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Yield Analysis Engineer Jobs in Connecticut (NOW HIRING)

Senior Process Engineer - MRF

Wilton, CT · On-site

$107K - $139K/yr

... analytical capability, and the ability to drive sustainable improvements in a fast-paced production environment. The engineer will directly support output, yield, and quality targets-including ...

Director of Process Engineering

Farmington, CT · On-site

$158.60 - $237.80/hr

The Director of Process Engineering leads the development, optimization, and scale‑up of ... yield, optimize throughput and cycle time, reduce scrap and rework, lead root‑cause analysis, and ...

Senior Process Engineer - Optical Fabrication

Wilton, CT · On-site

$107K - $139K/yr

... analytical capability, and the ability to drive sustainable improvements in a fast-paced production environment. The engineer will directly support output, yield, and quality targets-including ...

Senior Process Engineer - Optical Fabrication

Wilton, CT · On-site

$107K - $139K/yr

... analytical capability, and the ability to drive sustainable improvements in a fast-paced production environment. The engineer will directly support output, yield, and quality targets-including ...

Showing results 21-40

Yield Analysis Engineer information

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, often working with data analysis tools and process optimization methods.

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.

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 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 job categories do people searching Yield Analysis Engineer jobs in Connecticut look for? The top searched job categories for Yield Analysis Engineer jobs in Connecticut are:
What cities in Connecticut are hiring for Yield Analysis Engineer jobs? Cities in Connecticut with the most Yield Analysis Engineer job openings:

Senior Process Engineer - MRF

ASML

Wilton, CT • On-site

$107K - $139K/yr

Full-time

Re-posted 5 days ago


ASML rating

9.3

Company rating: 9.3 out of 10

Based on 41 frontline employees who took The Breakroom Quiz

11th of 487 rated machine equipment manufacturers


Job description

Job Summary
ASML Wilton is seeking a Senior Process Engineer to join the Wilton Factory Optics team with primary ownership of CNC deterministic polishing processes. This role is responsible for process development, stabilization, and daily performance across CNC deterministic polishing operations. The position requires a deep technical understanding of optical fabrication, strong analytical capability, and the ability to drive sustainable improvements in a fast-paced production environment.
The engineer will directly support output, yield, and quality targets-including improving First Pass Yield (FPY) through stable, predictable, and well controlled process behavior.
This role requires a proactive engineering mindset: anticipating issues before they impact production, driving structured 6P readiness, performing thorough RCA, and continuously evaluating new technologies to strengthen long-term process control. This is not a reactive support role; the expectation is ownership, foresight, and continuous improvement.
Job Description
The Senior Process Engineer will operate as a technical leader within Wilton Factory Optics with end-to-end ownership of CNC deterministic polishing processes. Responsibilities include defining and optimizing process parameters, ensuring measurement stability, selecting tooling, and understanding machine behavior. The engineer will manage CNC deterministic polishing performance, environmental control strategies, and measurement output quality while ensuring consistent behavior across tools and shifts.
The CNC deterministic polishing scope includes control of tooling, environment, fixturing, and other factors influencing surface figure and CNC deterministic polishing output. The PE will lead the introduction and qualification of new fixtures, tools, software, and machine upgrades, and will interpret final results from interferometry, profilometry, and surface inspection data and turn them into actionable decisions.
A key responsibility is establishing strong process control: defining process windows, capability targets, and long-term monitoring systems. The PE will use JMP or Minitab to identify variation, drift, and chronic stability risks, ensuring processes are robust, documented, and repeatable using SPC analysis tools. This includes maintaining process specifications, work instructions, and standard work while driving alignment across production and support teams.
The engineer will collaborate daily with production technicians, supervisors, grinding and polishing teams, quality, equipment engineering, and maintenance, balancing immediate production needs with structured long-term improvement projects.
The Senior PE is expected to:
• Build process stability that prevents rework and FPY loss
• Detect and eliminate sources of variation impacting FPY and yield
• Lead structured RCA using statistical and analytical methods
• Ensure corrective actions are verified, embedded, and sustainable
• Own full 6P readiness for process, material, or equipment changes
Beyond daily support, the engineer is expected to proactively seek, evaluate, and integrate:
• CNC deterministic polishing statistical process control methods
• advanced CNC deterministic polishing tools
• next generation CNC deterministic polishing technologies
• equipment or software capabilities that improve stability, predictability, and throughput
Education and Experience
• BS, MS, or PhD in Mechanical, Optical, Materials, or related engineering field
• Minimum 5 years of experience in optical fabrication and CNC deterministic polishing machine
• Experience in tooling mechanics, CNC deterministic polishing interpretation, and process development
• Demonstrated ability in structured problem solving, data analysis, RCA, and process improvement
Skills
• Strong understanding of CNC deterministic polishing and tooling mechanics for accurate measurements
• Proficiency with interferometry, profilometry, and surface inspection tools
• Experience using JMP, Minitab, or equivalent statistical software
• Strong communication, cross functional collaboration, and leadership in a production environment
• Ability to manage multiple priorities under time sensitive conditions
• Demonstrated capability in 6P readiness, structured RCA, and verification driven corrective action
Physical Requirements: Work includes time spent on the fabrication floor, interaction with CNC deterministic polishing equipment, and periods of standing or walking. The role may require lifting materials up to 35 pounds. Visual acuity for inspection tasks is required. The environment includes exposure to noise, vibration, and manufacturing equipment while wearing appropriate PPE. Must be willing to work in a clean room environment, wearing coveralls, hoods, booties, safety glasses and gloves for entire duration of shift.
You must be work authorized in the United States without the need for employer sponsorship now or in the future.
Additional Responsibilities:
There is potential for exposure to strong magnetic fields, high voltage and currents.
This position requires access to controlled technology, as defined in the United States Export Administration Regulations (15 C.F.R. § 730, et seq.). Qualified candidates must be legally authorized to access such controlled technology prior to beginning work. Business demands may require ASML to proceed with candidates who are immediately eligible to access controlled technology.
Inclusion and diversity
ASML is an Equal Opportunity Employer that values and respects the importance of a diverse and inclusive workforce. It is the policy of the company to recruit, hire, train and promote persons in all job titles without regard to race, color, religion, sex, age, national origin, veteran status, disability, sexual orientation, or gender identity. We recognize that inclusion and diversity is a driving force in the success of our company.
Need to know more about applying for a job at ASML? Read our frequently asked questions.
Request an Accommodation
ASML provides reasonable accommodations to applicants for ASML employment and ASML employees with disabilities. An accommodation is a change in work rules, facilities, or conditions which enable an individual with a disability to apply for a job, perform the essential functions of a job, and/or enjoy equal access to the benefits and privileges of employment. If you are in need of an accommodation to complete an application, participate in an interview, or otherwise participate in the employee pre-selection process, please send an email to USHR_Accommodation@asml.com to initiate the company's reasonable accommodation process.
Please note: This email address is solely intended to provide a method for applicants to initiate ASML's process to request accommodation(s). Any recruitment questions should be directed to the designated Talent Acquisition member for the position.

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