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Design Verification Jobs in Raleigh, NC (NOW HIRING)

Design and build custom test fixtures, write detailed verification test procedures, and execute testing scenarios to validate part and assembly performance. Troubleshoot mechanical failures or ...

Design and build custom test fixtures, write detailed verification test procedures, and execute testing scenarios to validate part and assembly performance. Troubleshoot mechanical failures or ...

Design and build custom test fixtures, write detailed verification test procedures, and execute testing scenarios to validate part and assembly performance. Troubleshoot mechanical failures or ...

New team members in Raleigh will join hands with other RTL design and verification engineers spread across UK, US, France and India & Canada to build best in class SoC's! Arm is building a team to ...

New team members in Raleigh will join hands with other RTL design and verification engineers spread across UK, US, France and India & Canada to build best in class SoC's! Arm is building a team to ...

Lawful permanent residents, refugees, and asylees may verify status using other documents, where applicable. Additional or Preferred Qualifications * 9+ years of experience in RTL design with a ...

Sr Mechanical Engineer

Morrisville, NC · On-site

$97K - $129K/yr

Support design verification and validation activities and ensure mechanical designs meet applicable product requirements. * Develop and maintain mechanical design documentation, specifications ...

Sr Mechanical Engineer

Morrisville, NC · On-site

$97K - $129K/yr

Support design verification and validation activities and ensure mechanical designs meet applicable product requirements. * Develop and maintain mechanical design documentation, specifications ...

Sr Mechanical Engineer

Morrisville, NC · On-site

$97K - $129K/yr

Support design verification and validation activities and ensure mechanical designs meet applicable product requirements. * Develop and maintain mechanical design documentation, specifications ...

Sr Mechanical Engineer

Morrisville, NC · On-site

$97K - $129K/yr

Support design verification and validation activities and ensure mechanical designs meet applicable product requirements. * Develop and maintain mechanical design documentation, specifications ...

As a senior member of our verification team, you'll understand the design & implementation with focus on Memory Management unit, define the verification scope, develop the verification infrastructure ...

NVIDIA is seeking an outstanding Senior ASIC Verification Engineer to verify the design and implementation of the world's leading SoC's and GPU's. This position offers the opportunity to have a real ...

NVIDIA is seeking an outstanding Senior ASIC Verification Engineer to verify the design and implementation of the world's leading SoC's and GPU's. This position offers the opportunity to have a real ...

As a senior member of our verification team, you'll understand the design & implementation with focus on Memory Management unit, define the verification scope, develop the verification infrastructure ...

Showing results 41-60

Design Verification information

See Raleigh, NC salary details

$102.5K

$145K

$162.3K

How much do design verification jobs pay per year?

As of Sep 11, 2026, the average yearly pay for design verification in Raleigh, NC is $144,977.00, according to ZipRecruiter salary data. Most workers in this role earn between $132,200.00 and $161,400.00 per year, depending on experience, location, and employer.

What is a design verification engineer?

Design verification engineers are professionals who ensure that hardware or software designs meet their intended specifications and function correctly before production or release. They develop and execute tests, write verification plans, create simulation environments, and identify design flaws or errors. Their work is critical in industries like semiconductor, electronics, and software development to prevent costly mistakes and ensure high-quality products. Design verification engineers often work closely with design and validation teams throughout the product development lifecycle.

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

To thrive as a Design Verification Engineer, you need a solid background in digital design, verification methodologies, and programming languages like SystemVerilog, typically supported by a degree in electrical engineering or a related field. Familiarity with verification tools such as UVM, simulation environments, and EDA software is essential, along with knowledge of scripting languages like Python or Perl. Strong analytical thinking, attention to detail, and effective teamwork are standout soft skills in this role. These skills ensure accurate validation of complex hardware designs, reducing errors and supporting reliable product development cycles.

What are some common challenges faced by design verification engineers, and how can they be addressed?

Design Verification engineers often encounter challenges such as managing complex testbenches, debugging intricate corner cases, and ensuring coverage completeness within tight project timelines. To address these, it’s important to have strong scripting skills, collaborate closely with design and validation teams, and make effective use of verification methodologies like UVM. Regular communication and review cycles also help catch issues early and improve overall verification quality.

What is the difference between Design Verification vs Design Validation?

AspectDesign VerificationDesign Validation
PurposeEnsures the design meets specified requirements through testing and analysisConfirms the final product fulfills user needs and intended use
TimingDuring the development phaseAfter the product is developed and before release
MethodsInspections, reviews, testing, analysisUser testing, field trials, real-world testing
FocusDesign correctness and complianceProduct effectiveness and user satisfaction

While Design Verification checks if the design meets specified requirements during development, Design Validation ensures the final product performs effectively in real-world conditions. Both are essential steps in the product development process to deliver a reliable and user-centered product.

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

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

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

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

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

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

Infographic showing various Design Verification job openings in Raleigh, NC as of September 2026, with employment types broken down into 42% Internship, and 58% Full Time. Highlights an 100% In-person job distribution, with an average salary of $144,977 per year, or $69.7 per hour.

