/Benitez methods or simultaneous multiple surface (SMS) design is a strong plus.

    • Experience designing for irradiance uniformity, hot-spot mitigation, and intercept-factor optimization on a receiver or absorber.

    Software & simulation

    • Proficiency with Monte Carlo ray-tracing tools built for illumination/flux work - TracePro, LightTools, FRED, Photopia, or CSP-specific codes such as SolTrace or Tonatiuh. Zemax/OpticStudio in non-sequential mode counts; sequential-only imaging experience is a weaker fit.

    • Ability to build custom ray-tracing or optimization routines in Python or MATLAB, and to construct optical error budgets (slope, tracking, and alignment tolerances rolled into an intercept-factor model).

    Solar-specific domain knowledge

    • Familiarity with sun-shape and DNI modeling, circumsolar ratio, cosine losses, and annual optical-efficiency simulation (often paired with SAM or similar performance models).

    • Tracking-system tolerance analysis - how pointing error degrades concentration - with awareness of UL 3703-adjacent tracker considerations.

    • Understanding of soiling, UV degradation, and abrasion on polymer optics, and of anti-reflective and anti-soiling coatings.

    Hardware & manufacturing

    • Exposure to injection or compression molding of PMMA/silicone Fresnel optics, diamond turning of mold masters, and metrology for large-aperture optics (deflectometry, photogrammetry, VSHOT-type slope measurement).

    • Receiver/absorber interface experience - cavity receivers, selective absorber coatings, or thermal receiver flux limits - demonstrating work across the optic-to-thermal boundary that defines the P3.

    • Outdoor test experience: on-sun testing, flux gauges and calorimetry, and pyrheliometer-based efficiency measurement.

    Ways of working

    • A problem-solving mindset, with the ability to work independently and collaboratively.

    • Excellent communication skills, capable of articulating technical concepts to both technical and non-technical audiences.

What We Offer:
Competitive salary and equity options.
Comprehensive benefits package, including health, dental, and retirement plans.
A dynamic work environment that fosters creativity and innovation.
Opportunities for professional growth and development in a rapidly evolving industry.
Relocation assistance.
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.
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