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Yield Analysis Engineer Jobs in Raleigh, NC (NOW HIRING)

Senior Staff Mechanical Engineer

Raleigh, NC ยท On-site

$92K - $122K/yr

... analyses, and production painting processes for critical components, ensuring high-yield, high ... Lead technical vendor selection and establish engineering standards for contract manufacturing (CM ...

Quality Engineer

Raleigh, NC ยท On-site

$70K - $90K/yr

Quality Engineer Location: Raleigh, NC Amphenol High Speed Products Group is the market leader for ... Ability to analyze operating data, including yield, cycle time, and throughput to identify and ...

Quality Engineer

Raleigh, NC ยท On-site

$70K - $90K/yr

Quality Engineer Location: Raleigh, NC Amphenol High Speed Products Group is the market leader for ... Ability to analyze operating data, including yield, cycle time, and throughput to identify and ...

Quality Engineer

Raleigh, NC ยท On-site

$70K - $90K/yr

Quality Engineer Location: Raleigh, NC Amphenol High Speed Products Group is the market leader for ... Ability to analyze operating data, including yield, cycle time, and throughput to identify and ...

The Role As an RF Engineer, you will play a key role in the design, development and validation of ... Perform RF system analysis, performance optimisation and troubleshooting of complex designs. Carry ...

Analyze equipment performance and recommend improvements for energy efficiency and process ... Continuous improvement mindset focused on yield, efficiency, and equipment life * Holds self and ...

Analyze equipment performance and recommend improvements for energy efficiency and process ... Continuous improvement mindset focused on yield, efficiency, and equipment life * Holds self and ...

Analyze equipment performance and recommend improvements for energy efficiency and process ... Continuous improvement mindset focused on yield, efficiency, and equipment life * Holds self and ...

Operations Engineer 1

Durham, NC ยท On-site

$67K - $90K/yr

Data analysis of underperforming PV assets and derive actionable items to improve overall ... energy yield. Preferred Education and/or Work Experience Requirements: * BS. and/or MS in ...

Manufacturing Engineer

Pittsboro, NC ยท On-site

$50K - $65K/yr

Identifies and implements process improvement activities to increase yield, efficiency or ... Perform Job Safety Analysis of new line installations * Train operators, quality control, and ...

Manufacturing Engineer

Pittsboro, NC ยท On-site

$50K - $65K/yr

Identifies and implements process improvement activities to increase yield, efficiency or ... Perform Job Safety Analysis of new line installations * Train operators, quality control, and ...

Test Engineers work primarily in a Linux Shell, maintaining, diagnosing, and troubleshooting ... Provide findings of testing yield and failure units analysis and release SOP product testing steps ...

Showing results 21-40

Yield Analysis Engineer information

See Raleigh, NC salary details

$44.2K

$90.6K

$131.7K

How much do yield analysis engineer jobs pay per year?

As of Sep 12, 2026, the average yearly pay for yield analysis engineer in Raleigh, NC is $90,578.00, according to ZipRecruiter salary data. Most workers in this role earn between $68,000.00 and $114,700.00 per year, depending on experience, location, and employer.

What is a yield analysis engineer?

Yield Analysis Engineers are professionals who focus on analyzing and improving the manufacturing yield of products, particularly in industries like semiconductor fabrication. They collect and interpret process data to identify patterns, root causes of yield loss, and opportunities for process optimization. Their work helps companies maximize production efficiency and minimize defects, ultimately reducing costs and increasing profitability. Yield Analysis Engineers collaborate with cross-functional teams, including manufacturing, quality assurance, and process engineering, to implement solutions that improve yield.

How does a yield analysis engineer typically collaborate with cross-functional teams to address manufacturing issues?

Yield Analysis Engineers regularly work alongside process engineers, product engineers, and quality assurance teams to identify and resolve manufacturing bottlenecks or defects. They analyze data from production lines, share findings with relevant teams, and participate in root cause analyses to implement corrective actions. This collaborative approach ensures that yield improvements are based on comprehensive insights and that solutions are effectively integrated into existing workflows. Strong communication and teamwork skills are essential in this role, as addressing yield challenges often requires input from multiple technical disciplines.

What are the key skills and qualifications needed to thrive as a yield analysis engineer, and why are they important?

To thrive as a Yield Analysis Engineer, you need a solid background in electrical engineering, semiconductor manufacturing, and data analysis, typically supported by a relevant engineering degree. Experience with statistical analysis tools (like JMP or Minitab), data visualization software, and familiarity with yield management systems are commonly required. Strong problem-solving abilities, attention to detail, and effective communication skills help you identify issues and collaborate with cross-functional teams. These skills are crucial for optimizing manufacturing processes, reducing defects, and ensuring high product yield in a competitive semiconductor industry.

