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Dft Engineer Jobs in Raleigh, NC (NOW HIRING)

You will work with a variety of flows fundamental to modern silicon engineering: modeling and ... DFT Proven knowledge of SystemVerilog assertions, checkers, and other design verification ...

You will work with a variety of flows fundamental to modern silicon engineering: modeling and ... DFT Proven knowledge of SystemVerilog assertions, checkers, and other design verification ...

Sr. Hardware Engineer

Raleigh, NC

$107K - $143K/yr

Design for manufacturability (DFM) and design for test (DFT) experience, including working with ... The engineering organization offers a stable, long‑tenured team, a strong product roadmap, and ...

Sr. Hardware Engineer

Raleigh, NC

$107K - $143K/yr

Design for manufacturability (DFM) and design for test (DFT) experience, including working with ... The engineering organization offers a stable, long‑tenured team, a strong product roadmap, and ...

... DFT, Emulation, PD Handoff and IP integration. Responsibilities * In the Senior CAD Software role ... As senior engineer in a central CAD Software team that develops a common tool stack to internal SoC ...

Showing results 21-40

Dft Engineer information

See Raleigh, NC salary details

$71K

$125.9K

$242K

How much do dft engineer jobs pay per year?

As of Aug 14, 2026, the average yearly pay for dft engineer in Raleigh, NC is $125,895.00, according to ZipRecruiter salary data. Most workers in this role earn between $100,100.00 and $130,700.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a DFT engineer?

To thrive as a DFT (Design for Test) Engineer, you need a solid background in electrical engineering, digital design, and ASIC/FPGA development, often supported by a relevant degree. Familiarity with test methodologies, scan insertion tools (such as Synopsys DFT Compiler or Mentor Tessent), and scripting languages like Perl or Python is typically required. Strong problem-solving skills, attention to detail, and effective communication help DFT Engineers collaborate with design and verification teams to resolve complex testability challenges. These competencies are essential to ensure high-quality, testable silicon designs that minimize defects and streamline manufacturing processes.

What is the difference between Dft Engineer vs Test Engineer?

AspectDft EngineerTest Engineer
Required CredentialsBachelor's in Electronics, Electrical, or related fields; certifications in DFT techniquesBachelor's in Electronics, Electrical, Computer Science; certifications in testing methodologies
Work EnvironmentDesign and implementation of DFT strategies during IC developmentTesting, validation, and debugging of electronic products and systems
Employer & Industry UsageSemiconductor companies, IC design firmsConsumer electronics, automotive, telecommunications industries

While both Dft Engineers and Test Engineers work in electronics and semiconductor industries, Dft Engineers focus on designing testability features during chip development, whereas Test Engineers execute testing and validation of finished products. Their roles complement each other, but their daily tasks and expertise areas differ significantly.

Is DFT engineering a good career?

DFT (Design for Test) engineering is a specialized field within semiconductor and integrated circuit design, focusing on ensuring chip testability and manufacturability. It offers steady demand due to the need for quality control in electronics manufacturing and typically requires knowledge of digital design, testing methodologies, and tools like EDA software. Career growth depends on industry trends, technical skills, and certifications, making it a viable option for those interested in hardware design and testing.

How much do DFT engineers make?

Design for Test (DFT) engineers typically earn between $80,000 and $130,000 annually, depending on experience, location, and industry. Senior DFT engineers with specialized skills in automation and verification can earn higher salaries, especially in high-demand tech regions.

What does a Dft engineer do?

A DFT (Design for Test) engineer designs and implements testing strategies to ensure integrated circuits and electronic systems are defect-free and function correctly. They develop test plans, create test hardware and software, and work closely with design teams to improve testability and reduce manufacturing defects. Proficiency in scripting, testing tools, and industry standards is essential for this role.

What are some common challenges faced by DFT engineers during the silicon validation phase, and how can these be addressed?

DFT Engineers often encounter challenges during the silicon validation phase, such as discrepancies between simulation results and actual silicon behavior, limited access to internal nodes, and diagnosing scan chain failures. These issues can be addressed by thorough pre-silicon verification, incorporating robust test points, and leveraging advanced diagnostic tools and methodologies. Effective collaboration with design and validation teams is also crucial to quickly resolve issues and implement necessary design changes, ensuring high test coverage and product reliability.

What is a DFT engineer?

