Choose a country or area to see content specific to your location
What are you looking for?
Bridging design and physical testing to evaluate drop, impact, shock, and vibration compliance before hardware exists.
Unlock your free upgrade to the next bandwidth tier.
Strengthen 1.6T network reliability for AI-scale workloads from transceivers to interconnects.
Pair Keysight VSA software with the new XA5 signal analyzer for advanced visualization, demodulation, and analysis — start your 30-day trial today.
With extra memory and storage, these enhanced NPBs run Keysight's AI security and performance monitoring software and AI stack.
Explore end-to-end workflows spanning IC design, validation, wafer test, and photonics.
Explore curated support plans, prioritized to keep you innovating at speed.
Achieve 200+ Gbaud multi-level modulated signals with high-speed AWGs for digital and optical standards.
Maximize accuracy and performance with precision accessories engineered for Keysight instruments.
Explore dual-channel and ultra-wideband signal analysis for demanding RF workflows.
Get faster, clearer insights with our new multicore, 12-bit oscilloscope up to 33 GHz. Trade in your old oscilloscope and get credit toward a new XR8.
Authoritative application notes, data sheets, reference designs, and test procedures to accelerate design and validation decisions.
Hands‑on bootcamps that teach system design, test methods, and production workflows engineers can apply immediately.
Success Stories
Quick access to support related self-help tasks.
Additional content to support your product needs.
Explore services to accelerate every step of your innovation journey.
Channel Studio is a state-of-the-art radio wave propagation modeling software for digital twin simulations and real-time performance testing of devices, radio systems, and transceivers. It supports a vast range of both stochastic and deterministic radio frequency (RF) ray tracing channel models. Channel Studio software enables the creation of scenarios with user-defined number of radios and links, mobility and antenna system definitions combined with industry standard or user-defined channel models. An easy-to-use intuitive user interface provides numerical data and graphs to validate and document the model properties.
The modeling capabilities include multi-cell, multi-device scenarios with dynamic mobile speed and multipath profiles, link delay and Doppler modeling, and antenna model embedding for base stations and mobile radios. Multi-antenna and antenna array model embedding supports emulation of realistic and time variant multiple-input multiple-output (MIMO) correlations and beamforming for single or multiple users (multi-user MIMO or MU-MIMO).
Model real-world propagation effects, including multipath, delay, Doppler, mobility, and antenna behavior for accurate wireless testing.
Build custom wireless scenarios with configurable radios, links, mobility patterns, antenna systems, and propagation conditions.
Leverage industry-standard channel models and methodologies across cellular, WLAN, satellite, sensing, and emerging wireless applications.
Seamlessly transition from digital twin simulations to hardware-in-the-loop testing using realistic and repeatable channel conditions.
Technology
All wireless, LTE, 5G, 5G Adv, 6G, WLAN, 3GPP wireless, NTN, WLAN/BT/UWB
Use cases
Industry-standard RF channel modeling, RF Digital Twin (DT), Sensing channel modeling, WLAN/BT/UWB channel modeling, TDL channel modeling, NTN channel modeling, Replication of field RF conditions in the lab
Frequency range
3 MHz - 53 GHz, 2.4 GHz - 10.6 GHz, 30 MHz - 410 MHz
Software implementing high-fidelity geometry-based channel modeling for advanced wireless system validation.
Software implementing high-fidelity geometry-based channel modeling for advanced wireless system validation.
F9860000A
Software implementing high-fidelity geometry-based channel modeling for advanced wireless system validation.
The F9860000A Channel Studio Geometric Channel Modeling (GCM) Tool provides flexible, high-fidelity stochastic channel modeling and enables the creation of virtual RF environments in which all transmitters and receivers are assigned physical locations and RF characteristics. The positions, speeds, and orientations of radios can be dynamically updated, allowing devices to move along predefined trajectories with configurable velocities and orientations. The tool supports the 3GPP spatial channel models specified in TR 38.901.
