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IT i oprogramowanie/Sprzęt komputerowy/Arduino

Arduino Based Solar Tracker (Kurs)

Master Electronics, Programming, and Renewable Energy by Building Your Own Solar Tracking System with the Arduino Platfo

Wszystkie poziomy • 9 Wykłady • Dożywotni dostęp
Educational Engineering Team

Sprawdzony Mistrz Instruktor

Arduino Based Solar Tracker
PRZYCZEPA
Poznaj swojego instruktora: Educational Engineering Team

19 ms

5.0 / 5.0
Globalna ocena
1 godz. 41 min
Całkowita zawartość

Czego się dowiesz

The basic concept of solar tracking and its importance in harnessing maximum solar energy will be discussed.
students will learn the basic requirements on course
Students will learn about the software needed for the project and how it works with the circuit and code.
Students will learn how to write code for the project using the Arduino programming language. They will learn about coding concepts such as functions, variables
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Treść kursu

3 sekcji • 9 wykłady • 01:41:12 długość całkowita

Introduction

05:17

Requirements

Bezpłatny podgląd
10:12

Component description

05:35

Software requirement and circuit explanation

07:07

Circuit Design

10:27

Coding part 1

08:02

Coding part 2

05:54

Project Demonstration

18:05

Bonus Lecture

30:29
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Wymagania

Basic knowledge of electronics: Students should have a basic understanding of electronic components and circuits, such as resistors, capacitors, and transistors.

Basic knowledge of programming: Students should have a basic understanding of programming concepts, such as variables, loops, and functions. Familiarity with the C programming language is helpful, but not required.

Familiarity with the Arduino platform: Students should have a basic understanding of the Arduino platform and its development environment.

helpful if students have a background in engineering or technology, as these skills will be useful when working on the project

Grupa docelowa

Hobbyists and makers: This course can be a good fit for those who enjoy DIY projects and learning about new technologies.

Engineering and technology students: Students studying engineering or technology can benefit from learning about solar trackers and how to build one using the Arduino platform.

Renewable energy professionals: This course can be valuable for professionals in the renewable energy industry who want to learn about solar trackers and how to integrate them into their projects.

Anyone interested in learning: The course is also suitable for anyone who is interested in learning about electronics, programming, and renewable energy, regardless of their background or experience level.

O tym kursie

Are you interested in electronics, programming, and renewable energy? In this course, you will learn how to build your own solar tracking system using the Arduino platform. From circuit design to coding, this course covers all the fundamentals you need to know to build a functioning solar tracker.


Objectives:


  • Learn about solar trackers and their importance
  • Design and assemble a circuit using electronic components
  • Write code for the project using the Arduino programming language
  • Hands-on demonstration of how to assemble the circuit and program the Arduino board
  • Test and troubleshoot the project, and discuss potential applications and future improvements


Why Should You Take This Course?


  • Hands-on Experience: The course provides students with hands-on experience in building a solar tracker from scratch, allowing them to apply the concepts and theories they learn in a practical setting.
  • Understanding of Renewable Energy: By building a solar tracker, students will gain a deeper understanding of the principles of renewable energy and how it can be harnessed for practical applications.
  • Development of Technical Skills: The course will help students develop a range of technical skills, including circuit design, coding, and troubleshooting, which are valuable in many areas of engineering and technology.
  • Exposure to New Technologies: Students will be exposed to cutting-edge technologies, including the Arduino platform and solar tracking systems, and will learn how they can be used to solve real-world problems.
  • Career Opportunities: Upon completion of the course, students will have a portfolio of projects that demonstrate their skills and experience in electronics, programming, and renewable energy, which can help them to pursue careers in these fields.


For example, a student who completes this course may use the knowledge and skills they have learned to build a solar tracking system for their home, school, or community, allowing them to reduce their energy consumption and contribute to a more sustainable future. They may also use their experience to pursue a career in the renewable energy industry, where their expertise in building solar trackers will be in high demand.


