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Robotics Engineering & Applications
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  2. Physical Science and Engineering
  3. Mechanical Engineering

Diese kurs ist nicht verfügbar in Deutsch (Deutschland)

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L&T EduTech

Robotics Engineering & Applications

Dieser Kurs ist Teil von Spezialisierung Collaborative Robotics in Industry

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3 Module
Verschaffen Sie sich einen Einblick in ein Thema und lernen Sie die Grundlagen.
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Stufe Mittel

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Empfohlene Erfahrung

Stufe „Mittel“

Basics on Industrial Manufacturing, Fundamentals on Introductory Mechatronics , Introductory Electronics, Applied Physics

Es dauert 7 Stunden
3 Wochen bei 2 Stunden pro Woche
Flexibler Zeitplan
In Ihrem eigenen Lerntempo lernen

3 Module
Verschaffen Sie sich einen Einblick in ein Thema und lernen Sie die Grundlagen.
4.4

(25 Bewertungen)

Stufe Mittel

Empfohlene Erfahrung

Empfohlene Erfahrung

Stufe „Mittel“

Basics on Industrial Manufacturing, Fundamentals on Introductory Mechatronics , Introductory Electronics, Applied Physics

Es dauert 7 Stunden
3 Wochen bei 2 Stunden pro Woche
Flexibler Zeitplan
In Ihrem eigenen Lerntempo lernen
  • Info
  • Ergebnisse
  • Module
  • Empfehlungen
  • Referenzen

Kompetenzen, die Sie erwerben

  • Kategorie: Robotic Process Automation
    Robotic Process Automation
  • Kategorie: Program Development
    Program Development
  • Kategorie: Engineering
    Engineering
  • Kategorie: Automation
    Automation
  • Kategorie: Automation Engineering
    Automation Engineering
  • Kategorie: Electronics
    Electronics
  • Kategorie: Manufacturing Processes
    Manufacturing Processes
  • Kategorie: Mechanical Design
    Mechanical Design
  • Kategorie: Control Systems
    Control Systems
  • Kategorie: Mechanical Engineering
    Mechanical Engineering
  • Kategorie: Equipment Design
    Equipment Design
  • Kategorie: Image Analysis
    Image Analysis
  • Kategorie: Internet Of Things
    Internet Of Things
  • Kategorie: Computer Vision
    Computer Vision

Wichtige Details

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3 Aufgaben

Unterrichtet in Englisch

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Dieser Kurs ist Teil der Spezialisierung Spezialisierung Collaborative Robotics in Industry
Wenn Sie sich für diesen Kurs anmelden, werden Sie auch für diese Spezialisierung angemeldet.
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In diesem Kurs gibt es 3 Module

The "Robotics Engineering & Applications" course stands as a beacon of innovation and opportunity in the realm of collaborative robotics. Comprising three dynamic modules, participants embark on a transformative journey delving into the essentials of robotic engineering, advanced programming techniques, and the integration of vision systems in designing and building robots for real-world applications. This course is meticulously crafted to cater to the diverse learning needs of undergraduate students of Mechanical & Mechatronics Engineering, students specializing in robotics & automation, post-graduate students of Mechanical Engineering & Computer-Aided Manufacturing Engineering, as well as practicing engineers in automation environments.

At its core, the course emphasizes a hands-on approach to learning, ensuring participants are equipped with practical skills and theoretical knowledge essential for success in the field of collaborative robotics. The prerequisites of the course lay a solid foundation, covering basics on industrial manufacturing, fundamentals of introductory mechatronics, introductory electronics, and applied physics. Armed with this knowledge, participants are prepared to dive into the intricacies of robotic engineering and applications. The first module, "Robotic Engineering Essentials," serves as the cornerstone of the course, providing participants with a comprehensive understanding of robotic manipulator design, gripper designs, and the fundamentals of robot programming. Participants will explore the intricacies of designing and configuring robotic systems tailored to specific industrial requirements, laying the groundwork for subsequent modules. The second module, "Robot Programming and Vision Systems," delves into advanced programming techniques and the integration of vision systems in robotic applications. Participants will learn to harness the power of cameras, image processing, and object recognition techniques to enhance robot perception and decision-making capabilities. The module also explores the application of machine vision in industrial processes, equipping participants with the skills to analyze and interpret visual data for a wide range of applications. In the final module, "Design & Robot Building and Applications," participants will put their newfound knowledge into practice, undertaking the challenge of designing and building their own robots for real-world applications. From conceptualization to implementation, participants will learn to navigate the intricacies of robot design, integrating components seamlessly to achieve optimal performance. Furthermore, the module explores the implementation of Industrial Internet of Things (IIoT) in robotics, empowering participants to leverage interconnected devices and sensors to enhance automation and efficiency in industrial settings. Upon completion of this course, participants will emerge with a diverse set of skill sets essential for success in the field of collaborative robotics. From robotic manipulator design to robot programming, participants will gain proficiency in designing, programming, and implementing robotic systems tailored to specific industrial requirements. Furthermore, participants will be equipped with the knowledge and expertise to integrate vision systems and IIoT technologies, revolutionizing automation and efficiency in industrial processes. In conclusion, the "Robotics Engineering & Applications" course offers a transformative learning experience for individuals aspiring to excel in the dynamic field of collaborative robotics. Through a blend of theoretical knowledge, practical skills, and hands-on experience, participants emerge as innovators poised to make meaningful contributions to the future of industrial automation.

Robotic Engineering and Automation integrate mechanical, electrical, and computer engineering to develop intelligent systems, enhancing efficiency and safety in industries. Industrial robots, equipped with programmable control systems, perform tasks with precision and consistency, organized with meticulous arrangement of components for optimal performance and adaptability. Understanding robotic configurations, kinematics, and dynamics guides the selection and design process, ensuring effective task execution and spatial manipulation capabilities.

