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Thin Films Process Engineer Jobs in Arizona (NOW HIRING)

Senior Process Engineer - H1 Location: Tempe, AZ Department: Operations Reports to: Director of ... Lead the development and optimization of manufacturing processes of thin film lithium niobate ...

Senior Process Engineer - H1 Location : Tempe, AZ Department : Operations Reports to : Director of ... Lead the development and optimization of manufacturing processes of thin film lithium niobate ...

Senior Process Engineer - H1 Location: Tempe, AZ Department: Operations Reports to: Director of ... Lead the development and optimization of manufacturing processes of thin film lithium niobate ...

As a Process Engineer, you'll play a crucial role in designing and optimizing manufacturing ... Experience with CVD or other thin film deposition techniques (e.g., PVD, ALD, PECVD). * Experience ...

Showing results 21-40

Thin Films Process Engineer information

What are the key skills and qualifications needed to thrive as a thin films process engineer?

To thrive as a Thin Films Process Engineer, you need a solid background in materials science or engineering, experience with thin film deposition techniques, and a relevant bachelor's or advanced degree. Familiarity with tools such as sputtering systems, chemical vapor deposition (CVD) equipment, and statistical process control software is typically required. Strong analytical thinking, problem-solving abilities, and clear communication skills set top performers apart in this role. These competencies enable precise process optimization, ensure high-quality film production, and facilitate effective collaboration across engineering and manufacturing teams.

What does a thin films process engineer do?

A Thin Films Process Engineer is responsible for developing, optimizing, and troubleshooting processes used to deposit thin layers of materials onto substrates, often for use in semiconductors, solar panels, or optical devices. They work with various deposition techniques such as physical vapor deposition (PVD), chemical vapor deposition (CVD), and atomic layer deposition (ALD) to achieve desired film properties. Their role involves process design, equipment maintenance, quality control, and collaborating with cross-functional teams to improve product performance and yield.

What is the difference between Thin Films Process Engineer vs Chemical Process Engineer?

AspectThin Films Process EngineerChemical Process Engineer
CredentialsBachelor's in Materials Science, Chemical Engineering, or related field; certifications varyBachelor's or higher in Chemical Engineering; certifications may include PE license
Work EnvironmentCleanroom, semiconductor, or electronics manufacturing facilitiesChemical plants, manufacturing facilities, or research labs
Industry UsageSemiconductor, electronics, optics industriesPetrochemical, pharmaceuticals, chemical manufacturing
Job FocusDeveloping and optimizing thin film deposition processesDesigning and improving chemical production processes

The main difference between a Thin Films Process Engineer and a Chemical Process Engineer lies in their focus areas. Thin Films Process Engineers specialize in thin film deposition techniques used in electronics and semiconductor industries, while Chemical Process Engineers focus on chemical manufacturing and process optimization across various industries. Both roles require a background in chemical engineering principles, but their work environments and specific process expertise differ.

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

Thin Films Process Engineers often encounter challenges such as maintaining uniform film thickness, preventing contamination, and optimizing process parameters for different materials. These issues can typically be addressed by closely monitoring equipment, following strict cleanroom protocols, and collaborating with cross-functional teams like R&D and quality assurance to troubleshoot and refine deposition processes. Continuous learning and staying updated with new thin film technologies also help engineers effectively solve production problems and drive process improvements.
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Infographic showing various Thin Films 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.

