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Battery Process Engineer Jobs in Phoenix, AZ (NOW HIRING)

Senior Electrical Engineer II, Video

Scottsdale, AZ ยท On-site

$108K - $141K/yr

... application processors/SoCs, memory, power delivery and battery systems, audio, sensors, wired ... Work closely with PCB layout engineers to drive floorplanning, placement, stack-up direction ...

Senior Electrical Engineer II, Video

Scottsdale, AZ ยท On-site

$108K - $141K/yr

... application processors/SoCs, memory, power delivery and battery systems, audio, sensors, wired ... Work closely with PCB layout engineers to drive floorplanning, placement, stack-up direction ...

Senior Electrical Engineer II, Video

Scottsdale, AZ ยท On-site

$108K - $141K/yr

... application processors/SoCs, memory, power delivery and battery systems, audio, sensors, wired ... Work closely with PCB layout engineers to drive floorplanning, placement, stack-up direction ...

Showing results 21-40

Battery Process Engineer information

See Phoenix, AZ salary details

$49.1K

$91.4K

$141.5K

How much do battery process engineer jobs pay per year?

As of Aug 19, 2026, the average yearly pay for battery process engineer 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 does a battery process engineer do?

A Battery Process Engineer is responsible for designing, optimizing, and overseeing the manufacturing processes involved in producing batteries, such as lithium-ion cells. They work to improve efficiency, quality, and safety in battery production by developing and refining procedures, selecting appropriate materials, and troubleshooting issues. Additionally, they collaborate with teams across research, development, and manufacturing to scale up new battery technologies from prototype to mass production. Their role is critical for ensuring that batteries meet performance and reliability standards required for various applications, including electric vehicles and consumer electronics.

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

To thrive as a Battery Process Engineer, you need a solid background in chemical or materials engineering, experience with battery manufacturing processes, and often a relevant engineering degree. Familiarity with process simulation software (such as AutoCAD or MATLAB), Six Sigma methodologies, and data analysis tools is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help distinguish top performers in this field. These competencies are essential to ensure efficient battery production, maintain high quality standards, and drive innovation in the rapidly evolving energy storage industry.

What are some common challenges faced by battery process engineers during scale-up from laboratory to production?

Battery Process Engineers often encounter challenges when translating lab-scale processes to full-scale manufacturing, such as maintaining quality and consistency in large batches, optimizing equipment for high throughput, and ensuring safety protocols with reactive materials. These professionals must troubleshoot unexpected variations, coordinate closely with multidisciplinary teams (like R&D, quality assurance, and maintenance), and refine processes to meet both performance and cost goals. Effective communication and problem-solving skills are essential for overcoming these hurdles and ensuring smooth production ramp-up.

What is the difference between Battery Process Engineer vs Battery Manufacturing Technician?

AspectBattery Process EngineerBattery Manufacturing Technician
CredentialsBachelor's degree in engineering or related field; often requires experience in process designHigh school diploma or technical certification; on-the-job training
Work EnvironmentDesigning, optimizing, and overseeing manufacturing processes in labs or production facilitiesOperating machinery and performing manual tasks on the production line
Industry UsageInvolved in process development, quality control, and process improvementFocuses on assembly, equipment operation, and quality checks

The Battery Process Engineer focuses on designing and improving manufacturing processes, requiring technical expertise and engineering credentials. In contrast, the Battery Manufacturing Technician handles day-to-day production tasks, operating equipment and ensuring product quality. Both roles are essential in battery manufacturing but differ in responsibilities, skills, and work scope.

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

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

Engineer I, Quality

LG Energy Solution Michigan, Inc.

Phoenix, AZ โ€ข On-site

$71K - $91K/yr

Full-time

Re-posted 24 days ago


Job description

Title: Engineer I, Quality

Reports to: Systems Quality Manager

Location: Phoenix, Arizona


LG Energy Solution Michigan Inc. (LGESMI) develops and manufactures large lithium-ion polymer batteries and packs for electric vehicle (EV) and energy storage applications. Come join the leader in advanced EV batteries! www.lgenergymi.com. LG Energy Solution Michigan Inc. (LGESMI) is a global leader in advanced battery technology and energy storage solutions. Our Arizona facility supports the manufacturing and deployment of ESS Link systems for grid-scale energy storage projects across North America.

