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    • 22. 发明授权
    • Bar code scanner and method with magnetic and optical readers
    • 条码扫描器和磁光读取器的方法
    • US07017818B2
    • 2006-03-28
    • US10794162
    • 2004-03-04
    • Ali LebaschiScott BradleyHak-Soo Kim
    • Ali LebaschiScott BradleyHak-Soo Kim
    • G06K13/00
    • G06K13/067G06K7/10722G06K7/10782G06K7/14G06K7/1465G06K7/1491G06K13/063
    • An improved card scanner for imaging and decoding indica such as bar codes on a side surface of an inserted card. The device is electrically powered and features a double scanning method using an electronic imaging element and processor which turns off unnecessary power when not required. This is accomplished through the use of a processor and software to determine if a complete image of the bar code on the inserted card has been captured and allowing immediate extracting of data from the bar code and immediate removal of the card. Should the image of the bar code be incomplete, a second scan is conducted of the bar code as it is removed and if complete, data is extracted and if incomplete a complete image formed from the two individual scans. The device also employs a magnetic strip data reader to extract magnetically encoded data.
    • 一种用于在插入卡的侧表面上成像和解码诸如条形码的标记的改进的卡片扫描器。 该设备是电动的,并且具有使用电子成像元件和处理器的双重扫描方法,其在不需要时关闭不必要的电力。 这是通过使用处理器和软件来确定插入的卡上的条形码的完整图像是否已经被捕获并且允许从条形码立即提取数据并立即移除该卡来实现。 如果条形码的图像不完整,则在取出条形码时进行第二次扫描,如果完成,则提取数据,如果不完整,则由两个单独扫描形成的完整图像。 该设备还采用磁条数据读取器来提取磁编码数据。
    • 24. 发明申请
    • Wafer shipper with orientation control
    • 晶圆托运人具有方向控制
    • US20050011808A1
    • 2005-01-20
    • US10621031
    • 2003-07-14
    • James PylantScott Bradley
    • James PylantScott Bradley
    • H01L21/673B65D85/30
    • H01L21/67346H01L21/67369H01L21/67386
    • An injection molded container for storing and transporting wafers includes a base having a wafer area upon which to place a stack of a plurality of wafer assemblies, wherein each wafer assembly includes a wafer frame upon which is mounted a wafer. A protective wall apparatus is positioned around the wafer area, and includes at least one wall contour artifact. Each wafer frame according to the invention includes a corresponding opposite/mating artifact. The wall apparatus and wafer frame are configured so that the wafer frame must be oriented to mate the wall and frame artifacts in order for the wafer frame to be installed in the container.
    • 用于存储和输送晶片的注塑容器包括具有晶片区域的基底,在其上放置多个晶片组件的堆叠,其中每个晶片组件包括晶片框架,在其上安装晶片。 保护壁装置位于晶片区域周围,并且包括至少一个壁面轮廓伪影。 根据本发明的每个晶片框架包括相应的相对/交配假象。 墙壁装置和晶片框架被构造成使得晶片框架必须被定向成与壁和框架伪影交配,以便将晶​​片框架安装在容器中。
    • 28. 发明授权
    • Method of compositing variable alpha fills supporting group opacity
    • 合成变量alpha填充的方法支持组不透明度
    • US08350868B2
    • 2013-01-08
    • US12898517
    • 2010-10-05
    • Albert ChangBin LiaoCameron Murray EdwardsScott Bradley
    • Albert ChangBin LiaoCameron Murray EdwardsScott Bradley
    • G09G5/02
    • G06T11/60
    • A method of compositing a plurality of graphic objects with a compositing buffer, is disclosed. The plurality of graphic objects forming a group is attenuated by group opacity and is composited from a top object to a bottom object. Based on a first mask and the group opacity, a second mask is generated. The first mask stores a remaining possible contribution for further graphic objects below and including the plurality of graphic objects. The plurality of graphic objects in a top down order is processed. In particular, for each graphic object of the plurality of graphic objects: (a) a contribution value for the graphic object using the second mask is determined, the contribution value representing a contribution of the graphic object to the compositing buffer; (b) a colour value of the graphic object is composited with the compositing buffer using the contribution value; and (c) the second mask is updated using the contribution value. The first mask is then updated using the second mask and the group opacity. The updated first mask is configured for further compositing of objects below the plurality of graphic objects.
