A TMR-based Integrated Current Sensing Solution for WBG Power Modules

被引:2
|
作者
Vala, Sama Salehi [1 ]
Mirza, Abdul Basit [1 ]
Luo, Fang [1 ]
机构
[1] SUNY Stony Brook, SHVPEL, Stony Brook, NY 11794 USA
来源
2024 IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION, APEC | 2024年
基金
美国国家科学基金会;
关键词
Two TMR Sensor (TTS); Tunneling Magnetoresistance (TMR); wide band gap (WBG); high dv/dt; power module; contactless; SENSOR;
D O I
10.1109/APEC48139.2024.10509509
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 proposes a contactless and high-precision current measurement solution using Tunneling Magnetoresistance (TMR) sensors to address the challenges of current measurement in wide band gap (WBG) power electronics with high dv/dt, di/dt and switching frequencies. The solution, referred to as TTS, utilizes two TMR sensors placed on opposite sides of the current-carrying trace or PCB-based terminal. By differentiating the sensor readings, the system achieves enhanced resolution and reduced errors from external magnetic fields and temperature fluctuations. Notably, the Two TMR Sensor (TTS) implementation is compatible with various power module designs, requiring no modification during fabrication, and seamlessly can be integrated into the final stages. Overall, this novel current measurement solution offers significant advantages for improved performance in power modules.
引用
收藏
页码:2398 / 2402
页数:5
相关论文
共 14 条
  • [1] An Integrated TMR-Based Current Sensing Solution for WBG Power Modules and Converters
    Vala, Sama Salehi
    Mirza, Abdul Basit
    Luo, Fang
    IEEE TRANSACTIONS ON COMPONENTS PACKAGING AND MANUFACTURING TECHNOLOGY, 2024, 14 (12): : 2220 - 2230
  • [2] 20 MHz Integrated Current Sensing for WBG Systems with EMI Suppression
    Sheng, Minhao
    Alvi, Muhammad H.
    Lorenz, Robert D.
    2018 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2018, : 375 - 382
  • [3] Heat Sink Design for WBG Power Modules Based on Fourier Series and Evolutionary Multi-Objective Multi-Physics Optimization
    Gurpinar, Emre
    Sahu, Raj
    Ozpineci, Burak
    IEEE OPEN JOURNAL OF POWER ELECTRONICS, 2021, 2 : 559 - 569
  • [4] 2-D Magnetoresistive Point Field Detector-based Current Sensing for High-Density Power Modules
    Alvi, Muhammad H.
    Sheng, Minhao
    Lorenz, Robert D.
    THIRTY-FOURTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2019), 2019, : 633 - 639
  • [5] Polymer nanoparticles integrated with ESIPT modules for sensing cysteine based on modulation of their tautomeric emission
    Zou, Wu
    Wang, Qinge
    Gong, Fuchun
    Kuang, Yinjie
    Xia, Jiaoyun
    Cao, Zhong
    ANALYTICAL METHODS, 2019, 11 (29) : 3714 - 3720
  • [6] Integrated, Eddy-Current-Based Sensing of Rotor Position for Magnetic Levitation
    Peralta, Patricio
    Thomas, Sean
    Perriard, Yves
    2020 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2020, : 1749 - 1755
  • [7] Noncontact Power Module Current Measurement Based on Bonding Wire Current Sensing Using Hybrid Sensor
    Guo, Weili
    Xiao, Guochun
    Wang, Laili
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2025,
  • [8] A 4-Transistor Monolithic Solution to Highly Linear On-Chip Temperature Sensing in GaN Power Integrated Circuits
    Li, Ang
    Shen, Yi
    Li, Ziqian
    Li, Fan
    Sun, Ruize
    Mitrovic, Ivona Z.
    Wen, Huiqing
    Lam, Sang
    Liu, Wen
    IEEE ELECTRON DEVICE LETTERS, 2023, 44 (02) : 333 - 336
  • [9] Design guideline for PCB integrated, high bandwidth, current slope sensing based on a planar Rogowski coil
    Stoss, Johannes
    Wurster, Christoph
    Menger, Nikolas
    Brodatzki, Matthias
    Liske, Andreas
    Hiller, Marc
    2021 23RD EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS (EPE'21 ECCE EUROPE), 2021,
  • [10] Power Module Design for Integrated Three-Phase Current Sensing Using a Single 3-D Point Field Detector
    Alvi, Muhammad H.
    Sheng, Minhao
    Lorenz, Robert D.
    Jahns, Thomas M.
    2020 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2020, : 3328 - 3335