Description: One of the very important parts of any digital system is the control unit, coordin- ing interplay of other system blocks. As a rule, control units have irregular str- ture, which makes process of their logic circuits design very sophisticated. In case of complex logic controllers, the problem of system design is reduced practically to the design of control units. Actually, we observe a real technical boom connected with achievements in semiconductor technology. One of these is the development of integrated circuit known as the "systems-on-a-programmable- chip" (SoPC), where the number of elements approaches one billion. Because of the extreme complexity of microchips, it is very important to develop effective design methods oriented on particular properties of logical elements. Solution of this problem permits impr- ing functional capabilities of the target digital system inside single SoPC chip. As majority of researches point out, design methods used in case of industrial packages are, in case of complex digital system design, far from optimal. Similar problems concern the design of control units with standard ?eld-programmable logic devices (FPLD), such as PLA, PAL, GAL, CPLD, and FPGA. Let us point out that modern SoPC are based on CPLD or FPGA technology. Thus, the development of eff- tive design methods oriented on FPLD implementation of logic circuits used in the control units still remains the problem of great importance.
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Title: Logic Synthesis For Compositional Microprogram Control Units By A
Weight: 707
EAN: 9783540692836
ISBN-10: 9783540692836
Date of Publication: 2008-08
Place of Publication: 2008-08
Book Series: Springer
Genre: TECHNOLOGY & ENGINEERING / Electronics / Microelectronics
Narrative Type: N/A
Features: N/A
Intended Audience: N/A
Ex Libris: No
Editor: N/A
Edition: N/A
Pagination: 292
Dimensions: 921x614
Number of Pages: 272 Pages
Language: English
Publication Name: Logic Synthesis for Compositional Microprogram Control Units
Publisher: Springer-Verlag Berlin AND Heidelberg Gmbh & Co. KG
Publication Year: 2008
Subject: Engineering & Technology, Computer Science, Physics
Item Height: 235 mm
Item Weight: 595 g
Type: Textbook
Author: Larysa Titarenko, Alexander Barkalov
Subject Area: Material Science, Mechanical Engineering, Electrical Engineering
Series: Lecture Notes in Electrical Engineering
Item Width: 155 mm
Format: Hardcover