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    • 5. 外观设计
    • Adapter
    • USD885390S1
    • 2020-05-26
    • US29661558
    • 2018-08-29
    • Chia-Chi SunYun-Tung PaiYen-Hua HsiaoYi-Hsuan LinJui-Hsien ChienHan-Sheng Siao
    • Chia-Chi SunYun-Tung PaiYen-Hua HsiaoYi-Hsuan LinJui-Hsien ChienHan-Sheng Siao
    • FIG. 1 is a front, right, top perspective view of an adapter showing our new design;
      FIG. 2 is a rear, right, bottom perspective view thereof;
      FIG. 3 is a rear, right, top perspective view thereof;
      FIG. 4 is a front view thereof;
      FIG. 5 is a rear view thereof;
      FIG. 6 is a left side view thereof;
      FIG. 7 is a right side view thereof;
      FIG. 8 is a top view thereof;
      FIG. 9 is a bottom view thereof;
      FIG. 10 is a front, right, top perspective thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 11 is a rear, right, bottom perspective view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 12 is a rear, right, top perspective view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 13 is a front view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 14 is a rear view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 15 is a left side view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 16 is a right side view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 17 is a top view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 18 is a bottom view thereof with the upper member of the adapter opened relative to the lower member of the adapter;
      FIG. 19 is a perspective view thereof with the adapter clamped to a notebook computer in an open state;
      FIG. 20 is an enlarged view of the portion, labeled ‘20’ of FIG. 19;
      FIG. 21 is a perspective view thereof with the adapter clamped to a notebook computer in a closed state; and,
      FIG. 22 is an enlarged view of the portion, labeled ‘22’ of FIG. 21.
      The broken lines consisting of a long dash and two short dashes depict reference to the enlargements shown in FIGS. 19-22 and form no part of the claim. The broken line consisting of long dash and one short dash defines the boundary of the claim, which extends to the boundary but does not include the boundary. The broken line showing the additional notebook computer in FIGS. 19-22 depict environmental subject matter only and form no part of the claim, while all other broken lines depict portions of the adapter that form no part of the claimed design.
    • 7. 发明授权
    • Device and method for optical center detection
    • 光学中心检测装置及方法
    • US07307709B2
    • 2007-12-11
    • US11172869
    • 2005-07-05
    • Yi-Hsuan LinTeck Wee Low
    • Yi-Hsuan LinTeck Wee Low
    • G01N21/41
    • G02B27/62G01J1/0266
    • A device is presented for computing an optical center of a sensor array relative to a lens. The sensor array includes a plurality of sensor units, and each sensor unit has a position on the sensor array. The lens defines an optical axis. The device includes a configuration module and a processing circuit. The configuration module is provided for positioning the lens and the sensor array thereon. When test light is parallel to the optical axis and is incident to the lens, the sensor array receives the test light transmitted by the lens so that each sensor unit outputs a value. The processing circuit is linked to the sensor array for receiving values outputted from the sensor units and selecting positions of sensor units outputting a specific value among the values, for computing the optical center of the sensor array.
    • 呈现用于计算相对于透镜的传感器阵列的光学中心的装置。 传感器阵列包括多个传感器单元,并且每个传感器单元具有传感器阵列上的位置。 透镜定义光轴。 该装置包括配置模块和处理电路。 配置模块用于将透镜和传感器阵列定位在其上。 当测试光平行于光轴并且入射到透镜时,传感器阵列接收由透镜传输的测试光,使得每个传感器单元输出一个值。 处理电路与传感器阵列连接,用于接收从传感器单元输出的值,并选择输出值之间的特定值的传感器单元的位置,以计算传感器阵列的光学中心。
    • 9. 发明授权
    • Juice extractor
    • 榨汁机
    • US08783171B2
    • 2014-07-22
    • US13235549
    • 2011-09-19
    • Yi-Hsuan Lin
    • Yi-Hsuan Lin
    • A23J1/00B26D1/00A23N1/00A47J19/02
    • A47J19/02A23N1/003
    • A juice extractor is adapted to squeeze juice from oranges and similar kinds of fruits. The juice extractor includes a juice extractor base and a juice squeezing wheel rotatably disposed on the juice extractor base. An arcuate concave surface is formed on an upper portion of the juice extractor base. The juice squeezing wheel has an involute outer surface. A crushing space is defined between the juice squeezing wheel and the concave surface of the juice extractor base for receiving a half-cut fruit. When the juice squeezing wheel rotates, the half-cut fruit in the crushing space is crushed to produce fruit juice. The juice extractor can squeeze juice electrically, is structurally simple and is convenient to be washed.
    • 榨汁机适用于从橘子和类似水果榨汁。 榨汁机包括榨汁机基座和可旋转地设置在榨汁机基座上的榨汁机。 在榨汁机基座的上部形成有弧形的凹面。 果汁挤压轮具有渐开线外表面。 果汁挤压轮与榨汁机基座的凹面之间形成破碎空间,用于接收半切水果。 当果汁挤压轮旋转时,粉碎空间中的半切水果被粉碎以产生果汁。 榨汁机可以电解榨汁,结构简单,洗涤方便。