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[FreeTutorials.Us] [UDEMY] Digital Electronics Robotics, learn by building module II [FTU]

[FreeTutorials.Us] [UDEMY] Digital Electronics Robotics, learn by building module II [FTU]

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Description
For More Udemy Free Courses >>> https://freetutorials.us/

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Forum for discussion >>> https://1hack.us/







Over 6,300 enrolled! Open doors to careers and hobbies and have fun while learning digital electronics!



HIGHEST RATED



Created by: Ian Juby

Last updated: 9/2019

Language: English

Subtitle + Caption: Included

Torrent Contains: 278 Files, 2 Folders

Course Source: https://www.udemy.com/course/digital-electronics-robotics-learn-by-building-module-ii/



What you'll learn



• Design and construct digital electronic circuits, use microcontrollers to control real world items like robots you build!

• You will be able to program microcontrollers like the PIC and Arduino.



Course content

all 69 lectures 13:01:56



Requirements



• You will need knowledge of analog electronics and the parts listed in the first lesson.

• No prior experience or knowledge in digital electronics is needed - just some basic math and computer skills!



Description



Building on the knowledge you gained in the Analog Electronics module opens even more doors to diverse careers and hobbies. Think about how many industries / businesses / hobbies that involve computers or computer control. Even automobiles are chock full of digital electronics now. All of this involves digital electronics, and you want in on it today. In this module 2 course, you will build digital electronic circuits, use and program microcontrollers like the PIC and Arduino, and connect to the real world with them. You'll need a good understanding of basic electronics (i.e., you've completed the Robotics: Learn by building, module I), some basic math skills, a computer, and that's it!



With over 6,300 students enrolled and more than 4,000 five star ratings, students aged 8 to 60+ have enjoyed the course and its projects.



No prior knowledge of digital electronics or programming is required, and yet by the end of this course you'll have built functioning digital electronic circuits like a digital memory, and programmed microcontrollers which are basically a computer on a microchip. You will connect these to the real world for home automation and of course, controlling your robots. All courses have captions for the hearing impaired.



Course materials:



You will need the analog electronic parts and a breadboard, which you can purchase as an accompanying kit (i.e., the Analog Electronics Kit from module I) or provide your own.



You will also need the digital electronics kit which again you can purchase as an accompanying kit or provide your own parts. The first lesson is a walk-through of what is in the kit and acts as a parts list for this module.



This series of "Robotics: Learn by building" modules has an end-goal focus on the diverse field of robotics. In module I we learned the basics of electricity and electronics. In this module II you further develop your knowledge and skills to include digital electronics and practice your skills on real-life digital components.



This course is the prerequisite for the module III course where you'll learn robotic drive systems and physics, and gain a wide variety of skills in prototyping so you can actually build your own robots and manufacture your own parts. In module IV, you'll culminate all you've learned so far as you build a 3D printer from scratch, hook it up to a desktop computer and make your own plastic parts. The 3D printer is, in effect, a robot which you can then use to make parts for your other robot designs. In module V you can take your robot design and construction skills to the next level with a hands-on approach to autonomous robotic systems: learning about various sensors to know where you are and what your robot is doing, GPS navigation, basic artificial intelligence, powerful microchips known as FPGA's where you literally design a custom circuit on the chip, vision systems and more.



Lesson overview:



In this course we'll be covering:



What is digital?



Binary & Hexadecimal system and ASCII

Analog to digital and digital to analog conversion

Logic gates and you'll make your own RAM

Digital Addressing/demultiplexing



Microprocessors & microcontrollers - what are they?



Programming & using PIC microcontrollers to:



-display information on an LCD display



-Read both digital and analog inputs



-PWM control a DC motor and servo motor



-Read keypad matrixes



-control LED displays



-writing to flash memory on board for remote systems



What is Arduino?

-using Arduino for all of the PIC projects above, as well as using full-colour TFT touch screens



Building our mobile robot



Giving our mobile robot a "brain"

Ultrasonics and ultrasonic radar / external sensing

Programmable IR remote



and more!



Who this course is for:



• You have a desire to learn computer control and electronics, especially geared towards building and controlling robots.

• You want to understand the heartbeat of computers and digital systems, and want to build your own digital electronic devices.








