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    • 74. 发明申请
    • CONFIGURABLE NETWORKED USER INTERFACE AND SWITCH PACK
    • 可配置的网络用户界面和开关包
    • US20080238650A1
    • 2008-10-02
    • US11693940
    • 2007-03-30
    • Roy E. RiihimakiMichelle D. KeimigRichard L. DaleDaniel Mattson
    • Roy E. RiihimakiMichelle D. KeimigRichard L. DaleDaniel Mattson
    • G08B23/00
    • H03K17/97G01D5/2006G06F3/0202H03K2017/9706H03K2217/94068H03K2217/94094
    • A printed circuit board (PCB) has a plurality of switch interfaces on its top surface. Each interface is an array of sensors, such as proximity sensors, hall-effect sensors, or a series of inductor coils. The sensors in each array are closely mounted and are all the same for a given PCB. Each array may or may not mount a non-contacting switch selected from a plurality of different types of switches, such as a single push button switch, dual push button switch, a toggle switch, a 3-position rocker switch, a rotary switch, or other type switch. Each switch mounted on the PCB includes one or more indicators for sensing by the sensors or coils, with feedback to determine what type of switch is mounted in each position. The same PCB, or other mount, may thus be used for a variety of unique applications, such as switch packs used in vehicles.
    • 印刷电路板(PCB)在其顶表面上具有多个开关接口。 每个接口都是传感器阵列,例如接近传感器,霍尔效应传感器或一系列电感线圈。 每个阵列中的传感器紧密安装,并且对于给定的PCB都是相同的。 每个阵列可以或可以不安装选自多个不同类型的开关的非接触开关,例如单个按钮开关,双按钮开关,拨动开关,3位摇臂开关,旋转开关, 或其他类型的开关。 安装在PCB上的每个开关包括用于由传感器或线圈感测的一个或多个指示器,其具有反馈以确定在每个位置安装什么类型的开关。 因此,相同的PCB或其他安装架可用于各种独特的应用,例如用于车辆中的开关组件。
    • 77. 发明授权
    • Sensor system and connector used therefor
    • 传感器系统和连接器用于此
    • US06692311B1
    • 2004-02-17
    • US09694302
    • 2000-10-24
    • Takashi KameiKiyoshi ImaiToshinori SatoKazuaki MiyoshiSatoru Shimokawa
    • Takashi KameiKiyoshi ImaiToshinori SatoKazuaki MiyoshiSatoru Shimokawa
    • H01R926
    • H01R9/2458H03K17/94H03K2217/94094
    • A sensor system includes a plurality of sensor bodies arranged aligned and adjacent to each other, each of said sensor bodies being connected to an electric cord including at least a signal line via a connector. Each connector has a power feed terminal, and a detachable fitting for electrically connecting the power feed terminals of the connectors is provided between the connectors. The power supplied to the connector of any of the sensor body through the power feed line in the electric cord is distributed to the power feed terminal of another sensor body through a row of connectors. By this configuration, the number of power feed lines for the overall system can be significantly reduced, and common bodies not distinguished for the main and sub bodies can be used as the sensor bodies, whereby the cost can be reduced and inventory management can be facilitated. Further, when any of the sensor bodies fails, it is possible to simply exchange the failed sensor body only, while maintaining the use of the electric cord that has been used.
    • 传感器系统包括彼此对准并相邻布置的多个传感器主体,每个所述传感器主体经由连接器至少包括信号线连接至电线。 每个连接器具有馈电端子,并且在连接器之间设置用于电连接连接器的馈电端子的可拆卸配件。 通过电线中的馈电线向传感器主体的任何一个的连接器提供的电力通过一排连接器分配到另一传感器主体的馈电端。 通过这种结构,可以显着地减少整个系统的供电线的数量,并且可以将不区分主体和副主体的共同体用作传感器体,从而可以降低成本并且可以促进库存管理 。 此外,当传感器体中的任何一个发生故障时,只要在保持使用已经使用的电线的同时简单地更换故障传感器体。
    • 78. 发明授权
    • System and method for reading operating parameters into an operationally
ready proximity switch
    • 将操作参数读入操作准备好的接近开关的系统和方法
    • US5487013A
    • 1996-01-23
    • US402756
    • 1995-03-10
    • Ernst Luber
    • Ernst Luber
    • G01S7/52H03K17/08H03K17/94H03K17/945H03K17/95G08B21/00
    • G01S7/52004H03K17/08H03K17/94H03K17/9512H03K2217/94021H03K2217/94094Y10T307/826
    • The operating parameters of a proximity switch can differ depending on the type of switch and also because of manufacturing tolerances. To make it possible for one to react to new developments in ultrasonic transducers and to customer-specific solutions without requiring additional space, data such as operating parameters are able to be input into a microprocessor of a prefabricated proximity switch with little expenditure of time and energy. A proximity switch may contain an enabling input and an overcurrent-detection device including a microprocessor. An overcurrent across the switching output can be identified by a pulse provided to a first input of the microprocessor. A programming device is provided through which such an overcurrent condition is simulated and the corresponding pulse is generated which represents information about an operating parameter in the form of a bit pattern. The microprocessor is loaded with this bit pattern. The enabling input is used to synchronize the microprocessor using first synchronizing pulses.
    • 接近开关的操作参数可能因开关类型而异,也可能因制造公差而异。 为了能够对超声波换能器的新开发和客户特定的解决方案作出反应,而无需额外的空间,诸如操作参数等数据能够被输入到具有很少时间和能量的预制接近开关的微处理器中 。 接近开关可以包含使能输入和包括微处理器的过电流检测装置。 可以通过提供给微处理器的第一输入的脉冲来识别开关输出端的过电流。 提供了一种编程装置,通过该装置模拟这种过电流条件,并且生成相应的脉冲,其表示关于位模式形式的操作参数的信息。 微处理器加载了该位模式。 使能输入用于使用第一同步脉冲同步微处理器。