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    • 13. 发明授权
    • Method and system for the configuration of a mobile station baseband circuit for an acoustic accessory
    • 配置用于声学附件的移动台基带电路的方法和系统
    • US08326360B2
    • 2012-12-04
    • US13050564
    • 2011-03-17
    • Barry Steven HazellKevin John Rush
    • Barry Steven HazellKevin John Rush
    • H04B7/00H04B1/38H04M1/00H04R5/02
    • H04W4/008H04M1/6025H04M1/6041H04M1/72525H04M1/7253H04W4/80H04W88/02
    • A method and system for the configuration of a mobile station baseband circuit for an acoustic accessory having an identifier, the method comprising the steps of: determining whether the mobile device recognizes the identifier of the acoustic device; and configuring the baseband circuit with a DSP filter response and CODEC acoustic gain parameters for the acoustic device if the mobile device recognizes the identifier of the acoustic device. The system comprising: an identifier for each of the plurality of acoustic devices; a local memory in the mobile station storing a frequency (filter) response and gain parameters for at least one of the plurality of acoustic devices and for mapping them to the identifier; and a digital signal processor to re-shape an acoustic frequency response and adjust an audio gain of a baseband circuit for the mobile station based on the stored frequency response and gain parameters.
    • 一种用于配置具有标识符的声学附件的移动台基带电路的方法和系统,所述方法包括以下步骤:确定移动设备是否识别声学设备的标识符; 以及如果所述移动设备识别所述声学设备的标识符,则使用所述声学设备的DSP滤波器响应和CODEC声增益参数来配置所述基带电路。 该系统包括:用于多个声学装置中的每一个的标识符; 移动站中的本地存储器存储用于多个声学装置中的至少一个的频率(滤波器)响应和增益参数,并将它们映射到标识符; 以及数字信号处理器,用于基于所存储的频率响应和增益参数来重新形成声频响应并调整用于移动台的基带电路的音频增益。
    • 15. 发明申请
    • Displacement Measurement Sensor Using the Confocal Principle with an Optical Fiber
    • 使用共焦原理与光纤的位移测量传感器
    • US20080130014A1
    • 2008-06-05
    • US11949895
    • 2007-12-04
    • Christopher John Rush
    • Christopher John Rush
    • G01B11/00
    • G01B11/0608
    • A displacement measurement sensor using the confocal principle with an optical fiber for measuring small changes in distance to a specular target surface comprises a monochromatic light source such as a laser diode 12 coupled to a multimode optical fiber. The fiber 32 functions as both a transmitter, receiver of light ray angle information. An objective lens 40 possessing spherical aberration separates the monochromatic light at different focal distances according to the magnitude of angular deviation from the optical axis. Each distance of the target surface from the objective lens will select specific angular rays able to retrace the path through the objective lens and fiber. Each angle then will correspond to specific distance. Angular information is preserved as the light path is traced back through the fiber 32 and the angle measurement is determined by registering the light impinging on a light sensitive electronic detector array 36.
