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Sensors, Actuators, LEDs, Switches, PORTS, Timers, PWM, ADC, LCD, Projects, Develop Embedded Systems with Embedded C AVR
Updated on Sep, 2026
IT and Software , Hardware, Embedded Systems
Duration - 8.5 hours
Training 5 or more people ?
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This course Demystifies the internal working of Microcontroller and Peripherals. You will learn register-level Embedded C programming to use inbuilt peripherals on the microcontroller to interface sensors, actuators, and Liquid Crystal Displays (LCD) . You will learn to use Timers to generate accurate delays, Use timers to generate Pulse Width Modulation (PWM) Waveforms with variable duty cycle. Learn to use analog to digital converter (ADC) to gather data from analog sensors and display it to LCDs.
Each section ends with a Quiz to examine your learning outcomes from this course. All the codes (C Programs) are available in resources along with the lecture material.
This is NOT Arduino Style Programming!!
I believe that Arduino is for quick prototyping of products but not for Mastering Microcontrollers and peripherals. In Arduino, you use many Third-Party Libraries, In this course, you will be writing your own libraries, and Your code will be talking and manipulating microcontroller registers, True Register Level programming is presented in this course. Major Topics Covered
Masking : Learn to manipulate (Set/Reset) a particular bit in a port or MCU register without altering other bits.
Pull-up Register : Learn the importance of pull-up resistors, enabling and disabling them, and learn to use them in interfacing digital sensors.
Timers : Learn to write C programs to generate accurate delays using MCU Timers.
Pulse Width Modulation : Learn to generate a PWM wave with a variable duty cycle using MCU timers and PWM registers.
Liquid Crystal Display : Learn to interface LCDs with MCUs using GPIOs, No third-party library is used for LCDs. You will learn to write your own library for LCDs.
Analog to Digital Converter : Learn to interface analog sensors such as a potentiometer to read voltage across them.
Temperature Monitoring System: Learn to interface the LM35 temperature sensor IC to read ambient temperature and display the same on the LCD.
Speed Control of a DC Motor: Learn to control the Direction and Speed of a DC Motor using the half-bridge integrated circuit L293D and the PWM Technique. Vary the Speed using a POT connected to the ADC, and vary the PWM duty cycle accordingly.
Learn the basics of Embedded C
Developing Embedded System around AVR Microcontroller
Master Masking Technique in C
Interface Sensors and Actuators using GPIOs / Ports
Demystify Timers to write delays
Learn how to generate PWM, also learn to vary Duty Cycle and Frequency of PWM Wave
Interface Liquid Crystal Displays (LCDs) to print Characters, String, and integers. Learn to write Library for LCD
Interface Analog Sensors using inbuilt analog to digital converters
Be familiar with any programming language, Basics only
Check out the detailed breakdown of what’s inside the course
I am a certified trainer with over 11 years of experience as a professional trainer and product design engineer. My areas of interest are Embedded System design, IoT design, front end VLSI design. Certified in the Internet of Things, Embedded system, and VLSI. My teaching strategy is to start slow and then gradually increase complexity to ensure that students achieve learning outcomes.
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