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Lithography Process Engineer Jobs (NOW HIRING)

Perform semiconductor wafer processing including cleaning, coating, lithography, deposition, etch ... Qualifications: * BS in Engineering, Materials Science, Physics, Chemistry, or related technical ...

Perform semiconductor wafer processing including cleaning, coating, lithography, deposition, etch ... Qualifications: * BS in Engineering, Materials Science, Physics, Chemistry, or related technical ...

Perform semiconductor wafer processing including cleaning, coating, lithography, deposition, etch ... Qualifications: * BS in Engineering, Materials Science, Physics, Chemistry, or related technical ...

$125 - $150/hr

Strong understanding of key overlay lithography process metrics needed for characterization ... MS/PhD in Engineering, Physics, Material Science or related field Job Profile(s): Semiconductor ...

Perform semiconductor wafer processing including cleaning, coating, lithography, deposition, etch ... Qualifications: * BS in Engineering, Materials Science, Physics, Chemistry, or related technical ...

Showing results 21-40

Lithography Process Engineer information

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$49.5K

$92K

$142.5K

How much do lithography process engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for lithography process engineer in the United States is $92,018.00, according to ZipRecruiter salary data. Most workers in this role earn between $74,500.00 and $103,000.00 per year, depending on experience, location, and employer.

What does a lithography process engineer do?

A Lithography Process Engineer is responsible for developing, optimizing, and maintaining the photolithography processes used in semiconductor manufacturing. They work with advanced equipment to transfer circuit patterns onto silicon wafers, ensuring high precision and yield. Their role involves troubleshooting process issues, improving process reliability, and collaborating with other engineering teams to support production goals. Lithography Process Engineers also stay up-to-date with new technologies and methods to continuously enhance manufacturing efficiency.

What are some common challenges faced by lithography process engineers and how can they be addressed?

Lithography Process Engineers often encounter challenges such as managing process variability, minimizing defects, and optimizing equipment performance to achieve precise patterning on semiconductor wafers. These challenges require strong problem-solving skills, attention to detail, and effective collaboration with cross-functional teams like equipment engineers and process integration specialists. Staying up-to-date with the latest lithography technologies and maintaining rigorous process controls can help address these issues, ensuring high yields and efficient production.

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

To thrive as a Lithography Process Engineer, you need a solid background in semiconductor manufacturing, photolithography principles, and a degree in engineering or a related field. Familiarity with lithography equipment (e.g., steppers, scanners), process control software, and statistical analysis tools is typically required. Strong problem-solving skills, attention to detail, and effective communication help you collaborate with cross-functional teams and address process challenges. These skills and qualifications are essential to optimize yields, maintain quality standards, and drive innovation in semiconductor fabrication.

What is the difference between Lithography Process Engineer vs Semiconductor Process Engineer?

AspectLithography Process EngineerSemiconductor Process Engineer
CredentialsBachelor's or Master's in Electrical Engineering, Materials Science, or related fields; certifications in process engineeringBachelor's or Master's in Chemical, Electrical, or Materials Engineering; similar certifications
Work EnvironmentCleanroom environments focused on photolithography steps in chip fabricationCleanroom or fab environments covering multiple process steps in semiconductor manufacturing
Industry UsagePrimarily in semiconductor fabrication plants, focusing on lithography processesAcross semiconductor manufacturing, including process development and production

While both roles operate in semiconductor manufacturing and require similar technical backgrounds, the Lithography Process Engineer specializes in photolithography techniques, whereas the Semiconductor Process Engineer oversees broader process steps. The Lithography Process Engineer focuses on patterning and imaging, making their role more specialized within the manufacturing process.

More about Lithography Process Engineer jobs

What cities are hiring for Lithography Process Engineer jobs?

Cities with the most Lithography Process Engineer job openings:

What states have the most Lithography Process Engineer jobs?

States with the most job openings for Lithography Process Engineer jobs include:

Infographic showing various Lithography Process Engineer job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 79% Full Time, 16% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $92,018 per year, or $44.2 per hour.

