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Explore the complete portfolio of Keysight software, from design engineering tools to emulator and instrument software, built to extend and enhance your Keysight instruments. Whether you are configuring measurements, automating tests, analyzing data, or validating compliance, use the filters below to identify the right software to support your workflow — from design and validation through manufacturing and deployment.
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The EV – EVSE Smart Charging Emulation Software provides emulation of EV/EVCC or EVSE/SECC according to the Combined Charging System (CCS) standard.
The EV – EVSE Smart Charging Emulation Software provides emulation of EV/EVCC or EVSE/SECC according to the Combined Charging System (CCS) standard.
SL1470A
The EV – EVSE Smart Charging Emulation Software provides emulation of EV/EVCC or EVSE/SECC according to the Combined Charging System (CCS) standard.
Identify communication issues of your electric vehicle (EV) or electric vehicle supply equipment (EVSE) early in the development lifecycle and reduce the time and cost involved. The Keysight SL1470A EV - EVSE Smart Charging Emulation Software (SCE) provides the software framework for rapid emulation of EV / electric vehicle communication controller (EVCC) or EVSE / supply equipment communication controller (SECC) according to the standards addressed by the Combined Charging System (CCS) specification.
The TTCN-3 Charging Communication Test Automation Software provides test case packages for conformance and interoperability testing based on TTCN-3.
The TTCN-3 Charging Communication Test Automation Software provides test case packages for conformance and interoperability testing based on TTCN-3.
SL1471A
The TTCN-3 Charging Communication Test Automation Software provides test case packages for conformance and interoperability testing based on TTCN-3.
The electric vehicle (EV) charging process involves a complex communication protocol to negotiate charging parameters. Many interoperability issues between the EV and electric vehicle supply equipment (EVSE) are related to communication errors resulting in charging failures.
The Keysight SL1471A TTCN-3 Charging Communication Test Automation Software (CCT) provides test case packages for conformance and interoperability testing for Combined Charging System (CCS) communication based on the test implementation language Testing and Test Control Notation version 3 (TTCN-3). Prepare for certification and type approval tests with the CCT and the test case packages.
Keysight’s SL2000A controls Keysight Charging Discovery Systems (CDS) with EV/EVSE emulation and testing for CCS, NACS, GB/T, Bharat, and CHAdeMO.
Keysight’s SL2000A controls Keysight Charging Discovery Systems (CDS) with EV/EVSE emulation and testing for CCS, NACS, GB/T, Bharat, and CHAdeMO.
SL2000A
Keysight’s SL2000A controls Keysight Charging Discovery Systems (CDS) with EV/EVSE emulation and testing for CCS, NACS, GB/T, Bharat, and CHAdeMO.
SL1093A is now SL2000A. The SL2000A Charging Discover Software (CD) is the central control environment for Keysight’s Charging Discovery System (CDS) in combination with Keysight’s AC/DC emulators. It enables seamless system operation, real‑time visualization of measured values, automated sequence recording, and professional reporting. The software supports comprehensive trace recording across all charging standards, independent of any emulation package licenses. Active EV/EVSE emulation is supported through the execution of dedicated emulation packages. Executing Keysight conformance and certification test cases requires the corresponding SL1300A Charging Discover Test Package licenses.
The CCS Charging Protocol Trace Viewer (CPT) enables users to decode Combined Charging System (CCS) communication protocols used for charging.
The CCS Charging Protocol Trace Viewer (CPT) enables users to decode Combined Charging System (CCS) communication protocols used for charging.
SL1487A
The CCS Charging Protocol Trace Viewer (CPT) enables users to decode Combined Charging System (CCS) communication protocols used for charging.
By analyzing the communication between an electric vehicle (EV) and an electric vehicle supply equipment (EVSE), you can gain valuable insights. This not only makes it easier to identify why charging sessions fail but also enables significant advancements in EV charging technology. Decode Combined Charging System (CCS) communication protocols and increase your debugging capabilities with the Keysight SL1487A CCS Charging Protocol Trace Viewer (CPT). The software supports the DIN 70121 and ISO 15118-2/-20 for vehicle-to-grid (V2G) communication. In addition, CPT can be used together with Wireshark, a packet analyzing tool, for easy and detailed tracking of communication between the EV and EVSE.
The SL1093A Scienlab Charging Discover test software is used for the control of the SL1040A Scienlab CDS with user friendly software to operate the system.
The SL1093A Scienlab Charging Discover test software is used for the control of the SL1040A Scienlab CDS with user friendly software to operate the system.
