1

Manufacturing Quality Engineer Jobs in Rochester, NY

Manufacturing Engineer

Rochester, NY · On-site

$70K - $91K/yr

Partner with Engineering, Quality, Operations, and Sales to support estimating, quoting, and ... Support R&D and manufacturing capability expansion by piloting new materials, machining processes ...

Partner with Manufacturing, Engineering, Research and Development, Regulatory Affairs, Supply Chain, and cross-functional teams to ensure quality throughout the product lifecycle. Ensure compliance ...

Quality Engineer

Rochester, NY · On-site

$71K - $91K/yr

Minimum two years experience in quality control. * Experience with operating or programming a Sheffield or Zeiss CMM preferred. * Strong attention to detail * Strong math skills * Good oral and ...

Quality Engineer

Rochester, NY · On-site

$70K - $100K/yr

Quality Engineer Belonging to the: Quality Control Department You will report directly to: Plant Quality Manager Your Employment Status: Exempt Century Mold offers a competitive salary and a ...

About Gleason With more than 2,200 employees and 13 manufacturing facilities worldwide, Gleason ... in Engineering Environment. * Supplier Quality related experience Professional Certificates ...

Supplier Quality Engineer

Newark, NY · On-site

$38.46 - $43.27/hr

Overview We are seeking a dedicated and detail-oriented Supplier Quality Engineer to join our team in Newark, NY. In this role, you will play a crucial part in ensuring that our suppliers meet the ...

Quality Engineer sets the tone for Quality with his/her manufacturing and engineering counterparts. Essential Functions: * Validate processes and products utilizing established quality assurance ...

Sr Spec, Quality Engrg

Rochester, NY · On-site

$84K - $156K/yr

Job Title: Sr Specialist, Quality Engineer Job Code: 40546 Job Location: Rochester, NY Job Schedule ... Collaborate with engineering, suppliers, and manufacturing for smooth transitions from concept to ...

Associate, Quality Engineer Job Code: 40221 Job Location: Rochester, NY Job Schedule: 9/80 ... Manufacturing Engineering, Quality Management, Quality Sciences or related field or have completed ...

... Engineering on new and existing products to ensure outgoing product quality through end-to-end ... Potential for role to assist manufacturing operations off-hours as needed • Effective verbal and ...

... Engineering on new and existing products to ensure outgoing product quality through end-to-end ... Potential for role to assist manufacturing operations off-hours as needed Effective verbal and ...

Showing results 41-60

Manufacturing Quality Engineer information

See Rochester, NY salary details

$45.4K

$86.2K

$133.2K

How much do manufacturing quality engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for manufacturing quality engineer in Rochester, NY is $86,200.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,500.00 and $94,700.00 per year, depending on experience, location, and employer.

What is the difference between Manufacturing Quality Engineer vs Quality Control Inspector?

AspectManufacturing Quality EngineerQuality Control Inspector
ResponsibilitiesDesigns quality systems, analyzes processes, implements improvementsPerforms inspections, tests products for defects
Required SkillsAnalytical skills, problem-solving, knowledge of quality standardsAttention to detail, inspection techniques, basic technical knowledge
Work EnvironmentCollaborative, process-focused, involved in manufacturing planningInspection stations, production lines, quality labs
CertificationsASQ CQE, Six Sigma Green Belt often preferredNone typically required, sometimes certified inspector credentials

The Manufacturing Quality Engineer focuses on developing and improving quality systems and processes within manufacturing, while the Quality Control Inspector primarily conducts product inspections to ensure quality standards are met. Both roles are essential in maintaining product quality but differ in scope and responsibilities.

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

To thrive as a Manufacturing Quality Engineer, you need a solid background in engineering principles, quality control processes, and a relevant degree such as mechanical or industrial engineering. Familiarity with quality management systems (like ISO 9001), statistical process control (SPC), and tools such as Six Sigma or root cause analysis software is typically required. Strong attention to detail, analytical thinking, and effective communication are crucial soft skills for identifying issues and collaborating with cross-functional teams. These abilities are essential to ensure product consistency, minimize defects, and support continuous process improvement in manufacturing environments.