What is the difference between Yield Analysis Engineer vs Process Engineer?

AspectYield Analysis EngineerProcess Engineer
Primary FocusAnalyzing and improving manufacturing yields through data analysisDesigning, implementing, and optimizing manufacturing processes
Skills & CertificationsData analysis, statistical tools, engineering fundamentalsProcess design, engineering principles, certifications like Six Sigma
Work EnvironmentManufacturing plants, R&D labs, data analysis teamsProduction floors, process development departments

While both roles are integral to manufacturing, Yield Analysis Engineers focus on analyzing yield data to identify issues and improve output, whereas Process Engineers develop and optimize manufacturing processes. Both roles require strong analytical skills and engineering knowledge, often working closely to enhance production efficiency.

How much does a yield analysis engineer make?

A yield analysis engineer typically earns between $70,000 and $120,000 annually, depending on experience, location, and industry. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn higher salaries. The role often requires knowledge of semiconductor manufacturing processes and data analysis tools.
Infographic showing various Yield Analysis Engineer job openings in Raleigh, NC as of September 2026, with employment types broken down into 94% Full Time, and 6% Part Time. Highlights an 94% In-person, and 6% Hybrid job distribution, with an average salary of $90,578 per year, or $43.5 per hour.

Senior Staff Mechanical Engineer

Raleigh, NC โ€ข On-site

CUTERA INC
Medical Equipment and Supplies Manufacturingย โ€ขย 201 - 500 employees

$92K - $122K/yr

Full-time

Posted 16 days ago


Job description

Position Summary:

We are seeking an exceptional Senior 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:

  • Owns the overall mechanical Design Verification and Validation strategy. Leads system-level risk management files (ISO 14971) and ensures mechanical architectures comply with global standards like IEC 60601.
  • Establish the technology roadmap for plastics and cosmetic finishing across platform projects. Direct the selection of advanced engineering resins for medical and consumer electronic applications to achieve optimal weight, cost, and reliability targets.
  • Review and approve tooling architecture, mold-flow analyses, and production painting processes for critical components, ensuring high-yield, high-cosmetic-quality outcomes.
  • Architect major structural platforms that integrate high-precision stamped or fabricated metal chassis with structural plastic enclosures. Define the master tolerance strategy and structural layout to survive global drop, thermal, and transit standards.
  • Lead technical vendor selection and establish engineering standards for contract manufacturing (CM) partners. Coordinate closely with CMs to resolve complex tool transfers, production scaling bottlenecks, and structural yield challenges.
  • Define the overall mechanical testing and validation framework for entire platforms, outlining the design of complex test fixtures, qualification procedures, and regression testing scenarios. Lead cross-functional root-cause investigations for highly complex, systemic field or production mechanical failures.
  • Utilize extensive CAD design expertise in SolidWorks to architect complex, multi-subsystem mechanical layouts and define the top-down assembly structure for entire product platforms.
  • Enforce SolidWorks design best practices, master modeling/skeleton techniques, and advanced GD&T application standards across the R&D engineering team.
  • Lead the mechanical engineering compliance strategy within the Quality Management System (QMS) framework, defining policies that ensure all structural and opto-mechanical designs meet FDA Quality System Regulations and global medical safety standards (including IEC 60601).
  • Own the system-level Risk Management strategy (ISO 14971) and govern the Design Verification and Validation (V&V) architecture for new product lines, guiding cross-functional teams to ensure robust documentation from concept through successful product launch.
  • Highly self-directed. Operates as the technical lead for entire platforms. Handles ambiguous, high-risk technical problems with no pre-existing template or roadmap.
  • Actively develops the engineering teamโ€™s technical capabilities, identifies skill gaps, and implements training. Influences the department's engineering culture and standard design practices.
  • Expected to have strong communication skills and the ability to articulate highly complex technical architectures, development timelines, and project risks directly to executive leadership.
  • Initiates and chairs major cross-functional design reviews. Coordinates with Systems, Mechanical, and Embedded Software engineers to resolve multi-disciplinary integration issues.
  • Other duties as needed or required.

Minimum Requirements & Qualifications:

  • Bachelorโ€™s degree in Mechanical Engineering; graduate degree preferred.
  • 10+ years of relevant mechanical design experience, preferably in medical devices, lasers, or capital equipment.
  • Extensive 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.
  • Strong communication and collaboration skills, with the ability to make sound design recommendations based on cross-functional input.

Preferred Qualifications:

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