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    • 7. 发明授权
    • Body interactively learning method and apparatus
    • 身体交互式学习方法和装置
    • US08315552B2
    • 2012-11-20
    • US12032272
    • 2008-02-15
    • Hung-Hsiu YuChing-Yi LiuWei-Han WangChiu-Sheng Tseng
    • Hung-Hsiu YuChing-Yi LiuWei-Han WangChiu-Sheng Tseng
    • G09B5/04
    • G09B7/02G09B15/00
    • A body interactively learning method is disclosed, which comprises the steps of: turning on the power of a body interactively learning apparatus while selecting an operation mode for the same; attaching a motion sensor of the body interactively learning apparatus onto body of a user; using the motion sensor to detect vibrations of the body and consequently sending the detected vibration signals to a processing unit; enabling the processing unit to perform an evaluation for determining whether the vibration signals are valid. With the aforesaid method and apparatus, the user is able to use the valid vibration signals to control a proceeding of an audio/video content that is stored in a data storage unit of the apparatus selected from the group consisting of: playing the audio/video content, pausing the playing of the audio/video content, recording the audio/video content, setting pause points in the audio/video content, searching the pause point of the audio/video content, and changing playing speed of the audio/video content, and responding interactively to the audio/video content. In an exemplary embodiment, the user can either stop the playing of the audio/video content by pressing a stop button of the apparatus or by moving his/her body to generate a specific vibration signal.
    • 公开了一种身体交互式学习方法,包括以下步骤:在选择其操作模式的同时接通身体交互式学习装置的功率; 将身体交互式学习装置的运动传感器附接到用户的身体上; 使用运动传感器来检测身体的振动,并且因此将检测到的振动信号发送到处理单元; 使得处理单元执行用于确定振动信号是否有效的评估。 利用上述方法和装置,用户能够使用有效振动信号来控制存储在从包括以下各项组成的组中选择的装置的数据存储单元中的音频/视频内容的进行:播放音频/视频 内容,暂停播放音频/视频内容,记录音频/视频内容,设置音频/视频内容中的暂停点,搜索音频/视频内容的暂停点,以及改变音频/视频内容的播放速度 并且与音频/视频内容交互地进行响应。 在示例性实施例中,用户可以通过按下设备的停止按钮或通过移动他/她的身体以产生特定的振动信号来停止音频/视频内容的播放。
    • 8. 发明申请
    • PUDDLE ELIMINATING SYSTEM AND PUDDLE ELIMINATING METHOD
    • PUDDLE消除系统和PUDDLE消除方法
    • US20110119950A1
    • 2011-05-26
    • US12703203
    • 2010-02-10
    • Yu-Lun HoChin-Chi HsiaoChia-Pin KuoWei-Han Wang
    • Yu-Lun HoChin-Chi HsiaoChia-Pin KuoWei-Han Wang
    • F26B5/12
    • F26B5/12
    • A puddle eliminating system and a puddle eliminating method are provided. The puddle eliminating system includes a main body, a moving wheel set, a water absorbing unit, at least one water sensor, a water-storage tank and a fan unit. The main body has a control unit, which the moving wheel set disposed at the bottom of the main body and the fan unit are electrically connected to. The water absorbing unit having the water sensor therein and being electrically connected to the control unit is disposed at the main body. The water-storage tank communicates with the water absorbing unit. The moving wheel set shifts and the absorbing unit absorbs and transmits puddle to the water-storage tank. The water sensor detects in a predetermined period whether there is puddle in an environment whereat the puddle eliminating system is placed or not and transmits detecting signals to the control unit.
    • 提供了一个水坑消除系统和一个水坑消除方法。 水槽除水系统包括主体,移动轮组,吸水单元,至少一个水传感器,储水箱和风扇单元。 主体具有控制单元,其中设置在主体底部的移动轮组和风扇单元电连接。 其中具有水传感器并且与控制单元电连接的吸水单元设置在主体上。 储水箱与吸水单元连通。 移动轮组移动,吸收单元吸收并将水坑传送到储水箱。 水传感器在预定时间段内检测在水槽排除系统放置的环境中是否存在熔池,并将检测信号发送到控制单元。
    • 9. 发明授权
    • Optical waveguide bio-sensing device
    • 光波导生物传感器
    • US07636502B2
    • 2009-12-22
    • US11540972
    • 2006-10-02
    • Yen-Chieh MaoJian-Shian LinLai-Sheng ChenWei-Han Wang
    • Yen-Chieh MaoJian-Shian LinLai-Sheng ChenWei-Han Wang
    • G02B6/00G02B6/34
    • G01N21/7703G01N21/553G01N2021/7773
    • An optical waveguide bio-sensing device, comprising: a monochromatic light source, a beam splitter, a grating chip with a sub-wavelength grating structure and a sensor. Moreover, in order to enhance the sensitivity of the system using the optical waveguide bio-sensing device, a light concentrating element or a quarter waveplate (¼λ) is arranged in the optical path during detection. When the grating chip is not coated with a layer of biochemical substance corresponding to a monochrome light emitted from the monochromatic light source, a reflected light of a specific narrow wavelength is reflected by a specific angle as a surface plasmon resonant effect caused by waveguide coupling is excited by the incidence of the monochrome light to the grating chip through the beam splitter; otherwise, there will be little or no reflection. Accordingly, the optical waveguide bio-sensing device can detect bio-molecular interactions, reaction rate and/or molecular dynamics without any labeling in real time. Optical systems using the present invention are simplified and capable of being portable. Thus a high sensitivity detection technique is achieved.
    • 一种光波导生物感测装置,包括:单色光源,分束器,具有亚波长光栅结构的光栅芯片和传感器。 此外,为了提高使用光波导生物感测装置的系统的灵敏度,在检测期间在光路中布置光聚集元件或四分之一波片(λ-λ)。 当光栅芯片没有涂覆与从单色光源发射的单色光相对应的生物化学物质层时,由于波导耦合引起的表面等离子体共振效应,特定窄波长的反射光被反射特定角度 由单色光通过分束器激发到光栅芯片; 否则,会有很少或没有反映。 因此,光波导生物传感装置可以实时检测生物分子相互作用,反应速率和/或分子动力学,而无需任何标记。 使用本发明的光学系统被简化并能够便携。 因此实现了高灵敏度检测技术。