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Phd Semiconductor Jobs in Colorado (NOW HIRING)

III-V Processing Intern

Golden, CO · On-site

$44K - $71K/yr

The III-V semiconductor group at NLR is looking for an intern to help develop large area ... Graduate + PhD: Completed master's degree and enrolled as PhD student from an accredited ...

Minimum PhD with 12+ years' experience in advanced semiconductor packaging development * Due to Contractual requirements, must be a U.S. Person. defined as, U.S. citizen permanent resident or green ...

Head of Packaging Engineering

Boulder, CO · On-site

$150 - $190/hr

Master's degree or PhD in Physics, Electrical Engineering, Materials Science or a related engineering discipline. * Experience with advanced large-area multi-chip semiconductor packaging technologies.

Semiconductor companies rely upon FormFactor's products and services to accelerate profitability by ... PhD without experience; or equivalent work| Required Pay Range: $72,100.00 - $94,605.00 Pay Range ...

Principal Field Service Engineer

Boulder, CO · On-site

$72.10 - $94.61/hr

Semiconductor companies rely upon FormFactor's products and services to accelerate profitability by ... PhD without experience; or equivalent work| Required Pay Range: $72,100.00 - $94,605.00 Pay Range ...

Principal Field Service Engineer

Boulder, CO · On-site

$72.10 - $94.61/hr

Semiconductor companies rely upon FormFactor's products and services to accelerate profitability by ... PhD without experience; or equivalent work | Required**Pay Range:**$72,100.00 - $94,605.00**Pay ...

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Showing results 1-20

Phd Semiconductor information

See Colorado salary details

$39.4K

$93.5K

$155.1K

How much do phd semiconductor jobs pay per year?

As of Aug 26, 2026, the average yearly pay for phd semiconductor in Colorado is $93,451.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,100.00 and $113,600.00 per year, depending on experience, location, and employer.

What is a PhD semiconductor professional?

PhD Semiconductor professionals are experts who have earned a doctoral degree (PhD) with a focus on semiconductor physics, materials, devices, or related engineering fields. They conduct advanced research and development on semiconductor technologies, which are essential for electronics like computers, smartphones, and solar cells. These professionals often work in academia, research institutions, or the semiconductor industry, contributing to innovations in microchips, nanotechnology, and fabrication processes.

What are the key skills and qualifications needed to thrive as a PhD semiconductor researcher, and why are they important?

To thrive as a PhD Semiconductor Researcher, you need advanced knowledge in semiconductor physics, materials science, and device fabrication, typically supported by a doctorate in a relevant field. Familiarity with simulation software (such as TCAD), cleanroom processes, and analytical tools like electron microscopes is crucial. Strong problem-solving abilities, collaboration, and effective scientific communication help distinguish top performers in this role. These skills and qualities are essential for driving innovation, publishing impactful research, and contributing to technological advancements in the semiconductor industry.

What are some common challenges faced by PhD professionals working in the semiconductor industry, and how can they be addressed?

PhD professionals in the semiconductor industry often face challenges such as rapidly evolving technology, the need to stay current with cutting-edge research, and balancing long-term innovation with immediate project goals. Additionally, working in multidisciplinary teams requires strong communication skills to translate complex research into practical solutions. Overcoming these challenges involves continuous learning, active collaboration with engineering and manufacturing teams, and participating in industry conferences or workshops to stay updated on trends and breakthroughs.

What is the difference between Phd Semiconductor vs Semiconductor Engineer?

AspectPhd SemiconductorSemiconductor Engineer
Required CredentialsPhD in Electrical Engineering, Materials Science, or related fieldBachelor's or Master's in Electrical Engineering, Electronics, or related field
Work EnvironmentResearch labs, universities, R&D departmentsDesign, develop, and test semiconductor devices in manufacturing or R&D
Industry UsageAcademic research, advanced R&D, specialized industry rolesProduct development, manufacturing, and engineering teams

While a Phd Semiconductor focuses on advanced research and theoretical development in semiconductors, a Semiconductor Engineer applies practical engineering skills to design and produce semiconductor devices. Both roles are integral to the industry but differ mainly in their focus on research versus application.

Can you work in industry with a PhD semiconductor?

A PhD in semiconductor technology qualifies individuals for various industry roles such as research scientist, process engineer, or product development engineer. These positions often require strong technical skills, familiarity with semiconductor fabrication processes, and experience with tools like CAD software and cleanroom environments. Many PhD holders work in industry to develop new materials, improve manufacturing techniques, or innovate semiconductor devices.

How much does a PhD in semiconductors make?

A PhD in semiconductors typically earns between $100,000 and $150,000 annually, depending on experience, location, and industry sector. Senior roles or those in research and development may offer higher salaries, especially with specialized skills in device physics or fabrication processes.

