Ulifecare management service method and device using adaptive control protocol for USN interface
    2.
    发明授权
    Ulifecare management service method and device using adaptive control protocol for USN interface 有权
    Ulifecare管理服务方法和设备使用自适应控制协议进行USN接口

    公开(公告)号:US09542837B2

    公开(公告)日:2017-01-10

    申请号:US14615469

    申请日:2015-02-06

    CPC classification number: G08C17/02 G08C2201/42 H04Q9/00

    Abstract: A control method of a gateway communicating with at least one sensor and a service server is provided. The control method may include receiving, from the at least one sensor, first information comprising at least one of bioinformation, disaster prevention information, and public information, transmitting the first information to the service server when the first information meets a first standard, or processing the first information in a data format of the first standard and transmitting the processed first information to the service server when the first information does not meet the first standard, receiving, from the service server, a control command to control the at least one sensor, and transmitting the control command to a sensor corresponding to the control command.

    Abstract translation: 提供了与至少一个传感器和服务服务器通信的网关的控制方法。 所述控制方法可以包括从所述至少一个传感器接收包括生物信息,防灾信息和公共信息中的至少一个的第一信息,当所述第一信息满足第一标准时,将所述第一信息发送到所述服务服务器,或者处理 所述第一信息以所述第一标准的数据格式发送,并且当所述第一信息不满足所述第一标准时将所处理的第一信息发送到所述服务服务器,从所述服务服务器接收控制所述至少一个传感器的控制命令, 以及将所述控制命令发送到与所述控制命令相对应的传感器。

    Resonator and biosensor system including the same
    4.
    发明授权
    Resonator and biosensor system including the same 有权
    谐振器和生物传感器系统包括相同的

    公开(公告)号:US09196946B2

    公开(公告)日:2015-11-24

    申请号:US13960773

    申请日:2013-08-06

    CPC classification number: H01P7/10 G01N27/745 G01R33/1269 H01P7/082

    Abstract: A resonator includes a dielectric substrate, a conductor disposed over the dielectric substrate, and a high-dielectric pattern disposed between outer parts of the conductor. The conductor includes an arc part, which has a C shape, and the outer parts, which respectively extend outward from both ends of the arc part, such that the conductor has an omega shape as a whole. The high-dielectric pattern has a relative permittivity greater than a relative permittivity of the dielectric substrate. The resonator has a flat plate shape to increase a filling factor of a sample, thereby improving measurement sensitivity. Also, the resonator is miniaturized, and thus a biosensor system including the resonator is also miniaturized.

    Abstract translation: 谐振器包括电介质基板,布置在电介质基板上的导体以及设置在导体外部之间的高电介质图案。 导体包括具有C形的圆弧部分和从圆弧部分的两端向外分别延伸的外部部分,使得导体整体上具有ω形状。 高电介质图案的相对介电常数大于电介质基片的相对介电常数。 谐振器具有平板形状以增加样品的填充因子,从而提高测量灵敏度。 此外,谐振器小型化,因此包括谐振器的生物传感器系统也小型化。

    Optical imaging system using multiple light sources and driving control method thereof
    7.
    发明授权
    Optical imaging system using multiple light sources and driving control method thereof 有权
    使用多个光源的光学成像系统及其驱动控制方法

    公开(公告)号:US09503624B2

    公开(公告)日:2016-11-22

    申请号:US14198768

    申请日:2014-03-06

    CPC classification number: H04N5/2256 G01N21/6456 H04N5/23229 H04N5/332

    Abstract: Provided is an optical imaging system capable of increasing diagnosis reliability and preciseness, and efficiently observing a target. The optical imaging system using multiple light sources according to an embodiment of the present invention includes a first light source generating a first light modulated with a first frequency, a second light source generating a second light modulated with a second frequency, a camera simultaneously detecting multiple lights output from an object after the first and second lights are illuminated on the object and outputting multiple image detecting signals, and an image processing unit processing the multiple image detecting signals to obtain a first image representing a shape of the object and a second image representing a desired target portion of the object.

    Abstract translation: 提供了一种能够提高诊断可靠性和准确度并且有效地观察目标的光学成像系统。 根据本发明的实施例的使用多个光源的光学成像系统包括产生以第一频率调制的第一光的第一光源,产生以第二频率调制的第二光的第二光源,同时检测多个光的相机 第一和第二灯之后从物体输出的光被照射在物体上并输出多个图像检测信号,以及图像处理单元处理多个图像检测信号以获得表示物体的形状的第一图像和代表物体的第二图像 物体的期望目标部分。

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