Conferences related to Smart pixels

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2020 IEEE International Solid- State Circuits Conference - (ISSCC)

ISSCC is the foremost global forum for solid-state circuits and systems-on-a-chip. The Conference offers 5 days of technical papers and educational events related to integrated circuits, including analog, digital, data converters, memory, RF, communications, imagers, medical and MEMS ICs.


2020 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC)

All areas of ionizing radiation detection - detectors, signal processing, analysis of results, PET development, PET results, medical imaging using ionizing radiation


ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP)

The ICASSP meeting is the world's largest and most comprehensive technical conference focused on signal processing and its applications. The conference will feature world-class speakers, tutorials, exhibits, and over 50 lecture and poster sessions.


IGARSS 2020 - 2020 IEEE International Geoscience and Remote Sensing Symposium

All fields of satellite, airborne and ground remote sensing.


2019 20th International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII (TRANSDUCERS & EUROSENSORS XXXIII)

The world's premiere conference in MEMS sensors, actuators and integrated micro and nano systems welcomes you to attend this four-day event showcasing major technological, scientific and commercial breakthroughs in mechanical, optical, chemical and biological devices and systems using micro and nanotechnology.The major areas of activity in the development of Transducers solicited and expected at this conference include but are not limited to: Bio, Medical, Chemical, and Micro Total Analysis Systems Fabrication and Packaging Mechanical and Physical Sensors Materials and Characterization Design, Simulation and Theory Actuators Optical MEMS RF MEMS Nanotechnology Energy and Power


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Periodicals related to Smart pixels

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Advanced Packaging, IEEE Transactions on

The IEEE Transactions on Advanced Packaging has its focus on the modeling, design, and analysis of advanced electronic, photonic, sensors, and MEMS packaging.


Broadcasting, IEEE Transactions on

Broadcast technology, including devices, equipment, techniques, and systems related to broadcast technology, including the production, distribution, transmission, and propagation aspects.


Circuits and Systems for Video Technology, IEEE Transactions on

Video A/D and D/A, display technology, image analysis and processing, video signal characterization and representation, video compression techniques and signal processing, multidimensional filters and transforms, analog video signal processing, neural networks for video applications, nonlinear video signal processing, video storage and retrieval, computer vision, packet video, high-speed real-time circuits, VLSI architecture and implementation for video technology, multiprocessor systems--hardware and software-- ...


Circuits and Systems I: Regular Papers, IEEE Transactions on

Part I will now contain regular papers focusing on all matters related to fundamental theory, applications, analog and digital signal processing. Part II will report on the latest significant results across all of these topic areas.


Computer

Computer, the flagship publication of the IEEE Computer Society, publishes peer-reviewed technical content that covers all aspects of computer science, computer engineering, technology, and applications. Computer is a resource that practitioners, researchers, and managers can rely on to provide timely information about current research developments, trends, best practices, and changes in the profession.


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Most published Xplore authors for Smart pixels

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Xplore Articles related to Smart pixels

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Smart Pixels

Summer Topical Meeting Digest on Broadband Analog and Digital Optoelectronics, Optical Multiple Access Networks, Integrated Optoelectronics, Smart Pixels, 1992

None


Optical, optomechanical, and optoelectronic design and operational testing of a multi-stage optical backplane demonstration system

Proceedings of Massively Parallel Processing Using Optical Interconnections, 1996

In this paper, we describe the optical, optomechanical, and optoelectronic design of a multistage optical backplane demonstration system. In addition, operational testing and performance is discussed.


A Simple, Two Stage, Two Dimensional Optoelectronic Processor/interconnection Using Smart Pixels

Summer Topical Meeting Digest on Broadband Analog and Digital Optoelectronics, Optical Multiple Access Networks, Integrated Optoelectronics, Smart Pixels, 1992

None


Ultralow threshold current lasers

Summaries of papers presented at the Conference on Lasers and Electro-Optics, 1996

Summary form only given. Ultralow threshold current vertical-cavity surface- emitting lasers (VCSELs) will enable practical laser-based smart pixels. Such devices have emerged through the application of monolithically integrated native oxides of AlGaAs as current constriction and mode control layers and as high-contrast Bragg reflectors. In this paper we will demonstrate and analyze the role of the oxide in current constriction ...