SL1093A
The SL1093A Scienlab Charging Discover test software is used for the control of the SL1040A Scienlab CDS with user friendly software to operate the system.
SL1093A is now SL2000A. The Scienlab Charging Discover test software controls the Scienlab Charging Discovery System (CDS). With this up-to-date, user-friendly software, you can operate the system, visualize measured values, record test sequences, and generate reports for trusted insights.
Energy Storage Discover (ESD) is the software solution for satisfying complex and comprehensive energy test procedures.
Energy Storage Discover (ESD) is the software solution for satisfying complex and comprehensive energy test procedures.
SL1091A
Energy Storage Discover (ESD) is the software solution for satisfying complex and comprehensive energy test procedures.
The Scienlab Energy Storage Discover (ESD) is a central component of all Scienlab energy storage test environments.
The intuitive software allows users to conduct tests that deliver concrete, stable, and reproducible results.
The Self-Discharge Analysis Software BT2155A controls the self-discharge analyzer to measure and log self-discharge current of Li-Ion cells in minutes.
The Self-Discharge Analysis Software BT2155A controls the self-discharge analyzer to measure and log self-discharge current of Li-Ion cells in minutes.
BT2155A
The Self-Discharge Analysis Software BT2155A controls the self-discharge analyzer to measure and log self-discharge current of Li-Ion cells in minutes.
The Keysight BT2155A self-discharge analysis software, controlling the BT2152A or BT2152B self-discharge analyzer, measures and records Li-Ion cell self-discharge current and cell voltage. The software configures the analyzer’s channel settings, such as initial voltage and current matching, channel limits (OVP, OCP, UVP), measurement intervals, and test duration.
The combination of the BT2155A and BT2152A or BT2152B delivers a revolutionary reduction in the time required to measure cell self-discharge current. For smaller cells like cylindrical 18650 or 21700 cells, testing indicates that you can quickly determine stable self-discharge current in as little as 1 hour or less, depending on the cell characteristics. For larger capacity pouch cells (e.g., 10-60 Ah), this can take as little as 1-2 hours or less.
This is a significant improvement compared to waiting for days or weeks for the cell open circuit voltage (OCV) to change enough to determine cell quality. That can provide a major reduction in work-in-process inventory and floor space required for cell storage. And it can significantly decrease your test cycle time and improve your time-to-market.
The self-discharge analyzer and software quickly measure self-discharge current using a potentiostatic measurement method with the characteristics needed to accurately make the direct current measurement. The BT2155A self-discharge analysis software controls one BT2152A or BT2152B self-discharge analyzer (up to 32 channels) and also measures the temperature on a group of up to 32 cells.
Key Features and Specifications
SL1221A automated anti-islanding test per IEEE 1547.1-2020 & UL1741SB. Anti-Islanding compliance test automation for energy innovators, boosting productivity and reliability.
SL1221A automated anti-islanding test per IEEE 1547.1-2020 & UL1741SB. Anti-Islanding compliance test automation for energy innovators, boosting productivity and reliability.
SL1221A
SL1221A automated anti-islanding test per IEEE 1547.1-2020 & UL1741SB. Anti-Islanding compliance test automation for energy innovators, boosting productivity and reliability.
As distributed energy resources (DERs) proliferate, ensuring grid stability and safety becomes increasingly critical. Validating the inverter's anti-islanding features and algorithms is vital to ensuring safe operation and compliance with grid codes.
Anti-islanding testing has traditionally been a time-consuming, equipment-intensive process, including manual tuning of a load bank containing resistors, inductors, and capacitors (RLC). The Keysight SL1221A automates anti-islanding testing using real-time simulation and power hardware integration. This approach reduces manual effort, improves repeatability, and accelerates time to certification.
EP1150A PathWave Lab Operation for battery test helps accelerate and optimize your battery test lab operations with a browser-based lab management platform.
EP1150A PathWave Lab Operation for battery test helps accelerate and optimize your battery test lab operations with a browser-based lab management platform.
EP1150A
EP1150A PathWave Lab Operation for battery test helps accelerate and optimize your battery test lab operations with a browser-based lab management platform.
PathWave Lab Operations for Battery Test enables efficient planning and coordination of your entire battery test laboratory. It manages all resources, including test fields, test systems, and your device under test (DUT). PathWave provides an integrated, browser-based lab management platform that helps you modernize your test workflows, eliminating legacy paper-based processes, and increasing data integrity and traceability.