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Simulation Phd Jobs in Orem, UT (NOW HIRING)

Principal Electrical Subsystem Architect

Provo, UT

$131K - $160K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Coordinate with systems engineering, digital design, RF, modeling/simulation, GNC, and ... MS/PhD preferred. * Experience with missile systems, guidance electronics, harsh‑environment ...

Principal Antenna and Radome Engineer

Provo, UT

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Analyze simulation and test data to verify performance to requirements Qualifications You Must Have ... Master of Science (MS) or PhD in Electrical Engineering * Strong experience managing and presenting ...

Principal RF Sensor Design Specialist

Provo, UT

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... define, analyze, simulate, implement, and evaluate requirements for ranges and/or chambers ... Master of Science (MS) or PhD in electrical engineering * Significant experience simulating and/or ...

Faculty Lead & Learning Engineer - Sciences

Lehi, UT · On-site

$96K - $126K/yr

  • Medical

  • Dental

  • Vision

  • PTO

... experiences (simulations, visualizations, notebooks) * Support accreditation & quality: Align ... PhD or EdD preferred * 3+ years teaching or leading curriculum in undergraduate science (online or ...

Senior Systems Engineer - Air Dominance (Onsite)

Provo, UT

$98K - $135K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... new missile simulator design project. This will include evaluating requirements documents ... Masters or PhD in Engineering, Computer Science, Math or Physics * A self-starter who can take on ...

Simulation Phd information

See Orem, UT salary details

$33.9K

$107.3K

$165.6K

How much do simulation phd jobs pay per year?

As of Aug 14, 2026, the average yearly pay for simulation phd in Orem, UT is $107,280.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,000.00 and $127,400.00 per year, depending on experience, location, and employer.

What are the typical research collaboration opportunities available to a Simulation PhD within academia or industry?

Simulation PhD holders often work closely with multidisciplinary teams, including engineers, computer scientists, and domain experts, to develop and validate complex models. In academia, collaboration may involve joint research projects, co-authored publications, or participation in research consortia. In industry, Simulation PhDs might partner with product development teams, data analysts, or IT professionals to solve real-world problems and optimize processes. These collaborations not only enhance research impact but also provide valuable networking and career advancement opportunities.

What is a Simulation PhD?

A Simulation PhD is a doctoral degree focused on the development, application, and analysis of simulation techniques across various fields such as engineering, physics, computer science, or healthcare. Students in this program conduct advanced research to create or improve models that simulate real-world processes or systems. The degree typically involves coursework, comprehensive exams, and an original dissertation contributing new knowledge to the field of simulation. Graduates often pursue careers in academia, research, industry, or government, where they apply simulation to solve complex problems.

What are the key skills and qualifications needed to thrive as a Simulation PhD?

To thrive as a Simulation PhD, you need advanced expertise in simulation modeling, mathematics, and data analysis, usually supported by a doctoral degree in a relevant field such as engineering or computer science. Proficiency with technical tools like MATLAB, Simulink, Python, or specialized simulation software, along with experience in programming and statistical analysis, is essential. Strong problem-solving skills, critical thinking, and effective communication are crucial soft skills for collaborating with interdisciplinary teams and presenting complex results. These abilities are important to drive innovation, ensure accurate research outcomes, and translate simulation results into practical solutions.

What job categories do people searching Simulation Phd jobs in Orem, UT look for?

The top searched job categories for Simulation Phd jobs in Orem, UT are:

Infographic showing various Simulation Phd job openings in Orem, UT as of August 2026, with employment types broken down into 84% Full Time, 13% Part Time, and 3% Contract. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution, with an average salary of $107,280 per year, or $51.6 per hour.

