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45-Day PIC Microcontroller Bootcamp

Master PIC Microcontroller Programming and Embedded Systems Design in Just 45 Days—From Basics to Advanced Concepts!

所有級別493 講座終身訪問
45-Day PIC Microcontroller Bootcamp
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認識您的導師:Educational Engineering Team

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5.0 / 5.0
全球評級
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活躍的學生
2.05小時 53分
總內容

你將學到什麼

Understand the architecture and operation of PIC microcontrollers – Gain a solid foundation in how PIC microcontrollers work, including their internal component
Develop and debug PIC microcontroller programs – Write, compile, and troubleshoot embedded code using industry-standard tools and techniques.
**Design and implement embedded systems** – Build functional, real-world projects using PIC microcontrollers and external components like sensors and displays.
Master advanced microcontroller techniques – Utilize peripherals, timers, and interrupts to create sophisticated and responsive

課程內容

16 部分493 講座2.05:53:18 總長度

Introduction

02:05

Who We Are

免費預覽
05:23

Overview and The Software to be used

免費預覽
05:55

Compilation Process and Your First C Project

03:29

How to increase the font size in the Programming environment

01:19

Why C and Basic Program Structure

02:43

Variables

03:11

Statement and Operators

04:38

LOOP Statements

03:32

Conditions Using If and Switch

05:15

Numbering System

05:15

Using Functions

05:05

Using Operators

04:25

Digital Inputs and Delay Loops

04:12

End

00:47

Download and Install Microsoft Visual Studio

04:21

Basics + Create Your First Project

09:54

Basic Input and Output using Console Methods

07:29

Code Your First Project

09:27

String Arguments Explained

07:59

Syntax Basics

05:42

Data Types

10:10

Operators

14:04

Operators Example

07:31

Practice Example

07:49

If Else + Nested If

09:40

If Statement

04:39

Decision Making using Switch Case

09:40

While Loop + Do While

11:35

For Loop

06:30

Introduction

02:57

Who We Are

05:23

How to install Proteous Professional

11:00

Overview and the software to be used

05:55

How to Install MikroC Pro for PIC Programming

02:56

Compilation Process and Your First C Project

03:29

How to increase the font size in the Programming Environment

01:19

Why C and Basic Program Structure

02:43

Variables

03:11

Statements and Operators

04:38

LOOP Statements

03:32

Conditions if and Switch

05:15

Numbering System

05:15

Using Operators

04:25

Using Functions

05:05

Digital Inputs and Delay Loops

04:12

First Project in Proteus

02:41

First Project in MikroC

05:25

How to Deal with PIC Ports + First Code

06:51

Necessary Connections

02:28

Simple LED example to get things on the right track

05:53

Lighting LED Follower Example

10:46

Control LED Using Push Buttons

05:47

Flasher Circuit PIC Microcontroller

03:24

Controlling Seven Segment using BCD Counter PIC Microcontroller

06:26

Controlling LCD using PIC Microcontroller

08:51

Display and Move Text on LCD

03:37

PIC Manufacture Microship Company

03:33

Dot Matrix Control

10:23

Stepper Motor Control

13:04

Keypad Interface and control with PIC Microcontroller

09:45

Programming PIC and Circuit Prototyping

06:52

Dot Matrix Control

10:23

PIC Architecture and PIC Families

05:59

Harvard Architecture vs Von Neoman Architecture

06:10

PIC16F84 Microcontrollers Explained

04:23

Single Word Instructions

04:04

System Reset

08:05

Ports

02:18

PIC Architecture 2 Ports and Registers

03:41

Status Register

04:43

Option Register

04:56

Banking Mechanism

05:34

SFRs and GPRs

05:37

Memory Organization

05:38

Analog To Digital Conversion

06:41

ADC Module in PIC16F877A

08:26

ADC Module Configuration Bits and Example

04:04

Interrupts and External Interrupt Source

04:28

PortB Line Change Interrupt Source

02:04

EEPROM Data Write Interrupt

01:35

Interrupt Handlers and INTCON Register

06:30

Option Register

04:13

Programming the External Interrupt RB0 Example

06:14

PortB 4 7 Status Change Interrupt

04:42

RB0 and RB4-7 Interrupt Example

05:53

Serial Communication Introduction and Basics

06:52

Synchronous Serial Transmission and RS232

03:20

Essential Concepts in Serial Communication

03:39

PIC TO PIC And PIC TO PC Communication

04:52

Experiment #9 Analog Digital Conversion

08:03

Experiment #10 Unipolar Stepper Motor Control

09:03

Experiment #11 Dot-Matrix Display

07:22

Experiment #12 Serial Interface with PIC Microcontroller

04:56

Introduction

04:34

Voltage Current and Resistance

05:45

Types of Current

02:32

Types of Circuits

01:50

Volt Ohm Meter Basics

04:44

Measuring Voltage

12:29

Measuring Current

05:01

Measuring Currents - Lab Experiment Explained

10:38

Measuring Resistance

07:53

Circuit Diagram Basics and Basic Symbols

12:14

Power Dissipation and Parallel and Series Resistors

12:17

Introduction To Resistor and Color Band Coding

08:56

Ohm's Law

13:44

Capacitors Behavior and Series and Parallel

06:55

Introduction to Inductors

07:00

Introduction to Diode Zener and LED

08:27

Introduction to Transistors

09:45

Introduction To Capacitors

11:02

Introduction

01:52

Who We Are

05:23

Interrupts and External Interrupt Source

04:28

PortB Line Change Interrupt Source

02:04

EEPROM Data Write Interrupt

01:35

Interrupt Handlers and INTCON Register

06:30

Option Register

04:13

Programming the External Interrupt RB0 Example

06:14

