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    • 1. 发明授权
    • Device with memory function for controlling closure of vehicle and method thereof
    • 具有用于控制车门关闭的记忆功能的装置及其方法
    • US08032285B2
    • 2011-10-04
    • US11948776
    • 2007-11-30
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • G06F7/00
    • E05F15/73E05Y2900/51
    • A device with a memory function for detecting closure of vehicle doors and the method thereof is disclosed. Before a vehicle door is open, a detecting signal near the outer side of the door is emitted and its detection status is recorded. When the vehicle door is to be closed, a first detecting signal is emitted from the door frame top downwards and a second detecting signal is emitted near the outer side of the door. If the first detecting signal indicates that a person is at the door or the second detecting signal indicates that a person exists on the outer side of the door by comparison with a precious record, then the door is prohibited from being closed. Otherwise, the door can be closed. This automatic detection method can prevent the driver from accidentally hurt passengers by carelessly closing the doors.
    • 公开了一种具有用于检测车门关闭的记忆功能的装置及其方法。 在车门打开之前,发出门外侧附近的检测信号,并记录其检测状态。 当车门关闭时,第一检测信号从门框顶部向下发射,并且在门的外侧附近发射第二检测信号。 如果第一检测信号指示人在门口,或者第二检测信号通过与珍贵记录相比较而指示人存在于门的外侧,则门被禁止关闭。 否则,门可以关闭。 这种自动检测方法可以防止驾驶员不小心关上门而意外伤害乘客。
    • 2. 发明授权
    • Signal-transmitting and multi-receiving method of detecting obstacle and parking sensor apparatus using the same
    • 用于检测障碍物的信号发送和多重接收方法及使用其的驻车传感器装置
    • US07728719B2
    • 2010-06-01
    • US12072950
    • 2008-02-29
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • B60Q1/00
    • G01S15/931G01S15/42G01S15/87
    • A parking sensor apparatus has a microprocessor and multiple ultrasonic sensors. The microprocessor uses a time division transmitting method to control only one ultrasonic sensor to output an ultrasonic detecting signal. In addition, after one ultrasonic detecting signal is output, all ultrasonic sensor are controlled to be in receiving status. Therefore, the microprocessor receives the reflected detecting signals from the ultrasonic sensors and obtains preset distances defined between adjacent ultrasonic sensors to calculate the shortest distance between the vehicle and the obstacle. Further, since only one ultrasonic sensor outputs the ultrasonic detecting signal at a time point, the microprocessor clearly determines that the reflected detecting signal is corresponding to the present ultrasonic sensor, that is controlled to output the ultrasonic detecting signal.
    • 停车传感器装置具有微处理器和多个超声波传感器。 微处理器使用时分传输方法来仅控制一个超声波传感器来输出超声波检测信号。 此外,在输出一个超声波检测信号之后,所有的超声波传感器都被控制在接收状态。 因此,微处理器接收来自超声波传感器的反射检测信号,并获得相邻超声波传感器之间限定的预设距离,以计算车辆与障碍物之间的最短距离。 此外,由于只有一个超声波传感器在时间点输出超声波检测信号,微处理器清楚地确定反射的检测信号对应于当前的超声波传感器,该超声波传感器被控制以输出超声波检测信号。
    • 3. 发明授权
    • Car reversal radar that automatically modifies the sensor scanning range and method of the same
    • 汽车倒车雷达可以自动修改传感器的扫描范围和方法
    • US07567168B2
    • 2009-07-28
    • US11585093
    • 2006-10-24
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • B60Q1/00
    • G08G1/168G01S15/931G08G1/16
    • A car reversal radar automatically modifies the sensor scanning range and the method of the same. The car reversal radar includes a central processing unit that has predetermined compensation value and threshold distance. When the car reversal radar starts, its surrounding environment is recorded into an initial detecting value. The initial detecting value is compared with a subsequent detecting value recorded for the environment when the car is being backed. When the subsequent detecting value is greater than the sum of the initial detecting value and the compensation value, the distance between an obstacle and the ultrasonic sensor of the car is compared with the threshold distance. If the former is greater than the latter, the compensation value is increased. Therefore, the obstacle has to even closer to the ultrasonic sensor to reduce the sensitivity of the ultrasonic sensors at the tail and to prevent incorrect actions.
