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Battery Cell Engineer Jobs in Indiana (NOW HIRING)

... engineering and development from feasibility and conceptualization, through production and service support. Our solutions include zero emissions such as battery electric- and fuel cell- as well as ...

HVAC Technician

South Bend, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

South Bend, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Martinsville, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Bloomington, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Martinsville, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Columbus, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Columbus, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

HVAC Technician

Bloomington, IN · On-site

$27 - $42/hr

Pearce provides technical maintenance, repair, operations, and engineering services for ... battery energy storage systems (BESS), critical cooling systems, and other electrical and ...

Showing results 21-40

Battery Cell Engineer information

See Indiana salary details

$67.6K

$109.8K

$159.4K

How much do battery cell engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for battery cell engineer in Indiana is $109,828.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,400.00 and $123,700.00 per year, depending on experience, location, and employer.

What does a battery cell engineer do?

A Battery Cell Engineer is responsible for designing, developing, and testing battery cells used in a variety of applications such as electric vehicles, consumer electronics, and renewable energy storage. They work on improving battery performance, safety, and lifespan by selecting materials, optimizing cell architecture, and overseeing manufacturing processes. Battery Cell Engineers collaborate with cross-functional teams to ensure that battery systems meet both technical and regulatory requirements.

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

To thrive as a Battery Cell Engineer, you need a solid background in electrochemistry, materials science, and engineering principles, typically supported by a bachelor's or master's degree in chemical, materials, or electrical engineering. Experience with laboratory equipment, battery modeling software, and knowledge of industry standards like ISO and IEC, as well as certifications such as Six Sigma or PMP, are valuable. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set exceptional engineers apart. These skills and qualities are crucial for designing safe, high-performance batteries and driving innovation in energy storage technologies.

What are some typical challenges battery cell engineers face when scaling up from prototype to mass production?

Battery Cell Engineers often encounter challenges when transitioning from prototype development to mass production, such as ensuring consistency in cell performance across large batches, managing supply chain variability, and addressing new quality control issues that arise at scale. They must work closely with manufacturing, quality assurance, and procurement teams to troubleshoot production bottlenecks and maintain strict safety standards. Effective communication and problem-solving skills are essential, as the role requires both hands-on technical work and cross-functional collaboration to achieve reliable, high-volume output.

What is the difference between Battery Cell Engineer vs Battery Pack Engineer?

AspectBattery Cell EngineerBattery Pack Engineer
ResponsibilitiesDesigns and develops individual battery cells, focusing on chemistry, materials, and performanceDesigns and integrates multiple cells into battery packs, focusing on system integration, safety, and thermal management
Required SkillsElectrochemistry, materials science, cell testingElectrical engineering, system integration, thermal management
Work EnvironmentLaboratories, R&D centersManufacturing facilities, vehicle integration sites
Industry UsageAutomotive, consumer electronics, energy storageElectric vehicles, energy storage systems, industrial applications

While both roles focus on batteries, the Battery Cell Engineer specializes in developing individual cells, whereas the Battery Pack Engineer works on assembling and optimizing multiple cells into complete battery systems. Both roles require knowledge of battery technology but differ in scope and focus.

What are popular job titles related to Battery Cell Engineer jobs in Indiana?

For Battery Cell Engineer jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Battery Cell Engineer jobs in Indiana look for?

The top searched job categories for Battery Cell Engineer jobs in Indiana are:

Infographic showing various Battery Cell Engineer job openings in Indiana as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, and 4% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $109,828 per year, or $52.8 per hour.

Product Functional Test Technology Specialist

Cummins

Columbus, IN • Hybrid

Full-time

Re-posted 9 days ago


Cummins rating

8.0

Company rating: 8.0 out of 10

Based on 264 frontline employees who took The Breakroom Quiz

136th of 540 rated manufacturers


Job description

We are looking for a talented Product Functional Test Technology Specialist to join our team specializing in Engineering for our Cummins location in Columbus, IN.  

Role Overview 

The Test Technology Engineer will be responsible for implementing, developing, and troubleshooting measurement and control systems within an engine and hybrid powertrain test facility. This role requires a strong foundation in electrical engineering, controls, data acquisition, and experimental methods, along with the ability to work effectively with a diverse team of technicians and engineers. The position also demands strong strategic thinking-seeing how individual technical issues connect to broader departmental objectives-and the ability to contribute to globally aligned initiatives by understanding tools, practices, and goals across multiple sites. 