File list
  • [FreeTutorials.Us] [UDEMY] Digital Electronics Robotics, learn by building module II [FTU]
  • 0. Websites you may like/How you can help Team-FTU.txt 229 B
  • 1. Introduction to digital electronics/1. Introduction and Whatcha gonna need The kit of parts.mp4 84.9 MB
  • 1. Introduction to digital electronics/1. Introduction and Whatcha gonna need The kit of parts.srt 9.4 KB
  • 1. Introduction to digital electronics/1. Introduction and Whatcha gonna need The kit of parts.vtt 8.2 KB
  • 1. Introduction to digital electronics/1.1 parts_list_download.txt.txt 2 KB
  • 1. Introduction to digital electronics/10. Microprocessors, Part II The stack and the ALU.mp4 33.1 MB
  • 1. Introduction to digital electronics/10. Microprocessors, Part II The stack and the ALU.srt 17 KB
  • 1. Introduction to digital electronics/10. Microprocessors, Part II The stack and the ALU.vtt 15 KB
  • 1. Introduction to digital electronics/11. What is a microcontroller.mp4 37.5 MB
  • 1. Introduction to digital electronics/11. What is a microcontroller.srt 20 KB
  • 1. Introduction to digital electronics/11. What is a microcontroller.vtt 17.6 KB
  • 1. Introduction to digital electronics/11.1 PIC16F1455_full_datasheet_41639A.pdf.pdf 7.1 MB
  • 1. Introduction to digital electronics/11.2 PIC instruction set 31029a.pdf.pdf 482 KB
  • 1. Introduction to digital electronics/12. Installing IDE.mp4 6.6 MB
  • 1. Introduction to digital electronics/12. Installing IDE.srt 2.1 KB
  • 1. Introduction to digital electronics/12. Installing IDE.vtt 1.8 KB
  • 1. Introduction to digital electronics/12.1 MPLABX-v3.40-linux-installer.tar.tar 509.6 MB
  • 1. Introduction to digital electronics/12.2 MPLABX-v3.40-osx-installer.zip.zip 418.4 MB
  • 1. Introduction to digital electronics/12.3 MPLABX-v3.40-windows-installer.exe.exe 544.4 MB
  • 1. Introduction to digital electronics/13. Our first PIC program.mp4 34.4 MB
  • 1. Introduction to digital electronics/13. Our first PIC program.srt 22.8 KB
  • 1. Introduction to digital electronics/13. Our first PIC program.vtt 20.1 KB
  • 1. Introduction to digital electronics/13.1 blinker_assembly_code.txt.txt 636 B
  • 1. Introduction to digital electronics/13.2 pic_program_schematic_1_download.pdf.pdf 431.1 KB
  • 1. Introduction to digital electronics/14. Troubleshooting our program.mp4 16.1 MB
  • 1. Introduction to digital electronics/14. Troubleshooting our program.srt 8.9 KB
  • 1. Introduction to digital electronics/14. Troubleshooting our program.vtt 7.9 KB
  • 1. Introduction to digital electronics/15. Deconstructing our first program.mp4 35.6 MB
  • 1. Introduction to digital electronics/15. Deconstructing our first program.srt 20.1 KB
  • 1. Introduction to digital electronics/15. Deconstructing our first program.vtt 17.7 KB
  • 1. Introduction to digital electronics/16. PIC program #2 Binary counter.mp4 14.1 MB
  • 1. Introduction to digital electronics/16. PIC program #2 Binary counter.srt 9.7 KB
  • 1. Introduction to digital electronics/16. PIC program #2 Binary counter.vtt 8.4 KB
  • 1. Introduction to digital electronics/16.1 binary counter code.txt.txt 653 B
  • 1. Introduction to digital electronics/16.2 pic_program_schematic_2_binary_counter.pdf.pdf 435.7 KB
  • 1. Introduction to digital electronics/17. PIC program #3 Pushbutton binary counter.mp4 16.6 MB
  • 1. Introduction to digital electronics/17. PIC program #3 Pushbutton binary counter.srt 13 KB
  • 1. Introduction to digital electronics/17. PIC program #3 Pushbutton binary counter.vtt 11.3 KB
  • 1. Introduction to digital electronics/17.1 counting button code.txt.txt 909 B
  • 1. Introduction to digital electronics/17.2 pic_program_schematic_3_pushbutton_binary counter.pdf.pdf 62.6 KB
  • 1. Introduction to digital electronics/18. Debouncing.mp4 21 MB
  • 1. Introduction to digital electronics/18. Debouncing.srt 12.6 KB
  • 1. Introduction to digital electronics/18. Debouncing.vtt 11.1 KB
  • 1. Introduction to digital electronics/18.1 debounce_assembly_code_v3.txt.txt 1.1 KB
  • 1. Introduction to digital electronics/19. Two quick points.mp4 9.6 MB
  • 1. Introduction to digital electronics/19. Two quick points.srt 5.5 KB
  • 1. Introduction to digital electronics/19. Two quick points.vtt 4.9 KB
  • 1. Introduction to digital electronics/19.1 program_setup_checklist.pdf.pdf 82.4 KB
  • 1. Introduction to digital electronics/2. Parts list.html 2.4 KB