Photolithography Process Development Engineer (Advanced Patterning)

Texas Instruments

Lehi, UT • On-site

Full-time

Re-posted 7 days ago


Texas Instruments rating

8.1

Company rating: 8.1 out of 10

Based on 86 frontline employees who took The Breakroom Quiz

49th of 157 rated electronics manufacturers


Job description


Change the world. Love your job.
We're at the forefront of an exciting era of semiconductor innovation at Texas Instruments' LFAB in Lehi, Utah - home to our state-of-the-art 300mm manufacturing facility now ramping our most advanced 28nm analog and embedded process technology in the heart of the Silicon Slopes. As part of our Advanced Technology Development (ATD) organization, you will be challenged with developing and characterizing the next generation node. We are seeking a highly skilled and hands-on Process Development Engineer with deep expertise in advanced-node semiconductor manufacturing. This role focuses on the next generation 20nm-class logic technologies, with primary responsibility for photolithography and litho-etch integration, including advanced patterning techniques such as pitch doubling (SADP/LELE). This role will also work directly with the Resolution Enhancement Techniques (RET) team to create Optical Proximity Corrections (OPC) and validate final pattern meets design tolerance.
You will play a critical role in developing, optimizing, and scaling patterning processes to meet aggressive performance, yield, and manufacturability targets. This is a high-impact position working at the intersection of lithography, materials science, and plasma etch.
Responsibilities include:
  • Modeling & Simulation: Utilize lithography simulation software (e.g., Prolith, S-Litho) to analyze process windows and optimize patterning results.
  • Metrology & Yield Improvement: Utilize advanced metrology (CD-SEM, Overlay, Scatterometry) to identify defects and improve Critical Dimension Uniformity (CDU) and overlay performance.
  • Vendor & Subsystem Interaction: Work with equipment vendors to evaluate new materials, photoresists, and tool hardware upgrades.
  • Data Analysis & SPC: Analyze process data, identify root cause, and implement robust process improvements. Apply Statistical Process Control (SPC) and Design of Experiments (DOE) to develop new processes to enable Litho shrink processes.
  • Pathfinding & Technology Transfer: Define pathfinding activities for new patterning technology, evaluating High NA Immersion for next-generation nodes. Lead technology transfer from R&D to HVM for photolithography processes.
  • Photo Process Characterization: Lead development to create next generation Litho Shrink processes for 20nm class logic nodes.
    • Drive litho-etch integration (LE, LELE, SADP / pitch doubling) for advanced patterning schemes.
    • Develop and implement resolution enhancement techniques (RET) and optical proximity correction (OPC)strategies.
    • Evaluate and select materials systems, including photoresists, hard masks, and anti-reflective coatings.
    • Characterize and reduce patterning defects, including line edge roughness (LER), CD variation, and overlay errors.
    • Collaborate closely with Etch team to optimize pattern transfer, profile control, and CD uniformity Interface with cross-functional teams including design, integration, yield, and manufacturing.

Qualifications
Minimum requirements:
  • Master's in Electrical Engineering, Materials Science, Physics, or related discipline
  • 5+ years of industry experience in advanced semiconductor process development
  • Direct, hands-on experience with 22nm node or comparable advanced nodes (e.g., 28nm, 14nm)
  • Strong expertise in:
    • Photolithography process development and optimization
    • Litho-etch integration (LELE, SADP, pitch splitting/doubling)
    • OPC and Resolution Enhancement Techniques (RET) methodologies
    • Dry etch processes for pattern transfer
  • Deep understanding of:
    • Critical dimension (CD) control and uniformity
    • Overlay and alignment challenges
    • Defectivity mechanisms and mitigation strategies

Preferred qualifications:
  • PhD in Electrical Engineering, Materials Science, Physics, or related discipline
  • Experience with self-aligned multiple patterning (SAMP, SADP, SAQP)
  • Familiarity with advanced nodes below 22nm (e.g., 16/14nm FinFET technologies)
  • Experience working in high-volume manufacturing environments (foundry or IDM)
  • Exposure to industry-standard modeling and OPC tools
  • Strong problem-solving skills with a data-driven approach
  • Demonstrated ability to work cross-functionally in fast-paced environments
  • Experience with advanced reticle layout and Resolution Enhancement Techniques (RET)
  • Demonstrated strong analytical and problem-solving skills, with a collaborative team-player mindset
  • Technical Skills: Deep understanding of Immersion lithography, DUV, and multi-patterning processes. Demonstrated ability to Design for Manufacturing
  • Software Skills: Proficiency with lithography simulation software (ProLith, S-Litho) and data analysis tools (e.g., JMP, Python)

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