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Learn how to configure Rohde & Schwarz products to fit your application. Search our database by product, technology, or application to find relevant technical documents.

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Fast download of waveform data with the R&S®RTO oscilloscope

Overview of the choices for downloading waveform data for remote processing

15-Feb-2018

Antenna matching in IoT and low power devices

Antennas have become an integral part of consumer electronics, even in small portable devices that rely on an energy source with limited capacity. Consequently, antennas need to be physically small and power efficient.

05-Mar-2020

Testing insertion loss of PCB signal structures with Delta‑L 4.0

With continuously increasing data rates, signal integrity in high speed digital designs becomes more and more demanding

08-Jul-2022

RF-Level Test System +20 dBm to -130 dBm

The purpose of the test setup described is to ensure or to enhance the level accuracy of signal generators or the generator part of communication testers. The level accuracy of test signals is particularly important at low levels when measuring BER level sensitivity at digital communication receivers. The highly linear FSP spectrum analyzer is used in combination with a power meter to get the best possible accuracy with high measurement speed over a very wide level range.

18-Feb-2011 | AN-No. 1MA21

Testing a 24-28GHz Power Amplifier using the 5G New Radio Test Standard, Challenges and Results

An ever-increasing requirement for data on mobile networks, driven by a myriad of applications from HD video on the move to autonomous vehicles and Industrial IOT, means a part of the new 5G network is to be deployed at mmWave frequencies, with a 26 GHz pioneer band defined for the UK between 24.25 - 27.5 GHz.This near 10-fold increase in frequency over 4G networks opens several challenges, both in the design and implementation of the required sub-components, network infrastructure and end user equipment, and in parallel in the test and measurement approaches used to drive these developments.In this presentation, we will introduce some of the main challenges in test and measurement of a device at these frequencies. We will then present the testing of a 26-28GHz pioneer band dual channel amplifier evaluation module using 5G NR test waveforms.

26-Nov-2018

Group Delay Measurement on Frequency Converting Devices

Frequency converters e.g. in satellite transponders need to be characterized not only in terms of amplitude transmission but also in terms of phase transmission or group delay, especially with the transition to digital modulation schemes. They often do not provide access to the internal local oscillators. This application note describes a method using the R&S®ZNA analyzer family to measure group delay of mixers and frequency converters with an embedded local oscillator very accurately. The key aspect of this new technique is that the network analyzer applies a 2-tone signal to the frequency converter. By measuring the phase differences between the two signals at the input and at the output, it calculates group delay and relative phase.

11-Jul-2019 | AN-No. 1EZ81

Using the Digital Baseband Interface R&S®EX-IQBox with R&S®Signal Analyzers and Agilent® ADS® Software

Your measurement task: To analyze an RF module via its digital interface. This Application Note explains how. As interfaces between the baseband and the RF modules of mobile radio base stations and terminals are increasingly digital, instruments for testing such modules need digital baseband interfaces as well. The R&S®EX-IQ-Box is a digital interface adapter that provides digital baseband I/O for Rohde & Schwarz signal generators and signal analyzers. An R&S signal analyzer with digital baseband interface R&S®FSQ-B17 can analyze digital baseband components input from the R&S®EX-IQ-Box. Data collected with a test-setup consisting of an R&S signal analyzer and the digital interface adapter R&S®EX-IQ-Box can be used in an Agilent ADS environment. For details of how to input the results to ADS, see Application Note 1MA72: 'Using R&S® Instruments within Agilent®ADS®Software'

26-Jun-2009 | AN-No. 1MA147

CERTIUM VCS test system for aircraft manufacturers

VCS-4G, secure Communications, VoIP, air traffic contro, EUROCAE, ED‑137, ATC, CERTIUM, CERTIUM VCS test system Rohde & Schwarz solution CERTIUM VCS CERTIUM VCS test system for aircraft manufacturers VCS-4G, secure Communications, VoIP, air traffic contro, EUROCAE, ED‑137, ATC, CERTIUM, CERTIUM VCS test system Rohde & Schwarz solution CERTIUM VCS CERTIUM VCS test system for aircraft manufacturers VCS

01-Aug-2023

Increasing safety in air traffic control

R&S®Series4200 detection of simultaneous transmissions (DSiT) option for air traffic control

21-Aug-2014

Fast and reliable power measurements in the satellite industry

In the satellite sector, components, subsystems and entire satellites must be qualified in a thermal vacuum chamber before they can be used in space. This qualification proves that equipment can not only survive but also function in the harsh conditions encountered during launch and in space.

