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Compact Device Modeling Jobs in Greensboro, NC (NOW HIRING)

Compact Device Modeling information

What is compact device modeling?

Compact device modeling is the process of creating simplified mathematical models that accurately represent the electrical behavior of semiconductor devices, such as transistors, within electronic circuits. These models are essential for circuit simulation tools, enabling engineers to predict circuit performance without resorting to complex, time-consuming physical simulations. Compact models balance accuracy and computational efficiency, making them a cornerstone in the design and verification of integrated circuits.

What types of teams or departments does a compact device modeling engineer typically collaborate with?

Compact Device Modeling engineers often work closely with circuit design teams, process technology groups, and EDA (Electronic Design Automation) tool developers. Collaboration is essential because accurate device models are critical for reliable circuit simulations and successful chip fabrication. Regular communication with these departments ensures that the models reflect real-world device behavior and are compatible with evolving design requirements and manufacturing technologies. This cross-functional teamwork provides valuable exposure to multiple aspects of semiconductor development and can open doors for broader career growth.

What are the key skills and qualifications needed to thrive as a compact device modeling engineer, and why are they important?

To thrive as a Compact Device Modeling Engineer, you need a strong background in semiconductor physics, device modeling, and typically an advanced degree in electrical engineering or a related field. Proficiency with simulation tools like SPICE, TCAD software, and programming languages such as Python or MATLAB, as well as knowledge of industry-standard modeling languages (e.g., Verilog-A), is essential. Strong analytical thinking, attention to detail, and effective communication skills help you collaborate with cross-functional teams and interpret complex data. These skills are crucial for developing accurate models that drive innovation and reliability in semiconductor device design.

What is the difference between Compact Device Modeling vs Semiconductor Device Engineer?

AspectCompact Device ModelingSemiconductor Device Engineer
CredentialsTypically requires engineering degree, specialized modeling certificationsRequires engineering degree, often with additional certifications in device physics
Work EnvironmentResearch labs, simulation centers, R&D departmentsDesign labs, manufacturing facilities, R&D teams
Industry UsageUsed for device simulation, circuit design, and performance predictionInvolved in device development, fabrication, and testing

Compact Device Modeling focuses on creating simplified models of semiconductor devices for simulation purposes, aiding circuit design. Semiconductor Device Engineers work on designing, developing, and testing actual semiconductor devices. While both roles require engineering expertise and involve semiconductor technology, modeling is more simulation-oriented, whereas engineering involves hands-on device development.

What are popular job titles related to Compact Device Modeling jobs in Greensboro, NC?

For Compact Device Modeling jobs in Greensboro, NC, the most frequently searched job titles are:

What job categories do people searching Compact Device Modeling jobs in Greensboro, NC look for?

The top searched job categories for Compact Device Modeling jobs in Greensboro, NC are:

Staff Engineer, Modeling and ESD

Qorvo, Inc.

