![quickboot app quickboot app](https://dlmod.com/wp-content/uploads/2013/10/quick_boot_2.jpg)
Minimal remote update payload size approximately the size of a standard bitstream HDL-based flash programmer reference design See QuickBoot Reference Design Implementation Guide, page 14 to start implementing the QuickBoot reference design in an FPGA.įeatures Key features of the QuickBoot method include: Support for all 7 series FPGAs See KC705 Board Demonstrations, page 33 to run the QuickBoot demonstrations on the KC705 evaluation board.
QUICKBOOT APP SERIAL
This application note presents detailed descriptions of the QuickBoot method that are important for evaluating the QuickBoot solution and debugging implementation problems.ĭemonstration implementations of the QuickBoot method are provided for the KC705 evaluation board using the serial peripheral interface (SPI) flash or byte-wide peripheral interface (BPI) flash.
![quickboot app quickboot app](https://i1.rgstatic.net/publication/340615353_Quick_Boot_of_Trusted_Execution_Environment_With_Hardware_Accelerators/links/5e95182392851c2f529f3932/largepreview.png)
Introduction Figure 1 shows the architecture of a system with remote FPGA update capability. Together, the solution is referred to as the QuickBoot method. This application note provides a solution that enables a reliable field update through a complementary combination of a fast, robust configuration method and an efficient HDL-based, in-system programming reference design. This feature enables deployed systems to be updated with design patches or enhanced functionality. Summary A primary advantage of an All Programmable FPGA is its remote update capability.
![quickboot app quickboot app](https://www.thewindowsclub.com/wp-content/uploads/2015/07/quickstartup-1.jpg)
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