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Ic Design Engineer Jobs in Raleigh, NC (NOW HIRING)

Become a Key Player as an Embedded Firmware Engineer You will design, implement, and maintain ... Support system power management including USB power negotiation, battery management, IC sleep modes ...

Our design services span many disciplines, including custom system design, software development ... Experience supporting offensive cyber operations within secure Dod or IC environments and following ...

Cyber Engineer

Cary, NC · On-site

$120 - $160/hr

Our design services include Custom System Design, Software Development, Hardware Design, RF/Antenna ... Experience supporting offensive cyber operations within secure Dod or IC environments and following ...

Job Summary We are seeking a Performance Automation Software Engineer to design, build, and ... Education IC - Typically requires a minimum of 5 years of related experience. Mgr & Exec - ...

Our design services span many disciplines, including custom system design, software development ... Experience supporting offensive cyber operations within secure Dod or IC environments and following ...

Principal Software Engineer

Raleigh, NC · On-site

$131K - $175K/yr

Demonstrated technical leadership as an IC (e.g., leading design reviews, mentoring, improving engineering practices). Microsoft certifications (AZ-204, PL-400, AZ-305) are a plus, not a requirement.

Principal Software Engineer

Raleigh, NC · On-site

$131K - $175K/yr

Demonstrated technical leadership as an IC (e.g., leading design reviews, mentoring, improving engineering practices). Microsoft certifications (AZ-204, PL-400, AZ-305) are a plus, not a requirement.

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Ic Design Engineer information

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How much do ic design engineer jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for ic design engineer in Raleigh, NC is $77.23, according to ZipRecruiter salary data. Most workers in this role earn between $76.88 and $100.48 per hour, depending on experience, location, and employer.

What is an IC design engineer?

IC Design Engineers are professionals who design and develop integrated circuits (ICs), which are essential components used in a wide range of electronic devices. They work with specialized software tools to create circuit layouts, simulate their performance, and ensure the ICs meet required specifications. Their responsibilities often include collaborating with other engineers, testing prototypes, and troubleshooting design issues to optimize the functionality and efficiency of the chips. This role is critical in industries such as consumer electronics, automotive, telecommunications, and more.

What does an IC design engineer do?

As an IC design engineer, your job is to help create an integrated circuit that meets the needs of a project. This typically involves fitting amplifiers, transistors, capacitors, resistors, and other components into a single part that manufacturers can install onto a larger circuit board. Fulfilling the responsibilities and duties of an IC design engineer requires familiarity with various electronic components and the ability to transform overall project goals into specific design objectives. Most integrated circuits are purpose-built for each type of circuit board, so flexibility and the ability to modify designs as needed is essential for success in this field.

What are the key skills and qualifications needed to thrive as an IC design engineer, and why are they important?

To thrive as an IC Design Engineer, you need a solid background in electrical engineering, semiconductor physics, and circuit design, usually supported by a relevant degree. Proficiency with CAD tools like Cadence or Synopsys, and familiarity with industry standards and verification methodologies, are essential. Strong problem-solving abilities, attention to detail, and effective teamwork set outstanding candidates apart. These skills ensure the development of reliable, high-performance integrated circuits that meet technical and market requirements.

What are some typical challenges an IC design engineer might face during the design and verification process?

IC Design Engineers often encounter challenges such as meeting strict power, performance, and area (PPA) targets while adhering to tight project timelines. Debugging complex circuit behaviors and ensuring designs are error-free through rigorous verification can also be demanding. Collaboration with cross-functional teams—such as layout engineers, verification specialists, and system architects—is essential to address design constraints and integration issues. Staying updated with evolving design tools and methodologies is another key aspect of the role.

What is the difference between Ic Design Engineer vs IC Test Engineer?

AspectIC Design EngineerIC Test Engineer
Primary FocusDesigning integrated circuits and chip architecturesTesting and validating ICs for functionality and quality
Skills & CertificationsVLSI design, CAD tools, circuit theoryTesting methodologies, lab equipment, scripting
Work EnvironmentDesign labs, CAD software, collaboration with design teamsTesting labs, equipment setup, analysis of test data
Industry UsageSemiconductor companies, electronics manufacturersManufacturers, testing service providers

While both roles are integral to IC development, IC Design Engineers focus on creating the circuit layouts and architectures, whereas IC Test Engineers specialize in verifying and validating the functionality of these chips through testing processes. Understanding these differences helps in choosing the right career path or job search focus within the semiconductor industry.

How hard is it to get into IC design engineer?

Getting into an IC design engineer role typically requires a strong background in electrical engineering or related fields, with proficiency in hardware description languages like VHDL or Verilog. Relevant experience with CAD tools, a solid understanding of semiconductor physics, and often a bachelor's or master's degree are essential; competition can be high due to specialized skills and industry demand.

Is IC design engineer a good career?

An IC design engineer designs integrated circuits and plays a critical role in electronics development, often requiring skills in VHDL, Verilog, and CAD tools. The field offers strong job growth, competitive salaries, and opportunities in industries like consumer electronics, telecommunications, and aerospace. Continuous learning and staying updated with new technologies are important for long-term success in this career.

