Industrial Robotics Software Engineer

Viable Engineering Solutions LLCOrlando, FL
$50 - $70Onsite

About The Position

We are seeking an Industrial Robotics Software Engineer to develop advanced automation solutions that integrate software, industrial robotics, machine vision, and sensor technologies. This role combines C# software development, robotic path planning, computer vision, and automation system integration. This position is ideal for an engineer who enjoys combining software development, robotics, computer vision, and automation technologies to solve complex manufacturing and industrial challenges.

Requirements

  • Bachelor's degree in Computer Science, Computer Engineering, Robotics, or a related field.
  • Strong proficiency in C# and object-oriented software development.
  • Experience with .NET, Dependency Injection, WPF, and MVVM architecture.
  • Experience with development tools such as Visual Studio and Git.
  • Knowledge of linear algebra, trigonometry, and applied mathematics for robotics applications.
  • Experience with or strong familiarity with 6-axis industrial robots (Fanuc, ABB, KUKA, Yaskawa, or similar).
  • Experience with robotic motion control, path planning, and collision avoidance concepts.
  • Knowledge of machine vision and image processing tools such as OpenCV, Cognex, or Keyence.
  • Experience integrating sensors, PLCs, motor control systems, and industrial communication devices.
  • Strong troubleshooting, analytical, and problem-solving skills.

Nice To Haves

  • Familiarity with CAD/CAM, robotic simulation, or offline programming software is a plus.

Responsibilities

  • Develop rapid prototypes and perform feasibility studies for robotic automation applications.
  • Design, develop, test, and support software applications using C#, .NET, WPF, and MVVM.
  • Develop software and communication interfaces for Fanuc and other 6-axis industrial robots.
  • Create libraries and APIs for interfacing with external devices and sensors, including cameras, laser profilometers, ultrasonic probes, PLCs, motor controllers, and digital I/O systems.
  • Develop and optimize robotic path planning, motion control, collision avoidance, and offline programming tools.
  • Implement computer vision solutions using stereo vision, image processing, and 3D object localization technologies.
  • Develop calibration processes for robotic cells, tooling, and workpiece positioning.
  • Evaluate and validate the performance, accuracy, and feasibility of sensors, vision systems, and motion planning algorithms.
  • Collaborate with engineering teams to commission, troubleshoot, and continuously improve automated systems.
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