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    • 4. 发明申请
    • FLUORESCENT BIOCHIP DIAGNOSIS DEVICE
    • 荧光生物诊断装置
    • US20100247382A1
    • 2010-09-30
    • US12743998
    • 2008-11-10
    • Byoung -Su Lee
    • Byoung -Su Lee
    • G01N30/00
    • H01L27/14625G01N21/6454G01N2021/6471H01L27/14621H01L27/14627
    • Disclosed is a fluorescent biochip diagnosis device including: an image sensor having a plurality of photo-detectors; and a band-pass filter unit having a plurality of band-pass filters formed on a plurality of the photo-detectors, wherein a plurality of the band-pass filters are implemented by forming a nanostructure pattern in a metal layer. Since the fluorescent biochip diagnosis device has little optical loss due to a short interval between the biochip and the photo-detector, excellent sensitivity can be provided. Also, since signals can be simultaneously measured by combining light beams having a short wavelength used as an illumination depending on a type of a fluorescent protein material, cost of the diagnosis device and a diagnosis time can be reduced.
    • 公开了一种荧光生物芯片诊断装置,包括:具有多个光检测器的图像传感器; 以及具有形成在多个光检测器上的多个带通滤波器的带通滤波器单元,其中通过在金属层中形成纳米结构图案来实现多个带通滤波器。 由于荧光生物芯片诊断装置由于生物芯片和光电检测器之间的间隔小而具有很小的光学损失,因此可以提供极好的灵敏度。 此外,由于可以根据荧光蛋白质材料的种类组合用作照明的短波长的光束同时测量信号,所以可以降低诊断装置的成本和诊断时间。
    • 5. 发明申请
    • BIOCHIP
    • US20100239457A1
    • 2010-09-23
    • US12599979
    • 2007-10-15
    • Byoung-Su LeeDo-Young Lee
    • Byoung-Su LeeDo-Young Lee
    • G01N21/27
    • G01N21/6454G01N21/274G01N21/6428G01N21/76G01N2021/0325G01N2021/7786H01L27/14621
    • Provided is a biochip including a high-sensitivity image sensor. The biochip includes: a biochip layer including a plurality of reaction zones in which biochemical reactions occur formed as concaves, the reaction zone including a reference material at a lower portion and a target material at an upper portion; and an image sensor layer which is formed below the biochip layer and includes a plurality of photo detectors. Since the biochip is implemented as a single chip including the biochip layer and the image sensor layer, light loss in the luminescence or fluorescence operation can be reduced. In addition, additional devices such as a scanner which are needed for a general biochip are not needed, so that sensitivity is improved, and low-cost biochips can be implemented.
    • 提供了包括高灵敏度图像传感器的生物芯片。 生物芯片包括:生物芯片层,包括生成化学反应发生的多个反应区域,形成为凹部,反应区域包括下部的参考材料和上部的靶材料; 以及形成在生物芯片层下方并且包括多个光电检测器的图像传感器层。 由于生物芯片被实现为包括生物芯片层和图像传感器层的单个芯片,所以可以减少发光或荧光操作中的光损失。 此外,不需要用于一般生物芯片所需的诸如扫描仪的附加设备,从而提高灵敏度,并且可以实现低成本的生物芯片。
    • 7. 发明申请
    • Three-Dimensional Image Display Apparatus Using Flat Panel Display
    • 使用平板显示器的三维图像显示装置
    • US20080158671A1
    • 2008-07-03
    • US11912330
    • 2006-05-08
    • Byoung Su Lee
    • Byoung Su Lee
    • G02B27/22
    • G02B27/2264G02B27/225H04N13/32H04N13/354
    • A three-dimensional image display apparatus using a flat panel display unit is provided. The three-dimensional image display apparatus includes a flat panel display unit, reflecting plate arrays reflecting incident light, and a vibrator vibrating the reflecting plate arrays from left to right or from right to left, wherein the reflecting plate arrays are moved according to time by an vibration of the vibrator, and wherein a three-dimensional image is displayed by changing an image of the flat panel display unit based on an angle of the reflecting plate arrays. The three-dimensional image display apparatus has advantages that no auxiliary apparatuses such as special glasses are required to recognize the three-dimensional image, and that has no deterioration of an image quality, which is the biggest drawback of a general three-dimensional image display apparatus, and that observation of a three-dimensional image is not limited to one person. Also, the three-dimensional image display apparatus is capable of representing a multi-viewpoint image and selective representation of two-dimensional and three-dimensional images.
