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    • 1. 发明授权
    • Alignment device for positioning liquid flow tube
    • 液体流量管定位装置
    • US07174798B2
    • 2007-02-13
    • US10965328
    • 2004-10-14
    • Duane J. SiesRichard W. GehmanMichael G. Marchini
    • Duane J. SiesRichard W. GehmanMichael G. Marchini
    • G01F15/18G01N33/00
    • G01F1/6847G01F1/6882G01F15/18
    • A combined liquid flow tube alignment and liquid sensing system includes flow tube mounting and alignment hardware including a clip for fastening the hardware to a substrate; and a sensor for sensing integrated with the liquid flow tube mounting and alignment hardware, wherein fluid flowing through a flow tube mounted and aligned by the flow tube The flow tube mounting and alignment hardware includes a clip with internal periphery edges sized to match the external periphery edges of at least one sensing element associated with the sensor. At least two posts located at outer members of the clip above and below the tube. Posts are sized to be located ideally within a system to position and retain the outer diameter of liquid flow tube with respect to internal periphery edges of the clip and subsequently, the sensing element both horizontally and vertically. A center flexing member associated with the clip. A slot to accurately position/retain and apply a controlled force to an area of the tube located at the center of the sensing element.
    • 组合的液体流动管对准和液体感测系统包括流管安装和对准硬件,其包括用于将硬件紧固到基底的夹子; 以及用于与液体流管安装和对准硬件集​​成的传感器,其中流过通过流管安装和对准的流动管的流体。流管安装和对准硬件包括具有内周边缘的夹子,其尺寸设定成匹配外周边 与传感器相关联的至少一个感测元件的边缘。 位于夹子上方和下方的夹子的外部构件的至少两个柱。 柱子的尺寸被设计成理想地位于系统内以相对于夹子的内周边缘定位和保持液体流动管的外径,并且随后将感测元件水平和垂直地定位。 与夹子相关联的中心弯曲构件。 用于准确地定位/保持并将受控的力施加到位于感测元件中心的管的区域的槽。
    • 2. 发明授权
    • Thermal isolation between heating and sensing for flow sensors
    • 用于流量传感器的加热和传感之间的隔热
    • US07278308B2
    • 2007-10-09
    • US11299118
    • 2005-12-08
    • Richard W. GehmanMichael G. MarchiniMartin G. Murray
    • Richard W. GehmanMichael G. MarchiniMartin G. Murray
    • G01F1/68
    • G01F1/6845G01F1/684
    • A flow sensor system includes a plurality of flow sensor chips, wherein each flow sensor chip among the plurality of flow sensor chips comprises a substrate, a heater element, a heater control circuit, and flow sensor component formed on the substrate, wherein the heater element is disposed separately from the heater control circuit on the substrate, wherein the heater control circuit is thermally isolated from the heater element and the flow sensor component. Additionally, an air gap can be formed between each sensor chip among the plurality of flow sensor chips, wherein the plurality of flow sensor chips comprises a flow sensor system in which each of the flow sensor chips are separated from one another by the air gap formed therebetween in order to reduce output distortion, response time, warm-up time, drift and noise associated with the plurality of flow sensor chips.
    • 流量传感器系统包括多个流量传感器芯片,其中多个流量传感器芯片中的每个流量传感器芯片包括形成在基板上的基板,加热器元件,加热器控制电路和流量传感器部件,其中加热元件 与基板上的加热器控制电路分开布置,其中加热器控制电路与加热器元件和流量传感器部件热隔离。 此外,可以在多个流量传感器芯片中的每个传感器芯片之间形成气隙,其中多个流量传感器芯片包括流量传感器系统,其中每个流量传感器芯片通过形成的气隙彼此分离 以便减少与多个流量传感器芯片相关联的输出失真,响应时间,预热时间,漂移和噪声。
    • 4. 发明授权
    • Switch mountable to a panel without additional fasteners
    • 开关可安装到面板上,无需额外的紧固件
    • US5550341A
    • 1996-08-27
    • US489192
    • 1995-06-09
    • Larry J. BohnertRichard R. EllisMichael G. Marchini
    • Larry J. BohnertRichard R. EllisMichael G. Marchini
    • H02B1/044H02B1/048H01H9/02
    • H02B1/048H02B1/044
    • A switch is specifically shaped to be retained in position within an apparatus, such as a household appliance, by inserting edges of an opening formed in the sheet material of the apparatus into first and second slots shaped into the housing of the switch. The first and second slots can be formed in opposite edge surfaces of the switch housing structure, either within the flat edges or at the corners of the housing structure. When attached to an appliance, no screws or other fasteners are necessary to rigidly attach the switch to the apparatus. The switch can be pushed into a slot formed in an edge of one panel of the apparatus and then captivated by an opening in another panel of the apparatus. Alternatively, the switch can be inserted into a larger portion of a single opening and then moved into a narrower portion of that opening. Another device can then be inserted into the larger portion of the opening to prevent inadvertent removal of the switch from its attached position within the opening.
