9099 Results
Demonstration of BER Test with AMIQ controlled by WinIQSim
29-Sep-1998 | AN-No. 1MA16
LTE user equipment (UE) receiver performance has significant impact to cellular radio network coverage and capacity. It determines the maximum data throughput across the air interface between the LTE base station (eNB, evolved node B) and the mobile network subscriber UE, thus it determines the total capacity across the air interface. Therefore, it is one of the most important measurements to verify the actual receiver performance of individual devices, and a key metric to compare different devices, in particular.This paper shall give an introduction to receiver performance measurements and discusses the measurement metrics as well as the challenges of over the air (OTA) measurements.
31-Aug-2017 | AN-No. 1ST001
Power and Modulation Measurements on VHF Transmitters Example: Rohde & Schwarz VHF-FM Transmitter SU115
04-Jun-1998 | AN-No. 1EF09
The R&S®SMA100B analog RF and microwave signal generator with its high-quality pulse modulator provides narrow pulse modulation.
30-May-2017
Easy Analysis and Precise Optimization of ATSC or ATSC Mobile DTV Single-Frequency Networks
21-Apr-2010 | AN-No. 7BM75
The R&S®NGL200 and R&S®NGM200 can simulate battery cells when testing battery management systems and replace far more expensive dedicated battery simulators.
08-Jun-2020
This application Note is based on CMW500, SMBV100B and Vector CANoe.Car2x Software and guides to how to simulate the specific Cellular Vehicle-to-Everything (C-V2X) wireless environment in respect to road transport scenarios and transmitted messages around the Device Under Test (DUT) like a Telematics Control Unit (TCU). It shows how to verify and validate the C-V2X application of the DUT in laboratory environment. The virtual simulation scenario is not limited to the requirements of CSAE53-2017 specification, and it could be modified by user according to this operating guide with CANoe.Vehicle-to-everything (V2X) is a new generation of information and communications technologies that connect vehicles to everything. The objective of V2X is to increase road safety and manage traffic efficiently.C-V2X is designed to offer low-latency vehicle-to-vehicle (V2V), vehicle-to-roadside infrastructure (V2I) and vehicle-to-pedestrian (V2P) communications services to add a new dimension to future advanced driver assistance systems (ADAS). C-V2X as one communications standard defined by 3GPP in Release 14 uses LTE technology as the physical interface for communications. The standard describes two types of communications. The vehicle-to-network (V2N) communications type, exploits the cellular Uu interface, uses traditional cellular link to enable cloud services to be integrated into end-to-end solutions, e.g. to allow road and traffic information for a given area to be distributed to the vehicles.The second type is referred to as direct or PC5/Sidelink (V2V, V2I, V2P) communications, where data transmission takes place over the PC5 interface. In that type, C-V2X does not necessarily require a cellular network infrastructure. It can operate without a SIM and without network assistance and uses GNSS as its primary source for time synchronization.Verifying system functionality and performance exclusively by field testing in a real-world environment can be time-consuming, costly and very challenging. Requirements regarding functionality, and consequently the required assistance functions, are constantly changing. Due to this fact, test solutions are needed during the development and introduction phase to verify compliance with the standards. The PC5 direct communications type allows exchange of time sensitive and safety relevant information. Using a mobile communication tester like the R&S® CMW500 together with a C-V2X scenario simulation tool delivers reproducible test scenarios. This is essential for the standardization of verification processes for C-V2X in order to obtain reliable and comparable results, and it helps to demonstrate that end-to-end functionality between two C-V2X devices from different vendors works properly.
02-Jun-2021 | AN-No. GFM341
Tackling the Challenges of Pulsed Signal Measurements
18-Jan-2008 | AN-No. 1MA124
This application note is a systematic guide to help test engineers configure the Vector Network Analyzer in order to perform compliance test on Automotive Ethernet cables according to the Open Alliance TC9 standard.
13-Aug-2019 | AN-No. GFM323
Comprehensive PCR Analysis - Using the R&S DVM Family from Rohde & Schwarz R&S DVM50/DVM100/DVM120/DVM400
01-Jun-2006 | AN-No. 7BM55
Debugging and verifying the DDR DRAM memory interface in a system design can be challenging. The R&S®RTP high-performance oscilloscope zone trigger is ideal for READ/WRITE separation as a basis for analyzing signal integrity.
06-Feb-2025
This application note describes Methods of Implementations (MOI) for precise, fast and error-free compliance testing of high-speed backplanes and direct attach copper cables (DAC).
07-Apr-2021 | AN-No. GFM356
Ensures compliance of high speed Ethernet cable assemblies with fast automation and easy testing.
04-Oct-2022
The validated UWB PHY test suite for the R&S®CMP200 radio communication tester simplifies FiRa™ Consortium PHY conformance testing.
21-Jun-2022
CMUCopy - Transferring CMU Hardcopy to PC using the IEEE Bus or the serial interface
28-Aug-2009 | AN-No. 1MA45
Simulation can be a big time-saver when designing EMI filters for DC/DC converters. However, simulated results can differ significantly for different tools if simulated models are not accurate or do not cover all the relevant components.
21-Sep-2021
AMR Testing on GSM Base Stations with R&S CMU300
26-Jul-2005 | AN-No. 1CM59
This application note explains how to generate phase coherent signals with a compact easy-to-use solution.
07-Sep-2016 | AN-No. 1GP108
The R&S SFU broadcast test system is used as a reference signal generator to simulate the influence of LTE and other mobile radio signals on digital TV signals and receivers.
20-Jun-2012
NTP and ACP Measurements to ETS 300 175-2 for DECT using Spectrum Analyzer FSE
28-Apr-1998 | AN-No. 1EF42
The LTE C-V2X Scanner provides customers an opportunity to verify, test, and optimize ITS traffic systems (RF KPIs and decoded ITS message content).
21-Oct-2022 | AN-No. 8NT07
Radar Waveforms for A&D and Automotive Radar
31-Aug-2015 | AN-No. 1MA239
Measurements on 3GPP WCDMA User Equipment According to Standard TS 34.121
10-Dec-2008 | AN-No. 1MA68
Verify the energy efficiency of your O-RAN radio units
19-Mar-2024
Rohde&Schwarz Smart Instruments Family300 Basic Programming Guide
25-Jun-2007 | AN-No. 1MA73
ACP Measurement according to IS 54 (NADC) using the FSE Spectrum Analyzers
17-Jan-2002 | AN-No. 1EF32
Define the exact current profile to minimize your electronics device´s power consumption with the R&S®NGM200 power supply series.
10-Dec-2020
Reference factor between RF (referenced to sync top level) and VF
20-Jul-2001 | AN-No. 7BM10