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    • 4. 发明申请
    • Communication method for locating a parked vehicle
    • 用于定位停放车辆的通信方法
    • US20100109914A1
    • 2010-05-06
    • US12290969
    • 2008-11-05
    • Craig A. TiemanTom MiklikFiean LiemDale L. Partin
    • Craig A. TiemanTom MiklikFiean LiemDale L. Partin
    • G08G1/123
    • G08G1/005G08G1/14G08G1/205
    • A method of locating a parked vehicle that is equipped with a RKE system including a vehicle-installed RF communication module and a driver-borne wireless RF nomadic device such as a key fob involves installing a RFID tag in the nomadic device and a RFID interrogator in the vehicle. The driver depresses a button on the nomadic device to transmit a location request to the vehicle's communication module, and the RFID interrogator in turn emits a RF interrogation signal to identify the RFID tag and determine its location relative to the vehicle. The communication module then transmits a compass bearing to the nomadic device, and an indicator of the nomadic device is activated to provide the driver with a bearing for locating the vehicle.
    • 一种定位配备有包括车载RF通信模块的RKE系统和诸如密钥卡的驾驶员无线RF游牧设备的停放车辆的方法,包括将游标设备中的RFID标签和RFID询问器 机动车。 驾驶员按下游牧装置上的按钮以将位置请求发送到车辆的通信模块,并且RFID询问器依次发射RF询问信号以识别RFID标签并确定其相对于车辆的位置。 通信模块然后将罗盘方位传送到游牧装置,并且游牧装置的指示器被启动以向驾驶员提供用于定位车辆的轴承。
    • 6. 发明授权
    • Magnetoresistor
    • 磁电阻
    • US4978938A
    • 1990-12-18
    • US426245
    • 1989-10-25
    • Dale L. PartinJoseph P. HeremansDonald T. Morelli
    • Dale L. PartinJoseph P. HeremansDonald T. Morelli
    • G01R33/09H01L43/08
    • H01L43/08G01R33/09
    • A magnetoresistive sensor that includes a very thin film of monocrystalline semiconductive material, having at least a moderate carrier mobility and no greater than a moderate carrier density. The device includes means for inducing or enhancing an accumulation layer adjacent the film outer surface. With film thicknesses below 5 micrometers, preferably below 3 micrometers, the presence of the accumulation layer can have a very noticeable effect. The unexpected improvement provides a significant apparent increase in mobility and conductivity of the semiconductive material, and an actual increase in magnetic sensitivity and temperature insensitivity. A method for making the sensor is also described.
    • 一种磁阻传感器,其包括非常薄的单晶半导体材料,至少具有适度的载流子迁移率且不大于中等载流子密度。 该装置包括用于诱导或增强邻近胶片外表面的聚集层的装置。 当膜厚度低于5微米,优选低于3微米时,积聚层的存在可以具有非常明显的效果。 意想不到的改进提供了半导体材料的迁移率和电导率的显着增加,并且磁敏感性和温度不敏感性的实际增加。 还描述了制造传感器的方法。
    • 7. 发明授权
    • Indium arsenide magnetoresistor
    • 砷化铟磁电阻
    • US4926154A
    • 1990-05-15
    • US426260
    • 1989-10-25
    • Joseph P. HeremansDale L. Partin
    • Joseph P. HeremansDale L. Partin
    • H01L43/08
    • H01L43/08
    • A magnetoresistive sensor that includes a thin film of nominally undoped monocrystalline indium arsenide. An indium arsenide film is described that appears to have a naturally occurring accumulation layer adjacent its outer surface. With film thickneses below 5 micrometers, preferably below 3 micrometers, the presence of the accumulation layer can have a very noticeable effect. A method for making the sensor is also described. The unexpected improvement provides a significant apparent increase in mobility and conductivity of the indium arsenide, and an actual increase in magnetic sensitivity and temperature insensitivity.
    • 磁阻传感器,其包括名义上未掺杂的单晶砷化铟的薄膜。 描述了似乎在其外表面附近具有天然存在的积聚层的砷化铟膜。 当膜厚度低于5微米,优选低于3微米时,积聚层的存在可以具有非常明显的效果。 还描述了制造传感器的方法。 意想不到的改进提供了砷化铟的迁移率和电导率的显着增加,并且磁敏感性和温度不敏感性的实际增加。
    • 8. 发明授权
    • Communication method for locating a parked vehicle
    • 用于定位停放车辆的通信方法
    • US08004400B2
    • 2011-08-23
    • US12290969
    • 2008-11-05
    • Craig A. TiemanTom MiklikFiean LiemDale L. Partin
    • Craig A. TiemanTom MiklikFiean LiemDale L. Partin
    • G08B1/08
    • G08G1/005G08G1/14G08G1/205
    • A method of locating a parked vehicle that is equipped with a RKE system including a vehicle-installed RF communication module and a driver-borne wireless RF nomadic device such as a key fob involves installing a RFID tag in the nomadic device and a RFID interrogator in the vehicle. The driver depresses a button on the nomadic device to transmit a location request to the vehicle's communication module, and the RFID interrogator in turn emits a RF interrogation signal to identify the RFID tag and determine its location relative to the vehicle. The communication module then transmits a compass bearing to the nomadic device, and an indicator of the nomadic device is activated to provide the driver with a bearing for locating the vehicle.
