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Internship Superconducting Magnet Engineer Jobs (NOW HIRING)

Design and analyze cryogenic components and systems used in superconducting MRI magnets * Perform ... Lead engineering productivity projects focused on product cost and lifecycle cost reduction ...

Design and analyze cryogenic components and systems used in superconducting MRI magnets * Perform ... Lead engineering productivity projects focused on product cost and lifecycle cost reduction ...

HTS Magnet Analyst

Kearny, NJ · On-site

$85K - $120K/yr

... superconducting ("HTS") magnets, foundational components of Thea Energy's planar coil stellarator ... engineering, physics, or a data‑analysis‑focused role; internship or academic research ...

Senior Electrical Engineer

Oak Ridge, TN · On-site

$93K - $121K/yr

Electrical Engineer (Instrumentation & Embedded Systems) Cryomagnetics, Inc. | Oak Ridge, TN | Full-time, on-site About Cryomagnetics We've built superconducting magnets and cryogenic systems in Oak ...

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The Cryogenic Engineer will be responsible for designing, analyzing, and validating cryogenic systems that support superconducting magnets and other low-temperature components in our stellarator ...

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You'll report to the Engineering Manager. This is a broad role in a small company. The same person ... Experience with cryogenics, superconducting magnets, high vacuum, or low-temperature ...

The Cryogenic Engineer will be responsible for designing, analyzing, and validating cryogenic systems that support superconducting magnets and other low-temperature components in our stellarator ...

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Internship Superconducting Magnet Engineer information

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How much do internship superconducting magnet engineer jobs pay per hour?

As of Sep 15, 2026, the average hourly pay for internship superconducting magnet engineer in the United States is $25.42, according to ZipRecruiter salary data. Most workers in this role earn between $20.67 and $28.85 per hour, depending on experience, location, and employer.

What does an internship superconducting magnet engineer do?

An Internship Superconducting Magnet Engineer assists in the design, testing, and analysis of superconducting magnets, which are vital for applications such as MRI machines, particle accelerators, and scientific research. Interns typically work under the supervision of experienced engineers, helping to build prototypes, conduct experiments, and analyze data to improve magnet performance. They may also gain experience in cryogenics, material science, and electromagnetic simulation tools, contributing to real-world engineering projects while developing their technical skills.

What types of projects and responsibilities can an internship superconducting magnet engineer expect to work on during their internship?

As an Internship Superconducting Magnet Engineer, you can expect to be involved in hands-on projects such as assisting with the design, assembly, and testing of superconducting magnets used in scientific or medical applications. Interns frequently collaborate with experienced engineers and physicists to analyze magnet performance data, troubleshoot technical issues, and prepare technical documentation. You'll also gain experience working in multidisciplinary teams, often coordinating with cryogenics, electronics, and materials specialists. This role provides valuable exposure to both experimental and computational aspects of magnet engineering, offering a solid foundation for future career advancement in the field.

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

To thrive as an Internship Superconducting Magnet Engineer, you typically need a strong academic background in physics, electrical or mechanical engineering, and familiarity with electromagnetic theory. Experience with simulation software such as ANSYS or COMSOL, and knowledge of cryogenic systems or relevant laboratory instrumentation, are highly valuable. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help interns excel in collaborative research environments. These competencies ensure accurate design, analysis, and troubleshooting of complex magnet systems, supporting project goals and innovation.

What is the difference between Internship Superconducting Magnet Engineer vs Research Assistant in Superconducting Magnet Development?

AspectInternship Superconducting Magnet EngineerResearch Assistant in Superconducting Magnet Development
Required CredentialsEnrolled in engineering or physics program, basic knowledge of superconductivityEnrolled in graduate program, specialized coursework in superconducting magnets
Work EnvironmentIndustry labs, manufacturing facilities, project teamsAcademic labs, research institutions, collaborative projects
Employer & Industry UsageCompanies developing MRI, particle accelerators, fusion devicesUniversities, national labs, research institutes

The Internship Superconducting Magnet Engineer typically focuses on supporting industry projects with practical engineering tasks, while the Research Assistant in Superconducting Magnet Development emphasizes academic research and experimental development. Both roles involve superconductivity knowledge but differ in environment and objectives.

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Infographic showing various Internship Superconducting Magnet Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $52,867 per year, or $25.4 per hour.