What jobs can I get with a PhD in semiconductor?

A PhD in semiconductor typically qualifies individuals for research scientist, semiconductor process engineer, device physicist, or materials scientist roles in industries such as electronics, aerospace, and research institutions. These positions often require expertise in device fabrication, materials analysis, and simulation tools, and may involve working in labs or cleanroom environments.

What cities in Colorado are hiring for Phd Semiconductor jobs?

Cities in Colorado with the most Phd Semiconductor job openings:

Infographic showing various Phd Semiconductor job openings in Colorado as of August 2026, with employment types broken down into 80% Full Time, 17% Part Time, and 3% Contract. Highlights an 78% Physical, 3% Hybrid, and 19% Remote job distribution, with an average salary of $93,451 per year, or $44.9 per hour.

Postdoctoral Researcher - Autonomous Experimentation for Semiconductor Materials

Golden, CO • On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 5 days ago


Job description

Posting TitlePostdoctoral Researcher - Autonomous Experimentation for Semiconductor Materials

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LocationCO - Golden

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Position TypePostdoc (Fixed Term)

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Hours Per Week40

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Working at NLRNLR is located at the foothills of the Rocky Mountains in Golden, Colorado is the nation's primary laboratory for energy systems research and development.

Join the National Laboratory of the Rockies (NLR), where world-class scientists, engineers, and experts are accelerating energy innovation through breakthrough research and systems integration. From our mission to our collaborative culture, NLR stands out in the research community for its commitment to an affordable and secure energy future. Spanning foundational science to applied systems engineering and analysis, we focus on solving complex challenges to deliver advanced, secure, reliable, and cost-effective energy solutions. Our work helps strengthen U.S. industries, support job creation, and promote national economic growth.

At NLR, you'll find a mission-driven environment supported by state-of-the-art facilities, multidisciplinary research teams, and strong collaborations with industry, academia, and other national laboratories. We offer robust professional development opportunities, and a competitive benefits package designed to support your career and well-being.

Job Description

A postdoctoral research position is available in the Materials Discovery and Development group, focused on autonomous experimentation at the intersection of semiconductor materials research, artificial intelligence methods, and research equipment automation.

Our team is developing a next-generation autonomous semiconductor research laboratory as part of the U.S. Department of Energy's METALLIC platform. The successful candidate will support building closed-loop experimental systems that integrate advanced scientific instrumentation, AI-driven decision-making, data infrastructure, and workflow orchestration. The platform will accelerate the discovery of advanced thin film inorganic semiconductor materials that address critical U.S. supply chain challenges, with particular emphasis on semiconductor technologies involving Ga, Ge, Sc and other critical elements and materials. The successful candidate will also have opportunities to contribute to broader autonomous experimentation initiatives across NLR, including the U.S. Department of Energy's Genesis Mission projects aimed to accelerate scientific discovery in wurtzite oxide and nitride wide band gap semiconductor, as well as dielectric, piezoelectric, and ferroelectric materials.

As a part of these projects, the successful candidate will develop and apply autonomous experimentation approaches across multiple synthesis and characterization instruments, including vacuum deposition systems such as sputtering, pulsed laser deposition, and molecular beam epitaxy (MBE), as well as advanced property characterization tools, such as photoluminescence, profilometry, J-V, C-V, P-E and other electrical measurements, that complement combinatorial structural (XRD) and compositional (XRF) data. This position offers an opportunity to develop and deploy new approaches in AI-driven experimentation, scientific software, robotics, and laboratory automation across a large and rapidly evolving set of experimental instruments.

As part of this position, the successful candidate will:

  • Design and deploy advanced algorithms and closed-loop workflows for autonomous experimentation on synthesis and characterization instruments.
  • Integrate laboratory instrumentation, data infrastructure, and workflow orchestration systems into scalable autonomous experimentation platforms.
  • Deploy the developed computer vision, robotics, and artificial intelligence methods to solve challenging materials science and semiconductor research problems.
  • Collaborate with materials scientists, engineers, and research technologists to apply autonomous experimentation approaches to other research projects.
  • Proactively diagnose and troubleshoot scientific instrumentation, automation hardware, and software interfaces in accordance with safety practices and operational procedures.

Note: Applicants should submit a cover letter (along with their CV) describing how their background and experience align with the required qualifications for this position, and any preferred qualifications they have in the areas of semiconductor materials research, autonomous experimentation methods, specific software and hardware tools listed above. The cover letter should also include links to relevant public GitHub repositories or other accessible examples of prior software development work (e.g. journal publications, conference proceedings) and briefly describe the applicant's individual contributions to those projects. We encourage anyone who is interested in this opportunity to apply, even if they don't meet 100% of the position requirements.

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Basic QualificationsMust be a recent PhD graduate within the last three years.

