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Số học luận lý và mạch Logic

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../images/digital/port.gif      

   Logic Circuits 

Boolean algebra is ideal for expressing the behavior of logic circuits.

A circuit can be expressed as a logic design and implemented as a collection of individual connected logic gates.

 

  ../images/main/bulllet_4dots_orange.gif Fixed Logic Systems
   

A fixed logic system has two possible choices for representing true and false.

  ../images/main/bullet_star_pink.gif Positive Logic
   

In a positive logic system, a high voltage is used to represent logical true (1), and a low voltage for a logical false (0).

  ../images/main/bullet_star_pink.gif Negative Logic
   

In a negative logic system, a low voltage is used to represent logical true (1), and a high voltage for a logical false (0).

   

In positive logic circuits it is normal to use +5V for true and 0V for false.

  ../images/main/bulllet_4dots_orange.gif Switching Circuits
   

The abstract logic described previously can be implemented as an actual circuit. Switches are left open for logic 0 and closed for logic 1.

  ../images/main/bullet_star_pink.gif Two variable AND circuit X.Y
    ../images/digital/boolea_0.gif
  ../images/main/bullet_star_pink.gif Two variable OR circuit X + Y
    ../images/digital/boolea_2.gif
  ../images/main/bullet_star_pink.gif Four variable circuit U.V.(X + Y)
    ../images/digital/boolea7.gif
  ../images/main/bulllet_4dots_orange.gif Truth Table
   

A truth table is a means for describing how a logic circuit's output depends on the logic levels present at the circuit's inputs.

   

In the following twos-inputs logic circuit, the table lists all possible combinations of logic levels present at inputs X and Y along with the corresponding output level F.

    ../images/digital/port.gif
   

X

Y

F = X*Y

0

0

0

0

1

0

1

0

0

1

1

1

   

When either input X AND Y is 1, the output F is 1. Therefore the "?" in the box is an AND gate.

Last Updated ( Friday, 31 May 2013 17:03 )  

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