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    • 81. 发明申请
    • DIGITAL RADIOGRAPHIC DETECTOR ARRAY INCLUDING SPACERS AND METHODS FOR SAME
    • 数字放射性检测器阵列包括间隔物和方法
    • US20120153174A1
    • 2012-06-21
    • US12973983
    • 2010-12-21
    • Timothy J. Tredwell
    • Timothy J. Tredwell
    • G01T1/20H01L31/18
    • H01L27/14663H01L27/14603
    • Embodiments relate to detector imaging arrays with highly robust mounting of scintillators (e.g., scintillating phosphor screens) to imaging arrays. For example, the detector arrays comprise spacers to define a space between or separate the scintillator from the imaging array. Embodiments according to present teachings can provide projection radiographic imaging apparatuses, including a scintillator, an imaging array including a plurality of pixels formed over a substrate, and a plurality of spacers disposed between an active surface of the imaging array and the scintillator. The spacers can reduce or prevent contact between a surface of the scintillator and the active surface of the imaging array, strengthen or control attachment therebetween, or adjust light transmittance therebetween.
    • 实施例涉及具有高度鲁棒的闪烁体(例如,闪烁荧光屏)到成像阵列的检测器成像阵列。 例如,检测器阵列包括间隔物,以限定闪烁体与成像阵列之间的间隔或分离闪烁体。 根据本发明的实施例可以提供投影放射线照相成像设备,包括闪烁体,包括形成在衬底上的多个像素的成像阵列以及设置在成像阵列的有效表面和闪烁器之间的多个间隔物。 间隔物可以减少或防止闪烁体的表面与成像阵列的有效表面之间的接触,加强或控制它们之间的连接,或调节它们之间的透光率。
    • 83. 发明申请
    • DIGITAL RADIOGRAPHY IMAGER WITH BURIED INTERCONNECT LAYER IN SILICON-ON-GLASS AND METHOD OF FABRICATING SAME
    • 硅胶玻璃中的带有互连连接层的数字放射成像仪及其制造方法
    • US20120049076A1
    • 2012-03-01
    • US12862204
    • 2010-08-24
    • Timothy J. Tredwell
    • Timothy J. Tredwell
    • G01T1/24H01L31/18
    • H01L27/14658H01L31/103H01L31/1804Y02E10/547Y02P70/521
    • A method embodiment for forming an imaging array includes providing a glass substrate having a top surface, forming a patterned conductive layer on the top surface of the glass substrate, and forming an insulating layer on the patterned conductive layer on a side of the patterned conductive layer opposite the glass substrate. The method can include providing a single crystal silicon substrate having an internal separation layer proximate a first surface of the single crystal silicon substrate. The single crystal silicon substrate is secured to the glass substrate such that the first surface of the single crystal silicon substrate corresponds to the insulating layer. The single crystal silicon substrate is separated at the internal separation layer to create an exposed surface opposite the first surface of the single crystal silicon substrate and an array including one or more photosensitive elements and/or readout elements is formed thereon.
    • 用于形成成像阵列的方法实施例包括提供具有顶表面的玻璃衬底,在玻璃衬底的顶表面上形成图案化的导电层,并且在图案化的导电层一侧的图案化导电层上形成绝缘层 与玻璃基板相对。 该方法可以包括提供具有靠近单晶硅衬底的第一表面的内部分离层的单晶硅衬底。 单晶硅衬底固定到玻璃衬底上,使得单晶硅衬底的第一表面对应于绝缘层。 在内部分离层处分离单晶硅衬底以产生与单晶硅衬底的第一表面相对的暴露表面,并且在其上形成包括一个或多个光敏元件和/或读出元件的阵列。
    • 84. 发明授权
    • Digital radiography imager with buried interconnect layer in silicon-on-glass and method of fabricating same
    • 具有硅玻璃中的埋置互连层的数字射线成像仪及其制造方法
    • US07948017B2
    • 2011-05-24
    • US12487678
    • 2009-06-19
    • Timothy J. TredwellJackson Lai
    • Timothy J. TredwellJackson Lai
    • H01L31/062H01L31/113
    • H01L27/14692H01L27/14609H01L27/14689
    • A method of forming an imaging array includes providing a single crystal silicon substrate having an internal separation layer, forming a patterned conductive layer proximate a first side of the single crystal silicon substrate, forming an electrically conductive layer on the first side of the single crystal silicon substrate and in communication with the patterned conductive layer, securing the single crystal silicon substrate having the patterned conductive layer and electrically conductive layer formed thereon to a glass substrate with the first side of the single crystal silicon substrate proximate the glass substrate, separating the single crystal silicon substrate at the internal separation layer to create an exposed surface opposite the first side of the single crystal silicon substrate and forming an array comprising a plurality of photosensitive elements and readout elements on the exposed surface.