The GCM Tool offers an intuitive and efficient way to create dynamic test scenarios. With just a few mouse clicks, users can add or remove radios and define channel conditions and interactions between any combination of transmitters and receivers. The optional antenna array modeling capability enables the simulation of a wide range of real-world antenna systems, from simple dipole antennas to advanced Massive MIMO antenna arrays.
The tool supports both cabled and over-the-air (OTA) test scenarios, providing flexibility across a variety of development and validation workflows. In addition, the GCM Tool can generate geometry-based stochastic channel model datasets for AI / ML model training and on-target benchmarking of AI RAN and AI Device use cases.
Software implementing site-specific RF ray-tracing for wireless digital twins and AI RAN.
Software implementing site-specific RF ray-tracing for wireless digital twins and AI RAN.
F9860500A
Software implementing site-specific RF ray-tracing for wireless digital twins and AI RAN.
The F9860500A Channel Studio RaySim Tool (RaySim) is a state-of-the-art RF ray tracing solution designed for quick and accurate site-specific RF propagation scenario creation for complex new wireless technologies in 5G Advanced and 6G. The solution supports link-level, system-level, and network-level RF scenario simulations for Keysight’s or customer digital twins. This allows the seamless creation of real-time emulations for hardware-in-the-loop testing using Keysight's end-to-end emulation portfolio for device and radio access networks testing with RF channel emulation.
RaySim enables the seamless virtualization of drive test routes with high RF fidelity, facilitating realistic and effective 24 / 7 continuous integration testing of new software releases or network configurations. The solution supports MIMO and Massive MIMO radios, multiple UEs, and antenna beam pattern embedding. Wireless system parameters can be easily adjusted to evaluate various scenarios quickly in the lab. RaySim is the ideal solution to generate site-specific datasets for AI / ML model training and on-target benchmarking of AI-RAN and AI-Device use cases.
Software implementing dynamic NTN propagation modeling for LEO, MEO, and GEO networks.
Software implementing dynamic NTN propagation modeling for LEO, MEO, and GEO networks.
F9860020A
Software implementing dynamic NTN propagation modeling for LEO, MEO, and GEO networks.
The F9860020A Channel Studio Non-Terrestrial Network (NTN) Tool provides flexible propagation channel modeling for communications between ground stations and LEO, MEO, and GEO satellites. It supports dynamic, phase-coherent delay, Doppler, and path loss modeling, including atmospheric rain attenuation based on ITU-R P.618, as well as 3GPP TR 38.811 TDL and CDL multipath fading channel models for NTN testing. When used in conjunction with the F9860000A Channel Studio GCM Tool, the solution supports the modeling of mixed terrestrial and non-terrestrial handover scenarios, as well as multi-satellite handover testing. The tool also enables NTN channel modeling for 2x2 and 2x4 MIMO multi-element antenna systems.
To simplify satellite scenario creation, the NTN Tool supports the import of satellite ephemeris data and Two-Line Element (TLE) files, allowing orbital parameters for Earth-orbiting satellites to be accurately defined at specific points in time, together with user equipment (UE) and/or ground gateway locations. In addition, it supports OpenStreetMap integration, GPS coordinate-based scenario definition, and both transparent (bent-pipe) and regenerative (Sat-gNB) satellite architectures, including single-link and multi-link communication scenarios.
Software implementing realistic ISAC channel modeling for 5G-Advanced and 6G wireless sensing.
Software implementing realistic ISAC channel modeling for 5G-Advanced and 6G wireless sensing.
F9860060A
Software implementing realistic ISAC channel modeling for 5G-Advanced and 6G wireless sensing.
The F9860060A Wireless Sensing Modeling Tool enables accurate integrated sensing and communications (ISAC) channel modeling by combining sensing target effects and background propagation characteristics within a unified simulation environment. Based on the 3GPP TR 38.901 Release 19 modeling framework, it extends standard channel modeling capabilities to support micro-Doppler effects and a wider range of sensing target types.