    • 使用具有用于测量与镜面目标表面的距离的小变化的光纤的共焦原理的位移测量传感器包括耦合到多模光纤的单色光源,例如激光二极管12。 光纤32用作光线角度信息的发射器,接收器。 具有球面像差的物镜40根据与光轴的角度偏差的大小分离不同焦距的单色光。 来自物镜的目标表面的每个距离将选择能够回溯通过物镜和光纤的路径的特定角射线。 每个角度将对应于特定的距离。 当通过光纤32跟踪光路时,保留角度信息,并且通过对入射在光敏电子检测器阵列36上的光进行登记来确定角度测量。
    • 16. 发明申请
    • Immunoaffinity isolation of modified peptides from complex mixtures
    • 来自复杂混合物的修饰肽的免疫亲和分离
    • US20050003450A1
    • 2005-01-06
    • US10777893
    • 2004-02-12
    • John RushHui ZhangXiangming ZhaMichael CombYi Tan
    • John RushHui ZhangXiangming ZhaMichael CombYi Tan
    • C12P21/06C07K1/22C07K14/47C07K16/18C07K16/44C12P21/08C12Q1/25C12Q1/48G01N33/68G01N33/53
    • G01N33/6872C07K14/47C07K16/44C12Q1/25C12Q1/485G01N33/6842
    • The invention provides methods for isolating a modified peptide from a complex mixture of peptides, the method comprising the steps of: (a) obtaining a proteinaceous preparation from an organism, wherein the preparation comprises modified peptides from two or more different proteins; (b) contacting the preparation with at least one immobilized modification-specific antibody; and (c) isolating at least one modified peptide specifically bound by the immobilized modification-specific antibody in step (b). The method may further comprise the step of (d) characterizing the modified peptide isolated in step (c) by mass spectrometry (MS), tandem mass spectrometry (MS-MS), and/or MS3 analysis, or the step of (e) utilizing a search program to substantially match the spectra obtained for the modified peptide during the characterization of step (d) with the spectra for a known peptide sequence, thereby identifying the parent protein(s) of the modified peptide. Also provided are an immunoaffinity isolation device comprising a modification-specific antibody, and antibodies against novel UFD1 and PTN6 phosphorylation sites.
    • 本发明提供了从复杂的肽混合物中分离修饰的肽的方法,所述方法包括以下步骤:(a)从生物体获得蛋白质制剂,其中所述制剂包含来自两种或更多种不同蛋白质的修饰肽; (b)使制剂与至少一种固定的修饰特异性抗体接触; 和(c)在步骤(b)中分离至少一种由固定的修饰特异性抗体特异性结合的修饰的肽。 该方法还可以包括以下步骤:(d)通过质谱(MS),串联质谱(MS-MS)和/或MS 3分析表征步骤(c)中分离的修饰肽,或步骤 (e)使用搜索程序将在步骤(d)表征期间获得的修饰肽的光谱与已知肽序列的光谱基本上匹配,从而鉴定修饰肽的亲本蛋白。 还提供了包含修饰特异性抗体和针对新型UFD1和PTN6磷酸化位点的抗体的免疫亲和分离装置。
    • 19. 发明申请
    • METHOD OF MAKING PROPPANT USED IN GAS OR OIL EXTRACTION
    • 制备用于气体或油中提取物的方法
    • US20100197532A1
    • 2010-08-05
    • US12622900
    • 2009-11-20
    • David John RushJuan Leal Gonzalez
    • David John RushJuan Leal Gonzalez
    • C09K8/80B02C13/26B02C23/08B02C23/18
    • B03B9/00B02C17/002C09K8/80
    • Method and system for making a spherical proppant having a selected grade from a naturally occurring mined mineral having a hardness of over 6.0 Mohs. The method and system involves preprocessing the mineral mechanically into a semi-dry feedstock comprising a mass of particles with initial sphericity values generally less than 0.60; subjecting the semi-dry feedstock to an aggressive abrasive attrition operation for a process time; and, controlling the process time to a value wherein the particles of the feedstock are converted to final processed particles having a sphericity greater than 0.60 by increasing the sphericity of the feedstock particles by at least 0.10. In addition, the processed particles are screened to obtain a proppant having a selected grade.
    • 制备具有硬度超过6.0莫氏的天然矿物的具有选定等级的球形支撑剂的方法和系统。 该方法和系统包括将矿物机械地预处理成半干原料,其包含一批具有通常小于0.60的初始球形度的颗粒; 对半干原料进行侵蚀性磨料磨耗操作以处理工艺时间; 并且通过将原料颗粒的球形度增加至少0.10,将处理时间控制到其中原料颗粒转化为球形度大于0.60的最终处理颗粒的值。 另外,对经处理的颗粒进行筛选以获得具有所选等级的支撑剂。