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    • 21. 发明授权
    • Modular medical gas services column
    • 模块化医疗气体服务栏
    • US5644876A
    • 1997-07-08
    • US297193
    • 1994-08-26
    • James A. Walker
    • James A. Walker
    • A61G13/00E04C2/52
    • A61G13/107A61G12/002A61G12/004A61G12/007
    • A modular medical gas services unit with multiple medical gas outlets supported at the same level on the column. The unit preferably comprises a hollow column with an internal space for housing the gas conduits and power lines. The medical gas supply outlets are mounted so that their longitudinal axes extend radially from the vertical axis of the frame, and the longitudinal axes of adjacent outlets intersect to form an acute angle. In this way, the horizontal dimensions of the column can be minimized while the number of medical gas outlets at the desired height is maximized. In one embodiment, the column is pentagonal in cross-section providing five planar support surfaces for five medical gas outlets. In another embodiment, a square column is equipped with angled outlet panels, each supporting two medical gas outlets. Thus, though the frame is four-sided, as many as eight medical gas outlets can be mounted at the same height on the frame.
    • 具有多个医疗气体出口的模块化医疗气体服务单元,支撑在同一列上。 该单元优选地包括具有用于容纳气体导管和电力线的内部空间的空心柱。 医疗用气体供给出口被安装成使得它们的纵向轴线从框架的垂直轴线径向延伸,并且相邻出口的纵向轴线相交以形成锐角。 以这种方式,可以最小化柱的水平尺寸,同时使期望高度处的医疗气体出口的数量最大化。 在一个实施方案中,柱为横截面为五边形,为五个医疗气体出口提供五个平面支撑表面。 在另一个实施例中,方柱配备有倾斜的出口面板,每个支撑两个医疗气体出口。 因此,虽然框架是四面体的,但是可以在框架上相同的高度上安装多达八个医疗气体出口。
    • 22. 发明授权
    • Method for designing an electronic integrated circuit with optical
inputs and outputs
    • 用于设计具有光输入和输出的电子集成电路的方法
    • US5605856A
    • 1997-02-25
    • US403316
    • 1995-03-14
    • Keith W. GoosenFouad E. KiamilevAshok V. KrishnamoorthyDavid A. B. MillerJames A. Walker
    • Keith W. GoosenFouad E. KiamilevAshok V. KrishnamoorthyDavid A. B. MillerJames A. Walker
    • H01L27/04H01L21/822H01L27/02H01L27/144H01L27/15H01L31/10H01L31/12H01L21/768
    • H01L27/1443H01L27/0207
    • A method for designing an integrated circuit having optical inputs and outputs includes the step of selecting an integrated circuit design which includes at least one circuit cell design for processing electric signals. The circuit cell design has a predetermined number of electric inputs and electric outputs. The integrated circuit design also includes a plurality of layers of metalization for providing electric coupling. After the electronic integrated circuit design is selected, a predetermined number of optical input devices are located on the circuit cell design in a first prearranged orientation. The predetermined number of optical input devices is no greater than the predetermined number of electric inputs to the circuit cell. Also after the electronic circuit design is selected, a predetermined number of optical output devices are located on the circuit cell design in a second prearranged orientation. The predetermined number of optical output devices is no greater than the predetermined number of electric outputs to the circuit cell. At least a topmost layer of metalization is selected for electrically coupling each optical input device to a distinct one of the electric inputs of the circuit cell and for electrically coupling each optical output device to a distinct one of the electric outputs of the circuit cell. Finally, the completed design for the integrated circuit with optical inputs and outputs is recorded in a memory such as an electronic storage medium.
