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R&S®TSMA user manual

Describes all functions of the R&S®TSMA autonomous mobile network scanner.

English - 2019/07/28

R&S®TSMA6-BP manual

Provides the information required to set up and use the unit with the instrument.

English - 2022/06/23

R&S®TSMA6 getting started

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

English - 2024/06/26

R&S®TSMA getting started

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

English - 2019/07/28

R&S®TSMA-BP manual

Provides the information required to set up and use the unit with the instrument.

English - 2019/07/28

R&S®TSME user manual

Describes all functions of the R&S®TSME ultracompact drive test scanner, and the R&S®TSME device manager software, including the instrument connections and interactions with the drive test software applications available.

English - 2020/02/20

R&S®TSMA6 user manual

Describes all functions of the R&S®TSMA6 autonomous mobile network scanner.

English - 2024/06/26

次のファームウェア R&S®TSMx モバイル・ネットワーク・スキャナ

Japanese - 2026/04/22

次のドライバ R&S®TSMx モバイル・ネットワーク・スキャナ

Japanese - 2019/04/18

R&S®TSME-Z3 getting started

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

English - 2014/02/21

R&S®TSMS8 getting started

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

English - 2025/10/27

How to verify 5G private networks for military communication

Key Points: Mission-Critical Infrastructure: Military operations require extremely high reliability and availability, as any downtime can result in compromised missions and significant strategic losses. The reliability of communication networks is crucial to ensure seamless execution of military operations. Fundamental requirements: Military applications often require low latency and sustainable latency to ensure real-time communication and control, particularly in situations where split-second decisions can mean the difference between success and failure. This is critical for applications such as command and control systems, surveillance, and reconnaissance. Measurement Techniques: As soon as the radio access network is used, innovative testing methods are needed beforehand to proactively test the network capability and to identify any potential issues. We propose a standard test procedure for the characterization of a network regarding military use-cases that covers a representative set of different, common types of network traffic.

English - 2025/07/02

Drivers for R&S®TSMx Drive and walk test scanner

English - 2019/04/18

R&S®TSMx-API for R&S®TSMx mobile network scanners - Product Brochure

The R&S®TSMx mobile network scanners collect RF data to test mobile networks or analyze networks for government purposes. The new application programming interface (API) for R&S®TSMx mobile network scanners – here referred to as R&S®ViComWeb – allows the scanners to be quickly integrated into any third-party software irrespective of the operating system in use. Installations for walk and drive tests and for remote control of the scanners are supported.

English - 2024/12/16

3 MB | PDF

Ensure high performance of private 5G networks

Modern societies worldwide depend on the performance, reliability and security of critical infrastructures and networks. There is a plethora of “new verticals” such as manufacturing, warehouse, mining, ports or other critical infrastructure, just to name a few. These “new vertical” use cases all have one common requirement: the mobile network needs to provide a superior performance compared to a commercial mobile network. In such environments 5G brings new capabilities to build fast and secure campus or private networks tuned to higher performance, which can increase productivity and efficiency. To be successful in these business-critical use cases, the wireless networks need to be as reliable as the wired ones. This educational note describes the different test methods to be able to verify the superior network performance and to help finding root causes of potential problems limiting the performance. We distinguish between passive tests and active tests.

English - 2023/08/11

TSMS-OMN70, TSMS-OMN18, TSMS-OMN8 - EU Declaration of Conformity

TSMS-OMN70 - EU Declaration of Conformity TSMS-OMN8 - EU Declaration of Conformity TSMS-OMN18 - EU Declaration of Conformity

English - 2025/08/20

123 kB | PDF

Accurate and fast NB-IoT network measurements

For NB-IoT applications to function correctly, sufficient network coverage is required. Coverage must be measured to ensure a robust NB-IoT connection. Rohde & Schwarz mobile network testing provides a unique combined test solution that accurately measures the DL coverage using network scanners. It measures the device/network interaction, UL behavior, protocol, signaling load and energy efficiency during communications using NB-IoT devices connected to R&S®ROMES.

English - 2018/02/20

How to verify 5G private networks for communicating machines

Business-critical infrastructure: Industrial applications require extremely high reliability and availability, as any downtime can result in significant financial losses. Fundamental requirements: Industrial applications often require low latency and even more important a sustainable latency to ensure real-time communication and control. Measurement Techniques: As soon as the radio access network is used, innovative testing methods are needed beforehand to proactively test the network capability and to identify any potential issues. We propose a standard test procedure for the characterization of a network regarding industrial use-cases that covers a representative set of different, common types of network traffic.

English - 2024/08/13

Field measurements in mobile networks for regulators

Key points:Importance of field measurements: Traditional network planning tools and models only offer an estimated view of mobile coverage. Field measurements are conducted under real geographical and load conditions, and therefore provide a more accurate picture and can discover interferences more effectively. Coverage investigations: When deploying a mobile network, operators must adhere to regulatory standards and licensing conditions. As a result, regulatory authorities carry out field measurements on a regular or ad hoc basis to validate compliance or investigate customer complaints. This process identifies coverage gaps and areas of poor network quality, enabling regulatory authorities to take actions to enhance service quality for consumers and guide network expansion.Foster competition: If the field measurements of the coverage and performance are performed on a scale representative of a given country, the transparency of these results can promote healthy competition between operators and better service for consumers, which is essential for economic growth and social development.Measurement Techniques: The harmonized methodology for measuring and evaluating data throughput and QoE based on popular services is described in ETSI TR 103 559.

