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    • 1. 发明申请
    • OCT PROBE
    • OCT探索
    • US20090190883A1
    • 2009-07-30
    • US12361105
    • 2009-01-28
    • Kiichi KatoYoshinori MorimotoHiroshi YamazakiMasahiro Saito
    • Kiichi KatoYoshinori MorimotoHiroshi YamazakiMasahiro Saito
    • G02B6/32
    • G02B6/327A61B5/0066A61B5/0073A61B5/6852G01N21/4795G02B6/2552
    • An OCT probe has a sheath to be inserted into a subject; and an optical system within the sheath, for changing the direction of light which propagates from a light source through an optical fiber to irradiate the light onto the subject through a transparent portion of the sheath, and for reflecting the light beam, which is reflected by the subject, to guide the light into the optical fiber. A light output surface, for causing the light to be output from the reflecting surface in a direction obliquely inclined with respect to the inner surface of the sheath, and a reflected light sheath entrance preventing portion, for preventing light reflected by the inner surface of the sheath from entering the optical fiber, are provided in the optical system. The reflected light sheath entrance preventing portion may be formed by providing a cut planar surface portion on the lens.
    • OCT探针具有插入受试者的护套; 以及在护套内的光学系统,用于改变从光源通过光纤传播的光的方向,以通过护套的透明部分将光照射到被摄体上,并且用于反射由光束反射的光束 将光线引导到光纤中。 一个光输出表面,用于使光从相对于护套的内表面倾斜倾斜的方向从反射表面输出,反射光线入口防止部分,用于防止光的内表面反射的光 护套进入光纤,设置在光学系统中。 可以通过在透镜上设置切割的平坦表面部分来形成反射光线入射防止部分。
    • 2. 发明授权
    • OCT probe for eliminating ghost images
    • OCT探测器用于消除鬼影像
    • US07805034B2
    • 2010-09-28
    • US12361105
    • 2009-01-28
    • Kiichi KatoYoshinori MorimotoHiroshi YamazakiMasahiro Saito
    • Kiichi KatoYoshinori MorimotoHiroshi YamazakiMasahiro Saito
    • G02B6/00G02B6/26
    • G02B6/327A61B5/0066A61B5/0073A61B5/6852G01N21/4795G02B6/2552
    • An OCT probe has a sheath to be inserted into a subject; and an optical system within the sheath, for changing the direction of light which propagates from a light source through an optical fiber to irradiate the light onto the subject through a transparent portion of the sheath, and for reflecting the light beam, which is reflected by the subject, to guide the light into the optical fiber. A light output surface, for causing the light to be output from the reflecting surface in a direction obliquely inclined with respect to the inner surface of the sheath, and a reflected light sheath entrance preventing portion, for preventing light reflected by the inner surface of the sheath from entering the optical fiber, are provided in the optical system. The reflected light sheath entrance preventing portion may be formed by providing a cut planar surface portion on the lens.
    • OCT探针具有插入受试者的护套; 以及在护套内的光学系统,用于改变从光源通过光纤传播的光的方向,以通过护套的透明部分将光照射到被摄体上,并且用于反射由光束反射的光束 将光线引导到光纤中。 一个光输出表面,用于使光从相对于护套的内表面倾斜倾斜的方向从反射表面输出,反射光线入口防止部分,用于防止光的内表面反射的光 护套进入光纤,设置在光学系统中。 可以通过在透镜上设置切割的平坦表面部分来形成反射光线入射防止部分。
    • 3. 发明授权
    • Pyroelectric-type infrared sensor
    • 热电型红外传感器
    • US09329087B2
    • 2016-05-03
    • US14374413
    • 2012-07-11
    • Masahiro Saito
    • Masahiro Saito
    • G01J5/34G01J5/04G01J5/08
    • G01J5/04G01J5/089G01J5/34
    • A pyroelectric-type infrared sensor is provided with: a sensor element; a shield case for covering the sensor element; an infrared transmission filter; an output circuit, which performs impedance conversion to output signals of the sensor element and outputs the signals; and at least one reflecting film. In the pyroelectric-type infrared sensor, the at least one reflecting film, which reflects infrared, is provided between the infrared transmission filter attached to the shield case and surface electrodes, and the infrared transmission filter is disposed extremely close to the surface electrodes.
    • 热电型红外线传感器设置有:传感器元件; 用于覆盖传感器元件的屏蔽壳; 红外线传输滤波器; 输出电路,其执行阻抗转换以输出所述传感器元件的信号并输出​​所述信号; 和至少一个反射膜。 在热电型红外线传感器中,在安装在屏蔽壳体上的红外线透射滤光片与表面电极之间设置反射红外线的至少一个反射膜,红外线透过滤光片非常接近表面电极。
    • 4. 发明申请
    • TRANSPARENT RESIN SUBSTRATE
    • 透明树脂基材
    • US20140248478A1
    • 2014-09-04
    • US14352850
    • 2011-10-26
    • Masahiro SaitoTeppei Itamoto
    • Masahiro SaitoTeppei Itamoto
    • B29C45/14
    • B29C45/14811B29K2995/0026B29K2995/0031B29K2995/007C08J7/042C08J7/045C08J2475/16C08J2483/02Y10T428/24967Y10T428/249974
    • The transparent resin substrate has a light-transmitting thermoplastic resin underlying sheet 1 and a hard coating formed on one surface of the underlying sheet, wherein the hard coating includes a resin component obtained by curing an urethane acrylate that contains a tri-functional or less functional urethane acrylate and a tetra-functional or more functional urethane acrylate; a silane coupling agent or a hydrolyzed product thereof, a silica sol having a grain size of 5 to 500 nm and a refractive index in a range of 1.44 to 1.5; and a metal chelate compound. A low refractive index layer is formed on the hard coating, the low refractive index layer includes a low refractive index hollow silica sol having a grain size of 10 to 150 nm and a refractive index of not more than 1.44, the silane coupling agent or the hydrolyzed product thereof, and a metal chelate compound.
