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    • 14. 发明授权
    • Illumination module
    • 照明模块
    • US07461951B2
    • 2008-12-09
    • US11340668
    • 2006-01-27
    • Ming-Chieh ChouWen-Shan LinYii-Tay ChiouChun-Hsun Chu
    • Ming-Chieh ChouWen-Shan LinYii-Tay ChiouChun-Hsun Chu
    • F21V29/00B60Q1/00
    • F21V29/763F21K9/68F21S41/143F21S41/147F21S45/43F21S45/49F21V5/04F21V29/51F21V29/67F21V29/677F21V29/76F21V29/773F21V29/83F21Y2107/40F21Y2115/10
    • An illumination module is disclosed, which is comprised of a plurality of light sources, a plurality of light source substrates of high thermal conductivity, and a reflecting member for reflecting light. The plural light source substrates are arranged at positions corresponding to each other so as to form a polygon periphery of the illumination module, whereas the inner surface of the polygon periphery is enabled for at least one of the plural light sources to fit therein. The reflecting member is placed at the center of the module where it is corresponding to each of the plural light source substrates so as to reflect the light emitting from the light sources fitted thereon. In addition, a lens with light refraction ability is disposed at the light emitting end of the illumination module so as to enable the light illumination module to have light condensing/diffusing capability. Moreover, each light source substrate further comprises: a plurality of heat dissipating fins, being arranged at the outer surface thereof; and a assistant heat dissipating device; wherein the working range of the operation power and the luminous flux of the illumination module can be increased by the combined function provided by the heat dissipating fins and the assistant heat dissipating device. The assistant heat dissipating device can further comprise: a fan, being arranged at the bottom of the illumination module; and a heat pipe device, being fitted onto the light source substrate, for conducting waste heat to the heat dissipating fins to be dissipated.
    • 公开了一种照明模块,其包括多个光源,多个导热性高的光源基板和用于反射光的反射部件。 多个光源基板被布置在彼此对应的位置处以形成照明模块的多边形边缘,而多边形边缘的内表面能够使多个光源中的至少一个安装在其中。 反射部件位于模块的与多个光源基板中的每一个对应的中心处,以便反射从其上安装的光源发出的光。 此外,具有光折射能力的透镜设置在照明模块的发光端,以使得照明模块能够具有聚光/漫射能力。 此外,每个光源基板还包括:布置在其外表面处的多个散热片; 和辅助散热装置; 其中通过散热片和辅助散热装置提供的组合功能可以提高照明模块的操作功率和光通量的工作范围。 辅助散热装置还可以包括:风扇,布置在照明模块的底部; 以及安装在光源基板上的热管装置,用于将散热量散发到散热翅片上。
    • 17. 发明授权
    • Electronic stethoscope and the stethoscope auscultation method using the same
    • 电子听诊器和听诊器听诊方法使用相同
    • US08144887B2
    • 2012-03-27
    • US12147751
    • 2008-06-27
    • Kuo-Hua TsengYu-Kon ChouYii-Tay Chiou
    • Kuo-Hua TsengYu-Kon ChouYii-Tay Chiou
    • A61B7/04
    • A61B7/04
    • The present invention relates to a stethoscope auscultation method, adapted for an improved stethoscope so as to be used for assisting a medical diagnosis according to visceral sounds. The stethoscope auscultation method comprises the steps of: providing a stethoscope, whereas the stethoscope is composed of a stethoscope head module, a processing unit and a signal output unit, and the stethoscope head module further comprises a sensor and a visceral sound receiver; enabling the sensor to issue an activation signal to the processing unit as soon as it detects that the stethoscope head module enters an auscultation mode, and thereby activating the stethoscope; using the stethoscope to perform an auscultation process upon a living body as the visceral sound receiver is enabled to obtain audio signals originated from the visceral organs of the living body; enabling the processing unit to shut off the stethoscope automatically when the visceral sound receiver is unable to obtain the audio signals originated from the visceral organs for environmental purposes, such as reducing power consumption of the stethoscope, prolonging lifespan of the battery used in the stethoscope.
    • 本发明涉及一种听诊器听诊方法,适用于改进的听诊器,以便用于根据内脏声音辅助医学诊断。 听诊器听诊方法包括以下步骤:提供听诊器,而听诊器由听诊器头模块,处理单元和信号输出单元组成,听诊器头模块还包括传感器和内脏声音接收器; 一旦检测到听诊器头模块进入听诊模式,从而激活听诊器,则能够使传感器向处理单元发出激活信号; 使用听诊器对生物体进行听诊处理,因为内脏声音接收器能够获得源自生物体的内脏器官的音频信号; 当内脏声音接收器不能获得源于内脏器官的音频信号用于环境目的时,例如降低听诊器的功耗,延长听诊器中使用的电池的使用寿命,使处理单元自动关闭听诊器。
    • 18. 发明申请
    • Illumination module
    • 照明模块
    • US20070115656A1
    • 2007-05-24
    • US11340668
    • 2006-01-27
    • Ming-Chieh ChouWen-Shan LinYii-Tay ChiouChun-Hsun Chu
    • Ming-Chieh ChouWen-Shan LinYii-Tay ChiouChun-Hsun Chu
    • F21S19/00
    • F21V29/763F21K9/68F21S41/143F21S41/147F21S45/43F21S45/49F21V5/04F21V29/51F21V29/67F21V29/677F21V29/76F21V29/773F21V29/83F21Y2107/40F21Y2115/10
    • An illumination module is disclosed, which is comprised of a plurality of light sources, a plurality of light source substrates of high thermal conductivity, and a reflecting member for reflecting light. The plural light source substrates are arranged at positions corresponding to each other so as to form a polygon periphery of the illumination module, whereas the inner surface of the polygon periphery is enabled for at least one of the plural light sources to fit therein. The reflecting member is placed at the center of the module where it is corresponding to each of the plural light source substrates so as to reflect the light emitting from the light sources fitted thereon. In addition, a lens with light refraction ability is disposed at the light emitting end of the illumination module so as to enable the light illumination module to have light condensing/diffusing capability. Moreover, each light source substrate further comprises: a plurality of heat dissipating fins, being arranged at the outer surface thereof; and a assistant heat dissipating device; wherein the working range of the operation power and the luminous flux of the illumination module can be increased by the combined function provided by the heat dissipating fins and the assistant heat dissipating device. The assistant heat dissipating device can further comprise: a fan, being arranged at the bottom of the illumination module; and a heat pipe device, being fitted onto the light source substrate, for conducting waste heat to the heat dissipating fins to be dissipated.
