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Nanotechnology Engineering Jobs in Utah (NOW HIRING)

Post Doc Res Assoc

Salt Lake City, UT · On-site

$63K - $70K/yr

D. in Materials Science, Polymer Chemistry, Chemical Engineering, Biomedical Engineering, or a ... nanoscale characterization techniques like SEM. A deep understanding of polymer chemistry ...

Nanotechnology Engineering information

See Utah salary details

$36.4K

$66.3K

$93.8K

How much do nanotechnology engineering jobs pay per year?

As of Aug 29, 2026, the average yearly pay for nanotechnology engineering in Utah is $66,314.00, according to ZipRecruiter salary data. Most workers in this role earn between $55,500.00 and $75,600.00 per year, depending on experience, location, and employer.

What is nanotechnology engineering?

Nanotechnology engineering is a field that involves the design, development, and application of materials and devices on the scale of nanometers—one billionth of a meter. It combines principles from physics, chemistry, biology, and engineering to manipulate matter at the atomic and molecular level. Nanotechnology engineers work on creating new materials, improving existing products, and developing innovative solutions in areas such as medicine, electronics, energy, and the environment. The field is highly interdisciplinary and rapidly evolving, offering diverse career opportunities.

What are the key skills and qualifications needed to thrive as a nanotechnology engineer?

To thrive as a Nanotechnology Engineer, you need a strong background in physics, chemistry, materials science, and engineering, usually supported by at least a bachelor's degree in a related field. Proficiency with tools such as electron microscopes, atomic force microscopes, and simulation software, as well as knowledge of cleanroom protocols and possibly certifications in nanofabrication, is essential. Strong analytical thinking, attention to detail, and effective teamwork and communication skills help professionals excel in research and cross-disciplinary projects. These skills and qualifications are crucial for developing innovative solutions, maintaining safety, and advancing applications in sectors like medicine, electronics, and energy.

What are some common challenges faced by nanotechnology engineers when working on interdisciplinary teams?

Nanotechnology engineers frequently collaborate with professionals in fields such as chemistry, biology, materials science, and physics. A common challenge is communicating complex technical concepts across disciplines with differing terminologies and priorities. Successfully bridging these gaps requires strong teamwork, adaptability, and an openness to learning from others. Building these skills not only enhances project outcomes but also creates more opportunities for career advancement in this rapidly evolving field.

What is the difference between Nanotechnology Engineering vs Materials Science Engineering?

AspectNanotechnology EngineeringMaterials Science Engineering
Required CredentialsBachelor's or higher in Nanotechnology or related fieldsBachelor's or higher in Materials Science or Engineering
Work EnvironmentResearch labs, manufacturing, R&D departmentsManufacturing plants, research labs, product development
Industry UsageElectronics, medicine, energy, materialsAutomotive, aerospace, consumer goods, manufacturing
Common Search/ComparisonYesYes

Nanotechnology Engineering and Materials Science Engineering share overlapping skills and work environments, often collaborating in research and development. However, Nanotechnology Engineering focuses specifically on manipulating matter at the atomic and molecular levels, while Materials Science Engineering covers a broader range of materials and their properties. Both fields are vital in advancing technology and innovation, with Nanotechnology Engineering offering specialized expertise in nanoscale applications.

Is nanotechnology engineering a good career?

Nanotechnology engineering is a growing field that involves designing and manipulating materials at the atomic and molecular levels, often requiring knowledge of physics, chemistry, and materials science. It offers opportunities in industries such as electronics, healthcare, and energy, with a demand for specialized skills and advanced degrees. Career prospects are favorable for those with strong technical backgrounds and experience with tools like microscopy and nanofabrication techniques.

What does a nanotechnology engineer do?

A nanotechnology engineer designs, develops, and tests materials and devices at the nanoscale, typically involving manipulation of structures less than 100 nanometers. They work with tools like electron microscopes and focus on applications in electronics, medicine, and materials science, often requiring knowledge of physics, chemistry, and engineering principles.

What are popular job titles related to Nanotechnology Engineering jobs in Utah?

For Nanotechnology Engineering jobs in Utah, the most frequently searched job titles are:

What job categories do people searching Nanotechnology Engineering jobs in Utah look for?

The top searched job categories for Nanotechnology Engineering jobs in Utah are:

What cities in Utah are hiring for Nanotechnology Engineering jobs?

Cities in Utah with the most Nanotechnology Engineering job openings:

Infographic showing various Nanotechnology Engineering job openings in Utah as of August 2026, with employment types broken down into 84% Full Time, 13% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $66,314 per year, or $31.9 per hour.

