Microwave quantum illumination using a digital receiver


Abstract "Quantum illumination is a powerful sensing technique that employs entangled signal-idler photon pairs to boost the detection efficiency of low-reflectivity objects in environments with bright thermal noise. The promised advantage over classical strategies is particularly evident at low signal powers, a feature which could make the protocol an ideal prototype for non-invasive biomed... » read more

Plasticine: A Reconfigurable Architecture For Parallel Patterns (Stanford)


Source: Stanford University Stanford University has been developing Plasticine, which allows parallel patterns to be reconfigured. "ABSTRACT Reconfigurable architectures have gained popularity in recent years as they allow the design of energy-efficient accelerators. Fine-grain fabrics (e.g. FPGAs) have traditionally suffered from performance and power inefficiencies due to bit-level ... » read more

A Ferroelectric Semiconductor Field-Effect Transistor


Abstract: "Ferroelectric field-effect transistors employ a ferroelectric material as a gate insulator, the polarization state of which can be detected using the channel conductance of the device. As a result, the devices are potentially of use in non-volatile memory technology, but they suffer from short retention times, which limits their wider application. Here, we report a ferroelectric sem... » read more

Understanding the Interactions of Workloads and DRAM Types: A Comprehensive Experimental Study


Abstract "It has become increasingly difficult to understand the complex interaction between modern applications and main memory, composed of DRAM chips. Manufacturers are now selling and proposing many different types of DRAM, with each DRAM type catering to different needs (e.g., high throughput, low power, high memory density). At the same time, the memory access patterns of prevalent and... » read more

Checkmate: Breaking The Memory Wall With Optimal Tensor Rematerialization


Source: Published on arXiv 10/7/ 2019   Paras Jain Ajay Jain Aniruddha Nrusimha Amir Gholami Pieter Abbeel Kurt Keutzer Ion Stoica Joseph E. Gonzalez A recent paper published on arXiv by a team of UC Berkeley researchers notes that neural networks are increasingly impeded by the limited capacity of on-device GPU memory. The UC Berkeley team uses off-the-shel... » read more

Design Comparison of SiC MOSFETs for Linear-Mode Operation


Source: US Army Research Lab Authors: Heather O'Brien, Damian Urciuoli, Aderinto Ogunniyi, Brett Hull August 2019 "Abstract: Silicon carbide metal-oxide semiconductor field-effect transistors (MOSFETs) were designed and fabricated for linear-mode applications. The MOSFETs have a chip area of 3.3 ? 3.3 mm and a voltage-blocking rating up to 1200 V. The device design parameters, such as chan... » read more

Investigation and Methods Using Various Release and Thermoplastic Bonding Materials to Reduce Die Shift and Wafer Warpage for eWLB Chip-First Processes


Today's fan-out wafer-level packaging (FOWLP) processes use organic substrates composed of epoxy mold compound (EMC) created using a thermal compression process. EMC wafers are a cost-effective way to achieve lower profile packages without using an inorganic substrate to produce chip packages that are thinner and faster without the need for interposers or through-silicon-vias (TSVs). One approa... » read more

Enabling Practical Processing in and near Memory for Data-Intensive Computing


Source: ETH Zurich and Carnegie Mellon University Talk at DAC 2019. Technical Paper link » read more

Copy-Row DRAM (CROW) : Substrate for Improving DRAM


Source/Credit: ETH Zurich & Carnegie Mellon University Click here for the technical paper and here for the power point slides » read more

U.S. Senate Report On The Equifax Breach


Source: U.S. Senate, Permanent Subcommittee On Investigations Committee on Homeland Security and Governmental Affairs Here's the link to the U.S. Senate report on the Equifax breach » read more

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