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3D Interconnect Designer provides a flexible modeling and optimization environment for any advanced interconnect structure, including chiplets, stacked die, packages, and PCBs.
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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 FlexDCA Sampling Oscilloscope Software N1010A runs Keysight’s digital communication analyzer (DCA) of sampling oscilloscopes with a new user interface.
The FlexDCA Sampling Oscilloscope Software N1010A runs Keysight’s digital communication analyzer (DCA) of sampling oscilloscopes with a new user interface.
N1010A
The FlexDCA Sampling Oscilloscope Software N1010A runs Keysight’s digital communication analyzer (DCA) of sampling oscilloscopes with a new user interface.
Keysight’s N1010A FlexDCA is the software that runs Keysight’s digital communication analyzer (DCA) family of sampling oscilloscopes (also known as equivalent-time oscilloscopes). A DCA is an instrument that helps visualize and analyze the analog properties of high-speed signals such as those used in wireline telecom and data center links.
FlexDCA is installed at the factory on DCA-X mainframes but can also be installed on a PC to control a DCA-M or remotely control a DCA-X.
In addition to the data acquisition and basic measurement capabilities the N1010A FlexDCA software provides, Keysight offers a large selection of software tools with powerful capabilities:
For a mapping of legacy FlexDCA feature-based options to each of the software packages available, refer to DCA Configuration Guide under N1010x00A Analysis Packages mapping table.
KS8400B PathWave Test Automation with test sequencer, timing analyzer, and result viewer for production test.
KS8400B PathWave Test Automation with test sequencer, timing analyzer, and result viewer for production test.
KS8400B
KS8400B PathWave Test Automation with test sequencer, timing analyzer, and result viewer for production test.
PathWave Test Automation provides powerful, flexible and extensible test sequencing and test plan creation with additional capabilities that optimize your test software development and overall performance. Built on the PathWave software platform, PathWave Test Automation enables you to quickly create your test solutions, maximize your team’s productivity, and accelerate your products’ time-to-market.
KS8400A PathWave Test Automation Developer System with test sequencer, timing analyzer, and result viewer tools.
KS8400A PathWave Test Automation Developer System with test sequencer, timing analyzer, and result viewer tools.
KS8400A
KS8400A PathWave Test Automation Developer System with test sequencer, timing analyzer, and result viewer tools.
PathWave Test Automation provides powerful, flexible and extensible test sequencing and test plan creation with additional capabilities that optimize your test software development and overall performance. Built on the PathWave software platform, PathWave Test Automation enables you to quickly create your test solutions, maximize your team’s productivity, and accelerate your products’ time-to-market.
N9916BU FieldFox software for N9916B: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
N9916BU FieldFox software for N9916B: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
N9916BU
N9916BU FieldFox software for N9916B: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
Enable deeper insights in measurement and analysis by expanding the capabilities of your FieldFox handheld analyzer with field-upgradeable software licenses. These capabilities are engineered to deliver benchtop results into the field.
DG9112A tests up to 12-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9112A tests up to 12-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9112A
DG9112A tests up to 12-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
Advance photovoltaic inverter test software evaluates single and multi-input inverters. Test up to 12 MPPT algorithms simultaneously. Independent I-V curves drive each channel with up to 2000 V. Scale input power by paralleling PV8900 simulators using their parallel link capability. The advance photovoltaic inverter test software is available for free when testing a single input.
When testing multiple input inverters, the software is available for four inputs (DG9104A), eight inputs (DG9108A), or twelve inputs (DG9112A). Independent I-V curves characterize each channel, testing up to 12 MPPT algorithms simultaneously. The software provides a single point of control to configure I-V curves and analysis a single or multi-input string inverters efficiency.
DG9108A tests up to 8-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9108A tests up to 8-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9108A
DG9108A tests up to 8-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
Advance photovoltaic inverter test software evaluates single and multi-input inverters. Test up to 12 MPPT algorithms simultaneously. Independent I-V curves drive each channel with up to 2000 V. Scale input power by paralleling PV8900 simulators using their parallel link capability. The advance photovoltaic inverter test software is available for free when testing a single input.