05-Oct-2022

Automotive EMC testing under dynamic driving conditions

The shift from internal combustion engine (ICE) automobiles to electric vehicles (EV) has come with an array of new subsystems and components that introduce new EMC considerations. The level of complexity involved in automotive EMC testing increases with dynamic driving conditions where manufacturers not only have to refer to the framework standards offered, but must also improvise and establish new internal standards to ensure the vehicle and its internal components all function properly under all driving conditions. A number of challenges may arise when building a suitable test bench that thoroughly tests EVs and electrical components. This educational note dives into the development of dynamic EMC test systems, their inherent challenges, and how Rohde & Schwarz and AVL, one of the world’s leading mobility technology companies for development, simulation and testing in the automotive industry, have teamed up to provide a unified EMC test platform for dynamic driving conditions.

11-Mar-2025

LAN / WAN Connection Of Instruments with Serial Interface By Using a Terminal Server

Remote control of test and measurement equipment with a serial interface is limited to PC’s located in close proximity determined by the length of a typical serial cable connection (several feet). Usage of terminal server allows connecting through LAN or WAN networks thus controlling the instrument from further away even around the globe. The terminal server interfaces between TCP/IP protocol and the RS232 line. This application describes set-up of a popular terminal server from Black Box® Corporation to remotely and conveniently control the instruments EFA with EFA Scan software and DVRM or DVMD with Realtime Monitor / Stream Explorer software through a LAN or WAN network.

07-Jul-2003 | AN-No. 7BM41

Measurements on leaky feeders

Crucial for proper operation of mobile networks - Part 3 of the series on Cable and Antenna verification

Key points: Critical Infrastructure: Leaky feeder systems are a crucial, yet costly to modify, element of in-building and tunnel infrastructure for mobile communication coverage.Vulnerability to Environmental Factors: The leaky feeder system's exposure to high humidity, extreme temperatures, and physical stress makes it prone to water ingress, corrosion, mechanical damage, and material degradation.Fundamental Properties: Changes in a leaky feeder system's characteristic impedance cause reflections of forward RF energy, resulting in discontinuities, which can occur at connectors, kinks, or compressions in the cable.Measurement Techniques: Due to practical limitations, leaky feeder system testing typically involves measuring insertion and return loss, supplemented by evaluating key performance indicators (KPIs) and user equipment reports to assess actual coverage and identify potential defects.

05-Dec-2024 | AN-No. 8NT19

10 Tips & Tricks on how to use Rohde & Schwarz LabVIEW Instrument drivers

This Application Note gives 10 useful Tips & Tricks for the users of Rohde & Schwarz attribute-based instrument drivers. It is recommended for the first-time LabVIEW users as well as for the experienced programmers.

30-Jan-2017 | AN-No. 1MA228

Antenna Array Testing - Conducted and Over the Air: The Way to 5G

5G networks will need to offer more capacity and flexibility while lowering the operational expenses of the system. Two new technologies can simultaneously address both the increase in capacity and the increase in energy efficiency: Virtualization & Massive MIMO. This white paper provides an overview of test solutions addressing current and future requirements for antenna verification including both conducted and over-the-air (OTA) test methods, which result from applying Massive MIMO antenna technology.This white papers complements the white paper (1MA276) from Rohde & Schwarz, which introduces fundamental theory behind beamforming antennas and provides calculation methods for radiation patterns, a number of simulation results as well as some real world measurement results for small linear arrays.

