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문서 및 기사 검색

로데슈바르즈 문서와 기사에는 다양한 정보 자료가 들어 있습니다.

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  • R&S®RTE1000
기술 문서
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웹사이트에서 로데슈바르즈의 솔루션에 대해 자세히 확인해보세요.

로데슈바르즈 사이트 검색 (3493)
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®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®RTE Getting Started

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

English - 2021. 12. 16.

Remote Control of Rohde & Schwarz Oscilloscopes Using the RsInstrument Python Module

Rohde & Schwarz offers a powerful tool for remote control of their oscilloscopes - the RsInstrument Python module. This module enables users to control and automate their Rohde & Schwarz test & measurement instruments, including oscilloscopes, through Python scripts or interactive console communication.

English - 2023. 12. 14.

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.

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.

Truly uncompromised in performance. Discover the R&S®RTE1000 oscilloscope (200 MHz to 2 GHz) - Poster

English - 2018. 1. 24.

4 MB | PDF

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.

Testing and optimizing low-power designs - Product Flyer

Power consumption is a key performance parameter for almost every electronics device. Conserving energy is good for the environment and has a large impact on operational costs, customer experience and a solution's lifetime. Low-power consumption is relevant for all electronic devices whether powered by the grid, a large battery pack, a coin size battery or energy harvesting.

English - 2020. 11. 18.

4 MB | PDF

Verifying power integrity for DDR memories

A key challenge for embedded devices with DDR memories is to maintain signal integrity in the presence of power and ground rail fluctuations. This becomes even more important as supply voltages decrease and switching speed increases leading to tighter power rail tolerances and jitter requirements.

English - 2017. 4. 5.

R&S®RTE Oscilloscope - Specifications

English - 2022. 12. 6.

1 MB | PDF

Increasing test coverage in hard switching half bridge configurations

Power converter and inverter designs for higher power levels are usually based on hard switching half bridge configurations. In such setups, users must pay particular attention to proper switching operations to prevent shoot-through events. Setting up complex real-time trigger conditions using the R&S®RTE and R&S®RTO oscilloscopes increases the test coverage and robustness of converter and inverter systems.

English - 2020. 8. 10.

Analyzing common mode noise of EPS for flawless touchscreen operation

Modern, capacitive touchscreens as used, for example, in mobile phones are susceptible to common mode noise exhibited by external power supplies (EPS).

English - 2018. 5. 17.

Importance of deep memory in oscilloscopes

Deep memory in an oscilloscope ensures that long waveforms are captured with high resolution right down to the details thanks to a high sustained sample rate. Users can be confident that they are not ‘missing anything’. They benefit from viewing longer periods of time and quickly finding signal anomalies or important events.

English - 2017. 3. 21.

How to use Rohde & Schwarz IVI.NET instrument drivers

This paper explains how to use the Rohde & Schwarz IVI.NET instrument drivers in Visual Studio environment from the prospective of an occasional C# programmer in need of automating a measurement task.

English - 2016. 5. 31.

Shorten power electronics development using an oscilloscope for EMI debugging

Oscilloscopes are the workhorses for power electronics engineers. With powerful and easyto- use FFT analysis capabilities, their application fields extend to EMI debugging – and that saves a lot of time and money. A typical task is verifying the effectiveness of an EMI filter – early in the development phase.

English - 2019. 9. 23.

Triggering and decoding Manchester and NRZ based buses

Many serial interfaces use Manchester or non-return-to-zero (NRZ) coding. Oscilloscopes typically offer dedicated software options for debugging and testing the communications interfaces for common standards such as I2C, UART or CAN. The R&S®RTx-K50 option expands the addressable range of interface standards by adding decoding capability for standardized and proprietary Manchester or NRZ coded buses. It allows customizable configuration of the protocol structure that has to be decoded.

English - 2020. 10. 19.

R&S®5G Mobile Network Infrastructure Testing - Brochure

T&M solution guide for network infrastructure equipment providers

English - 2023. 2. 14.

