Photothermal conversion measurement apparatus, photothermal conversion measurement method, and sample cell
    12.
    发明授权
    Photothermal conversion measurement apparatus, photothermal conversion measurement method, and sample cell 失效
    光热转换测量装置,光热转换测量方法和样品池

    公开(公告)号:US07522287B2

    公开(公告)日:2009-04-21

    申请号:US11350954

    申请日:2006-02-10

    IPC分类号: G01B11/02 G01N21/00 G01N1/10

    摘要: A liquid sample is irradiated with excitation light and measurement light, and a measurement position at which a traveling path of the measurement light passes through an excitation section of the excitation light in the sample is changed while the sample is being irradiated with the excitation light and the measurement light. Then, the phase change of the measurement light is measured for each measurement by optical interferometry on the basis of the measurement light after the measurement light passes through the sample. The measurement position is changed by, for example, scanning the excitation light, moving the sample, moving a lens that collects the excitation light in the sample so as to change the light-collecting position (focal position) in the sample, etc.

    摘要翻译: 用激发光和测量光照射液体样品,并且在样品被激发光照射的同时改变测量光的行进路径通过样品中的激发光的激发部分的测量位置,以及 测量灯。 然后,基于测量光通过样品后的测量光,通过光学干涉测量对每次测量测量测量光的相位变化。 通过例如扫描激发光,移动样品,移动收集样品中的激发光的透镜来改变测量位置,以便改变样品中的聚光位置(焦点位置)等。

    Peripheral device
    13.
    发明申请
    Peripheral device 审中-公开
    外围设备

    公开(公告)号:US20070285391A1

    公开(公告)日:2007-12-13

    申请号:US11711344

    申请日:2007-02-27

    IPC分类号: G09G5/00 G06F3/033

    CPC分类号: G06F1/1632 G06F3/03543

    摘要: Disclosed herein is a peripheral device connected to an electronic device via an interface cable for exchanging first data with the electronic device via the interface cable based on a general interface standard. The peripheral device includes a radio communication section configured to perform radio communication with an outside and exchange second data relating to the radio communication with the electronic device via the interface cable based on the general interface standard.

    摘要翻译: 本文公开了一种通过接口电缆连接到电子设备的外围设备,用于经由基于通用接口标准的接口电缆与电子设备交换第一数据。 外围设备包括:无线电通信部分,被配置为基于通用接口标准,经由接口电缆与外部进行无线电通信,并与电子设备进行无线电通信相关的第二数据交换。

    Method of culturing cells in suspension using lectins
    15.
    发明授权
    Method of culturing cells in suspension using lectins 失效
    使用凝集素培养悬浮细胞的方法

    公开(公告)号:US06251670B1

    公开(公告)日:2001-06-26

    申请号:US09340035

    申请日:1999-06-28

    IPC分类号: C12N500

    CPC分类号: C12N5/163 C12N5/16

    摘要: An object of the present invention is to provide a method of enabling perfusion culture efficiently and simply by agglutinating cells with Lectin, which is a naturally-occurring agglutinin, thereby separating the cells and the culture medium. According to the method of the present invention, lectin is added to a culture medium to quickly agglutinate and precipitate the cells, thereby separating the culture medium and the cells. Hence, it is easy to remove old culture medium and replenish with fresh culture medium. Accordingly, if the method of the present invention is used, the perfusion culture is performed automatically and on an industrial scale.

    摘要翻译: 本发明的目的在于提供一种能够通过凝集凝血素凝集素凝集细胞而能有效且简单地进行灌注培养的方法,从而分离细胞和培养基。 根据本发明的方法,将凝集素加入到培养基中以使细胞快速凝集并沉淀,从而分离培养基和细胞。 因此,很容易去除老的培养基并用新鲜培养基补充。 因此,如果使用本发明的方法,则自动进行灌注培养,并以工业规模进行。

    Body part guidance control method for non-contact biometrics authentication device and non-contact biometrics authentication device
    18.
    发明授权
    Body part guidance control method for non-contact biometrics authentication device and non-contact biometrics authentication device 有权
    非接触式生物识别装置和非接触式生物识别装置的身体部位引导控制方法

    公开(公告)号:US08270680B2

    公开(公告)日:2012-09-18

    申请号:US12274573

    申请日:2008-11-20

    IPC分类号: G06K9/00

    摘要: A body part guidance control is performed in a non-contact biometrics authentication device which performs individual authentication utilizing characteristics of a body part which is a portion of a human body, for guiding the body part so as to capture images without contact. The future position at the time of message display is predicted by using body part positions of n times in the past and the guidance message can be selected according to this predicted position to output an appropriate message. Hence the time for guidance into an appropriate image capture region can be shortened, the output of messages for movement in the direction opposite the body part movement can be prevented, and inducement of confusion in the user can be prevented, so that the speed of authentication can be improved.

    摘要翻译: 身体部位引导控制在非接触生物体认证装置中进行,该非接触生物体认证装置使用作为人体的一部分的身体部位的特征进行个体认证,用于引导身体部位以便不接触地拍摄图像。 消息显示时的未来位置是通过使用过去n次的身体部位的位置来预测的,并且可以根据该预测位置选择引导消息以输出适当的消息。 因此,可以缩短引导到合适的图像拍摄区域的时间,可以防止在与身体部分运动相反的方向上移动的消息的输出,并且可以防止在用户中引起混淆,从而认证速度 可以改进。

    APPARATUS AND METHOD FOR MEASURING SEMICONDUCTOR CARRIER LIFETIME
    19.
    发明申请
    APPARATUS AND METHOD FOR MEASURING SEMICONDUCTOR CARRIER LIFETIME 有权
    测量半导体载体寿命的装置和方法

    公开(公告)号:US20120203473A1

    公开(公告)日:2012-08-09

    申请号:US13500305

    申请日:2010-10-01

    IPC分类号: G06F19/00 G01N21/55

    摘要: In a semiconductor carrier lifetime measuring apparatus A1 of the present invention, at least two types of light having mutually different wavelengths are irradiated onto a semiconductor X to be measured, a predetermined measurement wave is irradiated onto the semiconductor X to be measured, a reflected wave of the measurement wave that has been reflected by the semiconductor X to be measured or a transmitted wave of the measurement wave that has transmitted through the semiconductor X to be measured is detected, and the carrier lifetime in the semiconductor X to be measured is obtained based on the detection results so as to minimize the error. Accordingly, the semiconductor carrier lifetime measuring apparatus A1 configured as described above can more accurately measure the carrier lifetime.

    摘要翻译: 在本发明的半导体载体寿命测量装置A1中,将具有相互不同波长的至少两种类型的光照射到要测量的半导体X上,将预定测量波照射到要测量的半导体X上,反射波 检测被测半导体X所反射的测量波,或检测通过半导体X的被测量的测定波的透过波,测定半导体X的载流子寿命, 检测结果,以最小化误差。 因此,如上所述构成的半导体载体寿命测定装置A1能够更准确地测定载流子寿命。