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Nanoelectronics Jobs in Texas (NOW HIRING)

Familiarity with a variety of nanofabrication tools is a requirement, and a working knowledge of other general wafer fab operations is a plus. This role will also involve participating in micro ...

Familiarity with a variety of nanofabrication tools is a requirement, and a working knowledge of other general wafer fab operations is a plus. This role will also involve participating in micro ...

Nulixir, a nano-biotechnology start-up, is a VC-backed business-to-business (B2B) company that develops, manufactures, and licenses intellectual property (IP) for smart nanocarriers, called ...

Nulixir, a nano-biotechnology start-up, is a VC-backed business-to-business (B2B) company that develops, manufactures, and licenses intellectual property (IP) for smart nanocarriers, called ...

The network engineer programs and troubleshoots network equipment from routers, switches, Dslam, and nano beams equipment. The network engineer also monitors the circuits daily to check for anomalies ...

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Nanoelectronics information

What is nanoelectronics?

Nanoelectronics is a branch of nanotechnology that focuses on the use of nanoscale materials and devices in electronic components. Professionals in this field design, manufacture, and test tiny electronic circuits and devices, often at the scale of billionths of a meter. Their work can involve developing faster computer chips, improving data storage, and creating new types of sensors and transistors. Nanoelectronics experts often collaborate with physicists, chemists, and engineers to push the boundaries of what is possible in electronics.

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

To thrive as a Nanoelectronics Engineer, you need a solid background in electrical engineering, semiconductor physics, and nanotechnology, typically with at least a bachelor's or master's degree in a related field. Familiarity with tools such as scanning electron microscopes (SEM), cleanroom fabrication equipment, and simulation software like COMSOL or Cadence is essential, along with certifications in nanofabrication or microelectronics being advantageous. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help you adapt to fast-evolving technologies and collaborate on complex projects. These skills and qualities are vital for driving innovation, ensuring precision, and successfully developing next-generation electronic devices at the nanoscale.

What are common challenges faced by professionals working in nanoelectronics research and development teams?

Professionals in nanoelectronics often encounter challenges such as keeping up with rapidly evolving technology, working with extremely sensitive materials at the nanoscale, and ensuring device reliability and reproducibility. Collaborating with multidisciplinary teams—including physicists, chemists, and engineers—can also present communication hurdles, but it is essential for innovation. Additionally, securing funding and translating research breakthroughs into scalable manufacturing processes are frequent obstacles in this field.

What is the difference between Nanoelectronics vs Microelectronics?

AspectNanoelectronicsMicroelectronics
Required credentialsBachelor's or higher in Electrical Engineering, Physics, or related fieldsBachelor's or higher in Electrical Engineering, Physics, or related fields
Work environmentResearch labs, advanced manufacturing facilities, academiaManufacturing plants, design firms, research labs
Industry usageDevelopment of nanoscale devices, quantum computing, advanced sensorsIntegrated circuits, consumer electronics, communication devices

Nanoelectronics and microelectronics share similar educational backgrounds and work environments, but nanoelectronics focuses on devices at the nanometer scale, often involving cutting-edge research and quantum effects. Microelectronics deals with larger-scale integrated circuits used in everyday electronic products. Understanding these differences helps professionals choose the right career path or specialization within the electronics industry.

Does nanotechnology pay well?

Nanoelectronics professionals typically earn competitive salaries due to the specialized skills required, such as knowledge of nanofabrication and characterization tools. Salaries vary based on experience, education, and location, but the field generally offers strong earning potential for those with advanced degrees and technical expertise.

Is nanotechnology a good career?

Nanoelectronics is a specialized field within nanotechnology focused on electronic devices at the nanoscale. Careers in this area often require a strong background in physics, materials science, and engineering, with opportunities in research, development, and manufacturing sectors. The field offers growth potential due to advancements in miniaturization and quantum technologies, but it also demands continuous learning and technical expertise.

