Interfacing ChipKIT with External Sensors using Arduino IDE (Udemy.com)
Use the Arduino IDE to develop software to run on the chipKIT development boards.
Created by: Jordan Christman
Produced in 2018
What you will learn
- Develop their own chipKIT projects that incorporate sensors.
- Understand the capabilities of the chipKIT development boards.
- Create their own chipKIT projects.
- An understanding of how embedded systems involving microprocessor work.
Quality Score
Overall Score : 0 / 100
Course Description
Interfacing ChipKIT with External Sensors using Arduino IDE contains 18 projects that include:
- Serial Communication
- Potentiometer Reading
- Temperature Sensor
- Temperature & Humidity Sensor
- Buzzer
- FSR Buzzer
- Servo Sweep
- Photoresistor Light Sensor
- TSL2561 Light Sensor
- PIR Sensor
- De-Bounce
- Tilt Switch
- Accelerometer
- 7 Segment Display
- RGB LED
- Infrared Communication
- Capacitive Touch Sensor
- Hall Effect Sensor
This course consists of lectures and projects, the lectures cover material that is required to understand in order to complete the project. All the projects include the completed code for each project so that you are able to load the code directly into your development board. For each project the software and hardware are explained thoroughly so that it's very clear how to setup and replicate the project. Prior to each project there is a series of lectures that explain various topics that pertain the the specific projects.Who this course is for:
- Engineers looking for a development board that provides quick prototyping capabilities.
- Hobbyists who want to understand and learn about microcontrollers.
- Makers who have a great idea and need a powerful processor to bring their creation to life.
- Anyone interested in embedded systems, processing, or microcontrollers.
- Anyone who has used an Arduino and wants to have more processing power.
Instructor Details
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Jordan Christman
A graduate from the University of Dayton with his Bachelor's degree in Electronic and Computer Engineering Technology. He also graduated from UD with his Master's degree in Electrical Engineering. He currently has a patent pending for an electronic monitoring device. He has strong knowledge in FPGA (Field Programmable Gate Array) development, Digital Electronics, Circuit Board design, and VHDL design and modeling of hardware systems. His focus of study in school was embedded systems which involves circuit design, firmware development, implementation of computer hardware, and the interfacing of computer operating systems. His hobbies include mobile application development, layout and assembly of PCB's (Printed Circuit Boards), computer application programming, and anything related to electrical engineering.
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