Multi-Discipline Engineering Management

Salt Lake City, UT • On-site


University of Utah
Colleges, Universities, and Professional Schools • 10K+ employees

7.2

Company rating: 7.2 out of 10

Based on 159 frontline employees who took The Breakroom Quiz

386th of 627 rated colleges and universities

People enjoy working here

Good employer

Recommended by students


$90K - $130K/yr

Full-time

Retirement

Re-posted 15 days ago


Job description

Announcement
Details
Open Date
08/24/2026
Requisition Number
PRN45987B
Job Title
Multi-Discipline Engineering Management
Working Title
Cleanroom Manager
Career Progression Track
M00
Track Level
M4 - Senior Manager, M3 - Manager, M2 - Senior Supervisor
FLSA Code
Administrative
Patient Sensitive Job Code?
No
Standard Hours per Week
40
Full Time or Part Time?
Full Time
Shift
Day
Work Schedule Summary
Monday-Friday, 8:00am-5:00pm
VP Area
Academic Affairs
Department
00052 - UTAH NANOFAB
Location
Campus
City
Salt Lake City, UT
Type of Recruitment
External Posting
Pay Rate Range
90,000-130,000
Close Date
10/31/2026
Priority Review Date (Note - Posting may close at any time)
Job Summary
The Utah Nanofab is seeking an experienced, hands-on Cleanroom Manager to provide engineering, scientific, and operational leadership for its world-class micro- and nanofabrication facility. The manager oversees day-to-day cleanroom operations, equipment and infrastructure maintenance, user training, safety, budgeting, and strategic planning. This position plays a pivotal role in enabling leading-edge research and development in microelectronics, sensors, materials, micro optics, and nanotechnology. The successful candidate will demonstrate technical depth, leadership experience, and a passion for fostering a collaborative research environment.
Multi-Discipline Engineering Management
Direct/Manage/Supervise engineers and technicians performing research, design, and development across multiple engineering disciplines. Develop processes, policies, and procedures and ensure all engineering projects align with the organization's objectives. Collaborate with multiple engineering disciplines, management, sales and marketing, and related departments as necessary to determine engineering feasibility, cost effectiveness, and demand for engineering products and services. Manage engineering verification activities to ensure product or service deliverables are met on-time and conform to the organization's and/or client's specifications. Advise leadership and other impacted departments on product or design changes which may affect profit, schedule, cost, or client relationships. May be required to approve designs that can impact the health, safety, and welfare of the general public, as required by law.
Learn more about the great benefits of working for University of Utah: benefits.utah.edu
Responsibilities
Leadership and Strategy
  • Provide engineering, scientific, and operational leadership for the Utah Nanofab cleanroom.
  • Maintain and advance the Nanofab's reputation as a world-class user facility supporting academic, industrial, and government research.
  • Collaborate with faculty and leadership to develop and execute strategic plans for equipment acquisition, facility upgrades, and research initiatives.
  • Represent the Nanofab to the broader scientific community, including coordinating tours, outreach, and development efforts.
  • Prepare for and lead external reviews and assessments of the Nanofab program.

Facility and Equipment Management
  • Work with facilities and staff safety engineer to oversee all aspects of cleanroom infrastructure, including HVAC, process gases, DI water, vacuum, and safety systems.
  • Supervise equipment maintenance, installation, and process development across thin-film, etch, lithography, and packaging tools.
  • Establish repair and preventative maintenance priorities and ensure minimal downtime.
  • Coordinate with campus facilities, safety, and vendors for service, repairs, and upgrades.

User Support, Training, and Safety
  • Direct user training programs, ensuring safe and effective operation of tools and adherence to protocols.
  • Develop and update standard operating procedures (SOPs), online training modules, and safety documentation.
  • Conduct user group meetings, annual safety town halls, and individual process consultations.
  • Foster a culture of safety, accountability, cleanliness, and respect among users and staff.

Staff Management and Mentorship
  • Supervise and mentor engineers, technicians, and student assistants.
  • Assign roles and responsibilities, conduct annual performance reviews, and coordinate team development.
  • Promote collaboration and communication between cleanroom, surface analysis, and administrative teams.
  • Support recruitment, retention, and advancement of staff from all backgrounds.

Budgeting and Administration
  • Develop and manage cleanroom budgets, user billing rates, and cost recovery models.
  • Provide financial analysis and operational metrics to the Price College of Engineering and theVice President for Research.
  • Oversee procurement, vendor relationships, and contract negotiations.

