240 结果
K147 option for FSW and FSV3000
视频, FSV3000, 5G NR, 分析带宽 200 MHz 分析带宽,支持 5G NR 分析
本应用指南详细描述了使用频谱分析仪通过 Y 因子法进行噪声系数测量的必要步骤。指南提供每个计算步骤的相应方程式。
7月 25, 2012 | AN-No. 1MA178
本应用指南将概述全球 ITS 的现状,并重点介绍 IEEE 802.11p PHY。此外,指南将介绍适用于 ITS 所用设备和组件的测试与测量解决方案。
1月 23, 2014 | AN-No. 1MA152
Oct 19, 2020
Rohde & Schwarz first to bring 1 GHz analysis bandwidth to a mid-range signal and spectrum analyzer – ideal for 5G NRTo analyze wideband signals for 5G NR and other future wireless standards, a wide analysis bandwidth is key. To meet this testing need also with a limited budget, Rohde & Schwarz brings an exceptional internal analysis bandwidth of 1 GHz to its mid-range R&S FSVA3000 signal and spectrum analyzer.
放大器, 调幅-调幅, 调幅-调相, 饱和, 非线性, 数字预失真, FSV3-K18 本视频展示了如何测量被测放大器导致的失真现象。
本应用指南讨论了 WLAN 标准 IEEE 802.11n。指南首先说明了对之前版本进行的重要修订和充满挑战性的新测量任务。
4月 26, 2013 | AN-No. 1MA179
R&S®EX-IQ-Box 可用作被测设备 (DUT) 和罗德与施瓦茨发生器、分析仪与无线电通信测试仪之间的数字基带接口。
5月 23, 2012 | AN-No. 1MA168
UMTS Long Term Evolution (LTE) Technology Introduction
Sep 14, 2009 | AN-No. 1MA111
视频, 频谱分析仪, 放大器, 噪声系数, 增益, Y 因子法, FSV3-K30 本视频展示了如何使用噪声源测量被测放大器的噪声系数和增益。
Rohde & Schwarz Drivers under VEE - Installation and Troubleshooting
Dec 20, 2012 | AN-No. 1MA035
相比于 R&S®FSV 分析仪,R&S®FSVA 的相位噪声更低、灵敏度更高,并具有 160 MHz 的分析带宽(最高达 40 GHz)。本视频展示了 R&S®FSVA 的相位噪声测量功能,以及使用 R&S®VSE 矢量信号分析软件进行宽带脉冲分析 R&S®FSVA, FSVA, 信号与频谱分析仪 本视频展示了罗德与施瓦茨的 R&S®FSVA 信号与频谱分析仪。
本教学指南的第一部分首先介绍了信号发生器的应用和重要的信号发生器类型。随后,指南介绍了模拟和矢量信号发生器的构造与功能。
5月 03, 2016 | AN-No. 1MA225
Testing the world’s first quantum error correction stack
R&S FSx-K18x Amplifier Measurements - Specifications
Accelerate quality and efficiency in automotive radar production
Mar 13, 2025
This document provides the technical specifications of the R&S®FSx-K8 Bluetooth® measurement application.
Software tool for fast and repeatable optimization of signal analyzer RF front-end settings
The signal conditioning in the RF front-end of signal analyzers is crucial to achieve the best performance with respect to image-suppression, noise-floor, dynamic range and other RF-key parameters.Precise signal levelling is especially important for complex measurements like Error-Vector-Magnitude (EVM). To minimize the measurement uncertainty from test system contributions over a wide range of different levels, the RF front-end needs to be adapted continuously according to the signal characteristics, signal power and frequency - ideally using an automatic levelling algorithm.This document describes the approach of a waveform specific, on-site characterization of the signal analyzer: For each waveform and frequency of interest, the instrument is evaluated in a first step. With this additional data, a fast and repeatable auto-levelling can be performed during the actual measurement.
Jan 24, 2022 | AN-No. 1EF111
为了更加方便地监控仪器的使用和状态,部分设备提供一款名为健康与使用监控服务 (HUMS) 的软件选件。 HUMS 详细提供关于一段时间内的健康状态和使用情况的所有必要信息。
1月 11, 2021 | AN-No. GFM336
How Kyrio found its perfect O-RAN conformance T&M solution from Rohde & Schwarz and VIAVI Solutions.
R&S VSE-K7/Fxx-K7/RTO AM/FM/PM Modulation Analysis - Specifications
R&S Fxx-K30 Measure noise figure above 110GHz - Application Card
R&S VSE-K106/FSx-K106/FPS-K106 EUTRA/LTE NB-IoT Measurement Application - Specifications
Carrier aggregation — (one) key enabler for LTE-Advanced -
Active, high-impedance probes can be connected to spectrum analyzers, providing a practical and highly precise measurement solution to overcome an otherwise cumbersome RF testing issue. This application note provides information on how to use oscilloscope probes in RF measurements using spectrum analyzers
Jul 04, 2023 | AN-No. 1EF116