    • 一种定位配备有包括车载RF通信模块的RKE系统和诸如密钥卡的驾驶员无线RF游牧设备的停放车辆的方法,包括将游标设备中的RFID标签和RFID询问器 机动车。 驾驶员按下游牧装置上的按钮以将位置请求发送到车辆的通信模块,并且RFID询问器依次发射RF询问信号以识别RFID标签并确定其相对于车辆的位置。 通信模块然后将罗盘方位传送到游牧装置,并且游牧装置的指示器被启动以向驾驶员提供用于定位车辆的轴承。
    • 9. 发明申请
    • Mini fob with improved human machine interface
    • 迷你FOB具有改进的人机界面
    • US20090243791A1
    • 2009-10-01
    • US12079713
    • 2008-03-28
    • Dale L. PartinMichel F. SultanCarsten Hildebrand
    • Dale L. PartinMichel F. SultanCarsten Hildebrand
    • H04L17/02H04B1/00
    • G08C17/00G07C9/00309G07C9/00944
    • A remote control device for a vehicle remote access system includes the housing, an input switch for selecting a vehicle control function, a control, a transmitter for transmitting a wireless signal from the control to the vehicle remote access system, and an attachment for mounting the housing on or integrating it with a separate article carried or worn by a user. The input switch can be a single pressible member, the number of time spaced sequential activations and the duration of each activation of which is determined by the control member to indicate a selected one of a plurality of distinctive vehicle control functions. The input switch member can alternately be a slidable or a rotary multi-position switch in which each position designates a distinct vehicle control function. A rechargeable battery can be carried in the housing and receives recharging electric power from a plug on the housing which is connectable to an external power supply, a solar cell carried on the housing, or an inductive secondary transformer coil carried in the housing.
    • 一种用于车辆远程接入系统的遥控装置,包括壳体,用于选择车辆控制功能的输入开关,控制器,用于从控制器向车辆远程接入系统发送无线信号的发射器,以及用于安装 在一个用户携带或佩戴的单独物品上放置或整合。 输入开关可以是单个可压缩构件,时间间隔顺序激活的次数和每次激活的持续时间由控制构件确定以指示多个不同的车辆控制功能中选定的一个。 输入开关构件可以交替地是可滑动的或旋转的多位置开关,其中每个位置指定不同的车辆控制功能。 可再充电电池可以承载在壳体中,并且从壳体上的插头接收可再充电的电力,该电源可连接到外部电源,承载在壳体上的太阳能电池或承载在壳体中的感应次级变压器线圈。
    • 10. 发明申请
    • Apparatus for medium-range vehicle communications and control
    • 中程车辆通讯和控制装置
    • US20090096596A1
    • 2009-04-16
    • US12218848
    • 2008-07-18
    • Michel F. SultanDale L. PartinCraig A. TiemanTodd P. Oman
    • Michel F. SultanDale L. PartinCraig A. TiemanTodd P. Oman
    • B60R27/00
    • G07C5/008G07C9/00309
    • Medium-range remote communication and control for a vehicle is achieved with a wireless vehicle telematics unit, a medium-range wireless portable fob, and an unmodified wireless personal communication device. The portable fob includes a medium-range RF transceiver for bi-directional communication with the telematics unit and a short-range wireless transceiver for bi-directional communication with the personal communication device. The fob communicates with the vehicle telematics unit in a conventional manner, and also relays information between the telematics unit and the personal communication device. Communication can be initiated by the telematics unit or by the operator via the fob or personal communication device. Once communication is initiated, the fob relays: (1) menu options and status information from the telematics unit to the personal communication device; and (2) menu selections from the personal communication device to the telematics unit. No cellular network service or special programming is required for the personal communications device.
    • 使用无线车辆远程信息处理单元,中程无线便携式小车和未修改的无线个人通信设备实现车辆的中程远程通信和控制。 便携式支架包括用于与远程信息处理单元进行双向通信的中频射频收发器和用于与个人通信设备进行双向通信的短距离无线收发器。 通过常规方式与车辆远程信息处理单元通信,并且还可以在远程信息处理单元和个人通信设备之间中继信息。 通信可以由远程信息处理单元或操作者通过FOB或个人通信设备发起。 一旦通信启动,FOB继电器:(1)从远程信息处理单元到个人通信设备的菜单选项和状态信息; 和(2)从个人通信设备到远程信息处理单元的菜单选择。 个人通信设备不需要蜂窝网络服务或特殊编程。