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PIC Microcontroller: Learn By Building Practical Projects (コース)

Learn PIC Microcontroller By Creating Real Life Practical Projects with your own Hands in this Step By Step Guide

すべてのレベル17 講義生涯アクセス
Educational Engineering Team

認定マスターインストラクター

PIC Microcontroller: Learn By Building Practical Projects
トレーラー
インストラクターに会う: Educational Engineering Team

18 ms

5.0 / 5.0
グローバル評価
1時間 5分
総コンテンツ

何を学ぶか

Connect different type of sensors and actuators to PIC Microcontroller
Interface different type of electronic elements with PIC Microcontroller.
Use sensors and actuators to make useful projects
Program, burn a code and wire PIC Microcontroller

コース内容

5 セクション17 講義01:05:09 全長

Introduction

05:42

First Project Goal and Components

無料プレビュー
02:10

null

First Project Circuit

無料プレビュー
03:37

First Project Code Explained

04:39

First Project Simulation

04:21

Burning The Code To PIC Microcontroller

03:59

First Project Practical Work

04:39

Second Project Goal and Components

04:44

Second Project Circuit

03:52

Second Project Code

05:16

Second Project Simulation

05:43

Second Project Practical Work

03:46
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要件

Basic Knowledge in Electronics Circuits

Basic Knowledge in Circuit Design

Basic Knowledge in C Language

対象者

Anyone with a curiosity for making electronics

Anyone wants to move from Simulation to Practical Work

Anyone intersted in building real things

People with no experience in electronics

このコースについて

PIC Microcontroller: Learn By Building Practical Projects


A PIC microcontroller is a small and inexpensive computer chip designed to allow easy programming and control of electronic devices. The PIC microcontroller is used in a broad range of applications, including motor control, data logging, and data acquisition. It can be used in many different settings, including small robots, appliances, and even the automation of household tasks.


Learning by theory and simulation is only half the answer, but connecting, wiring, and programming an actual microcontroller, not just a simulated one, is the other more important half. This course covers that essential part, teaching you through practical projects.


Why You Should Take This Course:



  • Step-by-Step Guide: Comprehensive video lectures guiding you through each step.
  • Real-World Application: Apply the course material to real-world projects.
  • Practical Training: Hands-on learning to see how theory works in practice.
  • Learn the Basics: Understand PIC microcontroller fundamentals.
  • Code in C: Learn how to program using the C language.
  • Build Projects: Create practical projects with your own hands.


Student Testimonials:



  • Nathan Johnnie: "It is a great course; well done."
  • Mike D.: "Excellent delivery, full of useful information. Already started making my first motion detector, many thanks to you."


Course Highlights:


Learning by doing makes a significant difference between someone who learns and someone who applies what they learned. This course provides the opportunity to see PIC microcontrollers in action, starting from simulation to connecting the hardware and testing the code in real life. This will ensure your circuit works as expected, and you can witness the successful completion of your first PIC microcontroller project.


When a circuit works in simulation, it doesn’t always work in real life. In more than 85% of cases, the simulated circuit doesn’t work when connected physically. This course focuses on real-world application, making you proficient in building and testing circuits with actual hardware.


What You Will Learn:



  • The basics of PIC microcontrollers
  • How to code in C
  • Practical project building with PIC microcontrollers
  • Connecting and testing hardware components
  • Hands-on skills for real-world applications


Who is This Course For:



  • Beginners and intermediate learners interested in microcontrollers
  • Hobbyists and DIY enthusiasts
  • Students and professionals looking to enhance their skills
  • Anyone who prefers hands-on learning and practical application


Requirements:



  • No prior experience needed
  • Basic understanding of electronics is helpful but not necessary
  • A computer with internet access
  • Willingness to learn and experiment
キャリア機会と目指せる職種

実践的な実務スキルを身につけ、グローバルに活躍できる職種へのキャリアを拓きます

実践即戦力カリキュラム
目指せる主な職種・ポジション

Embedded Systems Engineer

IoT Firmware Developer

Hardware Prototyping Specialist

PCB & Circuit Layout Designer

想定平均年収
$85,000 – $135,000 / yr
世界的な市場需要

Top 5% Growing Engineering Segment

習得できる実践スキル
Microcontroller Architecture
Hardware-Software Integration
Sensor Protocols (I2C, SPI, UART)
Schematic & Circuit Diagnostics
* グローバルなテクノロジー業界の採用基準および給与調査レポートに基づいた目安です。
講師の紹介
Educational Engineering Team
主な講師
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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