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    • 1. 发明申请
    • SYSTEM AND METHOD FOR DETECTING FLUORESCENCE IN MICROFLUIDIC CHIP
    • 用于检测微流控芯片荧光的系统和方法
    • US20080192254A1
    • 2008-08-14
    • US11872384
    • 2007-10-15
    • Suhyeon KimJintae Kim
    • Suhyeon KimJintae Kim
    • G01N21/64
    • G01N21/645
    • A system and a method for detecting fluorescence in a microfluidic chip having a microchamber and measuring the amount of the fluorescence are disclosed. In the system and method, an optical device detects fluorescence generated by a fluorescent material. The position of the outer circumference of a microfluidic chip is identified based on the change of the amount of the detected fluorescence. Then, the position of a microchannel is calculated based on the position of the outer circumference of the microfluidic chip and the distance between the outer circumference and the microchamber. Hence, the amount of the fluorescence only generated from the microchamber of the microfluidic chip is automatically calculated. Further, a plurality of samples can be analyzed at the same time, thereby reducing analysis time and cost.
    • 公开了一种用于检测具有微室并且测量荧光量的微流体芯片中的荧光的系统和方法。 在该系统和方法中,光学装置检测由荧光材料产生的荧光。 基于检测到的荧光的量的变化来识别微流体芯片的外周的位置。 然后,基于微流体芯片的外周的位置和外周与微室之间的距离来计算微通道的位置。 因此,仅从微流控芯片的微室产生的荧光量被自动计算。 此外,可以同时分析多个样本,从而减少分析时间和成本。
    • 2. 发明授权
    • System and method for detecting fluorescence in microfluidic chip
    • 用于检测微流控芯片荧光的系统和方法
    • US07859670B2
    • 2010-12-28
    • US11872384
    • 2007-10-15
    • Suhyeon KimJintae Kim
    • Suhyeon KimJintae Kim
    • G01N21/25
    • G01N21/645
    • A system and a method for detecting fluorescence in a microfluidic chip having a microchamber and measuring the amount of the fluorescence are disclosed. In the system and method, an optical device detects fluorescence generated by a fluorescent material. The position of the outer circumference of a microfluidic chip is identified based on the change of the amount of the detected fluorescence. Then, the position of a microchannel is calculated based on the position of the outer circumference of the microfluidic chip and the distance between the outer circumference and the microchamber. Hence, the amount of the fluorescence only generated from the microchamber of the microfluidic chip is automatically calculated. Further, a plurality of samples can be analyzed at the same time, thereby reducing analysis time and cost.
    • 公开了一种用于检测具有微室并且测量荧光量的微流体芯片中的荧光的系统和方法。 在该系统和方法中,光学装置检测由荧光材料产生的荧光。 基于检测到的荧光的量的变化来识别微流体芯片的外周的位置。 然后,基于微流体芯片的外周的位置和外周与微室之间的距离来计算微通道的位置。 因此,仅从微流控芯片的微室产生的荧光量被自动计算。 此外,可以同时分析多个样本,从而减少分析时间和成本。
    • 3. 发明申请
    • PORTABLE TERMINAL AND A CONTROL METHOD OF PERIPHERAL DEVICE USING THE SAME
    • 便携式终端及其使用的外围设备的控制方法
    • US20110136441A1
    • 2011-06-09
    • US13058125
    • 2008-12-23
    • Jiyeon SonChangseok BaeJintae Kim
    • Jiyeon SonChangseok BaeJintae Kim
    • H04W4/00
    • H04B1/202
    • The present invention relates to a portable terminal and a control method of peripheral device using the same. The plurality of peripheral devices adjacent to a portable terminal are searched, the locations of the plurality of searched peripheral devices are measured, a control parameterle value is set to at least one control parameterle for each of the plurality of peripheral devices according to location information of the plurality of peripheral devices, and a control signal including the set control parameterle value is generated and transmitted to a corresponding peripheral device. According to the present invention, in controlling a plurality of adjacent peripheral devices using a portable terminal, the control parameterle values for controlling the individual peripheral devices are changed according to the distances and directions of the plurality of peripheral devices from the portable terminal. Therefore, it is possible to provide customized services optimized on the basis of the location of a user.
    • 便携式终端及其使用方法技术领域本发明涉及便携式终端及其使用方法。 搜索与便携式终端相邻的多个外围设备,测量多个搜索到的外围设备的位置,根据位置信息将控制参数值设置为多个外围设备中的每一个的至少一个控制参数 生成多个外围设备和包括设置的控制参数值的控制信号并发送到相应的外围设备。 根据本发明,在使用便携式终端控制多个相邻的外围设备的情况下,用于控制各个外围设备的控制参数值根据多个外围设备从便携式终端的距离和方向而改变。 因此,可以提供基于用户位置优化的定制服务。
    • 4. 发明申请
    • WIRELESS TERMINAL AND CONTROL METHOD FOR DIFFUSING SMELL THEREOF
    • 无线终端和控制方法,用于扩散小细胞
    • US20110111704A1
    • 2011-05-12
    • US13054016
    • 2009-07-14
    • Jiyeon SonJunseok ParkChangseok BaeJintae Kim
    • Jiyeon SonJunseok ParkChangseok BaeJintae Kim
    • H04B7/00
    • H04M1/21A61L9/00A61L2209/11H04M1/7253H04W64/003
    • The present invention relates to a wireless terminal that includes a wireless communication unit that transmits/receives wireless signals with a smell diffusion apparatus, a user interface that receives control variable values for controlling the driving of the smell diffusion apparatus, and a controller that estimates the distance between the smell diffusion apparatus and the wireless terminal using the wireless signals transmitted/received by the wireless communication unit and adjusts the control variable values input based on the estimated distance to allow smell diffusion control signals to be output, and a control method for diffusing smell thereof. With the present invention, the control variable values of the smell diffusion apparatus, such as the smell diffusion time point, smell diffusion intensity, and smell diffusion duration time, etc., are adjusted according to the distance between the smell diffusion apparatus and the wireless terminal, making it possible to provide more improved smell diffusion services depending on the user.
    • 无线终端技术领域本发明涉及一种无线终端,其包括:无线通信单元,其利用气味扩散装置发送/接收无线信号;接收控制变量值的用户接口,其控制所述气味扩散装置的驱动;以及控制器, 使用由无线通信单元发送/接收的无线信号的气味扩散装置与无线终端之间的距离,并且基于估计的距离调整输入的控制变量值,以允许输出气味扩散控制信号;以及扩散控制方法 气味 根据本发明,根据气味扩散装置与无线电之间的距离来调整气味扩散装置的气味扩散时间点,气味扩散强度和气味扩散持续时间等的控制变量值 终端,使得可以根据用户提供更多改进的气味扩散服务。