0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (4)
  • -
Status
Brand

Showing 1 - 4 of 4 matches in All Departments

Logic Synthesis for FPGA-Based Control Units - Structural Decomposition in Logic Design (Hardcover, 1st ed. 2020): Alexander... Logic Synthesis for FPGA-Based Control Units - Structural Decomposition in Logic Design (Hardcover, 1st ed. 2020)
Alexander Barkalov, Larysa Titarenko, Kamil Mielcarek, Slawomir Chmielewski
R2,810 Discovery Miles 28 100 Ships in 10 - 15 working days

This book focuses on control units, which are a vital part of modern digital systems, and responsible for the efficiency of controlled systems. The model of a finite state machine (FSM) is often used to represent the behavior of a control unit. As a rule, control units have irregular structures that make it impossible to design their logic circuits using the standard library cells. Design methods depend strongly on such factors as the FSM used, specific features of the logic elements implemented in the FSM logic circuit, and the characteristics of the control algorithm to be interpreted. This book discusses Moore and Mealy FSMs implemented with FPGA chips, including look-up table elements (LUT) and embedded memory blocks (EMB). It is crucial to minimize the number of LUTs and EMBs in an FSM logic circuit, as well as to make the interconnections between the logic elements more regular, and various methods of structural decompositions can be used to solve this problem. These methods are reduced to the presentation of an FSM circuit as a composition of different logic blocks, the majority of which implement systems of intermediate logic functions different (and much simpler) than input memory functions and FSM output functions. The structural decomposition results in multilevel FSM circuits having fewer logic elements than equivalent single-level circuits. The book describes well-known methods of structural decomposition and proposes new ones, examining their impact on the final amount of hardware in an FSM circuit. It is of interest to students and postgraduates in the area of Computer Science, as well as experts involved in designing digital systems with complex control units. The proposed models and design methods open new possibilities for creating logic circuits of control units with an optimal amount of hardware and regular interconnections.

Logic Synthesis for FPGA-Based Finite State Machines (Hardcover, 1st ed. 2016): Alexander Barkalov, Larysa Titarenko,... Logic Synthesis for FPGA-Based Finite State Machines (Hardcover, 1st ed. 2016)
Alexander Barkalov, Larysa Titarenko, Malgorzata Kolopienczyk, Kamil Mielcarek, Grzegorz Bazydlo
R4,095 R3,448 Discovery Miles 34 480 Save R647 (16%) Ships in 12 - 17 working days

This book discusses control units represented by the model of a finite state machine (FSM). It contains various original methods and takes into account the peculiarities of field-programmable gate arrays (FPGA) chips and a FSM model. It shows that one of the peculiarities of FPGA chips is the existence of embedded memory blocks (EMB). The book is devoted to the solution of problems of logic synthesis and reduction of hardware amount in control units. The book will be interesting and useful for researchers and PhD students in the area of Electrical Engineering and Computer Science, as well as for designers of modern digital systems.

Logic Synthesis for FPGA-Based Control Units - Structural Decomposition in Logic Design (Paperback, 1st ed. 2020): Alexander... Logic Synthesis for FPGA-Based Control Units - Structural Decomposition in Logic Design (Paperback, 1st ed. 2020)
Alexander Barkalov, Larysa Titarenko, Kamil Mielcarek, Slawomir Chmielewski
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book focuses on control units, which are a vital part of modern digital systems, and responsible for the efficiency of controlled systems. The model of a finite state machine (FSM) is often used to represent the behavior of a control unit. As a rule, control units have irregular structures that make it impossible to design their logic circuits using the standard library cells. Design methods depend strongly on such factors as the FSM used, specific features of the logic elements implemented in the FSM logic circuit, and the characteristics of the control algorithm to be interpreted. This book discusses Moore and Mealy FSMs implemented with FPGA chips, including look-up table elements (LUT) and embedded memory blocks (EMB). It is crucial to minimize the number of LUTs and EMBs in an FSM logic circuit, as well as to make the interconnections between the logic elements more regular, and various methods of structural decompositions can be used to solve this problem. These methods are reduced to the presentation of an FSM circuit as a composition of different logic blocks, the majority of which implement systems of intermediate logic functions different (and much simpler) than input memory functions and FSM output functions. The structural decomposition results in multilevel FSM circuits having fewer logic elements than equivalent single-level circuits. The book describes well-known methods of structural decomposition and proposes new ones, examining their impact on the final amount of hardware in an FSM circuit. It is of interest to students and postgraduates in the area of Computer Science, as well as experts involved in designing digital systems with complex control units. The proposed models and design methods open new possibilities for creating logic circuits of control units with an optimal amount of hardware and regular interconnections.

Logic Synthesis for FPGA-Based Finite State Machines (Paperback, Softcover reprint of the original 1st ed. 2016): Alexander... Logic Synthesis for FPGA-Based Finite State Machines (Paperback, Softcover reprint of the original 1st ed. 2016)
Alexander Barkalov, Larysa Titarenko, Malgorzata Kolopienczyk, Kamil Mielcarek, Grzegorz Bazydlo
R3,586 Discovery Miles 35 860 Ships in 10 - 15 working days

This book discusses control units represented by the model of a finite state machine (FSM). It contains various original methods and takes into account the peculiarities of field-programmable gate arrays (FPGA) chips and a FSM model. It shows that one of the peculiarities of FPGA chips is the existence of embedded memory blocks (EMB). The book is devoted to the solution of problems of logic synthesis and reduction of hardware amount in control units. The book will be interesting and useful for researchers and PhD students in the area of Electrical Engineering and Computer Science, as well as for designers of modern digital systems.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Loot
Nadine Gordimer Paperback  (2)
R383 R318 Discovery Miles 3 180
Sterile Wound Dressing
R5 Discovery Miles 50
Torch Screwdriver
R69 R51 Discovery Miles 510
Blinde Mol Of Wyse Uil? - Hoe Om Met…
Susan Coetzer Paperback R270 R232 Discovery Miles 2 320
Happier Than Ever
Billie Eilish CD  (1)
R401 Discovery Miles 4 010
Sony PlayStation 5 Pulse 3D Wireless…
R1,999 R1,899 Discovery Miles 18 990
South African Wine Index - The…
Izak Smit Paperback R158 Discovery Miles 1 580
Complete Cat Food (7kg)
 (1)
R405 Discovery Miles 4 050
Playstation 4 Replacement Case
 (9)
R54 Discovery Miles 540
Raz Tech Laptop Security Chain Cable…
R299 R169 Discovery Miles 1 690

 

Partners