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Opc Modeling Engineer Jobs in Utah (NOW HIRING)

Work experience with the following OPC modeling packages: Prolith, Brion, Synopsys, and Mentor ... Engineer your future. We empower our employees to truly own their career and development. Come ...

... Correction (OPC) models and recipes * Feedback Sub-Resolution Assist Features (SRAF) design ... Engineer your future. We empower our employees to truly own their career and development. Come ...

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Opc Modeling Engineer information

What are the key skills and qualifications needed to thrive as an OPC Modeling Engineer, and why are they important?

To thrive as an OPC Modeling Engineer, you need a strong background in semiconductor physics, computational modeling, and a relevant engineering or science degree. Expertise in OPC software tools like Mentor Calibre or Synopsys, along with experience in scripting languages such as Python or Perl, is typically required. Analytical thinking, attention to detail, and effective cross-functional communication are vital soft skills for this role. These skills ensure precise photolithography models, efficient design-to-manufacturing processes, and seamless collaboration with design and fabrication teams.

What are some common challenges faced by OPC Modeling Engineers when working with new process nodes?

OPC Modeling Engineers often encounter challenges such as adapting to the increasing complexity of advanced process nodes, where feature sizes become smaller and patterning requirements grow more demanding. Accurate model calibration becomes more time-consuming, requiring close collaboration with lithography, process, and design teams. Additionally, integrating new materials and technologies can introduce unforeseen variables, making continuous learning and flexible problem-solving essential for success in this role.

What are OPC Modeling Engineers?

OPC Modeling Engineers are specialists who develop, calibrate, and maintain optical proximity correction (OPC) models used in semiconductor manufacturing. These engineers work to improve the fidelity of photolithography processes by simulating and correcting distortions that occur when transferring circuit patterns onto silicon wafers. Their expertise helps ensure that microchips are fabricated with high precision and yield, enabling the continued advancement of smaller and more complex semiconductor devices. OPC Modeling Engineers typically collaborate with process engineers, software developers, and design teams to optimize and implement OPC strategies.

What is the difference between Opc Modeling Engineer vs PCB Design Engineer?

AspectOpc Modeling EngineerPCB Design Engineer
Required CredentialsBachelor's in Electrical Engineering or related, knowledge of OPC standardsBachelor's in Electrical Engineering, Electronics, or PCB Design certifications
Work EnvironmentSemiconductor fabrication, EDA tool developmentElectronics manufacturing, product development
Industry UsageSemiconductor industry, IC manufacturingConsumer electronics, industrial equipment
Common Search/ComparisonYesNo

Opc Modeling Engineers focus on creating models for optical proximity correction in semiconductor manufacturing, working closely with EDA tools and chip fabrication. PCB Design Engineers develop printed circuit boards for electronic devices, emphasizing layout and electrical integrity. While both roles require electrical engineering knowledge, they serve different stages of electronic product development and are used in distinct industry segments.

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What job categories do people searching Opc Modeling Engineer jobs in Utah look for? The top searched job categories for Opc Modeling Engineer jobs in Utah are:
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RET - OPC Validation Engineer

RET - OPC Validation Engineer

Texas Instruments

Lehi, UT • On-site

Full-time

Posted 8 days ago


Texas Instruments rating

8.1

Company rating: 8.1 out of 10

Based on 83 frontline employees who took The Breakroom Quiz

40th of 137 rated electronics manufacturers


Job description

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 won't just support production, you'll create the technology that makes it possible. From developing the Resolution Enhancement Techniques and OPC models that enable 28nm lithographic patterning, to engineering the precision wet process chemistries that define device performance at atomic scale, ATD engineers are solving the hardest problems in analog semiconductor development. At full production, our fabs will manufacture tens of millions of analog and embedded processing chips every day which are built on the process technologies you help create and qualify. We're committed to responsible, sustainable manufacturing and making a meaningful impact on the local community through job creation and substantial investments in K-12 STEM education. In this role, you'll work at the intersection of fundamental research and high-volume manufacturing, turning process innovations into production-ready technologies that power electronics everywhere.
A flawed OPC recipe can silently degrade yield across thousands of wafers before the root cause is found. Preventing that is your mission. As an RET OPC Validation Engineer in TI's ATD organization, you are the data-driven quality safeguard between recipe development and production deployment. You'll architect and execute measurement-intensive validation strategies including combining SEM metrology, large-scale wafer data analysis, and tight coordination with Fab, Process Engineering, and Metrology teams in order to confirm OPC recipe quality before anything reaches production. You'll also build the data science infrastructure that makes validation faster and more reliable over time. Based at LFAB in Lehi with cross-site collaboration in Dallas, your work directly protects the yield ramp on TI's 28nm node.
Responsibilities
  • Validate the lithography quality of OPC recipes on specific designs:
    • Finalize measurement plans with OPC engineers based on PFA failure reports and PLRC/ORC analysis
    • Coordinate with Process Engineering, Process Integration, and Metrology teams to prepare wafers and execute efficient measurement flows
    • Review large-scale datasets to determine Pass/Fail status and drive data integrity improvements for model release
    • Analyze PLRC/ORC/LMC reports to identify and measure critical layout hotspots
  • Facilitate OPC recipe release in collaboration with recipe engineers:
    • Support OPC model data collection and manage DOE structures
    • Improve SEM job creation and measurement flows through continuous process improvement
    • Develop and implement data science tools to enhance validation accuracy and efficiency

Qualifications
Minimum requirements:
  • Masters in Electrical Engineering, Physics, Computer Science, Chemistry or related field
  • 5 + years experience in a semiconductor photolithography and/or OPC development
  • Experience with 28nm or advanced CMOS planar technology
  • Python / data science proficiency

Preferred qualifications:
  • Strong lithography fundamentals and understanding of OPC model/recipe construction
  • Experience with retarget rule setup and pattern matching
  • GDSII/OASIS layout editing and creation
  • Spotfire/JMP for data reporting; Jira experience

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.

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

Sourced by ZipRecruiter

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