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Since April 2021
Instructor since April 2021
Automotive Communication protocols (CAN/LIN) from Engineering perspective
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From 45.77 € /h
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Course Description: CAN/LIN Protocols in Embedded Systems

Course Title: Embedded Systems Communication: CAN/LIN Protocols

Course Overview:
The "Embedded Systems Communication: CAN/LIN Protocols" course is designed to provide students with a comprehensive understanding of the Controller Area Network (CAN) and Local Interconnect Network (LIN) protocols used in embedded systems. The course aims to equip students with the necessary knowledge and skills to design, implement, and troubleshoot communication systems based on these protocols. Through a combination of theoretical lectures, hands-on lab exercises, and practical projects, students will gain a deep understanding of CAN/LIN protocols and their applications in various industries.

Course Objectives:
1. Understand the fundamental principles and concepts of CAN/LIN protocols.
2. Learn about the structure and architecture of CAN/LIN networks.
3. Explore the advantages, limitations, and trade-offs of using CAN/LIN in embedded systems.
4. Gain practical experience in designing and implementing CAN/LIN communication systems.
5. Develop skills in troubleshooting and debugging CAN/LIN networks.
6. Explore real-world applications of CAN/LIN protocols in automotive, industrial, and other embedded systems.
7. Understand the integration of CAN/LIN protocols with other communication interfaces.

Course Outline:

Module 1: Introduction to CAN/LIN Protocols
- Overview of embedded systems communication
- Evolution and history of CAN and LIN protocols
- Comparison of CAN and LIN with other communication protocols
- Application areas and industry standards

Module 2: CAN Protocol Fundamentals
- CAN bus architecture and components
- Physical and data link layers of the CAN protocol
- Message formats, identifiers, and addressing
- Error detection and fault tolerance mechanisms
- CAN protocol timing and synchronization

Module 3: LIN Protocol Fundamentals
- LIN network topology and components
- LIN frame structure and message types
- Master-slave communication and scheduling
- LIN protocol configuration and initialization
- Fault detection and handling in LIN networks

Module 4: CAN/LIN Network Design and Implementation
- Hardware requirements for CAN/LIN communication
- CAN/LIN transceivers and controllers
- Network topology and node addressing
- Bus arbitration and message prioritization
- Software development for CAN/LIN systems

Module 5: CAN/LIN Network Diagnostics and Troubleshooting
- CAN/LIN network analysis tools and techniques
- Error detection, fault localization, and error recovery
- Diagnostic trouble codes and error reporting
- Strategies for debugging and optimizing CAN/LIN systems

Module 6: Applications of CAN/LIN Protocols
- CAN/LIN in automotive systems: vehicle networks, diagnostics, and control systems
- CAN/LIN in industrial automation: process control, sensors, and actuators
- CAN/LIN in consumer electronics and home automation
- Integration of CAN/LIN with other communication interfaces (e.g., Ethernet, SPI, I2C)

Module 7: Project Work
- Hands-on projects involving the design and implementation of CAN/LIN communication systems
- Real-world case studies and application development
- Team-based projects to apply the acquired knowledge and skills

Prerequisites:
- Basic knowledge of embedded systems and microcontroller programming
- Understanding of digital electronics and computer architecture
- Familiarity with C or C++ programming language
- Passionate about the automotive field

Assessment Methods:
- Quizzes and exams to assess theoretical knowledge
- Assignments to evaluate practical implementation skills
- Project work and presentations to assess application and problem-solving abilities

By the end of this course, students will have a solid foundation in the theory, implementation, and troubleshooting of CAN/LIN protocols in embedded systems. They will be prepared to work on projects and develop communication systems based on CAN/LIN, enabling them to contribute to various industries where embedded systems play a crucial role.
Extra information
Laptop is optional
Location
location type icon
Online from Morocco
About Me
State Engineer at Embedded Systems and Digital Services
Level :Bac +5
Spoken Languages: English - French - Arabic - Spanish (Beginner)
Happy to Make you Enjoy Learning and Improving your Skills ™️
Education
Engineering degree at Institut national des postes et télécommunications INPT Rabat,
Previously Studied in the preparation classes (CPGE)
Bac Sc Math A-Mention Very good
Experience / Qualifications
Working as Software Engineer in one of Companies Leader in Automotive Industry.
Worked As Campus Director for Hult Prize Foundation (2019)
Always Ready for New Challenges!
Age
Teenagers (13-17 years old)
Adults (18-64 years old)
Seniors (65+ years old)
Student level
Beginner
Intermediate
Advanced
Duration
60 minutes
The class is taught in
English
French
Arabic
Availability of a typical week
(GMT -05:00)
New York
at teacher icon
Online via webcam
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
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Avoiding common mistakes made by OOP beginners
Structure your JavaScript code like a professional developer

📖 Training Plan – Object-Oriented Programming in JavaScript
1. Introduction to Object-Oriented Programming 🧠
Understanding the concept, objectives and benefits of OOP.
2. Procedural Programming vs. OOP
Why unstructured code quickly becomes unmanageable.
3. Objects in JavaScript
Properties, methods and representation of the real world.
4. The keyword this
Understanding the execution context (often poorly understood).
5. Limitations of simple objects
Why duplicating code is a bad idea.
6. Constructive functions
Create multiple objects from the same model.
7. The keyword new
What it's actually doing under the hood.
8. The prototype
Sharing methods and memory optimization.
9. ES6 Classes
Modern syntax and best practices.
10. The builder
Proper initialization of objects.
11. Data Encapsulation
Protect the internal state of objects.
12. Inheritance between classes
Reusing code intelligently.
13. The keyword super
Communication between parent and child in the classroom.
14. Polymorphism
The same behavior, several forms.
15. Composition vs. Inheritance
Choosing the right architecture.
16. Best practices in OOP
Write readable, scalable, and maintainable code.
17. Common mistakes made by beginners
Pitfalls to absolutely avoid.
18. Guided practical exercise
Creation of a concrete class (product, user, etc.).
19. Assessment Quiz (Multiple Choice Questions)
To validate the actual understanding of the concepts.

🛠️ Teaching method: Understand before writing

This training program is based on a progressive and pragmatic approach:
Clear and illustrated explanations
Concrete examples from real projects
Simple but effective exercises
Constant questioning to avoid rote learning
Adaptation to the learner's level and pace
Here, we don't "recite OOP" — we understand it.

🚀 Learner's result

At the end of the training, you will not only know how to write a JavaScript class.
You will know:

1- Why does it exist?
2- When to use it
3- and when not to use it

You will leave with:
a solid understanding of OOP
a cleaner and more professional code
an ideal foundation for learning React, Node.js or any other modern framework
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Hi, I’m Madhav (Canada, ET). I am an MSc in Computer Science with 7+ years of professional experience building real-world software systems in multiple programming languages (python/javascript/C#).

I provide tutoring in python programming and computer science subjects.

Who I work best with:
Beginners who want a clear path into software development and programming.
Students pursuing Computer Science studies.
Self-taught learners who feel “stuck” and need structure + accountability.
Developers preparing for interviews and aiming for better roles.

In the first lesson, I’ll assess where you are and create a plan based on your target role and timeline. Every session is practical: you’ll code, get feedback, and leave with clear next steps.
Good-fit Instructor Guarantee
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