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    • 91. 发明申请
    • DEVICE FOR CONVERTING MUSIC SIGNAL TO ELECTRICAL STIMULATION
    • 用于将音乐信号转换为电刺激的装置
    • US20120245409A1
    • 2012-09-27
    • US13423380
    • 2012-03-19
    • CHIH-KUO LIANG
    • CHIH-KUO LIANG
    • A61N1/36A61M21/02
    • A61M21/02A61H39/002A61H2201/10A61H2201/5048A61M2021/0027A61M2021/0044A61M2021/0072A61N1/36014
    • A device for converting music signals into electrical stimulation is revealed. The device for converting music signals into electrical stimulation includes a switching device. The switching device is disposed with an amplifier whose input end is connected to a music player while an output end of the amplifier is connected to a voltage/current converter. A stimulating electrode is at an output end of the voltage/current converter. Music signals are input through the music player, amplified by the amplifier, and converted by the voltage/current converter. Thus the stimulating electrode at the output end stimulates users' acupuncture points for treatment of insomnia. Thereby the treatment of insomnia is effective and the sleep quality is improved. The switching device is with a high practical value.
    • 揭示了将音乐信号转换为电刺激的装置。 用于将音乐信号转换为电刺激的装置包括切换装置。 开关装置设置有放大器,其放大器的输入端连接到音乐播放器,而放大器的输出端连接到电压/电流转换器。 刺激电极位于电压/电流转换器的输出端。 音乐信号通过音乐播放器输入,由放大器放大,并由电压/电流转换器转换。 因此,输出端的刺激电极刺激用户的针灸治疗失眠症。 因此,失眠的治疗是有效的,并且睡眠质量得到改善。 开关装置具有很高的实用价值。
    • 92. 发明申请
    • TRADEMARK MAP CONSTRUCTION METHOD
    • 商标地图构造方法
    • US20120215548A1
    • 2012-08-23
    • US13030333
    • 2011-02-18
    • CHUNG-JEN CHENCHAO-CHUN CHENCHIA-PI LIANG
    • CHUNG-JEN CHENCHAO-CHUN CHENCHIA-PI LIANG
    • G06Q10/00
    • G06Q10/00
    • A trademark map construction method is revealed. Firstly, select a range of trademarks intended to be analyzed and take background data of trademark samples required. Then integrate the above data to form a questionnaire having trademark modes and related serial number. Next invite people to divide the trademark samples into groups with similarity according to their subjective judgment and complete a corresponding matrix. Use Multi-Dimensional Scale (MDS) algorithms to process the above data so as to get relative distance between the trademark samples. Thus the distribution of the trademark samples in the trademark map is obtained. Thereby enterprises are provided with a trademark design reference and product recognition, positioning are also achieved.
    • 揭示了商标地图制作方法。 首先,选择一系列要分析的商标,并提供所需的商标样本的背景资料。 然后整合上述数据,形成具有商标模式和相关序列号的问卷。 接下来邀请人们根据他们的主观判断将商标样品分成具有相似性的组,并完成相应的矩阵。 使用多维尺度(MDS)算法处理上述数据,以获得商标样本之间的相对距离。 因此,商标样本在商标图中的分布得到。 从而为企业提供商标设计参考和产品认定,定位也实现了。
    • 94. 发明申请
    • FLEXIBLE PIEZOELECTRIC TACTILE SENSOR
    • 柔性压电传感器
    • US20110266923A1
    • 2011-11-03
    • US12771132
    • 2010-04-30
    • CHENG-HSIN CHUANGYI-RONG LIOU
    • CHENG-HSIN CHUANGYI-RONG LIOU
    • H01L41/083
    • H01L41/1132G01L1/16G01L5/167H01L41/193
    • A flexible piezoelectric tactile sensor having a piezoelectric thin film, a first flexible substrate, a second flexible substrate, and at least one elastic body is revealed. The piezoelectric thin film includes an upper surface and a lower surface while the first flexible substrate is disposed on the upper surface of the piezoelectric thin film. The first flexible substrate consists of a first surface facing the upper surface, a second surface opposite to the first surface and a plurality of first electrodes formed on the first surface. The second flexible substrate, including a third surface facing the lower surface and a plurality of second electrodes formed on the third surface, is arranged on the lower surface of the piezoelectric thin film. Both the first electrodes and the second electrode are electrically connected with the piezoelectric thin film. The elastic body is set on the second surface, corresponding to the first electrodes.
    • 揭示了具有压电薄膜,第一柔性基板,第二柔性基板和至少一个弹性体的柔性压电触觉传感器。 压电薄膜包括上表面和下表面,而第一柔性基板设置在压电薄膜的上表面上。 第一柔性基板包括面向上表面的第一表面,与第一表面相对的第二表面和形成在第一表面上的多个第一电极。 第二柔性基板,包括面向下表面的第三表面和形成在第三表面上的多个第二电极,布置在压电薄膜的下表面上。 第一电极和第二电极都与压电薄膜电连接。 弹性体设置在与第一电极相对应的第二表面上。
    • 95. 发明授权
    • Remote control method for a motion heading by refering to an angle between a receiving end and a transmission end
    • 通过参考接收端和传输端之间的角度来确定运动方向的遥控方法
    • US08005578B2
    • 2011-08-23
    • US11898387
    • 2007-09-12
    • Yih-Ran Sheu
    • Yih-Ran Sheu
    • G05D1/00
    • G08C17/02G08C2201/32G08C2201/50
    • A method to control a motion heading at a receiving end by referring to an angle between the receiving end and a transmission end includes the following steps solving an angle, α, between an original heading and a user inputted direction of transmission end; having a signal-receiving unit at the receiving end to pick up signals sent from the transmission end; determining a signal source orientation according to strength of the signals received by the signal-receiving unit which comprises multiple sensors or a position sensitive device arranged in a form to pick up the signals from the transmission end; solving an angle, β, between the signal source orientation and an original motion heading of the receiving end; and solving a new motion heading according to the angles αand β.