Advanced Processing - Lithography Production Engineer

ASML

Wilton, CT • On-site

Full-time

Re-posted 11 days ago


ASML rating

9.1

Company rating: 9.1 out of 10

Based on 42 frontline employees who took The Breakroom Quiz

23rd of 499 rated machine equipment manufacturers


Job description

Introduction
As an Advanced Processing Lithography Production Engineer, you will directly support ASML's mission to enable the world's most advanced chip manufacturing. You will contribute to the development, stabilization, and continuous improvement of lithography processes used to manufacture precision glass components.
In this role, you will work in a dynamic, collaborative manufacturing environment, partnering with production teams, development groups, and cross-functional engineering organizations to create safe, stable, and highly reliable processes that meet demanding quality and performance requirements.
Role Overview
The Lithography Production Engineer (PE) owns and drives assigned manufacturing processes, contributing to their stability, capability, and continuous improvement under the guidance of senior engineers. The PE develops and applies technical depth in lithography processes, translating design intent and production requirements into well-controlled, repeatable operations.
The PE partners closely with production, equipment engineering, safety, quality, and new product development organizations to identify process risks, reduce variation, improve yield, and resolve technical issues. This role builds a strong foundation in understanding and controlling critical process variables, applying data-driven problem solving, and implementing sustainable improvements.
This is a highly hands-on role that requires regular, direct engagement with production hardware and a strong presence in cleanroom and manufacturing environments. The PE supports process documentation, equipment qualifications, and process changes throughout the manufacturing lifecycle-from introduction and ramp-up to sustained production and continuous improvement.
This role is well suited for engineers with demonstrated manufacturing experience seeking to deepen process ownership and drive measurable improvements in a high-performance production environment.
Key Responsibilities
  • Own and drive performance of lithography processes, contributing to safety, quality, yield, and process stability.
  • Support the development, execution, and maintenance of process control strategies, acceptance criteria, and monitoring methods.
  • Track and analyze process performance metrics to support technical decision-making and continuous improvement.
  • Lead and execute investigations and resolution of process-related issues, deviations, and escalations.
  • Drive continuous improvement initiatives to reduce variation, improve capability, and increase first-pass yield through data-driven analysis and structured problem-solving methods.
  • Identify and raise process-related safety risks, supporting mitigation through process design, controls, and documented operating practices in partnership with Environmental, Health and Safety (EHS).
  • Develop and maintain technical documentation, including work instructions, qualification reports, test plans, and safety-related analyses, to support compliant and repeatable execution.
  • Partner with engineering, operations, and development teams to support daily production, sustain stable processes, and enable new product introduction.

Qualifications
  • 4+ years of experience in semiconductor, optics, or advanced manufacturing environments.
  • Hands-on experience with contact photolithography, resist coating, and wet etching in semiconductor, optics, or other contamination-controlled manufacturing environments, with strong understanding of defectivity and process sensitivities.
  • Ability to communicate clearly and effectively across engineering, operations, and all levels of management to drive alignment and execution.
  • Ability to independently analyze data, identify trends, and apply structured problem-solving methods to define root causes and support corrective actions.
  • Strong technical problem-solving skills, with curiosity, attention to detail, and a systematic, data-driven approach.
  • Ability to work proactively, adapt quickly, and contribute effectively in a fast-paced manufacturing environment.
  • Ability to organize work logically, manage multiple priorities, and drive issues to closure with appropriate escalation as needed.
  • Experience operating in controlled manufacturing or laboratory environments, with disciplined adherence to procedures and standards.
  • High comfort level working directly with hardware and spending significant time in cleanroom and manufacturing environments.
  • Mindset oriented toward identifying and reducing risk, improving process robustness, and driving continuous improvement.
  • Ability to build strong working relationships and contribute positively to a collaborative, team-based engineering culture.

Education
  • Bachelor's or Master's degree in Chemical Engineering, Chemistry, Materials Science and Engineering, Physics, or a related technical field.

Preferred Experience
  • Familiarity with common manufacturing and problem-solving tools (e.g., DMAIC, A3, 8D, FMEA, DOE).
  • Working knowledge of statistical process control (SPC).

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 routinely is required to sit; walk; talk; hear; use hands to keyboard, finger, handle, and feel; stoop, kneel, crouch, twist, reach, and stretch
  • The employee is occasionally required to move around the campus
  • The employee may occasionally lift and/or move up to 20 pounds
  • May require travel dependent on company needs
  • Specific vision abilities required by this job include close vision, color vision, peripheral vision, depth perception, and ability to adjust focus
  • The environment generally is moderate in temperature and noise level
  • Must be able to read and interpret data, information, and documents
  • Can observe and respond to people and situations and interact with others encountered in the course of work
  • Can learn and apply new information or skills.

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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