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로데슈바르즈 문서와 기사에는 다양한 정보 자료가 들어 있습니다.

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  • R&S®RTO2000
기술 문서
펌웨어 및 소프트웨어
제품 정보
언어

웹사이트에서 로데슈바르즈의 솔루션에 대해 자세히 확인해보세요.

로데슈바르즈 사이트 검색 (3410)
Using R&S®Forum Application for Instrument Remote Control

English - 2018. 6. 28.

RSCommander

RSCommander is a versatile software tool for a wide range of Rohde & Schwarz spectrum-, network analyzers, signal generators and oscilloscopes. It allows for automatic instrument discovery, making screenshots, reading traces, file transfer and simple script creation.

English - 2017. 12. 24.

R&S®RTO2000 Oscilloscope - Product Brochure EN

R&S®RTO oscilloscopes combine excellent signal fidelity, up to 16-bit vertical resolution and high acquisition rate in a compact device format in the 600 MHz to 6 GHz class. They offer a fully integrated multi-domain test solution with frequency, protocol and logic analysis functions. The brilliant touchscreen makes the oscilloscopes very comfortable to use.

English - 2022. 12. 20.

35 MB | PDF

R&S®VISA

R&S®VISA is a standardized software library that allows fast communications over diverse interfaces with a wide variety of T&M instruments that are detected on the network from PC applications. R&S®VISA also includes a trace tool that simultaneously monitors communications between multiple applications and T&M instruments, and permits targeted analysis with the aid of efficient filters.

English - 2020. 5. 26.

R&S®RTO/RTO6-K21, R&S®RTP-K21/K101/K102 Manual USB 2.0/3.2 Compliance Test User Manual

Describes the test procedures to perform USB 2.

English - 2024. 12. 23.

R&S®Scopesuite+ User Manual

Describes the R&S®SPLUS.

English - 2025. 11. 19.

R&S®RTO2000 Instrument Security Procedures

Provides information on security issues when working with R&S®RTO2000 in secure areas.

English - 2021. 7. 25.

R&S®RT-ZF1 Manual

Describes the test fixture set for USB 2.

English - 2025. 4. 2.

R&S®RT-ZF6 Manual

Describes the frequency converter board for 1000BASE-T1 compliance tests.

English - 2025. 4. 2.

R&S®RTO2000 Oscilloscope - Specifications

English - 2023. 7. 3.

2 MB | PDF

AM/FM/PM Modulation Analysis - Specifications

This document provides the technical specifications of the R&S®FSW3-KM107/R&S®Fxx-K7/ESW-K7/VSE-K7/RTO AM/FM/PM modulation analysis option.

English - 2025. 12. 4.

1 MB | PDF

Wideband Signal Analysis

Verification of the spectrum allocation and in depth analysis of the transmitted signals is very important in many domains. For example, the IEEE 802.11ad standard makes use of approximately 2 GHz bandwidth in the 60 GHz frequency domain. Researchers and developers of Automotive radar discuss the 79 GHz frequency band with an available bandwidth of up to 4 GHz. Finally the upcoming 5G technology for cellular networks discusses the use of up to 2GHz signals in the cm and mm-wave frequency bands.This technical evolution already indicates the need of signal measurement and analysis in the mm-wave domain with high bandwidth.Therefore, this application note presents a method to measure and analyze signals with an instantaneous bandwidth of up to 2 GHz using new tools on the R&S®FSW Signal and Spectrum Analyzer platform in collaboration with an R&S®RTO Digital Oscilloscope.

English - 2015. 6. 16.

Near Field Communication (NFC) Technology and Measurements

Near Field Communication (NFC) is a new short-range, standards-based wireless connectivity technology, that uses magnetic field induction to enable communication between electronic devices in close proximity. Based on RFID technology, NFC provides a medium for the identification protocols that validate secure data transfer. NFC enables users to perform intuitive, safe, contactless transactions, access digital content and connect elec­tronic devices simply by touching or bringing devices into close proximity. This White Paper gives an overview of NFC uses, NFC technology and signals and RF measurements on NFC units. NFC analog measurements with R&S test instruments are described in detail in R&S application Note 1MA190 'Basic Tests of NFC Enabled Devices Using R&S Test Equipment'

English - 2013. 6. 2.

