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Semiconductor Research In Europe Jobs (NOW HIRING)

Semiconductor R&D Engineer

Milpitas, CA · On-site

$120K - $180K/yr

Headquartered in Santa Clara, California, PDF Solutions also operates worldwide in Canada, China ... R&D engineer with a strong experimental-science background to advance eProbe semiconductor ...

Semiconductor R&D Engineer

Milpitas, CA · On-site

$120K - $180K/yr

Headquartered in Santa Clara, California, PDF Solutions also operates worldwide in Canada, China ... R&D engineer with a strong experimental-science background to advance eProbe semiconductor ...

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 ...

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 ...

... research, deepwater oil and gas exploration and production, medical imaging and pharmaceutical ... Existing relationships with key semiconductor and integrator accounts in Europe. * Experience with ...

$102.57 - $170.96/hr

... research, deepwater oil and gas exploration and production, medical imaging and pharmaceutical ... Existing relationships with key semiconductor and integrator accounts in Europe.* Experience with ...

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Semiconductor Research In Europe information

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How much do semiconductor research in europe jobs pay per hour?

As of Aug 24, 2026, the average hourly pay for semiconductor research in europe in the United States is $22.22, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $23.80 per hour, depending on experience, location, and employer.

What is semiconductor research in Europe?

Semiconductor research in Europe involves scientific and technological studies aimed at advancing the design, fabrication, and application of semiconductor materials and devices. This research is conducted by universities, research institutes, and companies across the continent, often focusing on innovation in microelectronics, nanotechnology, and energy efficiency. Europe's efforts are supported by collaborative initiatives, such as the European Union’s Chips Act, which aims to boost the region’s competitiveness in the global semiconductor market. The research covers everything from fundamental materials science to the development of advanced chips used in electronics, automotive, and industrial applications.

What are the key skills and qualifications needed to thrive as a semiconductor researcher in Europe?

To thrive as a Semiconductor Researcher in Europe, you need a solid background in physics, materials science, or electrical engineering, typically supported by a PhD or advanced degree. Experience with semiconductor fabrication tools, cleanroom protocols, and simulation software such as COMSOL or TCAD is often required. Critical thinking, collaboration, and strong communication skills are essential for innovative problem-solving and effective teamwork. These competencies enable researchers to advance technology, ensure high-quality results, and contribute to Europe's competitive edge in the semiconductor industry.

What are some common challenges faced by semiconductor researchers working in Europe, and how are they typically addressed?

Semiconductor researchers in Europe often encounter challenges such as navigating complex regulatory frameworks, securing funding for advanced research, and keeping pace with rapid technological advancements. Collaboration between universities, research institutes, and industry partners is a key strategy for overcoming these obstacles, as it enables resource sharing and knowledge exchange. Additionally, many research teams participate in European Union-funded projects, which provide support for cross-border initiatives and foster innovation through multinational cooperation.

What is the difference between Semiconductor Research In Europe vs Semiconductor Process Engineer?

AspectSemiconductor Research In EuropeSemiconductor Process Engineer
CredentialsTypically requires a PhD or Master's in Electrical Engineering, Materials Science, or PhysicsUsually holds a Bachelor's or Master's in Engineering or related field
Work EnvironmentResearch labs, R&D centers, academic institutionsManufacturing facilities, cleanrooms, production lines
Industry UsageFocuses on developing new materials, device concepts, and innovative processesOptimizes and maintains existing manufacturing processes for efficiency and quality

Semiconductor Research In Europe primarily involves developing new technologies and materials in research settings, often requiring advanced degrees. In contrast, Semiconductor Process Engineers focus on implementing and improving manufacturing processes in production environments. Both roles are essential in the semiconductor industry but differ in their focus, credentials, and work settings.

More about Semiconductor Research In Europe jobs

What cities are hiring for Semiconductor Research In Europe jobs?

Cities with the most Semiconductor Research In Europe job openings:

What states have the most Semiconductor Research In Europe jobs?

States with the most job openings for Semiconductor Research In Europe jobs include:

Infographic showing various Semiconductor Research In Europe job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 88% Full Time, 10% Part Time, and 1% Contract. Highlights an 78% Physical, 4% Hybrid, and 18% Remote job distribution, with an average salary of $46,222 per year, or $22.2 per hour.

