Radar / EW testing

Radar / EW testing

Stay ahead of technological advancements in radar and EW with solutions that deliver precise analysis, clean signal sources and high-resolution measurements.

With the dynamic advances across the entire spectrum of radar and electronic warfare technology, a key enabler for the latest systems designs are fast evolving test and measurement solutions at the edge of rapid technological progress.

Test and measurement solutions from Rohde & Schwarz are designed to meet the most challenging requirements for precise signal and phase noise analysis, clean signal generation and high-resolution time domain verification with unrivaled instrument performance and an ease-of-use-centric approach.

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White paper: Simulation of angle of arrival (AoA)

Are you interested in simulating the angle of arrival in the lab that are phase-coherent and time-synchronized? Register and get your free white paper.

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Get your free spectrum allocation poster

Want to know more about your spectrum and specific radar related characteristics? Sign up and receive your free poster.

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White paper: Improving T/R module test accuracy and throughput

Testing state-of-the-art radar warning equipment with adequate RF and microwave signals is your challenge? Register and get your free white paper.

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Application videos - Radar simulation

Cutting-edge radar signal simulation in the lab
Cutting-edge radar signal simulation in the lab

Testing radar warning equipment in realistic scenarios is crucial to their reliable performance in the field.

Simulating moving emitters
Simulating moving emitters

Simulating moving radar emitters is important in most test cases.

Simulating multiple emitters
Simulating multiple emitters

In operational situations, many emitter signals are present at the same time, and pulse-on-pulse situations can easily occur.

Simulating Angle of Arrival
Simulating Angle of Arrival

Airborne, naval or land based platforms must have direction finding capability.

Image: Pocket Radar Guide

Free Pocket Radar Guide

Key radar facts, equations, and data

Get the only quick-reference guide that contains definitions, propagation models, range equations, formulas, useful graphs, and more, AND fits in your pocket. Written by the expert in radar system applications, G. Richard Curry, this guide is a must-have for all Radar Specialists.

Don't miss out on this offer!

  • No cost to you
  • Delivered to your mailbox in 2-4 weeks
  • Ships to addresses in the U.S. and Canada only at this time

Radar / EW testing solutions

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 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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Jammer testing

As Digital Radio Frequency Memory (DRFM) is at the heart of every next generation smart jammer design, learn about R&S test and measurement solutions to validate the performance from component to system level.

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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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