Wireless Power Transfer by Self-biased Magnetoelectric Laminate for Biomedical Implants

被引:4
|
作者
Saha, Orpita [1 ]
Andersen, Erik [2 ]
Roundy, Shad [2 ]
机构
[1] Univ Utah, Elect & Comp Engn, Salt Lake City, UT 84112 USA
[2] Univ Utah, Mech Engn, Salt Lake City, UT USA
关键词
Magnetoelectric; magnetization; self-biased; power; magnetization grading;
D O I
10.1109/PowerMEMS54003.2021.9658356
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Magnetoelectric (ME) wireless power transfer (WPT) is becoming an important topic in the field of biomedical implants. Implantable ME WPT receivers have potential safety, size, and convenience advantages over alternative methods (i.e. inductive, far-field RF, and acoustic). However, for optimal performance, ME devices need some method to apply a DC bias magnetic field. To overcome the DC bias problem, this paper investigates self-biased ME laminates using the magnetization grading approach. We experimentally characterize the voltage and power performance of multi-layer self-biased ME laminates as a function of pre-magnetizing field. We demonstrate devices made of Metglas, Ni, and PZT of 0.05 cm(3) in size that can generate similar to 250 mu W from an applied 130 mu T AC field with no DC field bias. This size, power, and AC magnetic field combination makes these laminates attractive for powering biomedical implants.
引用
收藏
页码:36 / 39
页数:4
相关论文
共 50 条
  • [31] Design and Optimization of Capacitive Links for Wireless Power Transfer to Biomedical Implants
    Hossain, A. N. M. Shahriyar
    Mohseni, Pedram
    Lavasani, Hossein Miri
    IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, 2022, 16 (06) : 1299 - 1312
  • [32] Wireless Power Transfer System Design for Biomedical Implants at 2.45 GHz
    Shaw, Tarakeswar
    Mitra, Debasis
    PROCEEDINGS OF THE 2019 IEEE ASIA-PACIFIC MICROWAVE CONFERENCE (APMC), 2019, : 717 - 719
  • [33] A Design Of Wideband Midfield Transmitter for Wireless Power Transfer To Biomedical Implants
    Le-Huu, Hoang
    Seo, Chulhun
    2023 IEEE WIRELESS POWER TECHNOLOGY CONFERENCE AND EXPO, WPTCE, 2023,
  • [34] A Study on Ultrasonic Wireless Power Transfer With Phased Array for Biomedical Implants
    Kashani, Zeinab
    Kiani, Mehdi
    IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, 2023, 17 (04) : 713 - 724
  • [35] Optimal Design of Megahertz Wireless Power Transfer Systems for Biomedical Implants
    Peng, Siyu
    Liu, Ming
    Tang, Zefan
    Ma, Chengbin
    2017 IEEE 26TH INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS (ISIE), 2017, : 805 - 810
  • [36] Biosafety Considerations of a Capacitive Link for Wireless Power Transfer to Biomedical Implants
    Erfani, Reza
    Marefat, Fatemeh
    Mohseni, Pedram
    2018 IEEE BIOMEDICAL CIRCUITS AND SYSTEMS CONFERENCE (BIOCAS): ADVANCED SYSTEMS FOR ENHANCING HUMAN HEALTH, 2018, : 355 - 358
  • [37] Modeling and Design of Wireless Data Telemetry and Power Transfer for Biomedical Implants
    Agarwal, Kush
    Jegadeesan, Rangarajan
    Guo, Yong-Xin
    Thakor, Nitish V.
    2015 IEEE INTERNATIONAL CONFERENCE ON COMPUTATIONAL ELECTROMAGNETICS (ICCEM), 2015, : 64 - 66
  • [38] Midfield Wireless Power Transfer for Deep-Tissue Biomedical Implants
    Nguyen, Ngan
    Ha-Van, Nam
    Seo, Chulhun
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2020, 19 (12): : 2270 - 2274
  • [39] Dual-peak self-biased magnetoelectric couplings in symmetrical multiferroic heterostructures
    Zhang, J.
    Wang, X.
    Yang, Q.
    Zheng, X.
    Cao, L.
    2015 IEEE MAGNETICS CONFERENCE (INTERMAG), 2015,
  • [40] Near-flat self-biased magnetoelectric response in geometry gradient composite
    Zhou, Yuan
    Priya, Shashank
    JOURNAL OF APPLIED PHYSICS, 2014, 115 (10)