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Cryogenic Engineering Jobs in Ohio (NOW HIRING)

... Engineering, and Advanced Technologies. We also develop products and processes related to Cryogenic Fluid and Thermal Management Systems, Densified Propellant Management Systems, and Prototype ...

... Engineering, and Advanced Technologies. We also develop products and processes related to Cryogenic Fluid and Thermal Management Systems, Densified Propellant Management Systems, and Prototype ...

... Engineering, and Advanced Technologies. We also develop products and processes related to Cryogenic Fluid and Thermal Management Systems, Densified Propellant Management Systems, and Prototype ...

$79.94 - $125.63/hr

Experience with cryogenic equipment or complex technical products is an advantage * A technical or engineering background enables you to assess complex topics from a business perspective * You work ...

The selected candidate will provide instrumentation engineering support to NASA's Glenn Research ... cryogenic) components and sub-systems. Required Skills: * Strong hands-on experience designing ...

Showing results 41-60

Cryogenic Engineering information

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

To thrive as a Cryogenic Engineer, you need a solid background in mechanical, chemical, or electrical engineering, typically supported by a relevant engineering degree and experience in low-temperature systems. Familiarity with CAD software, cryogenic process simulation tools, and safety regulations, as well as certifications in cryogenics or pressure systems, are often required. Strong problem-solving abilities, attention to detail, and effective teamwork are critical soft skills for this field. These competencies ensure the safe and efficient design, operation, and maintenance of cryogenic systems, which are vital for applications in industries like aerospace, medical, and energy.

What is cryogenic engineering?

Cryogenic engineering is a specialized field of engineering that focuses on the production, maintenance, and application of extremely low temperatures, typically below -150°C (-238°F). This discipline involves the design and operation of equipment and systems used to produce, store, and transport liquefied gases such as liquid nitrogen, helium, and hydrogen. Applications of cryogenic engineering can be found in industries like aerospace, medical technology, energy, and scientific research, where materials and processes require ultra-low temperatures. Cryogenic engineers work on challenges related to thermal insulation, material properties at low temperatures, and safe handling of cryogenic fluids.

What is the difference between Cryogenic Engineering vs Mechanical Engineering?

AspectCryogenic EngineeringMechanical Engineering
Required CredentialsBachelor's or Master's in Cryogenic Engineering or related fieldsBachelor's or Master's in Mechanical Engineering
Work EnvironmentLaboratories, research facilities, industries handling low-temperature systemsFactories, design offices, manufacturing plants
Industry UsageSpecialized in low-temperature systems, liquefied gases, cryogenics researchBroad applications including machinery, automotive, aerospace

While both fields require engineering degrees, Cryogenic Engineering focuses on low-temperature systems and liquefied gases, often working in specialized labs and industries. Mechanical Engineering covers a wider range of mechanical systems and industries, making Cryogenic Engineering a niche within the broader mechanical field.

What are some common challenges faced by cryogenic engineers in daily operations?

Cryogenic engineers often work with extremely low temperatures, which presents unique challenges such as material brittleness, thermal contraction, and the need for specialized insulation. Ensuring safety and preventing leaks or contamination are critical, as even minor failures can have significant consequences. Additionally, cryogenic engineers frequently collaborate with multidisciplinary teams, including mechanical, electrical, and safety engineers, to design, test, and maintain complex systems. Adapting to new technologies and strict regulatory standards is also a regular part of the job.

How much does a cryogenic engineer make?

The average salary for a cryogenic engineer typically ranges from $70,000 to $120,000 per year, depending on experience, education, and location. Senior roles or those with specialized skills in cryogenic systems and certifications can earn higher salaries, often exceeding $150,000 annually.

What does a cryogenic engineer do?

A cryogenic engineer designs, develops, and maintains systems that handle extremely low-temperature fluids and gases, such as liquid nitrogen or helium. They work on applications like superconducting magnets, space technology, and liquefied gases, often using specialized tools and safety protocols to ensure system efficiency and safety.
What are popular job titles related to Cryogenic Engineering jobs in Ohio? For Cryogenic Engineering jobs in Ohio, the most frequently searched job titles are:
What job categories do people searching Cryogenic Engineering jobs in Ohio look for? The top searched job categories for Cryogenic Engineering jobs in Ohio are:
What cities in Ohio are hiring for Cryogenic Engineering jobs? Cities in Ohio with the most Cryogenic Engineering job openings:
Infographic showing various Cryogenic Engineering job openings in Ohio as of August 2026, with employment types broken down into 33% Internship, and 67% Full Time. Highlights an 100% In-person job distribution.

Sr. Principal Engineer Mechanical Engineering

Vertiv Co

Columbus, OH

Full-time

Posted 12 days ago


Vertiv rating

6.7

Company rating: 6.7 out of 10

Based on 64 frontline employees who took The Breakroom Quiz

376th of 487 rated machine equipment manufacturers


Job description

Vertiv's Thermal Business Unit is a global leader in designing, manufacturing, and servicing mission-critical thermal management solutions for data centers, communication networks, and commercial and industrial facilities worldwide. The Thermal BU's portfolio spans the complete thermal chain from chip to atmosphere, including room cooling, in-row cooling, rack cooling, direct-to-chip liquid cooling, coolant distribution units (CDUs), rear-door heat exchangers, chillers, dry coolers, and trim coolers. Operating across all major regions (Americas, EMEA, and Asia-Pacific), the Thermal BU serves hyperscale, colocation, enterprise, and edge data center customers with solutions optimized for increasingly high-density AI and high-performance computing environments. Within this business unit, the Advanced Development group is responsible for incubating next-generation thermal technologies and proving their viability before transitioning them to NPDI teams for productization. This role sits at the forefront of that mission, driving innovation in emerging thermal architectures that will define Vertiv's competitive position in the rapidly evolving data center cooling market.

