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Self-Extracting .7z archive (exe format). Either run it to self-extract or use .7z or compatible decompression tool. After decompressed, run setup.exe, or the .msi (either one works). License is located in the installation directory under the license folder (.lic file). Select this file at first run and you're good to go. Tested on windows. Linux should work as well. Thanks Agilent, love you! -LS
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Key Features & Specifications:
-1-port Automatic Fixture Removal (AFR) for simple extraction of fixture models
-Multi-channel simulation to analyze TX and RX with vendor supplied IBIS-AMI models
-Batch file convertor improvements for managing large data sets
-Interpolation and single point limits for accurate pass/fail results
What's New with with PLTS 2014?
The new Physical Layer Test System (PLTS) 2014 includes novel features that will help solve real world problems for today's signal integrity engineers. There are so many signal integrity tools available for design, analysis, and troubleshooting of high-speed inter connects itΓÇÖs difficult to manage them all. Agilent's PLTS design team has created version 2014, integrating new features into PLTS for a substantial boost in productivity.PLTS is the signal integrity industry solution for measurement and analysis of physical layer devices. Wizards help users to calibrate and measure multiport devices with ease. Once measured, PLTS has a rich set of displays, analysis, data reformatting and conversion tools, as well as a versatile set of import and export capabilities. PLTS works with PNA and ENA network analyzers, and TDRs. Data and transmission line models can be exported to, or imported from simulation tools. The analysis features include single-ended and differential plots in frequency or time, as well as eye diagrams and RCLG model extraction.Major tool advancements:Many usability features have been incorporated into PLTS 2014, but there are two new capabilities that are considered breakthrough for the technical industry. The first is multi-channel simulation and the other is 1-port automatic fixture removal(AFR). Together they create a time saving tool that helps the experienced user accomplish more advanced analysis of the physical layer channel. The multi-channel simulation capability allows the user to quickly measure a channel, remove any fixtures and then simulate the measured channelsΓÇÖ performance. The newly added capability to use vendor supplied IBIS-AMI models for TX and RX creates real-world simulation results.Built-in TX sources can be customized to match a specified signal. Users can specify data rates, lengths and voltages and then add noise, jitter, and re-emphasis. The built-in customizable RX allows the user to select from the common CTLE, FFE, and DFE equalizers. Multiple sources can be added to simulate aggressor cross talk for multi-channel simulations. The resulting waveforms can be displayed in multi-color eye diagrams with histograms for common eye measurements.The 1-port automatic fixture removal tool is a breakthrough extension of the 2X THRU AFR that saves the user from designing and fabricating special calibration structures on PCBs. Now, the test fixture itself can be used as the ΓÇ£1X THRUΓÇ¥ structure with an open circuit on port 2. This is extremely helpful when working with FPGA applications where it is nearly impossible to create a normal 2X THRU structure. Furthermore, the accuracy can be enhanced by using additional calibration structures together such as an open, short and/or THRU. This error correction flexibility gives the signal integrity engineer more control over accuracy versus ease-of-use decisions that need to be made for leading edge applications. |
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