    • 所述透明树脂基板具有在所述基板1的下方的透光性热塑性树脂和形成在所述下层片材的一个表面上的硬涂层,其中,所述硬质被膜包含通过固化含有三官能以上官能团的氨基甲酸酯丙烯酸酯而得到的树脂成分 氨基甲酸酯丙烯酸酯和四官能或更多官能的聚氨酯丙烯酸酯; 硅烷偶联剂或其水解产物,粒径为5〜500nm,折射率在1.44〜1.5的硅溶胶; 和金属螯合物。 在硬涂层上形成低折射率层,低折射率层包括粒径为10〜150nm,折射率不大于1.44的低折射率中空硅溶胶,硅烷偶联剂或 水解产物和金属螯合物。
    • 6. 发明授权
    • Surveying instrument
    • 测量仪器
    • US08184267B2
    • 2012-05-22
    • US12315287
    • 2008-12-02
    • Kaoru KumagaiMasahiro Saito
    • Kaoru KumagaiMasahiro Saito
    • G01C3/14
    • G01C15/002G01S17/66
    • The present invention provides a surveying instrument provided with a tracking function, said surveying instrument comprising a first image pickup means 40 with a first solid image pickup element 33, a second image pickup means 37 with a second solid image pickup element 19, an image pickup control instrument for controlling image pickup conditions of said first image pickup means and said second image pickup means, and a control unit for controlling the tracking operation of a target 36 based on a target image signal obtained at the first solid image pickup element or based on a target image signal obtained at the second solid image pickup element, wherein the first image pickup means can acquire an image in wider range by said second image pickup means, and wherein the image pickup control instrument controls so that a target image is acquired by the first image pickup means when the target image is out of a photodetection range of the target of the second solid image pickup element and controls so that the target image is acquired by the second image pickup means when the target image detected by the first solid image pickup element is within the predetermined range.
    • 本发明提供一种具有跟踪功能的测量仪器,所述测量仪器包括具有第一固体图像拾取元件33的第一图像拾取装置40,具有第二固态图像拾取元件19的第二图像拾取装置37, 用于控制所述第一图像拾取装置和所述第二图像拾取装置的图像拾取条件的控制装置,以及用于基于在第一固体图像拾取元件获得的目标图像信号或基于第一图像拾取装置获得的目标图像信号来控制目标36的跟踪操作的控制单元 在第二实心图像拾取元件获得的目标图像信号,其中第一图像拾取装置可以通过所述第二图像拾取装置获取更宽范围内的图像,并且其中所述图像拾取控制装置进行控制,使得通过所述第二图像拾取装置获取目标图像 当目标图像超出第二实心图像拾取元件的目标的光检测范围时,第一图像拾取装置 并且当由第一固体图像拾取元件检测到的目标图像在预定范围内时,控制使得由第二图像拾取装置获取目标图像。
    • 8. 发明申请
    • Surveying system
    • 测量系统
    • US20090171618A1
    • 2009-07-02
    • US12315358
    • 2008-12-02
    • Kaoru KumagaiMasahiro Saito
    • Kaoru KumagaiMasahiro Saito
    • G01B11/03
    • G01C15/002E02F3/842E02F9/26G01S7/003G01S17/66
    • The present invention provides a surveying system, which comprises a surveying instrument 1 which measures a distance and an angle by projecting a distance measuring light toward a target 12 and can measure a three-dimensional position data of said target and has a function to track the target, and a movable side control device 12 provided on the target side, wherein said surveying instrument has a communication means 15 capable to transmit the three-dimensional position data of the target measured by the surveying instrument to said movable side control device and a first control arithmetic unit 29 for controlling the search of the target by the surveying instrument, wherein said movable side control device has a displacement amount detecting means 38 of the target and a second control arithmetic unit 35 for calculating the displacement amount of the target based on a target detection signal from the displacement amount detecting means and for calculating a target position based on the displacement amount of the target and based on the three-dimensional position data, and in case the surveying instrument cannot track the target, the target position transmitted from the movable side control device is acquired, and the first control arithmetic unit starts searching of the target with the target position as a starting point.
    • 本发明提供了一种测量系统,其包括测量仪器1,其通过将距离测量光投射到目标12来测量距离和角度,并且可以测量所述目标的三维位置数据,并且具有跟踪所述目标 目标和设置在目标侧的可动侧控制装置12,其中所述测量仪器具有通信装置15,其能够将由测量仪器测量的目标的三维位置数据传输到所述可动侧控制装置,并且第一 控制运算单元29,用于通过测量仪器控制目标的搜索,其中所述可移动侧控制装置具有目标的位移量检测装置38和第二控制运算单元35,用于基于目标的位移量计算目标的位移量 来自位移量检测装置的目标检测信号,并且用于基于th计算目标位置 目标的位移量,并且基于三维位置数据,并且在测量仪器不能跟踪目标的情况下,获取从可动侧控制装置发送的目标位置,并且第一控制运算单元开始搜索 目标位置为起点。