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    • 1. 发明授权
    • Surface wave chemical detector using optical radiation
    • 表面波化学检测器采用光辐射
    • US07243548B2
    • 2007-07-17
    • US11100839
    • 2005-04-07
    • Thomas G. ThundatRobert J. Warmack
    • Thomas G. ThundatRobert J. Warmack
    • G01N30/00B01D15/04
    • G01N29/022G01N29/2418G01N2291/0255G01N2291/0256G01N2291/0423G01N2291/0426G01N2291/0427
    • A surface wave chemical detector comprising at least one surface wave substrate, each of said substrates having a surface wave and at least one measurable surface wave parameter; means for exposing said surface wave substrate to an unknown sample of at least one chemical to be analyzed, said substrate adsorbing said at least one chemical to be sensed if present in said sample; a source of radiation for radiating said surface wave substrate with different wavelengths of said radiation, said surface wave parameter being changed by said adsorbing; and means for recording signals representative of said surface wave parameter of each of said surface wave substrates responsive to said radiation of said different wavelengths, measurable changes of said parameter due to adsorbing said chemical defining a unique signature of a detected chemical.
    • 一种表面波化学检测器,包括至少一个表面波衬底,每个所述衬底具有表面波和至少一个可测量的表面波参数; 用于将所述表面波衬底暴露于待分析的至少一种化学物质的未知样品的装置,所述衬底在所述样品中吸附所述至少一种要被感测的化学物质; 用于辐射具有不同波长的所述辐射的所述表面波衬底的辐射源,所述表面波参数通过所述吸附而改变; 以及用于响应于所述不同波长的所述辐射记录表示每个所述表面波衬底的所述表面波参数的信号的装置,由于吸附所述化学物质而限定所检测化学物质的唯一标记,所述参数的可测量的变化。
    • 4. 发明授权
    • Touch sensor with non-uniform resistive band
    • 具有不均匀电阻带的触摸传感器
    • US07265686B2
    • 2007-09-04
    • US10619915
    • 2003-07-15
    • G. Samuel HurstR. H. RitchieRobert J. WarmackDonald W. BouldinJoel C. Kent
    • G. Samuel HurstR. H. RitchieRobert J. WarmackDonald W. BouldinJoel C. Kent
    • H03K17/94
    • G06F3/045G06F3/0488
    • A touch sensors with improved topological equivalence between an equipotential space and a Cartesian space to which the equipotential space will be mapped. The touch sensor comprises a substrate with a touch region, and a set of electrodes that are electrically coupled to the touch region. The touch sensor further comprises a plurality of resistive band segments that frames the touch region. The electrodes are located between the resistive band segments. Each resistive band segment has a resistivity that is intermediate between the resistivity of the electrodes and the resistivity of the touch region, thereby providing a transition between the low resistivity electrodes and the high resistivity touch region, and improving the topological equivalence within the corners of the touch region. At least one of the band segments has a non-uniform linear resistance to provide further improvement to the topological equivalence.
    • 触摸传感器具有等位置空间与等位空间映射到的笛卡尔空间之间的拓扑等效性。 触摸传感器包括具有触摸区域的基板和电耦合到触摸区域的一组电极。 触摸传感器还包括多个阻挡接触区域的电阻带段。 电极位于电阻带段之间。 每个电阻带段具有在电极的电阻率和触摸区域的电阻率之间的电阻率,从而提供低电阻率电极和高电阻率接触区域之间的转变,并且改善电极的拐角内的拓扑等效性 触摸区域。 至少一个带段具有不均匀的线性电阻以提供对拓扑等效性的进一步改进。
    • 5. 发明授权
    • Sensor and sensor array having improved selectivity
    • 传感器和传感器阵列具有改进的选择性
    • US06977511B2
    • 2005-12-20
    • US11082634
    • 2005-03-08
    • Sanjay V. PatelBernd FruhbergerRobert J. WarmackTodd E. MlsnaDavid R. BaseltErno Klaassen
    • Sanjay V. PatelBernd FruhbergerRobert J. WarmackTodd E. MlsnaDavid R. BaseltErno Klaassen
    • G01N27/22G01R27/26H01G5/16
    • G01N27/227
    • A sensor for determining the presence of an analyte is disclosed comprising a reactive layer disposed between a base plate and a movable plate. The reactive layer is configured to interact with an analyte effecting a change in capacitance between the base plate and movable plate. When the analyte has a polarity or overall Hildebrand solubility parameter that is similar to the reactive layer, the change in capacitance is caused by a swelling of the reactive layer as analyte is absorbed into the reactive layer. This results in a decrease in capacitance. When the analyte has a solubility parameter not near the reactive layer, the absorbed analyte causes the reactive layer's total polarity to increase, an effect that dominates swelling. This causes an increase in capacitance. A capacitive sensing circuit is included for measuring the change in capacitance which is indicative of the analyte exposed to the sensor.
    • 公开了一种用于确定分析物存在的传感器,其包括设置在基板和可移动板之间的反应层。 反应层被配置为与分析物相互作用,影响基板和可移动板之间的电容变化。 当分析物具有类似于反应层的极性或整体Hildebrand溶解度参数时,电容的变化是由反应层的溶胀引起的,因为分析物被吸收到反应层中。 这导致电容降低。 当分析物具有不在反应层附近的溶解度参数时,吸收的分析物导致反应层的总极性增加,这是影响溶胀的作用。 这导致电容增加。 包括电容感测电路,用于测量表明分析物暴露于传感器的电容变化。
    • 8. 发明授权
    • Method and apparatus for laplace constrained touchscreen calibration
    • 拉普拉斯限制触摸屏校准的方法和设备
    • US08049740B2
    • 2011-11-01
    • US11925264
    • 2007-10-26
    • Joel C. KentRobert J. Warmack
    • Joel C. KentRobert J. Warmack
    • G06F3/041
    • G06F3/0418G06F3/045
    • A computer readable medium has instructions to calibrate a touch system by detecting touch points on a touchscreen that are each associated with touchscreen coordinates in a touchscreen coordinate system. The instructions associated each of the touch points with known calibration targets, and each of the calibration targets has display coordinates in a display coordinate system that is associated with at least one of a display screen and an operating system. The instructions fit the display coordinates and the touchscreen coordinates non-linearly with respect to each other based on a generalized Laplace-constrained fit that is used to identify correction parameters used to map a user generated run-time touch point on the touchscreen to a display coordinate location on a display screen. The correction parameters represent non-linear corrections.
    • 计算机可读介质具有通过检测触摸屏上的每个与触摸屏坐标系中的触摸屏坐标相关联的触摸点来校准触摸系统的指令。 每个触摸点与已知的校准目标相关联的指令,以及每个校准目标在与显示屏幕和操作系统中的至少一个相关联的显示坐标系中具有显示坐标。 所述指令基于广义的拉普拉斯约束拟合来适应非线性的显示坐标和触摸屏坐标,该广义拉普拉斯约束拟合用于识别用于将触摸屏上的用户生成的运行时间触摸点映射到显示器的校正参数 在显示屏上坐标位置。 校正参数表示非线性校正。