Fast and Accurate Frequency-Dependent Behavioral Model of Bonding Wires

被引:11
|
作者
Wang, To-Po [1 ]
Lu, You-Fu [2 ]
机构
[1] Natl Taipei Univ Technol, Elect Engn, Taipei 10608, Taiwan
[2] Etron Technol Inc, Hsinchu 300, Taiwan
关键词
Bonding wires; frequency-dependent; IN-SITU MEASUREMENT; ON-CHIP; BONDWIRE INDUCTORS; EMI SIMULATIONS; MICROWAVE; RF; TRANSFORMERS; DESIGN;
D O I
10.1109/TII.2017.2737525
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
A proposed model of bonding wires is presented in this paper. For a regular double-p bonding-wire model considering the skin effect, nine parameters should be determined, including inductance (L-S), series parasitic resistances (R-1, R-2), shunt parasitic capacitances (C-PAR1, C-PAR2), and parameters for skin effects (R-S1, L-S1, R-S2, L-S2), so procedures to extract the design parameters for a bonding-wire model are complicated. To reduce the complexity, a proposed model is presented. Introducing a frequency-dependent resistor R(skin)f(m) can significantly reduce the number of design parameters for a bonding-wire model considering the skin effect from nine to five. This can resolve the design complexity of the bonding wires and cables. Moreover, it is suitable for industrial applications. In addition, the proposed design methodology is presented and the mechanisms are validated by experiments. According to experimental results, the model accuracy with 10% difference in magnitude between measured and modeled S-21 of the 2, 4, 6, and 8 mm aluminum bonding wires is at the frequencies of 5.9, 5.0, 3.5, and 2.9 GHz, respectively.
引用
收藏
页码:2389 / 2396
页数:8
相关论文
共 50 条
  • [21] A Finite Element Model for the Vibration Analysis of Sandwich Beam with Frequency-Dependent Viscoelastic Material Core
    Huang, Zhicheng
    Wang, Xingguo
    Wu, Nanxing
    Chu, Fulei
    Luo, Jing
    MATERIALS, 2019, 12 (20)
  • [22] TheFinite Element Modeling and Experimental Study of Sandwich Plates with Frequency-Dependent Viscoelastic Material Model
    Huang, Zhicheng
    Wang, Xingguo
    Wu, Nanxing
    Chu, Fulei
    Luo, Jing
    MATERIALS, 2020, 13 (10)
  • [23] LUMPED DUAL-FREQUENCY IMPEDANCE TRANSFORMERS FOR FREQUENCY-DEPENDENT COMPLEX LOADS
    Liu, Y.
    Zhao, Y. J.
    Zhou, Y. G.
    PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, 2012, 126 : 121 - 138
  • [24] Frequency-dependent reflections in elastic diffusive-viscous media
    Zhao, Haixia
    Gao, Jinghuai
    Peng, Jigen
    JOURNAL OF GEOPHYSICS AND ENGINEERING, 2018, 15 (05) : 1900 - 1916
  • [25] A new method of frequency-dependent network equivalence for power system
    LIN JiKeng 1*
    2 China Electric-Power Research Institute
    3 Schneider Electric Co.
    4 Tianjin Electrical Power Corperation
    Science China(Technological Sciences), 2012, (07) : 1894 - 1907
  • [26] Modulation of cortical oscillations by periodic electrical stimulation is frequency-dependent
    Wang, Jixuan
    Deng, Bin
    Gao, Tianshi
    Wang, Jiang
    Liu, Chen
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2022, 110
  • [27] A new method of frequency-dependent network equivalence for power system
    Lin JiKeng
    Yan YiPeng
    Pu TianJiao
    Luo ShanShan
    Liu Tao
    Zheng WeiHong
    Wang XuDong
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2012, 55 (07) : 1894 - 1907
  • [28] A Linear Phase Filter in Quadruplet Topology With Frequency-Dependent Couplings
    Szydlowski, Lukasz
    Leszczynska, Natalia
    Mrozowski, Michal
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2014, 24 (01) : 32 - 34
  • [29] Filters With Linear Frequency-Dependent Couplings: Matrix Synthesis and Applications
    Zhao, Ping
    Wu, Ke
    IEEE MICROWAVE MAGAZINE, 2023, 24 (09) : 30 - 45
  • [30] Generalized Doppler and aberration kernel for frequency-dependent cosmological observables
    Yasini, Siavash
    Pierpaoli, Elena
    PHYSICAL REVIEW D, 2017, 96 (10)