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    • 4. 发明公开
    • MOBILE DEVICE LOCATOR
    • EP3672291A1
    • 2020-06-24
    • EP18214251.3
    • 2018-12-19
    • NXP B.V.
    • Phan Le, Kim
    • H04W4/48H04W4/02
    • A method and apparatus of determining the position of a mobile device in a region of a vehicle cabin are described. The mobile device has a speaker and at least one microphone. The vehicle has an audio system comprising at least two speakers. The mobile device detects first and second acoustic signals respectively transmitted via the first and second vehicle speaker. The acoustic signals comprise a respective detection pattern. The detection patterns are mutually orthogonal. The detected acoustic signals may be compared or correlated with the detection patterns and a respective matched acoustic signal generated. The location of the mobile device within a region of the vehicle cabin may be determined based on the time difference of arrival of the first matched acoustic signal and the second matched acoustic signal. The mode of operation of the mobile device may be set or changed dependent on the location of the mobile device.
    • 5. 发明公开
    • Method of predicting an ambient temperature around a mobile device, computer program product and mobile device
    • 一种用于环境温度预测到便携式设备,计算机程序产品和移动设备的方法
    • EP2993451A1
    • 2016-03-09
    • EP14183811.0
    • 2014-09-05
    • NXP B.V.
    • Phan Le, KimNg, Pei Sin
    • G01K7/42
    • G01K7/42H04M1/0202H04M2250/12
    • There is disclosed a method of predicting an ambient temperature around a mobile device, wherein: a primary temperature sensor comprised in said mobile device measures a first temperature value; at least one secondary temperature sensor comprised in said mobile device measures a second temperature value; a processing unit comprised in said mobile device calculates a first prediction of an ambient temperature around the mobile device in dependence on the first temperature value and at least one parameter which is indicative of a thermal influence of one or more mobile device components on the measurements; the processing unit calculates a second prediction of said ambient temperature in dependence on the second temperature value and said parameter; the processing unit compares the first prediction with the second prediction and adjusts said parameter if the difference between the first prediction and the second prediction exceeds a predefined maximum. Furthermore, a corresponding computer program product and a corresponding mobile device are disclosed.
    • 有盘在游离缺失周围的移动设备,worin环境温度预测的方法:在所述移动装置测量第一温度值由主温度传感器; 在所述移动装置测量的第二温度值由至少一个二次温度传感器; 在所述移动设备包括一个处理单元计算该移动设备周围的环境温度的第一预测在所述第一温度值的依赖性和至少一个参数的所有其指示所述测量的一个或多个移动设备的组件的热影响; 所述处理单元计算所述环境温度的第二预测在所述第二温度值和所述参数的依赖; 处理单元比较第一预测与所述第二预测和bestimmt说,如果第一预测和第二预测之间的差超过预定的最大值的参数。 进一步,相应的计算机程序产品和相应的移动设备的游离缺失光盘。
    • 10. 发明公开
    • Method and apparatus for misalignment compensation in optical joysticks
    • 方法和装置,以补偿光控制杆的对准误差
    • EP2388682A1
    • 2011-11-23
    • EP10290261.6
    • 2010-05-18
    • NXP B.V.
    • Phan Le, KimMouy, Sebastien
    • G06F3/033G06F3/038G06F3/03
    • G06F3/038G06F3/0338G06F3/042
    • An apparatus for misalignment compensation in optical joysticks is described. The optical joystick includes a light source, a plurality ofphotodetectors, and circuitry for controlling operation of the optical joystick. In some embodiments, each of the photodetectors may partitioned into a plurality of photodetector elements and select photodetector elements are configured to be individually activated in order to cause an electrical shifting of the selected photodetector elements to achieve a different operational alignment position of optical components of the optical joystick. In some embodiments, the light source may be similarly be calibrated by individually activating portions of a light-source array to cause an electrical shift. Various other embodiments and methods of operation are also described.
    • 用于光学操纵杆的未对准补偿的装置进行说明。 光学操纵杆包括一光源,多个ofphotodetectors,以及电路,用于控制操作的光学操纵杆的。 在一些实施例中,每个光电检测器可以划分成光检测器元件和selectphoto检测器元件的多元性被配置为以致使所选择的光电检测器元件的电换档实现的光学部件的不同操作对准位置被单独地激活 光学操纵杆。 在一些实施例中,光源可以被类似地由一个光源阵列的单独激活部分校准以使电动换挡。 因此各种其它实施例和操作方法进行说明。