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Process Engineering Jobs in Phoenix, AZ (NOW HIRING)

This role serves as the primary engineering resource during off-hours, responsible for executing development experiments, driving laboratory productivity, monitoring tool and process performance ...

Perform engineering-level troubleshooting of process and equipment issues. * Support chamber matching, process recovery, equipment qualifications, and hardware evaluations. * Coordinate with ...

The primary responsibility of this role is to manage and drive the process engineering function for a key product group in the ASM's Atomic Layer Deposition (ALD) technology with a focus on results.

Process Engineer

Phoenix, AZ · On-site

$95K - $119K/yr

This is an exciting opportunity to join a collaborative engineering team where you'll have the autonomy to lead process improvements, solve technical challenges, and drive operational excellence in a ...

Primary Responsibilities: • Apply engineering principles to safely process propellants, pyrotechnics, and/or explosives for product development or improvement, ensuring compliance with program ...

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Process Engineering information

See Phoenix, AZ salary details

$49.1K

$91.4K

$141.5K

How much do process engineering jobs pay per year?

As of Aug 29, 2026, the average yearly pay for process engineering in Phoenix, AZ is $91,365.00, according to ZipRecruiter salary data. Most workers in this role earn between $74,000.00 and $102,300.00 per year, depending on experience, location, and employer.

What is process engineering?

Process engineering is a field of engineering focused on designing, implementing, controlling, and optimizing industrial processes, particularly in manufacturing and chemical production. Process engineers work to develop efficient systems for transforming raw materials into finished products, ensuring safety, quality, and cost-effectiveness. They apply principles from chemistry, physics, and mathematics to solve production problems and improve processes. Process engineering is essential in industries such as oil and gas, pharmaceuticals, food and beverage, and energy.

What are some common challenges faced by process engineers when implementing process improvements in a manufacturing environment?

Process engineers often encounter challenges such as resistance to change from operators and staff, integrating new technologies with legacy systems, and ensuring that improvements do not disrupt ongoing production. Balancing cost-effectiveness with quality and safety standards can also be demanding. Successful process engineers collaborate closely with cross-functional teams, provide clear communication, and use data-driven approaches to overcome these obstacles and drive continuous improvement.

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

To thrive as a Process Engineer, you need a solid background in engineering principles, process optimization, and problem-solving, typically supported by a degree in chemical, mechanical, or industrial engineering. Familiarity with process simulation software (like Aspen Plus or AutoCAD), Six Sigma certification, and experience with quality management systems are often required. Strong analytical thinking, effective communication, and teamwork are essential soft skills to excel in cross-functional projects and drive continuous improvement. These skills ensure efficient production processes, cost reduction, and consistent product quality within manufacturing or industrial environments.

What is the difference between Process Engineering vs Chemical Engineering?

AspectProcess EngineeringChemical Engineering
Required CredentialsBachelor's in Chemical, Mechanical, or Industrial Engineering; often certifications like Six SigmaBachelor's or higher in Chemical Engineering; professional engineer (PE) license may be preferred
Work EnvironmentManufacturing plants, process facilities, industrial settingsResearch labs, chemical plants, design offices
Industry UsageFocuses on optimizing manufacturing processes and production efficiencyDesigns chemical processes, develops new chemicals, and research

Process Engineering primarily concentrates on improving and maintaining manufacturing processes within industrial settings, while Chemical Engineering involves designing chemical processes and developing new chemical products. Both roles require similar educational backgrounds and often overlap in industry applications, but their core focus areas differ.

Are process engineers in demand?

Process engineers are in high demand across manufacturing, chemical, and energy industries due to their role in optimizing production processes and improving efficiency. Strong skills in process simulation, automation, and safety standards increase employability, and the field offers steady job growth with opportunities for advancement.

How much does a process engineer get paid?

The average salary for a process engineer varies by location and experience but typically ranges from $70,000 to $110,000 annually. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn higher wages, especially in industries like manufacturing or chemical processing.

What jobs do process engineers do?

Process engineers design, develop, and optimize manufacturing processes to improve efficiency, safety, and quality. They analyze production systems, troubleshoot issues, and implement improvements using tools like process flow diagrams and statistical analysis. Their work often involves collaboration with production teams and requires knowledge of engineering principles and industry standards.

