Micro thermal energy harvester design optimization

被引:0
|
作者
Trioux, E. [1 ,2 ]
Monfray, S. [3 ]
Basrour, S. [1 ,2 ]
机构
[1] Univ Grenoble Alpes, TIMA Lab, F-38031 Grenoble, France
[2] CNRS, TIMA Lab, F-38031 Grenoble, France
[3] STMicroelectronics, Crolles, France
关键词
energy harvesting; piezoelectric device; thermal buckling; THIN-FILMS; STRESS; ALN;
D O I
10.1088/1361-6439/aa7dfe
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper reports the recent progress of a new technology to scavenge thermal energy, implying a double-step transduction through the thermal buckling of a bilayer aluminum nitride/aluminum bridge and piezoelectric transduction. A completely new scavenger design is presented, with improved performance. The butterfly shape reduces the overall device mechanical rigidity, which leads to a decrease in buckling temperatures compared to previously studied rectangular plates. Firstly, an analytical model exposes the basic principle of the presented device. Then a numerical model completes the explanations by introducing a butterfly shaped structure. Finally the fabrication process is briefly described and both the rectangular and butterfly harvesters are characterized. We compare their performances with an equal thickness of Al and AlN. Secondly, with a thicker Al layer than AlN layer, we will characterize only the butterfly structure in terms of output power and buckling temperatures, and compare it to the previous stack.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Design and Optimization of a Multimode Low-Frequency Piezoelectric Energy Harvester
    He, Longfei
    Narita, Fumio
    INTERNATIONAL JOURNAL OF APPLIED MECHANICS, 2022, 14 (04)
  • [32] Design Optimization of CMOS Thermoelectric Energy Harvester for High Thermoelectric Efficiency
    Sil, Indrajit
    Mukherjee, Sagar
    Biswas, Kalyan
    2018 2ND INTERNATIONAL CONFERENCE ON ELECTRONICS, MATERIALS ENGINEERING & NANO-TECHNOLOGY (IEMENTECH), 2018, : 495 - 499
  • [33] Design and Optimization of an Adaptive Non-Linear Piezoelectric Energy Harvester
    Paing, Thurein
    Zane, Regan
    2011 TWENTY-SIXTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC), 2011, : 412 - 418
  • [34] Optimization of Resonator Design for Vibration-based Electromagnetic Energy Harvester
    Seong, Tony Ow Koon
    Salleh, Hanim
    Nurashikin, Anis
    NOISE, VIBRATION AND COMFORT, 2014, 471 : 355 - +
  • [35] Design and optimization of MEMS piezoelectric energy harvester for low frequency applications
    A. Nisanth
    K. J. Suja
    V. Seena
    Microsystem Technologies, 2021, 27 : 251 - 261
  • [36] Rectifiers' Design and Optimization for a Dual-Channel RF Energy Harvester
    Colaiuda, Davide
    Ulisse, Iolanda
    Ferri, Giuseppe
    JOURNAL OF LOW POWER ELECTRONICS AND APPLICATIONS, 2020, 10 (02)
  • [37] Design and optimization of MEMS piezoelectric energy harvester for low frequency applications
    Nisanth, A.
    Suja, K. J.
    Seena, V
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2021, 27 (01): : 251 - 261
  • [38] IMPROVING DURABILITY OF A VIBRATION ENERGY HARVESTER USING STRUCTURAL DESIGN OPTIMIZATION
    Nezami, Saman
    Lee, Soobum
    Kang, Kiweon
    Kim, Jaehoon
    PROCEEDINGS OF THE ASME CONFERENCE ON SMART MATERIALS, ADAPTIVE STRUCTURES AND INTELLIGENT SYSTEMS, 2016, VOL 2, 2016,
  • [39] Design and optimization of bimorph energy harvester based on Taguchi and ANOVA approaches
    Alsaadi, Naif
    Sheeraz, Muhammad Abdullah
    ALEXANDRIA ENGINEERING JOURNAL, 2020, 59 (01) : 117 - 127
  • [40] Design and optimization on magnetic force limiting structure of piezoelectric energy harvester
    Liu, H.-P. (lhp@bit.edu.cn), 1600, Beijing Institute of Technology (33):