Finite State Machine Datapath Design, Optimization, and Implementation / by Justin Davis, Robert Reese
By: Davis, Justin, (Information scientist), autor
Contributor(s): Reese, Robert B. (Robert Bryan),, autor
Material type:
E-bookSeries: (Synthesis Lectures on Digital Circuits & Systems, 1932-3174).Publisher: Cham : Springer International Publishing, 2008Edition: 1st edition 2008.Description: 1 recurso en línea (IX, 113 páginas).ISBN: 9783031797767.Subject: Circuitos lógicos -- Diseño
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
|
Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TK7888.3 2008 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.01112989 |
Browsing Madrid Digital shelves, Shelving location: Acceso Electrónico (UEM) Close shelf browser (Hides shelf browser)
| TK7887.6 P454 2017 EB Analog-to-Digital Conversion | TK7887.6 R338 2016 EB Charge-Sharing SAR ADCs for Low-Voltage Low-Power Applications | TK7887.6 X564 2018 EB Design of Power-Efficient Highly Digital Analog-to-Digital Converters for Next-Generation Wireless Communication Systems | TK7888.3 2008 EB Finite State Machine Datapath Design, Optimization, and Implementation | TK7888.4 2015 EB Application of Evolutionary Algorithms for Multi-objective Optimization in VLSI and Embedded Systems | TK7888.4 2015 EB Radio Frequency Integrated Circuit Design for Cognitive Radio Systems | TK7888.4 2015 EB Design of Organic Complementary Circuits and Systems on Foil |
Calculating Maximum Clock Frequency -- Improving Design Performance -- Finite State Machine with Datapath (FSMD) Design -- Embedded Memory Usage in Finite State Machine with Datapath (FSMD) Designs.
Finite State Machine Datapath Design, Optimization, and Implementation explores the design space of combined FSM/Datapath implementations. The lecture starts by examining performance issues in digital systems such as clock skew and its effect on setup and hold time constraints, and the use of pipelining for increasing system clock frequency. This is followed by definitions for latency and throughput, with associated resource tradeoffs explored in detail through the use of dataflow graphs and scheduling tables applied to examples taken from digital signal processing applications. Also, design issues relating to functionality, interfacing, and performance for different types of memories commonly found in ASICs and FPGAs such as FIFOs, single-ports, and dual-ports are examined. Selected design examples are presented in implementation-neutral Verilog code and block diagrams, with associated design files available as downloads for both Altera Quartus and Xilinx Virtex FPGA platforms. A working knowledge of Verilog, logic synthesis, and basic digital design techniques is required. This lecture is suitable as a companion to the synthesis lecture titled Introduction to Logic Synthesis using Verilog HDL. Table of Contents: Calculating Maximum Clock Frequency / Improving Design Performance / Finite State Machine with Datapath (FSMD) Design / Embedded Memory Usage in Finite State Machine with Datapath (FSMD) Designs.
There are no comments on this title.