LEADER 05459nam 2200685 450 001 9910806881403321 005 20230912123026.0 010 $a1-283-13882-4 010 $a9786613138828 010 $a1-118-00770-0 010 $a1-118-00771-9 010 $a1-118-00769-7 035 $a(CKB)2550000000039611 035 $a(EBL)697645 035 $a(SSID)ssj0000523526 035 $a(PQKBManifestationID)11347583 035 $a(PQKBTitleCode)TC0000523526 035 $a(PQKBWorkID)10542522 035 $a(PQKB)11250739 035 $a(OCoLC)746324252 035 $a(CaSebORM)9780470900550 035 $a(MiAaPQ)EBC697645 035 $a(MiAaPQ)EBC4030306 035 $a(EXLCZ)992550000000039611 100 $a20160405h20112011 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aIntroduction to digital systems $emodeling, synthesis, and simulation using VHDL /$fMohammed Ferdjallah 205 $a1st edition 210 1$aHoboken, New Jersey :$cWiley,$d2011. 210 4$dİ2011 215 $a1 online resource (227 p.) 300 $aIncludes index. 311 $a0-470-90055-5 320 $aIncludes bibliographical references and index. 327 $aIntroduction to Digital Systems: Modeling, Synthesis, and Simulation Using VHDL; CONTENTS; PREFACE; 1 Digital System Modeling and Simulation; 1.1 OBJECTIVES; 1.2 MODELING, SYNTHESIS, AND SIMULATION DESIGN; 1.3 HISTORY OF DIGITAL SYSTEMS; 1.4 STANDARD LOGIC DEVICES; 1.5 CUSTOM-DESIGNED LOGIC DEVICES; 1.6 PROGRAMMABLE LOGIC DEVICES; 1.7 SIMPLE PROGRAMMABLE LOGIC DEVICES; 1.8 COMPLEX PROGRAMMABLE LOGIC DEVICES; 1.9 FIELD-PROGRAMMABLE GATE ARRAYS; 1.10 FUTURE OF DIGITAL SYSTEMS; PROBLEMS; 2 Number Systems; 2.1 OBJECTIVES; 2.2 BASES AND NUMBER SYSTEMS; 2.3 NUMBER CONVERSIONS; 2.4 DATA ORGANIZATION 327 $a2.5 SIGNED AND UNSIGNED NUMBERS2.6 BINARY ARITHMETIC; 2.7 ADDITION OF SIGNED NUMBERS; 2.8 BINARY-CODED DECIMAL REPRESENTATION; 2.9 BCD ADDITION; PROBLEMS; 3 Boolean Algebra and Logic; 3.1 OBJECTIVES; 3.2 BOOLEAN THEORY; 3.3 LOGIC VARIABLES AND LOGIC FUNCTIONS; 3.4 BOOLEAN AXIOMS AND THEOREMS; 3.5 BASIC LOGIC GATES AND TRUTH TABLES; 3.6 LOGIC REPRESENTATIONS AND CIRCUIT DESIGN; 3.7 TRUTH TABLE; 3.8 TIMING DIAGRAM; 3.9 LOGIC DESIGN CONCEPTS; 3.10 SUM-OF-PRODUCTS DESIGN; 3.11 PRODUCT-OF-SUMS DESIGN; 3.12 DESIGN EXAMPLES; 3.13 NAND AND NOR EQUIVALENT CIRCUIT DESIGN 327 $a3.14 STANDARD LOGIC INTEGRATED CIRCUITSPROBLEMS; 4 VHDL Design Concepts; 4.1 OBJECTIVES; 4.2 CAD TOOL-BASED LOGIC DESIGN; 4.3 HARDWARE DESCRIPTION LANGUAGES; 4.4 VHDL LANGUAGE; 4.5 VHDL PROGRAMMING STRUCTURE; 4.6 ASSIGNMENT STATEMENTS; 4.7 VHDL DATA TYPES; 4.8 VHDL OPERATORS; 4.9 VHDL SIGNAL AND GENERATE STATEMENTS; 4.10 SEQUENTIAL STATEMENTS; 4.11 LOOPS AND DECISION-MAKING