What are popular job titles related to Nanoelectronics jobs in Texas?

For Nanoelectronics jobs in Texas, the most frequently searched job titles are:

What job categories do people searching Nanoelectronics jobs in Texas look for?

The top searched job categories for Nanoelectronics jobs in Texas are:

Infographic showing various Nanoelectronics job openings in Texas as of August 2026, with employment types broken down into 74% Full Time, and 26% Part Time. Highlights an 100% Physical job distribution.

Research Engineer II

College Station, TX


Texas A&M Engineering Experiment Station
Colleges, Universities, and Professional Schools • 1 - 5K employees

7.8

Company rating: 7.8 out of 10

Based on 146 frontline employees who took The Breakroom Quiz

232nd of 622 rated colleges and universities

Great coworkers

People enjoy working here

Good employer


Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 28 days ago


Job description

Job Title

Research Engineer II

Agency

Texas A&M Engineering

Department

Electrical Engineering

Proposed Minimum Salary

Commensurate

Job Location

College Station, Texas

Job Type

Staff

Job Description

Why work for Texas A&M Engineering?

Engineering has been part of Texas A&M University since its opening in 1876 as the Agricultural and Mechanical College of Texas. Today, the College of Engineering is the largest college on the College Station campus with more than 25,000 engineering students enrolled in 15 departments. Its mission is to serve Texas, the nation and the global community by providing engineering graduates who are well-founded in engineering fundamentals, instilled with the highest standards of professional and ethical behavior, and prepared to meet the complex technical challenges of society.

As the research arm of Engineering, the Texas A&M Engineering Experiment Station (TEES) is a state agency within the Texas A&M University System with a mission to improve lives through basic and applied engineering research, workforce development and technology transition. Our collaborations with industry, academia and government provide cutting-edge solutions to global technical challenges.

We are deeply committed to recruiting and retaining a talented workforce that embraces our core values of Respect, Excellence, Leadership, Loyalty, Integrity, and Service, by offering competitive salaries, an array of benefits, an extensive support network, and above all, an enriching and highly collaborative working community that is deeply passionate about our vision for higher education, research, and public service.

Job Description

The Research Engineer II, under the management of the AggieFab Laboratory Manager, will be responsible for nanofabrication tool management and process development tasks in support of AggieFab, the Core nanofabrication cleanroom facility at Texas A&M University used for research and development. This role will involve the operation, development, and optimization of processes for a broad suite of nanofabrication tools in AggieFab. The equipment includes and is not limited to electron beam lithography, photolithography, thin film deposition (PVD, CVD, and ALD), 3D printing, wafer bonding, reactive ion etching (ICP-RIE and DRIE), metrology, and advanced analysis (dual-beam FIB) tooling. Familiarity with a variety of nanofabrication tools is a requirement, and a working knowledge of other general wafer fab operations is a plus. This role will also involve participating in micro/nanofabrication projects that TAMU principal investigators and external customers are engaged in, including MEMS and BioMEMS processing.

Responsibilities:

  • Developing suitable recipes to achieve optimum results from the process tools for various AggieFab customer research projects.

  • Executing staff runs for academic and industrial customers and preparing detailed reports.

  • Establishing standard operating and training procedures.

  • Maintaining stable operation of tools under his/her purview by performing periodic. control runs and obtaining inputs from the user base.

  • Training users in the operation of tools.

  • Working with tool vendors in developing tool operations and performance enhancements.

  • Establishing preventative maintenance programs and/or working with tool manufacturers to troubleshoot problems and achieve a high up-time for the user base.

What We Need:

  • Bachelors Degree

  • 2 years of Related Experience

What is Helpful:

  • Bachelor of Science (BS) in Electrical Engineering, Materials Science and Engineering, Mechanical Engineering, Chemistry, Physics or related science/engineering major.

  • 2 years in an academic nanofabrication facility or in a leading semiconductor R&D or manufacturing facility.

