While there are many ways to connect components in embedded systems, the most prominent are the high speed serial standards of Ethernet, PCI Express, and RapidIO. All of these standards leverage ...
PCI Express (PCIe) is the next-generation peripheral bus for industrial computing. It provides a scaleable, high-bandwidth, point-to-point pathway between peripheral cards and the computing core while ...
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Your PC's unused PCIe slot beats M.2 for expansion — and it's not even close
PCIe slots offer greater bandwidth, power delivery, and versatility ...
Why the need for PCI Express? As processor clock speeds increase, parallel buses such as PCI become harder to implement. Signal skew and fan-out restrictions restrict the bandwidth achievable on a ...
For memory-intensive and high-performance computing, direct memory access (DMA) is indispensable. A typical DMA operation in PCI Express (PCIe) entails the transfer of data from the system memory to ...
With the increasing number of surveillance cameras deployed around the world that are monitored via computer, transmitted via internet and recorded on hard drives, the trend among system designers is ...
PCI Express is a technology that consistently makes headlines, with new specifications boasting ever-improving performance regularly appearing in the news. It may come as a surprise, then, to learn ...
RapidIO, PCIe, and Ethernet each offer unique benefits. We explain how each technology works, and examine its strengths and weaknesses. We also show why RapidIO is often the best choice for embedded ...
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