    • 公开了一种照明模块,其包括多个光源,多个导热性高的光源基板和用于反射光的反射部件。 多个光源基板被布置在彼此对应的位置处以形成照明模块的多边形边缘,而多边形边缘的内表面能够使多个光源中的至少一个安装在其中。 反射部件位于模块的与多个光源基板中的每一个对应的中心处,以便反射从其上安装的光源发出的光。 此外,具有光折射能力的透镜设置在照明模块的发光端,以使得照明模块能够具有聚光/漫射能力。 此外,每个光源基板还包括:布置在其外表面处的多个散热片; 和辅助散热装置; 其中通过散热片和辅助散热装置提供的组合功能可以提高照明模块的操作功率和光通量的工作范围。 辅助散热装置还可以包括:风扇,布置在照明模块的底部; 以及安装在光源基板上的热管装置,用于将散热量散发到散热翅片上。
    • 19. 发明申请
    • Dynamic pressure sensing structure
    • 动态压力感测结构
    • US20060078137A1
    • 2006-04-13
    • US11033503
    • 2005-01-12
    • Mao-Shun SuTsung-ter KuoYu-Kon ChouYii-Tay Chiou
    • Mao-Shun SuTsung-ter KuoYu-Kon ChouYii-Tay Chiou
    • H04R25/00
    • H04R19/04
    • A dynamic pressure sensing structure used in a condenser microphone includes an upper electrode plate, a lower electrode plate, a spacer and a substrate, wherein the upper and lower electrode plates are separated by the spacer and form a resonance cavity with the substrate. The upper electrode plate comprises a flat vibration area and a surrounding flexible area connected thereto. The lower electrode plate comprises a sensible electrode and an actuation electrode surrounding the sensible electrode. The plate is in connection with the flexible area so that a capacitor is formed between the sense area and the flat vibration area. The actuation electrode provides a polarization voltage to generate an electrostatic force, thereby attract the flexible vibration area to curve downwards so that the flat vibration area moves in a flat state and a distance between the flat vibration area and the sensible electrode is varied correspondingly.
    • 在电容麦克风中使用的动态压力感测结构包括上电极板,下电极板,间隔件和基板,其中上电极板和下电极板由间隔件隔开并与基板形成谐振腔。 上电极板包括平面振动区域和与其连接的周围的柔性区域。 下电极板包括敏感电极和围绕感性电极的致动电极。 该板与柔性区域连接,使得在感测区域和平坦振动区域之间形成电容器。 致动电极提供极化电压以产生静电力,从而吸引柔性振动区域向下弯曲,使得平坦振动区域在平坦状态下移动,并且平坦振动区域和感性电极之间的距离相应地变化。
    • 20. 发明授权
    • Dynamic pressure sensing structure
    • 动态压力感测结构
    • US07305096B2
    • 2007-12-04
    • US11033503
    • 2005-01-12
    • Mao-Shun SuTsung-ter KuoYu-Kon ChouYii-Tay Chiou
    • Mao-Shun SuTsung-ter KuoYu-Kon ChouYii-Tay Chiou
    • H04R25/00
    • H04R19/04
    • A dynamic pressure sensing structure used in a condenser microphone includes an upper electrode plate, a lower electrode plate, a spacer and a substrate, wherein the upper and lower electrode plates are separated by the spacer and form a resonance cavity with the substrate. The upper electrode plate comprises a flat vibration area and a surrounding flexible area connected thereto. The lower electrode plate comprises a sensible electrode and an actuation electrode surrounding the sensible electrode. The plate is in connection with the flexible area so that a capacitor is formed between the sense area and the flat vibration area. The actuation electrode provides a polarization voltage to generate an electrostatic force, thereby attract the flexible vibration area to curve downwards so that the flat vibration area moves in a flat state and a distance between the flat vibration area and the sensible electrode is varied correspondingly.
    • 在电容麦克风中使用的动态压力感测结构包括上电极板,下电极板,间隔件和基板,其中上电极板和下电极板由间隔件隔开并与基板形成谐振腔。 上电极板包括平面振动区域和与其连接的周围的柔性区域。 下电极板包括敏感电极和围绕感性电极的致动电极。 该板与柔性区域连接,使得在感测区域和平坦振动区域之间形成电容器。 致动电极提供极化电压以产生静电力,从而吸引柔性振动区域向下弯曲,使得平坦振动区域在平坦状态下移动,并且平坦振动区域和感性电极之间的距离相应地变化。