Das ist alles enthalten

17 Videos1 Aufgabe

17 Videos•Insgesamt 119 Minuten
  • About the Specialization•4 Minuten•Modulvorschau
  • About the Course•2 Minuten
  • Introduction to Robotic Engineering & Automation•8 Minuten
  • Introduction of Industrial Robot•5 Minuten
  • Organization of an Industrial Robot•7 Minuten
  • Applications of Robot Manipulator•4 Minuten
  • Robotic Configurations in Applications Perspective•9 Minuten
  • Industrial Robot - Joints, Robot Wrist Configurations •4 Minuten
  • Selection of Robots•11 Minuten
  • Industrial Robot – Mechanical Gripper•6 Minuten
  • Other Type of Robotic Grippers for Various Applications•7 Minuten
  • Robot Kinematics - Forward and Inverse •5 Minuten
  • Robot Dynamics & Control of Robotic Vehicles•5 Minuten
  • Forward Kinematics of RR Robot •9 Minuten
  • Inverse Kinematics of RR Robot •3 Minuten
  • 4 DOF 3D Manipulator - Forward and Reverse Robot Kinematics•19 Minuten
  • Homogenous Transformation in Robot Kinematics•6 Minuten
1 Aufgabe•Insgesamt 30 Minuten
  • Assessment on Robotic Engineering - Essentials •30 Minuten

Robot programming methods, including teach pendant, offline simulation, and script-based programming, offer flexibility and efficiency in task deployment, involving motion path definition and end-effector configuration. Evolution in programming techniques, supported by standardized languages like ROS and RAPID, ensures seamless integration and adaptability, illustrated through collaborative Robot programming and practical vision system applications for enhanced perception and decision-making in diverse industries.

Das ist alles enthalten

18 Videos1 Aufgabe

18 Videos•Insgesamt 131 Minuten
  • Teach Pendant - Manual Control Method•6 Minuten•Modulvorschau
  • Robot Programming Techniques - Part 1•7 Minuten
  • Robot Programming Techniques - Part 2•4 Minuten
  • Robot Programming Languages•10 Minuten
  • Robot Programming with Case Study -Part 1•9 Minuten
  • Robot Programming with Case Study -Part 2•7 Minuten
  • Introduction to Robotic Vision and Cameras (CCDs and CIDs) - Part 1•7 Minuten
  • Introduction to Robotic Vision and Cameras (CCDs and CIDs) - Part 2•7 Minuten
  • Vision System & Lighting Techniques •7 Minuten
  • Sensing, Frame Grabbing and Digitizing•6 Minuten
  • Image Processing - Part 1•6 Minuten
  • Image Processing - Part 2•5 Minuten
  • Image Processing - Segmentation•7 Minuten
  • Image Analysis•9 Minuten
  • Object Recognition/Detection Algorithm - Part 1•6 Minuten
  • Object Recognition/Detection Algorithm - Part 2•6 Minuten
  • Robotic Vision Systems in Industries - Introduction•6 Minuten
  • Robotic Vision Systems in Industries - Case Study•8 Minuten
1 Aufgabe•Insgesamt 30 Minuten
  • Assessment on Robot Programming & Vision Systems •30 Minuten

Robot design involves meticulous consideration of criteria such as payload capacity, reach, speed, and precision, with iterative testing and optimization ensuring efficiency and reliability. End effectors, critical for functionality, must align with task requirements and the robot's capabilities, emphasizing adaptability and specific application needs. Integration of IoT enhances connectivity and data exchange, optimizing decision-making processes and promoting efficiency in robotic applications.

Das ist alles enthalten

16 Videos1 Aufgabe

16 Videos•Insgesamt 135 Minuten
  • Selection & Design Criteria for Robot & Industrial Robot•10 Minuten•Modulvorschau
  • Selection & Design Criteria of Robot End Effector•4 Minuten
  • Robot Design Procedure•6 Minuten
  • Energy for Robots•10 Minuten
  • Robot Communication - Part 1•8 Minuten
  • Robot Communication - Part 2•5 Minuten
  • Robot Communication - Part 3•7 Minuten
  • IoT in Robotics•9 Minuten
  • Robotic Operating Systems - Part 1•5 Minuten
  • Robotic Operating Systems - Part 2•7 Minuten
  • Robotic Projects Part 1•8 Minuten
  • Robotic Projects Part 2•6 Minuten
  • Robotic Projects Part 3 with Demo•10 Minuten
  • Robotic Application in Automobile Assembly•12 Minuten
  • Robotic Application in Welding Operation•16 Minuten
  • Robotic Application in Painting & Sheet Metal Operation•6 Minuten
1 Aufgabe•Insgesamt 30 Minuten
  • Assessment on Robot Building & Applications•30 Minuten

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L&T EduTech
118 Kurse•124.204 Lernende

von

L&T EduTech

von

L&T EduTech

Larsen & Toubro popularly known as L&T is an Indian Multinational conglomerate. L&T has over 8 decades of expertise in executing some of the most complex projects including the World's tallest statue - the Statue of Unity. L&T has a wide portfolio that includes engineering, construction, manufacturing, realty, ship building, defense, aerospace, IT & financial services. L&T EduTech is a e learning platform within the L&T Group, that offers courses that are curated & delivered by industry experts. In the world of engineering and technology, change and advancements are happening at the speed of light. Academia needs to keep pace with this change and career professionals need to adapt. This is the need gap L&T EduTech will fill. The vision for L&T EduTech is to be the bridge between academia and industry, between career professionals and ever-changing technology. L&T EduTech firmly believes that, only when these need gaps are filled, will we have truly empowered and knowledgeable workforce that will lead India in the future.

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