Constructing secure peer data connectivity for mobile systems

Christopher R. Whittington, Edward Cady, Daniel Ratchen, Yunus Dawji · 2018

Exponential growth of data created and stored in smartphones and mobile systems will continue to strain data connectivity technologies beyond the next ten years. Notwithstanding access from universal internet connectivity, ubiquitous wireless data technologies cannot support the exchange of large amounts of data between smaller systems. A universal data platform is therefore required to deliver fast, secure and private data exchange across a growing number of smartphones, mobile systems as well as traditional computing platforms. A novel Push-Pull data network architecture is hereto presented, employing multiple bridged peripheral links to create an ultra-fast, ultra-secure, private and low power data network to connect nearly any system. Bridging standard USB 3.0 technologies, we demonstrate a universally secure, ultra-low power and scalable switchable data platform offering the highest level of data privacy, security and performance. Delivering up to 12 times the throughput speeds of existing USB 3.0 data transfer cables without using USB-on-the-Go, the presented solution builds on the reliability of universal peripheral communications links using proven ports, protocols and low-power components. Providing “Software Constructed” ad-hoc circuit network, the presented digital architecture delivers frictionless adoption and exceptional price-performance measures connecting systems of all sizes in a peer arrangement.

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