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Chip Design Jobs in Minnesota (NOW HIRING)

Key Responsibilities 1. Semiconductor IP Protection Implement least privilege access to safeguard sensitive chip design files, EDA tools, and proprietary engineering data. Architect IAM for ...

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Chip Design information

See Minnesota salary details

$41.1K

$112.1K

$197.4K

How much do chip design jobs pay per year?

As of Sep 1, 2026, the average yearly pay for chip design in Minnesota is $112,134.00, according to ZipRecruiter salary data. Most workers in this role earn between $81,800.00 and $141,000.00 per year, depending on experience, location, and employer.

What is a chip design?

A Chip Design job involves creating and developing semiconductor circuits used in electronic devices. Engineers in this field work on designing, verifying, and testing integrated circuits (ICs) to ensure performance, power efficiency, and reliability. They use specialized software tools for designing hardware and optimizing functionality. Chip designers collaborate with cross-functional teams to bring new processors, memory chips, or custom ASICs from concept to production. This role is crucial in industries like computing, telecommunications, and consumer electronics.

What are the key skills and qualifications needed to thrive in chip design?

To excel in Chip Design, a strong background in electrical engineering, digital and analog circuit design, and semiconductor physics is typically required, often supported by a relevant engineering degree. Familiarity with electronic design automation (EDA) tools like Cadence, Synopsys, and Mentor Graphics, as well as proficiency in hardware description languages (HDLs) such as Verilog or VHDL, are standard prerequisites. Outstanding problem-solving skills, attention to detail, and the ability to collaborate closely with cross-functional teams set candidates apart. These competencies are essential for designing efficient, reliable integrated circuits and meeting the evolving needs of the semiconductor industry.

What are the typical career progression opportunities in chip design?

Chip Design offers a clear pathway for career growth, starting from entry-level positions such as Design Engineer or Verification Engineer and progressing to roles like Lead Designer, Project Manager, or Technical Architect. As you gain experience and demonstrate expertise, opportunities often open up in specialized areas such as physical design, timing analysis, or system architecture. Many professionals also advance to leadership or managerial positions, overseeing teams or entire design projects. Additionally, working in such a fast-evolving field keeps you engaged with the latest technologies and can provide options to transition into adjacent areas like product management or application engineering.

How much do chip designers make?

Chip designers, also known as integrated circuit designers, typically earn between $80,000 and $150,000 annually, depending on experience, education, and location. Senior roles or those with specialized skills in hardware description languages and CAD tools can earn higher salaries, often exceeding $200,000.

How to get a job in chip design?

To get a job in chip design, candidates typically need a bachelor's degree in electrical engineering, computer engineering, or a related field, along with strong skills in digital and analog circuit design, hardware description languages like VHDL or Verilog, and familiarity with CAD tools. Gaining experience through internships, projects, or research can improve employability, and advanced roles may require a master's or Ph.D. in a relevant area. Certifications in specific design tools or methodologies can also enhance prospects.

Is chip design a good career?

Chip design is a specialized field within electrical engineering focused on developing integrated circuits and microprocessors. It offers high demand, competitive salaries, and opportunities for innovation, often requiring skills in hardware description languages and familiarity with CAD tools. Career growth depends on technical expertise and industry experience.

What are the most commonly searched types of Chip Design jobs in Minnesota?

The most popular types of Chip Design jobs in Minnesota are:

What cities in Minnesota are hiring for Chip Design jobs?

Cities in Minnesota with the most Chip Design job openings:

Infographic showing various Chip Design job openings in Minnesota as of August 2026, with employment types broken down into 88% Full Time, 6% Part Time, and 6% Contract. Highlights an 81% Physical, 5% Hybrid, and 14% Remote job distribution, with an average salary of $112,134 per year, or $53.9 per hour.

ASIC Chip Lead / Design Engineer

Technical Link

Brooklyn Park, MN โ€ข On-site

Other

Posted 5 days ago


Job description

ASIC Chip Lead / Design EngineerJob Description

As an ASIC Chip Lead and Design Engineer, you will play a pivotal role in the development of custom-designed Application-Specific Integrated Circuits (ASICs). Your expertise will span the entire chip design lifecycle, from conceptualization through implementation.

You will collaborate with cross-functional teams to ensure successful chip development while meeting performance, power, and area targets. The ideal candidate is a highly capable, hands-on engineer currently designing complex digital blocks with strong knowledge and experience across the complete ASIC/SoC design flow.

Additional experience with radiation-hardened design, analog/mixed-signal design and EDA, and standard-cell library development is highly desirable.

Additional responsibilities include evaluating customer requirements, estimating effort and expenses for potential new business, and identifying opportunities to improve internal design methodologies.

Essential Duties & ResponsibilitiesChip Architecture & Development
  • Lead the architectural design of ASICs based on high-level requirements and block diagrams.

  • Collaborate with system architects to define chip functionality, interfaces, and performance targets.

  • Develop detailed specifications for chip components.

RTL Design & Synthesis
  • Use Synopsys Design Compiler to create and synthesize RTL designs.

  • Optimize RTL code for area, power, and performance.

  • Implement and verify complex digital blocks.

Constraint Development
  • Develop timing constraints for the entire chip.

  • Work closely with physical design teams to ensure successful place-and-route.

RISC Processor Conformance
  • Constrain and verify RISC processors within the chip.

  • Optimize processor performance and power efficiency.

Physical Design Collaboration
  • Collaborate with physical design teams on floorplanning, placement, and routing.

  • Address design closure issues throughout the development process.

Verification Support
  • Work with verification engineers to ensure functional correctness.

  • Assist with testbench development and verification of chip functionality.

Development Environment
  • Utilize modern revision-control tools and best practices within a collaborative, multi-site design environment.

  • Work proficiently within UNIX/Linux environments, including shell scripting and utilities such as sed, awk, and grep.

  • Utilize high-level programming and scripting languages such as C/C++, Perl, Python, and Tcl.

  • Work effectively with standard Windows applications, including Word, Excel, PowerPoint, Visio, and Project.

Qualifications
  • Bachelor''s or Master''s degree in Electrical Engineering, Computer Science, or a related field.

  • 10+ years of direct industry experience in ASIC and/or SoC design.

  • Strong background in RTL-based digital IC design using Verilog/SystemVerilog.

  • Proficiency with Synopsys Design Compiler and other industry-standard EDA tools.

  • Strong understanding of digital design principles and the complete ASIC/SoC design flow.

  • Familiarity with RISC architectures, such as ARM or MIPS.

  • Proven track record of first-pass silicon success.

  • Excellent problem-solving skills and strong attention to detail.

  • Self-starter with the ability to assume technical leadership responsibilities.

  • Ability to work effectively within diverse, cross-functional engineering teams.

  • Willingness and ability to mentor less experienced engineers.

  • Experience with industry-standard development tools and methodologies.

Preferred Experience
  • Radiation-hardened (rad-hard) ASIC design.

  • Analog/mixed-signal design and EDA flows.

  • Standard-cell library development.