Applications of Field-Programmable Gate Arrays in Scientific Research
Focusing on resource awareness in field-programmable gate array (FPGA) design, Applications of Field-Programmable Gate Arrays in Scientific Research covers the principle of FPGAs and their functionality. It explores a host of applications, ranging from small one-chip laboratory systems to large-scale applications in "big science." The book first de
1103677796
Applications of Field-Programmable Gate Arrays in Scientific Research
Focusing on resource awareness in field-programmable gate array (FPGA) design, Applications of Field-Programmable Gate Arrays in Scientific Research covers the principle of FPGAs and their functionality. It explores a host of applications, ranging from small one-chip laboratory systems to large-scale applications in "big science." The book first de
64.99 In Stock
Applications of Field-Programmable Gate Arrays in Scientific Research

Applications of Field-Programmable Gate Arrays in Scientific Research

by Hartmut F.-W. Sadrozinski, Jinyuan Wu
Applications of Field-Programmable Gate Arrays in Scientific Research

Applications of Field-Programmable Gate Arrays in Scientific Research

by Hartmut F.-W. Sadrozinski, Jinyuan Wu

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Overview

Focusing on resource awareness in field-programmable gate array (FPGA) design, Applications of Field-Programmable Gate Arrays in Scientific Research covers the principle of FPGAs and their functionality. It explores a host of applications, ranging from small one-chip laboratory systems to large-scale applications in "big science." The book first de

Product Details

ISBN-13: 9781040187494
Publisher: CRC Press
Publication date: 04/19/2016
Sold by: Barnes & Noble
Format: eBook
Pages: 167
File size: 2 MB

About the Author

Hartmut F.-W. Sadrozinski is a research physicist and adjunct professor at the University of California, Santa Cruz. A senior fellow of the IEEE, Dr. Sadrozinski has been working on the application of silicon sensors and front-end electronics in elementary particle physics and astrophysics for over 30 years. He is currently involved in the use of silicon sensors to support hadron therapy. He earned his Ph.D. from the Massachusetts Institute of Technology.

Jinyuan Wu is an electronics engineer in the Particle Physics Division of Fermi National Accelerator Laboratory. Dr. Wu is a frequent lecturer at international workshops and IEEE conferences. He earned his Ph.D. in experimental high energy physics from Pennsylvania State University.

Table of Contents

Introduction. Understanding FPGA Resources. Several Principles and Methods of Resource Usage Control. Examples of an FPGA in Daily Design Jobs. The ADC + FPGA Structure. Examples of FPGA in Front-End Electronics. Examples of an FPGA in Advanced Trigger Systems. Examples of an FPGA Computation. Radiation Issues. Time-over-Threshold: The Embedded Particle-Tracking Silicon Microscope (EPTSM). Appendix. Index.
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