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  • 1
    Book
    Book
    Amsterdam [u.a.] : Elsevier, Morgan Kaufmann
    UID:
    b3kat_BV042753079
    Format: xxiv, 559 Seiten , Illustrationen , 24 cm
    Edition: ARM Edition
    ISBN: 978-0-12-800056-4
    Language: English
    Subjects: Computer Science , Engineering
    RVK:
    RVK:
    Keywords: Computerarchitektur ; Digitalelektronik
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  • 2
    Book
    Book
    Amsterdam [u.a.] :Elsevier, Morgan Kaufmann,
    UID:
    almahu_BV041037344
    Format: XXIV, 690 S. : , Illustrationen, Diagramme.
    Edition: 2. ed.
    ISBN: 978-0-12-394424-5
    Note: Literaturverz. S. 673 - 674
    Language: English
    Subjects: Computer Science , Engineering
    RVK:
    RVK:
    Keywords: Computerarchitektur ; Digitalelektronik
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  • 3
    Online Resource
    Online Resource
    Cambridge, MA :Morgan Kaufmann,
    UID:
    almahu_9949347543202882
    Format: 1 online resource (xxv, 549 pages)
    Edition: Fifth edition.
    ISBN: 0-12-820065-0 , 0-12-820064-2
    Language: English
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  • 4
    Online Resource
    Online Resource
    Amsterdam ; : Elsevier/Morgan Kaufmann,
    UID:
    almahu_9949697711602882
    Format: 1 online resource (721 p.)
    Edition: 2nd ed.
    ISBN: 1-283-71715-8 , 0-12-397816-5
    Content: Digital Design and Computer Architecture takes a unique and modern approach to digital design. Beginning with digital logic gates and progressing to the design of combinational and sequential circuits, Harris and Harris use these fundamental building blocks as the basis for what follows: the design of an actual MIPS processor. SystemVerilog and VHDL are integrated throughout the text in examples illustrating the methods and techniques for CAD-based circuit design. By the end of this book, readers will be able to build their own microprocessor and will have a top-to-bottom understanding
    Note: Description based upon print version of record. , Front Cover; In Praise of Digital Designand Computer Architecture; About the Authors; Digital Design and Computer Architecture; Copyright; Dedication; Table of Contents; Preface; Features; Side-by-Side Coverage of SystemVerilog and VHDL; Classic MIPS Architecture and Microarchitecture; Real-World Perspectives; Accessible Overview of Advanced Microarchitecture; End-of-Chapter Exercises and Interview Questions; Online Supplements; How to Use the Software Tools in A Course; Altera Quartus II; Microchip MPLAB IDE; Optional Tools: Synplify Premier and QtSpim; Labs; Bugs; Acknowledgments , 1 From Zero to One1.1 The Game Plan; 1.2 The Art of Managing Complexity; 1.2.1 Abstraction; 1.2.2 Discipline; 1.2.3 The Three-Y's; 1.3 The Digital Abstraction; 1.4 Number Systems; 1.4.1 Decimal Numbers; 1.4.2 Binary Numbers; 1.4.3 Hexadecimal Numbers; 1.4.4 Bytes, Nibbles, and All That Jazz; 1.4.5 Binary Addition; 1.4.6 Signed Binary Numbers; Sign/Magnitude Numbers; Two's Complement Numbers; Comparison of Number Systems; 1.5 Logic