11-Nov-2016 | AN-No. 1MA286

Fast validation of EMC test sites above 1 GHz with time domain S(VSWR)

The R&S®ZNB vector network analyzer together with the R&S®HF907 double-ridged waveguide horn antenna provides fast and accurate TD SVSWR measurements in line with ANSI C63.25.

06-Aug-2018

Testing True Performance of ADCs using R&S®SMA100B Signal Generator

Analog-to-digital converters (ADCs) have taken giant steps in speed and accuracy over the past years: Such devices allow high-speed video processing and even software defined radio (SDR) applications, where digitization is being performed at ever-higher intermediate frequencies (IF). This has clearly raised the bar for ADC test equipment, especially regarding the noise performance of the analog input signal and sample clock sources used in the test setup. The R&S®SMA100B offers outputs for the analog input signal of the ADC as well as the clock input signal in one single instrument - both with outstanding signal purity.

11-Jan-2021 | AN-No. 1GP66

Dynamic Spectrum Sharing (DSS) for 5G & LTE

Signal Generation and Analysis

This Application Note supplements the video series, describing signal generation and signal analysis for Dynamic Spectrum Sharing (DSS) for LTE and 5G NR. The video series is located below this paragraph.In this illustration, a four frame (40 subframes) long LTE sequence will be created, and exemplary MBSFN slots inserted, carrying 5G payloads. That signal sequence will be compiled and played by the SMW signal generator. The FSW signal analyzer LTE and 5G NR personalities are then used to analyze and verify the content of each subframe/slot.Three methods are presented, (1) Manual Entry using the GUI, (2) SCPI command sequence/remote control and (3) configuration file. The latter variants require the download of various files, available at the bottom.The configuration file approach offers the fastest time to initially setup. The SCPI command sequences provides some insight of the functionality and settings at each step, and the supplied MATLAB® script (only core license required) provides a prototype to illustrate the programming of successive slots or subframes. The Manual Entry approach, using the instrument's front panel GUI, provides a step-by-step set-up instruction, which can itself be augmented with SCPI recording, for easy modification and programming.MATLAB® is a registered trademark of The Mathworks, Inc.

30-Mar-2020 | AN-No. GFM337

Battery cycle tool for the R&S®NGU401/NGU201/NGM200/NGL200

The battery cycle tool has several charts that display collected data and can be used to characterize battery samples and create battery models.

02-May-2023

.NET programming interface for R&S®GTSL and R&S®EGTSL

This application note describes the use of R&S®GTSL and R&S®EGTSL in a .NET programming environment. It shows the user how libraries and drivers generated using the C programming language can be used in applications based on .NET technology.

08-Mar-2016 | AN-No. 1SE001

Audio performance testing solution for the connected car

The audio performance measurement solution for the R&S®CMW500 platform identifies audio and speech performance issues over a wireless connection.

26-Aug-2017

Voice over LTE (VoLTE) Speech Quality Measurements

This application note and associated application software may be used to conduct psychoacoustic speech quality evaluation for Voice over LTE (VoLTE) connections. The measurements are based on recommendations ITU-T P.862 and ITU-T P.863, respectively.

21-Feb-2014 | AN-No. 1MA204

Malware Protection Windows 8

Rohde & Schwarz recognizes the potential risk of computer virus infection when connecting Windows®-based test instrumentation to other computers via local area networks (LANs), or using removable storage devices.This white paper introduces measures to minimize malware threats and discusses ways to mitigate risks while ensuring that instrument performance is not compromised.

16-Feb-2017 | AN-No. 1EB01

R&S®CMWrun - Audio performance testing solution

Sequencer Software Tool

20-Feb-2015

Usage of Data Reduction in R&S®EMC32-K10 EMI Auto Test Templates

The ‘Data Reduction’ sequence step is an essential part of an EMI Auto Test since it evaluates the relevant frequencies at which the final measurements are to be done. The intention of this application note is to make the data reduction data flow more transparent (contents of input and output tables) and how the parameters (location and relations) influence the evaluation algorithm.

16-Nov-2011 | AN-No. 1SP02

GPIBShot - Taking Screenshots via IEEE Bus

Application note 1MA25 has been replaced by application note .

