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Cryogenics Engineer Jobs in Washington (NOW HIRING)

As a Lead Quantum Engineer, you will be the cornerstone of Quantum Motion's first physical presence ... cryogenic ecosystem. Our mission is global and this is a rare and exciting opportunity to join a ...

... engineering alongside machine learning and other optimisation techniques. Together, these teams ... Bringing together state-of-the-art cryogenic facilities and an outstanding interdisciplinary team ...

Engineer, Production

Arlington, VA · On-site

$110K - $139K/yr

Engineer, Production Located: Arlington Summary We are seeking a Production Engineer to join our ... Exposure to commissioning or troubleshooting of cryogenic or liquefaction systems * Understanding ...

Engineer, Production

Arlington, VA · On-site

$110K - $139K/yr

Engineer, Production Located: Arlington Summary We are seeking a Production Engineer to join our ... Exposure to commissioning or troubleshooting of cryogenic or liquefaction systems * Understanding ...

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Cryogenics Engineer information

See Washington salary details

$37.4K

$101K

$160.8K

How much do cryogenics engineer jobs pay per year?

As of Aug 24, 2026, the average yearly pay for cryogenics engineer in Washington is $101,009.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,300.00 and $123,500.00 per year, depending on experience, location, and employer.

What does a cryogenics engineer do?

A Cryogenics Engineer specializes in the study and application of extremely low temperatures. They design, develop, and maintain systems and equipment that operate at cryogenic temperatures, such as those used in medical imaging, space exploration, and liquefied gas storage. Their work often involves selecting appropriate materials, troubleshooting thermal systems, and ensuring safety protocols are followed when handling supercooled substances. Cryogenics Engineers play a vital role in advancing technologies that require or benefit from low-temperature environments.

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

To thrive as a Cryogenics Engineer, you need a strong background in mechanical or chemical engineering, thermodynamics, and material science, often supported by a relevant engineering degree. Familiarity with CAD software, cryogenic systems, vacuum technology, and safety standards such as CGA or ASME certifications is typically required. Attention to detail, problem-solving abilities, and effective teamwork are essential soft skills in this field. These competencies ensure the safe, efficient, and innovative design and operation of systems that function at extremely low temperatures.

What are some typical challenges a cryogenics engineer faces when working with low-temperature systems?

Cryogenics Engineers often encounter challenges such as managing thermal insulation to prevent unwanted heat transfer, ensuring the integrity of materials at extremely low temperatures, and troubleshooting complex refrigeration systems. Maintaining equipment reliability and safety in environments where even minor leaks can cause significant issues is also a key concern. Collaboration with multidisciplinary teams—including mechanical, electrical, and safety engineers—is crucial for successful project execution and problem-solving.

What is the difference between Cryogenics Engineer vs Mechanical Engineer?

AspectCryogenics EngineerMechanical Engineer
Required CredentialsBachelor's in Mechanical, Chemical, or Aerospace Engineering; specialized training in cryogenicsBachelor's in Mechanical Engineering; licensure varies by region
Work EnvironmentLaboratories, research facilities, industrial plants dealing with low-temperature systemsFactories, design offices, manufacturing plants across various industries
Industry UsageResearch, aerospace, medical, energy sectors focusing on cryogenic systemsManufacturing, automotive, HVAC, energy sectors

While both roles require engineering degrees, Cryogenics Engineers specialize in low-temperature systems and work primarily in research and specialized industries. Mechanical Engineers have broader applications across multiple sectors, focusing on design, analysis, and manufacturing of mechanical systems.

How do you become a cryogenics engineer?

To become a cryogenics engineer, you typically need a bachelor's degree in mechanical engineering, chemical engineering, or a related field, with specialized knowledge in thermodynamics and low-temperature systems. Gaining experience through internships or entry-level positions and developing skills in cryogenic equipment, safety protocols, and relevant software are also important. Advanced roles may require a master's degree or higher in a related discipline.

How much do cryogenics engineers make?