    • 通过将形成在设备的片材中的开口的边缘插入成形为开关的外壳的第一和第二槽中,开关被特别地成形为保持在诸如家用电器的装置内的适当位置。 第一和第二槽可以形成在开关壳体结构的相对边缘表面中,无论是在平坦边缘内还是在壳体结构的拐角处。 当连接到设备时,不需要螺钉或其他紧固件来将开关刚性地连接到设备。 开关可以被推入形成在设备的一个面板的边缘中的槽中,然后被设备的另一个面板中的开口所吸引。 或者,开关可以插入到单个开口的较大部分中,然后移动到该开口的较窄部分。 然后可以将另一个装置插入开口的较大部分,以防止开关从开关内的其附接位置无意中移除。
    • 7. 发明授权
    • Negative rate snap-acting switch apparatus and method
    • 负速率快动开关装置及方法
    • US06847000B1
    • 2005-01-25
    • US10714010
    • 2003-11-14
    • Michael G. MarchiniEdward L. Stern
    • Michael G. MarchiniEdward L. Stern
    • H01H5/04H01H5/22H01H13/18H01H13/26H01H13/36H01H5/00
    • H01H5/04H01H5/22H01H13/186H01H13/26H01H13/36
    • A negative rate snap-acting switch apparatus and method is disclosed, which generally includes a plunger associated with an actuating lever, a stationary anchor, a moveable contact, and at least two stationary contacts. The negative rate snap-acting switch apparatus also includes a snap-spring assembly reactive to the actuating lever, wherein the snap-spring assembly is assembled into the stationary anchor and the actuating lever to form a spring-anchor-lever assembly thereof including a central spring member loaded into an axial compression and persuaded to bend into a post-buckled elastic mode shape thereof to form a negative rate snap-acting switch apparatus in which the moveable and the stationary contacts are responsive to an actuating force derived from the snap-spring assembly.
    • 公开了一种负速率快动开关装置和方法,其通常包括与致动杆相关联的柱塞,固定锚,可动触点和至少两个固定触点。 负速率快速动作开关装置还包括与该致动杆无关的弹簧弹簧组件,其中该弹簧组件组装到固定锚固件和致动杠杆中以形成弹簧锚定杆组件,其包括中心 弹簧构件被加载成轴向压缩并被说服以弯曲成后弯曲的弹性模式形状,以形成负速率卡合动作开关装置,其中可移动和静止触点响应于来自卡扣弹簧的致动力 部件。
    • 10. 发明授权
    • Negative rate switch methods and systems for resilient actuating device
    • 用于弹性驱动装置的负速率开关方法和系统
    • US07378934B2
    • 2008-05-27
    • US11008543
    • 2004-12-09
    • Michael G. MarchiniEdward L. Stern
    • Michael G. MarchiniEdward L. Stern
    • H01H37/18H01H37/12
    • H01H5/04H01H5/22H01H13/186H01H13/26H01H13/36
    • Methods and systems for actuating a negative rate switch. A negative rate switch comprising a plunger and a resilient actuator thereof can be provided, wherein a highest plunger force occurs at a free position and a lowest plunger force occurs at a full over travel position. The negative rate switch can be configured such that when the resilient actuator provides resilient actuating force to overcome a free position force associated with the free position, the plunger moves without interruption through a total range of travel thereof and when the resilient actuating force drops slightly below a full over-travel plunger force associated with the full over travel position, the negative rate switch overcomes the resilient actuating force to return the plunger to the free position thereof without interruption.
    • 用于启动负速率开关的方法和系统。 可以提供包括柱塞和其弹性致动器的负速率开关,其中在自由位置处发生最高的柱塞力,并且在完全行驶位置处发生最小的柱塞力。 负速率开关可以被配置为使得当弹性致动器提供弹性致动力以克服与自由位置相关联的自由位置力时,柱塞通过其行程的整个范围而不间断地移动,并且当弹性致动力略微低于 与完全超行程位置相关联的完全超行程柱塞力,负速率开关克服弹性致动力以将柱塞返回到其自由位置而不中断。