  • 1. Introduction to digital electronics/20. Variables.mp4 21.3 MB
  • 1. Introduction to digital electronics/20. Variables.srt 8.6 KB
  • 1. Introduction to digital electronics/20. Variables.vtt 7.6 KB
  • 1. Introduction to digital electronics/21. KITT car challenge!.mp4 37.8 MB
  • 1. Introduction to digital electronics/21. KITT car challenge!.srt 21.2 KB
  • 1. Introduction to digital electronics/21. KITT car challenge!.vtt 18.6 KB
  • 1. Introduction to digital electronics/21.1 canned_utility_delay_code_sample.txt.txt 700 B
  • 1. Introduction to digital electronics/21.2 sample_flashing_delay_loop.txt.txt 3 KB
  • 1. Introduction to digital electronics/21.3 logical_shift_left_sample code.txt.txt 158 B
  • 1. Introduction to digital electronics/22. Using the Hitachi LCD displays, part 1.mp4 34.7 MB
  • 1. Introduction to digital electronics/22. Using the Hitachi LCD displays, part 1.srt 15.6 KB
  • 1. Introduction to digital electronics/22. Using the Hitachi LCD displays, part 1.vtt 13.7 KB
  • 1. Introduction to digital electronics/22.1 full_data_sheet_hitachi_HD44780.pdf.pdf 322.1 KB
  • 1. Introduction to digital electronics/22.2 LCD_display_manual_schematic.pdf.pdf 2 MB
  • 1. Introduction to digital electronics/23. Using the Hitachi LCD displays, part 2.mp4 22 MB
  • 1. Introduction to digital electronics/23. Using the Hitachi LCD displays, part 2.srt 9.8 KB
  • 1. Introduction to digital electronics/23. Using the Hitachi LCD displays, part 2.vtt 8.6 KB
  • 1. Introduction to digital electronics/24. Interfacing the PIC with the LCD display, project 1, part 1.mp4 44.7 MB
  • 1. Introduction to digital electronics/24. Interfacing the PIC with the LCD display, project 1, part 1.srt 22.2 KB
  • 1. Introduction to digital electronics/24. Interfacing the PIC with the LCD display, project 1, part 1.vtt 19.6 KB
  • 1. Introduction to digital electronics/24.1 PIC_driving_LCD_display_1.pdf.pdf 2 MB
  • 1. Introduction to digital electronics/24.2 manual_letters_LCD_code_download.txt.txt 4.6 KB
  • 1. Introduction to digital electronics/25. Interfacing the PIC with LCD display, project 1, part 2.mp4 10.9 MB
  • 1. Introduction to digital electronics/25. Interfacing the PIC with LCD display, project 1, part 2.srt 4.8 KB
  • 1. Introduction to digital electronics/25. Interfacing the PIC with LCD display, project 1, part 2.vtt 4.2 KB
  • 1. Introduction to digital electronics/26. Tables on the PIC and interfacing to the LCD, project 2, part 1.mp4 14.1 MB
  • 1. Introduction to digital electronics/26. Tables on the PIC and interfacing to the LCD, project 2, part 1.srt 9.4 KB
  • 1. Introduction to digital electronics/26. Tables on the PIC and interfacing to the LCD, project 2, part 1.vtt 8.2 KB
  • 1. Introduction to digital electronics/26.1 LCD_code_download.txt.txt 9 KB
  • 1. Introduction to digital electronics/27. Tables on the PIC and interfacing to the LCD, project 2, part 2.mp4 28.8 MB
  • 1. Introduction to digital electronics/27. Tables on the PIC and interfacing to the LCD, project 2, part 2.srt 16.2 KB
  • 1. Introduction to digital electronics/27. Tables on the PIC and interfacing to the LCD, project 2, part 2.vtt 14.2 KB
  • 1. Introduction to digital electronics/28. Analog and digital converting.mp4 23.9 MB
  • 1. Introduction to digital electronics/28. Analog and digital converting.srt 12.8 KB
  • 1. Introduction to digital electronics/28. Analog and digital converting.vtt 11.4 KB
  • 1. Introduction to digital electronics/29. How to convert Analog to Digital.mp4 17.2 MB
  • 1. Introduction to digital electronics/29. How to convert Analog to Digital.srt 12.3 KB
  • 1. Introduction to digital electronics/29. How to convert Analog to Digital.vtt 11 KB
  • 1. Introduction to digital electronics/3. What is digital Why digital Free preview!.mp4 68.7 MB
  • 1. Introduction to digital electronics/3. What is digital Why digital Free preview!.srt 10.8 KB
  • 1. Introduction to digital electronics/3. What is digital Why digital Free preview!.vtt 9.6 KB
  • 1. Introduction to digital electronics/30. Direct feedback and calibration.mp4 28.9 MB
  • 1. Introduction to digital electronics/30. Direct feedback and calibration.srt 11.2 KB
  • 1. Introduction to digital electronics/30. Direct feedback and calibration.vtt 10 KB
  • 1. Introduction to digital electronics/31. AD converter to LCD display, part I.mp4 41 MB

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