The Resource A Priori Wire Length Estimates for Digital Design, by Dirk Stroobandt, (electronic resource)

A Priori Wire Length Estimates for Digital Design, by Dirk Stroobandt, (electronic resource)

Label
A Priori Wire Length Estimates for Digital Design
Title
A Priori Wire Length Estimates for Digital Design
Statement of responsibility
by Dirk Stroobandt
Creator
Author
Author
Subject
Language
  • eng
  • eng
Summary
The roots of this book, and of the new research field that it defines, lie in the scaling of VLSI technology. With gigahertz system clocks and ever­ accelerating design and process innovations, interconnects have become the limiting factor for both performance and density. This increasing impact of interconnects on the system implementation space necessitates new tools and analytic techniques to support the system designer. With respect to modeling and analysis, the response to interconnect dom­ inance is evolutionary. Atomistic- and grain-level models of interconnect structure, and performance models at multi-gigahertz operating frequencies, together guide the selection of improved materials and process technologies (e. g. , damascene copper wires, low-permittivity dielectrics). Previously in­ significant effects (e. g. , mutual inductance) are added into performance mod­ els, as older approximations (e. g. , lumped-capacitance gate load models) are discarded. However, at the system-level and chip planning level, the necessary response to interconnect dominance is revolutionary. Convergent design flows do not require only distributed RLC line models, repeater awareness, unifi­ cations with extraction and analysis, etc. Rather, issues such as wiring layer assignment, and early prediction of the resource and performance envelope for the system interconnect (in particular, based on statistical models of the system interconnect structure), also become critical. Indeed, system-level interconnect prediction has emerged as the enabler of improved interconnect modeling, more cost-effective system architectures, and more productive design technology
http://library.link/vocab/creatorName
Stroobandt, Dirk
Dewey number
621.3815/2
http://bibfra.me/vocab/relation/httpidlocgovvocabularyrelatorsaut
yBEbGK9ZsOQ
Image bit depth
0
Language note
English
LC call number
TK7888.4
Literary form
non fiction
Nature of contents
dictionaries
http://library.link/vocab/subjectName
  • Systems engineering
  • Computer aided design
  • Computer engineering
  • Systems theory
  • Circuits and Systems
  • Computer-Aided Engineering (CAD, CAE) and Design
  • Electrical Engineering
  • Systems Theory, Control
Label
A Priori Wire Length Estimates for Digital Design, by Dirk Stroobandt, (electronic resource)
Instantiates
Publication
Note
Bibliographic Level Mode of Issuance: Monograph
Antecedent source
mixed
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Color
not applicable
Content category
text
Content type code
txt
Contents
1. Overview -- 1.1 Prologue -- 1.2 Setting of the research domain -- 1.3 Purpose of this research work -- 1.4 Three ways to follow -- 1.5 Overview of published work -- 1.6 Overview of this research work -- 2. Definitions and Basic Models -- 2.1 Model for the circuit -- 2.2 Model for the architecture -- 2.3 Model for the layout -- 2.4 Rent’s rule -- 3. Multi-Terminal Nets -- 3.1 Model for multi-terminal nets -- 3.2 Synthetic benchmark circuits -- 4. A priori Wire Length Estimation -- 4.1 Overview of wire length estimation principles -- 4.2 Donath’s hierarchical wire length estimation method -- 4.3 Global wire length distribution -- 4.4 Extending Donath’s placement model -- 4.5 Discussion and results -- 4.6 External nets -- 5. Three-Dimensional Architectures -- 5.1 Conquest of the third dimension -- 5.2 Three-dimensional architectures -- 5.3 Wire length in three-dimensional architectures -- 5.4 Anisotropic