24 Resultados
This document provides the technical specifications of the R&S®FSV3000 signal and spectrum analyzer.
Measurements at the push of a button, capturing rare events with event based actions, and simple script programming with the SCPI recorder – setting up and performing complex measurements in no time is the strength of the R&S®FSV3000 signal and spectrum analyzer. Its fast measurement speed is a major asset especially in automated production applications as it yields high throughput.
The R&S®FS-SNS smart noise sources enable simple and accurate noise figure and gain measurements by automatically loading all necessary setup parameters and taking the environmental temperature into account. Measurement uncertainty is calculated automatically and can even be displayed on the result screen.
This document provides the technical specifications of the R&S®FS-SNS smart noise sources.
This document provides the technical specifications of the R&S®VSE-K144/-K146/-K148/-K171/-K175/FSx-K144/-K145/-K147/-K148/-K171/FPS-K144/-K148 5G NR measurement application
Rohde & Schwarz has signal generation and analysis solutions that cover millimeterwave frequencies and beyond. Our signal generation and analysis solution portfolio addresses the bandwidth and frequency requirements for 5G and beyond, offering a wide range of features and application software for any testing challenge.
Technical specifications for the R&S®FE50DTR External Frontend 36 GHz to 50 GHz
The measurement setup includes an R&S®FSW or R&S®FSV(A)3000 signal and spectrum analyzer or R&S®VSE compliant instruments with an R&S®SMW200A, R&S®SMM100A or R&S®SMBV100A vector signal generator. The closed loop system enables control of the signal generator and automatic synchronization.
This document provides an overview of the Rohde & Schwarz signal and spectrum analyzer portfolio.
This document provides the technical specifications of the R&S®VSE-K10, R&S®FSx-K10 GSM measurements
This document provides the technical specifications of tthe R&S®VSE-K6 pulse measurement application.
This document provides the technical specifications of the R&S®VSE-K106/FSx-K106/FPS-K106 EUTRA/LTE NB-IoT measurement application.
Technical specifications of the noise figure measurement options: R&S®FSW-K30, R&S®FSWP-K30, R&S®FSMR3-K30, R&S®FSV3-K30, R&S®FPS-K30, R&S®FSV-K30, R&S®FPL1-K30.
This document provides the technical specifications of the phase noise measurement application: R&S®FSW-K40, R&S®FSMR3-K40, R&S®FSV3-K40, R&S®FPS-K40, R&S®FSV-K40, R&S®FPL1-K40.
This document provides the technical specifications of the R&S®VSE-K91/FSx-K91/FPS-K91 WLAN IEEE 802.11a/b/g/j/p/n/ac/ax/be measurement application.
The EMI measurement application (K54 option) adds EMI precompliance measurement functions to the following spectrum analyzers: R&S®FSW, R&S®FSVA3000, R&S®FSV3000, R&S®FPL1000 and R&S®FSVR. It is the ideal EMI analysis extension for product development and a smooth certification process. Typical application fields include commercial, automotive, avionics and military product development (CISPR, EN, FCC, DO‑160 and MIL-STD-461 standards).
This document provides an overview of the Rohde & Schwarz signal and spectrum analyzer portfolio (version for US).
This document provides the technical specification of the EMI measurement application for signal and spectrum analyzers – R&S®FSW-K54, R&S®FSV3-K54, R&S®FPL1-K54, R&S®FSV-K54.
This document provides an overview of the Rohde & Schwarz signal and spectrum analyzer portfolio (version for Canada).
This document provides the technical specifications of the R&S®VSE-K70x/FSx-K70x/FPx-K70x vector signal analysis application.
This document provides the technical specifications of the R&S®VSE-K7/Fxx-K7/RTO AM/FM/PM modulation analysis option.
This document provides the technical specifications of the R&S®FSx-K18x amplifier measurements.
Choose the most suitable EMI debugging or precompliance solution
The -K10x options cover the inband measurements of 3GPP LTE and LTE advanced. The R&S®VSE-K100/-K102/-K104 options provide convenient analysis due to automatic detection of modulation formats. Each signal subframe is analyzed and the QPSK, 16QAM or 64QAM modulation formats plus the length of the cyclic prefix are automatically detected and used in the analysis. The cell identity can also be automatically detected, which reduces the number of settings required by the user to a minimum.