What are the most commonly searched types of Process Engineering jobs in Phoenix, AZ?

The most popular types of Process Engineering jobs in Phoenix, AZ are:

What job categories do people searching Process Engineering jobs in Phoenix, AZ look for?

The top searched job categories for Process Engineering jobs in Phoenix, AZ are:

Infographic showing various Process Engineering job openings in Phoenix, AZ 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 $91,365 per year, or $43.9 per hour.

Engineer II, Process Engineering

Phoenix, AZ • On-site

ASM
Medical Equipment and Supplies Manufacturing • 11 - 50 employees

Other

Re-posted yesterday


Job description

This role serves as the primary engineering resource during off-hours, responsible for executing development experiments, driving laboratory productivity, monitoring tool and process performance, analyzing experimental data, and coordinating development activities with operators, technicians, and daytime process engineers.

Working closely with Process Engineers and technology development teams, this position enables accelerated process development by providing dedicated engineering coverage for DOE execution, tool qualifications, hardware evaluations, and process demonstrations.

The ideal candidate combines strong engineering fundamentals with hands-on laboratory execution skills and thrives in a fast-paced semiconductor development environment.

Key Responsibilities

Process Development Execution

  • Execute Design of Experiments (DOE), process qualifications, demonstrations, and hardware evaluations developed by senior Process Engineers.
  • Lead daily development activities during the 3:00 PM to 11:00 PM shift.
  • Review experimental objectives, wafer splits, recipes, and process conditions to ensure accurate execution.
  • Partner with operators and technicians to prioritize and complete development activities.
  • Ensure adherence to development plans and identify deviations that may impact experiment integrity.

Equipment and Process Support

  • Monitor process performance and equipment health during development activities.
  • Perform engineering-level troubleshooting of process and equipment issues.
  • Support chamber matching, process recovery, equipment qualifications, and hardware evaluations.
  • Coordinate with maintenance and engineering teams to resolve issues impacting development schedules.
  • Drive rapid response to process excursions and tool abnormalities.

Data Analysis and Reporting

  • Collect, analyze, and summarize process, metrology, and equipment data.
  • Generate engineering reports, trends, and experiment summaries for review by development teams.
  • Identify abnormal trends and provide recommendations for corrective actions.
  • Maintain accurate documentation of experimental conditions and observations.
  • Provide comprehensive shift handoffs to daytime engineers.

Cross-Functional Collaboration

  • Act as the primary interface between operators, technicians, and daytime development engineers during second-shift operations.
  • Coordinate execution priorities across multiple development programs.
  • Support customer demonstrations, process qualifications, and technology evaluations.
  • Provide technical guidance to operators during development activities.
  • Participate in engineering reviews and communicate key findings and execution risks.

Continuous Improvement

  • Identify opportunities to improve development cycle time, experiment quality, and laboratory efficiency.
  • Assist in developing procedures, training materials, and best practices.
  • Support implementation of new process technologies and hardware platforms.
  • Drive a culture of safety, quality, and operational excellence.

Minimum Qualifications

  • Bachelor's degree in Chemical Engineering, Materials Science, Chemistry, Physics, Mechanical Engineering, Electrical Engineering, or a related STEM field.
  • Strong analytical and troubleshooting skills.
  • Ability to interpret experimental plans and technical data.
  • Experience with statistical analysis and data-driven problem solving.
  • Strong written and verbal communication skills.

Preferred Qualifications

  • 2+ years of engineering, laboratory, semiconductor manufacturing, research, or process development experience (internships and co-op experience may be considered).
  • Experience in semiconductor process development, process engineering, equipment engineering, or advanced manufacturing.
  • Knowledge of DOE methodologies and statistical software such as JMP.
  • Experience with semiconductor process equipment, metrology tools, or laboratory development environments.
  • Familiarity with thin films, plasma processes, ALD, CVD, etch, thermal processing, or related semiconductor technologies.
  • Experience supporting 24/7 manufacturing or development operations.

Success Factors

  • Successful execution of development experiments and qualifications.
  • Quality and timeliness of engineering data collection and analysis.
  • Effective collaboration with operators, technicians, and process engineers.
  • Reduction in development cycle time through efficient execution.
  • Strong equipment and process troubleshooting capability.
  • Detailed and actionable communication between shifts.