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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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R&S®SpycerNode SC Post Production - Application Brochure
GX470 Digital Wideband Storage Device - Product Brochure
R&S QAR50 Automotive Radome Tester - Product Brochure
GNSS Simulator in the R&S SMBV100A Vector Signal Generator - Product Brochure
R&S ASMS02 Automatic Switching Main Standby Unit for R&S M3SR Series4100 Radios - Product Brochure
The R&S®FSC is a compact, cost-efficient solution that offers all essential features of a professional spectrum analyzer with Rohde & Schwarz quality. The R&S®FSC covers a wide range of applications from simple development tasks to production and can be used to train RF professionals. It is also ideal for service or maintenance applications. The R&S®FSC has many functions for simplifying and speeding up the RF product development and testing. The good RF characteristics and high measurement accuracy ensure reliable and reproducible measurement results.
A central MAM platform was to be at the heart of the newly established workflow while high-end Rohde & Schwarz DVS equipment was placed in strategic positions: Five R&S®VENICE ingest and production servers – providing a total of 20 channels – ensure reliable and flexible studio capture and playout.
All wireless devices must be tested for radiated spurious emissions (RSE) to verify compliance with national and international standards such as ITU, ETSI and FCC. The configuration required is similar to an EMI measurement setup, with the additional challenging task of measuring the low level spurious emissions in presence of the carrier frequency of a wireless device. The R&S®TS8996 RSE test system handles these tasks with a single setup and covers all relevant carrier frequencies and bandwidths used in wireless communications.
The R&S®TSME44DC and R&S®TSMS53DC are designed to easily upgrade the R&S®TSMx network scanners to measure 5G NR signals in the mmWave frequency range. They perfectly extend the latest generation mobile network scanner family and provide all features for easy drive and walk testing. They are fully controlled by the R&S®TSMx and the corresponding software layers, which allows seamless, unattended operation.
Worldwide consumer demand for cellular services has driven network operators to strive for better network coverage and within that coverage footprint, better network capacity. Since more than 80 % of cellular traffic comes from inside a building of some sort, in-building coverage and in-building capacity have become a focus of this effort. In addition, in many countries emergency service providers require cellular access in all areas of large buildings, adding to the importance of in-building coverage.
VHF/UHF Automatic Filters and Multicouplers for R&S M3SR software defined radios - Product Brochure
The R&S®TSMx mobile network scanners collect RF data to test mobile networks or analyze networks for government purposes. The new application programming interface (API) for R&S®TSMx mobile network scanners – here referred to as R&S®ViComWeb – allows the scanners to be quickly integrated into any third-party software irrespective of the operating system in use. Installations for walk and drive tests and for remote control of the scanners are supported.
The R&S®ESME wideband monitoring receiver is ideal for high-performance ITU-compliant spectrum monitoring, signal analysis and multichannel digital data streaming from 8 kHz to 40 GHz. In combination with Rohde & Schwarz single-channel direction finding (DF) antennas, it optionally supports angle of arrival (AOA) direction finding from 300 kHz to 8.2 GHz. Thanks to its exceptional RF performance, the R&S®ESME provides cutting-edge signal detection and measurement capabilities even in high-density spectrum environments.
The R&S®RT-ZISO isolated probing system sets new standards in optical probe technology. The innovative solution delivers unparalleled accuracy, sensitivity, dynamic range and bandwidth while enabling next-generation wide bandgap (WBG) SiC and GaN power designs. The remarkable R&S®RT-ZISO can make precise differential measurements up to ±3000 V on common mode voltage of ±60 kV with rise times up to < 450 ps. The solution can suppress fast common mode edges that would otherwise distort and disturb accurate measurements.
R&S®M3AR Software Defined Radios VHF/UHF Transceiver Family for Airborne Communications - Product Brochure
Oscilloscopes for debugging automotive Ethernet networks - Application Brochure
LTE, Location Based Services, LBS
R&S TMU9 / TMV9 Air-Cooled Transmitter Families - Product Brochure
Redefining the future of mobile delivery – 5G broadcast/multicast R&S®Tx9/R&S®Tx9evo - Product Flyer
R&S®THU9evo | R&S®THV9evo Liquid-Cooled Transmitter Family - Product Brochure
This document provides the technical specifications of the R&S®Fxx-K30 noise figure measurement application.
Trends in connected cars – at a glance - Flyer
R&S®PWC200 Plane Wave Converter - Product Brochure
R&S M3SR Series4100 Software Defined Radios - HF radio family for stationary and shipborne communications - Product Brochure
The R&S® Pronto family - Product Brochure
R&S FSW-B512R-B800R-K161R-K512RE-K800R Real-Time Spectrum Analyzer and Measurement Application - Specifications
Digital workflows at Cineteca Nacional with Rohde & Schwarz products - Flyer
R&S SMA100B Generating narrow pulses with highest level accuracy and repeatability - Application Card
The R&S®FSWP phase noise analyzer and VCO tester features very high sensitivity thanks to extremely low noise internal sources and cross-correlation. It can measure phase noise on highly stable sources such as those found in radar applications in just seconds. Additional options such as pulsed signal measurements, residual phase noise characterization and integrated high‑end signal and spectrum analysis make the R&S®FSWP a unique test instrument. A multitouch display ensures straightforward and intuitive operation. The embedded SCPI recorder enables easy creation of executable scripts.
Signal model based approach to joint jitter and noise decomposition - First published at DesignCon 2020 - White Paper