Key Responsibilities for the role are: 

Electrical Engineering & Test Systems 

  • Develop a deep understanding of battery emulators and their application in hybrid powertrain testing. 
  • Support and troubleshoot dynamometer systems, including motoring and eddycurrent dynos. 
  • Understand hybrid test configurations involving engines, generators, and dynos, including the underlying physics and the measurement objectives of customer test programs. 

Controls Engineering 

  • Understand and work with various test cell control modes. 
  • Diagnose and resolve controlrelated issues such as torque spikes or instability between engine and dyno systems. 
  • Understand how different control strategies (e.g., dyno controlling speed vs. engine controlling torque) affect system behavior. 
  • Support and tune additional control loops associated with other test cell subsystems. 
  • Understand how changes in control strategy, PID tuning, or subsystem interactions can introduce bias, noise, or drift into measurement systems, and adjust control settings to minimize uncertainty. 

PLC Systems & Safety 

  • Contribute to PLCbased projects, including the ongoing safeentry system for test cells. 
  • Develop, modify, and troubleshoot PLC logic to support safety and operational improvements. 

HighVoltage & FacilityLevel Electrical Knowledge 

  • Understand buildinglevel electrical noise, including total harmonic distortion (THD), and how it affects dyno drives and other sensitive equipment. 
  • Determine whether mitigation strategies (e.g., transformers or filters) are required. 
  • Measure and characterize THD using appropriate tools. 
  • Build MATLAB or similar models to simulate regenerative power flow from dynos back to the grid and predict resulting THD levels. 

Experimental & Data Skills 

  • Understand the full data acquisition chain, from sensor output to digitization and storage. 
  • Distinguish between accuracy and precision and apply this understanding to test planning and data interpretation. 
  • Have at least a basic understanding of uncertainty analysis, including how measurement uncertainty propagates and affects test results. 
  • Support calibration processes and ensure measurement integrity. 
  • Process and analyze data using MATLAB or similar tools. 
  • Apply signalprocessing techniques (FFTs, filtering, smoothing) and numericalmethods approaches within MATLAB and related platforms for data analysis. 
  • Develop scripts or utilities to automate data processing and improve workflow efficiency. 
  • Document test results and research findings using LaTeX or similar reporting tools. 

Strategic Thinking & Systems Perspective 

  • Maintain awareness of how individual test cell issues, engineering tasks, and subsystem behaviors connect to broader departmental objectives. 
  • Identify patterns, recurring failure modes, or inefficiencies and propose longterm, scalable solutions rather than oneoff fixes. 
  • Anticipate downstream impacts of technical decisions on safety, data quality, scheduling, and crossteam workflows. 
  • Contribute ideas that improve the overall test technology roadmap, not just local processes or tools. 

Global Collaboration & CrossSite Awareness 

  • Understand the goals, priorities, and technical strategies of the global Test Technology organization. 
  • Stay informed about tools, methods, and innovations being developed at other sites and proactively evaluate their applicability to CTC. 
  • Participate in global projects that require coordination across multiple locations, ensuring solutions are consistent, scalable, and aligned with enterpriselevel standards. 
  • Bring an "outsidethebox" mindset to problemsolving by integrating lessons learned, best practices, and emerging technologies from across the global network. 
  • Communicate effectively with engineers and leaders at other sites to share knowledge, align on technical direction, and support unified global initiatives. 
Cummins is an equal opportunity employer. Our policy is to provide equal employment opportunities to all qualified persons without regard to race, sex, color, disability, national origin, age, religion, union affiliation, sexual orientation, veteran status, citizenship, gender identity, or other status protected by law.

Key Responsibilities

Electrical Engineering & Test Systems

  • Develop a deep understanding of battery emulators and their application in hybrid powertrain testing.
  • Support and troubleshoot dynamometer systems, including motoring and eddycurrent dynos.
  • Understand hybrid test configurations involving engines, generators, and dynos, including the underlying physics and the measurement objectives of customer test programs.

Controls Engineering

  • Understand and work with various test cell control modes.
  • Diagnose and resolve controlrelated issues such as torque spikes or instability between engine and dyno systems.
  • Understand how different control strategies (e.g., dyno controlling speed vs. engine controlling torque) affect system behavior.
  • Support and tune additional control loops associated with other test cell subsystems.
  • Understand how changes in control strategy, PID tuning, or subsystem interactions can introduce bias, noise, or drift into measurement systems, and adjust control settings to minimize uncertainty.