    • 一种用于设计具有光输入和输出的集成电路的方法包括选择包括用于处理电信号的至少一个电路单元设计的集成电路设计的步骤。 电路单元设计具有预定数量的电输入和电输出。 集成电路设计还包括用于提供电耦合的多层金属化。 在选择了电子集成电路设计之后,预定数量的光输入装置以第一预先排列的方向位于电路单元设计上。 预定数量的光输入装置不大于电路单元的预定数量的电输入。 此外,在选择电子电路设计之后,预定数量的光输出装置以第二预定方向位于电路单元设计上。 预定数量的光输出装置不大于电路单元的预定数量的电输出。 选择至少最上层的金属化用于将每个光输入装置电耦合到电路单元的电输入的不同一个,并且将每个光输出装置电耦合到电路单元的不同一个电输出端。 最后,将具有光输入和输出的集成电路的完成设计记录在诸如电子存储介质的存储器中。
    • 25. 发明授权
    • Modular medical gas services unit
    • 模块化医疗气体服务单位
    • US06668493B1
    • 2003-12-30
    • US09994464
    • 2001-11-26
    • James A. Walker
    • James A. Walker
    • E04C252
    • A61G13/107A61G12/002A61G12/004A61G12/007
    • A modular medical gas services unit with multiple medical gas outlets supported at the same level on the column. The unit preferably comprises a hollow column with an internal space for housing the gas conduits and power lines. The medical gas supply outlets are mounted so that their longitudinal axes extend radially from the vertical axis of the frame, and the longitudinal axes of adjacent outlets intersect to form an acute angle. In this way, the horizontal dimensions of the column can be minimized while the number of medical gas outlets at the desired height is maximized. In one embodiment, the column is pentagonal in cross-section providing five planar support surfaces for five medical gas outlets. In another embodiment, a square column is equipped with angled outlet panels, each supporting two medical gas outlets. Thus, though the frame is four-sided, as many as eight medical gas outlets can be mounted at the same height on the frame.
    • 具有多个医疗气体出口的模块化医疗气体服务单元,支撑在同一列上。 该单元优选地包括具有用于容纳气体导管和电力线的内部空间的空心柱。 医疗用气体供给出口被安装成使得它们的纵向轴线从框架的垂直轴线径向延伸,并且相邻出口的纵向轴线相交以形成锐角。 以这种方式,可以最小化柱的水平尺寸,同时使期望高度处的医疗气体出口的数量最大化。 在一个实施方案中,柱为横截面为五边形,为五个医疗气体出口提供五个平面支撑表面。 在另一个实施例中,方柱配备有倾斜的出口面板,每个支撑两个医疗气体出口。 因此,虽然框架是四面体的,但是可以在框架上相同的高度上安装多达八个医疗气体出口。
    • 29. 发明授权
    • Article comprising an optical fiber attached to a micromechanical device
    • 本文包括附接到微机械装置的光纤
    • US5831262A
    • 1998-11-03
    • US883740
    • 1997-06-27
    • Dennis S. GreywallJames A. Walker
    • Dennis S. GreywallJames A. Walker
    • G01B11/16G01D5/26G02B6/24G02B6/26G02B6/35G02B26/00G02B26/02H01J5/16
    • G02B26/001G01D5/268G02B6/264G02B6/241G02B6/3516G02B6/357G02B6/3594
    • An article having an optical fiber integrally attached to a micro-device having spaced movable and nonmoving layers suitable for creating optical interference effects is disclosed. In one configuration, the micro-device is suitable for optical modulation, wherein the movable layer is electrostatically actuated to move towards the nonmoving layer. Such movement changes the size of the gap between the layers, resulting in a change in micro-device reflectivity. An optical signal is modulated by controlling micro-device reflectivity via a controlled voltage source. In a second configuration, the micro-device is suitable for measuring pressure. For pressure measurement, the movable membrane moves in response to pressure changes. The change in membrane position again results in a change in micro-device reflectivity. Reflectivity is correlatable to pressure. In a third configuration, the micro-device is suitable for measuring temperature. In the third configuration, the movable membrane is isolated from pressure effects by the addition of an evacuated cavity located beneath the membrane. The region between the movable and nonmoving layers is gas filled. Changes in gas pressure due to changes in gas temperature cause the movable layer to move, affecting micro-device reflectivity. Reflectivity is correlatable to temperature.
    • 公开了一种具有整体连接到具有适于产生光学干涉效应的可移动和不移动层的微器件的光纤的物品。 在一种配置中,微型器件适用于光学调制,其中可移动层被静电致动以朝向非移动层移动。 这种移动改变了层之间的间隙的尺寸,导致微器件反射率的变化。 通过控制电压源控制微器件反射率来调制光信号。 在第二构造中,微型装置适于测量压力。 对于压力测量,可移动膜响应于压力变化而移动。 膜位置的变化再次导致微器件反射率的变化。 反射率与压力相关。 在第三种构造中,微型装置适用于测量温度。 在第三构造中,可移动膜通过添加位于膜下方的抽真空腔与压力效应隔离。 可移动和不移动层之间的区域是充气的。 气体温度变化导致的气体压力变化导致移动层移动,影响微器件的反射率。 反射率与温度相关。