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Lithography Process Engineer Jobs in Arizona (NOW HIRING)

... lithography, etch, deposition, diffusion, wet clean, CMP, and metrology teams. โ€ข Establish ... engineers to tune process conditions. โ€ข Optimize critical dimensions (CD), overlay, and film ...

Process Technician

Phoenix, AZ ยท On-site

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Module Process Technician Our Process Technicians are assigned to specialized engineering modules, such as Lithography (LIT), Etch (ETC), Chemical Vapor Deposition (CVD), Physical Vapor Deposition ...

Process Technician

Phoenix, AZ ยท On-site

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Module Process Technician Our Process Technicians are assigned to specialized engineering modules, such as Lithography (LIT), Etch (ETC), Chemical Vapor Deposition (CVD), Physical Vapor Deposition ...

Process Technician

Phoenix, AZ ยท On-site

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Module Process Technician Our Process Technicians are assigned to specialized engineering modules, such as Lithography (LIT), Etch (ETC), Chemical Vapor Deposition (CVD), Physical Vapor Deposition ...

Process Technician

Phoenix, AZ

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Module Process Technician Our Process Technicians are assigned to specialized engineering modules, such as Lithography (LIT), Etch (ETC), Chemical Vapor Deposition (CVD), Physical Vapor Deposition ...

Showing results 21-40

Lithography Process Engineer information

See Arizona salary details

$46.1K

$85.8K

$132.8K

How much do lithography process engineer jobs pay per year?

As of Aug 16, 2026, the average yearly pay for lithography process engineer in Arizona is $85,750.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,400.00 and $96,000.00 per year, depending on experience, location, and employer.

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 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 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.

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 cities in Arizona are hiring for Lithography Process Engineer jobs?

Cities in Arizona with the most Lithography Process Engineer job openings:

Infographic showing various Lithography Process Engineer job openings in Arizona as of August 2026, with employment types broken down into 1% As Needed, 81% Full Time, 14% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $85,750 per year, or $41.2 per hour.

Process Engineer Metrology & Yield Enhancement

Quantum Computing Inc.

Tempe, AZ โ€ข On-site

Full-time

Re-posted 4 days ago


Job description

Process Engineer Metrology & Yield Enhancement
Location : Tempe, AZ or Hoboken, NJ or Remote
Division: Engineering
Department : Operations
Reports to : Director of Management Operations
About Us
Quantum Computing Inc. (QCi) (Nasdaq: QUBT) is an innovative, integrated photonics company that provides accessible and affordable quantum machines to the world today. QCi products are designed to operate at room temperature and low power at an affordable cost. The Company's portfolio of core technology and products offer unique capabilities in the areas of high-performance computing, artificial intelligence, cyber security as well as remote sensing applications.
Position Description
This position is responsible for overseeing the development of a 150 mm wafer line based on QCi's thin film lithium niobate (TELN) technology. The successful candidate will work in close collaboration with both the process development and integration team as well as the quantum optics team to develop and continuously improve high volume manufacturable metrology and test point processes for our TFLN products. These processes are designed to monitor line health, feed forward critical process and equipment data to optimize product yields, This candidate also plays a key role in facilitating short term SWAT teams when urgent line impacting defect investigations arise. The candidate will be responsible for designing, developing, deploying and optimizing metrology processes for measuring TFLN devices to achieve safety, quality, cost, and delivery goals for QCi and its customer products. The candidate will work closely with a team of process and equipment engineers and technicians to continuously improve their workflow with the goal of enhancing yield of TFLN devices and creating robust reliable manufacturing processes. Furthermore, the candidate will coordinate the factory metrology and diagnostic equipment calibration program.
Duties and Responsibilities
  • Lead the development and optimization of photolithography and/or wet processes for compound semiconductor applications.
  • Drive process integration and improvement initiatives to enhance device performance and yield.
  • Work closely with the process team in the cleanroom to optimize associated metrology measurements in the fabrication flow of TFLN chips
  • Facilitate the transition of research level chip scale production, to low, to middle volume manufacture at wafer scale
  • Utilize advanced metrology tools such as CD SEM, AFM, ellipsometry, profilometry, XPS, XRD, and optical interferometry for process characterization and defect analysis.
  • Work closely with integration, production, and device engineering teams to integrate photo and/or wet processes into the overall semiconductor fabrication flow.
  • Troubleshoot process deviations, particle contamination, and unit performance issues, implementing corrective actions and continuous improvement strategies.
  • Establish and maintain SPC for process monitoring and optimization.
  • Evaluate and qualify new photo and/or wet chemistries, masks, hardware configurations, and process automation tools.
  • Develop and document process recipes, work instructions, and standard operating procedures (SOPs).
  • Mentor junior engineers and provide /or leadership in semiconductor photo, wet, mask, and associated metrology.

Required Skills and Experience
  • 5+ years' experience in Process Development and Continuous Improvement through predictive/preventive metrology measurement & yield enhancement analysis programs
  • Optical modeling and analysis for coherent micro-optical and photonic systems to understand how systems and in new and novel ways to create, deliver and measure light in our next generation quantum computer systems
  • Apply advanced statistical and analytical methods to identify, quantify, and control risk in complex manufacturing environments.
  • Translate PFMEA outputs into actionable process controls, ensuring proactive prevention of variation rather than reactive correction.
  • Define and implement the inspection methods, calibration systems, and SOPs.
  • Manage calibration programs and maintain compliance with ISO and customer quality standards.
  • Deploy advanced sampling strategies, SPC controls, Cp/Cpk, GR&R, and integrate Minitab/JMP analytics into daily operations.
  • Experience with process characterization and metrology techniques such as/or equivalent SEM, AFM, KLA Optical profiler, Stylus profiler, microscope, spectral analysis, and ellipsometry.

Preferred Skills and Experience
  • 10+ years' experience in Metrology & Yield Enhancement Process development, process integration
  • Experience and understanding of microfabrication for photonics devices, process integration, photonic materials properties and modification, and the incorporation of MEMS and electronic devices. Specific knowledge of lithography, etching, deposition, and associated processing is highly valued.
  • Apply large-scale data analytics to Track-and-Trace datasets, enabling predictive insights and real-time defect containment.
  • Experience with heterogeneous bonding between wafers and chips is valued.
  • Experience working with 5S, and 6 Sigma

Incumbent(s) in this position may be required to perform other duties and special assignments not specifically stated above. Statements outlined in this section are designated as essential job functions in accordance with the Americans with Disabilities Act of 1990.