基于矢量拟合(VF,Vector Fitting)原理和电路综合理论,提出了一种有源集成器件宽带电路建模方法,用于电磁兼容仿真.将在直流偏置下测量获得的端口参数采用矢量拟合方法转化为极点-留数与时域状态方程的形式;然后创建时域电路模型,将状...基于矢量拟合(VF,Vector Fitting)原理和电路综合理论,提出了一种有源集成器件宽带电路建模方法,用于电磁兼容仿真.将在直流偏置下测量获得的端口参数采用矢量拟合方法转化为极点-留数与时域状态方程的形式;然后创建时域电路模型,将状态方程转化为与SPICE(Simulation Program with Integrated Circuit Emphasis)兼容的网表电路模型.该网表可以代替原芯片PDN(Power Distribution Network)用于电路仿真,最后使用该方法对样本芯片PDN模块建模并与相应的集成电路等效模型(ICEM,IC Electromagnetism Modeling)进行对比,结果表明:矢量拟合模型相比ICEM模型具有更宽的有效带宽以及更小的模型误差.展开更多
The major challenge in printable electronics fabrication is to effectively and accurately control a drop-on-demand(Do D) inkjet printhead for high printing quality. In this work, an optimal prediction model, construct...The major challenge in printable electronics fabrication is to effectively and accurately control a drop-on-demand(Do D) inkjet printhead for high printing quality. In this work, an optimal prediction model, constructed with the lumped element modeling(LEM) and the artificial bee colony(ABC) algorithm, was proposed to efficiently predict the combination of waveform parameters for obtaining the desired droplet properties. For acquiring higher simulation accuracy, a modified dynamic lumped element model(DLEM) was proposed with time-varying equivalent circuits, which can characterize the nonlinear behaviors of piezoelectric printhead. The proposed method was then applied to investigate the influences of various waveform parameters on droplet volume and velocity of nano-silver ink, and to predict the printing quality using nano-silver ink. Experimental results show that, compared with two-dimension manual search, the proposed optimal prediction model perform efficiently and accurately in searching the appropriate combination of waveform parameters for printable electronics fabrication.展开更多
文摘基于矢量拟合(VF,Vector Fitting)原理和电路综合理论,提出了一种有源集成器件宽带电路建模方法,用于电磁兼容仿真.将在直流偏置下测量获得的端口参数采用矢量拟合方法转化为极点-留数与时域状态方程的形式;然后创建时域电路模型,将状态方程转化为与SPICE(Simulation Program with Integrated Circuit Emphasis)兼容的网表电路模型.该网表可以代替原芯片PDN(Power Distribution Network)用于电路仿真,最后使用该方法对样本芯片PDN模块建模并与相应的集成电路等效模型(ICEM,IC Electromagnetism Modeling)进行对比,结果表明:矢量拟合模型相比ICEM模型具有更宽的有效带宽以及更小的模型误差.
基金Projects(2014AA052101-3,2014AA052102)supported by the National High Technology Research and Development Program of ChinaProjects(51205389,61105067)supported by the National Natural Science Foundation of China
文摘The major challenge in printable electronics fabrication is to effectively and accurately control a drop-on-demand(Do D) inkjet printhead for high printing quality. In this work, an optimal prediction model, constructed with the lumped element modeling(LEM) and the artificial bee colony(ABC) algorithm, was proposed to efficiently predict the combination of waveform parameters for obtaining the desired droplet properties. For acquiring higher simulation accuracy, a modified dynamic lumped element model(DLEM) was proposed with time-varying equivalent circuits, which can characterize the nonlinear behaviors of piezoelectric printhead. The proposed method was then applied to investigate the influences of various waveform parameters on droplet volume and velocity of nano-silver ink, and to predict the printing quality using nano-silver ink. Experimental results show that, compared with two-dimension manual search, the proposed optimal prediction model perform efficiently and accurately in searching the appropriate combination of waveform parameters for printable electronics fabrication.