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    • 1. 发明申请
    • Device for invasively measuring fluid pressure
    • 用于侵入性测量流体压力的装置
    • US20070074575A1
    • 2007-04-05
    • US11242208
    • 2005-10-03
    • Andrew VotoRonald SelbyKenneth PerryDavid RossAlfred Dumsa
    • Andrew VotoRonald SelbyKenneth PerryDavid RossAlfred Dumsa
    • G01L7/08
    • A61B5/0215A61M1/3639A61M1/3641
    • A device for invasively measuring fluid pressure is disclosed. The device includes a disposable housing having a fluid contacting area and a non-fluid contacting area. A disposable diaphragm in a substantially non-elastic state is disposed within the housing and separates the fluid contacting area from the non-fluid contacting area. A side of the diaphragm is adapted to contact the fluid, and the diaphragm has sufficient flexibility to move a distance axially within the non-fluid contacting area in response to fluid contact. The distance is substantially proportional to the fluid pressure. An electronic sensing device is removably attached adjacent the non-fluid contacting area of the housing, and is spaced from the diaphragm. The electronic sensing device is capable of determining the fluid pressure.
    • 公开了一种用于侵入性地测量流体压力的装置。 该装置包括具有流体接触区域和非流体接触区域的一次性外壳。 基本上非弹性状态的一次性隔膜设置在壳体内并将流体接触区域与非流体接触区域分开。 膜片的一侧适于接触流体,并且隔膜具有足够的柔性以响应于流体接触在非流体接触区域内轴向移动一定距离。 该距离基本上与流体压力成比例。 电子感测装置可拆卸地附接在壳体的非流体接触区域附近并且与隔膜间隔开。 电子感测装置能够确定流体压力。
    • 4. 发明申请
    • Method of castor management
    • 蓖麻管理方法
    • US20070051541A1
    • 2007-03-08
    • US11220922
    • 2005-09-07
    • Andrew VotoRonald SelbyKenneth PerryDavid RossAlfred Dumsa
    • Andrew VotoRonald SelbyKenneth PerryDavid RossAlfred Dumsa
    • B60K1/00
    • B62D11/003
    • The invention provides a drive system (10) for a vehicle (12) and a method for driving a vehicle (12). The drive system (10) includes a first drive wheel (14) rotatable about a first axis (16) for supporting the vehicle (12). The drive system (10) also includes a second drive wheel (18) rotatable about the first axis (16) for supporting the vehicle (12). The drive system (10) also includes at least one castor (20) rotatable about a second axis (22) transverse to the first axis (16). The castor (20) is forward of the first and second drive wheels (14, 18) in a direction of travel of the vehicle (12). The drive system (10) also includes a controller (24) for differentially driving the first and second drive wheels (14, 18) in response to a position of the at least one castor (20) about the second axis (22).
    • 本发明提供一种用于车辆(12)的驱动系统(10)和用于驱动车辆(12)的方法。 驱动系统(10)包括可围绕用于支撑车辆(12)的第一轴线(16)旋转的第一驱动轮(14)。 驱动系统(10)还包括可围绕第一轴线(16)旋转的用于支撑车辆(12)的第二驱动轮(18)。 驱动系统(10)还包括至少一个围绕横向于第一轴线(16)的第二轴线(22)旋转的脚轮(20)。 脚轮(20)在车辆(12)的行进方向上位于第一和第二驱动轮(14,18)的前方。 驱动系统(10)还包括用于响应于至少一个脚轮(20)围绕第二轴线(22)的位置差分驱动第一和第二驱动轮(14,18)的控制器(24)。