Smart pixel algorithmic tradeoffs for the Sliding Banyan network

Digest IEEE/Leos 1996 Summer Topical Meeting. Advanced Applications of Lasers in Materials and Processing, 1996

A telecommunications network modeling tool is used to evaluate smart pixel algorithmic tradeoffs for the Sliding Banyan self routing packet switching architecture. The results provide a basis for VLSI design options.


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Educational Resources on Smart pixels

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IEEE-USA E-Books

  • Smart Pixels

    None

  • Optical, optomechanical, and optoelectronic design and operational testing of a multi-stage optical backplane demonstration system

    In this paper, we describe the optical, optomechanical, and optoelectronic design of a multistage optical backplane demonstration system. In addition, operational testing and performance is discussed.

  • A Simple, Two Stage, Two Dimensional Optoelectronic Processor/interconnection Using Smart Pixels

    None

  • Ultralow threshold current lasers

    Summary form only given. Ultralow threshold current vertical-cavity surface- emitting lasers (VCSELs) will enable practical laser-based smart pixels. Such devices have emerged through the application of monolithically integrated native oxides of AlGaAs as current constriction and mode control layers and as high-contrast Bragg reflectors. In this paper we will demonstrate and analyze the role of the oxide in current constriction and optical field control to predict the scaling of VCSELs to microamp thresholds. In addition, we will demonstrate and analyze the impact of high-contrast AlAs oxide/GaAs Bragg mirrors formed by selective oxidation on the performance of VCSELs and study the tradeoffs in device characteristics that arise from use of electrically insulating mirrors.

  • Smart pixel algorithmic tradeoffs for the Sliding Banyan network

    A telecommunications network modeling tool is used to evaluate smart pixel algorithmic tradeoffs for the Sliding Banyan self routing packet switching architecture. The results provide a basis for VLSI design options.

  • A Smart Pixel Design For A Dynamic Free-space Optical Backplane

    None

  • Smart CMOS image sensor arrays

    In this paper, we present several smart image sensor arrays intended for various applications. We discuss the realization of image sensors in CMOS technology and show some examples of one-dimensional (1-D) and two-dimensional (2-D) smart image arrays.

  • Optoelectronic CMOS-SEED smart pixels

    We have made optoelectronic smart pixels using a hybrid integration of GaAs/AlGaAs multiple quantum well (MQW) self- electro-optic effect device (SEED) arrays flip-chip bonded directly on the top of a 1 /spl mu/m silicon CMOS circuits. This enables optoelectronic integrated circuits (OEIC) to be achieved and also the design and optimization of the CMOS circuits and the GaAs/AlGaAs multiple quantum well devices to proceed independently.

  • Real-time tomographic imaging without x-rays: a smart pixel array with massively parallel signal processing for real-time optical coherence tomography performing close to the physical limits

    None

  • A fully-connected, distributed mesh feedback architecture for photonic A/D conversion

    We report a new approach to photonic ADC using a distributed neural network oversampling techniques, and a smart pixel hardware implementation. In this approach, the input signal is first sampled at a rate higher than that required by the Nyquist criterion and then presented spatially as the input to a two-dimensional error diffusion neural network consisting of M/spl times/N neurons, each representing a pixel in the image space. The neural network processes the input oversampled analog image and produces an M/spl times/N pixel binary or halftoned output image. By design of the neural network, this halftoned output image is an optimum representation of the input analog signal. Upon convergence, the neural network minimizes an energy function representing the frequency-weighted squared error between the input analog image and the output halftoned image. Decimation and low-pass filtering techniques digitally sum and average the M/spl times/N pixel output binary image using high-speed digital electronic circuitry. By employing a two- dimensional smart pixel neural approach to oversampling ADC, each pixel constitutes a simple oversampling modulator thereby producing a distributed A/D architecture. Spectral noise shaping across the array diffuses quantization error thereby improving overall SNR performance. Each quantizer within the network is embedded in a fully-connected distributed mesh feedback loop which spectrally shapes the overall quantization noise thereby significantly reducing the effects of component mismatch typically associated with parallel or channelized A/D approaches.



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