1

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

Manufacturing Engineer

Hamilton, OH · On-site

$68K - $87K/yr

Improves manufacturing efficiency by analyzing and planning workflow, space requirements, and ... Improve first-pass yield (FPY) * Successfully launch new programs and processes * Deliver accurate ...

Manufacturing Engineer

Hamilton, OH · On-site

$68K - $87K/yr

Improves manufacturing efficiency by analyzing and planning workflow, space requirements, and ... Improve first-pass yield (FPY) * Successfully launch new programs and processes * Deliver accurate ...

... and yield objectives by providing technical expertise concerning operations and equipment ... Strong data analysis skills. * Capable of handling multiple tasks. Cleveland-Cliffs Inc. is the ...

Staff Manufacturing Engineer

Mason, OH · On-site

$68K - $88K/yr

Understands GD&T and how to properly apply it to yield the desired fits between joining parts ... Uses advanced GD&T knowledge, tolerance analysis and manufacturing capability to influence product ...

Staff Manufacturing Engineer

Mason, OH · On-site

$120 - $170/hr

Understands GD&T and how to properly apply it to yield the desired fits between joining parts ... Uses advanced GD&T knowledge, tolerance analysis and manufacturing capability to influence product ...

Staff Manufacturing Engineer

Mason, OH · On-site

$68K - $88K/yr

Understands GD&T and how to properly apply it to yield the desired fits between joining parts ... Uses advanced GD&T knowledge, tolerance analysis and manufacturing capability to influence product ...

Senior Industrial Engineer

Blue Ash, OH · On-site

$39.25 - $53.75/hr

This role will also leverage data analytics and simulation tools to design, validate, and optimize ... Apply Lean, Six Sigma, and statistical methods (SPC) to improve process capability, yield, and ...

Showing results 21-40

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 23, 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:

$68K - $87K/yr

Full-time

Re-posted 15 days ago


Job description

MANUFACTURING PROCESSES DUTIES:

  • Evaluates manufacturing processes by designing and conducting research programs; applying knowledge of product design, fabrication, assembly, tooling, and materials; conferring with equipment vendors; soliciting observations from operators.
  • Develops and implements manufacturing processes by studying product requirements; researching, designing, modifying, and testing manufacturing methods, equipment, and new technologies; conferring with equipment vendors.
  • Improves manufacturing efficiency by analyzing and planning workflow, space requirements, and equipment layout.
  • Assures product and process quality by designing testing methods and control systems; testing finished product and process capabilities; establishing standards; confirming manufacturing processes; yielding in maximum efficiency.
  • Assist in identifying and implementing corrective action for nonconforming parts.

OTHER ENGINEERING DUTIES:

  • Programming of machine and measuring equipment; investigate programming equipment failures; diagnose faulty operations; provide solutions.
  • Proactively analyze, identify, and enact procedures and/or processes to resolve production problems and/or minimize cost.
  • Design of manufacturing equipment fixturing, tooling, gauging design. machine programming, quality engineering process design and implementation.
  • Customer blueprint interpretation and internal print design and creation.
  • Support Sales and Supply Chain with customer requirement on value-added process manufacturing.
  • Support Quality with quality engineering processes.
  • Support customer quoting activity including providing cost estimations, process selection, cycle time development, and identification of risks.
  • Prepares product and process reports by collecting, analyzing, and summarizing information and trends; maintain product and process data through writing computer programs, entering data, etc.
  • Complete design and development projects by training and guiding technicians; provide manufacturing engineering information by communicating solutions/answers to requests/questions.
  • Lead and participate in Research and Development (R&D) programs aimed at expanding current capabilities.
  • Maintain professional and technical knowledge by attending educational workshops, reviewing professional publications, establishing personal networks, and participating in professional societies.
  • Contribute to team effort by accomplishing related tasks as needed.

SUPERVISORY RESPONSIBILITIES

This position has no supervisory responsibilities.

 

QUALIFICATIONS 

To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed below are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

WHAT SUCCESS LOOKS LIKE

  • Reduce cycle times and improve throughput
  • Improve first-pass yield (FPY)
  • Successfully launch new programs and processes
  • Deliver accurate cost estimations vs. actuals.
  • Contribute to a collaborative, high-performance shop environment

 

ATTRIBUTES/SKILLS REQUIRED

  • Strong Manufacturing Engineering skills and capabilities
  • Strong communication (oral and written) can communicate across all levels of the organization.
  • Strong interpersonal skills.
  • Strong organizational and problem-solving skills.
  • Strong analytical and interpretations skills.
  • Ability to perform in an environment fostering teamwork and results.
  • Proficient in the use of Microsoft Office Suite.
  • Proficient in the use of CAD/CAM. Preferably SolidWorks, Mastercam, Fusion 360, and/or Mazatrol.

 

EDUCATION and/or EXPERIENCE

Four-year degree in manufacturing or mechanical engineering (or related) required.

4+ Years of CAD Experience – SolidWorks Preferred

4+ Years of CAM experience – Mastercam Preferred

4+ Years of programming, operating, and process development for 3/4/5 – axis CNC milling machines

Experience with 3/4/5 axis milling machines, surface grinders, turning, wire EDM, CMM experience a plus

Experience holding tight GD&T tolerances (0.0010” or less)

Experience working with difficult materials or high-value components

Experience with developing fixturing strategy for complex parts

LANGUAGE SKILLS

Ability to read and comprehend engineering instructions, short correspondence, and memos.  Ability to write simple correspondence.  Ability to effectively present information in one-on-one and small group situations to customers, clients, and other employees of the organization.

MATHEMATICAL SKILLS

Ability to add, subtract, multiply, and divide in all units of measure, using whole numbers, common fractions, and decimals.  Ability to compute rate, ratio, and percent and to draw and interpret bar graphs.

REASONING ABILITY

Ability to apply common sense understanding to carry out instructions furnished in written, oral, or diagram form.  Ability to deal with problems involving several concrete variables in standardized situations.

PHYSICAL DEMANDS 

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

While performing the duties of this job, the employee is regularly required to use hands to handle or feel; reach with hands and arms; and talk or hear.  The employee frequently is required to sit.  The employee is occasionally required to stand and walk.  The employee must occasionally lift and/or move up to 50 pounds.  Specific vision abilities required by this job include close vision, color vision, and ability to adjust focus.

WORK ENVIRONMENT 

The work environment characteristics described here are representative of those an employee encounters while performing the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

While performing the duties of this job, the employee is occasionally exposed to moving mechanical parts, fumes, or airborne particles, toxic or caustic chemicals, and risk of electrical shock.  The noise level in the work environment is usually moderate.