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

Electrical Engineer -Power Studies

Gilbert, AZ ยท On-site

$95K - $135K/yr

Power system modeling and preparing electrical calculations for solar and battery storage projects ... Coordinating with lead engineer EOR on study requirements * Analyze designs to ensure compliance ...

Interest in renewable energy design, including photovoltaic (PV) systems, battery energy storage ... DLR Group follows a four-day in-office work model, with employees having the flexibility to work ...

Power system modeling and preparing electrical calculations for solar and battery storage projects ... Coordinating with lead engineer EOR on study requirements * Analyze designs to ensure compliance ...

Electrical Engineer -Power Studies

Gilbert, AZ ยท On-site

$95K - $135K/yr

Power system modeling and preparing electrical calculations for solar and battery storage projects ... Coordinating with lead engineer EOR on study requirements * Analyze designs to ensure compliance ...

Managing Consultant-Energy Markets

Phoenix, AZ ยท On-site

$130K - $216K/yr

The Energy Markets & Systems Integrated Modeling Team's work supports developers, operators and ... Be intimately familiar with the economics, policies and players driving renewables, battery storage ...

Showing results 21-40

Battery Modeling Engineer information

See Phoenix, AZ salary details

$70.5K

$114.6K

$166.3K

How much do battery modeling engineer jobs pay per year?

As of Sep 2, 2026, the average yearly pay for battery modeling engineer in Phoenix, AZ is $114,600.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,300.00 and $129,100.00 per year, depending on experience, location, and employer.

What is a battery modeling engineer?

Battery Modeling Engineers are professionals who design, develop, and optimize mathematical models that simulate the behavior and performance of batteries. They use these models to predict battery life, efficiency, safety, and performance under various conditions, helping to improve battery technology for applications like electric vehicles, consumer electronics, and renewable energy storage. Their work often involves collaborating with chemists, electrical engineers, and software developers to create accurate simulations and guide the development of new battery technologies.

How does a battery modeling engineer typically collaborate with cross-functional teams in the development process?

Battery Modeling Engineers frequently work alongside electrochemists, hardware engineers, and data scientists to develop and refine battery systems. They translate experimental data and design requirements into simulation models, ensuring alignment between theoretical predictions and real-world performance. Effective communication and regular meetings are essential, as Battery Modeling Engineers often provide critical insights that inform design decisions, troubleshooting, and optimization of battery performance. This collaborative environment fosters innovation and helps accelerate product development cycles.

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

To thrive as a Battery Modeling Engineer, you need a strong background in electrochemistry, physics, and advanced mathematics, typically supported by a degree in engineering or a related field. Proficiency in simulation tools such as COMSOL Multiphysics, MATLAB, and Python, along with familiarity with battery management systems, is essential. Strong problem-solving skills, attention to detail, and effective communication help you collaborate and solve complex battery performance challenges. These skills are crucial for designing accurate models that drive innovation and efficiency in battery technology.

What is the difference between Battery Modeling Engineer vs Battery Test Engineer?

AspectBattery Modeling EngineerBattery Test Engineer
CredentialsDegree in Electrical, Mechanical, or Chemical Engineering; knowledge of modeling softwareDegree in Electrical, Mechanical, or Chemical Engineering; experience with testing equipment
Work EnvironmentDesign labs, simulation environments, R&D departmentsTesting labs, quality assurance, product validation
Industry UsageBattery development, simulation, and optimizationProduct testing, validation, and quality control
Search/Comparison IntentFocus on modeling and simulation skillsFocus on testing procedures and validation processes

The main difference between a Battery Modeling Engineer and a Battery Test Engineer lies in their focus areas. The Battery Modeling Engineer specializes in creating simulations and models to predict battery performance, while the Battery Test Engineer conducts physical tests to validate battery quality and safety. Both roles are essential in battery development but serve different stages of the product lifecycle.

What are popular job titles related to Battery Modeling Engineer jobs in Phoenix, AZ?

For Battery Modeling Engineer jobs in Phoenix, AZ, the most frequently searched job titles are:

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

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

Infographic showing various Battery Modeling Engineer job openings in Phoenix, AZ as of August 2026, with employment types broken down into 100% Full Time. Highlights an 50% In-person, and 50% Hybrid job distribution, with an average salary of $114,600 per year, or $55.1 per hour.

Engineer I, Assembly Process

LG Energy Solution Arizona

Queen Creek, AZ โ€ข On-site

Full-time

Re-posted 20 days ago


Job description

Job Summary:ย 

The Engineer I will participate in supporting the optimization of sustainable cell process technology. They will develop foundational technical knowledge of the manufacturing process and equipment while contributing to quality assurance, process down (PD) improvement through recipe setting, specification alignment, process capability management and defect improvement.

Responsibilities:

  • Support process parameter setting and defect improvement work for the batteryย assembly line
  • Assist with assembly parameter optimization through data-driven experimentation and design of experiments (DOE) execution
  • Support the maintenance and revision of process failure mode and effects analysisย (PFMEA), process flow diagrams (PFD), and control plans (CP)
  • Assist in new model introduction and 4M change verification activities
  • Support testing and evaluation of new cell processes and equipment
  • Participate in internal and customer audits and assist with timely response to internalย and external quality issues, including root cause analysis and corrective actionย implementation
  • Collaborate cross-functionally with quality, equipment and production teams toย troubleshoot and resolve yield and quality issues in a timely and structured manner
  • Support analysis and improvement of overall equipment effectiveness (OEE) and yield ofย assigned process and production department
  • Contribute to production process improvements by assisting in the creation of standardย operating procedures (SOPs) and training operators to ensure understanding andย correct implementation
  • Assist in analysis of cell defect data including process and inspection data to monitorย process stability and cell quality
  • Support creation of data visualizations and technical presentations to communicateย findings on non-conformance items, drive corrective actions and support decisionย making across engineering and leadership teams
  • Compliance with health/safety/environmental/fire regulations
  • Perform other duties as assigned

Qualifications:

  • Bachelor's degree in engineering or related field, or equivalent, relevant experience
  • At minimum 1 year of work experience in a technological or manufacturing field with preference for experience with process technology
  • Experience in battery-related work or laser welding is preferred but not required
  • Basic understanding of statistical and data analysis to identify trends, abnormalย behavior, and early indications of cell failure
  • Familiarity with quality systems such as Six Sigma, DOE, and statistical tools.

Skills:

  • Strong written and verbal communication
  • Strong attention to detail
  • Organizational and multitasking abilities
  • Korean Bilingual requiredย ย