Summary

The SAT Engineer is responsible for supporting pre-shipment and post-deployment quality verification activities, as well as Site Acceptance Testing (SAT) for ESS Link products. This role serves as a key connection between manufacturing operations and customer-site activities by validating product quality, supporting system-level verification, investigating field quality concerns, and collaborating with cross-functional teams to resolve issues. The SAT Engineer also provides valuable field feedback to manufacturing and quality organizations, helping drive continuous improvement in product quality, system performance, and operational reliability. This position involves a significant amount of travel and requires strong technical troubleshooting, field support, and problem-solving capabilities.

Responsibilities

  • Perform and support Site Acceptance Testing (SAT) activities for ESS Link products at customer sites
  • Execute SAT procedures and quality verification activities in accordance with established standards and requirements
  • Document SAT results and prepare technical reports
  • Communicate SAT findings and quality concerns to internal stakeholders
  • Support resolution of quality issues identified during site activities
  • Verify quality and operational readiness of ESS Link systems at customer sites
  • Assess installation quality and product conformity
  • Support investigation and analysis of field quality concerns
  • Collect and review product performance and quality-related data
  • Verify compliance with customer requirements and project specifications
  • Perform basic electrical verification using digital multimeters and other standard test equipment
  • Conduct insulation resistance testing and evaluate results
  • Perform communication checks and basic diagnostic activities
  • Collect, review, and analyze system logs and operational data
  • Support troubleshooting and root cause analysis of system-level concerns
  • Collaborate with internal engineering teams to resolve technical issues
  • Respond to field quality concerns and support initial containment activities
  • Analyze issues using facts, data, and technical evidence
  • Coordinate with cross-functional teams to investigate root causes and implement corrective actions
  • Support verification of corrective action effectiveness
  • Track quality issues through closure and support preventive improvement efforts
  • Provide field feedback to manufacturing and quality organizations
  • Support continuous improvement initiatives using SAT and field quality data
  • Analyze relationships between manufacturing processes and field performance
  • Support quality stabilization efforts for new products and projects
  • Prepare SAT reports and field quality summaries
  • Document quality concerns, technical findings, and corrective actions
  • Organize and analyze field data and operational information
  • Support KPI reporting and quality performance tracking
  • Maintain quality records and project documentation
  • Collaborate with Manufacturing Engineering, Process Engineering, Production, Quality Engineering, Project Management, and Commissioning teams
  • Support resolution of quality and technical issues across manufacturing and field environments
  • Communicate quality risks, concerns, and recommendations to internal stakeholders
  • Maintain cleanliness at work-site in accordance with 5S3R Standards:
    • Sort, Set in order, Shine, Standardize, Sustain
    • Right Location, Right Quantity, Right Container
  • Perform other duties as assigned

Qualifications

  • Bachelor’s Degree in Engineering required
  • Degree in Electrical Engineering, Electronics Engineering, Mechanical Engineering, Industrial Engineering, Computer Engineering, Computer Science, or a related technical field preferred

Experience

  • 3+ years of experience in manufacturing, quality, commissioning, validation, field service, or related engineering roles
  • Experience in ESS, battery systems, electrical equipment, industrial systems, renewable energy, or related industries preferred
  • Experience supporting customer-site activities, field troubleshooting, or commissioning activities preferred
  • Experience with SAT, FAT, validation, qualification, or system verification activities preferred
  • Experience analyzing technical data and identifying root causes of issues preferred

Skills

  • Understanding of quality systems and manufacturing processes
  • Strong problem-solving and root cause analysis skills
  • Data-driven decision-making capability
  • Ability to support corrective and preventive action activities
  • Ability to use digital multimeters and basic electrical test equipment
  • Ability to perform insulation resistance testing and interpret results
  • Basic understanding of electrical systems and troubleshooting methodologies
  • Ability to perform communication checks and basic network diagnostics