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Semiconductor Engineering Jobs in Tennessee (NOW HIRING)

S. in Engineering or Science (e.g. Physics, Chemistry, Materials Science, Electrical Engineering) * Deep technical knowledge of Semiconductor tools and processing and/or Operations/Manufacturing.

Senior Research Scientist

Oak Ridge, TN · On-site

$94K - $120K/yr

This role is responsible for advancing detector performance, semiconductor fabrication processes, and future technology capabilities while working closely with engineering, manufacturing, quality ...

Senior Research Scientist

Oak Ridge, TN

$94K - $120K/yr

This role is responsible for advancing detector performance, semiconductor fabrication processes, and future technology capabilities while working closely with engineering, manufacturing, quality ...

Emphasizes mathematical rigor in engineering analysis and connects electrical engineering to power grid design, telecommunications, and semiconductor industry applications. * Curriculum Awareness ...

Emphasizes mathematical rigor in engineering analysis and connects electrical engineering to power grid design, telecommunications, and semiconductor industry applications. * Curriculum Awareness ...

Emphasizes mathematical rigor in engineering analysis and connects electrical engineering to power grid design, telecommunications, and semiconductor industry applications. * Curriculum Awareness ...

Emphasizes mathematical rigor in engineering analysis and connects electrical engineering to power grid design, telecommunications, and semiconductor industry applications. * Curriculum Awareness ...

... engineering, or IC design in the analog or power semiconductor space Preferred qualifications: * Solid knowledge of analog electronics fundamentals including amplifiers, voltage regulators, data ...

... engineering, or IC design in the analog or power semiconductor space Preferred qualifications: * Solid knowledge of analog electronics fundamentals including amplifiers, voltage regulators, data ...

Supplier Quality Engineer 2

Maryville, TN · On-site

$94K - $117K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Quality or process engineering experience for one or more of the following manufacturing processes: Metal forming/machining, Plastic / rubber injection molding, assembly, semiconductor (wafer ...

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Showing results 1-20

Semiconductor Engineering information

See Tennessee salary details

$41.3K

$59.7K

$75.3K

How much do semiconductor engineering jobs pay per year?

As of Aug 18, 2026, the average yearly pay for semiconductor engineering in Tennessee is $59,651.00, according to ZipRecruiter salary data. Most workers in this role earn between $57,200.00 and $57,200.00 per year, depending on experience, location, and employer.

What is semiconductor engineering?

Semiconductor engineering is a specialized field focused on the design, development, and manufacturing of semiconductor devices, such as microchips and transistors, which are essential components in electronic devices. Engineers in this field work on creating and improving the materials, processes, and technologies used to produce integrated circuits and other semiconductor components. Their work is critical to advancements in computers, smartphones, automotive technology, and many other electronic systems. Semiconductor engineers often collaborate with multidisciplinary teams to solve complex technical challenges and drive innovation in the electronics industry.

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

To thrive as a Semiconductor Engineer, you need a solid background in electrical engineering, physics, and materials science, typically supported by a relevant bachelor's or master's degree. Familiarity with CAD tools, circuit simulation software, and semiconductor fabrication processes is essential, along with certifications like Six Sigma or IPC standards being advantageous. Strong problem-solving abilities, attention to detail, and effective teamwork skills set outstanding candidates apart in this field. These competencies are crucial for designing reliable semiconductor devices, ensuring manufacturing efficiency, and driving innovation in a rapidly evolving industry.

What are some common challenges semiconductor engineers face when working on new chip designs?

Semiconductor engineers often encounter challenges such as managing the complexity of integrating millions or even billions of transistors on a single chip while ensuring performance, power efficiency, and manufacturability. Meeting tight project deadlines and rapidly evolving industry standards can also be demanding. Collaboration with cross-functional teams—including design, verification, and manufacturing engineers—is essential to identify and resolve issues early in the design cycle. Additionally, adapting to new process technologies and troubleshooting unexpected fabrication or performance problems are routine aspects of the role.

What is the difference between Semiconductor Engineering vs Electrical Engineering?

AspectSemiconductor EngineeringElectrical Engineering
Required CredentialsBachelor's or higher in Semiconductor, Electrical, or Electronics EngineeringBachelor's or higher in Electrical, Electronics, or Electrical Engineering
Work EnvironmentCleanrooms, labs, manufacturing facilities focused on chip design and fabricationOffices, labs, and field sites working on electrical systems, power, and circuitry
Industry UsagePrimarily in semiconductor manufacturing, chip design, and fabrication companiesBroadly used across power, electronics, telecommunications, and automation industries

Semiconductor Engineering specializes in designing, developing, and manufacturing semiconductor devices and integrated circuits, often within cleanroom environments. Electrical Engineering covers a wider range of electrical systems, power distribution, and circuitry across various industries. While both roles require similar educational backgrounds, Semiconductor Engineering focuses specifically on chip technology and fabrication processes, making it a more specialized field within the broader electrical engineering domain.

