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Yield Analysis Engineer Jobs in Hamilton, OH (NOW HIRING)

Specialist, Manufacturing Engineer

Cincinnati, OH ยท On-site

$70K - $90K/yr

... yield, and scrap rates. Essential Functions: * Analyze engineering design documents and develop the methods, processes, tools, jigs, fixtures, etc. required to fabricate the specified product.

Specialist, Manufacturing Engineer

Cincinnati, OH ยท On-site

$70K - $90K/yr

... yield, and scrap rates. Essential Functions: * Analyze engineering design documents and develop the methods, processes, tools, jigs, fixtures, etc. required to fabricate the specified product.

The Process Engineer is responsible for on-going production, validations, and continuous ... cost benefit analysis. Apply continuous improvement methods to enhance yield, consistency ...

The Process Engineer is responsible for on-going production, validations, and continuous ... cost benefit analysis. Apply continuous improvement methods to enhance yield, consistency ...

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Yield Analysis Engineer information

See Hamilton, OH salary details

$42.4K

$86.8K

$126.2K

How much do yield analysis engineer jobs pay per year?

As of Aug 21, 2026, the average yearly pay for yield analysis engineer in Hamilton, OH is $86,792.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,200.00 and $109,900.00 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.

What cities near Hamilton, OH are hiring for Yield Analysis Engineer jobs?

Cities near Hamilton, OH with the most Yield Analysis Engineer job openings:

Specialist, Manufacturing Engineer

L3HHCM20

Cincinnati, OH โ€ข On-site

$70K - $90K/yr

Full-time

Re-posted 28 days ago


Job description

Job Title: Specialist, Manufacturing Engineer

Job Code: 40514

Job Location: Cincinnati (Batavia), Ohio

Job Schedule: 4 X 10 (Employees work 10 hour days, 4 days per week)

Job Description:

This position supports strategic programs essential to maintaining U.S. Armed Forces' readiness.ย  The successful Manufacturing Engineer will contribute as a member of a project design team, providing technical expertise and guidance in product design and process development. Activities include development of production processes, procedures, and layouts for mechanical, electronic, and electro-mechanical assemblies. Manufacturing Engineers also support production through operator training, process issue resolution, and monitoring and evaluating existing operations for opportunities to improve efficiency, first pass yield, and scrap rates.

Essential Functions:

  • Analyze engineering design documents and develop the methods, processes, tools, jigs, fixtures, etc. required to fabricate the specified product.
  • Develop and prepare work instructions, control plans, Process Failure Mode Effects Analyses (PFMEAs), and process validation plans.
  • Lead the set-up and validation of new production lines.
  • Analyze manufacturing production problems and implement corrective actions involving designs, materials, and processes.
  • Provide technical expertise and support related to manufacturing.
  • Incorporate new methods and processes to improve existing operations.
  • Review product designs for manufacturability and completeness.
  • Train production personnel in new or existing operations.
  • Interface with equipment vendors and specify equipment through writing Statement of Requirements documents.
  • Prepare capital equipment requests.
  • Design layout of equipment and workspaces.
  • Prepare reports and white papers summarizing information or trends related to manufacturing performance.
  • Conduct capacity analyses, capability studies, and gage repeatability and reproducibility studies.
  • Actively participate in Failure Review Board (FRB) investigations.
  • Prepare tooling cost and engineering labor estimates for proposal responses.
  • Ability to obtain secret level clearance.
  • Less than 10% travel expected.

Qualifications:

  • Bachelor's Degree and minimum 2 years of prior relevant experience OR Graduate Degree and a minimum of 0 years of prior related experience. In lieu of a degree, minimum of 6 years of prior related experience.
  • 4 years or more of work experience related to the fabrication or assembly of close tolerance mechanical, electronic, or electro-mechanical piece parts.
  • 6 years or more with Microsoft Office (Word, Outlook, and Excel).

Preferred Additional Skills:

  • Bachelors degree in Manufacturing or Mechanical Engineering.
  • Experience in the defense or aerospace industry.
  • Experience with pressing, staking, riveting, swaging, potting, electronics soldering, conformal coating, packaging, X-ray inspection, laser welding, robotics, and control systems.
  • Experience with ANSI J-STD-001, AS9100, and ANSI Y14.5.
  • Experience with SolidEdge and Minitab.

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