Gates; 1.5.1 NOT Gate; 1.5.2 Buffer; 1.5.3 AND Gate; 1.5.4 OR Gate; 1.5.5 Other Two-Input Gates; 1.5.6 Multiple-Input Gates; 1.6 Beneath the Digital Abstraction , 1.6.1 Supply Voltage1.6.2 Logic Levels; 1.6.3 Noise Margins; 1.6.4 DC Transfer Characteristics; 1.6.5 The Static Discipline; 1.7 CMOS Transistors*; 1.7.1 Semiconductors; 1.7.2 Diodes; 1.7.3 Capacitors; 1.7.4 nMOS and pMOS Transistors; 1.7.5 CMOS NOT Gate; 1.7.6 Other CMOS Logic Gates; 1.7.7 Transmission Gates; 1.7.8 Pseudo-nMOS Logic; 1.8 Power Consumption*; 1.9 Summary and a Look Ahead; Exercises; Interview Questions; 2 Combinational Logic Design; 2.1 Introduction; 2.2 Boolean Equations; 2.2.1 Terminology; 2.2.2 Sum-of-Products Form; 2.2.3 Product-of-Sums Form; 2.3 Boolean Algebra , 2.3.1 Axioms2.3.2 Theorems of One Variable; 2.3.3 Theorems of Several Variables; 2.3.4 The Truth Behind It All; 2.3.5 Simplifying Equations; 2.4 From Logic to Gates; 2.5 Multilevel Combinational Logic; 2.5.1 Hardware Reduction; 2.5.2 Bubble Pushing; 2.6 X's and Z's, Oh My; 2.6.1 Illegal Value: X; 2.6.2 Floating Value: Z; 2.7 Karnaugh Maps; 2.7.1 Circular Thinking; 2.7.2 Logic Minimization with K-Maps; 2.7.3 Don't Cares; 2.7.4 The Big Picture; 2.8 Combinational Building Blocks; 2.8.1 Multiplexers; 2:1 Multiplexer; Wider Multiplexers; Multiplexer Logic; 2.8.2 Decoders; Decoder Logic; 2.9 Timing , 2.9.1 Propagation and Contamination Delay2.9.2 Glitches; 2.10 Summary; Exercises; Interview Questions; 3 Sequential Logic Design; 3.1 Introduction; 3.2 Latches and Flip-Flops; 3.2.1 SR Latch; 3.2.2 D Latch; 3.2.3 D FIip-Flop; 3.2.4 Register; 3.2.5 Enabled Flip-Flop; 3.2.6 Resettable Flip-Flop; 3.2.7 Transistor-Level Latch and Flip-Flop Designs*; 3.2.8 Putting It All Together; 3.3 Synchronous Logic Design; 3.3.1 Some Problematic Circuits; 3.3.2 Synchronous Sequential Circuits; 3.3.3 Synchronous and Asynchronous Circuits; 3.4 Finite State Machines; 3.4.1 FSM Design Example , 3.4.2 State Encodings , English
    Additional Edition: ISBN 0-12-394424-4
    Language: English
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  • 5
    Online Resource
    Online Resource
    Amsterdam ; : Morgan Kaufmann Publishers,
    UID:
    almahu_9948025346902882
    Format: 1 online resource (593 p.)
    Edition: 1st ed.
    ISBN: 1-281-22726-9 , 9786611227265 , 0-08-054706-0
    Content: Digital Design and Computer Architecture is designed for courses that combine digital logic design with computer organization/architecture or that teach these subjects as a two-course sequence. Digital Design and Computer Architecture begins with a modern approach by rigorously covering the fundamentals of digital logic design and then introducing Hardware Description Languages (HDLs). Featuring examples of the two most widely-used HDLs, VHDL and Verilog, the first half of the text prepares the reader for what follows in the second: the design of a MIPS Processor. By the end of D
