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Analog Performance Metrics
by
McKinney, Jason D
, Williams, Keith J
, Urick, V. J
in
analog systems
/ compression dynamic range (CDR)
/ performance metrics
/ radio‐frequency (RF)
/ scattering matrix
/ sinusoidal signal
/ spurious‐free dynamic range (SFDR)
/ Taylor series analysis
/ thermal noise
2015
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Analog Performance Metrics
by
McKinney, Jason D
, Williams, Keith J
, Urick, V. J
in
analog systems
/ compression dynamic range (CDR)
/ performance metrics
/ radio‐frequency (RF)
/ scattering matrix
/ sinusoidal signal
/ spurious‐free dynamic range (SFDR)
/ Taylor series analysis
/ thermal noise
2015
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Do you wish to request the book?
Analog Performance Metrics
by
McKinney, Jason D
, Williams, Keith J
, Urick, V. J
in
analog systems
/ compression dynamic range (CDR)
/ performance metrics
/ radio‐frequency (RF)
/ scattering matrix
/ sinusoidal signal
/ spurious‐free dynamic range (SFDR)
/ Taylor series analysis
/ thermal noise
2015
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Book Chapter
Analog Performance Metrics
2015
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Overview
This chapter defines the most important performance parameters for analog systems. It begins with a simple analysis of linear two‐port networks using a scattering matrix, from which the small‐signal radio‐frequency (RF) gain is defined. The standard metric for quantifying the performance of a noisy RF component or system, the noise figure, is then defined including a brief discussion of thermal noise. A Taylor series analysis is conducted for a single sinusoidal drive and a two‐tone sinusoidal signal in order to describe the nonlinearity of a RF component or system in a standard manner. A single‐tone signal is used to define the compression dynamic range (CDR), whereas the analysis of a two‐tone drive introduces the spurious‐free dynamic range (SFDR). Finally, the chapter is concluded with a prescription on how to cascade the individual performance metrics in a chain of stages to facilitate system analysis.
Publisher
John Wiley & Sons, Incorporated,Wiley,John Wiley & Sons, Inc
Subject
ISBN
9781118293201, 1118293207
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