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    • 1. 发明申请
    • MICROPLATE AND METHODS FOR MAKING THE SAME
    • 微波炉及其制造方法
    • WO2010009199A2
    • 2010-01-21
    • PCT/US2009/050639
    • 2009-07-15
    • DOUGLAS MACHINE INC.PETERSON, Bruce, Malcolm
    • PETERSON, Bruce, Malcolm
    • B01L3/00B29C59/04
    • B01L3/50851B01L2200/025B29C51/00B29C65/18B29C66/112B29C66/131B29C66/5346B29C66/61B29L2031/712Y10T156/1062
    • A microplate (10) includes a carrier (12) having a plate (20) and an annular perimeter wall (30) to define a recess (34). An array of holes (26) extends through the plate (20). A tape piece (16), die cut from a flexible tape (60) includes an array of wells (54) each extending through and having an opening (56) extending into the well (54). The array of wells (54) has a number and locations corresponding to the array of holes (26). The openings (56) have sizes corresponding to the holes (26). An upper surface (50) of the tape piece (16) is abutted with and bonded to the bottom face (24) of the plate (20) with the openings (56) corresponding to the array of holes (26). The slideable receipt of an annular outer periphery (58) of the tape piece (16) insures that the array of wells (54) are aligned to correspond to the array of holes (26) as die cutting of tape piece (16) insures that the array of wells (54) are at consistent positions relative to the annular outer periphery (58).
    • 微板(10)包括具有板(20)和限定凹部(34)的环形周壁(30)的载体(12)。 一组孔(26)延伸穿过板(20)。 从柔性带(60)模切的带片(16)包括孔阵列(54),每个孔延伸穿过并且具有延伸到井(54)中的开口(56)。 井的阵列(54)具有对应于孔阵列(26)的数量和位置。 开口(56)具有与孔(26)对应的尺寸。 带片(16)的上表面(50)与板(20)的底面(24)邻接并接合,其中开孔(56)对应于孔阵列(26)。 带片(16)的环形外围(58)的可滑动接收确保孔(54)的阵列对齐以对应于孔阵列(26),因为带片(16)的模切确保 井的阵列(54)相对于环形外围(58)处于一致的位置。
    • 2. 发明申请
    • CAGELESS, PLUGGABLE OPTOELECTRONIC DEVICE
    • 无缝,可插入的光电子器件
    • WO2007037946A3
    • 2007-12-06
    • PCT/US2006035093
    • 2006-09-08
    • STRATOS INT INCKOWALKOWSKI ANTHONY SPETERSON BRUCE
    • KOWALKOWSKI ANTHONY SPETERSON BRUCE
    • H05K5/00
    • G02B6/4292G02B6/4246
    • The device includes a housing, a printed circuit board, a first optical subassembly, a second optical subassembly, and a lever. The device is pluggable to a host structure. The housing has a channel and ground spring fingers. The printed circuit board has contact traces and is mounted to the housing. The first and second optical subassemblies are mounted to the printed circuit board. The lever is rotatably mounted to the housing. The lever includes a rotatably mounted portion, a free end, and an actuation surface for actuation by a user. The free end of the lever forms a hook. In a locked position of the device to the host structure, the ground spring fingers contact and make electrical contact with a faceplate of the host structure, and the hook engages a slot of a circuit board of the host structure.
    • 该装置包括壳体,印刷电路板,第一光学子组件,第二光学子组件和杠杆。 该设备可插入主机结构。 外壳有一个通道和接地弹簧指。 印刷电路板具有接触痕迹并被安装到壳体。 第一和第二光学子组件被安装到印刷电路板。 杠杆可旋转地安装到壳体。 杠杆包括可旋转安装部分,自由端和用于由用户致动的致动表面。 杠杆的自由端形成一个钩子。 在装置与主机结构的锁定位置中,接地弹簧指接触并与主机结构的面板电接触,并且钩与主机结构的电路板的槽接合。
    • 5. 发明申请
    • SEED METERING DEVICE FOR AGRICULTURAL SEEDER
    • 农业用种子测量装置
    • WO2010141627A3
    • 2011-02-24
    • PCT/US2010037123
    • 2010-06-02
    • GREAT PLAINS MFG INCPETERSON BRUCE DNELSON BRENT W
    • PETERSON BRUCE DNELSON BRENT W
    • A01C7/04
    • A01C7/046
    • A seed metering device (10) for agricultural seeders has a meter housing (17), a seed disk (22) covering an open side of the meter housing (17), and a brush assembly(27) mounted within the meter housing (17) and contacting the seed disk (22). The meter housing (17) has a seed delivery opening (19) for delivering a supply of seed into a seed pool area (20), an air inlet (26) provided above the seed pool (20) area for receiving a supply of positive pressure air into the meter housing (17), and a seed exit area (31) where seed can be dropped into a seed tube (15). The seed disk (22) has seed pockets (23) spaced around its outer circumference that pass through the seed pool (20) and pick up individual seeds as the seed disk (22) rotates. The device (10) includes several features that help singulate and drop seeds in a way that provides a desired number of seeds per acre and a uniform spacing between the seeds in the furrow.