English - 2024/04/15

Automated spectrum clearance in LTE and 5G mobile networks

Spectrum clearance in mobile networks is becoming ever more important as operators use new bands that previously contained other services. This is particularly important for the 5G NR rollout. 5G NR has already initiated a worldwide deployment of TDD networks in an unknown radio environment where unwanted transmitters can create uplink interference masked by downlink signals, making interference hunting particularly demanding. Automated detection of interference signals before a network switches on can be a big help in addition to traditional manual techniques.

English - 2024/04/19

How network scanners verify C-V2X communication

For several years, vehicle manufacturers and government agencies have sought ways to increase road safety, manage traffic efficiently and, in the future, make driving more comfortable, convenient and safe. Vehicle-to-everything (V2X) is a new generation of information and communication technology that connects vehicles to everything and can support these objectives. V2X is designed to offer low-latency vehicle-to-vehicle (V2V), vehicle-to-roadside infrastructure (V2I) and vehicle-to-pedestrian (V2P) communications to add a new dimension to future driver assistance systems.Cellular V2X (C-V2X) is defined as the communications standard by 3GPP in Release 14 and uses LTE technology as the physical interface for communications.The LTE C-V2X Scanner provides customers an opportunity to verify, test, and optimize ITS traffic systems that are being deployed or are already established. The scanner accomplishes this by passively listening to PC (5.9GHz) messages that are being broadcast from RSU (roadside units), vehicles or any other C-V2X enabled device. Traditional scanner measurements regarding RF signal power and quality such as RSRP, RS-CINR and RSSI, are provided for each physical channel (PSCCH and PSSCH) as well as decoded ITS message content for all three regions (North America, EU, China).

English - 2022/10/21

R&S®TSME6 Ultracompact Drive Test Scanner - Product Brochure

The R&S®TSME6 is designed for efficient drive and walk tests with a maximum degree of freedom and upgradability. With its ultracompact design and multiband and multitechnology support for simultaneous measurements, the scanner fulfills all requirements for a state-of-the-art measurement tool.

English - 2025/10/31

4 MB | PDF

TSME6 incl. Accessory - EU Declaration of Conformity

EU Declaration of Conformity for TSME6 including accessory: TSMA6-BP, TSMA6B-BP, TSMA6-Z1, TSME30DC, TSME44DC

English - 2025/07/25

138 kB | PDF

TSMS8 - EU Declaration of Conformity

EU Declaration of Conformity for TSMS8 - UBB Compact Network Scanner

English - 2025/07/29

137 kB | PDF

Receive antennas | Use cases for mobile network testing and cellular network analysis - Flyer

Mobile network testing (MNT) and cellular network analysis (CNA) have many use cases that overlap but require different antennas. Together with our R&S®TSMx mobile network scanners, Rohde & Schwarz has several antennas for all types of measurement campaigns. Typical network scanner applications include coverage and signal quality measurements for network verification, optimization, troubleshooting and benchmarking. Network scanners are also used for MIMO, network synchronization, interference and drone based RF measurements.

English - 2025/10/31

3 MB | PDF

R&S®TSMA6B Autonomous Mobile Network Scanner - Product Brochure

The compact R&S®TSMA6B autonomous mobile network scanner is an integrated solution for efficient drive and walk testing. It offers maximum performance, autonomy and connectivity with an integrated highperformance PC and a mobile network scanner to comply with the latest requirements for state-of-the-art mobile network testing.

English - 2025/11/04

4 MB | PDF

Enhancing situational awareness with R&S®NESTOR and R&S®TSMx - Case Study

English - 2024/07/31

2 MB | PDF

R&S®TSMA6 Autonomous Mobile Network Scanner - Product Brochure

The compact R&S®TSMA6 autonomous mobile network scanner is an integrated solution for efficient drive and walk testing. It offers maximum performance, autonomy and connectivity with an integrated high performance PC and a mobile network scanner to comply with the latest requirements for state-of-the-art mobile network testing.

English - 2022/05/31

4 MB | PDF

TSME6 - Product Safety Certificate - VDE Mark

Product safety certificate according to EN/IEC standards for TSME6

English - 2025/03/12

332 kB | PDF

Performance degradation due to asynchronous 5G networks

Critical infrastructure: With the deployment of TDD networks, the mobile network community recognizes the critical importance of cell synchronization and the use of uniform TDD patterns across different networks for the proper operation of mobile radio networks. Variety of scenarios: Possible scenarios include cross-border situations, interactions between private campus networks and public mobile networks, and accidental synchronization chain breaks or misconfigurations within the mobile network.Measurement techniques: To quantify the effects of non-synchronized cells and using different TDD pattern in neighboring networks, R&S, in collaboration with TU Dresden and Advancing Individual Networks GmbH (AIN), conducted a measurement campaign using movable networks with full control over all network parameters. This campaign measured the effects on uplink and downlink throughput, mapping these to RSSI/RSRP values received at the interfered site.Customer benefits: The available quantification is valuable for predicting and assessing potential interference scenarios before setting up and operating a new cell site.

English - 2024/09/11

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