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Robotics Engineer Jobs in Cary, NC (NOW HIRING)

Industrial Engineer (3279)

Mebane, NC · On-site

$75 - $110/hr

Apply robotics and automation knowledge to improve manufacturing reliability, reduce downtime, and ... Create and maintain engineering documentation to support current and future product launches.

Experience with robotics programming, troubleshooting, or maintenance (preferred) * Familiarity with industrial electrical systems, sensors, and motion control systems * Ability to read and interpret ...

Software Engineer III

Durham, NC · On-site

$80K - $140K/yr

This role focuses on building enterprise-grade automation solutions leveraging AWS Cloud, AI Agents, Robotic Process Automation (RPA), workflow orchestration and APIs. The engineer will collaborate ...

Mid-Level Mechanical Engineer Raleigh, NC (open to relocating candidates) Join us at the forefront ... Experience designing robotic automation cells, including reach and cycle analysis, safety, and risk ...

Lead Software Engineer

Raleigh, NC · Remote

$130K - $160K/yr

Utilize UiPath Orchestrator to manage robots, assets, queues, schedules, triggers, packages ... Mentor UiPath developers and establish development standards across multiple delivery teams.

Lead Software Engineer

Raleigh, NC · Remote

$130K - $160K/yr

Utilize UiPath Orchestrator to manage robots, assets, queues, schedules, triggers, packages ... Mentor UiPath developers and establish development standards across multiple delivery teams.

Showing results 41-60

Robotics Engineer information

See Cary, NC salary details

$29.6K

$107.6K

$172.2K

How much do robotics engineer jobs pay per year?

As of Aug 24, 2026, the average yearly pay for robotics engineer in Cary, NC is $107,630.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,100.00 and $129,400.00 per year, depending on experience, location, and employer.

What does a robotics engineer do?

A Robotics Engineer designs, builds, and tests robots and robotic systems that are able to perform tasks typically done by humans. They work on integrating hardware and software to create machines that can automate processes in industries such as manufacturing, healthcare, and logistics. Their responsibilities often include researching new technologies, programming robotic systems, troubleshooting issues, and collaborating with other engineers. Robotics Engineers play a key role in advancing automation and improving efficiency and safety in various sectors.

What does a robotics engineer do?

A robotics engineer designs and often builds robots from their plans and ensures the correct processes are in place for the robot to run properly. They work with their clients to determine costs and design specifications, then they design software systems to control robotic systems; build, configure, and test robots; and automate processes to increase production and precision. Once the robotic system is in place, the robotics engineer helps troubleshoot any problems the clients have with the system.

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

To thrive as a Robotics Engineer, you need a strong background in mechanical engineering, electrical engineering, and computer science, typically backed by a relevant bachelor's or master's degree. Familiarity with programming languages like Python or C++, CAD software, and robotics platforms such as ROS (Robot Operating System) is essential. Problem-solving skills, creativity, and effective teamwork are standout soft skills in this field. These competencies are crucial for designing, building, and refining innovative robotic systems that meet complex technical and user requirements.

What types of projects do robotics engineers typically collaborate on with cross-functional teams?

Robotics Engineers often work closely with professionals from software development, mechanical engineering, and electrical engineering to design, build, and test robotic systems. Projects can range from automating manufacturing processes to developing autonomous vehicles or medical robots. Collaboration is essential, as engineers must integrate hardware and software components while ensuring systems meet safety and performance standards. Effective communication and teamwork are key to successfully bringing innovative robotics solutions from concept to reality.

What is the difference between Robotics Engineer vs Mechanical Engineer?

AspectRobotics EngineerMechanical Engineer
Required CredentialsBachelor's in Robotics, Mechanical, Electrical Engineering or related field; certifications in robotics or automationBachelor's in Mechanical Engineering; Professional Engineer (PE) license optional
Work EnvironmentDesigning, testing, and programming robotic systems in labs or manufacturing settingsDesigning and analyzing mechanical systems in various industries, including manufacturing, automotive, aerospace
Industry UsageRobotics companies, automation firms, manufacturingManufacturing, automotive, aerospace, product design

Robotics Engineers focus on designing and developing robotic systems, combining knowledge of mechanical, electrical, and software engineering. Mechanical Engineers have a broader scope, working on mechanical systems across multiple industries. While both roles require engineering degrees, Robotics Engineers often need specialized skills in programming and automation. The choice depends on your interest in robotics and automation versus general mechanical system design.

Do robotics engineers make a lot of money?

Robotics engineers typically earn competitive salaries that vary based on experience, education, and location. According to industry data, the median annual wage for robotics engineers is higher than the average for engineering roles, reflecting the specialized skills and knowledge required in designing and developing robotic systems. Advanced skills in programming, control systems, and CAD tools can also influence earning potential.

Is there a high demand for robotics engineers?

Robotics engineers are in high demand across industries such as manufacturing, healthcare, and automation due to the increasing adoption of robotics technology. The field is expected to grow significantly as companies seek to improve efficiency and develop advanced robotic systems, often requiring skills in programming, control systems, and hardware design.

What are the most commonly searched types of Robotics Engineer jobs in Cary, NC?

The most popular types of Robotics Engineer jobs in Cary, NC are:

What are popular job titles related to Robotics Engineer jobs in Cary, NC?

For Robotics Engineer jobs in Cary, NC, the most frequently searched job titles are:

What job categories do people searching Robotics Engineer jobs in Cary, NC look for?

