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    • 21. 发明授权
    • Interactive phone message control apparatus for a motor vehicle
    • 用于机动车辆的交互式电话消息控制装置
    • US08400261B2
    • 2013-03-19
    • US12732323
    • 2010-03-26
    • David K. LambertMichel F. SultanLaci J. JalicsFrancis E. Szczublewski
    • David K. LambertMichel F. SultanLaci J. JalicsFrancis E. Szczublewski
    • G05B19/00G06F7/00G06K19/00G08B29/00
    • H04M1/6091
    • A motor vehicle includes control apparatus for establishing an interactive human-machine interface (HMI) between a vehicle driver and an on-board communication system that is wirelessly coupled to a nomadic communication device carried by the driver. The on-board communication system has the ability to activate the nomadic communication device to check for messages, and the interactive HMI includes a configurable display through which check-message inquiries are selectively communicated to the driver, and an input device selectively manipulated by the driver to accept a check-message inquiry. An HMI controller responsive to sensed vehicle operating condition data and driver manipulation of the input device determines if and when a check-message inquiry should be communicated to the driver.
    • 一种机动车辆包括用于在车辆驾驶员和车载通信系统之间建立交互式人机接口(HMI)的控制装置,所述交互式人机接口与所述驾驶员携带的游牧通信设备无线耦合。 车载通信系统能够激活游牧通信设备来检查消息,并且交互式HMI包括可配置显示器,通过该可配置显示器,选择性地将通话信息询问到该驱动器,以及由驾驶员选择性地操纵的输入设备 接受支票信息查询。 响应于感测到的车辆操作条件数据和驾驶员操纵输入设备的HMI控制器确定是否以及何时应将通话消息询问通知给驾驶员。
    • 24. 发明申请
    • PERSONAL SPEAKERPHONE DEVICE
    • 个人扬声器设备
    • US20120069989A1
    • 2012-03-22
    • US13051280
    • 2011-03-18
    • David K. Lambert
    • David K. Lambert
    • H04M9/08
    • H04M9/085
    • This disclosure describes a personal speakerphone device for teleconferencing a local participant with near side audio data and a far side participant with far side audio data. The device includes a controller that couples to a speaker and a microphone inside an enclosure that couples the speaker and the microphone within a coupling frequency range, and where the enclosure houses the speaker, the microphone, the controller, analog to digital conversion circuitry, digital to analog conversion circuitry, supporting circuitry, and one or more ports for data through which audio data is transferred. Additionally, the device includes a first frequency band decomposer, a second frequency band decomposer, one or more echo cancellers, and a converger. Further, the device includes a primary doubletalk detector and a secondary doubletalk detector.
    • 本公开描述了一种个人扬声器装置,用于电话会议具有近侧音频数据的本地参与者和具有远端音频数据的远端参与者。 该装置包括控制器,其耦合到耦合在耦合频率范围内的扬声器和麦克风的外壳内的扬声器和麦克风,并且其中外壳容纳扬声器,麦克风,控制器,模数转换电路,数字 到模拟转换电路,支持电路以及一个或多个端口用于通过其传输音频数据的数据。 另外,该设备包括第一频带分解器,第二频带分解器,一个或多个回声消除器和收敛器。 此外,该装置包括主双重检测器和次级双重检测器。
    • 25. 发明授权
    • Chemical vapor sensor having an active and a passive measurement mode
    • 具有主动和被动测量模式的化学气相传感器
    • US07279132B2
    • 2007-10-09
    • US11033703
    • 2005-01-12
    • Michel F. SultanDavid K. Lambert
    • Michel F. SultanDavid K. Lambert
    • B32B5/02B32B27/04B32B27/12G01N7/00G01N21/00
    • B60K28/063B60K28/06B60K28/066B60W2540/24G01N21/3504G01N21/61G01N33/4972Y10T436/11Y10T436/117497Y10T436/25Y10T436/255Y10T436/25875
    • A chemical vapor sensor is provided that measures a chemical species of interest with high sensitivity and chemical specificity. In an aspect, an ethanol vapor sensor is provided, sized for being inconspicuous and on-board a vehicle, having a passive measurement mode and an active breathalyzer mode, for detecting a motor vehicle driver that exceeds a legal limit of blood alcohol concentration (BAC), for use with vehicle safety systems. For the passive mode, a vapor concentrator is utilized to amplify a sampled vapor concentration to a detectible level for use with an infrared (IR) detector. In an aspect, ethanol vapor in a vehicle cabin is passively measured and if a predetermined ethanol level is measured, a countermeasure is invoked to improve safety. In an aspect, an active breathalyzer is used as a countermeasure. The active breathalyzer can be imposed for a number of vehicle trips or for a predetermined time period.
    • 提供一种化学气相传感器,以高灵敏度和化学特性测量感兴趣的化学物质。 在一方面,提供了一种乙醇蒸气传感器,其尺寸适于不显眼和车载车辆,具有被动测量模式和主动呼气机模式,用于检测超过血液酒精浓度合法限度的汽车驾驶员(BAC ),用于车辆安全系统。 对于被动模式,使用蒸气浓缩器将采样的蒸汽浓度放大到可用于红外(IR)检测器的可检测水平。 一方面,被动地测量车厢内的乙醇蒸汽,如果测量到预定的乙醇水平,则调用对策以提高安全性。 在一方面,使用活性呼气机作为对策。 主动呼吸机可以施加一些车辆行驶或预定的时间段。
    • 27. 发明授权
    • Liquid property sensor
    • 液体传感器
    • US06781388B2
    • 2004-08-24
    • US09963862
    • 2001-09-26
    • Da Yu WangYing Jie LinDavid K. Lambert
    • Da Yu WangYing Jie LinDavid K. Lambert
    • G01R2726
    • G01R27/2605G01N27/226
    • A sensor includes a substrate consisting essentially of a non-conductive material, a first electrode, and a second electrode disposed on a first surface of the substrate, wherein the first electrode includes a first major portion traversing a length of the substrate and a finger extending from the major portion, wherein the second electrode includes a second major portion traversing the length of the substrate and a finger extending from the second major portion, wherein the first electrode finger extends toward the second electrode major portion and the second electrode finger extends toward the first electrode major portion and is substantially parallel to the first finger, and a third electrode connected to a ground, wherein the third electrode is interposed between and about the first and second electrodes.
