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    • 1. 发明申请
    • DUAL MODE CAPACITIVE TOUCH PANEL
    • 双模电容触摸屏
    • US20130033450A1
    • 2013-02-07
    • US13195364
    • 2011-08-01
    • Michael P. CoulsonChristopher J. Brown
    • Michael P. CoulsonChristopher J. Brown
    • G06F3/044
    • G06F3/044G06F3/041G06F3/0414G06F2203/04107
    • A dual mode capacitive touch panel includes a sensor substrate, an electrode layer comprising an array of sensor electrodes arranged over the sensor substrate, the array of sensor electrodes including a plurality of drive electrodes and a plurality of sense electrodes, each sensor electrode corresponding to a location on the sensor substrate, and a shield layer arranged over and spaced apart from the electrode layer. The shield layer includes a predetermined resistance that permits transmission of an electric field at a first frequency and prevents transmission of an electric field at a second frequency, wherein a spacing between the shield layer and the electrode layer is deformable as a result of a force applied to the shield layer due to a user touch, wherein the deformation alters a capacitance between the shield layer and a sensor electrode of the array. A controller is operatively coupled to the array of sensor electrodes, the controller configured to drive the shield layer and at least some sensor electrodes of the sensor electrode array at the first frequency in a first mode to measure a location of an object relative to the sensor substrate, and drive the shield and the at least some sensor electrodes at a second frequency in a second mode different from the first mode to measure a force applied toward the sensor substrate.
    • 双模电容触摸面板包括传感器基板,包括布置在传感器基板上的传感器电极阵列的电极层,传感器电极阵列包括多个驱动电极和多个感测电极,每个传感器电极对应于 传感器基板上的位置以及布置在电极层之上并与电极层间隔开的屏蔽层。 屏蔽层包括允许以第一频率传输电场的预定电阻,并且防止在第二频率下的电场的传输,其中屏蔽层和电极层之间的间隔由于施加的力而变形 由于用户触摸而导致屏蔽层,其中变形改变屏蔽层和阵列的传感器电极之间的电容。 控制器可操作地耦合到传感器电极阵列,所述控制器被配置为在第一模式中以第一频率驱动屏蔽层和传感器电极阵列的至少一些传感器电极,以测量物体相对于传感器的位置 并且以与第一模式不同的第二模式以第二频率驱动屏蔽和至少一些传感器电极,以测量施加到传感器基板的力。
    • 2. 发明授权
    • Dual mode capacitive touch panel
    • 双模电容式触摸屏
    • US08698769B2
    • 2014-04-15
    • US13195364
    • 2011-08-01
    • Michael P. CoulsonChristopher J. Brown
    • Michael P. CoulsonChristopher J. Brown
    • G06F3/044
    • G06F3/044G06F3/041G06F3/0414G06F2203/04107
    • A dual mode capacitive touch panel includes a sensor substrate, an electrode layer comprising an array of sensor electrodes arranged over the sensor substrate, the array of sensor electrodes including a plurality of drive electrodes and a plurality of sense electrodes, each sensor electrode corresponding to a location on the sensor substrate, and a shield layer arranged over and spaced apart from the electrode layer. The shield layer includes a predetermined resistance that permits transmission of an electric field at a first frequency and prevents transmission of an electric field at a second frequency, wherein a spacing between the shield layer and the electrode layer is deformable as a result of a force applied to the shield layer due to a user touch, wherein the deformation alters a capacitance between the shield layer and a sensor electrode of the array. A controller is operatively coupled to the array of sensor electrodes, the controller configured to drive the shield layer and at least some sensor electrodes of the sensor electrode array at the first frequency in a first mode to measure a location of an object relative to the sensor substrate, and drive the shield and the at least some sensor electrodes at a second frequency in a second mode different from the first mode to measure a force applied toward the sensor substrate.
    • 双模电容触摸面板包括传感器基板,包括布置在传感器基板上的传感器电极阵列的电极层,传感器电极阵列包括多个驱动电极和多个感测电极,每个传感器电极对应于 传感器基板上的位置以及布置在电极层之上并与电极层间隔开的屏蔽层。 屏蔽层包括允许以第一频率传输电场的预定电阻,并且防止在第二频率下的电场的传输,其中屏蔽层和电极层之间的间隔由于施加的力而变形 由于用户触摸而导致屏蔽层,其中变形改变屏蔽层和阵列的传感器电极之间的电容。 控制器可操作地耦合到传感器电极阵列,所述控制器被配置为在第一模式中以第一频率驱动屏蔽层和传感器电极阵列的至少一些传感器电极,以测量物体相对于传感器的位置 并且以与第一模式不同的第二模式以第二频率驱动屏蔽和至少一些传感器电极,以测量施加到传感器基板的力。
    • 7. 发明申请
    • PRODUCTION OF DRY ALCOHOL
    • 生产干酒
    • US20070238906A1
    • 2007-10-11
    • US11697054
    • 2007-04-05
    • Christopher J. BrownMarian SimoVladimir Hlavacek
    • Christopher J. BrownMarian SimoVladimir Hlavacek
    • C07C29/74
    • C07C29/1518C01B3/16C07C29/88F22G1/14Y02P20/124Y02P20/52C07C31/04C07C31/08
    • A process for producing dry alcohol includes at least one stage wherein a gaseous feedstock, which includes alcohol and water, is contacted with carbon monoxide in the presence of a water-gas shift catalyst, at a temperature sufficiently high so that carbon monoxide and water are consumed and carbon dioxide and hydrogen are produced, thereby removing a portion of the water. The process may include multiple stages; the dry alcohol produced contains 99.5 wt. % or greater of alcohol and 0.5 wt. % or less of water. A preferred alcohol is ethanol; dry ethanol can be combined with gasoline to afford a gasohol.The water-gas shift reaction is exothermic. The heat generated may be used to increase the energy efficiency of the process. In one embodiment, the heat is used to generate high-pressure steam. The high-pressure steam may be used, for example, to convert feedstock to gaseous feedstock or in the operation of a production plant.
    • 一种生产干醇的方法包括至少一个阶段,其中包括醇和水的气态原料在水煤气变换催化剂存在下与一氧化碳在足够高的温度下接触,使得一氧化碳和水是 产生二氧化碳和氢气,从而除去一部分水。 该过程可以包括多个阶段; 所生产的干燥醇含有99.5wt。 %或更高的醇和0.5wt。 %以下的水。 优选的醇是乙醇; 干乙醇可与汽油组合,得到汽油。 水煤气变换反应是放热的。 所产生的热量可用于提高过程的能量效率。 在一个实施例中,热量用于产生高压蒸汽。 例如,高压蒸汽可以用于将原料转化为气态原料或在生产设备的操作中。