    • 一种用于农业播种机的种子计量装置(10)具有仪表外壳(17),覆盖仪表壳体(17)的开口侧的种子盘(22)和安装在仪表壳体(17)内的刷子组件(27) )并接触种子盘(22)。 仪表外壳(17)具有用于将种子供应输送到种子池区域(20)中的种子输送开口(19),设置在种子池(20)区域上方的空气入口(26),用于接收正向 压力空气进入仪表壳体(17),以及种子出射区域(31),种子可以落入种子管(15)中。 种子盘(22)具有围绕其外圆周隔开的种子囊(23),其通过种子池(20)并随种子盘(22)旋转而拾取单个种子。 装置(10)包括几个特征,其帮助以每英亩提供所需数量的种子并且在沟中的种子之间具有均匀间距的方式对种子进行种植和种子。
    • 6. 发明申请
    • TAPE ADAPTOR
    • 胶带适配器
    • WO2009094495A1
    • 2009-07-30
    • PCT/US2009/031755
    • 2009-01-23
    • DOUGLAS MACHINE, INC.PETERSON, BruceURKE, Brent
    • PETERSON, BruceURKE, Brent
    • B01L3/00G01N35/00
    • B01L3/5085B01L3/50855B01L3/545B01L9/523B01L2200/025B01L2300/021B01L2300/0829B01L2300/0858B01L2300/123G01N35/00009
    • A tape adaptor (8) includes a bottom plate (20) and a top plate (60) mounted to the bottom plate (20) with a space (40) defined between an upper side wall (26) of the bottom plate (20) and a lower face (68) of the top plate (60) for receiving a tape segment (100) remaining on or cut from a continuous array tape (10). The tape segment (100) includes an array of wells (54) between two edges (52). A slit (46) is formed between an end (62) of the top plate (60) and an end (22) of the bottom plate (20). The tape segment (100) is slideably extended through the slit (46) into the space (40) with the edges (52) sliding on two ridges (38) on two longitudinal edges (36) of the bottom plate (20). The bottom plate (20) can include at least one groove (30) to receive the array of wells (54) of the tape segment (100). The tape segment (100) is positioned relative to the tape adaptor (8) by the ridges (38) or the groove (30).
    • 磁带适配器(8)包括底板(20)和安装到底板(20)的顶板(60),其中限定在底板(20)的上侧壁(26)之间的空间(40) 和顶板(60)的下表面(68),用于接收保持在连续阵列带(10)上或从连续阵列带(10)切割的带段(100)。 带段(100)包括位于两个边缘(52)之间的孔阵列(54)。 在顶板(60)的端部(62)和底板(20)的端部(22)之间形成狭缝(46)。 所述带段(100)通过所述狭缝(46)可滑动地延伸到所述空间(40)中,所述边缘(52)在所述底板(20)的两个纵向边缘(36)上的两个脊(38)上滑动。 底板(20)可以包括至少一个凹槽(30),以容纳带段(100)的孔阵列(54)。 带段(100)通过脊(38)或凹槽(30)相对于带适配器(8)定位。
    • 7. 发明申请
    • CAGELESS, PLUGGABLE OPTOELECTRONIC DEVICE
    • 无缝,可插拔光电设备
    • WO2007037946A2
    • 2007-04-05
    • PCT/US2006/035093
    • 2006-09-08
    • STRATOS INTERNATIONAL, INC.KOWALKOWSKI, Anthony S.PETERSON, Bruce
    • KOWALKOWSKI, Anthony S.PETERSON, Bruce
    • H05K5/00
    • G02B6/4292G02B6/4246
    • The device includes a housing, a printed circuit board, a first optical subassembly, a second optical subassembly, and a lever. The device is pluggable to a host structure. The housing has a channel and ground spring fingers. The printed circuit board has contact traces and is mounted to the housing. The first and second optical subassemblies are mounted to the printed circuit board. The lever is rotatably mounted to the housing. The lever includes a rotatably mounted portion, a free end, and an actuation surface for actuation by a user. The free end of the lever forms a hook. In a locked position of the device to the host structure, the ground spring fingers contact and make electrical contact with a faceplate of the host structure, and the hook engages a slot of a circuit board of the host structure.
