(New page: == Module 1: Boolean Algebra & CMOS logic structures == == Module 2: Combinational Logic Circuits & Introduction to ABEL == == Module 3: Sequential Logic Circuits == == Module 4: Comput...)
 
 
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== Module 1: Boolean Algebra & CMOS logic structures ==
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<font size="4">'''The Brown-Meyer Lectures on Digital Systems Design''' </font>
  
== Module 2: Combinational Logic Circuits & Introduction to ABEL ==
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Slectures by [[User:Rwayner|Robert Wayner]]
  
== Module 3: Sequential Logic Circuits ==
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© 2013
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</center>
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== Module 4: Computer Functional Block & Arithmetic Logic Unit ==
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== Module 1: Boolean Algebra &amp; CMOS logic structures  ==
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:[[ECE270 S13 SL1|Converting integers to binary]]
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:[[ECE270 S13 SL2|Using MOSFETS as logic gates]]
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== Module 2: Combinational Logic Circuits &amp; Introduction to ABEL  ==
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== Module 3: Sequential Logic Circuits  ==
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== Module 4: Computer Functional Block &amp; Arithmetic Logic Unit ==
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----
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[[2013 Fall ECE 270 Brown|Back to ECE 270 Homepage]]
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[[Category:ECE270]] [[Category:Lecture_notes]] [[Category:Slecture]]

Latest revision as of 07:54, 10 June 2013


The Brown-Meyer Lectures on Digital Systems Design

Slectures by Robert Wayner

© 2013


Module 1: Boolean Algebra & CMOS logic structures

Converting integers to binary
Using MOSFETS as logic gates

Module 2: Combinational Logic Circuits & Introduction to ABEL

Module 3: Sequential Logic Circuits

Module 4: Computer Functional Block & Arithmetic Logic Unit


Back to ECE 270 Homepage

Alumni Liaison

Basic linear algebra uncovers and clarifies very important geometry and algebra.

Dr. Paul Garrett