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    • 51. 发明申请
    • Elevator door safety control device
    • 电梯门安全控制装置
    • US20050103577A1
    • 2005-05-19
    • US10715849
    • 2003-11-19
    • Robert Warner
    • Robert Warner
    • B66B13/26
    • B66B13/26
    • An elevator door closure control system and method are provided and include an elevator light screen signal detector module having first and second electrical connectors, a signal detection element configured to detect a carrier wave control signal and output a signal in response thereto, and a switch configured to change from a first state to a second state (or vice versa) in response to a signal detection element output signal or a control signal from a controller. The electrical connectors permit connection of the module to a light screen receiver array output and an elevator door controller input so as to place the switch in series with the receiver array output. The switch second state causes, in one aspect, the elevator doors to remain open for a preset time or until the light source array detects the arrival of an appliance, person, or object in its beam path(s).
    • 提供了一种电梯门关闭控制系统和方法,包括具有第一和第二电连接器的电梯光屏信号检测器模块,被配置为检测载波控制信号并响应于此输出信号的信号检测元件,以及配置 响应于来自控制器的信号检测元件输出信号或控制信号,从第一状态变为第二状态(反之亦然)。 电连接器允许模块连接到屏幕接收器阵列输出和电梯门控制器输入,以将开关与接收器阵列输出串联。 在一个方面,开关第二状态导致电梯门保持打开预定时间,或者直到光源阵列检测到器具,人或物体到达其光束路径中。
    • 52. 发明授权
    • System and method for applying thermal energy to tissue
    • 将热能施加到组织的系统和方法
    • US5891134A
    • 1999-04-06
    • US719133
    • 1996-09-24
    • Colin GobleRobert Warner
    • Colin GobleRobert Warner
    • A61B18/04A61B18/08A61B18/14A61B18/16A61F7/08A61F7/12A61N5/00
    • A61B18/08A61F7/123A61B18/14A61B2018/00559
    • An apparatus, system, and method for treating body tissue using controlled application of heat includes a control unit providing electrical power to a bipolar electrode positioned within an expandable member filled with conductive fluid. Electrical power applied to the bipolar electrode by the control unit causes current to pass from the active electrode, into the conductive fluid, and to the return electrode, thereby heating the conductive fluid. The temperature of the conductive fluid is monitored by the control unit, and power is increased and decreased in accordance with a comparison of the monitored temperature against the desired temperature range. The control unit also includes a pressure sensor for regulating the pressure in the bladder. Pressure and temperature displays and other operator controls are located on the control unit.
    • 使用受控的加热处理身体组织的装置,系统和方法包括向位于填充有导电流体的可扩张构件内的双极电极提供电力的控制单元。 通过控制单元施加到双极性电极的电力使得电流从有源电极传导到导电流体中并返回到返回电极,从而加热导电流体。 导电流体的温度由控制单元监控,并且根据所监测的温度与期望的温度范围的比较来提高和降低功率。 控制单元还包括用于调节气囊中的压力的​​压力传感器。 压力和温度显示器和其他操作员控制器位于控制单元上。
    • 55. 发明授权
    • RFIDs embedded into semiconductors
    • 嵌入半导体的RFID
    • US07348887B1
    • 2008-03-25
    • US11153074
    • 2005-06-15
    • Robert WarnerJack WintersBruce McNair
    • Robert WarnerJack WintersBruce McNair
    • G08B13/14
    • G09F3/0376G06K19/07798
    • The present invention provides a RFID device comprising a radio frequency identification (RFID) transceiver and antenna element co-located with a semiconductor device, a method for making same and a method of using the RFID device of the present invention to locate, track and identify semiconductor devices and the devices they reside in. One embodiment of the RFID device of the present invention comprises a radio frequency identification (RFID) transceiver embedded within packaging of a semiconductor device. A second embodiment of the RFID device of the present invention comprises a radio frequency identification (RFID) transceiver as a separate circuit block within the semiconductor device. A third embodiment of the RFID device of the present invention comprises a radio frequency identification (RFID) transceiver as a separate independent circuit on top of the semiconductor device, System on Chip (SoC). These RFIDs can also be nested within an enclosure, or combined to increase the address length of the RFID.
