
Explore Windows 10 IoT Core on Raspberry Pi using Visual Studio and C#, harness UWP APIs, and develop sensor I/O projects with remote debugging and setup.
Explore Windows 10 Internet of Things Core for Raspberry Pi, outline hardware specs, setup via Windows 10 Internet of Things dashboard, and cross-platform UWP development with Visual Studio.
Download and install Visual Studio Community Edition, enable Universal Windows Platform and IoT toolsets, sign in to access extensions, and configure for Raspberry Pi IoT projects.
Download the Windows 10 IoT Core dashboard and flash the operating system onto an SD card for Raspberry Pi 2 and 3.
Set up the raspberry pi hardware and software by connecting a wifi adapter, sd card, and usb power, then boot the OS and verify network access via browser.
Connect a Raspberry Pi Model B to Windows IoT, verify connectivity with ping, upgrade software, and run an example to turn the LED on GPIO seven.
Learn how to assign a fixed IP address to your Raspberry Pi by locating its MAC address in the router settings. Ensure reliable remote control by avoiding dynamic IPs.
Explore the Windows device portal walkthrough to connect to a Windows IoT device, sign in with administrator credentials, browse apps and files, manage network settings, and enable remote access.
Explore the Raspberry Pi model B, its 900 megahertz quad-core ARM Cortex-A7 CPU, 1 gigabyte RAM, and 40-pin GPIO header; review HDMI, USB-C, camera CSI, and SD card.
Enable developer mode, install IoT templates, and create a universal Windows C# blank project; define gpio pins, timer, and a solid color brush to blink a Raspberry Pi LED.
Learn to wire a led to a Raspberry Pi general purpose input/output pin by connecting the led’s anode and cathode to 3.3 volt or 5 volt, using the pinout.
Learn windows iot by blinking an led via a timer and i/o pins, while designing a user interface with a panel, ellipse, and text blocks in visual studio and blend.
Learn to control a Raspberry Pi IoT project with Visual Studio Universal Windows, reading a push button and driving an LED via GPIO pins using C#.
Wire a Raspberry Pi with an LED, 220 ohm resistor, and a button to gpio pins, then deploy and test lid control via Visual Studio.
Learn home automation with Raspberry Pi and Windows 10 IoT, build a home user interface, and address devices via Arduino.
Explore the hardware and software requirements for a Windows IoT home automation project, including Raspberry Pi 2 Model B, Arduino, PIR and LDR sensors, relays, and programming tools.
Set up a Raspberry Pi with Arduino boards per room, using I2C with unique slave addresses to exchange sensor data and relay control of devices.
Map device addresses by combining room and device numbers to identify each device; Raspberry Pi acts as the primary controller with room-specific Arduino slaves, enabling rule-driven on/off control.
Discover how to download and install Fritzing to design circuits and schematics with a breadboard-style interface, explore Arduino components, and save or share schematic images on Windows, Mac, and Linux.
Draw and assemble a circuit schematic using Fritzing, adding Arduino, Raspberry Pi models, sensors, and I2C devices; download libraries, drag and drop parts, and prepare for coding the boards.
Power the Arduino and wire five volts and ground to alarm 35, ADR, and PR sensors, then connect the Raspberry Pi via clock and data lines on A4 and A5.
Learn to wire a home appliance with a relay module and control it from an Arduino, using line and neutral as a switch for 220-volt AC, with safety precautions.
Understand how a relay module uses an energized coil to attract a plate, close a circuit, and switch a fan or lamp via common, normally open, and normally closed terminals.
Learn how a Raspberry Pi 2 and Arduino communicate with a three-byte send and fourteen-byte response to read sensors and control devices via a Visual Studio C# user interface.
Explore a three-mode communication protocol between Raspberry Pi and Arduino, using three-byte commands and fourteen-byte responses to read sensor data and control devices via pin states.
Using Windows IoT has a lot of benefits:
Platform Power: Windows can be used as a platform to power IoT devices.
Lightweight: Windows IoT Core is a tiny, lightweight version of Windows that runs on devices with as little as 256 MB of RAM.
Advanced Technologies: It comes with UWP technologies like Cortana and Universal apps for creating your own IoT devices.
Remote Access: Access your device remotely using any supported web browser or Microsoft remote desktop client.
Compatibility: Windows IoT Core supports .NET Standard 2.0, providing compatibility with popular open-source libraries.
First, we will help you get started with Windows IoT Core on Raspberry Pi. Then you will learn how to home automate using Raspberry Pi and Windows IoT.
Course Features:
9 Hours of HD Content: Tap the power of Windows IoT Core and master embedded systems programming on Raspberry Pi using Windows IoT Core.
In-Depth Learning: Explore how to communicate the Arduino with the Pi using an I2C bus and Windows IoT Core.
Regular Updates: Raspberry Pi lectures are added regularly.
