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Robotics Application Engineer Jobs in Tennessee (NOW HIRING)

Process Engineer

Greeneville, TN · On-site

$70K - $90K/yr

p>If you are unable to complete this application due to a disability, contact this employer to ask ... Evaluate and implement process improvements involving automation, robotics, vision systems, and ...

Program and troubleshoot systems involving PLCs, robotics, HMIs, CNC, and motion systems ... After receiving your online application, the interview process will typically be a screening call ...

Robotic experience and robotic programming skills. Additional Skills & Qualifications * Experience ... Application Deadline This position is anticipated to close on Sep 19, 2026. About Actalent Actalent ...

We drive continuous improvement, and maintain all of the robotics and material handling equipment ... If you have a disability and need a workplace accommodation or adjustment during the application ...

... the application of complex engineering techniques and analysis. Job Responsibilities: * Designs products such as engines, machines, instruments, controls, or robots. * Works with a design team to ...

... the application of complex engineering techniques and analysis. Job Responsibilities: * Designs products such as engines, machines, instruments, controls, or robots. * Works with a design team to ...

Program and troubleshoot systems involving PLCs, robotics, HMIs, CNC, and motion systems ... After receiving your online application, the interview process will typically be a screening call ...

Controls Engineer

Maryville, TN · On-site

$50 - $60/hr

Extensive skills in PLC, Robot, Human Machine Interface (HMI), and electrical controls are ... Application Deadline This position is anticipated to close on Sep 4, 2026. About Actalent Actalent ...

Manufacturing Engineer

Murfreesboro, TN

$66K - $85K/yr

Through the application of Lean Manufacturing, Six Sigma, and problem-solving methodologies, the ... Basic PLC programming knowledge required (Allen Bradley, Siemens); robot programming experience ...

Manufacturing Engineer

Murfreesboro, TN · On-site

$66K - $85K/yr

Through the application of Lean Manufacturing, Six Sigma, and problem-solving methodologies, the ... Basic PLC programming knowledge required (Allen Bradley, Siemens); robot programming experience ...

If you are unable to complete this application due to a disability, contact this employer to ask ... Evaluate and implement process improvements involving automation, robotics, vision systems, and ...

$20 - $60/hr

Learn about the application of automation, robotics, systems engineering, and digital technologies within biotechnology development. * Bring curiosity, initiative, and a willingness to learn as part ...

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Showing results 41-60

Robotics Application Engineer information

See Tennessee salary details

$45.8K

$100.5K

$138K

How much do robotics application engineer jobs pay per year?

As of Sep 9, 2026, the average yearly pay for robotics application engineer in Tennessee is $100,472.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,200.00 and $122,500.00 per year, depending on experience, location, and employer.

What does a robotics application engineer do?

A Robotics Application Engineer is responsible for designing, developing, and implementing robotic systems to automate manufacturing or business processes. They work closely with clients to understand their automation needs, select appropriate hardware and software, and integrate robotics solutions into existing workflows. Their role often includes programming robots, troubleshooting issues, providing technical support, and training end-users. Robotics Application Engineers play a crucial part in improving efficiency, safety, and productivity in industries ranging from automotive to electronics and logistics.

What are some typical challenges a robotics application engineer faces when integrating robots into existing manufacturing processes?

A Robotics Application Engineer often encounters challenges such as ensuring compatibility between new robotic systems and legacy equipment, customizing solutions to meet unique production requirements, and minimizing downtime during installation and testing. Effective communication with cross-functional teams—including production, maintenance, and IT—is vital to address unforeseen technical issues and to ensure seamless integration. Additionally, balancing project timelines with safety and quality standards requires strong project management and problem-solving skills.

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

To thrive as a Robotics Application Engineer, you need a solid background in mechanical or electrical engineering, programming (such as Python or C++), and automation principles, often supported by a relevant degree. Familiarity with robotics platforms (like FANUC, ABB, or KUKA), CAD software, and PLC programming, as well as certifications in robotics or automation, are commonly required. Strong problem-solving abilities, effective communication, and teamwork are crucial soft skills for collaborating with multidisciplinary teams and clients. These skills ensure the successful design, implementation, and support of robotic solutions tailored to complex industrial needs.

What is the difference between Robotics Application Engineer vs Robotics Software Engineer?

AspectRobotics Application EngineerRobotics Software Engineer
Required CredentialsBachelor's in Robotics, Mechanical, or Electrical Engineering; certifications in robotics or automationBachelor's or Master's in Computer Science, Robotics, or Software Engineering; programming certifications
Work EnvironmentHands-on with hardware, field testing, client sitesSoftware development, coding, simulation, testing in labs or offices
Employer & Industry UsageManufacturing, automation companies, robotics integratorsTech firms, research labs, automation software providers
Common Search & ComparisonOften compared for hardware vs software focus in robotics

The Robotics Application Engineer primarily focuses on integrating and testing robotic systems in real-world environments, working closely with hardware and clients. In contrast, the Robotics Software Engineer concentrates on developing and coding the software that powers robotic systems. Both roles require technical skills but differ in their focus on hardware versus software development.

What cities in Tennessee are hiring for Robotics Application Engineer jobs?

Cities in Tennessee with the most Robotics Application Engineer job openings:

Infographic showing various Robotics Application Engineer job openings in Tennessee as of August 2026, with employment types broken down into 77% Full Time, 18% Part Time, and 5% Contract. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $100,472 per year, or $48.3 per hour.