The top searched job categories for Robotics Engineer jobs in Cary, NC are:

What cities near Cary, NC are hiring for Robotics Engineer jobs?

Cities near Cary, NC with the most Robotics Engineer job openings:

Infographic showing various Robotics Engineer job openings in Cary, NC as of August 2026, with employment types broken down into 60% Full Time, 20% Part Time, and 20% Contract. Highlights an 100% In-person job distribution, with an average salary of $107,630 per year, or $51.7 per hour.

Industrial Engineer (3279)

Socket.dev

Mebane, NC • On-site

$75 - $110/hr

Other

Posted 5 days ago


Job description

Job Details

Job Location: Mebane - Mebane , NC 27302Position Type: Full TimeEducation Level: 4 Year DegreeTravel Percentage: NegligibleJob Shift: DayJob Category: EngineeringPower a Sustainable Future with Us At Sunlight Batteries USA, we are driven by a shared purpose: to deliver innovative energy solutions that improve lives and protect the environment. Our team is passionate about advancing battery technology and energy storage systems that power industries and communities around the world.

Your Impact

As an Industrial Engineer, you will play a critical role in supporting and optimizing lithium-ion battery manufacturing operations. You will drive improvements in safety, quality, productivity, and efficiency by analyzing manufacturing processes, identifying opportunities for automation and continuous improvement, and collaborating across departments to solve complex operational challenges. In this role, your contributions will directly influence production performance, product quality, and the scalability of manufacturing operations. Through data-driven decision making, process standardization, and technical problem-solving, you will help create a safer, more efficient, and more reliable manufacturing environment.

What You\'ll Do
  • Process Optimization & Manufacturing Support: Analyze, design, and optimize manufacturing workflows for lithium-ion battery assembly operations. Conduct time studies, motion analysis, and line balancing activities to improve throughput, efficiency, and labor utilization. Monitor and analyze key manufacturing performance metrics including OEE, cycle time, scrap rates, downtime, and productivity trends. Identify, recommend, and implement process improvements that enhance operational performance and product quality. Design and optimize plant layouts, workstation ergonomics, and material flow to support safe and efficient operations.
  • Automation, Welding & Technical Support: Support and continuously improve laser welding processes utilized in battery module assembly operations. Partner with Production, Quality, and Maintenance teams to troubleshoot process issues and drive sustainable solutions. Collaborate with automation and controls teams to support KUKA robotic welding systems and robotic manufacturing cells. Apply robotics and automation knowledge to improve manufacturing reliability, reduce downtime, and enhance production efficiency.
  • Documentation, Systems & Standards: Develop, maintain, and update Standard Operating Procedures (SOPs), work instructions, and manufacturing process documentation. Create and maintain engineering documentation to support current and future product launches. Maintain Bills of Materials (BOMs) and support production data management within SAP. Ensure manufacturing processes comply with company safety standards, quality requirements, and battery handling procedures. Support process validation activities and documentation requirements related to manufacturing changes.
  • Continuous Improvement & Problem Solving: Lead and participate in Lean Manufacturing and continuous improvement initiatives across the facility. Conduct root cause investigations and support corrective and preventive actions (CAPA) to improve operational stability and product quality. Utilize data analysis and structured problem-solving methodologies to eliminate waste and improve manufacturing performance. Support implementation of best practices that improve safety, quality, delivery, and cost performance.
  • Cross-Functional Collaboration: Partner closely with Production, Quality, Maintenance, Engineering, Supply Chain, and other stakeholders to achieve operational goals. Provide technical support and training as needed to ensure successful process implementation and adoption. Support new equipment, process improvements, and manufacturing readiness initiatives.
Qualifications

What You\'ll Bring

  • Bachelor\'s degree in Industrial Engineering, Manufacturing Engineering, Mechanical Engineering, or a related technical field.
  • 1-2+ years of experience in a manufacturing, industrial, or production environment.
  • Strong understanding of: Lean Manufacturing principles; Process optimization methodologies; Time studies and work measurement techniques; Continuous improvement tools and practices; Basic knowledge of laser welding processes, preferably within battery manufacturing, metal assembly, or related industries.
  • Exposure to KUKA robotic systems, including KUKA Robot Control (KRC) and Smart Pendant functionality.
  • Working knowledge of SAP, including production, inventory, or manufacturing-related modules.
  • Strong analytical, problem-solving, organizational, and communication skills.
  • Ability to effectively prioritize work in a fast-paced manufacturing environment.
Preferred Qualifications
  • Experience within lithium-ion battery manufacturing, lead-acid battery manufacturing, automotive, or other high-volume manufacturing environments.
  • Familiarity with robotic automation systems and automated manufacturing cells.
  • Basic PLC troubleshooting or programming knowledge.
  • Experience using AutoCAD or facility/layout design software.
  • Six Sigma Green Belt certification or willingness to obtain certification.
  • Knowledge of welding quality standards, inspection methods, and process validation techniques.
  • Experience supporting new equipment launches, production ramp-ups, or manufacturing process development.
Physical Requirements & Work Environment

Work is performed in a manufacturing and plant floor environment. Regular exposure to battery materials, welding operations, automation systems, and industrial equipment. Required use of Personal Protective Equipment (PPE). Ability to walk and stand for extended periods throughout the workday. Ability to occasionally lift up to 35 pounds, with or without reasonable accommodation.

Eligibility Requirements

Employment-based visa sponsorship is not available for this position.

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