Are semiconductor engineers paid well?

Semiconductor engineers typically earn competitive salaries due to the specialized skills required, such as knowledge of chip design, fabrication processes, and electronic testing. Salaries vary based on experience, location, and education, but overall, the role is considered well-compensated within the engineering field.

What do semiconductor engineers do?

Semiconductor engineers design, develop, and test semiconductor devices and integrated circuits used in electronic equipment. They work with materials, fabrication processes, and testing tools to improve chip performance and reliability, often requiring knowledge of physics, chemistry, and engineering software. Their work typically involves collaboration in labs or cleanroom environments and may require specialized certifications or training.

What are the most commonly searched types of Semiconductor Engineering jobs in Tennessee?

The most popular types of Semiconductor Engineering jobs in Tennessee are:

What job categories do people searching Semiconductor Engineering jobs in Tennessee look for?

The top searched job categories for Semiconductor Engineering jobs in Tennessee are:

Infographic showing various Semiconductor Engineering job openings in Tennessee as of August 2026, with employment types broken down into 33% Full Time, and 67% Part Time. Highlights an 67% In-person, and 33% Remote job distribution, with an average salary of $59,651 per year, or $28.7 per hour.

Postdoc- Multiscale Optical and Scanning Probe of Integrated Semiconductor Interfaces

Oak Ridge National Laboratory

Oak Ridge, TN • On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 17 days ago


Oak Ridge National Laboratory rating

8.8

Company rating: 8.8 out of 10

Based on 16 frontline employees who took The Breakroom Quiz

14th of 120 rated laboratories


Job description

Requisition Id 16869 

­­Overview:  

We are seeking a Postdoctoral Research Associate to use advanced scanning probe microscopy for the development and application of multiscale excitonic probes. In this role, you will study buried interfaces, defects, and charge-transfer processes in vertically integrated semiconductor structures. The research will focus on low-dimensional and emerging materials incorporated into complex microelectronic and optoelectronic architectures, with particular emphasis on interfaces between two-dimensional and conventional semiconductor materials. This position resides in the Functional Atomic Force Microscopy (FAFM) group in the Nanomaterials Characterization Section, Center for Nanophase Materials Sciences (CNMS), Physical Science Directorate (PSD) at Oak Ridge National Laboratory (ORNL) and you will join our team as part of the Department of Energy’s Nanoscale Science Research Center MEERCAT project.  

As part of our research team, you will investigate excitonic and electronic behavior across multiple length and time scales using a combination of photoinduced force microscopy (PiFM), photoluminescence, and electroluminescence spectroscopy. These measurements will be correlated with complementary techniques such as Kelvin probe force microscopy, scanning microwave impedance microscopy, cathodoluminescence, Raman spectroscopy, and electron microscopy to connect local chemical, structural, optical, and electronic properties. The research will contribute to the development of multiscale characterization strategies for understanding interfaces and defects that affect the performance of next-generation semiconductor devices. The candidate will collaborate with researchers across CNMS, ORNL, and the broader NSRC network working in materials synthesis, device fabrication, theoretical modeling, and complementary characterization.

We are particularly interested in candidates with backgrounds in optical spectroscopy, scanning probe microscopy, semiconductor materials, or condensed matter physics who are motivated to work across disciplinary boundaries and develop new experimental capabilities.

Major Duties/Responsibilities: 

  • Design and conduct experiments combining nanoscale photonics, optical spectroscopy, and scanning probe microscopy.
  • Advance capabilities for specialized scanning probe microscopy methods
  • Work as part of a dynamic team conducting research that advances and develops cutting-edge characterization capabilities to improve our understanding of interfaces and defects in low-dimensional heterostructures.
  • Present and report research results and publish scientific results in peer-reviewed journals in a timely manner.
  • Ensure compliance with environment, safety, health and quality program requirements.
  • Maintain strong commitment to the implementation and perpetuation of values and ethics.
  • Deliver ORNL’s mission by aligning behaviors, priorities, and interactions with our core values of Impact, Integrity, Teamwork, Safety, and Service. Promote equal opportunity by fostering a respectful workplace – in how we treat one another, work together, and measure success.