* Must meet educational requirements prior to employment start date.

Additional Required Qualifications
  • Demonstrated hands-on proficiency in Python, including the ability to independently design, implement, understand, debug, and maintain scientific software without reliance on AI-assisted coding tools.
  • Proven knowledge of modern software development practices, including Git-based version control, modular software design, testing, and documentation, is required
  • Prior experience in developing software for scientific instrumentation, laboratory automation, experimental control, or related hardware applications, and its integration with scientific objectives into robust experimental workflows.
  • Experience with machine learning, statistical modeling, optimization algorithms, or data-driven scientific methods, such as active learning, Bayesian optimization, design of experiments, uncertainty quantification, or related methods.
  • Basic knowledge of materials science, inorganic chemistry, semiconductor physics, vacuum based thin film processing and characterization methods, composition/structure/property relations, and experimental laboratory equipment
Preferred Qualifications

Preferred semiconductor materials research qualifications:


  • Prior hands-on experience developing autonomous or closed-loop experimental laboratory instruments, including high-throughput and combinatorial experiments
  • Experience with vacuum-based thin-film synthesis and characterization equipment, such as PVD, PLD or MBE systems, electrical probe stations, photoluminescence instruments, optical microscopes, or related scientific instrumentation.
  • Knowledge of inorganic thin films and semiconductor materials, particularly oxides, nitrides, wide band gap semiconductors and dielectrics, or related material systems.

Preferred autonomous experimentation qualifications:

  • Experience with databases, scientific data pipelines, or experimental data management. Experience deploying scientific software across networked Linux and/or Windows systems in a plus.
  • Experience implementing feedback control systems, state machines, fault handling, or other control logic for automated experimental systems. Experience with robotics, motion control, machine vision, or robotic system integration in a plus.

Preferred specific software and hardware qualifications:

  • Experience integrating and controlling scientific instrumentation through software APIs, instrument command sets (e.g., SCPI), industrial communication protocols (e.g., Modbus RTU/TCP), and interoperability standards (e.g., OPC UA).
  • Experience with distributed systems and messaging architectures (e.g., NATS, MQTT, ZeroMQ, or similar publish/subscribe and message-oriented systems).
  • Experience with PLC programming using IEC 61131-3 languages, particularly Structured Text (ST) and Ladder Diagram (LD); experience with Red Lion Graphite Edge Controllers and Crimson software is a plus.

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Job Application Submission Window

The anticipated closing window for application submission is up to 30 days and may be extended as needed.

Annual Salary Range (based on full-time 40 hours per week)Job Profile: Postdoctoral Researcher / Annual Salary Range: $76,600 - $126,400

NLR takes into consideration a candidate's education, training, and experience, expected quality and quantity of work, required travel (if any), external market and internal value, including seniority and merit systems, and internal pay alignment when determining the salary level for potential new employees. In compliance with the Colorado Equal Pay for Equal Work Act, a potential new employee's salary history will not be used in compensation decisions.

Benefits SummaryBenefits include medical, dental, and vision insurance; short-term disability insurance*; pension benefits*; 403(b) Employee Savings Plan with employer match*; life and accidental death and dismemberment (AD&D) insurance; personal time off (PTO) and sick leave; and paid holidays. NLR employees may be eligible for, but are not guaranteed, performance-, merit-, and achievement- based awards that include a monetary component. Some positions may be eligible for relocation expense reimbursement.

* Based on eligibility rules

Badging RequirementNLR 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 required by Homeland Security Presidential Directive 12 (HSPD-12), which includes a favorable background investigation.Drug Free Workplace

NLR is committed to maintaining a drug-free workplace in accordance with the federal Drug-Free Workplace Act and complies with federal laws prohibiting the possession and use of illegal drugs. Under federal law, marijuana remains an illegal drug.

If you are offered employment at NLR, you must pass a pre-employment drug test prior to commencing employment. Unless prohibited by state or local law, the pre-employment drug test will include marijuana. If you test positive on the pre-employment drug test, your offer of employment may be withdrawn.

Submission Guidelines

Please note that in order to be considered an applicant for any position at NLR you must submit an application form for each position for which you believe you are qualified. Applications are not kept on file for future positions. Please include a cover letter and resume with each position application.

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Equal Opportunity Employer

All qualified applicants will receive consideration for employment without regard basis of age (40 and over), color, disability, gender identity, genetic information, marital status, domestic partner status, military or veteran status, national origin/ancestry, race, religion, creed, sex (including pregnancy, childbirth, breastfeeding), sexual orientation, and any other applicable status protected by federal, state, or local laws.


Reasonable Accommodations


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E-Verify is a registered trademark of the U.S. Department of Homeland Security. This business uses E-Verify in its hiring practices to achieve a lawful workforce.