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Associate Pvd Process Engineer Jobs (NOW HIRING)

Senior Process Engineer

Houston, TX · On-site

$99.30K - $128.40K/yr

Tunes and optimizes key PVD process parameters including plasma characteristics, ion-assisted ... Partners with engineering, production, and maintenance teams to implement process improvements and ...

Process Engineer (PVD) IV

Santa Clara, CA · Hybrid

$147K - $202.50K/yr

This role is for PVD process engineer in the PPS organization within HI Role Responsibilities: * Design, collect data, analyze, and compile reports on a wide range of complex process engineering ...

Process Engineer (PVD) IV

Santa Clara, CA · On-site

$147K - $202.50K/yr

This role is for PVD process engineer in the PPS organization within HI Role Responsibilities: * Design, collect data, analyze, and compile reports on a wide range of complex process engineering ...

PVD Process Technician

New York, NY · On-site

$43.10K - $70.60K/yr

Process Technicians monitor workstation performance, manage detrimental issues and/or deviated ... Computer - computer sciences, technical, engineering, software knowledge. * Microsoft Suite ...

Process Engineer

Santa Clara, CA · On-site

$124K - $171K/yr

Who We Are Applied Materials is a global leader in materials engineering solutions used to produce ... MS or PhD Experience: 2 years' experience of PVD, CVD, or ALD deposition process Additional ...

Process Engineer

Santa Clara, CA · On-site

$124K - $171K/yr

Who We Are Applied Materials is a global leader in materials engineering solutions used to produce ... MS or PhD Experience: 2 years' experience of PVD, CVD, or ALD deposition process Additional ...

Process Technicians monitor workstation performance, manage detrimental issues and/or deviated ... Computer - computer sciences, technical, engineering, software knowledge. * Microsoft Suite ...

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Associate Pvd Process Engineer information

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$49.5K

$92K

$142.5K

How much do associate pvd process engineer jobs pay per year?

As of May 31, 2026, the average yearly pay for associate pvd 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 are the key skills and qualifications needed to thrive as an Associate PVD Process Engineer, and why are they important?

To thrive as an Associate PVD Process Engineer, you typically need a bachelor's degree in materials science, chemical engineering, or a related field, along with a solid understanding of thin film deposition and vacuum technology. Familiarity with sputtering, evaporation systems, and process control software is essential, and certifications in semiconductor manufacturing or equipment operation can be advantageous. Strong analytical thinking, problem-solving skills, and effective teamwork enhance performance in this role. These competencies are crucial to ensure efficient process development, troubleshooting, and maintaining high-quality production in advanced manufacturing environments.

What are some common challenges faced by Associate PVD Process Engineers, and how can they be addressed?

Associate PVD Process Engineers often encounter challenges such as maintaining consistent thin film quality, troubleshooting equipment malfunctions, and optimizing process parameters for yield improvement. Addressing these challenges typically involves collaborating closely with cross-functional teams like equipment engineers and quality assurance, conducting root-cause analyses, and staying updated on best practices and new technologies. Regular training, hands-on experience, and open communication with senior engineers and production staff can help new associates quickly build problem-solving skills and adapt to the dynamic cleanroom environment.

What are Associate PVD Process Engineers?

Associate PVD (Physical Vapor Deposition) Process Engineers are entry-level professionals who help develop, optimize, and maintain PVD processes used to deposit thin films onto substrates in industries like semiconductor manufacturing. They work under the guidance of senior engineers, assisting with process development, troubleshooting equipment, running experiments, and analyzing data to improve film quality and production efficiency. Their role is crucial in ensuring consistent product quality and supporting the overall manufacturing process.

What is the difference between Associate Pvd Process Engineer vs Chemical Process Engineer?

AspectAssociate Pvd Process EngineerChemical Process Engineer
CredentialsBachelor's in Materials, Chemical, or Mechanical Engineering; some roles may require certifications in PVD processesBachelor's or higher in Chemical Engineering; professional engineering license may be preferred
Work EnvironmentCleanroom or manufacturing settings focused on thin film deposition using PVD techniquesIndustrial plants, chemical manufacturing, or R&D labs involving chemical reactions and process optimization
Industry UsageElectronics, semiconductor, optics, and coating industriesPetrochemical, pharmaceuticals, specialty chemicals, and process industries

The Associate Pvd Process Engineer primarily focuses on thin film deposition using physical vapor deposition techniques within electronics and coating industries. In contrast, a Chemical Process Engineer works on chemical reactions and process optimization across various chemical manufacturing sectors. While both roles require a background in chemical or materials engineering, their work environments and industry applications differ significantly.

More about Associate Pvd Process Engineer jobs
What cities are hiring for Associate Pvd Process Engineer jobs? Cities with the most Associate Pvd Process Engineer job openings:
What are the most commonly searched types of Pvd Process Engineer jobs? The most popular types of Pvd Process Engineer jobs are:
What states have the most Associate Pvd Process Engineer jobs? States with the most job openings for Associate Pvd Process Engineer jobs include:
Infographic showing various Associate Pvd Process Engineer job openings in the United States as of May 2026, with employment types broken down into 1% Locum Tenens, 2% As Needed, 94% Part Time, and 3% Temporary. Highlights an 93% Physical, 4% Hybrid, and 3% Remote job distribution, with an average salary of $92,018 per year, or $44.2 per hour.
PVD Process Engineer, Solar Cells (Starlink)

PVD Process Engineer, Solar Cells (Starlink)

SpaceX

Bastrop, TX

Other

Posted 21 days ago


SpaceX rating

8.7

Company rating: 8.7 out of 10

Based on 142 frontline employees who took The Breakroom Quiz

12th of 59 rated aerospace companies


Job description

PVD PROCESS ENGINEER, SOLAR CELLS (STARLINK)

Starlink believes in providing fast, reliable internet to those that need it most. We design, build, and launch the world's largest and most advanced satellite constellation that is capable of delivering high-speed internet to even the most remote locations.