    • 传感器包括基本上由非导电材料组成的衬底,第一电极和设置在衬底的第一表面上的第二电极,其中第一电极包括穿过衬底长度的第一主要部分和延伸 其中所述第二电极包括穿过所述基板的长度的第二主要部分和从所述第二主要部分延伸的手指,其中所述第一电极指延伸朝向所述第二电极主要部分,并且所述第二电极指延伸朝向所述第二主要部分 第一电极主要部分并且基本上平行于第一指状物,以及连接到地面的第三电极,其中第三电极介于第一和第二电极之间并且围绕第一电极延伸。
    • 28. 发明授权
    • Sensor for measuring alcohol content of alcohol gasoline fuel mixtures
    • 用于测量酒精汽油燃料混合物的酒精含量的传感器
    • US5262645A
    • 1993-11-16
    • US754475
    • 1991-09-03
    • David K. LambertStephen J. HarrisStephen J. Swarin
    • David K. LambertStephen J. HarrisStephen J. Swarin
    • G01N21/31G01N21/35G01N33/28
    • G01N21/314G01N21/3504G01N21/3577G01N21/359G01N33/2852
    • An alcohol sensing device is provided for determining the alcohol content within an alcohol/gasoline fuel mixture provided to an internal combustion engine. The sensing device uses infrared spectrometry measuring techniques. The infrared sensing device determines the ratio of light absorption by the alcohol/gasoline mixture at two discrete wavelengths within the near-infrared spectrum. The two particular wavelengths of interest are preferably chosen so that at one of the infrared wavelengths, alcohol is strongly absorbing while the gasoline exhibits very little absorption, and at the second wavelength both the alcohol and the gasoline exhibit are essentially non-absorbing. A light beam is transmitted through the alcohol/gasoline fuel mixture such that the two discrete wavelengths traverse the same optical path. A first and second detector are adjacently disposed so as to receive the emitted light from each wavelength after their transmission through the alcohol/gasoline fuel mixture. A third and fourth detector are adjacently disposed in proximity to the first and second detectors for sensing the drift in ambient temperatures corresponding to the first and second detectors. Once the signals corresponding to the two wavelengths are obtained and the signals corresponding to the ambient temperatures are factored out, the ratio of the absorbances by the fuel mixture at both wavelengths is computed. From this ratio and the fuel temperature the concentration of alcohol in the fuel is determined.
    • 提供了一种酒精感测装置,用于确定提供给内燃机的醇/汽油燃料混合物中的醇含量。 感测装置使用红外光谱测量技术。 红外感测装置确定近红外光谱中两个离散波长下的醇/汽油混合物的光吸收率。 优选选择感兴趣的两个特定波长,使得在红外波长的一个处,醇是强吸收的,而汽油表现出非常少的吸收,而在第二波长下,醇和汽油表现出基本上不吸收。 光束通过酒精/汽油燃料混合物传播,使得两个离散的波长穿过相同的光路。 相邻地设置第一和第二检测器,以便在透过酒精/汽油燃料混合物之后接收来自每个波长的发射光。 第三和第四检测器相邻设置在第一和第二检测器附近,用于感测对应于第一和第二检测器的环境温度的漂移。 一旦获得对应于两个波长的信号,并且将与环境温度相对应的信号进行分解,则计算两个波长处的燃料混合物的吸光度比。 从该比率和燃料温度确定燃料中的醇的浓度。
    • 29. 发明授权
    • Thermal diffusion fluid flow sensor
    • 热扩散流体流量传感器
    • US4713970A
    • 1987-12-22
    • US838929
    • 1986-03-12
    • David K. Lambert
    • David K. Lambert
    • G01F1/684G01F1/708G01F1/68G01P5/10
    • G01F1/6842G01F1/684G01F1/6845G01F1/708G01F1/7084
    • A miniature solid state fluid flow sensor has a low diffusivity substrate, such as a polymer film, which is optionally mounted on a thermally conductive base. A resistor strip on the substrate is connected to an electrical oscillator and thus emits thermal waves which are propagated through the fluid at a rate dependent on a fluid flow component perpendicular to the strip. A thermoelectric detector, spaced from one side or each side of the strip, senses the thermal waves; and detector circuitry determines the time or phase shift due to fluid flow.A reference sensor is positioned relative to the primary flow sensor to compensate for the effects of pressure and temperature changes and uses properties of symmetry to assure low sensitivity to variations in the direction of fluid flow.
    • 微型固态流体流量传感器具有低扩散性基底,例如可选地安装在导热基底上的聚合物膜。 衬底上的电阻条连接到电气振荡器,从而发射热波,其以取决于垂直于条带的流体流动分量的速率传播通过流体。 从条的一侧或每侧隔开的热电探测器感测热波; 并且检测器电路确定由于流体流动引起的时间或相移。 参考传感器相对于主流量传感器定位以补偿压力和温度变化的影响,并且使用对称性来确保对流体流动方向的变化的低灵敏度。