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    • 53. 发明申请
    • Thermodynamic Phase Equilibrium Analysis Based on a Reduced Composition Domain
    • 基于减少组成域的热力学相平衡分析
    • US20110066285A1
    • 2011-03-17
    • US12560134
    • 2009-09-15
    • Gang XuDavid Bluck
    • Gang XuDavid Bluck
    • G05B21/00G06F17/10G06G7/48
    • G06F17/5009G06F2217/16G06F2217/80
    • A method of modeling phase characteristics of thermodynamic systems utilizing pseudo-properties strategy and a reduced number of variables is disclosed herein. The method describes a means of determining the probability of phase splitting of mixtures of materials at a given temperature, pressure, and composition by characterizing the functions that describe the system via pseudo-properties, and also by describing the system in n−1 or fewer variables, where n represents the number of components in the system of interest. In an embodiment, a multi-component system is characterized in one variable, thereby providing simplified thermodynamic models in a time-efficient manner. In addition, the information generated by this reduced-variable calculation can further be used as a starting point for calculations of equations of state.
    • 本文公开了一种使用伪属性策略和减少数量的变量来建模热力学系统的相位特性的方法。 该方法描述了通过表征通过伪属性描述系统的功能,并且还通过将系统描述在n-1或更少的系统中来确定在给定温度,压力和组成下的材料混合物的相位分裂的概率的手段 变量,其中n表示感兴趣的系统中的组件的数量。 在一个实施例中,多组分系统的特征在于一个变量,从而以时间有效的方式提供简化的热力学模型。 另外,通过该减量计算生成的信息可以进一步用作计算状态方程的起始点。
    • 58. 发明申请
    • INTERFEROMETRIC OPTICAL DISPLAY SYSTEM WITH BROADBAND CHARACTERISTICS
    • 具有宽带特性的光纤显示系统
    • US20100128339A1
    • 2010-05-27
    • US12634576
    • 2009-12-09
    • Evgeni GousevGang XuMarek Mienko
    • Evgeni GousevGang XuMarek Mienko
    • G02B26/00H05K3/00
    • G02B26/001Y10T29/49124
    • Broad band white color can be achieved in MEMS display devices by incorporating a material having an extinction coefficient (k) below a threshold value for wavelength of light within an operative optical range of the interferometric modulator. One embodiment provides a method of making the MEMS display device comprising depositing said material over at least a portion of a transparent substrate, depositing a dielectric layer over the layer of material, forming a sacrificial layer over the dielectric, depositing an electrically conductive layer on the sacrificial layer, and forming a cavity by removing at least a portion of the sacrificial layer. The suitable material may comprise germanium, germanium alloy of various compositions, doped germanium or doped germanium-containing alloys, and may be deposited over the transparent substrate, incorporated within the transparent substrate or the dielectric layer.
    • 通过在干涉式调制器的可操作光学范围内并入具有低于阈值的消光系数(k)的材料,可以在MEMS显示装置中实现宽带白色。 一个实施例提供了一种制造MEMS显示装置的方法,包括在透明基板的至少一部分上沉积所述材料,在所述材料层上沉积介电层,在所述电介质层上形成牺牲层,在所述电介质层上沉积导电层 牺牲层,并且通过去除牺牲层的至少一部分来形成空腔。 合适的材料可以包括各种组成的锗,锗合金,掺杂的锗或掺杂的含锗合金,并且可以沉积在透明衬底上,并入透明衬底或电介质层中。
    • 60. 发明申请
    • Accuracy on-chip clock generator for multi-clock driven single chip solution
    • 精准片上时钟发生器,用于多时钟驱动单芯片解决方案
    • US20100045388A1
    • 2010-02-25
    • US12196349
    • 2008-08-22
    • Gang Xu
    • Gang Xu
    • H03L7/00
    • H03L7/085H03J1/0008H04W52/0287Y02D70/122Y02D70/142Y02D70/144
    • A mixed-signal chip is described. The mixed-signal chip comprises a first portion of analog circuit and second portion of digital circuit, an on-chip precision oscillator residing on the first analog portion, the precision oscillator has a precision frequency; a first on-chip non-precision tunable oscillator from a first clock domain residing on the first analog portion, the first non-precision tunable oscillator has a first adjustable frequency; a noise detector for detecting a first noise in the first clock domain; a frequency adjusting register for storing a first desired frequency value of the first on-chip non-precision tunable oscillator, wherein the first desired frequency value is determined based on the first detected noise; a control circuit for adjusting the adjustable frequency of the first non-precision tunable oscillator to the first desired frequency value by using the precision frequency of the on-chip precision oscillator as a reference.
    • 描述了混合信号芯片。 混合信号芯片包括模拟电路的第一部分和数字电路的第二部分,位于第一模拟部分上的片上精密振荡器,精密振荡器具有精度频率; 所述第一非精度可调谐振荡器具有第一可调频率;第一非精度可调谐振荡器,具有第一可调谐振荡器, 噪声检测器,用于检测第一时钟域中的第一噪声; 频率调整寄存器,用于存储第一片上非精密可调振荡器的第一期望频率值,其中基于第一检测到的噪声确定第一期望频率值; 控制电路,通过使用片上精密振荡器的精度频率作为基准,将第一非精密可调振荡器的可调频率调整到第一期望频率值。