  • The preferred education is a Ph.D. degree in Electrical Engineering, Materials Science and Engineering, Mechanical Engineering, Chemistry, Physics or related science/engineering major.

  • The preferred experience is at least 5 years in an academic nanofabrication facility or in a leading semiconductor R&D or manufacturing facility.

  • The ideal candidate will understand the principles behind a variety of nanofabrication processes and be able to clearly explain them to new AggieFab researchers.

  • The ideal candidate will have hands-on experience with the operation and optimization of a variety of nanofabrication tools and processes, such as thin film deposition, electron beam lithography, photolithography, metrology, and reactive ion etching.

Work Location:

  • Main Campus - College Station, TX.

About Electrical and Computer Engineering

The Department of Electrical and Computer Engineering at Texas A&M University leads advanced research in several important national and global areas for the betterment of humanity. Areas of research include power and power electronics, information systems, computer architecture, analog and mixed signals circuits, biomedical imaging, and photonics and semiconductors, with ML/AI infused in several of these research areas. Situated conveniently in the hub of the Dallas-Austin-Houston technology triangle, the department collaborates closely with key players in healthcare, computing, telecommunications, energy, and semiconductor manufacturing sectors. It also benefits from its proximity to and engagement with the Army Futures Command and the facilities and test-beds available at the Texas A&M System's RELLIS Campus. With strong support from Texas' robust manufacturing sector and its economy, the department has numerous opportunities to engage in exciting interdisciplinary research partnerships that are shaping the future educational and research landscapes. These partnerships include collaborations and engagement with the Texas A&M Data Science Institute, the Global Cyber Research Institute, the Texas A&M Energy Institute, and the Smart Grid Center.

Texas A&M Engineering provides an outstanding benefits package including but not limited to:

  • Competitive medical insurance benefits through Blue Cross and Blue Shield of Texas and Prescription coverage by Express Scripts.

  • Options for Vision, Dental, Life, and Long-Term Disability insurance.

  • A defined benefit retirement plan with the Teacher Retirement System of Texas (TRS) with 8.25% employer contribution.

  • Additional Voluntary Retirement Programs: Tax Deferred Account 403(b) and a Deferred Compensation Program 457(b).

  • Flexible spending account options for medical and childcare expenses

  • Generous paid time off with holidays, vacation and sick leave.

  • Robust free training access through LinkedIn Learning plus professional development opportunities.

  • Tuition assistance and Educational release time to further your academic pursuits.

  • Access to Engineer Your Wellness programs that provide opportunities for employees to engage in health and fitness.

  • Wellness release time offered to employees to promote work/life balance.

Helpful Applicant Information

Required Materials for Application:

  • Resume/CV

  • Three work references with their contact information; at least one reference should be from a supervisor/former supervisor.

  • Letter of interest

Applications received by Texas A&M Engineering must have all required job application data entered.

Failure to provide all job application data could result in an invalid submission and a rejected application.

Compensation Philosophy:

  • Recruit and retain a high-performing workforce through competitive compensation and career development including career pathing, coaching and skills development.

  • Recognize and reward exceptional performance based on individual and team contributions to the growth and success of Texas A&M Engineering.

  • Offer total rewards through flexible benefits, professional development, and work-life balance. Maintain an equitable and transparent process for compensation decisions.

  • Support, reinforce, and align compensation decisions with budgetary and financial strategies to ensure growth and sustainability.

Employment Eligibility Verification

  • If hired, you will be required to complete the federal Employment Eligibility Verification I-9 form. You will be required to present acceptable and original documents to prove your identity and authorization to work in the United States. Documents need to be presented no later than the third day of employment. Failure to do so will result in delay of start date.

All positions are security-sensitive. Applicants are subject to a criminal history investigation, and employment is contingent upon the institution's verification of credentials and/or other information required by the institution's procedures, including the completion of the criminal history check.

Equal Opportunity/Veterans/Disability Employer.



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