    Note: Description based upon print version of record. , Front cover; In Praise of Digital Design and Computer Architecture; About the Authors; Title page; Copyright page; Table of contents; Preface; FEATURES; ONLINE SUPPLEMENTS; HOW TO USE THE SOFTWARE TOOLS IN A COURSE; Xilinx ISE WebPACK; Synplify Pro; PCSPIM; LABS; BUGS; ACKNOWLEDGMENTS; Chapter 1 From Zero to One; 1.1 THE GAME PLAN; 1.2 THE ART OF MANAGING COMPLEXITY; 1.2.1 Abstraction; 1.2.2 Discipline; 1.2.3 The Three -Y's; 1.3 THE DIGITAL ABSTRACTION; 1.4 NUMBER SYSTEMS; 1.4.1 Decimal Numbers; 1.4.2 Binary Numbers; 1.4.3 Hexadecimal Numbers; 1.4.4 Bytes, Nibbles, and All That Jazz , 1.4.5 Binary Addition1.4.6 Signed Binary Numbers; 1.5 LOGIC GATES; 1.5.1 NOT Gate; 1.5.2 Buffer; 1.5.3 AND Gate; 1.5.4 OR Gate; 1.5.5 Other Two-Input Gates; 1.5.6 Multiple-Input Gates; 1.6 BENEATH THE DIGITAL ABSTRACTION; 1.6.1 Supply Voltage; 1.6.2 Logic Levels; 1.6.3 Noise Margins; 1.6.4 DC Transfer Characteristics; 1.6.5 The Static Discipline; 1.7 CMOS TRANSISTORS; 1.7.1 Semiconductors; 1.7.2 Diodes; 1.7.3 Capacitors; 1.7.4 nMOS and pMOS Transistors; 1.7.5 CMOS NOT Gate; 1.7.6 Other CMOS Logic Gates; 1.7.7 Transmission Gates; 1.7.8 Pseudo-nMOS Logic; 1.8 POWER CONSUMPTION , 1.9 SUMMARY AND A LOOK AHEADExercises; Interview Questions; Chapter 2 Combinational Logic Design; 2.1 INTRODUCTION; 2.2 BOOLEAN EQUATIONS; 2.2.1 Terminology; 2.2.2 Sum-of-Products Form; 2.2.3 Product-of-Sums Form; 2.3 BOOLEAN ALGEBRA; 2.3.1 Axioms; 2.3.2 Theorems of One Variable; 2.3.3 Theorems of Several Variables; 2.3.4 The Truth Behind It All; 2.3.5 Simplifying Equations; 2.4 FROM LOGIC TO GATES; 2.5 MULTILEVEL COMBINATIONAL LOGIC; 2.5.1 Hardware Reduction; 2.5.2 Bubble Pushing; 2.6 X'S AND Z'S, OH MY; 2.6.1 Illegal Value: X; 2.6.2 Floating Value: Z; 2.7 KARNAUGH MAPS , 2.7.1 Circular Thinking2.7.2 Logic Minimization with K-Maps; 2.7.3 Don't Cares; 2.7.4 The Big Picture; 2.8 COMBINATIONAL BUILDING BLOCKS; 2.8.1 Multiplexers; 2.8.2 Decoders; 2.9 TIMING; 2.9.1 Propagation and Contamination Delay; 2.9.2 Glitches; 2.10 SUMMARY; Exercises; Interview Questions; Chapter 3 Sequential Logic Design; 3.1 INTRODUCTION; 3.2 LATCHES AND FLIP-FLOPS; 3.2.1 SR Latch; 3.2.2 D Latch; 3.2.3 D Flip-Flop; 3.2.4 Register; 3.2.5 Enabled Flip-Flop; 3.2.6 Resettable Flip-Flop; 3.2.7 Transistor-Level Latch and Flip-Flop Designs; 3.2.8 Putting It All Together , 3.3 SYNCHRONOUS LOGIC DESIGN3.3.1 Some Problematic Circuits; 3.3.2 Synchronous Sequential Circuits; 3.3.3 Synchronous and Asynchronous Circuits; 3.4 FINITE STATE MACHINES; 3.4.1 FSM Design Example; 3.4.2 State Encodings; 3.4.3 Moore and Mealy Machines; 3.4.4 Factoring State Machines; 3.4.5 FSM Review; 3.5 TIMING OF SEQUENTIAL LOGIC; 3.5.1 The Dynamic Discipline; 3.5.2 System Timing; 3.5.3 Clock Skew; 3.5.4 Metastability; 3.5.5 Synchronizers; 3.5.6 Derivation of Resolution Time; 3.6 PARALLELISM; 3.7 SUMMARY; Exercises; Untitled; Chapter 4 Hardware Description Languages; 4.1 INTRODUCTION , 4.1.1 Modules , English
    Additional Edition: ISBN 0-12-370497-9
    Language: English
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  • 6
    Online Resource
    Online Resource
    Amsterdam :Morgan Kaufmann is an imprint of Elsevier,
    UID:
    almafu_9960072750202883
    Format: illustrations
    Edition: ARM Edition.
