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Phd Semiconductor Jobs in Utah (NOW HIRING)

Phd Semiconductor information

See Utah salary details

$34.1K

$80.9K

$134.3K

How much do phd semiconductor jobs pay per year?

As of Sep 4, 2026, the average yearly pay for phd semiconductor in Utah is $80,907.00, according to ZipRecruiter salary data. Most workers in this role earn between $63,300.00 and $98,300.00 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 are popular job titles related to Phd Semiconductor jobs in Utah?

For Phd Semiconductor jobs in Utah, the most frequently searched job titles are:

What job categories do people searching Phd Semiconductor jobs in Utah look for?

The top searched job categories for Phd Semiconductor jobs in Utah are:

What cities in Utah are hiring for Phd Semiconductor jobs?

Cities in Utah with the most Phd Semiconductor job openings:

Infographic showing various Phd Semiconductor job openings in Utah as of August 2026, with employment types broken down into 1% Internship, 83% Full Time, 12% Part Time, and 4% Contract. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution, with an average salary of $80,907 per year, or $38.9 per hour.

LFAB Device & Process Integration Branch Manager

Texas Instruments

Lehi, UT • On-site

Full-time

This job post has expired today. Applications are no longer accepted.


Texas Instruments rating

8.1

Company rating: 8.1 out of 10

Based on 86 frontline employees who took The Breakroom Quiz

51st of 161 rated electronics manufacturers


Job description


LFAB Process Integration Branch Manager
Working in a state-of-the-art, growing 300mm, 65nm and below analog and embedded wafer fab in Lehi, Utah.
In this role you will be part of the factory leadership and lead the Process Integration team, where primary responsibilities will include (a) ownership of parametric performance and yield improvement, (b) driving operational focus on parametric test output evaluation, (c) leading the process integration team in semiconductor device monitoring, device improvement activities, integration projects to support increased yield and product performance, (d) working closely with the factory leadership team to meet daily operational and strategic technology goals, (e) leading the factory in finding effective solutions to technology issues and yield improvement in a time constrained environment, (f) utilizing technical and practical experience to drive factory quality decisions and actions, (g) leveraging experience and management skills to ensure technology transfers and development meet commitments, (h) partnering with factory leadership to define and execute strategic roadmaps.
As part of this role, you will have director level people responsibilities (manager of managers) and direct responsibility for continued improvement of the process integration team's effectiveness. As the Process Integration Branch Manager you are expected to be highly experienced in both semiconductor device physics and process integration as you will be required to both drive decisions and coach factory team members at all levels in devices, integration, project execution, and continuous improvement.
Demonstrated Qualification:
  • Effective director level leadership (experience leading managers and individual contributors): defining and meeting aggressive goals, strategic and tactical execution, team development
  • Effective communication to senior management and overall organization
  • Strategic planning in a combined volume semiconductor manufacturing and new technology introduction environment
  • Leading technology development and transfer activities, both technical and execution
  • Day to day leadership in a fast paced, 24x7 manufacturing site with a rapidly changing environment.
  • Deep technical and practical understanding of semiconductor device physics
  • Expertise and ownership of semiconductor device characterization and manufacturing parametric data, 65nm and below.
  • Expertise and ownership of semiconductor process integration in a manufacturing environment, 65nm and below.
  • Practical understanding of 65nm-28nm process integration
  • Experience in 65nm and below process technology nodes
  • General knowledge of unit process physics and manufacturing operations
  • Strong analytical and problem-solving skills
  • Strong verbal and written communication skills
  • Ability to work in teams and collaborate effectively with people in different functions
  • Demonstrated ability to build strong, influential relationships
  • Work effectively across organizational boundaries, fab sites, development teams, business units

Process Integration Branch Manager Responsibilities:
  • Leadership team member responsible for "24x7" volume manufacturing fabrication facility
  • Proactive alignment and communication with factory leadership team
  • Factory level goal definition and attainment
  • Define and set process integration goals to support factory level goals
  • Deliver on daily tactical factory priorities (ownership of parametric performance and execution)
  • Deliver on strategic factory priorities
  • Identify and drive longer term company technology and manufacturing group initiatives
  • Define, initiate and implement strategic initiatives to impact factory and TI technology and manufacturing group performance
  • Optimize the process integration and factory organization to its most effective state, with ongoing reassessment
  • Leadership in technology transfer and development activities including project execution, technical assessment, and communications
  • Leader of process integration team covering all technologies released to manufacturing
  • Owner of technology parametric performance/yield (all components and overall integration)
  • Plan effectively, drive schedules, meet critical deadlines on multiple projects in parallel
  • Coach and develop leaders and team in technical understanding, management, and project execution
  • Lead and drive technical discussions around the performance of a broad portfolio of semiconductor components
  • Lead and drive technical discussions around the process integration at 65nm and below nodes
  • Lead and coach team in critical, high pressure, time constrained technical problem-solving activities
  • Clearly communicate technology and project status and actions to senior management and overall organization
  • Interface with multiple organizations on a diverse team to accomplish goals.

Qualifications
Minimum requirements:
  • Masters or PhD in EE/ECE or semiconductor specific solid state physics, applied physics or quantum mechanics
  • Experience working in a high-volume semiconductor factory with expertise in semiconductor devices and transition of new technology from introduction to production on schedule (high volume)
  • Experience in a high-volume semiconductor factory as a device or process integration manager.

About Us
Why TI?
  • Engineer your future. We empower our employees to truly own their career and development. Come collaborate with some of the smartest people in the world to shape the future of electronics.
  • We're different by design. Diverse backgrounds and perspectives are what push innovation forward and what make TI stronger. We value each and every voice, and look forward to hearing yours. Meet the people of TI
  • Benefits that benefit you. We offer competitive pay and benefits designed to help you and your family live your best life. Your well-being is important to us. Please find our country-specific benefits here

About Texas Instruments
Texas Instruments Incorporated (Nasdaq: TXN) is a global semiconductor company that designs, manufactures and sells analog and embedded processing chips for markets such as industrial, automotive, data center, personal electronics and communications equipment. At our core, we have a passion to create a better world by making electronics more affordable through semiconductors. This passion is alive today as each generation of innovation builds upon the last to make our technology more reliable, more affordable and lower power, making it possible for semiconductors to go into electronics everywhere. Learn more at TI.com.
Texas Instruments is an equal opportunity employer and supports a diverse, inclusive work environment. All qualified applicants will receive consideration for employment without regard to race, color, religion, creed, disability, genetic information, national origin, gender, gender identity and expression, age, sexual orientation, marital status, veteran status, or any other characteristic protected by federal, state, or local laws.
If you are interested in this position, please apply to this requisition.
About the Team
TI does not make recruiting or hiring decisions based on citizenship, immigration status or national origin. However, if TI determines that information access or export control restrictions based upon applicable laws and regulations would prohibit you from working in this position without first obtaining an export license, TI expressly reserves the right not to seek such a license for you and either offer you a different position that does not require an export license or decline to move forward with your employment.

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About Texas Instruments

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As a global semiconductor company, we design, manufacture, test and sell analog and embedded processing chips to nearly 100,000 customers. Our products enable electronics everywhere and in things you experience every day - from health care, smart homes and connected cars to drones, smart phones and more. Our passion to create a better and more sustainable world by making electronics more affordable through semiconductors drives us to make our technology smaller, more efficient, more reliable and more affordable.

Industry

Semiconductor and electronic component manufacturing

Company size

10,000+ Employees

Headquarters location

Dallas, TX, US

Year founded

1930