Staff Mechanical Engineer

Raleigh, NC • On-site

Cutera, Inc.
Medical Equipment and Supplies Manufacturing • 201 - 500 employees

Full-time

Posted 15 days ago


Job description

Position Summary:

We are seeking an exceptional Staff Mechanical Engineer to join our R&D Mechanical Engineering team and support development of novel medical devices and applications. Projects span a broad range of technologies including complex laser and optical delivery systems, high-power ultrasound, and radio-frequency devices. Our diverse technology portfolio, culture of innovation, and vertical integration provide a unique opportunity for an engineer with broad technical interests and expertise.

This position is responsible for the design and development of precision opto-mechanical assemblies, structural frames, thermal management systems, and industrial designs for advanced energy systems. The engineer will collaborate closely with Electrical, Laser, Clinical, Manufacturing, Quality, and Regulatory teams and contribute to product development from concept through product launch.

Duties & Responsibilities:

  • Independently model, design, and detail high-precision mechanical parts, complex sub-assemblies, and dynamic opto-mechanical systems, ensuring robust application of GD&T principles.
  • Manage and structure large SolidWorks assemblies and multi-level bills of materials (BOMs) from initial concept through pilot manufacturing.
  • Execute product development activities with a strong understanding of working within a Quality Management System (QMS) framework, ensuring all design records, engineering changes, and technical documentation strictly comply with FDA Quality System Regulations.
  • Actively participate in and support Design Controls activities, translating requirements into verifiable designs, completing component-level risk assessments (ISO 14971), and drafting protocols for design verification testing.
  • Design and optimize complex injection-molded components, ranging from small, high-precision internal parts to large aesthetic exterior housings, utilizing a strong understanding of modern medical-grade resins to ensure biocompatibility, chemical resistance, and flame retardancy.
  • Specify cosmetic requirements including production painting, texturing, and shielding coatings, ensuring compatibility with medical disinfectants and assembly environments.
  • Develop robust structural assemblies consisting of stamped or fabricated metal frames integrated with mounted custom plastic covers, using GD&T to manage tolerance stack-ups and ensure seamless fit, finish, and aesthetic alignment.
  • Act as the primary technical contact with tooling vendors and contract manufacturing partners.
  • Drive Design for Manufacturability (DFM) feedback loops to optimize tool designs, mold flow analyses, and assembly workflows.
  • Design and build custom test fixtures, write detailed verification test procedures, and execute testing scenarios to validate part and assembly performance. Troubleshoot mechanical failures or deviations during developmental and pilot production phases.
  • Demonstrates a high degree of autonomy. Independently manages and owns major subsystems from initial concept through design verification testing.
  • Formally mentors associate engineers. Actively conducts peer code/design reviews of CAD models and drawings to ensure GD&T principles are applied correctly.
  • Routinely presents subsystem design progress and technical challenges to R&D management; translates complex mechanical concepts into clear, actionable project status updates.
  • Leads technical design reviews for their assigned subsystems. Collaborates closely with Systems, Electrical, and Embedded Software engineers to align on electrical-mechanical interfaces and actuator requirements.
  • Translates high-level system requirements into specific mechanical requirements. Evaluates and manages risk files (FMEA) for complete subsystems and assists in defining sub-assembly testing protocols for design verification.
  • Other duties as needed or required.

Minimum Requirements & Qualifications: 

  • Bachelor’s degree in Mechanical Engineering; graduate degree preferred.
  • 4-9+ years of relevant mechanical design experience, preferably in medical devices, lasers, or capital equipment.
  • 5+ years of CAD design experience; SolidWorks preferred.
  • Extensive knowledge of manufacturing technologies, including injection molding, sheet metal fabrication, and high-precision machining.
  • Experience designing and assembling miniature optical components using solder, adhesives, and advanced fastening techniques for laser applications.
  • Experience collaborating with clinical personnel to develop medical devices that meet ergonomic and usability requirements.
  • Experience designing, assembling, and testing rapid-turn prototypes using rapid prototyping, machining, and off-the-shelf components.
  • Strong understanding of GD&T principles and their application to precision mechanical designs.
  • Experience using FEA simulation tools and correlating simulation results with empirical test data.
  • Experience designing thermal management systems, including air- and water-cooled heat exchangers and thermoelectric coolers.
  • Experience designing actuation assemblies, such as laser beam scanning systems and translation and rotation stages.
  • Experience designing opto-mechanical assemblies, including strain-free optical mounting techniques using adhesives.
  • Familiarity with FDA Quality System Regulations, Design Controls, IEC 60601, and/or ISO 14971 Risk Management requirements.
  • Working knowledge of electronics, optics, and numerical data analysis tools such as Excel, MATLAB, or equivalent.

Preferred Qualifications:

  • Experience with thermal FEA tools.
  • Experience with data acquisition systems such as LabVIEW.
  • Experience developing laser or energy-based medical devices.