    • 一种形成成像阵列的方法包括提供具有内部分离层的单晶硅衬底,在单晶硅衬底的第一侧附近形成图案化的导电层,在单晶硅的第一面上形成导电层 衬底并与图案化导电层连通,将具有图案化导电层的单晶硅衬底和其上形成的导电层固定在玻璃衬底上,使单晶硅衬底的第一侧靠近玻璃衬底,将单晶 硅衬底,以产生与单晶硅衬底的第一侧相对的暴露表面,并且在暴露表面上形成包括多个光敏元件和读出元件的阵列。
    • 89. 发明授权
    • Printer capable of forming an image on a receiver substrate according to type of receiver substrate and a method of assembling the printer
    • 能够根据接收器基板的类型在接收器基板上形成图像的打印机以及组装打印机的方法
    • US06793307B2
    • 2004-09-21
    • US10268364
    • 2002-10-10
    • Robert W. SpurrKurt M. SangerTimothy J. Tredwell
    • Robert W. SpurrKurt M. SangerTimothy J. Tredwell
    • B41J2938
    • B41J29/393B41J11/009
    • A printer capable of forming an image on a receiver substrate according to type of receiver substrate, and a method of assembling the printer. An identifier containing identifier information is associated with each component of the receiver substrate which, for example, comprises paper and, optionally, laminate media. A sensor is disposed to read the identifier information so that an image forming operation can be adjusted based on identified receiver substrate components and media. For example transponder, serving as the identifier, is coupled to a memory device capable of storing information characteristic of media type. A transceiver, serving as the sensor, is disposed within the printer. The transceiver includes antennae disposed for polling an individual transponder attached to each media type. The transponder receives a first radio frequency field from the transceiver and, deriving power and address information from the first frequency, then generates a second radio frequency field in response. The second radio frequency field is characteristic of the data stored in the memory. As instructed by a control logic processor, the transceiver can both read manufacturing data from the transponder concerning the media type or write usage and processing data to the transponder for storage in the memory.
    • 一种能够根据接收器基板的类型在接收器基板上形成图像的打印机以及组装打印机的方法。 包含标识符信息的标识符与例如包含纸和可选地层压介质的接收器基板的每个部件相关联。 设置传感器以读取标识符信息,使得可以基于所识别的接收器基板部件和介质来调整图像形成操作。 例如,作为标识符的应答器被耦合到能够存储介质类型的信息特性的存储器件。 用作传感器的收发器设置在打印机内。 收发器包括设置用于轮询连接到每种媒体类型的单个应答器的天线。 应答器从收发器接收第一射频场,并且从第一频率导出功率和地址信息,然后产生响应的第二射频场。 第二射频场是存储在存储器中的数据的特征。 根据控制逻辑处理器的指示,收发器可以从应答器读取关于媒体类型的制造数据或将应用程序的写入使用和处理数据读取到存储器中。
    • 90. 发明授权
    • Imaging apparatus capable of forming an image consistent with type of imaging consumable loaded therein and method of assembling the apparatus
    • 能够形成与装入其中的成像耗材类型相一致的图像的成像装置和组装装置的方法
    • US06644544B1
    • 2003-11-11
    • US09334021
    • 1999-06-16
    • Robert W. SpurrKurt M. SangerTimothy J. Tredwell
    • Robert W. SpurrKurt M. SangerTimothy J. Tredwell
    • G06F1700
    • G03G15/5079G03B27/32G03G15/0855G03G15/0863G03G15/0865G03G15/553G03G2215/00109
    • Imaging apparatus capable of forming an image consistent with type of imaging consumable loaded therein, and method of assembling the apparatus. The imaging apparatus reports the consumable type and manufacturer batch identification to a remote computer. The remote computer responds by returning batch-specific information that may affect processing parameters for the imaging apparatus. In the preferred embodiment, an electrically programmable read/write memory contained in a transponder is integrally attached to the consumable package. The transponder communicates with a transceiver, disposed within the imaging apparatus. The transceiver has antenna and support components for polling each transponder. As instructed by a control logic processor, the transceiver can both read manufacturing data from the transponder about the consumable and write usage and processing data to the transponder for storage in memory. A networked server connects to the control logic processor and to a network for communication with remote computer.
    • 能够形成与装入其中的成像耗材类型一致的图像的成像装置,以及组装装置的方法。 成像设备将消耗品类型和制造商批次标识报告给远程计算机。 远程计算机通过返回可影响成像设备的处理参数的批次特定信息进行响应。 在优选实施例中,包含在应答器中的电可编程读/写存储器一体地附接到可消耗包装。 应答器与设置在成像设备内的收发器进行通信。 收发器具有用于轮询每个转发器的天线和支持组件。 根据控制逻辑处理器的指示,收发器可以从应答器读取关于消耗品的制造数据,并且将使用和处理数据写入应答器以存储在存储器中。 网络服务器连接到控制逻辑处理器和网络以与远程计算机进行通信。