Basic Qualifications:

  • A PhD in materials science and engineering, physics, chemistry, electrical engineering, or a related field completed within the last 5 years

Preferred Qualifications:

  • Research experience or demonstrated knowledge in at least one of the following areas:
    • Nanoscale optical spectroscopy, including photoluminescence, electroluminescence, cathodoluminescence, or near-field optical microscopy such as SNOM.
    • Two-dimensional or other low-dimensional materials.
    • Semiconductor or microelectronics-relevant materials and devices.
  • Proficiency in surface and interface characterization using atomic force microscopy.
  • Experience in materials characterization techniques such as Raman and scanning electron microscopy.
  • Data analysis skills using Python, MATLAB, or similar platforms.
  • Excellent written and oral communication skills.
  • Motivated self-starter with the ability to work independently and to participate creatively in collaborative teams across the laboratory.
  • Ability to function well in a fast-paced research environment, set priorities to accomplish multiple tasks within deadlines, and adapt to ever changing needs.

Security, Credentialing, and Eligibility Requirements:

For employment at Oak Ridge National Laboratory (ORNL), a Real ID compliant form of identification will be required.  Additionally, ORNL is subject to Department of Energy (DOE) access restrictions. All employees must also be able to obtain and maintain a federal Personal Identity Verification (PIV) card as mandated by Homeland Security Presidential Directive 12 (HSPD-12) and Department of Energy (DOE) Order 473.1A, which requires a favorable post-employment background investigation.
To obtain this credential, new employees must successfully complete and pass a Federal Tier 1 background check investigation.  This investigation includes a declaration of illegal drug activities, including use, supply, possession, or manufacture within the last year.  This includes marijuana and cannabis derivatives, which are still considered illegal under federal law, regardless of state laws.
For foreign national candidates:
If you have not resided in the U.S. for three consecutive years, you are not eligible for the PIV credential and instead will need to obtain a favorable Local Site Specific Only (LSSO) risk determination to maintain employment.  Once you meet the three-year residency requirement, you will be required to obtain a PIV credential to maintain employment.

Postdocs:

Applicants cannot have received their Ph.D. more than five years prior to the date of application and must complete all degree requirements before starting their appointment. The appointment length will be up to 24 months with the potential for extension. Initial appointments and extensions are subject to performance and availability of funding.

Letters of Recommendation:

Please submit three letters of reference when applying for this position. You can upload these directly to your application or have them sent to postdocrecruitment@ornl.gov with the position title and number referenced in the subject line.

Instructions to upload documents to your candidate profile:

  • Login to your account via jobs.ornl.gov
  • View Profile
  • Under the My Documents section, select Add a Document

 

About ORNL:

As a U.S. Department of Energy (DOE) Office of Science national laboratory, ORNL has an impressive 80-year legacy of addressing the nation’s most pressing challenges. Our team is made up of over 7,000 dedicated and innovative individuals! Our goal is to create an environment where a variety of perspectives and backgrounds are valued, ensuring ORNL is known as a top choice for employment. These principles are essential for supporting our broader mission to drive scientific breakthroughs and translate them into solutions for energy, environmental, and security challenges facing the nation.

ORNL offers competitive pay and benefits programs to attract and retain individuals who demonstrate exceptional work behaviors. The laboratory provides a range of employee benefits, including medical and retirement plans and flexible work hours, to support the well-being of you and your family. Employee amenities such as on-site fitness, banking, and cafeteria facilities are also available for added convenience.

Other benefits include the following: Prescription Drug Plan, Dental Plan, Vision Plan, 401(k) Retirement Plan, Contributory Pension Plan, Life Insurance, Disability Benefits, Generous Vacation and Holidays, Parental Leave, Legal Insurance with Identity Theft Protection, Employee Assistance Plan, Flexible Spending Accounts, Health Savings Accounts, Wellness Programs, Educational Assistance, Relocation Assistance, and Employee Discounts.

If you have difficulty using the online application system or need an accommodation to apply due to a disability, please email: ORNLRecruiting@ornl.gov.

This position will remain open for a minimum of 5 days after which it will close when a qualified candidate is identified and/or hired.

We accept Word (.doc, .docx), Adobe (unsecured .pdf), Rich Text Format (.rtf), and HTML (.htm, .html) up to 5MB in size. Resumes from third party vendors will not be accepted; these resumes will be deleted and the candidates submitted will not be considered for employment.


ORNL is an equal opportunity employer. All qualified applicants, including individuals with disabilities and protected veterans, are encouraged to apply.  UT-Battelle is an E-Verify employer.


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