Converting R&S I/Q data files

This application note explains how to convert different Rohde & Schwarz I/Q file formats among each other using the supplied software tool.

English - 2015. 9. 23.

Automotive Ethernet: Verifying BroadR-Reach® interfaces

Ethernet communications has been introduced in automotive networks to enable fast and cost efficient data communications, e.g. for the rearward camera or audio/video streaming. In the OPEN alliance (www.openSIG.org), the automotive industry has standardized the BroadR-Reach® physical layer as the automotive Ethernet communications standard. It will be part of the IEEE 802.3 standard. BroadR-Reach® uses full duplex twisted pair communications, enabling 100 Mbit/s data transfer. For interface verification the OPEN Alliance has specified a BroadR-Reach® conformance test with six test cases.

English - 2015. 3. 27.

R&S®RTO2000 oscilloscope - Flyer

Sales – Easy triggering and decoding in one software option bundle.

English - 2018. 1. 15.

3 MB | PDF

R&S®RTO-K21 USB2.0 Compliance Test - Product Brochure

for R&S®RTO digital oscilloscopes

English - 2014. 3. 20.

6 MB | PDF

Decoding secondary surveillance radar

Secondary surveillance radar (SSR) bridges the gap between communications systems and classic radar systems. Despite the increasing capabilities of mobile communications, SSR remains a major component in airspace surveillance. State-of-the-art methods such as Mode S reply enhance SSR with broadcast-like capabilities and enable airports in remote locations to surveil the airspace even if no radar is available. More advanced techniques such as automatic dependent surveillance broadcast (ADS-B) utilize the infrastructure provided by a Mode S reply transponder to provide even more information for ground control and other aircraft.

English - 2021. 5. 17.

Analyze EMI problems with the R&S®RTO / R&S®RTE

The R&S®RTO / R&S®RTE oscilloscope is a valuable tool for analyzing EMI problems in electronic designs. High input sensitivity, high dynamic range and a powerful FFT implementation are key features for capturing and analyzing unwanted emissions.

English - 2015. 2. 26.

RF Pulse Measurements in time and frequency domains with VSE-K6

RF pulse measurements, to characterize the signal in the frequency domain, are traditionally carried out on an RF spectrum analyzer. For time related pulse parameters, oscilloscopes are widely used. However, the measurement capabilities of state of the art test and measurement equipment has evolved over time and crosses domains. With a combination of R&S®RTO digital oscilloscope and dedicated pulse analysis software R&S®VSE-K6, pulse signals can be analyzed in both domains, frequency and time.The R&S®RTO digital oscilloscopes are unique in that they allow output of I/Q data for processing. This application note focusses on signal measurement using this instrument.Analysis of an L-/S-band ATC RADAR utilizing the R&S®RTO2044 oscilloscope running Vector Signal Explorer Software R&S®VSE and Pulse Analysis personality R&S®VSE-K6 is followed by measurements on an X-band RADAR utilizing R&S®FSW, R&S®FPS, R&S®FSV or FSVA signal & spectrum analyzers with the same dedicated R&S®VSE-K6 software.

English - 2016. 10. 18.

Characterization of Sigfox Devices from Lab to Production Line

The application note guides developers and manufactures of Sigfox Devices to perform the required and recommended measurements with test solutions from Rohde & Schwarz. The note will help bring ultranarrowband IoT devices and applications using Sigfox technology to the market as fast as possible and help ensure the desired quality and performance.For R&D, Pre-certification and QA, all currently defined Uplink- and Downlink- measurements are shown using the compact R&S®FPL1000 Spectrum Analyzer and R&S®SMBV100A Vector Signal Generator.For Production, use of the R&S®CMW100A Communications Manufacturing Test Set is shown for the most essential Uplink RF tests on Sigfox Devices.Python scripts for giving example SCPI commands demonstrate how measurements shown in manual use can easily be automated.

English - 2017. 11. 15.