When testing multiple input inverters, the software is available for four inputs (DG9104A), eight inputs (DG9108A), or twelve inputs (DG9112A). Independent I-V curves characterize each channel, testing up to 12 MPPT algorithms simultaneously. The software provides a single point of control to configure I-V curves and analysis a single or multi-input string inverters efficiency.
DG9104A tests up to 4-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9104A tests up to 4-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
DG9104A
DG9104A tests up to 4-input photovoltaic inverters, evaluating up to 12 MPPT algorithms with inputs up to 2000 V.
Advanced photovoltaic inverter test software evaluates single and multi-input inverters. Test up to 12 MPPT algorithms simultaneously. Independent I-V curves drive each channel with up to 2000 V. Scale input power by paralleling PV8900 simulators using their parallel link capability. The advanced photovoltaic inverter test software is available for free when testing a single input.
When testing multiple input inverters, the software is available for four inputs (DG9104A), eight inputs (DG9108A), or twelve inputs (DG9112A). Independent I-V curves characterize each channel, testing up to 12 MPPT algorithms simultaneously. The software provides a single point of control to configure I-V curves and analysis a single or multi-input string inverter efficiency.
M6803B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
M6803B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
M6803B
M6803B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
The M6803B tool provides a powerful capability to test the functionality of embedded instruments within a semiconductor device without the need to define the instruments or their features. By adding the necessary ICL and PDL files as libraries and assigning them to the relevant devices, the tool can automatically generate tests for devices compliant with the IEEE 1687 standard.
M6802B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
M6802B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
M6802B
M6802B x1149 IEEE 1687 development license for testing embedded instruments in semiconductor devices.
The M6802B tool provides a powerful capability to test the functionality of embedded instruments within a semiconductor device without the need to define the instruments or their features. By adding the necessary ICL and PDL files as libraries and assigning them to the relevant devices, the tool can automatically generate tests for devices compliant with the IEEE 1687 standard.
N9912AU FieldFox software for N9912A: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
N9912AU FieldFox software for N9912A: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
N9912AU
N9912AU FieldFox software for N9912A: enables cable/antenna analysis, VNA, spectrum analyzer, and power meter modes.
Enable deeper insights in measurement and analysis by expanding the capabilities of your FieldFox handheld analyzer with field-upgradeable software licenses. These capabilities are engineered to deliver benchtop results into the field.
S970903B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 14 GHz.
S970903B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 14 GHz.
S970903B
S970903B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 14 GHz.
The S970903B spectrum analysis adds high-performance analysis to the P5003B and P5023B Streamline Series Vector Network Analyzers (VNA). With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over a broad frequency range. Make simultaneous spectrum measurements using multiple test and reference receivers. Increase the efficiency of spurious signals measurements emanating from mixers and frequency converters using the multi-channel SA with internal swept-signal generators. The SA application employs source-power and receiver-response calibration and fixture de-embedding for in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
Achieve accurate and fast noise power ratio (NPR) measurements by setting up and controlling external signal generator/arbitrary waveform generators and calibrating the flatness of a wideband signal and distortion signals in notches.
The installed SA license or the stop frequency of the instrument, whichever is smaller, determines the upper-frequency range of the SA application.
S970900B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 4.5 GHz.
S970900B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 4.5 GHz.
S970900B
S970900B adds spectrum analysis to the P50xxB Streamline series vector network analyzer, covering up to 4.5 GHz.
The S970900B spectrum analysis adds high-performance analysis to the P5000B and P5020B Streamline Series Vector Network Analyzers (VNA). With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over a broad frequency range. Make simultaneous spectrum measurements using multiple test and reference receivers. Increase the efficiency of spurious signals measurements emanating from mixers and frequency converters using the multi-channel SA with internal swept-signal generators. The SA application employs source-power and receiver-response calibration and fixture de-embedding for in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
Achieve accurate and fast noise power ratio (NPR) measurements by setting up and controlling external signal generator/arbitrary waveform generators and calibrating the flatness of a wideband signal and distortion signals in notches.
The installed SA license or the stop frequency of the instrument, whichever is smaller, determines the upper-frequency range of the SA application.