Position Overview:

  • Define and lead the technical strategy for mission critical thermal advanced development projects from concept through prototype validation.
  • Serve as the senior technical lead on cross-functional project teams, directing engineering activities, resolving complex technical challenges, and ensuring milestones are met on time and within budget.
  • Develop and document comprehensive design guidelines and specifications for handover to NPDI teams when projects transition from advanced engineering to product development.
  • Communicate complex technical information clearly and effectively to diverse audiences including senior leadership, cross-functional teams, external partners, and customers.
  • Mentor and lead engineers and technicians on projects, fostering a collaborative and high-performance team environment and helping to develop the next generation of technical talent.
  • Establish and maintain relationships with external research partners (e.g., universities, national labs) to identify and advance emerging thermal technologies.
  • Conduct and oversee thermal analysis, modeling, and testing to validate advanced cooling concepts.
  • Influence technology roadmaps and provide expert guidance on industry trends, competitive technologies, and regulatory developments in thermal management and refrigerants.
  • Drive continuous improvement in advanced development methods, tools, and processes across the organization.
  • Represent Vertiv as a subject matter expert at industry conferences, standards bodies, and customer engagements.
  • Perform a variety of engineering calculations using traditional engineering methods to verify design requirements, which may include stress calculations, heat transfer, and fluid mechanics.
  • Develop solutions to complex problems where little or no precedence exists - the use of ingenuity and creativity is regularly required.
  • Other Duties as assigned

  Requirements:

  • Highly self-directing with the ability to set priorities, define project scope, and drive results with minimal oversight
  • Extensive track record as a technical lead directing multi-disciplinary project teams from concept through prototype/validation, with demonstrated ability to manage multiple concurrent programs.
  • Demonstrated leadership in guiding and developing others to complete projects efficiently and on schedule
  • Demonstrated record of meeting deadlines and project goals
  • Deep expertise in thermodynamics, heat transfer, and fluid mechanics
  • Strong ability to write clear, actionable design guidelines and technical documentation suitable for use by downstream product development teams
  • Demonstrated history of delivering quality products to market with understanding and respect for phases of the product development process
  • Excellent written and verbal communication skills; able to present complex technical concepts to executive leadership and non-technical stakeholders
  • Recognized as a technical authority within the organization or industry
  • Experience with 3D CAD software, preferred CREO 4.0 and greater
Preferred:
  • Experience in cryogenic cooling system development
    • Experience in programming and/or creating thermal system energy models to compare new ideas to baseline systems
    • Experience using AI design tools for thermal components or systems (e.g., generative design, topology optimization, AI-driven CFD)
    • Experience with 2-Phase heat transfer fluids, including "natural" refrigerants, such as R744, R718, etc.
    • Experience with 1-phase and/or 2-phase Liquid Cooling technologies
    • Knowledge of psychometric chart and refrigeration cycles
    • Experience with CFD and/or FEA software, preferred Ansys
    • Understanding of manufacturing limitations, break sheet metal and formed copper tubes
    • Familiarity with data center thermal architecture and critical infrastructure cooling requirements
    • Patent portfolio or published research in thermal management technologies
Education:
  • Bachelor of Science degree in Mechanical Engineering (BSME) or directly related degree at minimum.
  • Advanced Degree preferred.

Travel:

Up to 10%

#LI-CM1             

The successful candidate will embrace Vertiv's Core Principles & Behaviors to help execute our Strategic Priorities.

OUR CORE PRINCIPLES: Safety. Integrity. Respect. Teamwork. Inclusion.

OUR STRATEGIC PRIORITIES

High-Performance Culture

Customer Focus

Operational Excellence

Innovation

Financial Strength

VERTIV BEHAVIORS

Own it

Act with urgency

Foster a customer-first mindset

Think big and execute

Lead by example

Drive continuous improvement

Learn and seek out development

Promote transparent & open communication

About Vertiv

Vertiv (NYSE: VRT) brings together hardware, software, analytics and ongoing services to enable its customers' vital applications to run continuously, perform optimally and grow with their business needs. Vertiv solves the most important challenges facing today's data centers, communication networks, and commercial and industrial facilities with a portfolio of power, cooling and IT infrastructure solutions and services that extend from the cloud to the edge of the network. Headquartered in Westerville, Ohio, USA, Vertiv employs around 34,000 people and does business in more than 130 countries. Visit Vertiv.com to learn more.

Work Authorization

No calls or agencies please. Vertiv will only employ those who are legally authorized to work in the United States. This is not a position for which sponsorship will be provided. Individuals with temporary visas such as E, F-1, H-1, H-2, L, B, J, or TN or who need sponsorship for work authorization now or in the future, are not eligible for hire.

Equal Opportunity Employer

Vertiv is an Equal Opportunity/Affirmative Action employer. We promote equal opportunities for all with respect to hiring, terms of employment, mobility, training, compensation, and occupational health, without discrimination as to age, race, color, religion, creed, sex, pregnancy status (including childbirth, breastfeeding, or related medical conditions), marital status, sexual orientation, gender identity / expression (including transgender status or sexual stereotypes), genetic information, citizenship status, national origin, protected veteran status, political affiliation, or disability. If you have a disability and are having difficulty accessing or using this website to apply for a position, you can request help by sending an email to help.join@vertiv.com


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