Time-Frequency instrumentation - High frequencies and phase noise measurement

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R688 V1 Article

Time-Frequency instrumentation - High frequencies and phase noise measurement

Authors : Fabrice STHAL, Enrico RUBIOLA

Publication date: June 10, 2010 | Lire en français

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ABSTRACT

The frequency of a signal consists in measuring the number of oscillations during a unit of time. However, in practice, signals do not have a stable and constant frequency, which makes the time-frequency measurement approach more complex. This article presents high-frequency counters (above 300 MHz) and phase noise measurements. It thus deals with microwave frequency measurements which require using types of conversions which lower frequencies. The various techniques which allow for the characterization of a signal in the frequency domain are then presented.

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AUTHORS

  • Fabrice STHAL : University Professor at ENSMM - FEMTO-ST Institute, Time-Frequency Department, Besançon

  • Enrico RUBIOLA : University Professor at UFC - FEMTO-ST Institute, Time-Frequency Department, Besançon

 INTRODUCTION

The first section [R 686] presents the principles of counting and the basic counters used in the time domain. Techniques for improving resolution to obtain more accurate measuring devices are covered in a second dossier [R 687] .

In this issue [R 688], we focus on meters operating at frequencies above 300 MHz, and on phase noise measurements.

Having reviewed the various meter principles, it's time to add a few details about microwave meters. Indeed, the limitations of electronic components require different techniques to bring microwave frequency measurements back into the usual range. These are described in our first paragraph.

Time-frequency duality means that it can be interesting to characterize a signal not in the time domain, but in the frequency domain. The various techniques are discussed in the second paragraph.

Today, there are very compact, high-performance digital devices that can perform both characterizations. This is the subject of our last paragraph.

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