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Robotics Perception Engineer Jobs in South Carolina

Production Engineer (Controls focused)

Anderson, SC ยท On-site

$76K - $98K/yr

Integrate and support Fanuc robotics and Keyence vision/laser systems for automated inspection and ... perception and ability to adjust focus. * The performance of this position requires exposure to ...

Production Engineer (Controls focused)

Anderson, SC ยท On-site

$76K - $98K/yr

Integrate and support Fanuc robotics and Keyence vision/laser systems for automated inspection and ... perception and ability to adjust focus. * The performance of this position requires exposure to ...

Experience with ROS (Robot Operating System) or ROS 2 software libraries. * Experience with ... This perception system will be a key enabler for autonomous ships to navigate safely without human ...

Hands-on experience with automation systems (robotics, PLCs, vision systems, conveyors, etc ... perception, and ability to adjust focus. Use of vision correction is acceptable, if necessary ...

Hands-on experience with automation systems (robotics, PLCs, vision systems, conveyors, etc ... perception, and ability to adjust focus. Use of vision correction is acceptable, if necessary ...

... and robots used in manufacturing * Designing tools that other engineers need for their work ... perception, and the ability to adjust focus. * May be exposed to chemicals related to office ...

New

MOR PPM, Inc.

Aiken, SC ยท On-site

Partner with Engineering team to install, test, and release equipment * Knowledge of recording ... Associates degree in Electronics, General Technology, Robotics or related field and at least 3 ...

Robot and PLC programming * Project Management services * Equipment Relocation (Rigging ... Vision requirements: close vision, distance vision, peripheral vision, and depth perception and ...

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Robotics Perception Engineer information

What is a robotics perception engineer?

Robotics Perception Engineers are professionals who specialize in enabling robots to interpret and understand their environment using sensors and data processing algorithms. They work on developing and implementing computer vision, sensor fusion, and machine learning techniques so that robots can perceive objects, people, and surroundings. Their work is crucial for applications such as autonomous vehicles, drones, industrial automation, and service robots. By improving a robot's ability to 'see' and make sense of the world, they help create safer and more effective robotic systems.

What are the key skills and qualifications needed to thrive as a robotics perception engineer?

To thrive as a Robotics Perception Engineer, you need strong expertise in computer vision, sensor fusion, machine learning, and proficiency in programming languages like C++ and Python, often supported by a degree in robotics, computer science, or a related field. Familiarity with tools and frameworks such as ROS (Robot Operating System), OpenCV, and deep learning libraries, as well as experience with sensors like LiDAR and cameras, is typically required. Excellent problem-solving abilities, teamwork, and adaptability help set standout professionals apart in this role. These competencies are crucial for enabling robots to accurately interpret and interact with their environment, leading to robust and reliable autonomous systems.

What are some common challenges faced by robotics perception engineers when integrating new sensors into autonomous systems?

Robotics Perception Engineers often encounter challenges such as sensor calibration, data synchronization, and managing varying data quality when integrating new sensors. Ensuring that sensor data is accurately aligned in time and space is crucial for reliable perception in autonomous systems. Additionally, engineers must address the complexities of fusing data from multiple modalities (like cameras, LiDAR, or radar) while optimizing processing efficiency. Close collaboration with hardware and software teams is essential to troubleshoot integration issues and achieve robust, real-time perception.

What is the difference between Robotics Perception Engineer vs Computer Vision Engineer?

AspectRobotics Perception EngineerComputer Vision Engineer
Required CredentialsBachelor's or Master's in Robotics, Computer Science, or Electrical Engineering; experience with perception algorithmsBachelor's or Master's in Computer Science, Electrical Engineering, or related fields; strong programming skills in vision processing
Work EnvironmentRobotics labs, autonomous vehicle companies, industrial automationSoftware companies, tech startups, research labs focusing on image and video analysis
Industry UsageAutonomous vehicles, robotics, manufacturingHealthcare, security, consumer electronics, automotive

Robotics Perception Engineers focus on developing perception systems specifically for robots, integrating sensors and perception algorithms for navigation and interaction. Computer Vision Engineers primarily develop algorithms for interpreting visual data across various applications. While both roles require strong programming and understanding of perception, Robotics Perception Engineers specialize in sensor fusion and real-time processing within robotic systems, whereas Computer Vision Engineers work more broadly on image analysis and recognition tasks.

What job categories do people searching Robotics Perception Engineer jobs in South Carolina look for?

The top searched job categories for Robotics Perception Engineer jobs in South Carolina are:

What cities in South Carolina are hiring for Robotics Perception Engineer jobs?

