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A vision chip with complementary pathways for open-world sensing

Image sensors face substantial challenges when dealing with dynamic, diverse and unpredictable scenes in open-world applications. However, the development of image sensors towards high speed, high resolution, large dynamic range and high precision is limited by power and bandwidth. Here we present a complementary sensing paradigm inspired by the human visual system that involves parsing visual information into primitive-based representations and assembling these primitives to form two complementary vision pathways: a cognition-oriented pathway for accurate cognition and an action-oriented pathway for rapid response. To realize this paradigm, a vision chip called Tianmouc is developed, incorporating a hybrid pixel array and a parallel-and-heterogeneous readout architecture. Leveraging the characteristics of the complementary vision pathway, Tianmouc achieves high-speed sensing of up to 10,000 fps, a dynamic range of 130 dB and an advanced figure of merit in terms of spatial ....

Optik Photonik , International Conference On Computer Visionand Pattern Recognition , International Conference Proc , International Image Sensor Workshop , International Solid , International Conference On Computer Vision , Electron Devices , High Performance Silicon Imaging , Integrated Imaging , Vision Techniques , Industrial Inspection , Signal Processing , Digital Still Cameras , Computer Visionand Pattern Recognition , Computer Vision , Pattern Recognition , Vehicles Symposium , Def Con , Dataset Shift , Machine Learning , Mit Press , Stereoscopic Vision , Solid State Circuits Conference , Integrated Circuits Conference , State Circuits , Solid State Circuits ,

About CEDA | IEEE CEDA

About CEDA | IEEE CEDA
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Member Technology Organizations , Council On Electronic Design Automation , Technical Council , Electronics Packaging , Electronic Design , Electronic Design Automation , Electron Devices , Microwave Theory , Solid State Circuits ,

Phase-change memory via a phase-changeable self-confined nano-filament

Phase-change memory (PCM) has been considered a promising candidate for solving von Neumann bottlenecks owing to its low latency, non-volatile memory property and high integration density1,2. However, PCMs usually require a large current for the reset process by melting the phase-change material into an amorphous phase, which deteriorates the energy efficiency2–5. Various studies have been conducted to reduce the operation current by minimizing the device dimensions, but this increases the fabrication cost while the reduction of the reset current is limited6,7. Here we show a device for reducing the reset current of a PCM by forming a phase-changeable SiTex nano-filament. Without sacrificing the fabrication cost, the developed nano-filament PCM achieves an ultra-low reset current (approximately 10 μA), which is about one to two orders of magnitude smaller than that of highly scaled conventional PCMs. The device maintains favourable memory characteristics such ....

New York , United States , Nano Lett , Pd Properties , Applications Springer International Publishing , International Electron Devices Meeting , Electron Devices Meeting , Compute Express , Electron Dev , Device Lett , Alloys Compd , Sb Rich Gesbte , Electron Devices , Solid State Chem , Solid Films , Change Memory , Device Physics , Springer International Publishing , Change Materials , Springer New York , Nano Mater ,