    • 通过参照接收端和发送端之间的角度来控制接收端的运动航向的方法包括解决原始航向和用户输入的发送端方向之间的角度α的以下步骤; 在接收端具有信号接收单元以拾取从发送端发送的信号; 根据由包含多个传感器的信号接收单元接收的信号的强度确定信号源取向,或者以从传输端拾取信号的形式布置的位置敏感设备; 求解信号源方向与接收端的原始运动方向之间的角度&bgr; 并根据角度α和bgr求解新的运动标题。
    • 97. 发明授权
    • Fuel safety control apparatus for vehicle
    • 车辆燃油安全控制装置
    • US07841440B2
    • 2010-11-30
    • US12079162
    • 2008-03-25
    • Chuan Liu
    • Chuan Liu
    • B60K28/10
    • B60K28/14B60W2710/0616F02M33/08F02M37/0023F02M37/0041F02M37/0052
    • A fuel safety control device includes a fuel pump disposed in a fuel tank and coupled to a vehicle engine with a fuel piping system, a fuel system safety controller coupled to the fuel pump for controlling the driving direction of the fuel pump, and an impact detector coupled to the fuel system safety controller for supplying an impact signal to the fuel system safety controller and to reverse the driving direction of the fuel pump, and to draw the fuel from the fuel piping system back to the fuel tank when receiving an impact signal, in order to prevent the impact firing from being occurred. A transformer circuit may be coupled to the fuel pump for increasing the driving speed of the fuel pump when required.
    • 燃料安全控制装置包括燃料泵,其设置在燃料箱中并且与燃料管道系统的车辆发动机相连,燃料系统安全控制器,其耦合到燃料泵,用于控制燃料泵的驱动方向;以及冲击检测器 连接到燃料系统安全控制器,用于向燃料系统安全控制器提供冲击信号并使燃料泵的驱动方向反向,并且当接收到冲击信号时将燃料从燃料管路系统抽回燃料箱, 以防止发生冲击。 变压器电路可以联接到燃料泵,以在需要时增加燃料泵的驱动速度。
    • 98. 发明授权
    • Method for prohibiting a person with a facial mask to operate an automatic teller machine
    • 禁止带有面膜的人操作自动柜员机的方法
    • US07809163B2
    • 2010-10-05
    • US12385336
    • 2009-04-06
    • Yih-Ran Sheu
    • Yih-Ran Sheu
    • G06K9/00
    • G06K9/00234G06K9/00255G06K9/00899
    • A method for prohibiting a person with a facial mask to operate an automatic teller machine essentially includes the followings steps of: a) arranging a visual spectrum camera and an alarm unit approaching an automatic teller machine (ATM); b) capturing a facial picture of an experimental subject via the camera; c) judging if the picture performs generic facial features of a human face; if false, proceed Step g); d) if true, a facial temperature of the subject is detected to gain a measured temperature; e) comparing the measured temperature with a predetermined reference temperature; if the measured temperature is not within the reference temperature range, a spurious human face is determined and Step g) goes on; f) if the measured temperature is within the reference temperature range, a genuine human face is determined and the ATM is allowably operated without proceeding Step g); and g) activating the alarm unit to transmit a warning signal without operating the ATM.
    • 一种禁止面罩人操作自动柜员机的方法基本上包括以下步骤:a)配置视频光谱摄像机和接近自动取款机(ATM)的报警单元; b)通过相机拍摄实验对象的面部图像; c)判断图像是否执行人脸的通用面部特征; 如果为假,则进行步骤g); d)如果为真,则检测受试者的面部温度以获得测量的温度; e)将测量​​的温度与预定的参考温度进行比较; 如果测量温度不在参考温度范围内,则确定虚假人脸,并且步骤g)继续; f)如果测量的温度在参考温度范围内,则确定真正的人脸,并且ATM可以允许操作而不进行步骤g); 并且g)激活警报单元以在不操作ATM的情况下发送警告信号。
    • 99. 发明申请
    • PIEZOELECTRIC TACTILE SENSOR
    • 压电式触摸传感器
    • US20100207490A1
    • 2010-08-19
    • US12379127
    • 2009-02-13
    • Cheng-Hsin Chuang
    • Cheng-Hsin Chuang
    • H01L41/113H01L41/22G06F3/033
    • H01L41/1132H01L41/45Y10S310/80Y10T29/42
    • A novel flexible tactile sensor for sensing the force direction was designed by introducing the concept of structural electrodes on a piezoelectric film. The structural electrodes comprised an elastomeric column and distributed microelectrodes between the column and piezoelectric film. As a periodic small force acts at the elastomeric column, the force is transferred to the piezoelectric film based on the column bending behavior, therefore the scale of force can be detected by the output voltages from the distributed electrodes due to the corresponding force state under the column. In addition, two opposite output signals from different sides of the column can differentiate the force direction as the column is bent by external force. The resulting signal for sensing force and its direction depends on the size of column.
    • 通过在压电膜上引入结构电极的概念,设计了一种用于感测力方向的新型柔性触觉传感器。 结构电极在柱和压电膜之间包括弹性体柱和分布的微电极。 由于周期性小的力作用在弹性体柱上,所以基于柱的弯曲行为将力传递到压电膜,因此,由于分布电极的输出电压,由于在 柱。 另外,柱的不同侧的两个相反的输出信号可以通过外力使柱被弯曲而区分力方向。 所得到的感应力信号及其方向取决于色谱柱的大小。