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T R Shrout - One of the best experts on this subject based on the ideXlab platform.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, J G Bai, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

Shuxiang Dong - One of the best experts on this subject based on the ideXlab platform.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, J G Bai, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

Shujun Zhang - One of the best experts on this subject based on the ideXlab platform.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, J G Bai, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

Jiefang Li - One of the best experts on this subject based on the ideXlab platform.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, J G Bai, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

Guoquan Lu - One of the best experts on this subject based on the ideXlab platform.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, J G Bai, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.

  • circumferential mode quasi ring type magnetoelectric laminate composite a highly sensitive electric current and or vortex magnetic Field sensor
    Applied Physics Letters, 2005
    Co-Authors: Shuxiang Dong, Junyi Zhai, Jiefang Li, Guoquan Lu, D Viehland, Shujun Zhang, T R Shrout
    Abstract:

    A quasi-ring-type magnetoelectric (ME) laminate composite consisting of a circumferentially poled piezoelectric Pb(Zn1∕3Nb2∕3O)3‐4.5at.%PbTiO3single-crystal ring and two circumferentially magnetized magnetostrictive TERFENOL-D rings was fabricated and found to have a giant ME voltage Coefficient of 2.2V∕Oe, or equivalently a ME Field Coefficient of 5.5V∕cmOe, over the frequency range of 0.5Field as small as 6×10−12Tesla. In addition, we demonstrated current sensing capability of the quasiring laminate in a power electronics module.