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    • 5. 发明申请
    • Vascular graft
    • 血管移植
    • US20060229710A1
    • 2006-10-12
    • US11386869
    • 2006-03-23
    • Thomas O'BrienMichael WalshTimothy McGloughlinPierce GraceSiobhan O'CallaghanPaul Devereux
    • Thomas O'BrienMichael WalshTimothy McGloughlinPierce GraceSiobhan O'CallaghanPaul Devereux
    • A61F2/06
    • A61F2/06A61F2002/065
    • A vascular graft (30) comprises a proximal inlet section (31), a first distal section (32) and a second distal section (33). The first distal section (32) and the second distal section (33) are attached to the proximal inlet section (31) at a Y-shaped bifurcation region. In use the proximal inlet section (31) is attached to a first part (34) of a host artery in an end-to-side anastomosis. A second part (35) of the host artery is cut to form a first section (36) of the host artery on a first side of the cut and a second section (37) of the host artery on a second side of the cut. The first distal section (32) is attached to the first section (36) in an end-to-end anastomosis, and the second distal section (33) is attached to the second section (37) in an end-to-end anastomosis. When implanted the graft (30) directs blood flow from the first part (34) of the host artery through the proximal inlet section (31), into the second distal section (33) and into the second section (37) of the host artery along a single flow path.
    • 血管移植物(30)包括近端入口部分(31),第一远端部分(32)和第二远端部分(33)。 第一远端部分(32)和第二远端部分(33)在Y形分叉区域附接到近侧入口部分(31)。 在使用中,近端入口部分(31)以端对侧吻合方式连接到宿主动脉的第一部分(34)。 主动脉的第二部分(35)被切割以在切口的第一侧上形成主动脉的第一部分(36)和在切口的第二侧上的主动脉的第二部分(37)。 第一远端部分(32)以端对端吻合方式附接到第一部分(36),并且第二远端部分(33)以端对端吻合方式附接到第二部分(37) 。 当移植物(30)植入时,将来自主动脉的第一部分(34)的血液通过近侧入口部分(31)引导到第二远端部分(33)中并进入主动脉的第二部分(37) 沿着单个流动路径。
    • 8. 发明授权
    • Circuits and methods for calibrating lens displacement
    • 用于校准透镜位移的电路和方法
    • US08237851B2
    • 2012-08-07
    • US12497237
    • 2009-07-02
    • Sang Ton NgoThomas O'BrienSridhar KotikalapoodiM. Abid Hussain
    • Sang Ton NgoThomas O'BrienSridhar KotikalapoodiM. Abid Hussain
    • H04N5/232G03B13/00G01R27/26
    • G03B13/36
    • Embodiments of the present invention include circuits and methods for calibrating lens displacement in a voltage controlled actuator. In one embodiment, a calibration circuit comprises a programmable voltage source that provides a voltage to a control terminal of an actuator to set a lens displacement, a switch that selectively decouples said programmable voltage source from said control terminal, a current source that provides a reference current to said control terminal when the control terminal is decoupled from said programmable voltage source, a comparator that senses a voltage difference between said programmable voltage source and said control terminal, and a timer coupled to an output of the comparator. The timer measures a time period required to increase the control terminal voltage. The capacitance of the actuator may be determined and used to calibrate the position of a lens.
    • 本发明的实施例包括用于校准电压控制致动器中的透镜位移的电路和方法。 在一个实施例中,校准电路包括可编程电压源,其向致动器的控制端子提供电压以设置透镜位移,选择性地将所述可编程电压源与所述控制端子分离的开关,提供参考的电流源 当控制端从所述可编程电压源解耦时,电流到所述控制端,感测所述可编程电压源与所述控制端之间的电压差的比较器和耦合到所述比较器的输出的定时器。 定时器测量增加控制端电压所需的时间。 可以确定致动器的电容并用于校准透镜的位置。
    • 9. 发明申请
    • CIRCUITS AND METHODS FOR CALIBRATING LENS DISPLACEMENT
    • 用于校准镜头位移的电路和方法
    • US20110001832A1
    • 2011-01-06
    • US12497237
    • 2009-07-02
    • Sang Ton NgoThomas O'BrienSridhar KotikalapoodiM. Abid Hussain
    • Sang Ton NgoThomas O'BrienSridhar KotikalapoodiM. Abid Hussain
    • H04N17/00
    • G03B13/36
    • Embodiments of the present invention include circuits and methods for calibrating lens displacement in a voltage controlled actuator. In one embodiment, a calibration circuit comprises a programmable voltage source that provides a voltage to a control terminal of an actuator to set a lens displacement, a switch that selectively decouples said programmable voltage source from said control terminal, a current source that provides a reference current to said control terminal when the control terminal is decoupled from said programmable voltage source, a comparator that senses a voltage difference between said programmable voltage source and said control terminal, and a timer coupled to an output of the comparator. The timer measures a time period required to increase the control terminal voltage. The capacitance of the actuator may be determined and used to calibrate the position of a lens.
    • 本发明的实施例包括用于校准电压控制致动器中的透镜位移的电路和方法。 在一个实施例中,校准电路包括可编程电压源,其向致动器的控制端子提供电压以设置透镜位移,选择性地将所述可编程电压源与所述控制端子分离的开关,提供参考的电流源 当控制端从所述可编程电压源解耦时,电流到所述控制端,感测所述可编程电压源与所述控制端之间的电压差的比较器和耦合到所述比较器的输出的定时器。 定时器测量增加控制端电压所需的时间。 可以确定致动器的电容并用于校准透镜的位置。
    • 10. 发明申请
    • Flexible circuit temperature sensor assembly for flanged mounted electronic devices
    • 用于法兰安装的电子设备的柔性电路温度传感器组件
    • US20070248142A1
    • 2007-10-25
    • US11391826
    • 2006-03-29
    • Timothy RountreeThomas O'BrienKenneth Beghini
    • Timothy RountreeThomas O'BrienKenneth Beghini
    • G01K1/14
    • G01K1/14G01K1/16G01K7/00
    • A temperature sensing system for a flange mounted device is provided. The temperature sensing system 100 can be comprised of a flexible wiring board 102. The temperature sensing system can be further comprised of a temperature sensing device 122 mounted to the flexible wiring board. The flexible wiring board can have one or more conductive traces 114a, 114b, 114c disposed thereon. The conductive traces can form an electrical connection with the temperature sensing device. The temperature sensing system can also comprise a thermal pad directly connected to the temperature sensing device. The thermal pad can be formed of a thermal conductor. The thermal pad can also have a thermal contact surface. The thermal contact surface can be sized and shaped for direct physical contact with a portion of the device 302, wherein thermal energy is communicated directly from the thermal pad to the temperature sensing device. A method for sensing a temperature of a flange mounted device is also provided.
    • 提供了一种用于法兰安装装置的温度感测系统。 温度感测系统100可以由柔性布线板102组成。 温度感测系统还可以包括安装到柔性布线板的温度感测装置122。 柔性布线板可以具有一个或多个布置在其上的导电迹线114a,114b,114c。 导电迹线可以与温度感测装置形成电连接。 温度感测系统还可以包括直接连接到温度感测装置的散热垫。 热垫可以由热导体形成。 散热垫也可以具有热接触面。 热接触表面的尺寸和形状可以与装置302的一部分直接物理接触,其中热能直接从热垫传递到温度感测装置。 还提供了用于感测法兰安装装置的温度的方法。