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Hardware design
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[[File:PPSU-PPSUv2.png|center|thumb|644x644px]]
 
PPSUv3 mode is an optimization of PPSUv2 mode. As depicted in the following image, in this case the PPSU board is connected to an embedded platform equipped with an FMC connector. For instance, [[BoraXEVB|BoraX/BoraXEVB]] system can be a viable system for this purpose. The advantage of using this approach is the fact that the system is much more compact. Also, it allows to implement advanced functionalities for controlling the DUT. For example, the analog inputs of Xilinx Zynq 7000 SoC can be used to measure some DUT's signals during the power cycles allowing to analyze in more detail its health status while testing progresses.
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PPSUv3 mode is an optimization of PPSUv2 mode. As depicted in the following image, in this case, the PPSU board is connected to an embedded platform equipped with an FMC connector. For instance, [[BoraXEVB|BoraX/BoraXEVB]] system can be viable for this purpose. The advantage of using this approach is the fact that the system is much more compact. Also, it allows the implementation of advanced functionalities for controlling the DUT. For example, the analog inputs of Xilinx Zynq 7000 SoC can be used to measure some DUT's signals during the power cycles for analyzing in more detail its health status while testing progresses.<br><br>
[[File:PPSU-PPSUv3.png|center|thumb|404x404px]]
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== Examples ==
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