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Launch of 8.3GHz 'FSW Signal Analyzer' to Lead Next-Generation Technology
FSW-B8001 option supporting an internal analysis bandwidth of up to 8.3GHz
Provides superior measurement dynamic range and sensitivity
▲ R&S FSW [Photo by Rohde & Schwarz] Rohde & Schwarz announced a new option for the R&S FSW-B8001 on the 6th. This option allows the internal analysis bandwidth of the FSW high-performance signal and spectrum analyzer to be extended up to 8.3 GHz.
Supporting a measurement frequency range of up to 85 GHz, the R&S FSW boasts superior measurement dynamic range, sensitivity, accuracy, and EVM performance. It also provides extended analysis bandwidth and dedicated measurements, meeting the test and measurement requirements for ultra-wideband (UWB) signal analysis and next-generation technologies.
This is known as an optimal measuring instrument for pulse measurement in aviation and military radar systems, satellite payload testing, and pre-distortion measurement of amplifiers, and is an essential instrument for chirp signal analysis in automotive radar and the development of next-generation wireless communication.
Increasing wireless communication bandwidth is essential for new next-generation technologies, as it requires higher data transmission speeds. Therefore, signal analysis of these ultra-wideband (UWB) systems has generally been performed by combining multiple measurement devices. However, the new R&S FSW solution provides much higher signal analysis performance and measurement accuracy because it performs all signal processing perfectly as a single-device solution without the help of external devices such as oscilloscopes.
Provides superior measurement dynamic range and sensitivity

▲ R&S FSW [Photo by Rohde & Schwarz]
Supporting a measurement frequency range of up to 85 GHz, the R&S FSW boasts superior measurement dynamic range, sensitivity, accuracy, and EVM performance. It also provides extended analysis bandwidth and dedicated measurements, meeting the test and measurement requirements for ultra-wideband (UWB) signal analysis and next-generation technologies.
This is known as an optimal measuring instrument for pulse measurement in aviation and military radar systems, satellite payload testing, and pre-distortion measurement of amplifiers, and is an essential instrument for chirp signal analysis in automotive radar and the development of next-generation wireless communication.
Increasing wireless communication bandwidth is essential for new next-generation technologies, as it requires higher data transmission speeds. Therefore, signal analysis of these ultra-wideband (UWB) systems has generally been performed by combining multiple measurement devices. However, the new R&S FSW solution provides much higher signal analysis performance and measurement accuracy because it performs all signal processing perfectly as a single-device solution without the help of external devices such as oscilloscopes.
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