    • 提供一种使用平板显示单元的三维图像显示装置。 三维图像显示装置包括平板显示单元,反射入射光的反射板阵列和从左向右或从右向左振动反射板阵列的振动器,其中反射板阵列随时间移动 振动器的振动,并且其中通过基于反射板阵列的角度改变平板显示单元的图像来显示三维图像。 三维图像显示装置的优点是不需要诸如专用眼镜的辅助装置来识别三维图像,并且不会劣化图像质量,这是一般三维图像显示器的最大缺点 装置,并且三维图像的观察不限于一个人。 此外,三维图像显示装置能够表示多视点图像和二维和三维图像的选择性表示。
    • 8. 发明授权
    • Apparatus for continuous fabricating superconducting tapes
    • 用于连续制造超导带的装置
    • US08685166B2
    • 2014-04-01
    • US12530315
    • 2008-03-07
    • Do-Jun YoumJa-Eun YooByoung-Su LeeSang-Moo LeeYe-Hyun JungJae-Young Lee
    • Do-Jun YoumJa-Eun YooByoung-Su LeeSang-Moo LeeYe-Hyun JungJae-Young Lee
    • B05C11/00B05C13/00B05C15/00C23C16/00
    • H01L39/2432C23C14/562H01L39/2422
    • Provided is an apparatus for continuously fabricating superconducting tapes. An evaporation using drum in dual chamber (EDDC) method is suitable for mass production of high-temperature superconducting tapes. However, the EDDC method is limited to fabrication of high-temperature superconducting tapes having a limited length. In an attempt, high-temperature super-conducting tapes having a sufficiently large length can be fabricated using the EDDC method by releasing a long high-temperature superconducting tape from one reel and winding the long high-temperature superconducting tape around the other reel. In this case, it is important to stably move a high-temperature superconducting tape spirally wound around a drum from one reel to the other reel. Therefore, the provided apparatus uses endless tract belts separately disposed around a drum to stably and continuously move a high-temperature superconducting tape spirally wound around the drum along the centerline of the drum from one reel to the other reel.
    • 提供了用于连续制造超导带的装置。 使用双室蒸发(EDDC)方法的蒸发适用于大规模生产高温超导带。 然而,EDDC方法限于制造具有有限长度的高温超导带。 试图通过使用EDDC方法,通过从一个卷轴上释放长的高温超导带并将长的高温超导带缠绕在另一卷轴上,可以制造具有足够长的高温超导带。 在这种情况下,重要的是将围绕鼓的螺旋卷绕的高温超导带从一个卷轴稳定地移动到另一个卷轴。 因此,所提供的装置使用分开设置在滚筒周围的环形带,以便将沿鼓的中心线螺旋卷绕在滚筒周围的高温超导带从一个卷轴稳定地连续移动到另一个卷轴。
    • 9. 发明授权
    • Image sensor for measuring illumination, proximity and color temperature
    • 用于测量照度,接近度和色温的图像传感器
    • US08658975B2
    • 2014-02-25
    • US12793066
    • 2010-06-03
    • Byoung-Su LeeChan-Ki KimYoung-Ho Seo
    • Byoung-Su LeeChan-Ki KimYoung-Ho Seo
    • G02F1/01H01L31/00
    • G01S17/89G01J3/02G01J3/0208G01J3/027G01J3/0278G01J3/51G01J3/513G01S7/4816G01S7/491G01S17/87H04N5/2256H04N5/33H04N5/3696
    • Disclosed is an image sensor for measuring illumination, proximity and color temperature, including: a light source unit configured to irradiate infrared with a wavelength of a specific band onto an object; a light source controller configured to control power supplied to the light source unit; an infrared transmission filter configured to allow only the infrared and visible ray with the wavelength of the specific band among light incident through a lens after being reflected by the object to selectively transmit therethrough; a first sensing unit provided with an image pixel for acquiring an image of the object introduced through the infrared transmission filter; and a second sensing unit configured to receive the infrared and the visible ray having passed through the infrared transmission filter and measure current illumination, proximity to the object and color temperature of the object.
    • 公开了一种用于测量照明,接近度和色温的图像传感器,包括:光源单元,被配置为将具有特定波段的波长的红外线照射到物体上; 光源控制器,被配置为控制提供给所述光源单元的电力; 红外线透射滤光器,其被配置为仅在被物体反射后仅允许通过透镜入射的光中的特定波段的红外线和可见光线从而选择性地透射; 第一感测单元,设置有用于获取通过红外线透射滤光器引入的物体的图像的图像像素; 以及第二感测单元,被配置为接收已经穿过红外线透射滤光器的红外线和可见光,并且测量当前照明,物体的接近度和物体的色温。