펄스 RF 측정
Testing with pulsed RF signals provides a unique test challenge due to bandwidth limitations, pulse desensitization, and/or triggering requirements. Agilent provides a variety of tools designed to meet these challenges accurately and reliably.
Pulsed RF S-Parameter Measurements
Device behavior differs under CW stimulus and pulsed RF stimulus due to the differences in power dissipation and biasing. Learn about the unique methods Agilent provides in characterizing components under pulsed RF conditions with Agilent´s application note PNA - Pulsed-RF S-Parameter Measurements Using Wideband and Narrowband Detection (AN 1408-12).
Pulsed RF Signal Generation
Simply create basic pulsed RF signals using the optional built in pulse modulators available with Agilent PSG, MXG, and ESG signal generators. For more complex pulse patterns use Agilent´s vector signal generators. Find out more about these solutions with Agilent Signal Studio for Pulse Building product online technical overview.
Pulsed RF Spectrum Measurements
Optimally measure the spectrum of all signal types using a combination of swept, FFT, and vector analysis techniques. Learn more about pulsed RF spectrum measurements with Agilent´s application note Fundamentals of RF Pulse Analysis using a Spectrum Analyzer.
Pulsed RF Power Measurements
The power of pulsed RF signals may be measured using an average or peak power meters. Average power meters often have the most accuracy for an average power measurement; however peak power meters have added benefits of being able to directly measure peak power, pulse power, pulse characteristics such as rise and fall times, and power statistics. View a Pulsed RF measurement demo P-Series Power Meter Radar Video Demonstration.
Pulsed RF Phase Noise
Pulsed systems such as radar transmitters are limited by the effects of phase noise. Because these devices are designed to operate under pulsed RF conditions, the phase noise solution must operate with pulsed RF signals. Learn more about pulsed phase noise measurements with Agilent application note Pulsed Carrier Phase Noise Measurements (AN 1309).
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81100 Family of Pulse Pattern/Generators Radar Distance Test to Airborne Planes (PN 1)
This Product Note describes how a trigger pulse train of double pulses is sent from the control tower's radar system to an airplane.
어플리케이션 노트 2004-10-12 |
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81100 Family of Pulse/Pattern Generators the Dual Clock Gbit Chip Test (PN 2)
In this Product Note the principle is to deliver a variable clock to feed either your device(s), board(s) or instrument(s). Due to the two channel capability it is also possible to generate clocks which ...
어플리케이션 노트 2004-10-18 |
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8753/8720 Pulsed Measurements
The aim of this Product Note is to show that under certain conditions, network analyzers such as the Agilent 8720ES and 8753ES can produce good results at a much lower cost.
어플리케이션 노트 2000-05-01 |
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A New Technique for Pulsed RF Measurements (AN 120)
This Application Note is for information only. Agilent no longer sells or supports these products.
어플리케이션 노트 1968-09-01 |
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Active Device Characterization in Pulsed Operation Using the PNA-X AN 1408-21
This AN discusses pulsed S-parameter measurements using the PNA-X series and measurement techniques that enable power-dependent active device characterization including compression and distortion.
어플리케이션 노트 2011-05-17 |
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EPM-P Series Power Meters Used in Radar and Pulse Applications (AN 1438)
어플리케이션 노트 2003-01-28 |
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PNA - Pulsed Measurement Accuracy (1408-11)
어플리케이션 노트 2004-02-17 |
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PNA - Pulsed-RF S-Parameter Measurements Using Wideband and Narrowband Detection (AN 1408-12)
어플리케이션 노트 2007-11-28 |
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Pulsed Carrier Phase Noise Measurements (AN 1309)
This application note discusses basic fundamentals for making pulsed carrier phase noise measurements using Agilent E5500 phase noise measurement system.
어플리케이션 노트 2000-05-01 |
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Recent Advances in Pulsed RF and Microwave Frequency Measurements (AN 173)
This Application Note is for information only. Agilent no longer sells or supports these products.
어플리케이션 노트 1974-10-01 |
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Spectrum and Signal Analysis Pulsed RF Application Note 150-2
This application note is intended as an aid for the operation of spectrum and signal analyzers and the interpretation of the displayed pulse spectra.
어플리케이션 노트 2012-07-05 |
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Successful Modulation Analysis in 3 Steps
This application note presents a planned measurement & troubleshooting sequence consisting of 3 steps: (1) Frequency, frequency & time, (2) Basic digital mod. analysis, and (3) Advanced digital mod. analysis.
어플리케이션 노트 2012-11-21 |
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