The Experts below are selected from a list of 324 Experts worldwide ranked by ideXlab platform

A Agrawal - One of the best experts on this subject based on the ideXlab platform.

  • modeling of power ground plane noise in high speed Digital Electronics packaging
    Electrical Performance of Electronic Packaging, 1993
    Co-Authors: Jiayuan Fang, Yuzhe Chen, Zhonghua Wu, A Agrawal
    Abstract:

    A new model for the simulation of power/ground plane noise which is simple in principle, accurate in its solutions, and applicable to various levels of high-speed Digital Electronics packaging, is given. It is found that one can obtain accurate modeling of delta-I noise in power and ground planes without resorting to full-wave electromagnetic modeling. Sample results of the simulated delta-I noise with the method are shown. >

  • Modeling of power/ground plane noise in high speed Digital Electronics packaging
    Proceedings of IEEE Electrical Performance of Electronic Packaging, 1993
    Co-Authors: Jiayuan Fang, Yuzhe Chen, Zhonghua Wu, A Agrawal
    Abstract:

    A new model for the simulation of power/ground plane noise which is simple in principle, accurate in its solutions, and applicable to various levels of high-speed Digital Electronics packaging, is given. It is found that one can obtain accurate modeling of delta-I noise in power and ground planes without resorting to full-wave electromagnetic modeling. Sample results of the simulated delta-I noise with the method are shown. >

Gwan Choi - One of the best experts on this subject based on the ideXlab platform.

  • a design approach for radiation hard Digital Electronics
    Design Automation Conference, 2006
    Co-Authors: Rajesh Garg, Nikhil Jayakumar, Sunil P Khatri, Gwan Choi
    Abstract:

    In this paper, we present a novel circuit design approach for radiation hardened Digital Electronics. Our approach is based on the use of shadow gates, whose task it is to protect the primary gate in case it is struck by a heavy cosmic ion. We locally duplicate the gate to be protected, and connect a pair of transistors (or diodes) between the outputs of the original and shadow gates. These transistors turn on when the voltages of the two gates deviate during a radiation strike. Our experiments show that at the level of a single gate, our circuit structure has a delay overhead of about 4% on average, and an area overhead of over 100%. At the circuit level, however, we do not need to protect all gates. We present a methodology to selectively protect specific gates of the circuit in a manner that guarantees radiation tolerance for the entire circuit. With this methodology, we demonstrate that at the circuit level, the delay overhead is about 4% and the placed-and-routed area overhead is 30%, compared to an unprotected circuit (for delay mapped designs).

C Branas - One of the best experts on this subject based on the ideXlab platform.

  • course on Digital Electronics oriented to describing systems in vhdl
    IEEE Transactions on Industrial Electronics, 2010
    Co-Authors: F J Azcondo, Angel De Castro, C Branas
    Abstract:

    A new orientation for a multidisciplinary industrial engineering program course on Digital Electronics is proposed. Students are trained to describe complete systems in very high speed integrated circuit hardware description language (VHDL). These systems have been previously modeled with Matlab/Simulink, including both continuous and discrete components. Digital controllers based on concurrent hardware are designed for these systems in the same framework. After developing and simulating the behavioral model of the system or plant, the controller is redescribed under the synthesis constraints and implemented in a field-programmable gate array evaluation board for verification, along with the system under control. In this way, the course is not only intended for Digital Electronics specialists but also for students with diverse engineering backgrounds.

Jiayuan Fang - One of the best experts on this subject based on the ideXlab platform.

  • modeling of power ground plane noise in high speed Digital Electronics packaging
    Electrical Performance of Electronic Packaging, 1993
    Co-Authors: Jiayuan Fang, Yuzhe Chen, Zhonghua Wu, A Agrawal
    Abstract:

    A new model for the simulation of power/ground plane noise which is simple in principle, accurate in its solutions, and applicable to various levels of high-speed Digital Electronics packaging, is given. It is found that one can obtain accurate modeling of delta-I noise in power and ground planes without resorting to full-wave electromagnetic modeling. Sample results of the simulated delta-I noise with the method are shown. >

  • Modeling of power/ground plane noise in high speed Digital Electronics packaging
    Proceedings of IEEE Electrical Performance of Electronic Packaging, 1993
    Co-Authors: Jiayuan Fang, Yuzhe Chen, Zhonghua Wu, A Agrawal
    Abstract:

    A new model for the simulation of power/ground plane noise which is simple in principle, accurate in its solutions, and applicable to various levels of high-speed Digital Electronics packaging, is given. It is found that one can obtain accurate modeling of delta-I noise in power and ground planes without resorting to full-wave electromagnetic modeling. Sample results of the simulated delta-I noise with the method are shown. >

Sandra Maurer - One of the best experts on this subject based on the ideXlab platform.

  • Digital Electronics With Vhdl Quartus Ii Version
    2020
    Co-Authors: Sandra Maurer
    Abstract:

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