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    • 2. 发明授权
    • Transmission control assembly having a locking mechanism
    • 传动控制组件具有锁定机构
    • US08371188B2
    • 2013-02-12
    • US12244029
    • 2008-10-02
    • Christopher BortolonWilliam McDonald
    • Christopher BortolonWilliam McDonald
    • B60K20/00G05G5/00F16H59/04
    • F16H59/0204F16H59/10F16H61/22F16H61/24F16H2059/0239Y10T74/20085Y10T74/20159
    • A transmission control assembly having a housing and a bracket pivotally coupled to the housing for movement along a first path. A yoke is selectively coupled to the bracket for concurrent movement with the bracket along the first path. The yoke is also selectively pivotal about a second pivot axis substantially transverse to the first pivot axis for movement along a second path. A tactile device is supported by the bracket and engageable with the housing. The tactile device moves about the bracket during the movement of the bracket along the first path. A locking mechanism is coupled between the bracket and the yoke. The locking mechanism moves between an unlocked position when the yoke is coupled to the bracket for allowing movement of the tactile device and a locked position engaged with the tactile device when the yoke moves along the second path for preventing movement of the tactile device.
    • 传动控制组件,其具有壳体和支架,所述壳体和支架枢转地联接到所述壳体以沿着第一路径移动。 轭被选择性地联接到支架,用于与支架沿着第一路径同时移动。 轭还可以围绕基本上横向于第一枢转轴线的第二枢转轴线选择性地枢转,以便沿第二路径移动。 触觉装置由支架支撑并与壳体接合。 在支架沿着第一路径运动期间,触觉装置围绕支架移动。 锁定机构联接在支架和轭架之间。 当磁轭联接到支架上时,锁定机构在解锁位置之间移动,以允许触觉装置的移动,并且当磁轭沿着第二路径移动以防止触觉装置的移动时,与触觉装置接合的锁定位置。
    • 3. 发明申请
    • MEMS device and method
    • MEMS器件及方法
    • US20070188847A1
    • 2007-08-16
    • US11353473
    • 2006-02-14
    • William McDonaldArmando Gonzalez
    • William McDonaldArmando Gonzalez
    • G02B26/00
    • G02B26/0833G02B26/0841
    • A micro-mirror hinge assembly for use in a MEMS device such as a DMD, and method. In a preferred embodiment, a first hinge member is mounted to a substrate by one or more via structures that may be integrally-formed with the hinge-member to facilitate torsional deformation. A second hinge member also configured for torsional deformation is mounted to and usually above the first hinge member so that deformation of the second hinge member occasions deformation of the first. Additional hinge members, each mounted to at least one other hinge member, may also be present. A mirror or similar reflecting surface is mounted to the second hinge member at one or more mirror vias. The MEMS device may include means for selectively inducing mirror reorientation, which in turn causes deformation in the hinge members of the hinge assembly.
    • 用于诸如DMD的MEMS装置中的微镜铰链组件和方法。 在优选实施例中,第一铰链构件通过一个或多个通孔结构安装到基底上,该通孔结构可以与铰链构件整体形成以便于扭转变形。 还构造成用于扭转变形的第二铰链构件安装到第一铰链构件上并且通常位于第一铰链构件上方,使得第二铰链构件的变形会使第一铰链构件发生变形。 每个安装到至少一个其它铰链构件的铰链构件也可以存在。 镜子或类似的反射表面在一个或多个镜子通孔处安装到第二铰链构件。 MEMS器件可以包括用于选择性地引起镜子重新定向的装置,这又引起铰链组件的铰链构件的变形。
    • 7. 发明授权
    • Persuasive environmental recovery system
    • 说服性环境恢复系统
    • US08066029B2
    • 2011-11-29
    • US12143399
    • 2008-06-20
    • William McDonaldWalter L. DabbsPaul Willman
    • William McDonaldWalter L. DabbsPaul Willman
    • F16K21/18
    • E03F7/00E03B7/071Y02A20/15Y10T137/0324Y10T137/6991Y10T137/7287Y10T137/742Y10T137/8342Y10T137/86381
    • A sewer backup alarm and overflow prevention device eliminates raw sewage spills by preventing pressure buildup in sewer drains. One or more sewage level sensors may be coupled to an alarm and/or to an automatic water main shut-off valve. The level sensor may detect excess fluid levels in a sewer lateral line. The sewer backup alarm and overflow prevention device may include a joggle which is a component of a non-mechanical backflow prevention device. The level sensor may detect fluid levels in the lower portion of the joggle and activate the automatic water main shut-off valve and/or the alarm. The sewer backup alarm and overflow prevention device may include at least one two-way, in-line cleanout tube which may extend vertically upwardly from the joggle. The level sensor may be mounted in the vertical cleanout tube. The components may be contained within a seamless polyethylene vault for ease of installation and protection against root intrusion.
    • 下水道备用报警和溢流防止装置通过防止下水道排水管中的压力累积,消除原污水泄漏。 一个或多个污水液位传感器可以联接到报警器和/或自动水主截止阀。 水位传感器可以检测下水道侧线中的过多液体水平。 下水道备用报警和溢流防止装置可以包括作为非机械回流防止装置的部件的jog子。 液位传感器可以检测槌下部的液位,并激活自动水主截止阀和/或报警器。 下水道备用报警和溢流防止装置可以包括至少一个双向的在线清洁管,其可以从耙子垂直向上延伸。 液位传感器可以安装在垂直清洗管中。 组件可以包含在无缝聚乙烯保险库内,以便于安装和防止根部侵入。
    • 10. 发明申请
    • TRANSMISSION CONTROL ASSEMBLY HAVING A LOCKING MECHANISM
    • 具有锁定机构的变速箱控制装置
    • US20100083784A1
    • 2010-04-08
    • US12244029
    • 2008-10-02
    • Christopher BortolonWilliam McDonald
    • Christopher BortolonWilliam McDonald
    • G05G5/02
    • F16H59/0204F16H59/10F16H61/22F16H61/24F16H2059/0239Y10T74/20085Y10T74/20159
    • A transmission control assembly having a housing and a bracket pivotally coupled to the housing for movement along a first path. A yoke is selectively coupled to the bracket for concurrent movement with the bracket along the first path. The yoke is also selectively pivotal about a second pivot axis substantially transverse to the first pivot axis for movement along a second path. A tactile device is supported by the bracket and engageable with the housing. The tactile device moves about the bracket during the movement of the bracket along the first path. A locking mechanism is coupled between the bracket and the yoke. The locking mechanism moves between an unlocked position when the yoke is coupled to the bracket for allowing movement of the tactile device and a locked position engaged with the tactile device when the yoke moves along the second path for preventing movement of the tactile device.
    • 传动控制组件,其具有壳体和支架,所述壳体和支架枢转地联接到所述壳体以沿着第一路径移动。 轭被选择性地联接到支架,用于与支架沿着第一路径同时移动。 轭还可以围绕基本上横向于第一枢转轴线的第二枢转轴线选择性地枢转,以便沿第二路径移动。 触觉装置由支架支撑并与壳体接合。 在支架沿着第一路径运动期间,触觉装置围绕支架移动。 锁定机构联接在支架和轭架之间。 当磁轭联接到支架上时,锁定机构在解锁位置之间移动,以允许触觉装置的移动,并且当磁轭沿着第二路径移动以防止触觉装置的移动时,与触觉装置接合的锁定位置。