STATEMENTS; 4.12 SUBCIRCUIT DESIGN; 4.13 PACKAGES AND COMPONENTS; PROBLEMS; 5 Integrated Logic; 5.1 OBJECTIVES; 5.2 LOGIC SIGNALS; 5.3 LOGIC SWITCHES; 5.4 NMOS AND PMOS LOGIC GATES; 5.5 CMOS LOGIC GATES 327 $a5.6 CMOS LOGIC NETWORKS5.7 PRACTICAL ASPECTS OF LOGIC GATES; 5.8 TRANSMISSION GATES; PROBLEMS; 6 Logic Function Optimization; 6.1 OBJECTIVES; 6.2 LOGIC FUNCTION OPTIMIZATION PROCESS; 6.3 KARNAUGH MAPS; 6.4 TWO-VARIABLE KARNAUGH MAP; 6.5 THREE-VARIABLE KARNAUGH MAP; 6.6 FOUR-VARIABLE KARNAUGH MAP; 6.7 FIVE-VARIABLE KARNAUGH MAP; 6.8 XOR AND NXOR KARNAUGH MAPS; 6.9 INCOMPLETE LOGIC FUNCTIONS; 6.10 QUINE-McCLUSKEY MINIMIZATION; PROBLEMS; 7 Combinational Logic; 7.1 OBJECTIVES; 7.2 COMBINATIONAL LOGIC CIRCUITS; 7.3 MULTIPLEXERS; 7.4 LOGIC DESIGN WITH MULTIPLEXERS; 7.5 DEMULTIPLEXERS; 7.6 DECODERS 327 $a7.7 ENCODERS7.8 CODE CONVERTERS; 7.9 ARITHMETIC CIRCUITS; PROBLEMS; 8 Sequential Logic; 8.1 OBJECTIVES; 8.2 SEQUENTIAL LOGIC CIRCUITS; 8.3 LATCHES; 8.4 FLIP-FLOPS; 8.5 REGISTERS; 8.6 COUNTERS; PROBLEMS; 9 Synchronous Sequential Logic; 9.1 OBJECTIVES; 9.2 SYNCHRONOUS SEQUENTIAL CIRCUITS; 9.3 FINITE-STATE MACHINE DESIGN CONCEPTS; 9.4 FINITE-STATE MACHINE SYNTHESIS; 9.5 STATE ASSIGNMENT; 9.6 ONE-HOT ENCODING METHOD; 9.7 FINITE-STATE MACHINE ANALYSIS; 9.8 SEQUENTIAL SERIAL ADDER; 9.9 SEQUENTIAL CIRCUIT COUNTERS; 9.10 STATE OPTIMIZATION; 9.11 ASYNCHRONOUS SEQUENTIAL CIRCUITS; PROBLEMS; INDEX 330 $aA unique guide to using both modeling and simulation in digital systems design Digital systems design requires rigorous modeling and simulation analysis that eliminates design risks and potential harm to users. Introduction to Digital Systems: Modeling, Synthesis, and Simulation Using VHDL introduces the application of modeling and synthesis in the effective design of digital systems and explains applicable analytical and computational methods. Through step-by-step explanations and numerous examples, the author equips readers with the tools needed to model, synthesize, and 606 $aDigital electronics 606 $aDigital electronics$xComputer simulation 606 $aVHDL (Computer hardware description language) 615 0$aDigital electronics. 615 0$aDigital electronics$xComputer simulation. 615 0$aVHDL (Computer hardware description language) 676 $a621.39/2 676 $a621.392 700 $aFerdjallah$b Mohammed$01721720 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910806881403321 996 $aIntroduction to digital systems$94121515 997 $aUNINA