    ISBN: 0-12-800911-X , 0-12-800056-2
    Content: Digital Design and Computer Architecture: ARM Edition covers the fundamentals of digital logic design and reinforces logic concepts through the design of an ARM microprocessor. Combining an engaging and humorous writing style with an updated and hands-on approach to digital design, this book takes the reader from the fundamentals of digital logic to the actual design of an ARM processor. By the end of this book, readers will be able to build their own microprocessor and will have a top-to-bottom understanding of how it works. Beginning with digital logic gates and progressing to the design of combinational and sequential circuits, this book uses these fundamental building blocks as the basis for designing an ARM processor. SystemVerilog and VHDL are integrated throughout the text in examples illustrating the methods and techniques for CAD-based circuit design. The companion website includes a chapter on I/O systems with practical examples that show how to use the Raspberry Pi computer to communicate with peripheral devices such as LCDs, Bluetooth radios, and motors. This book will be a valuable resource for students taking a course that combines digital logic and computer architecture or students taking a two-quarter sequence in digital logic and computer organization/architecture.
    Note: Includes index. , From Zero to One -- Combinational Logic Design -- Sequential Logic Design -- Hardware Description Languages -- Digital Building Blocks -- Architecture -- Microarchitecture -- Memory Systems -- I/O Systems -- Appendix A. Digital System Implementation -- Appendix B. ARM Instructions -- Appendix C. C Programming.
    Language: English
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  • 7
    Book
    Book
    Amsterdam [u.a.] : Elsevier/Morgan Kaufmann
    UID:
    b3kat_BV023227541
    Format: XXII, 569 S. , Ill., graph. Darst. , 23 cm
    ISBN: 0123704979 , 9780123704979
    Note: Includes bibliographical references (p. 555-556) and index
    Language: English
    Subjects: Computer Science
    RVK:
    Keywords: Computerarchitektur ; Digitalelektronik
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  • 8
    Book
    Book
    Amsterdam [u.a.] : Morgan Kaufmann
    UID:
    gbv_668109238
    Format: XXII, 569 S. , Ill., graph. Darst.
    Edition: [Nachdr.]
    ISBN: 0123704979 , 9780123704979
    Note: Includes bibliographical references and index
    Language: English
    Subjects: Computer Science
    RVK:
    Keywords: Computerarchitektur ; Logischer Entwurf
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  • 9
    Online Resource
    Online Resource
    Amsterdam ; Boston ; Heidelberg : Elsevier, Morgan Kaufmann
    UID:
    b3kat_BV047107860
    Format: 1 Online-Ressource , Illustrationen, Diagramme
    Edition: ARM edition
    ISBN: 9780128009116
    Content: Digital Design and Computer Architecture, Second Edition, takes a unique and modern approach to digital design, introducing the reader to the fundamentals of digital logic and then showing step by step how to build a MIPS microprocessor in both Verilog and VHDL. This new edition combines an engaging and humorous writing style with an updated and hands-on approach to digital design. It presents new content on I/O systems in the context of general purpose processors found in a PC as well as microcontrollers found almost everywhere. Beginning with digital logic gates and progressing to the design of combinational and sequential circuits, the book uses these fundamental building blocks as the basis for the design of an actual MIPS processor. It provides practical examples of how to interface with peripherals using RS232, SPI, motor control, interrupts, wireless, and analog-to-digital conversion.
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-0-12-800056-4
    Language: English
    Subjects: Computer Science , Engineering
    RVK:
    RVK:
    Keywords: Computerarchitektur ; Logischer Entwurf
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 10
    Online Resource
    Online Resource
    Amsterdam ; : Morgan Kaufmann Publishers,
    UID:
    almahu_9948312126102882
    Format: xxii, 569 p. : , ill.
    Edition: 1st ed.
    Edition: Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
    Language: English
    Keywords: Electronic books.
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