1

Semiconductor Device Simulation Engineer Jobs (NOW HIRING)

Works with Simulation engineer for thermal and thermo-mechanical stress simulations as part of risk ... Strong understanding of power semiconductor device physics and manufacturing processes.

Semiconductor Device Engineer

Austin, TX · On-site

$110K - $180K/yr

About the role As a Device Engineer at fab2, you'll play a critical role in bridging process development, and electrical test. Your work will focus on characterizing semiconductor devices, designing ...

Showing results 21-40

Semiconductor Device Simulation Engineer information

See salary details

$39K

$123.4K

$190.5K

How much do semiconductor device simulation engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for semiconductor device simulation engineer in the United States is $123,399.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,000.00 and $146,500.00 per year, depending on experience, location, and employer.

What does a semiconductor device simulation engineer do?

A Semiconductor Device Simulation Engineer is responsible for modeling and simulating the behavior of semiconductor devices, such as transistors, diodes, and integrated circuits. They use specialized software tools to predict device performance, optimize designs, and troubleshoot issues before fabrication. These engineers collaborate closely with design, process, and fabrication teams to ensure that devices meet performance, reliability, and manufacturability requirements. Their work helps reduce development costs and time-to-market by identifying potential problems early in the design cycle.

What are the key skills and qualifications needed to thrive as a semiconductor device simulation engineer?

To thrive as a Semiconductor Device Simulation Engineer, you need a strong background in electrical engineering or physics, semiconductor device fundamentals, and numerical modeling, typically supported by a relevant degree. Proficiency with simulation tools such as TCAD, SPICE, and MATLAB, as well as programming languages like Python or C++, is essential. Analytical thinking, problem-solving abilities, and effective communication help you interpret simulation results and collaborate with cross-functional teams. These skills ensure accurate device modeling, efficient development cycles, and successful integration of new semiconductor technologies.

What are some typical challenges faced by semiconductor device simulation engineers, and how can they be addressed?

Semiconductor Device Simulation Engineers often encounter challenges such as modeling complex device physics accurately, managing large simulation datasets, and staying updated with rapidly evolving semiconductor technologies. Addressing these issues typically involves collaborating closely with device physicists and process engineers, utilizing high-performance computing resources, and continuous learning through technical literature and training. Effective communication within interdisciplinary teams and a problem-solving mindset are also crucial for overcoming simulation hurdles and delivering reliable results.

What is the difference between Semiconductor Device Simulation Engineer vs Semiconductor Process Engineer?

AspectSemiconductor Device Simulation EngineerSemiconductor Process Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Physics, or related fields; knowledge of simulation softwareBachelor's or Master's in Chemical Engineering, Materials Science, or related fields; process knowledge
Work EnvironmentResearch labs, design teams, simulation software environmentsManufacturing facilities, process development labs
Employer & Industry UsageSemiconductor companies, R&D departments, design firmsManufacturers, fabrication plants, process development teams

The Semiconductor Device Simulation Engineer focuses on modeling and simulating semiconductor devices to optimize performance, while the Semiconductor Process Engineer concentrates on developing and improving manufacturing processes. Both roles require technical expertise but differ in their focus areas within the semiconductor industry.

What are popular job titles related to Semiconductor Device Simulation Engineer jobs?

For Semiconductor Device Simulation Engineer jobs, the most frequently searched job titles are:

Infographic showing various Semiconductor Device Simulation Engineer job openings in the United States as of September 2026, with employment types broken down into 86% Full Time, and 14% Part Time. Highlights an 93% In-person, and 7% Hybrid job distribution, with an average salary of $123,399 per year, or $59.3 per hour.

Staff Engineer, Device Engineering

San Diego, CA • On-site

Full-time

Re-posted 3 days ago


Job description

pSemi Corporation is a Murata company driving semiconductor integration. pSemi builds on Peregrine Semiconductor's 30-year legacy of technology advancements and strong IP portfolio but with a new mission-to enhance Murata's world-class capabilities with high-performance semiconductors. With a strong foundation in RF integration, pSemi's product portfolio now spans power management, connected sensors, optical transceivers, antenna tuning and RF frontends. These intelligent and efficient semiconductors enable advanced modules for smartphones, base stations, personal computers, electric vehicles, data centers, IoT devices and healthcare. From headquarters in San Diego and offices around the world, pSemi's team explores new ways to make electronics for the connected world smaller, thinner, faster and better.

Job Summary

Member of team responsible for RF Technology development for pSemi's patented high-performance UltraCMOS technology. This position will work closely with technology, modeling and CAD engineers to support internal design groups and external foundry customers driving device development, simulation, characterization and optimization of advanced RF-SOI technologies for RF front-end applications including RF switches, low noise amplifiers (LNA), power amplifiers (PA), analog and digital solutions. 