Verification Methods Of Snubber Circuits in Flyback Converters

In general, most of the existing electronic devices are connected to the AC mains and require a power conversion stage to convert the AC-Voltage to a smaller DC-Voltage. Voltages and frequencies of the power grid differ between different regions. However, different types of AC-DC conversion stages exist to supply the electronic equipment with adequate DC-power.In AC-DC conversion combined with power levels less than 50W, the flyback converter is a commonplace chosen topology because of its simplicity and its low cost. The majority of consumer products make use of this converter type like wall brick power supplies or power adapters for any consumer application and other type of stand-by auxiliary power supply like used in white and brown goods. In AC to DC converter application, an electrical isolation between input and output is mandatory. The flyback topology provides this galvanic barrier.Beside the common advantages of a flyback converter, it has inherently parasitic components, which typically produce ringing waveforms with considerably high voltage spikes. Without suppressing this unwanted ringing, it may have some negative effect on other components like the switching elements. This ringing can also influence the EMI emissions adversely. Therefore, it is an important task to adequate suppress and damp the ringing effect. This damping circuit is known as snubber circuit and provides this functionality. In the flyback converter, different snubber structures can be applied and each of the structure has its advantage and disadvantage.The demand having a snubber circuit in the power supply topology leads to specific verification methods during the design to obtain a proper and reliable design. These verification methods are the main focus of the discussions within this document.

English - 2021. 6. 23.

Characterization of LoRa Devices

Before devices can be used in a LoRaWANTM network, they must among other things meet country-specific wireless communications regulations. This application note shows developers and manufacturers of devices with LoRa wireless technology how transmitter measurements are conducted in line with FCC Part 15.247. It also describes how important receiver characteristics can be verified by metrological means. In this context, battery life in particular plays a key role in IoT applications. A further chapter describes how current consumption of LoRa wireless modules can be measured reliably.

English - 2017. 11. 29.

Software for R&S®RTO2000 oscilloscope

English - 2025. 12. 12.

Optimizing EMI Input Filters for Switched Mode Power Supplies

Almost every switched-mode power supply (SMPS) needs an EMI (Electro Magnetic Interference) input filter to suppress any disturbances of the SMPS on the power lines. This requirement having an input filter in the design ensures that no negative effect will occur in other parts of the systems connected to the power lines. Therefore, the design and the validation of the input filter is a major task during a typical power supply design. The conducted emission (CE) test according to a specific standard is a suitable and a common validation method to release the design at the end of the development cycle. Nowadays, this conducted emission test will be performed as pre-compliance test during the development phase in the lab as well. In this case, the designer will obtain an early feedback whether the design has to be optimized regarding any disturbances present on the power lines. In most cases, the designer has to adjust the input filter to obtain a more effective suppression of disturbances generated by the SMPS. However, the designer needs to know details about the noise spectrum to optimize the input filter as effective as possible. In addition to magnitude and frequency information of the noise source, it would be very helpful to know whether the noise is generated by a common mode source or by a differential mode source. During the standard conducted emission test, common and differential mode noise is a combination in the measurement results and thus not possible to gain deeper insights. This document will describe a method to separate common-mode and differential-mode separation using two oscilloscope channels. This separation approach works without any additional hardware component like a noise separator. The designer will be able to distinguish between common-mode (CM) and differential-mode (DM) noise. This additional information about the dominant mode provides the capability to optimize input filters very efficiently.

English - 2020. 9. 17.

R&S®RTO2000 Getting Started

Provides the information required to prepare the instrument for use and start working.

English - 2023. 6. 30.

R&S®RT-ZF7 Manual

Describes the automotive Ethernet test fixture for triggering and decoding of the 100BASE-T1 and 1000BASE-T1 standards.

English - 2025. 4. 2.

R&S®RT-ZF30 Manual

Describes the probe test fixture for characterization and deskewing of R&S probes.

English - 2025. 4. 3.

R&S®RTO/RTO6/RTP-Kxx Ethernet Compliance Test User Manual

Describes the test procedures to perform ethernet compliance tests.

English - 2025. 12. 16.

R&S®RTO/RTO6/RTP-K91 DDR3 Compliance Test User Manual

Describes the test procedures to perform DDR3 compliance tests.

English - 2024. 7. 2.

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