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Find the information you need from Rohde & Schwarz. Search for products, technologies, applications, manuals, datasheets, tutorials, FAQs, and more.
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The R&S FSWP phase noise analyzer is the perfect tool for verifying clock sources to ensure accuracy of design requirements and proper operation.
30-Sep-2021
New hardware and firmware for R&S®FSPN and R&S®FSWP devices
This application note reviews the fundamentals of residual or additive noise and addresses measurement techniques for determining the amplitude (AM) and phase noise added by two-port devices such as: amplifiers, mixers, block frequency converters, multipliers, dividers, and frequency synthesizers.
09-Oct-2017 | AN-No. 1EF100
This application note will focus on phase noise measurements for pulsed RF carriers such as those used for radar systems.
18-May-2016 | AN-No. 1EF94
This document provides the technical specifications of the R&S®Fxx-K30 noise figure measurement application.
The alternative approach presented in this paper employs a low phase noise local oscillator for direct down-conversion of the DUT signal.
09-May-2016
This application note provides basic information about frequency and phase settling time measurements and how the measurement is implemented inside modern phase noise analyzers.
28-Jun-2018 | AN-No. 1EF102
Rely on measuring instruments evolved in the spirit of innovation and based on industry-leading expertise.
Explore particle acceleration solutions from test and measurement experts. Trust our industry-leading equipment to meet particle accelerator test requirements.
It is recommended to use jitter measurement instruments for both the time and frequency domain in order to differentiate between fast and slow moving artifacts.
22-Aug-2017
R&S®FSWP Getting Started manual; provides the information needed to set up and start working with the instrument. Basic operations and handling are described. Safety information is also included.
This paper describes the measurement of additive/residual phase noise of power amplifiers or multipliers for example for automotive RADAR sensors at 80 GHz using the interferometric measurement approach in combination with a phase noise and VCO tester R&S FSWP. The setup provides a way to characterize the additive/residual phase noise of amplifiers down to -150 dBc/Hz at 100 kHz offset even in the microwave range at 80 GHz.
11-Sep-2024 | AN-No. 1EF117
R&S®VSE-K60(x) / FSW-K60(x) / FSWP-K60(x) / FSV3-K60(x) Transient measurements - Specifications
21-Jun-2023 | Press Releases | Test & measurement
Rohde & Schwarz and Zurich Instruments present advanced test solutions at LASER World of PHOTONICS in MunichRohde & Schwarz and Zurich Instruments will present advanced test and measurement solutions for photonics at the LASER World of PHOTONICS tradeshow in Munich. Highlighted solutions include the R&S FSPN and R&S FSWP, two exceptionally powerful phase noise analyzers for characterizing laser systems. Visitors can also see demos of the R&S MXO 4 and R&S RTO6 oscilloscopes from Rohde & Schwarz as well as the Quantum Computing Control System (QCCS) and lock-in amplifiers from Zurich Instruments.
This document provides the technical specifications of the R&S®FSx-K50 spurious measurement application.
Overview of Rohde & Schwarz multifunctional radar testing with explanation of all application fields.
When measurement performance counts, choose Rohde & Schwarz test solutions for testing oscillators, clocks and PLLs for phase noise, jitter, wideband noise and spurs.
Ensure precision in radar transciever testing with Rohde & Schwarz. Optimize RF transceiver performance with advanced measurement solutions for aerospace and defense.
R&S®FSWP Security
FSWP: Get the data of the grey background curve via remote control
I have made a phase noise measurement with the FSWP and I can see a peak at 500kHz which is a spurious.
Rohde & Schwarz user manual for the R&S®FSWP Phase Noise Analyzer; it provides all the information specific to the Phase Noise application. All other operating modes and applications are described in the specific application manuals.
Performing complex measurements at the push of a button, the R&S®FSWP is ideal for high performance radar and communication system applications. The phase noise tester can also be upgraded to a signal and spectrum analyzer. R&S®FSWP, FSWP, phase noise, VCO tester The new R&S®FSWP phase noise and VCO tester from Rohde & Schwarz sets new standards in terms of sensitivity and measurement speed.
R&S®FSWP, FSWP, phase noise, VCO tester The R&S®FSWP phase noise and VCO tester from Rohde & Schwarz measures phase noise with high accuracy at frequencies beyond 50 GHz.
Choose Rohde & Schwarz test solutions for mixers & frequency converters for dynamic range, ease of operation and phase noise performance reasons.
What's the difference between the integrated measurement with and without the spurs 'hidden' on FSWP, is it supposed to give random-jitter and total jitter directly, respectively and how do I get the total RMS jitter from the instrument directly?
High‑end analysis of signal sources and components The R&S®FSWP with its outstanding sensitivity to measure phase noise is now additionally equipped with the Noise power ratio (NPR) option. The R&S®FSWP with its outstanding sensitivity to measure phase noise is now additionally equipped with the Noise power ratio (NPR) option.
18-Jan-2023 | Press Releases | Test & measurement
Rohde & Schwarz announces major boost for phase noise analysis and VCO measurements portfolioRohde & Schwarz introduces improved performance for phase noise analysis and voltage-controlled oscillator (VCO) measurements. Both the high end R&S FSWP phase noise analyzer and VCO tester plus signal and spectrum analyzer in one instrument, and the R&S FSPN dedicated phase noise analyzer and VCO tester, are now upgraded. Simultaneous hardware and software upgrades improve the market-leading performance even further, reducing noise levels and measurement times, and increasing accuracy. Both analyzers include test sequence recording functions (SCPI recorder), unique for this class of instrument.