Cross-Platform Development: Learn about Visual Studio, the C# programming language, remote step-wise debugging, Windows applications development, PowerShell, and more.
Hands-On Projects: Engage in practical programming and electronics projects with Raspberry Pi and Windows IoT.
What You Will Learn:
Getting Started with Windows IoT Core on Raspberry Pi
Visual Studio Integration
C# Programming Language
Remote Step-Wise Debugging
Windows Applications Development
PowerShell
Home Automation Using Raspberry Pi and Windows IoT:
Use Raspberry Pi and Windows to build a home automation system that can operate home devices automatically.
Control multiple devices (Light, Fan, Wall Socket) and sensors (PIR, Temperature, LDR).
Step-by-step coding and hardware setup.
Create a fully automated home with the latest technologies.
Why Windows IoT Core?
Built for Small, Secure, Smart Devices: The smallest Windows OS with manageability and security.
AI and ML Integration: Easily bring AI and ML to the edge.
Long-term Security: Help keep devices secure for the long term.
Fast Deployment: Quickly get IoT devices to market with out-of-the-box OS support.
User Testimonials and Social Proof:
"This course provided everything I needed to start my journey in IoT. The hands-on projects were particularly helpful!" - Jane D.
"The step-by-step guidance and clear explanations made it easy to understand complex topics." - John S.
An Author Bio Showing Off Credentials: Educational Engineering Team
Team of skilled Engineers Sharing Knowledge with the World
Educational Engineering Team is a Leading Team in Microcontroller Industry, with over 13 Years of Experience in Teaching and Doing Practical Projects.
We strive to put all our hands-on experience in these courses. Instead of superficial knowledge - we go into the depth of the topic and give you the exact - step-by-step blueprint on how to tame simple as well as complex topics in easy and digestible bite-sized videos.
This real-world knowledge enables you to grasp knowledge easily, and you can apply this learning immediately to your life and projects.
Educational Engineering Team has been in the Programming and Microcontroller business since 2007. We have been part of many projects. Over the course of these years - we have gained a good insight into students’ and educators’ needs. We are passionate about sharing all our collective knowledge with you. As of 2018, we have already taught over 250k-THOUSAND students and counting.
Currently, we have more than 100+ Courses on Udemy.
Educator and Author of "Educational Engineering".
Ashraf is an educator, Mechatronics engineer, electronics and programming hobbyist, and Maker. He creates online video courses on the EduEng YouTube Channel (More Than 4 Million Views, 20k+ Subscribers) and is the author of four Microcontroller books.
As a Chief Educational Engineer since 2007 at Educational Engineering Team, the company he founded, Ashraf’s mission is to explore new trends and technology and help educate the world and make it a better place.
Educational Engineering offers educational courses and Bootcamps, articles, lessons, and online support for electronics hobbyists, Programming hobbyists, Microcontroller hobbyists, STEM students, and STEM teachers.
That team also works as freelancer engineers, helping many students in their graduation projects, and provides guidance and consulting for many students over the years to help them kick-start their career.
Ashraf’s core skill is explaining difficult concepts in a step-by-step easy-to-understand manner using video and text. With over 11 years of tertiary teaching experience, Ashraf has developed a simple yet comprehensive and informative style in teaching that students from all around the world appreciate.
His passion for Microcontrollers and Programming, and in particular for the world of Arduino, PIC Microcontroller, and Raspberry Pi, has guided his personal development and his work through Educational Engineering.
Ashraf’s online courses have helped over 250,000 people from around the world to be better and to make a great career in the industry.
Educational Engineering Team offers courses on:
Circuit Design, Simulation, and PCB Fabrication
Arduino, PIC Microcontroller, and Raspberry Pi
Programming in C, Python, and other programming languages
PLC Industrial Programming and Automation
3D Design and Simulation
ESP and IoT World
A Single Powerful CTA: Enroll now and unlock the potential of Windows IoT Core for your IoT projects!
FAQ Section:
Do I need any prior experience?
No prior experience is necessary. This course is designed for beginners.
What materials do I need?
You will need a Windows computer, a Raspberry Pi, and a local area network. For the application development sections, a few electronic components will be used.
How long do I have access to the course?
You will have lifetime access to the course materials.
What You Will Learn
Basics of Windows IoT Core and Raspberry Pi integration.
Setting up the development environment.
Writing and deploying applications using Visual Studio.
Understanding and using the C# programming language.
Remote debugging and application deployment.
Home automation projects with Raspberry Pi and Windows IoT Core.
Who Is This Course For
Beginners interested in learning IoT and embedded systems.
Hobbyists and makers looking to expand their skills.
Engineers and developers seeking practical knowledge in Windows IoT Core and Raspberry Pi.
Requirements
Basic understanding of using a computer.
A Windows computer, a Raspberry Pi, and a local area network.
Basic electronic components for hands-on projects.