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New Grad Robotics Engineer Jobs in Tennessee (NOW HIRING)

Robotics Tutor

Nashville, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Robotics Tutor

Memphis, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Robotics Tutor

Murfreesboro, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Robotics Tutor

Chattanooga, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Robotics Tutor

Kingsport, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Robotics Tutor

Knoxville, TN ยท Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides ... Alaska, California, Colorado, Delaware, Hawaii, Maine, New Hampshire, North Dakota, Vermont, West ...

Be Seen First

Robotic / Automation OEM seeks electrical controls engineer. We have an immediate opening and will consider recent EE grad, entry level and experienced. Duties include Electrical design (panel ...

We pride ourselves on being at the vanguard of new industry trends and technologies. When you join ... Robotics: Working knowledge of FANUC robot programming and system integration, including Teach ...

We pride ourselves on being at the vanguard of new industry trends and technologies. When you join ... Robotics: Working knowledge of FANUC robot programming and system integration, including Teach ...

Other knowledge requirements include robotics programming, PLC programming, AutoCAD, & SolidWorks. * Experience in successful development of multiple new product launches preferred * Work experience ...

Showing results 41-60

New Grad Robotics Engineer information

What does a new grad robotics engineer do?

A New Grad Robotics Engineer typically supports the design, development, and testing of robotic systems and automation solutions. They work alongside experienced engineers to write code, integrate sensors and actuators, troubleshoot issues, and help improve the performance of robots. These engineers may also assist in prototyping, data analysis, and documentation. The role provides hands-on experience with robotics hardware and software, making it an important entry point for a career in automation and robotics.

What types of projects and responsibilities can a new grad robotics engineer expect in their first year?

As a new grad robotics engineer, you can expect to work on a variety of tasks such as assisting with the design, development, and testing of robotic systems or subsystems. Typical responsibilities may include writing and debugging code for robot control, collaborating with cross-functional teams like mechanical and electrical engineers, and participating in troubleshooting or integration activities. You may also be assigned to support ongoing research, help document technical processes, and contribute to continuous improvement initiatives. This hands-on experience helps build a strong foundation and often opens up future opportunities for specialization or advancement.

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

To thrive as a New Grad Robotics Engineer, you typically need a degree in robotics, mechanical engineering, computer science, or a related field, along with a solid understanding of control systems, kinematics, and programming languages such as Python or C++. Familiarity with robotics development platforms (like ROS), CAD software, and hands-on experience with sensors and actuators are highly valuable. Strong problem-solving abilities, teamwork, and effective communication skills help you adapt to complex projects and collaborate across disciplines. These competencies ensure you can design, build, and troubleshoot robotic systems efficiently in a fast-evolving technological environment.

What is the difference between New Grad Robotics Engineer vs Robotics Software Engineer?

AspectNew Grad Robotics EngineerRobotics Software Engineer
Required CredentialsBachelor's degree in robotics, mechanical, electrical engineering, or related fieldBachelor's or master's in computer science, robotics, or related field; programming skills essential
Work EnvironmentEntry-level, team-based projects in research labs or tech companiesDeveloping and maintaining robotics software in industry or research settings
Employer & Industry UsageStartups, research institutions, tech companies focusing on roboticsTech firms, industrial automation, autonomous vehicle companies

The main difference is that New Grad Robotics Engineers focus on gaining hands-on experience in robotics projects, often with a broader scope including hardware integration. Robotics Software Engineers primarily concentrate on developing and optimizing software solutions for robotics systems, requiring strong programming skills. Both roles are entry-level but differ in their focus areas within the robotics industry.

What cities in Tennessee are hiring for New Grad Robotics Engineer jobs?

Cities in Tennessee with the most New Grad Robotics Engineer job openings:

MANUFACTURING ENGINEER - POWDER COAT/METAL FABRICATION

Maryville, TN โ€ข On-site

$70K - $85K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 20 days ago


Key responsibilities

  • Create, modify, troubleshoot, and maintain robotic welding programs for industrial robot systems.

  • Develop and optimize robot positions, travel paths, weld schedules, and process parameters to improve robotic weld-cell performance.

  • Troubleshoot robotic welding cells and automation systems, including robot controllers, weld power supplies, PLCs, HMIs, sensors, and safety devices.


Job description

Allegiant Manufacturing, a one stop source for metal working solutions including stamping, fabrication, value-added assembly, tooling & machining, located in Maryville, Tennessee has an opportunity for a Manufacturing Engineer working with fabrication and automation. This is a hand-on engineering role supporting and improving Allegiant's robotic welding and fabrication operations. The engineer will have direct ownership of robot programming, weld-process optimization, automation troubleshooting, and implementation of productivity improvements on the manufacturing floor. 