Greensboro, NC • On-site

Full-time

Posted 19 days ago


Qorvo rating

8.3

Company rating: 8.3 out of 10

Based on 21 frontline employees who took The Breakroom Quiz


Job description

Qorvo (Nasdaq: QRVO) supplies innovative semiconductor solutions that make a better world possible. We combine product and technology leadership, systems-level expertise and global manufacturing scale to quickly solve our customers' most complex technical challenges. Qorvo serves multiple high-growth segments of large global markets, including consumer electronics, smart home/IoT, automotive, EVs, battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www.qorvo.com to learn how our innovative team is helping connect, protect and power our planet.
Semiconductor Modeling, ESD, and Characterization Engineer
Summary
Qorvo is seeking an early-career engineer to join its Compound Semiconductor Device Modeling team. This team provides device models, technology definitions, and ESD design infrastructure that enable successful RFIC and MMIC product development across Qorvo's business units.
The team is responsible for delivering accurate compact device models, electromagnetic (EM) and electrothermal (ETH) simulation support, and ESD protection solutions for Qorvo's internal GaAs technologies as well as selected external foundry processes. Internal technology support includes HBT, pHEMT, and passive devices developed within Qorvo's proprietary semiconductor processes. For external foundry technologies, the team evaluates and validates foundry-provided models against measured data, provides technical feedback to foundry partners, and develops model improvements when appropriate.
This role combines hands-on device characterization, compact model development, ESD circuit support, and design enablement activities. The successful candidate will work closely with circuit designers, process technologists, and Qorvo's Engineering Design Automation (EDA) team to deliver a robust and well-integrated design environment.
Our mission is to provide industry-leading modeling and design capabilities that enable innovative products for cellular, infrastructure, defense and aerospace, Wi-Fi, and other advanced RF applications.
Responsibilities
  • Design and layout semiconductor device and passive test structures for DC and RF characterization, primarily using Keysight ADS.
  • Perform on-wafer electrical characterization, including DC, CV, S-parameter, noise, large-signal, and temperature-dependent measurements.
  • Extract, validate, and maintain compact device models using industry-standard modeling frameworks such as AHBT, HICUM, and EEHEMT, as well as custom Verilog-A models when required.
  • Validate model accuracy across process, voltage, and temperature (PVT) conditions and thoroughly document model performance and limitations.
  • Support design engineers in the effective use of device models and provide guidance regarding technology capabilities and model behavior.
  • Develop and maintain technology definitions for electromagnetic (EM) and electrothermal (ETH) simulation environments.
  • Automate characterization, model extraction, validation, and data analysis workflows to improve efficiency and quality.
  • Develop and maintain ESD protection cell libraries within process design kits (PDKs).
  • Review product designs for ESD robustness and provide guidance on ESD implementation in RF, analog, mixed-signal, and related applications.
  • Characterize ESD devices and protection circuits using TLP, VF-TLP, and related measurement techniques.
  • Collaborate with internal technology and device development teams by providing electrical characterization data, modeling support, and semiconductor device expertise.
  • Work closely with EDA teams to ensure seamless deployment and support of models and design enablement technologies.

Required Qualifications
  • BS in Electrical Engineering or a related field, with a strong academic foundation in semiconductor devices, RF design, and laboratory-based characterization techniques.
  • 0-2 years of industry experience, or equivalent graduate research experience, in semiconductor, RF, or microelectronics engineering.
  • Strong written and verbal communication skills with the ability to collaborate effectively across design, technology, and characterization teams.
  • Ability to balance day-to-day customer support activities with project-driven deliverables and schedules.
  • Experience through coursework, research, internships, or industry with Keysight ADS, Cadence AWR Microwave Office, Cadence Virtuoso, or similar semiconductor design environments.
  • Programming and scripting experience, preferably Python, for automation and data analysis.
  • Understanding of semiconductor device physics, characterization principles, and fundamental RF device behavior.

Preferred Qualifications
  • MS or PhD in Electrical Engineering or a related discipline.
  • Experience with compact device modeling and model extraction tools, including Keysight IC-CAP.
  • Experience with electromagnetic simulation tools such as Keysight Momentum, Keysight FEM, Ansys HFSS, or Cadence EMX.
  • Experience with thermal or electrothermal simulation and modeling techniques.
  • Experience using statistical analysis and data visualization tools such as Spotfire.
  • Knowledge of ESD protection concepts and ESD design methodologies for RF, analog, digital, or mixed-signal integrated circuits.
  • Familiarity with compound semiconductor technologies, including GaAs HBT and pHEMT processes.
  • Experience developing custom models using Verilog-A.

Location
Greensboro, NC or Hillsboro, OR
#LI-SM1
MAKE A DIFFERENCE AT QORVO
We are Qorvo. We do more than create innovative RF and Power solutions for the mobile, defense and infrastructure markets - we are a place to innovate and shape the future of wireless communications. It starts with our employees. As a unified global team, we bring a commitment to excellence, growth and a passion for creating what's next. Explore the possibilities with us.
We are an Equal Employment Opportunity (EEO) employer and welcome all qualified applicants. Applicants will receive fair and impartial consideration without regard to any characteristics protected by applicable law, including race, color, religion, sex (as defined by law), national origin, age, military or veteran status, genetic information, or disability.
Qorvo is an E-Verify Employer. For more information, please see the Right to Work and E-Verify Participation posters.

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