Roles & Responsibilities

This position has responsibility for:

  • RFSOI Device development and technology optimization projects in collaboration with cross-functional teams.
  • Develop a deep understanding of the relationship between RF performance, DC performance, device architecture, layout, process integration, and manufacturing variability.
  • Design and execute technology development vehicles, split lots, and Design of Experiments (DOE) for process and device optimization.
  • Utilize TCAD process and device simulations (2D/3D) to understand device behavior, evaluate technology options, and guide development decisions.
  • Correlate TCAD simulation results with silicon measurements and characterization data.
  • Work closely with wafer fabrication and process integration teams to optimize device performance, yield, and reliability.
  • Work closely with Characterization team and create measurement plan for semiconductor devices such as DC, CV, RF, small-signal, large-signal, load-pull, and reliability methodologies.
  • Analyze process sensitivities and identify opportunities for performance, manufacturability, and yield improvement.
  • Apply statistical methodologies to evaluate device distributions, process capability, variability sources, and reliability trends.
  • Partner with foundries and internal fabrication teams to resolve process integration issues and improve technology robustness.
  • Support compact model development, device parameter extraction, and technology qualification activities.
  • Generate technical reports and present findings to engineering management and cross-functional stakeholders.

 

Minimum Qualifications (Experience and Skills)

  • Strong understanding of semiconductor device physics, particularly SOI and RFSOI technologies.
  • Hands-on experience with semiconductor process development and wafer fabrication.
  • Experience working with CMOS and SOI process technologies.
  • Experience with TCAD process and device simulation tools such as Synopsys or Silvaco.
  • Experience using JMP, MATLAB, Python or equivalent statistical software.
  • Excellent data analysis, problem-solving, and communication skills.
  • Basic understanding of high frequency measurements (S-parameters, Load Pull, Harmonics, and Noise Figure).
  • Understanding of device reliability mechanisms including HCI, BTI, TDDB, and ESD.
  • Basic understanding of how devices are used in RFIC design.
  • Understanding of the interaction between semiconductor manufacturing and device performance

 

Preferred Qualifications

  • Experience developing RF SOI switches, LNAs, PAs, or related RF front-end products.
  • Experience working directly with semiconductor foundries and manufacturing organizations.
  • Knowledge of process integration, technology transfer, and yield ramp activities.
  • Experience with Cadence design and layout environments.
  • Familiarity with circuit simulation tools such as Cadence Virtuoso or ADS.
  • Programming experience in Python, MATLAB, JMP or similar environments for data analysis and automation.
  • Understanding of small and large signal characterization and data analysis.
  • Reliability Testing
  • Strong background in RF device characterization and analysis.

Education Requirements

  • BS & 7-10 years experience
  • MS &  5-7 years experience
  • Ph.D. &  2-3 years experience

 

Work Environment

This job operates in a professional office environment. This role routinely uses standard office equipment.

 

Physical Demands

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. While performing the duties of this job, the employee is regularly required to talk or hear. The employee frequently is required to stand; walk; use hands to finger, handle or feel; and reach with hands and arms. Specific vision abilities required by this job include close vision, distance vision, color vision, peripheral vision, depth perception and ability to adjust focus. This position requires the ability to occasionally lift office products and supplies, up to 20 pounds.
USD 155,195.29 - 201,765.06 per year


pSemi Corporation supports a diverse workforce and is committed to a policy of equal employment opportunity for applicants and employees. pSemi does not discriminate on the basis of age, race, color, religion (including religious dress and grooming practices), sex/gender (including pregnancy, childbirth, or related medical conditions or breastfeeding), gender identity, gender expression, genetic information, national origin (including language use restrictions and possession of a driver's license issued under Vehicle Code section 12801.9), ancestry, physical or mental disability, legally-protected medical condition, military or veteran status (including "protected veterans" under applicable affirmative action laws), marital status, sexual orientation, or any other basis protected by local, state or federal laws applicable to the Company. pSemi also prohibits discrimination based on the perception that an employee or applicant has any of those characteristics, or is associated with a person who has or is perceived as having any of those characteristics.
Note: The Peregrine Semiconductor name, Peregrine Semiconductor logo and UltraCMOS are registered trademarks and the pSemi name, pSemi logo, HaRP and DuNE are trademarks of pSemi Corporation in the U.S. and other countries. All other trademarks are the property of their respective companies. pSemi products are protected under one or more of the following U.S. Patents: http://patents.psemi.com