We are committed to providing our employees with strong benefits and a healthy work-life balance.

  • Competitive Benefits Begin Quickly
    Medical, dental, vision and vacation benefits go into effect after 60 days of employment.
  • Day-One Benefits
    Employees are eligible for holiday pay and our 401(k)-retirement plan starting on their first day.

Allegiant Manufacturing values its team members and strives to create a safe, rewarding, stable, and employee-focused workplace.

Tour our website at www.allegiantmfg.com to discover more about us.

Primary Responsibilities

  • Create, modify, troubleshoot, and maintain robotic welding programs for FANUC, Panasonic, and similar industrial robot systems.
  • Develop and optimize robot positions, travel paths, sequencing, weld schedules, torch angles, speeds, and process parameters.
  • Improve robotic weld-cell performance, including safety, weld quality, cycle time, arc-on time, throughput, uptime, and overall equipment effectiveness.
  • Troubleshoot robotic welding cells and associated automation systems, including robot controllers, weld power supplies, PLCs, HMIs, industrial I/O, sensors, safety devices, communications, fixtures, and peripheral equipment.
  • Use PLC and HMI software to monitor ladder logic, trace inputs and outputs, identify control-system faults, and support minor programming changes within demonstrated competency.
  • Develop, optimize, and validate weld fixtures, tooling, error-proofing devices, and manufacturing processes.
  • Review weld defects, downtime events, production losses, and equipment data to identify root causes and implement effective corrective actions.
  • Support new-product launches, manufacturing feasibility reviews, APQP activities, process validation, and production readiness.
  • Work with production and quality personnel to establish manufacturing standards, standardized work, inspection requirements, and process-control methods.
  • Coordinate with maintenance personnel, equipment manufacturers, robot integrators, controls integrators, tooling suppliers, and welding-equipment suppliers.
  • Provide technical training to operators and technicians on robot operation, program selection, fault recovery, basic programming adjustments, and standardized troubleshooting practices.
  • Support preventive and predictive maintenance activities involving robotic welding equipment, tooling, fixtures, and automation systems.
  • Develop project plans, schedules, cost estimates, and implementation requirements for assigned equipment and process-improvement projects.
  • Lead or participate in Lean manufacturing, value analysis/value engineering, cost reduction, scrap reduction, and continuous-improvement activities.
  • Maintain robot-program backups, process documentation, equipment settings, technical records, layouts, and work instructions.
  • Perform other related duties as assigned.

Required Qualifications

  • Two or more years of manufacturing, process, automation, robotics, or welding-engineering experience in a metal-fabrication or production environment.
  • Hands-on experience programming or modifying industrial robotic welding systems.
  • Working knowledge of GMAW processes, welding parameters, weld sequencing, joint design, torch positioning, and common robotic-weld defects.
  • Experience troubleshooting automated production equipment, sensors, electrical and mechanical systems, pneumatic components, fixtures, and tooling.
  • Ability to evaluate production problems, identify root causes, and implement sustainable corrective actions.
  • Ability to manage multiple technical priorities and work effectively in an active manufacturing environment.
  • Strong written and verbal communication skills.
  • Ability to work collaboratively with operators, technicians, engineers, quality personnel, supervisors, and outside suppliers.

Preferred Qualifications

  • Experience programming FANUC and/or Panasonic robotic welding systems.
  • Experience with teach pendants, point touch-up, frame adjustment, path optimization, weld-schedule development, and robot-program recovery.
  • Working knowledge of PLC ladder logic, HMIs, industrial I/O, sensors, safety circuits, variable-frequency drives, industrial networks, and machine communications.
  • Experience with weld fixtures, tooling design, automated work cells, and manufacturing-cell layout.
  • Experience supporting APQP, new-product launches, process capability, PFMEA, control plans, and standardized work.
  • Experience with Lean manufacturing, root-cause analysis, OEE improvement, cycle-time reduction, and mistake-proofing.
  • Formal robot-programming, welding, automation, mechatronics, or controls training.

Education

 A bachelor’s degree in manufacturing engineering, mechanical engineering, welding engineering, automation, mechatronics, engineering technology, or a related technical field is preferred.

An associate degree, technical certification, or equivalent combination of education and directly relevant robotic-welding and automation experience will also be considered.

Desired Characteristics

  • Hands-on and comfortable working directly with production equipment.
  • Self-motivated and able to independently investigate technical issues.
  • Organized and capable of managing several priorities simultaneously.
  • Calm and effective during equipment downtime and production interruptions.
  • Results-oriented, collaborative, and committed to workplace safety.
  • Willing to lead by example and support employees at all levels of the organization.

   There will be no relocations or company sponsorships provided for this position.