A Triboelectric Nanogenerator Interface Circuit for Applied Force Sensing

被引:0
|
作者
Haghshenas, Hosein [1 ]
Salman, Emre [1 ]
Willing, Ryan [3 ]
Towfighian, Shahrzad [2 ]
Stanacevic, Milutin [1 ]
机构
[1] SUNY Stony Brook, Dept Elect & Comp Engn, Stony Brook, NY 11794 USA
[2] SUNY Binghamton, Dept Chem, Binghamton, NY 13902 USA
[3] Western Univ, Dept Mech & Mat Engn, London, ON, Canada
关键词
D O I
10.1109/MWSCAS60917.2024.10658808
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We propose a peak detection and frequency measurement circuit for integration at interface with a triboelectric nanogenerator (TENG). By measuring the frequency and the peak voltage at the output of TENG, the applied force is predicted. We propose a sample and hold peak detector circuit with a reset signal for continues peak detection. The control logic also generates a trigger signal for analog to digital conversion of the peak voltage to the digital domain. At the same time, the frequency is recorded by counting the number of peaks in a defined time period. The circuit simulations in 180 nm CMOS technology demonstrate peak conversion with 8-bit resolution in a 1 V voltage range with 500 nW power consumption. The proposed design is amenable for integration in a self-powered load sensing system in smart knee implant after total knee replacement(TKR) surgery.
引用
收藏
页码:428 / 432
页数:5
相关论文
共 50 条
  • [41] From Triboelectric Nanogenerator to Multifunctional Triboelectric Sensors: A Chemical Perspective toward the Interface Optimization and Device Integration
    Xiang, Huijing
    Zeng, Yuanming
    Huang, Xiaomin
    Wang, Ning
    Cao, Xia
    Wang, Zhong Lin
    SMALL, 2022, 18 (43)
  • [42] A Wireless Triboelectric Nanogenerator
    Mallineni, Sai Sunil Kumar
    Dong, Yongchang
    Behlow, Herbert
    Rao, Apparao M.
    Podila, Ramakrishna
    ADVANCED ENERGY MATERIALS, 2018, 8 (10)
  • [43] Starch Paper-Based Triboelectric Nanogenerator for Human Perspiration Sensing
    Zhu, Zhiyuan
    Xia, Kequan
    Xu, Zhiwei
    Lou, Haijun
    Zhang, Hongze
    NANOSCALE RESEARCH LETTERS, 2018, 13
  • [44] Marine monitoring based on triboelectric nanogenerator: Ocean energy harvesting and sensing
    Hao, Yutao
    Li, Xiangmeng
    Chen, Baodong
    Zhu, Zhiyuan
    FRONTIERS IN MARINE SCIENCE, 2022, 9
  • [45] Transparent and stretchable triboelectric nanogenerator for self-powered tactile sensing
    Zhao, Gengrui
    Zhang, Yawen
    Shi, Nan
    Liu, Zhirong
    Zhang, Xiaodi
    Wu, Mengqi
    Pan, Caofeng
    Liu, Hongliang
    Li, Linlin
    Wang, Zhong Lin
    NANO ENERGY, 2019, 59 : 302 - 310
  • [46] Advances in self-powered chemical sensing via a triboelectric nanogenerator
    Huang, Congxi
    Chen, Guorui
    Nashalian, Ardo
    Chen, Jun
    NANOSCALE, 2021, 13 (04) : 2065 - 2081
  • [47] A paradigm shift toward active resistive sensing driven by triboelectric nanogenerator
    Hong, Jianlong
    Rao, Zhoulyu
    Duan, Shengshun
    Xiang, Shengxin
    Wei, Xiao
    Xiao, Yukun
    Chen, Yuqi
    Sheng, Hai
    Xia, Jun
    Lei, Wei
    Yu, Cunjiang
    Shi, Qiongfeng
    Wu, Jun
    NANO ENERGY, 2024, 131
  • [48] Starch Paper-Based Triboelectric Nanogenerator for Human Perspiration Sensing
    Zhiyuan Zhu
    Kequan Xia
    Zhiwei Xu
    Haijun Lou
    Hongze Zhang
    Nanoscale Research Letters, 2018, 13
  • [49] A coaxial triboelectric nanogenerator fiber for energy harvesting and sensing under deformation
    Yu, Xinghai
    Pan, Jian
    Zhang, Jing
    Sun, Hao
    He, Sisi
    Qiu, Longbin
    Lou, Huiqing
    Sun, Xuemei
    Peng, Huisheng
    JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (13) : 6032 - 6037
  • [50] Artificial Tactile Sensing System Based on Triboelectric Nanogenerator and Synaptic Transistor
    Liu, Di
    Lian, Qiming
    Liu, Yaqian
    Zhang, Xianghong
    Shan, Liuting
    Chen, Gengxu
    Yang, Qian
    Guo, Tailiang
    Chen, Huipeng
    IEEE ELECTRON DEVICE LETTERS, 2023, 44 (04) : 634 - 637