Jammer testing

Jammer testing

Validating the performance of advanced smart jammer designs

Smart jammers, commonly referred to as deceptive jammers or digital radio frequency memory (DRFM) jammers, based on their technology, are widely used by the defense industry in electronic attack and defense suites to deceive hostile radars and protect friendly assets. Test and measurement solutions from Rohde & Schwarz address all challenges during the design phase, system performance validation and production process. The DRFM technique involves sampling the RF signal, digitally storing and recreating the signal while modifying some or all of the signal parameters based on the desired deception technique.

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Webinars

Webinar: Testing next generation jammer systems

Webinar: Testing next generation jammer systems

In this webinar you will learn how to check the correct parameters of the used jamming and deception techniques.

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Webinar: Deceptive jammer / DRFM testing

The webinar introduces the concept of Digital RF Memory Jammers, describes their technology and the respective Test and Measurement challenges and solutions from Rohde & Schwarz.

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Related applications

Simplifying radar waveform generation using R&S Pulse sequencer software

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Pulsed RADAR signal generation and measurements

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Generating multiple phase coherent signals – aligned in phase and time

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Radar Echo Generator

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Simplified analysis of frequency agile radars

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Pulsed phase noise measurements

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Overview of tests on radar systems and components

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Advanced techniques for spurious measurements with R&S®FSW-K50

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Characterizing active phased array antennas

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RF pulse measurements in time and frequency domains with R&S®VSE-K6

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NEXT GENERATION JAMMER TESTING

Next generation jammer testing

Ultra-wideband signal analysis and systems performance evaluation.

Read our latest article on the test challenges for advanced and integrated jammer designs.

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Network analyzers

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Signal generators

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Signal and spectrum analyzer

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Oscilloscopes

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Related videos

Radar chirp analysis with 2 GHz internal analysis bandwidth

This video shows the analysis of a 2 GHz wide radar signal at 77 GHz with the R&S®FSW85 signal and spectrum analyzer.

Sep 13, 2018

Radar chirp analysis with 5 GHz analysis bandwidth

This video shows how to analyze 5 GHz wide radar signals in the E band with the R&S®FSW85 signal and spectrum analyzer and R&S®RTO2064 oscilloscope.

Sep 13, 2018

Pulse compression radar measurements

This video shows how to perform pulse compression measurements with the R&S®FSW-K6S time sidelobe measurement application.

Sep 13, 2018

Radar / EW testing solutions

Radar / EW testing

From Multifunctional Radar Systems to advanced Radar Warning Receiver designs and next generation EW.

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Multifunctional radar system testing

Master complexity, agility and latest advancements in technology with Rohde & Schwarz measurement solutions and unlock the performance of your multifunctional radar design with real-world simulation scenarios in your lab.

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Drone detection radar test

With the dramatically rising numbers of small UAV in lower airspace, radar design have to adopt to the new task of monitoring and detection. R&S test and measurement solution provide the means to reliably validate the system performance of these new designs.

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Radar / EW component testing

When optimizing the performance of latest RADAR and EW system designs, make sure you get the most out of processing speeds, power consumption and RF performance.

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Scenario generation and receiver testing

Test your radar and EW receiver system against today's complex theater scenarios, including real-world interference and multiple moving emitters, and take advantage of a fully deterministic, repeatable and reliable scenario generation solution from Rohde & Schwarz.

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AESA & antenna testing

Latest technology trends such as GaN and digital RF front ends are the driving the development of Active Electronically Scanned Arrays (AESA). Maximise the performance of antenna designs with the highest precision instruments and complex electromagnetic environment simulations.

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