PLC Systems & Safety

  • Contribute to PLCbased projects, including the ongoing safeentry system for test cells.
  • Develop, modify, and troubleshoot PLC logic to support safety and operational improvements.

HighVoltage & FacilityLevel Electrical Knowledge

  • Understand buildinglevel electrical noise, including total harmonic distortion (THD), and how it affects dyno drives and other sensitive equipment.
  • Determine whether mitigation strategies (e.g., transformers or filters) are required.
  • Measure and characterize THD using appropriate tools.
  • Build MATLAB or similar models to simulate regenerative power flow from dynos back to the grid and predict resulting THD levels.

Experimental & Data Skills

  • Understand the full data acquisition chain, from sensor output to digitization and storage.
  • Distinguish between accuracy and precision and apply this understanding to test planning and data interpretation.
  • Have at least a basic understanding of uncertainty analysis, including how measurement uncertainty propagates and affects test results.
  • Support calibration processes and ensure measurement integrity.
  • Process and analyze data using MATLAB or similar tools.
  • Apply signalprocessing techniques (FFTs, filtering, smoothing) and numericalmethods approaches within MATLAB and related platforms for data analysis.
  • Develop scripts or utilities to automate data processing and improve workflow efficiency.
  • Document test results and research findings using LaTeX or similar reporting tools.

Strategic Thinking & Systems Perspective

  • Maintain awareness of how individual test cell issues, engineering tasks, and subsystem behaviors connect to broader departmental objectives.
  • Identify patterns, recurring failure modes, or inefficiencies and propose longterm, scalable solutions rather than oneoff fixes.
  • Anticipate downstream impacts of technical decisions on safety, data quality, scheduling, and crossteam workflows.
  • Contribute ideas that improve the overall test technology roadmap, not just local processes or tools.

Global Collaboration & CrossSite Awareness

  • Understand the goals, priorities, and technical strategies of the global Test Technology organization.
  • Stay informed about tools, methods, and innovations being developed at other sites and proactively evaluate their applicability to CTC.
  • Participate in global projects that require coordination across multiple locations, ensuring solutions are consistent, scalable, and aligned with enterpriselevel standards.
  • Bring an "outsidethebox" mindset to problemsolving by integrating lessons learned, best practices, and emerging technologies from across the global network.
  • Communicate effectively with engineers and leaders at other sites to share knowledge, align on technical direction, and support unified global initiatives.

To be successful in this role, you will need the following:

Interpersonal Skills

  • Work effectively with a team of engineers and associate engineers with varying work styles.
  • Maintain productive relationships by balancing expectations, communication, and respect for established work dynamics.
  • Navigate sensitive interpersonal situations with professionalism and tact to ensure tasks are completed without damaging longterm cooperation.

Initiative and Curiosity

  • Identify useful tasks, improvements, or opportunities without requiring constant direction.
  • Explore new tools, methods, and ideas with a researchoriented mindset.
  • Demonstrate a genuine interest in understanding the physics behind systems and applying that knowledge to develop practical, elegant solutions.

ProblemSolving Approach

  • Approach test cell issues analytically, using first principles when appropriate.
  • Enjoy the process of diagnosing complex problems and developing solutions grounded in engineering fundamentals.

Education, Licenses, Certifications:

  • Demonstrated aptitude is required. College, university, or equivalent Associate's degree or certification inan appropriate STEM field is required.
  • Equivalent Bachelor's degree in a relevant discipline area may be required for select roles.
  • This position may require licensing for compliance with export controls or sanctions regulations.

Experience:
Prior Senior or Lead Engineer equivalent work experience in a relevant discipline area is required with a demonstrated track record of technical problem solving and quality decision making. Knowledge of MS Office tools is preferred.


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About Cummins

Sourced by ZipRecruiter

Cummins Inc., headquartered in Columbus, IN, US, is a global power leader that designs, manufactures, and distributes numerous power products and systems. With its genesis from as early as 1919, the company readily serves diverse industries such as transportation, industrial, generator drive, or marine applications, among others. At the heart of Cummins' operations, its key product lineup encompasses diesel & natural gas engines, generator sets, engine components, and filtration, emission solutions, and electrical power generation systems. Cummins deeply embodies core values of integrity, respect for diversity, teamwork, performance excellence, and social responsibility - all of which dynamically fuel their mission 'Making people's lives better by powering a more prosperous world'.

Industry

Transportation equipment manufacturing

Company size

10,000+ Employees

Headquarters location

Columbus, IN, US

Year founded

1919