DFT Engineers, or Design for Test Engineers, are professionals who specialize in designing and implementing test structures and methodologies within integrated circuits (ICs) to ensure their testability and reliability during manufacturing. Their work enables efficient detection and diagnosis of faults in chips, helping to improve yield and reduce production costs. DFT Engineers collaborate closely with design, verification, and manufacturing teams to integrate features such as scan chains, built-in self-test (BIST), and boundary scan into chip designs. Their expertise is crucial for modern semiconductor development, especially as chips become increasingly complex.

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

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

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

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

Infographic showing various Dft Engineer job openings in Raleigh, NC as of August 2026, with employment types broken down into 87% Full Time, 7% Part Time, and 6% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $125,895 per year, or $60.5 per hour.

Senior Electrical Engineer

NIRSense Inc

Morrisville, NC • On-site

$100K - $131K/yr

Full-time

Re-posted 5 days ago


Job description

Minimum Qualifications:

  • 5+ years of experience in electrical engineering, with significant focus on medical devices or biomedical sensing systems.
  • Demonstrated ability to independently lead and deliver complex medical device hardware development projects from concept through design verification and validation.
  • Deep hands-on expertise with design and integration of electrical components of miniaturized medical device systems such as PCBs, PCB components, batteries, and light-emitting and detecting systems.
  • Expertise in mixed-signal circuit design for physiological sensing, including signal generators, amplifiers, filters, ADCs, and low-noise data acquisition systems.
  • Experience designing low-power architectures and battery management systems for body-worn medical devices.
  • Experience with EMC/EMI design practices and electrical safety standards (IEC 60601-1, IEC 60601-1-2).
  • Experience leading formal design reviews and presenting technical analyses to cross-functional stakeholders in a design-controlled environment.
  • Proficiency in PCB design tools (Altium Designer preferred), including rigid, flex, and rigid-flex designs for space-constrained wearable form factors.
  • Strong technical writing skills, with experience authoring design documentation for regulated environments.
  • Experience managing PCB fabricator and contract manufacturer relationships, including vendor qualification and supply chain risk mitigation.
  • B.S. in Electrical or Biomedical Engineering or a related field.

Preferred Qualifications:

  • Knowledge of biosensing and electrical stimulation technologies and proficiency in hardware implementations of these technologies.
  • Experience with optoelectronic circuit design, including LED drivers, photodiode front-ends, and transimpedance amplifiers (TIAs).
  • Experience with mechanical-electrical integration for miniaturized wearable enclosures and collaboration with mechanical engineering teams.
  • Familiarity with C/C++ and embedded systems integration with BLE-enabled microcontrollers (e.g., Nordic nRF series) for wireless physiological data streaming.
  • Experience directing and reviewing work from external PCB layout and design contractors.
  • Experience designing medical wearable hardware for manufacturability (DFM) and testability (DFT), including development of test fixtures and validation systems.
  • Experience with design verification and validation (V&V) testing in a regulated medical device environment.
  • Experience supporting FDA regulatory submissions (e.g., 510(k), de novo) and familiarity with design controls under 21 CFR Part 820 or ISO 13485.
  • Experience with hardware FMEA and risk management per ISO 14971.

Job Responsibilities:

  • Design low-power architectures, battery charging circuits, and power budgets for portable and wearable device platforms.
  • Design for safety and electromagnetic compatibility (EMC/EMI), conduct pre-compliance testing, and support formal EMC and electrical safety testing per IEC 60601-1 and IEC 60601-1-2.
  • Drive and lead design reviews with multi-disciplinary stakeholders, establishing rigorous engineering practices and collaborating closely with firmware, mechanical, and software engineers to ensure seamless system integration.
  • Independently manage relationships with PCB fabricators and assemblers; oversee BOM cost, sourcing risk, and component lifecycle to supply finished, high-quality electronics.
  • Lead test fixture design and manufacturing test strategy, from prototype PCB evaluation through design transfer and production yield optimization.
  • Author and review technical reports, maintain schematic libraries and design history files (DHF), and contribute hardware FMEA and risk management files (ISO 14971) to support regulatory submissions (510(k), de novo).
  • Report to the Electrical Engineering R&D Manager.

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About NIRSense

Sourced by ZipRecruiter

Industry

Medical equipment and supplies manufacturing

Company size

11 - 50 Employees

Headquarters location

Richmond, VA, US

Year founded

2018