28-Aug-2009 | AN-No. 1MA25

Testing and monitoring DVB-T2 signal feed via new T2-MI interface

An error in DVB-T2 signal feed to the transmitter can cause failure of the entire DVB-T2 network. For this reason, the established ETSI TR 101 290 DVB measurement guidelines have been expanded to include measurements for the new T2-MI interface. The instruments of the R&S®DVMS family monitor T2-MI signals by performing these newly defined measurements and even provide in-depth analysis of these signals.

01-Sep-2011

Tests of Power Amplifiers for Single-Channel and Multi-Channel TD-SCDMA Base Stations

This Application Note describes how to perform measurements on power amplifiers for TD-SCDMA base stations to specification TS 25.142 using Rohde & Schwarz generators, power meters and signal/spectrum analyzers. The TD-SCDMA application firmware for Rohde & Schwarz generators and analyzers as well as their outstanding performance facilitate efficient and rapid measurements.

31-Jul-2007 | AN-No. 1MA103

T-Check Accuracy Test for Vector Network Analyzers utilizing a Tee-junction

The measurement accuracy of vector network analyzers can be tested simply, easily and quickly, with a simple DUT which consists of a common tee-junction with one port, terminated with a resistive load Z, and the T-Check program. The four S-parameters from ports 1 and 2 are measured with the vector network analyzer to be checked and then evaluated by means of the T-Check software.

04-Aug-1998 | AN-No. 1EZ43

Radiated Wireless Coexistence testing

A step by step HOW TO guide to perform manual and automated wireless coexistence testing

At the end of the year 2020, there were over 20 Billion internet of things (IoT) products in the world operating using the licensed and unlicensed frequency bands. This growth trend is projected to keep steady over the coming years as more and more people adopt to a smarter and more connected lifestyle. This will result in a much busier and challenging RF environment than the one we have today. In order to understand the complexity of the RF spectrum, a white paper was published in 2021 from Rohde & Schwarz, which featured RF spectrum activity at multiple locations observed at different times of the day. The locations were selected based on population densities and the amount of known RF transmitters & their frequencies at those locations. It was also concluded that the ISM bands on average have higher channel utilization since most IoT devices take advantage of the unlicensed spectrum. The paper recommended, that while performing wireless coexistence testing, the test conditions should reflect the operational RF environment that the device is intended to operate in. Otherwise, the characterization of RF performance would only reflect ideal case which doesn’t exist in real world operation. Since it is not always possible to test all devices in the real world, relevant test methodologies need to be setup to replicate the real world as much as possible.This will help us get a better understanding of how the receiver of the RF device will behave under different RF conditions. It is also recommended to perform measurements in order to understand the behavior of the device in the future when the spectrum will get even more challenging. Therefore, a through characterization of the capability of the RF receiver to handle in-band and out-of-band interference signals in also of interest.In terms of regulatory compliance requirements for ensuring wireless coexistence performance, the ANSI C63.27 is currently the only published test standard that provides guidance on how to perform coexistence testing on devices. The test complexity is based up on risk imposed on the user’s health in the event of a failure caused by an or a plurality of interference signal. The standard also gives device manufacturers guidance regarding test setups, measurement environments, interference signal types and strategy, performance quality measurement parameters for physical layer using key performance indicator (KPI) and application layer parameters for end-to-end functional wireless performance (FWP).In this application note, the guidance provided by the ANSI C63.27-2021 version regarding test setup, measurement parameter and interference signal have been followed. It will give the reader a clear idea on how to configure standardized test instruments from R&S in order to generate the wanted signal as well as unintended interference signals and conduct measurement to monitor device performance in terms of PER, ping latency and data throughput.This application note provides step-by-step instruction on how to perform measurements using conducted and radiated methodology. Both manual and automated instrument configuration approach is explained in this document.The automation scripts are written using python scripting language and are available for download with this application note, free of charge. Official required to run the scripts are available on the PYPI database.

10-Nov-2022 | AN-No. 1SL392

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