As a PVD Process Engineer for our solar cell factory, you will spearhead state of the art production processes for an internal solar cell production line, providing high efficiency and high-quality solar cells for both our latest generation Starlink satellites and for Starship missions to the Moon and Mars. You will work through the life cycle of setting up a greenfield solar cell production plant, including equipment procurement, plant design/layout, equipment commissioning and ramp-up, recipe and process development, and working to develop a world-class production team and environment.

As a PVD Process Engineer, you will own the development, optimization, and scaling of Physical Vapor Deposition (PVD) processes critical for depositing transparent conductive oxide (TCO) layers, such as ITO, and other thin films essential to high-efficiency SHJ cell performance. You will develop and iterate on the manufacturing processes and recipes to achieve a state-of-the-art silicon cell efficiency, low defect rate and cost, and high reliability cell for space-based applications. Your work will form the backbone of the Starlink network (photons of sunlight in is directly proportional to photons of data out to customers!) and help provide internet to tens of millions of customers all around the world.

RESPONSIBILITIES:

  • Design, qualify, and optimize PVD sputtering processes (e.g., DC/RF magnetron sputtering) for SHJ front and back contacts, ensuring uniformity, adhesion, resistivity, and optical transmission at GW-scale volumes
  • Lead process development for new toolsets and materials, including target management, deposition rate optimization, and defect reduction to support state-of-the-art efficiency cells
  • Responsible for developing, implementing, and maintaining new and/or improved manufacturing processes, equipment, technologies, and facilities
  • Analyze production processes and machinery from a first principles, physics-based approach
  • Develop experiments to diagnose and correct manufacturing problems, utilizing robust DOE and statistical methodologies
  • Optimize process conditions and materials to improve the optical and electrical quality of solar cells
  • Perform defect characterization and analysis to determine root cause and develop action plans to improve yields
  • Develop project plans, budgets, and cost/benefit analysis for implementation of new processes or machines
  • Own and perform machine activation and testing with a small team of engineers and technicians
  • Prepare detailed content for technical design reviews, and demonstrate extreme ownership of the production outcome of the Starlink solar factory across yield, uptime, and cost

BASIC QUALIFICATIONS:

  • Bachelor's degree in an engineering discipline
  • 1+ years of experience in chemical engineering design, analysis, and/or system implementation (internship and extracurricular experience is applicable)

PREFERRED SKILLS AND EXPERIENCE:

  • Master's degree or Ph.D. in chemistry, chemical engineering, materials science, environmental, or other STEM discipline
  • 5+ years of hands-on experience in PVD process engineering, preferably in thin-film solar (SHJ, PERC, or CIGS), semiconductor, or display manufacturing
  • Proven track record of scaling PVD processes to high-volume production (>1GW/year equivalent)
  • Strong understanding of vacuum systems, plasma physics, sputtering dynamics, and thin-film characterization techniques (e.g., XRD, SEM, Hall effect)
  • Experience with SPC, DoE, and lean manufacturing principles
  • Ability to work in a cleanroom environment.
  • Hands-on experience working with complex fluid or mechanical based production systems in a professional setting
  • Experience transitioning products from design to manufacturing and scaling to high volume as part of a cross-functional team
  • Self-motivated with strong organizational, written, and oral communication skills
  • Experience with solar cell manufacturing equipment, such as wet chemical processing equipment, PE-CVD equipment, PVD machines, metallization and final test equipment, and wafer inspection equipment (experience in evaporation tools and ALD tools are a plus)
  • Experience or expertise with perovskite solar cells or perovskite tandem solar cells
  • Experience with micro-structure analysis tools (SEM, TEM, EDX, SIMS, etc.) and optical/electrical characterization tools (UV-VIS, I-V, Resistance, etc.)
  • Expertise in SHJ-specific PVD processes, including low-temperature ITO deposition for bifacial cells
  • Familiarity with advanced PVD tools and automation/integration for inline production
  • Proficiency in data analysis/scripting (Python, R, SQL) and simulation tools (e.g., SIMTRA for sputtering).
  • Experience in cost-of-ownership modeling, CapEx justification, and fab ramp-ups to multi-GW scales
  • Passion for sustainable energy and space technology; prior work in photovoltaics at GW-scale a plus

ADDITIONAL REQUIREMENTS:

  • Ability to travel frequently for work, potentially for extended periods of time during machine buyoffs and startup
  • Ability to lift 25 lbs. unassisted
  • Lifting, standing, climbing, bending, grasping, sitting, pulling, pushing, stooping, stretching, and carrying are generally required to perform the functions of this position
  • Must be willing to work extended hours and weekends as needed

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