Cryogenics engineers typically earn a median annual salary of around $70,000 to $100,000, depending on experience, education, and location. Senior or specialized roles can pay higher, especially in industries like aerospace, research, or energy, where advanced knowledge of cryogenic systems and tools is required.

What are popular job titles related to Cryogenics Engineer jobs in Washington?

For Cryogenics Engineer jobs in Washington, the most frequently searched job titles are:

What job categories do people searching Cryogenics Engineer jobs in Washington look for?

The top searched job categories for Cryogenics Engineer jobs in Washington are:

What cities in Washington are hiring for Cryogenics Engineer jobs?

Cities in Washington with the most Cryogenics Engineer job openings:

Infographic showing various Cryogenics Engineer job openings in Washington as of August 2026, with employment types broken down into 91% Full Time, 4% Part Time, and 5% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $101,009 per year, or $48.6 per hour.

Senior IC Validation Engineer

Quantum Motion

Riverdale Park, MD • On-site

$80 - $120/hr

Other

Medical

Posted 6 days ago


Job description

About The Role and Team

TheIntegrated Circuits Teamis responsible for the design and test of the integrated circuits which operate at deep-cryogenic temperatures and interact with the qubits. This role is a unique chance to work at the bleeding edge of technology development where you will measure, optimize, and analyze the performance of innovative circuits to tackle the engineering challenge of implementing a large-scale quantum computer in silicon.

As anIC Validation Engineer, the position will suit someone with a strong background in the following areas and the ability to flexibly apply and combine them on a daily basis: practical electronics test and measurement, experimental design, statistics and data analysis, analogue and mixed-signal circuit operation principles, and CMOS device physics and process.No background in quantum physics is required.

Our Team

This role forms part of our investment in state-of-the art facilities in Maryland, US. It reflects our commitment to driving innovation and collaborating with some of the brightest minds in the quantum industry, and additionally taps into the strong semiconductor and cryogenic ecosystem.Our mission is global and this is a rare and exciting opportunity to join a team which is shaping the future of quantum computing.

As part of our lean, high-impact and rapidly growing team, you will be working closely with our scientists, engineers and experts in a dynamic environmentto make the site run smoothly and compliantly from day one, dedicated to contributing to the development of scalable quantum computers based on silicon technology.

Functions of the Role
  • Carry cryo-CMOS integrated circuit designs through multi-die performance characterization and applications support for integration with quantum devices
  • High-quality documentation of experimental design, measurement analysis/conclusions, application requirements, and user guides
  • Highly effective hardware and software debugging
  • Develop efficient and automated measurement and analysis routines to enable confident and scalable characterization of IC performance
Experience - Essentials
  • Familiarity with bench-level electronic test and measurement equipment such as SMUs, VNAs, amplifiers, oscilloscopes, etc.
  • Proficient in reading circuit schematics
  • Strong intuition and methodical approach to circuit debugging
  • Advanced programming and data analytics ability
  • Knowledge of Python, C, or similar programming language
  • Degree qualification in Electrical, Electronic, and/or Computer Engineering
  • Strong analytical and problem-solving skills with a high-level of self-management
  • Excellent verbal and written communication skills
Experience - Desirable
  • Prior experience with cryogenic electronics
  • Prior experience with quantum devices (especially semiconductor spin-based)
  • Advanced statistical analysis expertise
  • Prior experience in IC Applications Engineering and/or IC Product Engineering
  • High-frequency device characterisation experience (RF and/or noise)
  • Knowledge of SOI processes and fabrication technologies
  • Familiarity with machine learning techniques and libraries
Benefits
  • Be part of a creative, world-leading team
  • Competitive salary and share options scheme
  • Region-specific benefits (e.g. Health Insurance)
  • Choose your own laptop/kit
  • Flexible working
  • Located in Maryland College Park - a state-of-the-art quantum hub
EEO Statement

Quantum Motion is an equal opportunity employer. All qualified applicants will receiveconsideration for employment without regard to race, color, religion, sex, sexual orientation,gender identity, national origin, disability, protected veteran status, age, pregnancy, geneticinformation, or any other characteristic protected by applicable federal, state, or local laws.

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