Define and execute device on-wafer and packaged device characterization plans that include DC, small signal RF, load-pull tests. * Utilize model extraction tools (e.g., IC-CAP) to generate compact ...
Define and execute device on-wafer and packaged device characterization plans that include DC, small signal RF, load-pull tests. * Utilize model extraction tools (e.g., IC-CAP) to generate compact ...
Define and execute device on-wafer and packaged device characterization plans that include DC, small signal RF, load-pull tests. * Utilize model extraction tools (e.g., IC-CAP) to generate compact ...
Define and execute device on-wafer and packaged device characterization plans that include DC, small signal RF, load-pull tests. * Utilize model extraction tools (e.g., IC-CAP) to generate compact ...
Compact Device Modeling information
What are the key skills and qualifications needed to thrive as a compact device modeling engineer, and why are they important?
What types of teams or departments does a compact device modeling engineer typically collaborate with?
What is compact device modeling?
What is the difference between Compact Device Modeling vs Semiconductor Device Engineer?
| Aspect | Compact Device Modeling | Semiconductor Device Engineer |
|---|---|---|
| Credentials | Typically requires engineering degree, specialized modeling certifications | Requires engineering degree, often with additional certifications in device physics |
| Work Environment | Research labs, simulation centers, R&D departments | Design labs, manufacturing facilities, R&D teams |
| Industry Usage | Used for device simulation, circuit design, and performance prediction | Involved 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.

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Re-posted 10 days ago
North Carolina State University rating
6.8
Based on 33 frontline employees who took The Breakroom Quiz
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Job description
- Medical, Dental, and Vision
- Flexible Spending Account
- Retirement Programs
- Disability Plans
- Life Insurance
- Accident Plan
- Paid Time Off and Other Leave Programs
- 12 Holidays Each Year
- Tuition and Academic Assistance
- And so much more!
- RF Device Design and Development (30%)
- Design and optimize GaN RF devices including discrete HEMTs, passive elements, and MMICs.
- Establish a flexible PDK defining the CLAWS RF technologies.
- Utilize TCAD simulation (e.g., Synopsys, Silvaco, etc.) for process and device modeling, electrical characteristics prediction, and performance enhancement.
- Develop and refine device layouts for wafer fabrication, ensuring manufacturability and reliability.
- Process Integration and Fabrication (30%)
- Be responsible for process development and integration enabling the fabrication of GaN devices leveraging NCSU's nanofabrication facilities.
- Establish hands-on proficiency in relevant fabrication methods, including lithography, metal and dielectric deposition, etching, wafer dicing, and others as needed.
- Characterization and Reliability Testing (20%)
- Define and execute device on-wafer and packaged device characterization plans that include DC, small signal RF, load-pull tests.
- Utilize model extraction tools (e.g., IC-CAP) to generate compact models and from electrical test data.
- Leverage failure analysis and characterization methods to support process development and integration.
- Analyze reliability metrics to assess long-term device stability.
- Cross-Functional Collaboration (20%)
- Work with process engineers and R&D partners to drive technology improvements.
- Collaborate with circuit designers, applications engineers, and product development teams to translate device-level improvements into system-level advantages.
- The successful candidate will:
- Comply with stated workplace policies.
- Communicate results, plans, and other updates to a variety of audiences.
- Adhere to and mentor others in known best practices.
- Support CLAWS activities such as tours, meetings, and conferences.
- Ph.D. in a relevant field with research focus on GaN device processing.
- Bachelor's degree in a relevant field with at least 5 years' experience in GaN device development. A track record of significant achievement is required.
- Advanced skill in developing and using EDA tools for RF device design.
- Proficiency developing or integrating processes supporting the fabrication of GaN RF devices.
- Experience and proficiency in one or more of the following fabrication areas: lithography, metal or dielectric film deposition, or etching.
- Excellent communication and interpersonal skills.
- Ability to multitask and meet deadlines with moderate supervision.
- Ability to follow safe procedures for working with semiconductor fabrication equipment, chemicals, and compressed gas cylinders.
- Comfort collaborating with students, faculty, and staff of varying experience and backgrounds.
- Eligibility to obtain clearance upon request of the US government
- E-beam lithography.
- Device characterization
- Impedance transforming fixture design
- Failure analysis, lifetime estimation, and defect inspection.
- MES and SPC systems.
- Statistical methods (e.g., DOE, GR&R) and tools (e.g., JMP, Minitab)
- N/A
If you have general questions about the application process, you may contact Human Resources at (919) 515-2135 or workatncstate@ncsu.edu.
Final candidates are subject to criminal & sex offender background checks. Some vacancies also require credit or motor vehicle checks. Degree(s) must be obtained prior to start date in order to meet qualifications and receive credit.
NC State University participates in E-Verify. Federal law requires all employers to verify the identity and employment eligibility of all persons hired to work in the United States.
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About North Carolina State University
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North Carolina State University (NCSU), located in Raleigh, NC, US, is a leading educational institution with a strong emphasis on research, academics, and public service. Established in 1887, NCSU operates in the education industry and endeavors to foster student success, and promote economic development by providing high-quality, affordable education, and conducting groundbreaking research across a variety of disciplines. With more than 100 majors, its academic offerings range from undergraduates to postgraduates along with doctoral studies - in various fields like engineering, natural resources, humanities, and social sciences. NCSU is firmly anchored on the core values of respect, responsibility, integrity, and innovation. Its mission is to create economic, societal, and intellectual prosperity for the people of North Carolina and the nation.
Industry
Colleges, universities, and professional schools
Company size
5,001 - 10,000 Employees
Headquarters location
Raleigh, NC, US
Year founded
1887