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Titlebook: Introduction to Logic Circuits & Logic Design with Verilog; Brock J. LaMeres Textbook 20171st edition Springer Nature Switzerland AG 2017

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Digital Circuitry and Interfacing,his chapter we begin by looking at how logic circuits are described and introduce the basic set of gates used for all digital logic operations. We then look at the underlying circuitry that implements the basic gates including digital signaling and how voltages are used to represent 1’s and 0’s. We
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Combinational Logic Design,e a logic circuit using the basic gates described in Chap. 3 from a truth table or word description. This process is called .. Combinational logic refers to circuits where the output depends on the present value of the inputs. This simple definition implies that there is no storage capability in the
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Verilog (Part 1),scale quickly to the point where it is difficult to design by hand. Second, the process of moving from a high-level description of how a circuit works (e.g., a truth table) to a form that is ready to be implemented with real circuitry (e.g., a minimized logic diagram) is straightforward and well-def
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MSI Logic,er than individual gates, there are naming conventions that are used to describe the size of the logic. Table 6.1 gives these naming conventions. In this chapter we will look at . (MSI) logic. Each of these building blocks can be implemented using the combinational logic design steps covered in Chap
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Behavioral Modeling of Sequential Logic,egin by looking at modeling sequential storage devices. Next, we will look at the behavioral modeling of finite state machines. Finally, we will look at register transfer level, or RTL modeling. The goal of this chapter is to provide an understanding of how hardware description languages can be used
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Programmable Logic,rammed to implement digital logic. The technology and architectures of PLDs have advanced over time. A historical perspective is given on how the first programmable devices evolved into the programmable technologies that are prevalent today. The goal of this chapter is to provide a basic understandi
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Arithmetic Circuits,ication, and division. A discussion is also presented on how to model arithmetic circuits in Verilog. The goal of this chapter is to provide an understanding of the basic principles of binary arithmetic circuits.
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