What are the most commonly searched types of Ic Design Engineer jobs in Raleigh, NC?

The most popular types of Ic Design Engineer jobs in Raleigh, NC are:

What are popular job titles related to Ic Design Engineer jobs in Raleigh, NC?

For Ic Design Engineer jobs in Raleigh, NC, the most frequently searched job titles are:

What job categories do people searching Ic Design Engineer jobs in Raleigh, NC look for?

The top searched job categories for Ic Design Engineer jobs in Raleigh, NC are:

What cities near Raleigh, NC are hiring for Ic Design Engineer jobs?

Cities near Raleigh, NC with the most Ic Design Engineer job openings:

Infographic showing various Ic Design Engineer job openings in Raleigh, NC as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, and 4% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $160,636 per year, or $77.2 per hour.

CLAWS III-N RF Integration Engineer

North Carolina State University

Raleigh, NC • On-site

Full-time, Part-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 25 days ago


North Carolina State University rating

6.8

Company rating: 6.8 out of 10

Based on 33 frontline employees who took The Breakroom Quiz

462nd of 620 rated colleges and universities


Job description

Posting Details
Posting Information
Posting Number
PG194256EP
Internal Recruitment
No
Working Title
CLAWS III-N RF Integration Engineer
Anticipated Hiring Range
Commensurate with Education and Experience
Work Schedule
Monday - Friday, 8 am - 5 pm
Job Location
Raleigh, NC
Department
Commercial Leap Ahead for Wide Bandgap Semiconductors (CLAWS)
About the Department
North Carolina State University is leading the charge as the recipient of a $39.4 million award from the Department of Defense to establish the regional Microelectronics Commons regional innovation hub, Commercial Leap Ahead for Wide Bandgap Semiconductors (CLAWS). This initiative, part of the larger $238 million investment through the Creating Helpful Incentives to Produce Semiconductors (CHIPS) and Science Act, aims to revolutionize the field of wide bandgap semiconductors.
Hub leadership, Distinguished Professors John Muth and Fred Kish, are dedicated to the "lab to fab" journey-translating laboratory advancements into fabrication capabilities for wide bandgap semiconductors. The hub brings together a dynamic partnership with N.C. A&T State University and industry leaders, including Wolfspeed, Coherent Corp., General Electric, Bluglass, Adroit Materials, and Kyma Technologies, Inc. This collaborative effort will propel the development of semiconductors crucial for national defense, electric vehicles, power grid technologies, 5G/6G, quantum technologies, and artificial intelligence applications.
Wolfpack Perks and Benefits
As a Pack member, you belong here, and can enjoy exclusive perks designed to enhance your personal and professional well-being. As you consider this opportunity, we encourage you to review our Employee Value Proposition and learn more about what makes NC State the best place to learn and work for everyone.
What we offer:
  • 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!

Attain Work-life balance with our Childcare benefits, Wellness & Recreation Membership, and Wellness Programs that aim to build a thriving wolfpack community.
Disclaimer: Perks and Benefit eligibility is based on Part-Time or Full-Time Employment status. Eligibility and Employer Sponsored Plans can be found within each of the links offered.
Essential Job Duties
We are seeking a highly skilled RF Integration Engineer to join our team and contribute to the development of next-generation RF semiconductor devices. The ideal candidate will have expertise in semiconductor process integration, device and amplifier design, electrical characterization, and device simulation.
Key Responsibilities
  • 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.

Other Responsibilities
  • 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.

Qualifications
Minimum Education and Experience
  • Ph.D. in a relevant field with research focus on GaN device processing.

OR
  • 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.

Other Required Qualifications
The successful candidate must demonstrate:
  • 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

Preferred Qualifications
The successful candidate would preferably have a Ph.D. in a relevant engineering field with research focusing on GaN device process development. The successful candidate would preferably have additional experience in:
  • 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)

Required License(s) or Certification(s)
  • N/A

Valid NC Driver's License required
No
Commercial Driver's License required
No
Recruitment Dates and Special Instructions
Job Open Date
10/01/2025
Anticipated Close Date
Open Until Filled
Special Instructions to Applicants
Please include as attachments a resume/CV, cover letter, and contact information for at least 3 professional references.
Position Details
Position Number
00111623
Position Type
EPS/SAAO
Full Time Equivalent (FTE) (1.0 = 40 hours/week)
1.0
Appointment
12 Month Recurring
Mandatory Designation - Adverse Weather
Non Mandatory - Adverse Weather
Mandatory Designation - Emergency Events
Non Mandatory - Emergency Event
Department ID
140110 - CLAWS
EEO
NC State University is an equal opportunity employer. All qualified applicants will receive equal opportunities for employment without regard to age, color, disability, gender identity, genetic information, national origin, race, religion, sex (including pregnancy), sexual orientation, and veteran status. The University encourages all qualified applicants, including protected veterans and individuals with disabilities, to apply. Individuals with disabilities requiring disability-related accommodations in the application and interview process are welcome to contact 919-513-0574 to speak with a representative of the Office of Equal Opportunity.
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

Sourced by ZipRecruiter

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