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A hybrid frequency-time-domain approach to determine the vibration fatigue life of electronic devices

机译:一种混合频率 - 时域方法来确定电子设备的振动疲劳寿命

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摘要

A hybrid frequency-time-domain model is presented to holistically predict the mechanical effects of vibrational loads on microelectronic devices placed in complex geometrical systems. Dynamic system loads in the frequency domain are spatially reduced to local devices and transformed into the time domain allowing for nonlinear material modelling and lifetime assessment. The electronic system and its components are interpreted as an equivalent multi-degree-of-freedom oscillator to analytically set up the equation of motion, whose modal stiffness and damping coefficients are experimentally determined. The displacements of the point oscillators are translated to a simplified finite element model, which identifies critical components in the frequency domain based on the mass participation factor. Numerical submodelling techniques are applied to asses statistical stress configurations and reveal critical electrical devices susceptible to material fatigue. The frequency response function of the device is inverse Fast Fourier transformed into the time domain to quantify fatigue strength and calculate the damage accumulated throughout the vibrational load cycles.
机译:将混合频率 - 时域模型呈现给整体上预测放置在复杂几何系统中的微电子器件上的振动载荷的机械效应。频域中的动态系统负载在空间上减少到本地设备,并转换为允许非线性材料建模和寿命评估的时域。电子系统及其组件被解释为等效的多程度 - 自由度振荡器,用于分析运动的运动方程,其模态刚度和阻尼系数是通过实验确定的。点振荡器的位移被转换为简化的有限元模型,其基于质量参与因子识别频域中的关键组件。应用数值子陶醉技术来施加统计应力配置,并揭示易受材料疲劳的关键电气装置。设备的频率响应功能是逆快速傅里叶变换到时域中以量化疲劳强度并计算整个振动负荷循环中累积的损坏。

著录项

  • 来源
    《Microelectronics & Reliability》 |2019年第7期|86-94|共9页
  • 作者单位

    Univ Erlangen Nurnberg Chair Electron Devices Cauerstr 6 D-91058 Erlangen Germany;

    Fraunhofer Inst Integrated Syst & Device Technol Schottkystr 10 D-91058 Erlangen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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