PortB 4 7 Status Change Interrupt

04:42

RB0 and RB4-7 Interrupt Example

05:53

Serial Communication Introduction and Basics

06:52

Synchronous Serial Transmission and RS232

03:20

PIC TO PIC And PIC TO PC Communication

04:52

Serial Communication Example PIC TO PC

12:11

Timers and Counters

03:50

Timer0 Interrupt

02:54

Delay Using Timer0

04:19

Timer0 Interrupt Programming Delay Loops

08:07

Interrupt Driven Timers

02:23

Timers0 as a Counter

03:29

End of Course

01:58

Download and Install MikroC Software

11:22

Download and Install Proteus Software

11:00
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要求

No prior experience with PIC microcontrollers needed – All foundational concepts will be covered from scratch.

Basic knowledge of electronics is helpful – Understanding basic circuits and components will enhance your learning experience.

Access to a computer with internet connectivity – Necessary for downloading software tools and viewing course content.

Optional: A PIC microcontroller development kit – Recommended for hands-on practice, but not required.

目標受眾

Aspiring embedded systems engineers who want to develop skills in microcontroller programming and system design.

Electronics enthusiasts and hobbyists eager to learn how to create and control microcontroller-based projects.

Engineering students seeking practical experience with embedded systems as part of their academic curriculum.

Professionals in tech fields looking to expand their expertise in microcontrollers and embedded systems for career advancement.

關於本課程

Unlock the power of PIC microcontrollers and transform your embedded systems skills with this comprehensive 45-Day PIC Microcontroller Mastery Bootcamp. Whether you're a beginner or an intermediate learner, this course is meticulously designed to take you from the basics of microcontroller programming to advanced embedded systems design.


Over the span of 53 hours and 35 minutes of detailed video content, you will dive deep into the world of PIC microcontrollers. Starting with the fundamentals, you will progress through practical, hands-on projects that will solidify your understanding and give you real-world experience. Learn to code, debug, and build powerful microcontroller-based systems with confidence.


Why Choose This Course?







  • Expert-Led Training: Learn from seasoned professionals with years of experience in microcontroller programming and embedded systems.
  • Practical Projects: Engage in projects that mirror real-world applications, making your learning experience not just theoretical, but practical and applicable.
  • Comprehensive Curriculum: From setup to advanced programming techniques, every aspect of PIC microcontrollers is covered in this bootcamp.
  • Step-by-Step Guidance: Follow a clear, structured path to mastering PIC microcontrollers, even if you’ve never programmed before.


Testimonials from Previous Students:







  • "This course is a game-changer! I went from knowing nothing about PIC microcontrollers to designing my own systems in just 45 days." — John D.
  • "The hands-on projects were incredibly helpful. I now feel confident tackling complex embedded systems projects at work." — Sarah T.
  • "The instructor's expertise is evident throughout the course. The way complex topics are broken down is brilliant." — Michael W.


About the Instructor: This course is brought to you by the Educational Engineering Team, a group of industry professionals with extensive experience in microcontroller programming, embedded systems design, and technical education. With a passion for teaching and a commitment to helping learners succeed, the team has trained thousands of students to excel in their careers.


What You Will Learn







  • Introduction to PIC Microcontrollers: Understand the architecture and functionality of PIC microcontrollers.
  • Programming Essentials: Learn to write, compile, and debug programs using popular PIC programming tools.
  • Hands-On Projects: Build and test real-world embedded systems using PIC microcontrollers.
  • Advanced Techniques: Master the use of peripherals, timers, and interrupts in PIC microcontrollers.
  • Embedded Systems Design: Gain skills in designing and implementing complex embedded systems for various applications.


Who Is This Course For?







  • Beginners in microcontroller programming who want to gain solid foundational skills.
  • Electronics hobbyists looking to enhance their knowledge and create advanced projects.
  • Engineering students needing practical experience with embedded systems.
  • Professionals in the tech industry seeking to upgrade their skills and stay competitive.


Requirements







  • No prior experience with PIC microcontrollers is needed, though basic knowledge of electronics is helpful.
  • A computer with internet access to download programming tools and watch course videos.
  • A PIC microcontroller kit for hands-on projects (recommended, but not required).
職業發展機會與目標職位

掌握前沿實務技能,勝任全球高薪核心職務

就業就緒型課程
可應徵的目標職位

Embedded Systems Engineer

IoT Firmware Developer

Hardware Prototyping Specialist

PCB & Circuit Layout Designer

預估年薪範圍
$85,000 – $135,000 / yr
全球產業需求

Top 5% Growing Engineering Segment

掌握的核心關鍵技能
Microcontroller Architecture
Hardware-Software Integration
Sensor Protocols (I2C, SPI, UART)
Schematic & Circuit Diagnostics
* 估算數據基於全球科技產業薪酬指標與市場招聘報告。
認識您的講師
5.0 評級
95 學生
看完整資料
Educational Engineering Team
主要導師
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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