    • 该装置包括壳体,印刷电路板,第一光学子组件,第二光学子组件和杆。 该设备可插拔到主机结构。 外壳有一个通道和接地弹簧手指。 印刷电路板具有接触痕迹并安装在外壳上。 第一和第二光学子组件安装到印刷电路板。 杠杆可旋转地安装在壳体上。 杠杆包括可旋转地安装的部分,自由端和用于由使用者致动的致动表面。 杠杆的自由端形成一个钩子。 在设备到主机结构的锁定位置中,接地弹簧指接触并与主机结构的面板电接触,并且钩接合主机结构的电路板的槽。
    • 8. 发明申请
    • METHOD AND SYSTEM FOR DYNAMIC VISUALIZATION OF MULTI-DIMENSIONAL DATA
    • 用于多维数据的动态可视化的方法和系统
    • WO2004057458A2
    • 2004-07-08
    • PCT/US2003/040425
    • 2003-12-17
    • TERASTAT, INC.PETERSON, Bruce, A.
    • PETERSON, Bruce, A.
    • G06F3/14
    • G06T11/206
    • Methods and systems for dynamic visualization of highly dimensional data are provided. Example embodiments provide a Dynamic Visualization System (a "DVS"), which maps data attributes to visualization dimensions and automatically imputes attribute values on-the-fly for each value of a sequencing dimension. Data having different resolutions can be simultaneously displayed in the same visualization. In one embodiment, the DVS comprises a Dynamic Data Management System with a user interface for specifying and mapping attributes, and one or more Dynamic Visualization Engines with near real-time control user interfaces. These components cooperate to define visualization scenarios based upon specified data subsets, determine and automatically execute a defined visualization, and allow analysts and other users to interactively modify the visualization.
    • 提供了用于高度量化数据的动态可视化的方法和系统。 示例实施例提供动态可视化系统(“DVS”),其将数据属性映射到可视化维度并且自动地针对排序维度的每个值即时地运算属性值。 具有不同分辨率的数据可以同时显示在相同的可视化中。 在一个实施例中,DVS包括具有用于指定和映射属性的用户界面的动态数据管理系统,以及具有近实时控制用户界面的一个或多个动态可视化引擎。 这些组件合作根据指定的数据子集定义可视化场景,确定并自动执行定义的可视化,并允许分析师和其他用户交互式修改可视化。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR DYNAMIC VISUALIZATION OF MULTI-DIMENSIONAL DATA
    • 用于多维数据的动态可视化的方法和系统
    • WO2004057458A3
    • 2004-12-16
    • PCT/US0340425
    • 2003-12-17
    • TERASTAT INCPETERSON BRUCE A
    • PETERSON BRUCE A
    • G06F3/14G06T11/20G06T17/40
    • G06T11/206
    • Methods and systems for dynamic visualization of highly dimensional data are provided. Example embodiments provide a Dynamic Visualization System (a "DVS"), which maps data attributes to visualization dimensions and automatically imputes attribute values on-the-fly for each value of a sequencing dimension. Data having different resolutions can be simultaneously displayed in the same visualization. In one embodiment, the DVS comprises a Dynamic Data Management System with a user interface for specifying and mapping attributes, and one or more Dynamic Visualization Engines with near real-time control user interfaces. These components cooperate to define visualization scenarios based upon specified data subsets, determine and automatically execute a defined visualization, and allow analysts and other users to interactively modify the visualization.
    • 提供了用于高度量化数据的动态可视化的方法和系统。 示例实施例提供动态可视化系统(“DVS”),其将数据属性映射到可视化维度并且自动地针对排序维度的每个值即时运算属性值。 具有不同分辨率的数据可以同时显示在相同的可视化中。 在一个实施例中,DVS包括具有用于指定和映射属性的用户界面的动态数据管理系统,以及具有近实时控制用户界面的一个或多个动态可视化引擎。 这些组件协作定义基于指定数据子集的可视化场景,确定并自动执行定义的可视化,并允许分析师和其他用户交互式地修改可视化。