Endowed Chair in Semiconductor Research

San Marcos, TX • On-site


Texas State University

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Re-posted 10 days ago


Job description

Posting Information
Posting Information
Position Title
Endowed Chair in Semiconductor Research
Job Posting Number
2026073TTL
Job Location
San Marcos
Department
Office of the Provost and EVPAA
Position Description
Texas State University seeks applications for an endowed chair at the rank of Professor to conduct research on any aspect of semiconductor research. Texas State University is a leader in semiconductor research with strengths in ultra-wide bandgap materials and devices, materials growth and epitaxy, nanofabrication and device prototyping, and advanced characterization and analysis, and partners with the Texas Institute of Electronics to expand domestic semiconductor production.
Texas State is also home to the Nanofabrication Research Service Center (NRSC), a 2000 square foot multi-user clean room facility where students and researchers can fabricate films, structures, and devices at the micrometer and nanometer scale. The facility houses a class 10,000 instructional area and class 1000 and 100 research areas. Other facilities include the NSF CREST Center for Ultrawide Bandgap Semiconductor Device Materials and the Epitaxy Research Shared Space.
Texas State University receives a full share of the Texas University Fund (TUF) and plans to invest funds in recruitment and substantial start-up support for strategic hires with established research programs and active external funding in historic and emerging areas of research strength, including in semiconductor research. Texas State University hosted a town hall on November 13 to discuss areas of impact for hiring in semiconductor research and to bring together the dynamic semiconductor research community.
We seek to hire dynamic and innovative scholars with an exceptionally strong research record supported by external funding. An applicant's scholarly focus should complement and enhance the semiconductor scholarship and teaching strengths of Texas State, such as:
  • Semiconductor materials and quantum technologies.
  • Device design and architecture.
  • Simulation and modelling.
  • Semiconductor manufacturing.
  • Packaging and integration.
  • AI applications in chips.

Responsibilities:
  • Seek external funding and coordinate interdisciplinary grants with both internal and external collaborators.
  • Conduct and publish original research on semiconductors.
  • Lead interdisciplinary collaboration with faculty across the university.
  • Develop and maintain an active research agenda.
  • Teach undergraduate and graduate courses on semiconductors and related subjects.
  • Mentor and advise students.
  • Contribute to the workforce development and development of the semiconductor curriculum.
  • Participate in service activities at the department, college, and university levels.

The successful candidate will join the department(s) appropriate to their area of scholarly focus. The successful candidate will be expected to build and lead a community of scholars and students including bringing a research group supported by existing external grants and will have the opportunity to negotiate additional hires in related areas to support their research.
Required Qualifications
  • Ph.D. or terminal degree.
  • Evidence of a strong scholarly focus on and sustained record of research excellence in semiconductor research.
  • Evidence of sustained record of excellence in teaching and mentoring students.
  • Evidence of a sustained record of obtaining external funding.

Preferred Qualifications
  • Evidence of activity in organizing conferences and sessions on semiconductors.
  • Experience in teaching and mentoring both undergraduate and graduate students.
  • Experience supporting experiential learning for undergraduate and graduate students.
  • Strong commitment to interdisciplinary collaboration.
  • Evidence of community engagement for scholarship and teaching.

Application Procedures
Applications will be considered on a rolling basis. Only applications submitted through the Texas State University website will be accepted and considered: https://jobs.hr.txstate.edu/postings/55783For additional information, view the search profile here.
Interested applicants should submit the following materials:
  • A cover letter highlighting scholarly focus, publications, teaching, and external funding.
  • A detailed curriculum vitae.
  • Unofficial transcripts (all in one document).
  • The names and contact information of three references.

The selected candidate will be required to provide official transcripts from all degree granting universities.
Proposed Start Date
Fall 2026 (negotiable)
Posting Date
01/16/2026
Review Date
07/31/2026
Close Date
Open Until Filled?
Yes
Legal Notices
Texas State University is committed to a policy of non-discrimination and equal opportunity for all persons regardless of race, sex, color, religion, national origin or ancestry, age, marital status, disability, veteran status, or any other basis protected by federal or state law in employment, educational programs, and activities and admissions.
Employment with Texas State University is contingent upon the outcome of record checks and verifications including, but not limited to, criminal history, driving records, education records, employment verifications, reference checks, and employment eligibility verifications.
This position may conduct research on critical infrastructure depending on the research focus of a hire. Consistent with the requirements of the State of Texas, individuals conducting research on critical infrastructure will be subject to pre-employment, and then subsequent routine background checks/cybersecurity screenings. Employment will at all times be contingent upon the successful completion of these screenings in accordance with State and University requirements.
Reasonable Accommodation
If you experience accessibility issues or require alternative formatting during the application process due to a disability or underlying condition, we request that you contact Talent Acquisition for assistance. A representative from Talent Acquisition will respond to you as soon as possible.
Record Checks and Verifications
Employment with Texas State University is contingent upon the outcome of record checks and verifications including, but not limited to, criminal history, driving records, education records, employment verifications, reference checks, and employment eligibility verifications.
Eligibility for Employment
In accordance with federal law, all new employees must complete the Form I-9 and provide acceptable documentation verifying their identity and authorization to work in the United States. Texas State University participates in E-Verify, and employment is contingent upon the successful verification of work authorization. Employees are required to maintain valid work authorization to satisfy the conditions of Form I9 at all times during their employment and the university makes no implicit or explicit promises to financially support visa or permanent residency applications.
Why Work at Texas State?
Texas State University is a large, student-centered public research institution serving more than 40,000 students across undergraduate, graduate, and doctoral programs in San Marcos and Round Rock. Classified as a Carnegie Doctoral University with High Research Activity (R2), TXST is actively advancing its ambitious Run to R1 strategy, demonstrating sustained growth in research activity, doctoral education, and scholarly impact.
Faculty at TXST join a vibrant academic community of over 5,000 faculty and staff committed to excellence in teaching, research, and service. The university offers a collaborative, supportive environment, and interdisciplinary scholarship. Outstanding faculty are drawn to TXST for the opportunity to make a meaningful impact-advancing research, mentoring a growing student body, and helping shape the future of a rapidly growing research university.
Quick Link
https://jobs.hr.txstate.edu/postings/55783

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