Sign up today and take your first step toward building your own solar tracker!


What You Will Learn


  1. Fundamentals of solar trackers and their importance.
  2. Circuit design and assembly for solar tracking systems.
  3. Writing and debugging code for the Arduino platform.
  4. Hands-on assembly and programming of an Arduino-based solar tracker.
  5. Testing, troubleshooting, and future improvements for solar tracking systems.


Requirements or Prerequisites


  1. Basic understanding of electronics and programming concepts.
  2. Access to the required components (listed in the course) for building the project.
  3. A computer for programming the microcontroller and uploading data online.


Who Is This Course For


  1. Beginners: With no prior IoT or programming experience.
  2. Students: Studying electronics, computer science, or related fields.
  3. Hobbyists: Interested in building their own renewable energy projects.
  4. Professionals: Looking to enhance their skills in IoT and renewable energy applications.


About the Instructor


Educational Engineering Team


Team of Skilled Engineers Sharing Knowledge with the World


The Educational Engineering Team is a leading force in the Microcontroller Industry, boasting over 13 years of experience in teaching and practical projects. Their courses provide hands-on, real-world knowledge, enabling immediate application in projects and daily life. Led by Ashraf, an educator and Mechatronics engineer, the team is passionate about sharing their collective expertise. With over 250,000 students taught worldwide, Educational Engineering offers comprehensive courses, articles, and online support in various STEM fields. Ashraf's dedication to simplifying complex concepts through engaging content has garnered praise from students globally, making Educational Engineering a trusted resource for aspiring engineers and hobbyists alike.

Możliwości Kariery i Stanowiska Docelowe

Zdobądź praktyczne umiejętności i kwalifikuj się na kluczowe stanowiska na świecie

Program Gotowy do Pracy
Stanowiska, na które możesz aplikować

Embedded Systems Engineer

IoT Firmware Developer

Hardware Prototyping Specialist

PCB & Circuit Layout Designer

Szacowane Wynagrodzenie Roczne
$85,000 – $135,000 / yr
Globalne Zapotrzebowanie Rynkowe

Top 5% Growing Engineering Segment

Kluczowe Umiejętności, które Zdobędziesz
Microcontroller Architecture
Hardware-Software Integration
Sensor Protocols (I2C, SPI, UART)
Schematic & Circuit Diagnostics
* Szacunki oparte na globalnych raportach płacowych branży technologicznej.
Poznaj swojego instruktora
Educational Engineering Team
5.0 Ocena
95 Studenci
Plan osobisty Lucebra
Educational Engineering Team
Główny Instruktor
Educational Engineering Team is a Leading Team in Microcontroller Industry, with over 13 Years of Experience in Teaching and Doing Practical Projects.

Educational Engineering Team is a group of skilled engineers dedicated to sharing practical knowledge with learners worldwide. Founded by Ashraf Said Al-Madhoun, the team has worked in programming, microcontrollers, electronics, and engineering education since 2007.

Rather than offering superficial explanations, the team breaks down complex topics into clear, step-by-step lessons supported by practical projects and bite-sized videos. This hands-on approach helps learners understand technical concepts and apply them directly to their studies, careers, and personal projects.

Ashraf is a Mechatronics Engineer, educator, author, electronics and programming enthusiast, and maker. As Chief Educational Engineer, he specializes in explaining challenging concepts in a simple, structured, and accessible way. He has extensive teaching experience and has authored four books about microcontrollers.

Educational Engineering Team has created more than 100 online courses covering circuit design, electronics simulation, PCB fabrication, Arduino, PIC microcontrollers, Raspberry Pi, C, Python, PLC programming, industrial automation, 3D design, ESP boards, embedded systems, and the Internet of Things.

In addition to producing courses, bootcamps, articles, and tutorials, the team supports electronics and programming enthusiasts, STEM students, educators, and aspiring engineers. Its members also provide engineering consultation and guidance for student graduation projects, helping learners develop practical skills and prepare for careers in the technology industry.

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