The Experts below are selected from a list of 15177 Experts worldwide ranked by ideXlab platform

E.g. Friedman - One of the best experts on this subject based on the ideXlab platform.

  • CMOS voltage Interface Circuit for low power systems
    2002 IEEE International Symposium on Circuits and Systems. Proceedings (Cat. No.02CH37353), 2002
    Co-Authors: V. Kursun, R.m. Secareanu, E.g. Friedman
    Abstract:

    A bi-directional CMOS voltage Interface Circuit is proposed for applications that require signal transfer between two Circuits operating at different voltage levels. The Circuit can also be used as a level converter at the driver and receiver ends of long interconnect lines for low swing applications. The operation of the voltage Interface Circuit is verified by both simulation and experimental test Circuits. The proposed voltage Interface Circuit operates at high speed while offering significant power savings of up to 95% as compared to existing schemes.

  • ISCAS (1) - A universal CMOS voltage Interface Circuit
    ISCAS'99. Proceedings of the 1999 IEEE International Symposium on Circuits and Systems VLSI (Cat. No.99CH36349), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, Juan J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

  • A universal CMOS voltage Interface Circuit
    1999 IEEE International Symposium on Circuits and Systems (ISCAS), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

R.m. Secareanu - One of the best experts on this subject based on the ideXlab platform.

  • CMOS voltage Interface Circuit for low power systems
    2002 IEEE International Symposium on Circuits and Systems. Proceedings (Cat. No.02CH37353), 2002
    Co-Authors: V. Kursun, R.m. Secareanu, E.g. Friedman
    Abstract:

    A bi-directional CMOS voltage Interface Circuit is proposed for applications that require signal transfer between two Circuits operating at different voltage levels. The Circuit can also be used as a level converter at the driver and receiver ends of long interconnect lines for low swing applications. The operation of the voltage Interface Circuit is verified by both simulation and experimental test Circuits. The proposed voltage Interface Circuit operates at high speed while offering significant power savings of up to 95% as compared to existing schemes.

  • ISCAS (1) - A universal CMOS voltage Interface Circuit
    ISCAS'99. Proceedings of the 1999 IEEE International Symposium on Circuits and Systems VLSI (Cat. No.99CH36349), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, Juan J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

  • A universal CMOS voltage Interface Circuit
    1999 IEEE International Symposium on Circuits and Systems (ISCAS), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

S. Warner - One of the best experts on this subject based on the ideXlab platform.

  • ISCAS (1) - A universal CMOS voltage Interface Circuit
    ISCAS'99. Proceedings of the 1999 IEEE International Symposium on Circuits and Systems VLSI (Cat. No.99CH36349), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, Juan J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

  • A universal CMOS voltage Interface Circuit
    1999 IEEE International Symposium on Circuits and Systems (ISCAS), 1999
    Co-Authors: R.m. Secareanu, E.g. Friedman, J. Becerra, S. Warner
    Abstract:

    A CMOS Interface Circuit to transfer a digital signal between two Circuits of different supply voltages is described. The Interface can be used, for example, between 3 volt and 5 volt or higher voltage families. The principal characteristics of the Interface Circuit are: no static power dissipation, high speed, and high speed buffering.

G Venchi - One of the best experts on this subject based on the ideXlab platform.

  • an Interface Circuit for low voltage low current energy harvesting systems
    IEEE Transactions on Power Electronics, 2015
    Co-Authors: E Dallago, Alessandro Lazzarini Barnabei, Alessandro Liberale, P Malcovati, G Venchi
    Abstract:

    In this paper, we present an Interface Circuit designed to match low-power and low-voltage harvesters to generic electronic loads. The Interface Circuit consists of a power management unit, a supply regulation unit, and an energy storage module. The electric power delivered by the harvester is stored in a low leakage capacitor, converted to match the load electrical characteristics, and used cyclically to supply the load during fixed time-windows. The Interface Circuit is compatible with dc harvesters with a current of at least 2 μA at 0.5 V and exhibits an efficiency of 65% in the 1 μW -1 mW range. The supply regulation unit is a two-stage, self-starting boost Circuit that steps-up the 0.5-V input voltage to 3 V. To test the Interface Circuit, an autonomous wireless sensor node has been realized; it exploits the little electric power delivered by a 385 μm × 245 μm photovoltaic harvester to sense and transmit information about the environment wirelessly. The harvester is implemented with a custom 0.35-μm BCD SOI chip. The system has been designed to be low cost, fully autonomous and smaller of 9 cm 3 .

  • Multi-cycle 0.35-µm CMOS integrated electronic Interface Circuit for energy harvesting systems
    SENSORS 2011 IEEE, 2011
    Co-Authors: E Dallago, P Malcovati, A. Danioni, M. Grassi, M. Marchesi, G Venchi
    Abstract:

    This paper presents a self-powered active electronic Interface Circuit for energy harvesting system based on an electromagnetic vibration transducer. The Interface Circuit has been designed to transfer the harvested energy to a storage capacitor. The Circuit is a multi-cycle inductive step up AC/DC converter able to process every voltage pulse coming from the transducer; furthermore, it is supplied by the harvested energy, making the system fully autonomous. The Interface Circuit has been designed in 0.35μm, 3.3V-5V CMOS process with high voltage (50V) capability. Experimental results obtained from the whole system are reported.

V. Kursun - One of the best experts on this subject based on the ideXlab platform.

  • CMOS voltage Interface Circuit for low power systems
    2002 IEEE International Symposium on Circuits and Systems. Proceedings (Cat. No.02CH37353), 2002
    Co-Authors: V. Kursun, R.m. Secareanu, E.g. Friedman
    Abstract:

    A bi-directional CMOS voltage Interface Circuit is proposed for applications that require signal transfer between two Circuits operating at different voltage levels. The Circuit can also be used as a level converter at the driver and receiver ends of long interconnect lines for low swing applications. The operation of the voltage Interface Circuit is verified by both simulation and experimental test Circuits. The proposed voltage Interface Circuit operates at high speed while offering significant power savings of up to 95% as compared to existing schemes.