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    • 1. 发明授权
    • Measuring separation of patterns, and use thereof for determining printer characteristics
    • 测量图案的分离及其用于确定打印机特性的用途
    • US08462407B2
    • 2013-06-11
    • US12634487
    • 2009-12-09
    • Ben YipPaul Joseph EllisSon Thai
    • Ben YipPaul Joseph EllisSon Thai
    • H04N1/46
    • B41J2/2135H04N1/00002H04N1/00015H04N1/00034H04N1/00037H04N1/00045H04N1/00047H04N1/00058H04N1/19H04N1/1906
    • Disclosed are methods (900) and apparatuses (600) for determining a location of a graphical object (2220) printed onto a print medium (230), said graphical object comprising a plurality of object marks, the method comprising the steps of superposing a two-dimensional reference pattern (710) having a pre-defined degree of accuracy over the printed graphical object, the two-dimensional reference pattern comprising a plurality of pattern marks (770); scanning the superposed printed graphical object and reference pattern to produce a scanned image (2400); determining a location coordinate (2923) of the graphical object in the scanned image (2400); and refining the location coordinate dependent upon the scanned reference pattern to determine a reference pattern coordinate (2904′) associated with the location coordinate (2923). Also disclosed are methods (1800), apparatuses, and computer program products for determining a head size (420) of a print head (3110) of a printer (3100) using the aforementioned method.
    • 公开了用于确定打印在打印介质(230)上的图形对象(2220)的位置的方法(900)和装置(600),所述图形对象包括多个对象标记,所述方法包括以下步骤: 所述二维参考图案包括多个图案标记(770);所述二维参考图案包括多个图案标记(770)。 扫描叠加的印刷图形对象和参考图案以产生扫描图像(2400); 确定扫描图像中的图形对象的位置坐标(2923)(2400); 以及根据所扫描的参考图案来细化位置坐标以确定与位置坐标(2923)相关联的参考图案坐标(2904')。 还公开了使用上述方法确定打印机(3100)的打印头(3110)的打印头大小(420)的方法(1800),装置和计算机程序产品。
    • 3. 发明申请
    • MEASURING SEPARATION OF PATTERNS, AND USE THEREOF FOR DETERMINING PRINTER CHARACTERISTICS
    • 模式的测量分离及其用于确定打印机特性
    • US20110007371A1
    • 2011-01-13
    • US12634487
    • 2009-12-09
    • Ben YipPaul Joseph EllisSon Thai
    • Ben YipPaul Joseph EllisSon Thai
    • H04N1/46H04N1/00
    • B41J2/2135H04N1/00002H04N1/00015H04N1/00034H04N1/00037H04N1/00045H04N1/00047H04N1/00058H04N1/19H04N1/1906
    • Disclosed are methods (900) and apparatuses (600) for determining a location of a graphical object (2220) printed onto a print medium (230), said graphical object comprising a plurality of object marks, the method comprising the steps of superposing a two-dimensional reference pattern (710) having a pre-defined degree of accuracy over the printed graphical object, the two-dimensional reference pattern comprising a plurality of pattern marks (770); scanning the superposed printed graphical object and reference pattern to produce a scanned image (2400); determining a location coordinate (2923) of the graphical object in the scanned image (2400); and refining the location coordinate dependent upon the scanned reference pattern to determine a reference pattern coordinate (2904′) associated with the location coordinate (2923). Also disclosed are methods (1800), apparatuses, and computer program products for determining a head size (420) of a print head (3110) of a printer (3100) using the aforementioned method.
    • 公开了用于确定打印在打印介质(230)上的图形对象(2220)的位置的方法(900)和装置(600),所述图形对象包括多个对象标记,所述方法包括以下步骤: 所述二维参考图案包括多个图案标记(770);所述二维参考图案包括多个图案标记(770)。 扫描叠加的印刷图形对象和参考图案以产生扫描图像(2400); 确定扫描图像中的图形对象的位置坐标(2923)(2400); 以及根据所扫描的参考图案来细化位置坐标以确定与位置坐标(2923)相关联的参考图案坐标(2904')。 还公开了使用上述方法确定打印机(3100)的打印头(3110)的打印头大小(420)的方法(1800),装置和计算机程序产品。
    • 4. 发明授权
    • Optical pressure sensor
    • 光学压力传感器
    • US06894787B2
    • 2005-05-17
    • US10036629
    • 2001-12-21
    • Daniel W. YoungnerSon Thai Lu
    • Daniel W. YoungnerSon Thai Lu
    • G01L9/00G01B9/02
    • G01L9/002
    • A pressure sensor is formed on a substrate, the surface of the substrate having a p-n junction and a shell with a beam inside the shell over the p-n junction. The beam and the shell and the p-n junction surface form optical Fabry-Pérot cavities. An optical fiber is positioned in a hole formed in the underside of the substrate below the p-n junction. Light from the fiber charges the p-n junction and drives it into vibration mode. Pressure changes change the tension in the diaphram to vary the frequency with changes in pressure, so that pressure can be detected.
    • 在衬底上形成压力传感器,衬底的表面具有p-n结,壳体上具有在壳体内的光束在p-n结上。 光束和外壳以及p-n结表面形成光学法布里 - 珀罗腔。 光纤被定位在形成在p-n结下面的衬底下侧的孔中。 来自光纤的光对p-n结进行充电并将其驱动到振动模式。 压力变化改变了膜中的张力,随着压力的变化而改变频率,从而可以检测压力。
    • 6. 发明授权
    • Analyte detector
    • 分析物检测器
    • US07368085B2
    • 2008-05-06
    • US10727891
    • 2003-12-04
    • Yuandong GuSon Thai Lu
    • Yuandong GuSon Thai Lu
    • B32B5/02B32B27/04B32B27/12G01N27/00G01N33/00
    • G01N33/66Y10T436/11Y10T436/14Y10T436/144444
    • An analyte detector including a device having a surface, wherein the device is capable of detecting a charge adjacent to the surface. The surface includes a plurality of molecules bonded thereto, wherein the molecules have a structure (I): where R is a ligand bonded to the surface of the device and R1 is a spacer having 5 to 50 carbon atoms. The charge adjacent to the surface is created by the anionic complex of structure (I), and the number of anionic complex of structure (I) is dependent on the concentration of the analyte of interest. Methods for detecting an analyte are also disclosed, as well as systems using such analyte detectors.
    • 一种分析物检测器,包括具有表面的器件,其中该器件能够检测与该表面相邻的电荷。 表面包括与其结合的多个分子,其中分子具有结构(I):其中R是与器件表面结合的配体,R 1是具有5至50个碳的间隔基 原子 与表面相邻的电荷由结构(I)的阴离子络合物产生,结构(I)的阴离子络合物的数目取决于感兴趣的分析物的浓度。 还公开了检测分析物的方法,以及使用这种分析物检测器的系统。