Cities in South Carolina with the most Robotics Perception Engineer job openings:

Infographic showing various Robotics Perception Engineer job openings in South Carolina as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Production Engineer (Controls focused)

JTEKT North America

Anderson, SC โ€ข On-site

$76K - $98K/yr

Full-time

Re-posted 6 days ago


Job description

JTEKT North America is a global leader in engineering and manufacturing automotive systems, bearing solutions, and high-performance machine tools. As a proud member of the Toyota Group, we are committed to innovation, quality, and continuous improvement. Our Piedmont plant has undergone a major expansion, bringing in over 120 new machines and automation systems, creating exciting opportunities for growth and advancement.
Summary/Purpose
As a Control Engineer, you'll be the go-to expert for designing, programming, and optimizing advanced automation systems. You'll work with cutting-edge tech like Mitsubishi and Allen-Bradley PLCs, Fanuc robotics, and Keyence vision systems, all while helping us scale up our high-volume, 24/7 production lines.
Essential Duties and Accountabilities:
  • Architect and program PLC/SCADA/HMI systems for high-volume, 24/7 production lines using Mitsubishi, Allen-Bradley, and Fanuc PMC platforms.
  • Integrate and support Fanuc robotics and Keyence vision/laser systems for automated inspection and traceability.
  • Collaborate with Process Engineering, Quality, and Corporate PE teams to deploy turnkey automation cells and support new product launches.
  • Lead root-cause analyses to resolve technical issues and reduce unplanned downtime.
  • Drive data-driven improvements using OEE, SPC, and other analytics tools to enhance quality and efficiency.
  • Design and develop tooling, fixtures, and gauging to support robust and repeatable manufacturing processes.
  • Analyze and optimize processes to improve quality, reduce costs, and shorten cycle times.
  • Update and manage engineering documentation and implement process changes in support of APQP and PPAP.
  • Commission and validate new equipment to meet production and quality standards; evaluate and adjust spare parts strategies.
  • Conduct equipment capability studies, develop PFMEAs, and manage capital equipment purchases.
  • Generate detailed engineering reports and lead projects related to process changes and new product introductions.
  • Support 5S and safety initiatives to maintain a clean, organized, and efficient work environment.
  • Mentor and assist maintenance and production teams with troubleshooting and long-term system reliability.
  • Take ownership of additional responsibilities as assigned by management.
  • Work overtime as needed to support production schedules, equipment launches, or urgent troubleshooting.
  • Other duties as assigned by management

Supervisory Responsibilities:
  • This position has no supervisory responsibilities.

Job Knowledge, Skills and Abilities:
  • Proficient in PLC/HMI programming (Mitsubishi, Allen-Bradley) and SCADA systems for high-volume automation. Experience in Fanuc robotics, Keyence vision systems, and laser marking integration is preferred.
  • Strong problem-solving skills for automated equipment troubleshooting and root cause analysis; ability to read and develop electrical schematics and troubleshoot complex control systems.
  • Experienced in controls software development, implementation, and debugging.
  • Effective in cross-functional collaboration and managing capital projects and use of data analytics tools (OEE, SPC) to drive performance improvements.
  • Knowledge of the following: Lean, Six Sigma, TPS, IATF 16949 and engineering documentation standards for process optimization and continuous improvement.
  • Commitment to safety and 5S (maintaining a clean and efficient work environment)

Education and Experience:
  • Bachelor of Science in Engineering (Electrical, Mechatronics, Automation or related field) and/or equivalent combination of education and relevant experience
  • 3+ years of experience in automotive (preferred) or high-volume manufacturing.
  • 3+ years of experience in electrical and controls design for automated equipment; controls software development, implementation and troubleshooting.

Work Environment/Physical Demands:
The work environment characteristics described here are representative of those an employee encounters while performing the essential functions of this job. The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodation may be made to enable individuals with disabilities to perform the essential functions.
  • Work shift as assigned and overtime is required, as needed.
  • Will be required to do the following throughout the shift: standing, bending, pushing, pulling, reaching above and below shoulders, moving left to right repetitively, grasping, and fine finger dexterity.
  • May be required to lift during shift up to 40 lbs.
  • Specific vision abilities required with this job include close vision, distance vision, color vision, peripheral vision, depth perception and ability to adjust focus.
  • The performance of this position requires exposure to manufacturing areas which require the use of personal protective equipment such as steel-toed shoes, safety glasses with side shields.
  • Forklift, walkee stacker, and or scissor lift experience.