    • 汽车反转雷达自动修改传感器扫描范围及其方法。 轿厢反转雷达包括具有预定补偿值和阈值距离的中央处理单元。 当汽车反转雷达开始时,其周围环境被记录为初始检测值。 将初始检测值与当汽车被支撑时为环境记录的随后的检测值进行比较。 当后续检测值大于初始检测值和补偿值之和时,将障碍物与汽车的超声波传感器之间的距离与阈值距离进行比较。 如果前者大于后者,则补偿值增加。 因此,障碍物必须更靠近超声波传感器,以降低超声波传感器在尾部的灵敏度并防止不正确的动作。
    • 7. 发明授权
    • Reversing sensor without a control box
    • 没有控制箱的反转传感器
    • US07362216B2
    • 2008-04-22
    • US11282199
    • 2005-11-17
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • B60Q1/00
    • B60Q9/006G01S7/523G01S15/87G01S15/931
    • A reversing sensor device applies a master-slave type of sensor architecture. The reversing sensor device includes at least one master-sensor and more than one slave-sensor. The master-sensor includes a microprocessor, an ultrasonic emission circuit, a reflective wave detection circuit and an alarm circuit. The master-sensor not only takes charge of detecting the obstacle but can also coordinate the operation timing for each of the slave-sensors. In this way, the master-sensor replaces the functionality of a conventional control box. The master-sensor is connected to the slave-sensors and also uses a time-sharing principle and a polling method to control the timing of each slave-sensor to collect a detection result. In addition, the slave-sensor includes a microprocessor, an ultrasonic emission circuit and a reflective wave detection circuit.
    • 反向传感器装置应用主从型传感器架构。 反向传感器装置包括至少一个主传感器和多于一个的从传感器。 主传感器包括微处理器,超声波发射电路,反射波检测电路和报警电路。 主传感器不仅负责检测障碍物,而且还可以协调每个从传感器的操作时序。 以这种方式,主传感器代替传统控制箱的功能。 主传感器连接到从传感器,并且还使用分时原理和轮询方法来控制每个从传感器的定时以收集检测结果。 此外,从传感器包括微处理器,超声波发射电路和反射波检测电路。
    • 8. 发明申请
    • Sound recording device for use in vehicles
    • 用于车辆的录音装置
    • US20070165491A1
    • 2007-07-19
    • US11335322
    • 2006-01-19
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • H04B1/20
    • G03B31/02G11B27/034G11B2220/61
    • A vehicle on-board sound recording device includes a carrier with a sound recording module. The sound recording module includes a microprocessor, a memory, a microphone, a mini speaker, an indicator unit and a plurality of operation buttons. The microprocessor is used as an operation control center with a built-in compress program to make a compressed audio file. The memory is used as a storage media. The microphone is used to receive a driver's sound message and send to the microprocessor. The mini speaker is used to play the sound message of digital/analog conversion. The operation buttons and the indicator unit are configured on a surface of the carrier to facilitate the driver to manipulate, so that the driver not only can record important sound message but also can have a safe driving.
    • 车载车载录音装置包括具有录音模块的载体。 录音模块包括微处理器,存储器,麦克风,迷你扬声器,指示器单元和多个操作按钮。 微处理器用作具有内置压缩程序的操作控制中心,以制作压缩音频文件。 存储器用作存储介质。 麦克风用于接收驱动程序的声音消息并发送到微处理器。 迷你扬声器用于播放数字/模拟转换的声音消息。 操作按钮和指示器单元被配置在载体的表面上以便驾驶员操纵,使得驾驶员不仅可以记录重要的声音信息,而且可以具有安全驾驶。
    • 9. 发明申请
    • Reversing sensor without a control box
    • 没有控制箱的反转传感器
    • US20070109109A1
    • 2007-05-17
    • US11282199
    • 2005-11-17
    • Shih-Hsiung Li
    • Shih-Hsiung Li
    • B60Q1/00
    • B60Q9/006G01S7/523G01S15/87G01S15/931
    • A reversing sensor device applies a master-slave type of sensor architecture. The reversing sensor device includes at least one master-sensor and more than one slave-sensor. The master-sensor includes a microprocessor, an ultrasonic emission circuit, a reflective wave detection circuit and an alarm circuit. The master-sensor not only takes charge of detecting the obstacle but can also coordinate the operation timing for each of the slave-sensors. In this way, the master-sensor replaces the functionality of a conventional control box. The master-sensor is connected to the slave-sensors and also uses a time-sharing principle and a polling method to control the timing of each slave-sensor to collect a detection result. In addition, the slave-sensor includes a microprocessor, an ultrasonic emission circuit and a reflective wave detection circuit.
    • 反向传感器装置应用主从型传感器架构。 反向传感器装置包括至少一个主传感器和多于一个的从传感器。 主传感器包括微处理器,超声波发射电路,反射波检测电路和报警电路。 主传感器不仅负责检测障碍物,而且还可以协调每个从传感器的操作时序。 以这种方式,主传感器代替传统控制箱的功能。 主传感器连接到从传感器,并且还使用分时原理和轮询方法来控制每个从传感器的定时以收集检测结果。 此外,从传感器包括微处理器,超声波发射电路和反射波检测电路。