Research and Technical Expertise
  • Provide micro/nanofabrication services and process guidance for internal and external projects.
  • Collaborate with faculty and students to develop and optimize fabrication process flows.
  • Support advanced research activities including e-beam and UV lithography, PVD, CVD,RIE/DRIE, wet etch, 3D microprinting, and metrology.

Working Conditions
  • Work performed primarily in a cleanroom environment.
  • Frequent standing, walking, and working in protective garments.
  • Occasional handling of chemicals, hazardous gases, and use of safety equipment.

Minimum Qualifications
EQUIVALENCY STATEMENT: 1 year of higher education can be substituted for 1 year of directly related work experience (Example: bachelor's degree = 4 years of directly related work experience).
Department may hire employee at one of the following job levels:
Senior Supervisor, Multi-Discipline Engineering Management: Requires a bachelor's (or equivalency) + 4 years or a master's (or equivalency) + 2 years of directly related work experience.
Manager, Multi-Discipline Engineering Management: Requires a bachelor's (or equivalency) + 6 years or a master's (or equivalency) + 4 years of directly related work experience.
Senior Manager, Multi-Discipline Engineering Management: Requires a bachelor's (or equivalency) + 8 years or a master's (or equivalency) + 6 years of directly related work experience.
Preferences
Preferred Qualifications
  • Master's or Ph.D. in a relevant engineering or physical science discipline.
  • 7-10 years of experience managing a shared cleanroom facility or equivalent industrial environment.
  • Demonstrated expertise in process integration and multi-tool fabrication workflows.
  • E-beam lithography experience and expertise
  • Experience with cost recovery models, billing systems, and rate development.
  • Hands-on experience with facility infrastructure (air handling, process gases, DI water, vacuum, exhaust).

Type
Benefited Staff
Special Instructions Summary
Additional Information
The University is a participating employer with Utah Retirement Systems ("URS"). Eligible new hires with prior URS service, may elect to enroll in URS if they make the election before they become eligible for retirement (usually the first day of work). Contact Human Resources at (801) 581-7447 for information. Individuals who previously retired and are receiving monthly retirement benefits from URS are subject to URS' post-retirement rules and restrictions. Please contact Utah Retirement Systems at (801) 366-7770 or (800) 695-4877 or University Human Resource Management at (801) 581-7447 if you have questions regarding the post-retirement rules.
This position may require the successful completion of a criminal background check and/or drug screen.
The University of Utah values candidates who have experience working in settings with students and possess a strong commitment to improving access to higher education.
Veterans' preference is extended to qualified applicants, upon request and consistent with University policy and Utah state law. Upon request, reasonable accommodations in the application process will be provided to individuals with disabilities.
Consistent with state and federal law, the University of Utah does not discriminate based upon race, ethnicity, color, religion, national origin, age, disability, sex, sexual orientation, gender, gender identity, gender expression, pregnancy, pregnancy-related conditions, genetic information, or protected veteran's status. The University does not discriminate on the basis of sex in the education program or activity that it operates, as required by Title IX and 34 CFR part 106. The requirement not to discriminate in education programs or activities extends to admission and employment. Inquiries about the application of Title IX and its regulations may be referred to the Title IX Coordinator, to the Department of Education, Office for Civil Rights, or both.
To request a reasonable accommodation for a disability or if you or someone you know has experienced discrimination or sexual misconduct including sexual harassment, you may contact the Director/Title IX Coordinator in the Office of Equal Opportunity and Title IX (OEO). More information, including the Director/Title IX Coordinator's office address, electronic mail address, and telephone number can be located at the: University of Utah Non-Discrimination page.
Online reports may be submitted at https://oeo.utah.edu
https://publicsafety.utah.edu/safetyreport/ This report includes statistics about criminal offenses, hate crimes, arrests and referrals for disciplinary action, and Violence Against Women Act offenses. They also provide information about safety and security-related services offered by the University of Utah. A paper copy can be obtained by request at the Department of Public Safety located at 1658 East 500 South.
As per University of Utah policy 5-108: Transfer of Benefits Eligible Staff Members, a new hire to the University of Utah who is still serving a 12 month probationary period will not be hired into another University of Utah job (a transfer) until the successful completion of the probationary period.

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About University of Utah

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The University of Utah is the state’s flagship institution of higher education, with 18 schools and colleges, more than 100 undergraduate majors and graduate programs, and an enrollment of more than 38,000 students. It is a member of the Association of American Universities—an invitation-only, prestigious group of 71 leading research institutions. The U is advancing a new national model for higher education that delivers societal impact through education, research, health care, and community service, while making social, economic, and cultural contributions that improve lives across Utah and around the world.

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Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Salt Lake City, UT, US


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