Cryogenic Engineer

Florence, SC • On-site

Full-time

Re-posted 8 days ago


GE HealthCare rating

8.3

Company rating: 8.3 out of 10

Based on 138 frontline employees who took The Breakroom Quiz


Job description

Job Description Summary
About GE HealthCare
At GE HealthCare, we are creating technology that helps clinicians diagnose, treat, and monitor patients around the world. Our Florence, South Carolina site manufactures GE HealthCare's SIGNA MRI systems, which rely on advanced superconducting magnet technology to deliver high-quality imaging for millions of patients globally.
As a Cryogenic Engineer, you will play a key role in the design, development, and support of cryogenic systems and components that are critical to MRI performance and reliability. This is an opportunity to work on highly specialized engineering challenges while collaborating with multidisciplinary teams across product development, manufacturing, and service.
Job Description
Role Overview
We are seeking an engineer with experience in cryogenic systems, thermal analysis, and hardware design to help lead the development and continuous improvement of superconducting magnet technologies used in MRI systems. This role combines hands-on engineering, analytical problem solving, design ownership, and cross-functional collaboration to support both new product development and our installed base of MRI systems worldwide.
Key Responsibilities
  • Design and analyze cryogenic components and systems used in superconducting MRI magnets
  • Perform thermal and heat transfer analyses, including heat load calculations, heat budgets, and verification testing
  • Support the thermal and structural design of cryogenic hardware and assemblies
  • Develop, execute, and document verification and validation activities for cryogenic components and instrumentation
  • Analyze reliability and performance of cryogenic systems and components
  • Support manufacturing and production teams with cryogenic and vacuum system expertise
  • Drive initiatives to reduce cryogen consumption and improve system efficiency
  • Investigate and resolve cryogenic, thermal, and vacuum-related issues impacting fielded MRI systems
  • Conduct failure analyses and implement corrective actions
  • Develop service tools and processes that support cryogen filling, maintenance, and safety
  • Analyze installed base performance data to identify trends and drive product improvements
  • Prepare and present technical analyses, design reviews, and engineering reports
  • Develop component specifications, test plans, and supplier requirements
  • Lead engineering productivity projects focused on product cost and lifecycle cost reduction

Required Qualifications
  • Master's degree in Mechanical Engineering, Thermal Engineering, Cryogenic Engineering, or a related engineering discipline, OR equivalent combination of education and relevant engineering experience
  • Hands-on experience working with cryogenic systems or cryogenic components
  • Experience designing, analyzing, or testing cryogenic systems, thermal systems, or liquid helium-based equipment
  • Understanding of thermodynamics, heat transfer, and thermal system behavior
  • Experience supporting hardware development, design validation, or product engineering activities

Preferred Qualifications
  • PhD in Thermal Engineering, Cryogenic Engineering, Mechanical Engineering, or a related field
  • Experience with cryocooler technologies, including Gifford-McMahon refrigeration systems
  • Experience supporting superconducting magnet, MRI, aerospace, quantum computing, semiconductor, or other cryogenic applications
  • Experience with high-vacuum systems, cryopumps, getters, and helium leak testing
  • Experience with liquid helium and liquid nitrogen transfer systems
  • Familiarity with cryogenic instrumentation and data acquisition systems
  • Experience evaluating material performance and machine design at cryogenic temperatures
  • Exposure to cryogenic component manufacturing environments
  • Experience using ANSYS, FEA, CFD, or related simulation tools

What Will Help You Succeed
  • Strong analytical and problem-solving skills
  • Ability to translate complex technical challenges into practical engineering solutions
  • Comfortable working in both hands-on laboratory and manufacturing environments
  • Strong collaboration and communication skills across engineering, manufacturing, and service teams
  • Continuous improvement mindset with a focus on reliability, quality, and cost optimization

Why Join GE HealthCare?
You'll have the opportunity to work on highly specialized technologies that directly influence patient care around the world. Our Florence team combines deep technical expertise with a collaborative culture, giving engineers the chance to solve complex challenges, drive innovation, and make a meaningful impact on the future of MRI technology.
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We will not sponsor individuals for employment visas, now or in the future, for this job opening.
GE HealthCare offers a great work environment, professional development, challenging careers, and competitive compensation. GE HealthCare is an Equal Opportunity Employer. Employment decisions are made without regard to race, color, religion, national or ethnic origin, sex, sexual orientation, gender identity or expression, age, disability, protected veteran status or other characteristics protected by law.
GE HealthCare will only employ those who are legally authorized to work in the United States for this opening. Any offer of employment is conditioned upon the successful completion of a drug screen (as applicable).
While GE HealthCare does not currently require U.S. employees to be vaccinated against COVID-19, some GE HealthCare customers have vaccination mandates that may apply to certain GE HealthCare employees.
Relocation Assistance Provided: Yes

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