    • 本发明提供一种RFID装置,其包括射频识别(RFID)收发器和与半导体器件共同定位的天线元件,其制造方法和使用本发明的RFID器件的方法来定位,跟踪和识别 半导体器件及其所在的器件。本发明的RFID器件的一个实施例包括嵌入在半导体器件的封装内的射频识别(RFID)收发器。 本发明的RFID装置的第二实施例包括射频识别(RFID)收发器作为半导体器件内的单独的电路块。 本发明的RFID装置的第三实施例包括射频识别(RFID)收发器作为半导体器件(片上系统)(SoC)之上的独立独立电路。 这些RFID也可以嵌套在机箱内,或者组合起来以增加RFID的地址长度。
    • 56. 发明申请
    • Self-calibrating photoelectric control system
    • 自校准光电控制系统
    • US20060091285A1
    • 2006-05-04
    • US10975039
    • 2004-10-28
    • Robert WarnerDavid Hanley
    • Robert WarnerDavid Hanley
    • G01J1/32
    • G01J1/32A47F9/04
    • A self-calibrating photoelectric control system for use in a checkstand to control the starting and stopping of a conveyer belt utilized to move products closer to a checkout clerk. The self-calibrating photoelectric control system including a light source for emitting a light beam having an intensity, a photoelectric sensor for receiving light from the light source and for generating an output signal when the received light is equal to or greater than a light-state threshold of the photoelectric sensor; and a calibration circuit for automatically calibrating the sensitivity of the photoelectric control system to partial beam breaks after occurrence of any one of a plurality of predefined events. The calibration circuit is operative for performing a calibration process which adjusts the intensity of the light beam emitted by the light source such that the intensity is slightly greater than the light-state threshold of the photoelectric sensor. By repeatedly performing the calibration process at selected times, the present invention optimizes the detection of objects that partially block the light beam, and thereby greatly enhances the system's ability to detect translucent and low-profile products.
    • 一种用于校验台的自校准光电控制系统,用于控制用于将产品移近靠近检验员的输送带的启动和停止。 该自校准光电控制系统包括用于发射具有强度的光束的光源,用于接收来自光源的光的光电传感器,并且当接收的光等于或大于光状态时产生输出信号 光电传感器阈值; 以及校准电路,用于在发生多个预定事件中的任何一个之后,自动校准光电控制系统对部分光束断裂的灵敏度。 校准电路用于执行校准过程,该校准过程调整由光源发射的光束的强度,使得强度稍微大于光电传感器的光状态阈值。 通过在选定的时间重复执行校准处理,本发明优化了部分阻挡光束的物体的检测,从而大大提高了系统检测半透明和低调产品的能力。
    • 60. 发明授权
    • RFID system for subscription services with multiple subscribers and/or devices
    • RFID系统用于具有多个订户和/或设备的订阅服务
    • US08027634B1
    • 2011-09-27
    • US11803906
    • 2007-05-16
    • Janice WarnerRobert WarnerJack Winters
    • Janice WarnerRobert WarnerJack Winters
    • H04H20/71H04H60/09
    • H04H60/23H04H60/92
    • The RFID system of the present invention provides activation of a subscription based device wirelessly using a RFID system. The system for activating of a user for a subscription service comprises a first secure RFID sensor associated with a subscription-based device and a second secure RFID sensor associated with a user device. The first and second secure RFID sensors communicate with one another to establish activation of the user device. For example, the first sensor can receive an authentication value associated with the subscription service from the second RFID sensor. After activation, the subscription-based device can broadcast the subscription service to the user device. Alternatively, the user device can also have a capability to verify its separate or related subscription such as WiFi, WiMAX, GSM, CDMA or other wireless-based connectivity service. Also, the user device associated with the subscription-based service can be activated only when a secure RFID sensor is within a predetermined range of the user device.
    • 本发明的RFID系统提供使用RFID系统无线地激活订阅的设备。 用于激活订阅服务的用户的系统包括与基于订阅的设备相关联的第一安全RFID传感器和与用户设备相关联的第二安全RFID传感器。 第一和第二安全RFID传感器彼此通信以建立用户设备的激活。 例如,第一传感器可以从第二RFID传感器接收与订阅服务相关联的认证值。 激活后,基于订阅的设备可以向用户设备广播订阅服务。 或者,用户设备还可以具有验证其单独的或相关订阅的能力,例如WiFi,WiMAX,GSM,CDMA或其他基于无线的连接服务。 此外,只有当安全RFID传感器在用户设备的预定范围内时,才能激活与订阅服务相关联的用户设备。