How does a manufacturing quality engineer typically interact with production and engineering teams to address quality issues?

Manufacturing Quality Engineers work closely with both production and engineering teams to identify, investigate, and resolve quality issues as they arise. They frequently participate in cross-functional meetings, conduct root cause analyses, and coordinate corrective actions to ensure product standards are met. Effective communication and collaboration are key, as they must translate technical quality requirements into actionable steps for production staff and provide feedback to design engineers for continuous improvement. This collaborative approach helps maintain high product quality and supports efficient manufacturing processes.

What does a manufacturing quality engineer do?

A Manufacturing Quality Engineer ensures that products meet required quality standards and are produced efficiently and safely. They develop and implement quality control processes, conduct inspections and tests, and analyze production data to identify areas for improvement. Their role often includes investigating defects, working closely with production teams, and ensuring compliance with industry regulations and customer requirements. By maintaining high-quality standards, Manufacturing Quality Engineers help minimize waste, reduce costs, and enhance customer satisfaction.
What are popular job titles related to Manufacturing Quality Engineer jobs in Rochester, NY? For Manufacturing Quality Engineer jobs in Rochester, NY, the most frequently searched job titles are:
What job categories do people searching Manufacturing Quality Engineer jobs in Rochester, NY look for? The top searched job categories for Manufacturing Quality Engineer jobs in Rochester, NY are:
What cities near Rochester, NY are hiring for Manufacturing Quality Engineer jobs? Cities near Rochester, NY with the most Manufacturing Quality Engineer job openings:
Infographic showing various Manufacturing Quality Engineer job openings in Rochester, NY as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $86,200 per year, or $41.4 per hour.

Manufacturing Engineer

Tokai Carbon GS

Rochester, NY • On-site

$70K - $91K/yr

Full-time

Posted 28 days ago


Job description

Description:

Basic Summary of Position

The Manufacturing Engineer is responsible for developing, costing, proving out, standardizing, and continuously improving CNC machining, computer-aided design (CAD), and inspection processes to support safe, efficient, and repeatable production. This role encompasses responsibility for the full scope of manufacturing engineering activities—from estimating and complex machine setup through CAD modeling, inspection validation, and full production release—providing hands-on technical leadership on the shop floor.

While the position requires working knowledge and participation across all defined responsibilities, it is recognized that individual engineers may possess deeper expertise in certain functional areas. The engineer is expected to leverage their strengths while collaborating with cross-functional teams and other engineers to ensure complete coverage, consistency, and successful execution of manufacturing, design-for-manufacturability, and metrology practices across the organization.

Key Responsibilities

CNC Programming & Process Development

  • Develop, maintain, and standardize CNC/CAM programs, post processors, templates, toolpaths, and probing routines.
  • Define machining strategies, operations, and process flows to ensure manufacturability, quality, and efficiency.
  • Build and control global tooling libraries, preferred tool lists, and standard machine setups across equipment and plants.

Job Setup, Prove-Out & Production Readiness

  • Create complete job setup packages, including setup sheets, tool lists, fixture designs, operator overviews, and in-process inspection plans.
  • Define work holding methods, probing routines, complex machine setups, and safe job start-up procedures.
  • Prove out complex and first-time machine setups, including multi-operation, multi-axis, tight-tolerance, and high-risk jobs.
  • Lead initial production runs and ensure processes meet quality, safety, and cycle time targets.
  • Train machinists on setup execution, process intent, critical features, and risk mitigation.

Estimating & Costing

  • Develop accurate setup times, machining cycle times, labor requirements, inspection time, andtooling costs to support quoting and production planning.
  • Review engineering drawings and specifications to assess manufacturability, inspection complexity, and cost drivers.
  • Partner with Engineering, Quality, Operations, and Sales to support estimating, quoting, and capacity planning.
  • Identify and implement cost-reduction opportunities through improved methods, tooling, fixturing, and inspection strategies.