2 MB | PDF

Capturing small ECG signals in medical applications

English - 2015. 11. 17.

Malware Protection Windows 7

Rohde & Schwarz recognizes the potential risk of computer virus infection when con-necting Windows®-based test instrumenta-tion to other computers via local area net-works (LANs), or using removable storage devices.This white paper introduces measures to minimize malware threats and discusses ways to mitigate risks while insuring that instrument performance is not compro-mised.The paper discusses the use of anti-virus software. It also outlines how to keep the Windows® 7 operating system properly updated through regular installation of OS patches.

English - 2015. 1. 27.

Miracast Codec Timing

This application note describes the configuration of a Miracast wireless video transmission system and how to measure the delay times between a smart phone or tablet (source) and a television / monitor (sink) display. The accompanying software for Windows 7/8/10, Mac OS X 10.x and MATLAB additionally allows to measure the delay until the video signal is transmitted over the air and optionally until it is available on the HDMI cable of an external Miracast receiver.

English - 2015. 10. 1.

Tips & Tricks on Double-Pulse Testing

Double-Pulse testing is a standard test-method used in power electronics design. Accurate measurements require a careful design of the test setup and the selection of the right measurement instruments. This application note discusses important aspects of double-pulse test setups as well as how to perform accurate measurements.

English - 2021. 3. 22.

High-Resolution Measurements with Rohde & Schwarz Oscilloscopes

With the R&S®RTO-K17/RTE-K17 High Definition Option the user will see more signal details with up to 16 bit vertical resolution.In combination with the superior analog front end of the R&S®RTO and R&S®RTE, the user has a versatile instrument in his hands to analyze a wide range of applications. From Switch Mode Power Supplies to Radar RF, the user can inspect all with one scope.

English - 2015. 4. 13.

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.

English - 2017. 1. 30.

다음의 펌웨어: R&S®RTE1000 오실로스코프

Korean - 2024. 9. 25.

R&S®RT-Zxx High Voltage and Current Probes - Specifications

This document provides the technical specifications of the R&S®RT-Zxx high voltage and current probes.

English - 2025. 12. 8.

2 MB | PDF

16-bit high definition oscilloscopes for accurate measurements in electric and hybrid cars

The power efficiency of the drive electronics is a key parameter when developing electric drive systems. The conduction loss of the electric drive electronics is of special interest. One important parameter for determining the conduction loss is the RDS(on) of the MOSFET. When a switching MOSFET is off, it has a high drain-to-source voltage, but when it is turned on, the voltage drops to just a few hundred millivolts. A highresolution oscilloscope is needed to measure these low voltages. Probe compensation and correct probing are also vital for accurate RDS(on) measurements.

English - 2015. 3. 19.

R&S®EMC32 EUT Monitoring with R&S®Digital Oscilloscopes

This application note describes how to use the mask and limit test features of the R&S®RTO, R&S®RTE and R&S®RTM Digital Oscilloscopes for EUT monitoring of signal forms, jitter etc. with the R&S®EMC32 Measurement Software. The mask test function allows autonomous characterization of digital signal integrity during EMS tests. R&S®EMC32 software records violations of userdefined limits or mask templates and evaluates the immunity threshold at frequencies of critical electromagnetic susceptibility.

English - 2015. 4. 20.

Fast Remote Instrument Control with HiSLIP

This application note introduces the IVI High Speed LAN Instrument Protocol (HiSLIP) and outlines its features. HiSLIP is the successor to the VXI-11 LAN remote control protocol. This document also describes guidelines for using this protocol.

English - 2014. 11. 12.

Battery Life Optimization in IoT devices with the Multi-Channel Power Probe

This application note describes Battery Life Measurements with the R&S®RT-ZVC02/04 Multi-Channel Probe. The measurements are described with the use of an oscilloscope. The R&S®RT-ZVC Multi-Channel Probe can be used with R&S®RTE1000, R&S®RTO2000 or R&S®RTP.

English - 2019. 1. 17.

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