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introduction_to_digital_systems:start [2022/07/02 04:25]
tfischer [continuing Links]
introduction_to_digital_systems:start [2023/09/19 23:43] (aktuell)
mexleadmin [Introduction to Digital Systems]
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 No matter, whether you have to deal with a programmable logic controller (PLC) of a robot in the future, or if you just want to know how a mobile phone controls a display (or a microcontroller controls a light emitting diode) - the following chapters are indispensable. The knowledge gained can also be transferred to pure application programming in languages like Java or C. No matter, whether you have to deal with a programmable logic controller (PLC) of a robot in the future, or if you just want to know how a mobile phone controls a display (or a microcontroller controls a light emitting diode) - the following chapters are indispensable. The knowledge gained can also be transferred to pure application programming in languages like Java or C.
  
-<wrap indent>[[Introduction]]</wrap> \\  +[[Introduction]] \\  
 <wrap indent>Or: How to deal with the course? </wrap> \\ \\ <wrap indent>Or: How to deal with the course? </wrap> \\ \\
-<wrap indent> 0[[Tools]] </wrap> \\   +0 [[Tools]]  \\  \\ 
-  [[Boolean Algebra]] \\  Or: 2B + /2B? +[[Boolean Algebra]] \\  
-  - [[Number Systems]] \\  Or: When is 1 + 1 = 1?  +<wrap indent>Or: 2B + /2B? </wrap> \\ 
-  - [[Combinatorial Logic]] \\ Or: A different kind of logic puzzles +
-  - [[Realization of comb. Logic]] \\ Or: The logic behind the mensa card +
-  - [[Storage Elements]] \\  Or: The short-term memory of a controller +
-  - [[Sequential Logic]] \\  Or: Inside a vending machine+
  
-===== Tips for the exam =====+2 [[Number Systems]] \\   
 +<wrap indent>Or: When is 1 + 1 1? </wrap> \\ 
  
-  - [[Tips for the exam]]+[[Combinatorial Logic]] \\  
 +<wrap indent>Or: A different kind of logic puzzles </wrap> \\ 
  
-===== Inseriton =====+4 [[Realization of comb. Logic]] \\  
 +<wrap indent>Or: The logic behind the mensa card </wrap> \\ 
  
-===== Inseriton =====+5 [[Storage Elements]] \\   
 +<wrap indent>Or: The short-term memory of a controller </wrap> \\ 
  
-  - <del>[[:introduction_to_digital_systems:at_the_heart_of_a_computer|At the heart of a computer]]</del> +[[Sequential Logic]] \\   
-===== Tips for the exam =====+<wrap indent>Or: Inside a vending machine </wrap\\ 
  
 ===== Tips for the exam ===== ===== Tips for the exam =====
  
-  - [[:introduction_to_digital_systems:tips_for_the_exam|Tips for the exam]]+  - [[Tips for the exam]] 
  
-===== continuing Links ===== 
  
 ===== continuing Links ===== ===== continuing Links =====
  
   - [[https://github.com/hneemann/Digital/releases/latest|Digital]]: this tool is used for simulating digital circuits. From Github only the zipfile: Digital.zip is needed.   - [[https://github.com/hneemann/Digital/releases/latest|Digital]]: this tool is used for simulating digital circuits. From Github only the zipfile: Digital.zip is needed.
-  +  - [[https://www.nand2tetris.org/course|From NAND to Tetris]]: A course starting at the same point like this course, but developing full microcontroller, operating system an game onto it.
-  - [[http://www.iris.uni-stuttgart.de/lehre/eggenberger/eti/|Detailed German online script of the University of Stuttgart.]]. \\  This covers broader scope than we have in the lecture HHN in the department.+
   - [[http://elektroniktutor.de/digital1.html|Digital technology on elektroniktutor.de]] and [[http://www.inf-schule.de/|INF-Schule]]: \\  Here you can find further explanations of our chapters on vocational school/gymnasium level in German.   - [[http://elektroniktutor.de/digital1.html|Digital technology on elektroniktutor.de]] and [[http://www.inf-schule.de/|INF-Schule]]: \\  Here you can find further explanations of our chapters on vocational school/gymnasium level in German.