Unlock the potential of ATtiny microcontrollers and enhance your Arduino programming skills. This course covers ATtiny variants, flashing methods, and essential development tools. By the end, you’ll confidently program ATtiny chips for real-world applications, from LED control to sensor-based projects.



ATtiny Microcontroller Development for Arduino Programmers

Instructeur : Packt - Course Instructors
Inclus avec
Expérience recommandée
Ce que vous apprendrez
Set up and program ATtiny microcontrollers using Arduino IDE and VS Code
Implement power-efficient ATtiny projects with deep sleep modes
Build interactive projects using LEDs, sensors, and shift registers
Design and 3D print enclosures for custom ATtiny applications
Détails à connaître

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Il y a 15 modules dans ce cours
In this module, we will introduce the course and set expectations for what you will learn. We will cover the instructor's background, course prerequisites, and structure, ensuring you have the necessary tools and knowledge to begin. Additionally, we will provide guidance on downloading essential code snippets and discuss the flexibility in implementing different approaches.
Inclus
7 vidéos1 lecture
In this module, we will explore the basics of ATtiny microcontrollers, including their architecture, variants, and programming languages. We will also discuss how to flash ATtiny, analyze pinout configurations, and examine critical features like clock speed, power consumption, and brown-out detection.
Inclus
12 vidéos1 devoir
In this module, we will walk through setting up the development environment for ATtiny programming. You will learn how to install ATtiny cores, configure different IDEs, and set up various upload devices to program the microcontroller efficiently.
Inclus
9 vidéos1 devoir
In this module, we will write and upload our first ATtiny sketch using different upload techniques. You will learn how to program the microcontroller using Arduino IDE, VS Code PlatformIO, and Digispark ATtiny85 while experimenting with Arduino UNO and USB-ISP as programming interfaces.
Inclus
7 vidéos1 devoir
In this module, we will create a project using PWM to control three LEDs. We will explore wiring, write the necessary source code for an RGB LED, and even incorporate 3D printing to enhance the final design.
Inclus
6 vidéos1 devoir
In this module, we will develop a digital dice using LEDs and ATtiny. We will examine randomness in microcontrollers, refine button handling techniques, and improve the dice’s functionality by adding effects and a compact 3D-printed case.
Inclus
9 vidéos1 devoir
In this module, we will build an advanced digital dice using WS2812b LEDs and FastLED. You will learn how to program custom lighting effects, manage button inputs efficiently, and complete the project with a 3D-printed case.
Inclus
7 vidéos1 devoir
In this module, we will construct a binary clock keychain using an RTC module and a shift register. You will learn to read and display time in binary format while implementing LED control logic and 3D printing an enclosure.
Inclus
11 vidéos1 devoir
In this module, we will build a plant monitor powered by a CR2032 battery. You will learn how to read soil moisture levels, optimize power consumption using deep sleep modes, and integrate a buzzer for alerts.
Inclus
10 vidéos1 devoir
In this module, we will enhance the plant monitoring system with an OLED display. You will learn how to present real-time sensor readings, visualize data using graphics, and implement deep sleep functionality for prolonged battery life.
Inclus
9 vidéos1 devoir
In this module, we will create a unique circuit board pendant that plays melodies. You will learn how to wire up sound and light components, program musical sequences, and enhance the project with interactive touch sensors.
Inclus
9 vidéos1 devoir
In this module, we will experiment with transistor circuits, incorporating a reed switch and a clap detector. You will gain hands-on experience in creating interactive electronic projects that respond to sound and magnetic triggers.
Inclus
7 vidéos1 devoir
In this module, we will build a mini weather station using a temperature sensor and an OLED display. You will learn to wire components, configure software settings, and display real-time temperature readings.
Inclus
4 vidéos1 devoir
In this module, we will explore how to create a USB Rubber Ducky using Digispark ATtiny85. You will analyze the provided source code, understand how USB automation works, and discuss ethical considerations.
Inclus
1 vidéo1 devoir
In this module, we will summarize the course’s key concepts and projects. You will revisit important takeaways, explore potential applications, and get recommendations for advancing your ATtiny and Arduino programming skills.
Inclus
1 vidéo1 devoir
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Foire Aux Questions
Yes, you can preview the first video and view the syllabus before you enroll. You must purchase the course to access content not included in the preview.
If you decide to enroll in the course before the session start date, you will have access to all of the lecture videos and readings for the course. You’ll be able to submit assignments once the session starts.
Once you enroll and your session begins, you will have access to all videos and other resources, including reading items and the course discussion forum. You’ll be able to view and submit practice assessments, and complete required graded assignments to earn a grade and a Course Certificate.
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