[150] Arduino Getting Started: Analog output and fading LED @TechExplorations_
[150] Arduino Getting Started: Analog output and fading LED  @TechExplorations_
Uploaded June 2024 | Updated September 2026, 2 weeks ago
In this video, we delve into using Pulse Width Modulation (PWM) to control the brightness of an external LED connected to Digital Pin 11 of an Arduino Uno. This tutorial builds on our previous LED blink project, using the same circuit setup to demonstrate how PWM can simulate analog output for varied device control, including LEDs and motors. By varying the duty cycle of the PWM signal, we achieve a smooth fade-in and fade-out effect on the LED, showcasing the versatility and practical applications of PWM.

This series is possible thanks to the kind support of Sunfounder, an online store that sells high-quality hardware and kits for Makers. Visit Sunfounder at https://sunfounder.com.

In this series, I use the SunFounder 3 in 1 Ultimate Starter Kit with Original Arduino Uno R4 Minima, including high-quality sensors, actuators, power supplies, and Original Arduino Uno R4 Minima for diverse projects and skill-building. Get it (affiliate link): sunfounder.com/collections/arduino-kits/products/sunfounder-3-in-1-ultimate-starter-kit-with-original-arduino-uno-r4-minima?ref=bXS65iah

đź•’ Timestamps:

00:00 - Introduction to controlling LED brightness with PWM.
00:05 - Explanation of PWM and its role in simulating analog outputs.
00:20 - Overview of PWM applications for LEDs and motors.
00:36 - Reminder that no changes are needed to the circuit setup from the previous LED blink tutorial.
00:47 - Quick invitation to newcomers to watch the previous LED blink video for setup instructions.
01:02 - Introduction to the coding phase for implementing PWM.
01:17 - Starting the Arduino programming for fading effects.
01:31 - Detailed coding instructions for increasing and decreasing LED brightness using PWM.
02:07 - Configuration of digital pin 11 as an output pin.
02:21 - Code walkthrough for the continuous fade-in and fade-out effects.
02:35 - Explanation of the PWM brightness control loop.
03:25 - Description of the code that gradually decreases the LED's brightness.
03:56 - Final steps to upload the code and observe the LED in action.
04:09 - Discussion on the practical implications and possibilities of using PWM.
04:20 - Call to action: like, subscribe, and comment for more Arduino tutorials.
04:30 - Closing remarks and encouragement to continue exploring Arduino projects.

For additional insights and upcoming projects, make sure to subscribe and follow our channel. Happy making!
[150] Arduino Getting Started: Analog output and fading LEDBOM Matching for PCB Assembly — Exporting from KiCad & Finding Real Parts with BOM ExplorerKiCad 8 - Your first KiCad project previewKiCad 8 - Your first project - Start hereHome Bitcoin Mining with Avalon Q: Real Results, Solar Setup & Profitability[170] Arduino Getting Started: Analog input potentiometer exampleIntroduction to Electronics: Key principles in electronicsTech Explorations Makers talk: Presenting WIZcubeArduino Environment Monitor Project - The 2×16 Liquid Crystal Display (LCD)Introduction to Electronics: What is this course about?KiCad 8: Simulator - custom signals, new simulation typesKiCad 8 - PCB  Manufacturing
Tech Explorations |

[150] Arduino Getting Started: Analog output and fading LED

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER