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    • 2. 发明申请
    • Printable Media Sensing Device, System and Method
    • 可打印介质感应装置,系统和方法
    • US20120008964A1
    • 2012-01-12
    • US12834084
    • 2010-07-12
    • James CostelloRani SaravananWee Sin Tan
    • James CostelloRani SaravananWee Sin Tan
    • G03G15/00
    • G03G15/6588G03G15/5062G03G2215/00721G03G2215/00734
    • Printable media sensing devices, systems and methods are disclosed herein. An array of light emitters projects light through a printable media sheet for detection by a corresponding array of light sensors. A processor is operably connected to the array of light emitters and light sensors, and is configured to activate the light emitters, and receive output signals from the light sensors, and permit the accurate detection and determination of the locations of top of form (TOF) and bottom of form (BOF) for a given printable media sheet, as well as multiple widths corresponding to such sheet. According to some embodiments, the locations of labels on a sheet may also be detected with heightened accuracy, as may regions having no labels disposed thereover.
    • 本文公开了可打印介质感测装置,系统和方法。 光发射器阵列通过可印刷的介质片投射光,以便由相应的光传感器阵列进行检测。 处理器可操作地连接到光发射器和光传感器阵列,并且被配置为激活光发射器并且接收来自光传感器的输出信号,并且允许精确检测和确定形式顶部(TOF)的位置, 和用于给定的可打印介质片的形状底部(BOF),以及对应于这种片材的多个宽度。 根据一些实施例,也可以以更高的精度检测片材上的标签的位置,因为在其上没有设置标签的区域。
    • 5. 发明申请
    • Infrared Attenuating or Blocking Layer in Optical Proximity Sensor
    • 光学接近传感器中的红外衰减或阻挡层
    • US20110204233A1
    • 2011-08-25
    • US13098436
    • 2011-04-30
    • James CostelloRani SaravananWee Sin Tan
    • James CostelloRani SaravananWee Sin Tan
    • G01J5/20G01J5/10B23P11/00
    • G01S7/4813G01S17/026H03K17/941H03K2017/9455H03K2217/94108Y10T29/49826
    • An optical proximity sensor is provided that comprises an infrared light emitter an infrared light detector, a first molded optically transmissive infrared light pass component disposed over and covering the light emitter and a second molded optically transmissive infrared light pass component disposed over and covering the light detector. Located in-between the light emitter and the first molded optically transmissive infrared light pass component, and the light detector and the second molded optically transmissive infrared light pass component is a gap. Layers of infrared opaque, attenuating or blocking material are disposed on at least some of the external surfaces forming the gap to substantially attenuate or block the transmission of undesired direct, scattered or reflected light between the light emitter and the light detector, and thereby minimize optical crosstalk and interference between the light emitter and the light detector.
    • 提供了一种光学接近传感器,其包括红外光发射器,红外光检测器,设置在光发射器上方并覆盖光发射器的第一模制透光红外光通过部件和设置在光检测器上方并覆盖光检测器的第二模制透光红外光通过部件 。 位于光发射器和第一模制透光型红外光通过部件之间,光检测器和第二模制光透射型红外光通过部件是间隙。 红外不透明,衰减或阻挡材料的层设置在形成间隙的至少一些外表面上,以基本上衰减或阻挡光发射器和光检测器之间的不期望的直接,散射或反射光的透射,从而最小化光 光发射器和光检测器之间的串扰和干扰。
    • 6. 发明申请
    • Metal Shield and Housing for Optical Proximity Sensor with Increased Resistance to Mechanical Deformation
    • 金属屏蔽和光学接近传感器的外壳,增加了对机械变形的抵抗力
    • US20100282951A1
    • 2010-11-11
    • US12463361
    • 2009-05-08
    • James CostelloWee Sin Tan
    • James CostelloWee Sin Tan
    • H01J40/14G21F1/00B23P17/04
    • G01V8/10G01D11/245Y10T29/49
    • An optical proximity sensor is provided that comprises an infrared light emitter operably connected to and driven by a light emitter driving circuit and a light detector operably connected to and driven by a detector sensing circuit. A metal housing or shield formed of metal and comprising first and second apertures surrounds the light emitter and the light detector such that at least a first portion of light emitted by the light detector passes through the first aperture, and at least a second portion of the first portion of light reflected from an object of interest in proximity to the sensor passes through the second aperture for detection by the light detector. The metal housing or shield further comprises first and second modules within which the light detector and light detector are disposed, respectively. The first and second modules comprise adjoining optically opaque metal inner sidewalls that provide optical isolation between the first and second modules, where the first and second inner sidewalls are separated from one another by at least one metal tab foldably disposed therebetween. The at least one metal tab is configured to transfer a vertical force applied to one end of one module to an opposite end of the other module.
    • 提供了一种光学接近传感器,其包括可操作地连接到由光发射器驱动电路驱动的红外光发射器和可操作地连接到检测器感测电路并由检测器感测电路驱动的光检测器。 由金属形成并包括第一和第二孔的金属外壳或屏蔽围绕光发射器和光检测器,使得由光检测器发射的光的至少第一部分通过第一孔,并且至少第二部分 从传感器附近的感兴趣物体反射的光的第一部分通过第二孔,由光检测器检测。 金属壳体或屏蔽件还包括分别设置光检测器和光检测器的第一和第二模块。 第一和第二模块包括相邻的光学不透明的金属内侧壁,其在第一和第二模块之间提供光学隔离,其中第一和第二内侧壁通过可折叠地设置在其间的至少一个金属接头彼此分开。 所述至少一个金属接头被构造成将施加到一个模块的一端的垂直力传递到另一个模块的相对端。
    • 9. 发明授权
    • Metal shield and housing for optical proximity sensor with increased resistance to mechanical deformation
    • 金属屏蔽和光学接近传感器的外壳,增加了对机械变形的抵抗力
    • US08420999B2
    • 2013-04-16
    • US12463361
    • 2009-05-08
    • James CostelloWee Sin Tan
    • James CostelloWee Sin Tan
    • B65D6/00B65D1/40B65D85/86B65B7/20G06M7/00
    • G01V8/10G01D11/245Y10T29/49
    • An optical proximity sensor is provided that comprises an infrared light emitter operably connected to and driven by a light emitter driving circuit and a light detector operably connected to and driven by a detector sensing circuit. A metal housing or shield formed of metal and comprising first and second apertures surrounds the light emitter and the light detector such that at least a first portion of light emitted by the light detector passes through the first aperture, and at least a second portion of the first portion of light reflected from an object of interest in proximity to the sensor passes through the second aperture for detection by the light detector. The metal housing or shield further comprises first and second modules within which the light detector and light detector are disposed, respectively. The first and second modules comprise adjoining optically opaque metal inner sidewalls that provide optical isolation between the first and second modules, where the first and second inner sidewalls are separated from one another by at least one metal tab foldably disposed therebetween. The at least one metal tab is configured to transfer a vertical force applied to one end of one module to an opposite end of the other module.
    • 提供了一种光学接近传感器,其包括可操作地连接到由光发射器驱动电路驱动的红外光发射器和可操作地连接到检测器感测电路并由检测器感测电路驱动的光检测器。 由金属形成并包括第一和第二孔的金属外壳或屏蔽围绕光发射器和光检测器,使得由光检测器发射的光的至少第一部分通过第一孔,并且至少第二部分 从传感器附近的感兴趣物体反射的光的第一部分通过第二孔,由光检测器检测。 金属壳体或屏蔽件还包括分别设置光检测器和光检测器的第一和第二模块。 第一和第二模块包括相邻的光学不透明的金属内侧壁,其在第一和第二模块之间提供光学隔离,其中第一和第二内侧壁通过可折叠地设置在其间的至少一个金属接头彼此分开。 所述至少一个金属接头被构造成将施加到一个模块的一端的垂直力传递到另一个模块的相对端。