    • 公开了一种将多个图形对象与合成缓冲器合成的方法。 形成组的多个图形对象由组不透明度衰减,并从顶部对象到底部对象进行合成。 基于第一个掩码和组不透明度,生成第二个掩码。 第一个掩模存储剩余可能的贡献用于下面并且包括多个图形对象的进一步图形对象。 以自顶向下的顺序处理多个图形对象。 特别地,对于多个图形对象的每个图形对象:(a)确定使用第二掩码的图形对象的贡献值,贡献值表示图形对象对合成缓冲器的贡献; (b)图形对象的颜色值使用贡献值与合成缓冲器合成; 和(c)使用贡献值来更新第二掩模。 然后使用第二个掩码和组不透明度更新第一个掩码。 更新的第一掩模被配置用于进一步合成多个图形对象下方的对象。
    • 29. 发明申请
    • METHOD OF COMPOSITING VARIABLE ALPHA FILLS SUPPORTING GROUP OPACITY
    • 组合可变ALPHA膜的方法支持组的可靠性
    • US20110109642A1
    • 2011-05-12
    • US12898517
    • 2010-10-05
    • Albert ChangBin LiaoCameron Murray EdwardsScott Bradley
    • Albert ChangBin LiaoCameron Murray EdwardsScott Bradley
    • G09G5/02
    • G06T11/60
    • A method of compositing a plurality of graphic objects with a compositing buffer, is disclosed. The plurality of graphic objects forming a group is attenuated by group opacity and is composited from a top object to a bottom object. Based on a first mask and the group opacity, a second mask is generated. The first mask stores a remaining possible contribution for further graphic objects below and including the plurality of graphic objects. The plurality of graphic objects in a top down order is processed. In particular, for each graphic object of the plurality of graphic objects: (a) a contribution value for the graphic object using the second mask is determined, the contribution value representing a contribution of the graphic object to the compositing buffer; (b) a colour value of the graphic object is composited with the compositing buffer using the contribution value; and (c) the second mask is updated using the contribution value. The first mask is then updated using the second mask and the group opacity. The updated first mask is configured for further compositing of objects below the plurality of graphic objects.
    • 公开了一种将多个图形对象与合成缓冲器合成的方法。 形成组的多个图形对象由组不透明度衰减,并从顶部对象到底部对象进行合成。 基于第一个掩码和组不透明度,生成第二个掩码。 第一个掩模存储剩余可能的贡献用于下面并且包括多个图形对象的进一步图形对象。 以自顶向下的顺序处理多个图形对象。 特别地,对于多个图形对象的每个图形对象:(a)确定使用第二掩码的图形对象的贡献值,贡献值表示图形对象对合成缓冲器的贡献; (b)图形对象的颜色值使用贡献值与合成缓冲器合成; 和(c)使用贡献值来更新第二掩模。 然后使用第二个掩码和组不透明度更新第一个掩码。 更新的第一掩模被配置用于进一步合成多个图形对象下方的对象。
    • 30. 发明授权
    • Single-use lens assembly
    • 一次性镜头组合
    • US07848035B2
    • 2010-12-07
    • US12233498
    • 2008-09-18
    • Scott DeLappTheodore B. HillRick SorichScott Bradley
    • Scott DeLappTheodore B. HillRick SorichScott Bradley
    • G02B7/02G02B7/00
    • A61N5/06A61B18/18A61B2090/0814A61N2005/0644
    • An optical assembly includes an output optical element having a thermally conductive and optically transmissive material and a thermal conduit in thermal communication with the output optical element and having at least one surface configured to be in thermal communication with at least one heat dissipating surface of a light delivery apparatus. The optical assembly further includes a coupling portion configured to be placed in at least two states. In a first state, the coupling portion is attached to the apparatus such that the at least one surface of the thermal conduit is in thermal communication with the at least one heat dissipating surface. In a second state, the coupling portion is detached from the apparatus after having been attached to the apparatus in the first state and in which the coupling portion is configured to prevent re-attachment of the coupling portion to the apparatus.
    • 光学组件包括具有导热和光学透射材料的输出光学元件和与输出光学元件热连通的热导管,并且具有被配置为与光的至少一个散热表面热连通的至少一个表面 输送装置 光学组件还包括被配置为以至少两种状态放置的联接部分。 在第一状态下,联接部分附接到设备,使得热导管的至少一个表面与至少一个散热表面热连通。 在第二状态下,在第一状态下已经将装置附接到装置之后,联接部分与装置分离,并且联接部分被构造成防止联接部分重新附接到装置。