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    • 7. 发明授权
    • Dispensing applicator for fluids
    • 点胶器用于流体
    • US08608397B2
    • 2013-12-17
    • US13485013
    • 2012-05-31
    • Jack W. KaufmanJames Brown
    • Jack W. KaufmanJames Brown
    • B43K5/14
    • A61M35/006A61M35/003A61M2210/04B43M11/06
    • A hand-held dispensing applicator comprising a source of fluid, a frangible applicator tip attached to the fluid source, and an absorbent member attached to the frangible applicator tip. When the frangible applicator tip is broken, fluid flows from the source to the absorbent member, whereby the fluid is applied and spread on a surface. Preferably, the frangible applicator tip comprises a support element permanently connected to the fluid source, a relatively rigid tongue element extending outwardly of the support element, and a frangible region therebetween. Preferably, the tongue element comprises ribs for reinforcing the tongue element to resist unintentional breaking of the frangible region. More preferably, the applicator tip comprises a semi-permeable or non-permeable cover disposed around the frangible region to control the speed and direction of the dispersion of the fluid in the absorbent member. Adaptive embodiments allow the generation of designs applicable to a particular medical purpose.
    • 一种手持式分配器,其包括流体源,连接到流体源的易碎施用器尖端以及附接到易碎施用器尖端的吸收构件。 当易碎的施用器尖端被破坏时,流体从源流向吸收构件,由此将流体施加并扩散在表面上。 优选地,易碎施用器尖端包括永久地连接到流体源的支撑元件,从支撑元件向外延伸的相对刚性的舌元件以及它们之间的易碎区域。 优选地,舌元件包括用于加强舌元件以防止易碎区域的无意破坏的肋。 更优选地,施用器末端包括设置在易碎区域周围的半透性或不可渗透的盖,以控制吸收构件中的流体分散体的速度和方向。 自适应实施例允许生成适用于特定医疗目的的设计。
    • 8. 发明授权
    • Powder feed cylinder assemblies and powder feeders
    • 粉末进料缸组件和粉末进料器
    • US08297478B2
    • 2012-10-30
    • US12241438
    • 2008-09-30
    • Thomas Malcolm HughesJames BrownVincent PapottoPhil Roark
    • Thomas Malcolm HughesJames BrownVincent PapottoPhil Roark
    • B65D88/54G01F11/00G01F11/20B65G47/00
    • G01F13/005B23K26/144B23K26/147B23K26/702
    • Powder feed cylinder assemblies and powder feeders are provided. A powder feed cylinder assembly includes a cylinder, a bit, and bushings. The cylinder has a main passage, a first feed channel, and a second feed channel, each feed channel at two axial locations between the cylinder's two ends. The bit extends through the main passage and has an outer surface including a helical channel formed thereon. A center bushing is disposed in the main passage between the two axial locations and has a first axially-extending passage through which the bit extends. The first end bushing is disposed in the main passage on one side of the center bushing and has a second axially-extending passage through which the bit extends. The second end bushing is disposed in the cylinder on the other side of the center bushing and has a third axially-extending passage through which the bit extends.
    • 提供粉末进料缸组件和粉末进料器。 粉末进料缸组件包括气缸,钻头和衬套。 气缸具有主通道,第一进料通道和第二进料通道,每个进料通道在气缸两端之间的两个轴向位置。 钻头延伸穿过主通道并且具有包括形成在其上的螺旋通道的外表面。 中心衬套设置在两个轴向位置之间的主通道中,并且具有第一轴向延伸的通道,钻头通过该通道延伸。 第一端衬套设置在中间衬套的一侧的主通道中,并且具有第二轴向延伸的通道,钻头通过该通道延伸。 第二端衬套设置在中心衬套的另一侧的气缸中,并且具有第三轴向延伸的通道,钻头通过该通道延伸。
    • 9. 发明授权
    • Dispensing applicator for fluids
    • 点胶器用于流体
    • US08186897B2
    • 2012-05-29
    • US11740920
    • 2007-04-27
    • Jack W. KaufmanJames Brown
    • Jack W. KaufmanJames Brown
    • B43K5/14
    • A61M35/006A45D34/042A61M35/003B43M11/06
    • A hand-held dispensing applicator comprising a source of fluid, a frangible applicator tip attached to the fluid source, and an absorbent member attached to the frangible applicator tip. When the frangible applicator tip is broken, fluid flows from the source to the absorbent member, whereby the fluid is applied and spread on a surface. Preferably, the frangible applicator tip comprises a support element permanently connected to the fluid source, a relatively rigid tongue element extending outwardly of the support element, and a frangible region there between. Preferably, the tongue element comprises ribs for reinforcing the tongue element to resist unintentional breaking of the frangible region. More preferably, the applicator tip comprises a semi-permeable or non-permeable cover disposed around the frangible region to control the speed and direction of the dispersion of the fluid in the absorbent member. Adaptive embodiments allow the generation of designs applicable to a particular medical purpose.
    • 一种手持式分配器,其包括流体源,连接到流体源的易碎施用器尖端以及附接到易碎施用器尖端的吸收构件。 当易碎的施用器尖端破裂时,流体从源流向吸收构件,由此将流体施加并扩散在表面上。 优选地,易碎的施用器尖端包括永久地连接到流体源的支撑元件,从支撑元件向外延伸的相对刚性的舌元件以及其间的易碎区域。 优选地,舌元件包括用于加强舌元件以防止易碎区域的无意破坏的肋。 更优选地,施用器末端包括设置在易碎区域周围的半透性或不可渗透的盖,以控制吸收构件中的流体分散体的速度和方向。 自适应实施例允许生成适用于特定医疗目的的设计。
    • 10. 发明申请
    • Delayed GeoTagging
    • 延迟地理标记
    • US20120105279A1
    • 2012-05-03
    • US12917279
    • 2010-11-01
    • James BrownMakarand PhatakWilliam Kerry Keal
    • James BrownMakarand PhatakWilliam Kerry Keal
    • G01S19/41
    • G01S19/42G01S19/14G01S19/27
    • Various methods, apparatuses, and systems for providing a delayed geotag using GPS devices are described. The GPS device includes a wireless receiver configured to receive satellite state data and satellite range measurements from a plurality of satellites, a communications interface in communication with a media device, and a position engine configured to calculate a geotag. The GPS device can be configured to receive satellite range measurements from one or more satellites at a first point in time when the satellite state data for a minimum number of the satellites is unavailable, and to calculate the satellite state data at that time using satellite state data received at a second, later point in time. The satellite state information at the first point in time is calculated using an algorithm to extrapolate the satellite state data back to the first point in time when the satellite range measurements were made. The GPS device can calculate a geotag using the calculated satellite state data at the first point in time and the corresponding satellite range measurements.
    • 描述了使用GPS设备提供延迟地理标识的各种方法,设备和系统。 GPS设备包括被配置为从多个卫星接收卫星状态数据和卫星测距的无线接收器,与媒体设备通信的通信接口以及被配置为计算地理标记的位置引擎。 GPS设备可以被配置为在卫星的最小数量的卫星状态数据不可用的第一时间点从一个或多个卫星接收卫星测距,并且使用卫星状态计算当时的卫星状态数据 在第二个时间点接收到的数据。 使用算法来计算第一时间点的卫星状态信息,以将卫星状态数据推断回到进行卫星测距的第一个时间点。 GPS设备可以使用第一时间点的计算的卫星状态数据和相应的卫星测距来计算地理标记。