Senior Process Engineer - Industry Experience

ASM

Phoenix, AZ โ€ข On-site

$103K - $133K/yr

Full-time

Re-posted 24 days ago


Job description

Step into a career with ASM, where cutting edge technology meets collaborative culture.
For over 55 years ASM has been ahead of what's next, at the forefront of innovation and what's technologically possible. With more than 4,500 ASMers representing 70 nationalities, our people and our advanced semiconductor devices are playing a crucial role in trends such as 5G, cloud computing, AI, and autonomous driving. But we're more than just a tech company. We value diversity, inclusion and sustainability as we strive to make a positive impact on the world. Our development programs help support your growth, shaping your future and pushing the boundaries of innovation to unleash potential.
As a Senior Process Engineer at ASM, you will work with semiconductor processing and analytical equipment to research, develop and optimize processes focused on oxidation, annealing, curing, Atomic Layer Deposition (ALD, PEALD), Epitaxy or PECVD for logic, memory, analog, power, and MEMS applications. You will design and conduct complex experiments, measurements and perform the interpretation of complex experimental output. While you deliver creative and inventive solutions, technical publications, and generation of Intellectual Property (IP) are an essential function of this position. This job posting is for applicants with 2+ years of industry work experience.
Key Responsibilities
  • Creative problem solver with experience in developing new films for emerging applications and experience in chemistry/materials characterization.
  • Works with semiconductor processing equipment to research, develop and optimize unit processes focused on the deposition of metal and dielectric films via ALD, PEALD, Epitaxy, and/or PECVD.
  • Bringing innovative ideas, staying abreast of state-of-the-art processing applications in the semiconductor industry to be effective.
  • Process consulting and accountability including technical papers on advanced process applications and Intellectual Property creation.
  • Participates in and drives technical problem-solving sessions using the related scientific method and industry tools, such as Ishikawa diagrams.
  • Designs and conducts experiments, in addition to measuring and interpreting experimental output, aimed at fulfilling stated objectives using Design of Experiments (DOE) and Response Surface Methodology (RSM).
  • Troubleshoots equipment problems and is personally and actively engaged in problem via "hands-on" modalities.
  • Works with customers and central marketing to understand and define requirements to successfully execute and document customer demonstrations.
  • Develops methods and techniques for integrating metal and/or oxide films into existing and future device technologies.
  • Ensures successful product transfer to customer base by performing demonstrations, training field service personnel, traveling to support remote sites (up to 10% travel required), and drafting documentation regarding process development, tool operation and maintenance.
  • Produces technical papers on process, equipment, and device integration improvement strategies and presents to professional audience.
  • You may be assigned supervisory duties over supporting process engineering technicians and aides. These supervisory duties could include direct input into employees' performance evaluations, discipline, and discharge.

Qualifications
  • Master's or PhD degree in Chemical Engineering, Materials Science, Electrical Engineering, or Physics.
  • 2+ years of work experience with:
    • Cure, oxidation, ALD, CVD, Epitaxy, PECVD and/or other thin film deposition.
    • Materials characterization techniques such as XPS, SIMS, RBS, AFM, XRR, XRD, TEM, SEM and ellipsometry.
  • Knowledge of electrical characterization techniques for CMOS devices.
  • Application of dielectric and/or metal films for logic and memory structures.
  • Training in CFD (computational fluid dynamics), either theoretical or practical is preferred.
  • Knowledge of electrical characterization techniques for CMOS devices is preferred.

Skills
  • Ability to independently manage complex process development projects, including personnel, project schedules, experimental thrusts, hardware procurement and budgetary oversight.
  • Ability to be a process consultant to internal and external customers.
  • An authority on interplay between hardware design (e.g., chemical reactor design) and operation and process outputs
  • Understanding of requirements for integration of metals as work function materials and barrier layers in FEOL and BEOL process flows
  • Demonstrated ability to develop and completely characterize deposition processes using first principles and experimental design techniques (e.g., DOE, RSM).
  • Experience with the theory, practice, and interpretation of materials characterization techniques such as XPS, SIMS, RBS, AFM, XRD, HRTEM, FESEM, Auger, Raman and ellipsometry.
  • Excellent verbal and written communication skills, with ability to clearly communicate advanced technical constructs in direct and concise manner.

Apply today to be part of what's next.
We make the tech that enables the chips in devices which improve lives around the world. We do this with an eye to the future, pushing the boundaries of what's possible through cutting-edge innovation, and driving the next wave of technological breakthroughs that shape how we live, work, and connect.
To learn more about ASM, find us at asm.com and on LinkedIn, Facebook, Instagram, X and YouTube.
ASM is an equal opportunity employer and considers qualified applicants for employment without regard to race, color, religion, age, nationality, social or ethnic origin, sexual orientation, gender, gender identify or expression, marital status, pregnancy, political affiliation, disability, genetic information, veteran status, or any other characteristic protected by law.