architectures -- 6. Applications of a priori Wire Length Estimation -- 6.1 Applications in computer-aided design -- 6.2 Evaluation of new architectures -- 6.3 Theoretical characterization of circuits -- 7. Conclusion -- 7.1 Overview of research results presented in this book -- 7.2 Possibilities for further research -- Appendices -- Generating polynomials as efficient representation of distributions -- A.1 Enumeration of site density functions -- A.1.1 Problem formulation -- A.1.2 Generating polynomials -- A.2 Construction of polynomials -- A.2.1 Composition -- A.2.2 Convolution -- A.3 Extraction of distributions -- A.4 Examples -- A.4.1 Two-dimensional isotropic grid -- A.4.2 More complicated architectures -- Symbols -- References
Dimensions
unknown
Extent
1 online resource (XXII, 298 p.)
File format
multiple file formats
Form of item
online
Isbn
9781441984999
Level of compression
uncompressed
Media category
computer
Media type code
c
Other control number
10.1007/978-1-4419-8499-9
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
  • (CKB)3400000000087652
  • (SSID)ssj0000808041
  • (PQKBManifestationID)12280686
  • (PQKBTitleCode)TC0000808041
  • (PQKBWorkID)10793102
  • (PQKB)10925617
  • (DE-He213)978-1-4419-8499-9
  • (MiAaPQ)EBC3073405
  • (EXLCZ)993400000000087652
Label
A Priori Wire Length Estimates for Digital Design, by Dirk Stroobandt, (electronic resource)
Publication
Note
Bibliographic Level Mode of Issuance: Monograph
Antecedent source
mixed
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Color
not applicable
Content category
text
Content type code
txt
Contents
1. Overview -- 1.1 Prologue -- 1.2 Setting of the research domain -- 1.3 Purpose of this research work -- 1.4 Three ways to follow -- 1.5 Overview of published work -- 1.6 Overview of this research work -- 2. Definitions and Basic Models -- 2.1 Model for the circuit -- 2.2 Model for the architecture -- 2.3 Model for the layout -- 2.4 Rent’s rule -- 3. Multi-Terminal Nets -- 3.1 Model for multi-terminal nets -- 3.2 Synthetic benchmark circuits -- 4. A priori Wire Length Estimation -- 4.1 Overview of wire length estimation principles -- 4.2 Donath’s hierarchical wire length estimation method -- 4.3 Global wire length distribution -- 4.4 Extending Donath’s placement model -- 4.5 Discussion and results -- 4.6 External nets -- 5. Three-Dimensional Architectures -- 5.1 Conquest of the third dimension -- 5.2 Three-dimensional architectures -- 5.3 Wire length in three-dimensional architectures -- 5.4 Anisotropic architectures -- 6. Applications of a priori Wire Length Estimation -- 6.1 Applications in computer-aided design -- 6.2 Evaluation of new architectures -- 6.3 Theoretical characterization of circuits -- 7. Conclusion -- 7.1 Overview of research results presented in this book -- 7.2 Possibilities for further research -- Appendices -- Generating polynomials as efficient representation of distributions -- A.1 Enumeration of site density functions -- A.1.1 Problem formulation -- A.1.2 Generating polynomials -- A.2 Construction of polynomials -- A.2.1 Composition -- A.2.2 Convolution -- A.3 Extraction of distributions -- A.4 Examples -- A.4.1 Two-dimensional isotropic grid -- A.4.2 More complicated architectures -- Symbols -- References
Dimensions
unknown
Extent
1 online resource (XXII, 298 p.)
File format
multiple file formats
Form of item
online
Isbn
9781441984999
Level of compression
uncompressed
Media category
computer
Media type code
c
Other control number
10.1007/978-1-4419-8499-9
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
  • (CKB)3400000000087652
  • (SSID)ssj0000808041
  • (PQKBManifestationID)12280686
  • (PQKBTitleCode)TC0000808041
  • (PQKBWorkID)10793102
  • (PQKB)10925617
  • (DE-He213)978-1-4419-8499-9
  • (MiAaPQ)EBC3073405
  • (EXLCZ)993400000000087652

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