Inspection, CMM & Laser Tracking

  • Program, set up, and validate CMM inspection routines for first-article inspection, in-process checks, and final inspection.
  • Program and operate laser tracking systems for large-part inspection, alignment, machine verification, and fixture validation.
  • Design and support inspection fixturing and datum schemes to ensure repeatable, accurate measurements.
  • Partner with Quality Engineering to define critical-to-quality features, measurement methods, and acceptance criteria.
  • Support gauge R&R, inspection process validation, and continuous improvement of metrology methods.

Shop Floor Support & Problem Resolution

  • Serve as a technical escalation point to resolve machining, setup, tooling, inspection, and quality issues on the shop floor.
  • Conduct root cause analysis for scrap, rework, downtime, and measurement discrepancies; implement corrective and preventive actions.
  • Run parts and operate CNC and conventional equipment when necessary to support prove-outs, troubleshooting, development work, or production recovery.
  • Provide hands-on leadership to ensure stable, safe, and efficient production.

Continuous Improvement & Efficiency

  • Analyze production bottlenecks, setup time, spindle utilization, inspection throughput, and inefficiencies; implement improvements.
  • Develop tooling, fixturing, probing, and inspection solutions to increase spindle uptime and reduce overall cycle time.
  • Lead or support Lean, Six Sigma, and continuous improvement initiatives across the organization.

Documentation & Standardization

  • Create and maintain technical documentation, work instructions, templates, inspection plans, and standardized manufacturing methods.
  • Ensure all machining and inspection processes are clearly documented and consistently executed.

Innovation & Capability Expansion

  • Support R&D and manufacturing capability expansion by piloting new materials, machining processes, equipment, inspection technologies, software, and automation.
  • Validate and standardize successful pilots for integration into normal production.

Vendor & Cross-Functional Collaboration

  • Work with outside vendors to design, build, and procure tooling, fixturing, inspection equipment, and set up materials.
  • Communicate effectively with coworkers, management, customers, and suppliers.
  • Work independently and collaboratively as part of cross-functional teams.

Hands-On Manufacturing & Safety

  • Manufacture and inspect parts using conventional machines, CNC equipment, CMMs, and laser trackers as required.
  • Maintain a safe, clean, and organized work environment in accordance with company standards.
  • Adhere to Tokai Carbon GS standards of operation and consistently demonstrate company core values.

Success Indicators

The Manufacturing Engineer is considered successful in this role when the following outcomes are consistently achieved:

  • Jobs are released with complete, accurate setup and inspection documentation, requiring minimal clarification or rework.
  • Complex machine and inspection setups are safely proven out and achieve quality and cycle-time expectations.
  • Estimating accuracy supports reliable quoting, planning, and on time execution.
  • First-article and initial production runs demonstrate high first-pass yield and stable inspection results.
  • Manufacturing and inspection problems are resolved through effective root cause analysis and sustainable corrective actions.
  • Process improvements result in measurable reductions in scrap, rework, setup time, or cycle time.
  • Standardized methods, templates, and documentation reduce variability and enable repeatable execution.
  • Perform ROI analyses to justify investments and improvements, ensuring initiatives deliver measurable productivity and cost benefits
  • Machinists, quality personnel, and leadership view engineers as a trusted technical resource.
  • Collaboration and knowledge sharing strengthen overall manufacturing capability across the organization.
  • Engineering initiatives deliver clear ROI through productivity gains, cost reduction, and enhanced equipment utilization.
Requirements:

Required Qualifications

  • Bachelor’s degree in manufacturing engineering, Mechanical Engineering, or related field or equivalent hands-on experience.
  • Strong CNC machining and CAM experience with direct shop-floor involvement.
  • Demonstrated experience proving out complex machine and inspection setups.
  • Experience with CMM programming and laser tracker setup/operation.
  • Ability to interpret engineering drawings and GD&T.
  • Working knowledge of Lean Manufacturing and continuous improvement practices.