Process Engineer

Greeneville, TN • On-site

$70K - $90K/yr

Other

Posted 8 days ago


Key responsibilities

  • Develop, establish, validate, and document injection molding processes for new and existing products.

  • Lead process development activities, including mold trials, process studies, capability analysis, and production validations.

  • Analyze molding processes and implement improvements to increase productivity, quality, and overall equipment effectiveness (OEE).


Job description

p>If you are unable to complete this application due to a disability, contact this employer to ask for an accommodation or an alternative application process.

Regular Full-Time Greeneville, TN, US


15 days ago Requisition ID: 2326


$70,000.00 To $90,000.00 Annually


Plastic Injection Molding Process Engineer
Job Summary

The Plastic Injection Molding Process Engineer is responsible for developing, optimizing, validating, and sustaining injection molding processes to ensure safe, efficient, and high-quality production. This position works closely with Operations, Quality, Tooling, Maintenance, Engineering, and Program Management teams to improve manufacturing performance, reduce costs, support new product launches, and drive continuous improvement initiatives throughout the molding operation.


Reports To: Operations Manager
Essential Duties and Responsibilities

  • Develop, establish, validate, and document robust injection molding processes for new and existing products.

  • Lead process development activities, including mold trials, process studies, capability analysis, and production validations.

  • Analyze molding processes and implement improvements to increase productivity, quality, and overall equipment effectiveness (OEE).

  • Troubleshoot molding defects, including flash, short shots, sink marks, burn marks, splay, warpage, dimensional variation, and cosmetic defects.

  • Utilize scientific molding principles and data-driven methodologies to establish and maintain process controls.

  • Conduct root cause investigations and implement corrective and preventive actions for process-related issues.

  • Support new product launches, process qualifications, mold validations, and production ramp‑ups.

  • Develop and maintain standard process sheets, work instructions, validation documentation, and engineering records.

  • Collaborate with Quality to establish process capability requirements and improve product consistency.

  • Identify opportunities to reduce cycle times, scrap, downtime, material consumption, and manufacturing costs.

  • Evaluate and implement process improvements involving automation, robotics, vision systems, and auxiliary equipment.

  • Partner with Tooling and Maintenance teams to improve mold performance, reliability, and preventive maintenance programs.

  • Lead continuous improvement projects utilizing problem‑solving methodologies.

  • Support production teams by providing technical guidance and training on molding processes and best practices.

  • Participate in customer audits, quality investigations, and corrective action activities as required.

  • Ensure compliance with safety, environmental, and company policies.


Required Qualifications

  • Bachelor's degree in Engineering, Plastics Engineering, Manufacturing Engineering, Mechanical Engineering, or a related technical field.

  • Minimum of 3 to 7 years of experience in plastic injection molding process engineering or advanced process development.

  • Strong knowledge of injection molding equipment, molds, tooling, and resin processing.

  • Experience developing and validating molding processes in a manufacturing environment.

  • Knowledge of scientific molding principles and process optimization techniques.

  • Experience with root cause analysis, statistical methods, and process capability analysis.

  • Ability to read and interpret engineering drawings, GD&T, specifications, and quality standards.

  • Proficiency with Microsoft Office and manufacturing software systems.

  • Excellent analytical, organizational, and problem‑solving skills.

  • Strong communication and project management abilities.


Preferred Qualifications

  • Bachelor's degree in Plastics Engineering.

  • RJG Master Molder Certification or equivalent Scientific Molding certification.

  • Experience with automation systems, robotics, and machine vision technologies.

  • Experience in automotive, medical, consumer products, or other high‑volume injection molding environments.

  • Knowledge of DOE (Design of Experiments), Moldflow analysis, and process capability studies.


Knowledge, Skills, and Abilities

  • Injection molding process development and optimization.

  • Scientific molding and process validation methodologies.

  • Plastic resin behavior, material drying, and material handling systems.

  • Statistical Process Control (SPC) and process capability analysis.

  • Root cause analysis and corrective action implementation.

  • Project leadership and cross‑functional collaboration.

  • Automation and manufacturing technology integration.

  • Strong technical writing and documentation skills.

  • Excellent verbal and written communication skills.


Physical Requirements

  • Ability to stand, walk, and move throughout the manufacturing facility for extended periods.

  • Ability to occasionally lift up to 35 pounds.

  • Ability to inspect molds, machines, and manufacturing equipment.

  • Frequent reaching, bending, and interaction with manufacturing equipment.

  • Ability to safely wear required personal protective equipment (PPE).

  • Manufacturing environment with exposure to moving machinery, noise, heat, and plastic processing equipment.

  • Frequent interaction with production, tooling, engineering, and maintenance personnel.

  • Occasional travel may be required to suppliers, customers, or other company facilities.

  • May require schedule flexibility to support process trials, launch activities, and critical production needs.


Key Performance Indicators (KPIs)

  • Scrap Reduction

  • Overall Equipment Effectiveness (OEE)

  • Cycle Time Reduction

  • First Pass Yield (FPY)

  • Process Capability (Cp/Cpk)

  • Cost Reduction Achievement

  • Downtime Reduction

  • New Product Launch Success

  • Process Validation Completion

  • Customer Quality Performance

  • Safety Performance


Success Factors

  • Establishes repeatable and robust molding processes.

  • Reduces process variation and manufacturing costs.

  • Improves productivity and equipment utilization.

  • Successfully supports new product introductions and transfers.

  • Drives data‑based decision‑making and continuous improvement.

  • Acts as the technical expert for injection molding process performance and optimization.

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