The F9860060A allows users to configure target trajectories, orientations, and radar cross-section (RCS) patterns to create realistic sensing scenarios, while preserving full communication channel fidelity, including multipath propagation, Doppler effects, and beamforming. The tool accelerates the development and validation of 5G-Advanced and 6G ISAC use cases by enabling early-stage design evaluation and facilitating a seamless transition from simulation to hardware emulation for comprehensive system testing.
Software to convert real-world RF measurements into repeatable lab test scenarios.
Software to convert real-world RF measurements into repeatable lab test scenarios.
F9860200A
Software to convert real-world RF measurements into repeatable lab test scenarios.
With the F9860200A Channel Studio RF Field-to-Lab Tool, users can easily bridge the gap between laboratory and field testing by recreating realistic over-the-air conditions based on measured real-world environments. This capability accelerates the validation of wireless devices and network equipment by enabling accurate and repeatable testing under representative air-interface conditions. The RF Field-to-Lab Tool provides a realistic, repeatable, and cost-effective laboratory testing methodology that allows multiple designs, as well as successive design revisions, to be verified quickly and efficiently. Users can also create and maintain a library of RF Field-to-Lab test cases based on measurements collected from various locations around the world, supporting consistent benchmarking and regression testing. The RF Field-to-Lab Tool imports radio channel parameters - such as Cell ID, Reference Signal Received Power (RSRP), Signal-to-Noise Ratio (SNR), and MIMO correlation - from measurement files to automatically generate channel models for use with the channel emulator. It delivers reliable reproduction of recorded field conditions without requiring additional channel modeling or manual user intervention.
Software implementing standards-based WLAN channel modeling for advanced Wi-Fi validation.
Software implementing standards-based WLAN channel modeling for advanced Wi-Fi validation.
F9860300A
Software implementing standards-based WLAN channel modeling for advanced Wi-Fi validation.
Today's chipset and device manufacturers, as well as test laboratories, are validating the performance of advanced IEEE 802.11ax and 802.11be WLAN features under standardized IEEE propagation channel conditions.
The F9860300A Channel Studio WLAN Modeling Tool is an easy-to-use application for generating standard IEEE 802.11 WLAN channel models. It supports both single-user MIMO (SU-MIMO) and multi-user MIMO (MU-MIMO) configurations across a variety of antenna setups, enabling realistic emulation and performance evaluation of WLAN devices and systems under standardized propagation conditions.
Software implementing custom Tapped-Delay Line fading models for wireless system testing.
Software implementing custom Tapped-Delay Line fading models for wireless system testing.
F9860400A
Software implementing custom Tapped-Delay Line fading models for wireless system testing.
The F9860400A Channel Studio Tapped Delay Line (TDL) Modeling Tool is a comprehensive application for creating custom fading models. The generated models can be used across a wide range of applications, including cellular wireless communications, defense systems, broadcasting, and general-purpose communication link and receiver testing.
The TDL Modeling Tool is available as an optional feature for the M9484C VXG Vector Signal Generator and the E7515B UXM 5G Wireless Test Platform. It is also included as part of the PROPSIM Standard Tools software suite. The tool provides access to all key fading profile parameters through a simple and intuitive user interface, enabling efficient creation and configuration of custom channel models.
Designed for ease of use and high productivity, the TDL Modeling Tool offers fast model development and supports multiple Keysight hardware platforms, providing a flexible and consistent solution for fading channel emulation and wireless system testing.
Innovate at speed with curated support plans and prioritized response and turn-around times.
Get predictable, lease-based subscriptions and full lifecycle management solutions—so you reach your business goals faster.
Experience elevated service as a KeysightCare subscriber to get committed technical response and more.
Ensure your test system performs to specification and meets local and global standards.
Make measurements quickly with in-house, instructor-led training, and eLearning.
Download Keysight software or update your software to the newest version.