System, apparatus and method for emittance control and suppressing stray light
    11.
    发明授权
    System, apparatus and method for emittance control and suppressing stray light 有权
    用于发射控制和抑制杂散光的系统,装置和方法

    公开(公告)号:US08976362B2

    公开(公告)日:2015-03-10

    申请号:US13570100

    申请日:2012-08-08

    Abstract: A system, apparatus and method employing carbon nanotubes on substrates such as silicon, titanium, copper, stainless steel and other substrates, where the carbon nanotubes are blacker than existing paints and coatings, thereby providing an exponential increase in stray light suppression depending on the number of bounces of such treated surfaces. Additionally, the present invention is directed to techniques to better absorb and radiate unwanted energies. Further, the alternate substrates offer strength of material for numerous components and in numerous physical applications. The present invention is also directed to techniques for improving the adhesion of the nanotubes to the alternate substrate materials and also extending the wavelength of operation from the near ultraviolet to the far infrared portion of the spectrum (0.2 microns to 120 microns wavelength).

    Abstract translation: 在诸如硅,钛,铜,不锈钢和其他基底的基底上使用碳纳米管的系统,设备和方法,其中碳纳米管比现有的涂料和涂层更黑,从而根据数量提供杂散光抑制的指数增加 的这种处理表面的反弹。 另外,本发明涉及更好地吸收和辐射不需要的能量的技术。 此外,替代的基板提供了许多部件和许多物理应用中的材料的强度。 本发明还涉及用于改善纳米管与替代的基底材料的粘合性并且还将波长的波长从光谱的近紫外到远红外部分延伸(0.2微米到120微米波长)的技术。

    Optical sample detection system and sample analysis device
    12.
    发明授权
    Optical sample detection system and sample analysis device 有权
    光学样本检测系统和样品分析装置

    公开(公告)号:US08705030B2

    公开(公告)日:2014-04-22

    申请号:US13085343

    申请日:2011-04-12

    CPC classification number: G01N21/01 G01N21/31 G01N2201/06 G01N2201/0642

    Abstract: An optical sample detection system is provided, including a light source; a convergence projection component for converging light rays emitted by the light source; a sample accommodation component for accommodating a detected sample; a light beam collection component for receiving light rays carrying sample characteristic information and transmitted from the sample accommodation component; a light splitting component for splitting polychromatic lights collected by the light beam collection component into independent spectrums or spectral bands; and a photoelectric detection component for receiving optical signals of different wavelengths separated through the light splitting component.

    Abstract translation: 提供了一种光学样本检测系统,包括光源; 用于会聚由光源发射的光线的会聚投影部件; 用于容纳检测到的样本的样本容纳部件; 光束采集部件,用于接收携带样品特征信息并从样品容纳部件传输的光线; 用于将由光束收集部件收集的多色光分解成独立光谱或光谱带的光分离部件; 以及用于接收通过分光部件分离的不同波长的光信号的光电检测部件。

    Device for Reading Assay Results on Test Carrier
    13.
    发明申请
    Device for Reading Assay Results on Test Carrier 审中-公开
    在测试载体上读取测定结果的装置

    公开(公告)号:US20130242308A1

    公开(公告)日:2013-09-19

    申请号:US13822147

    申请日:2011-09-02

    CPC classification number: G01N21/553 G01N21/4738 G01N21/8483 G01N2201/0642

    Abstract: A device for reading an assay test result on a test carrier comprises: a light-emitting element (5) for emitting and irradiating light onto corresponding one or more zones of the test carrier (3); a light-blocking element (12) for blocking the light mirror-reflected by the test carrier (3) from being irradiated on a photodetector (7); and a window (10), through which the light emitted from the light-emitting element (5) is irradiated onto the corresponding zones of the test carrier (3). In one preferred embodiment, the positions of the light-emitting element (5), the light-blocking element and the window (10) meet the function of S3≦>2*S7−S7*S2/S1, where S1 represents the vertical distance between the light-emitting element and the window; S2 represents the vertical height of the light-blocking element; S3 represents the vertical distance between the light-blocking element and the light-emitting element; and S7 represents the length of the window.

    Abstract translation: 用于读取测试载体上的测定结果的装置包括:发光元件(5),用于发射和照射到测试载体(3)的相应一个或多个区域上的光; 用于阻挡由所述测试载体(3)反射的光的光阻元件(12)照射在光电检测器(7)上; 以及窗口(10),从发光元件(5)发射的光被照射到测试载体(3)的相应区域上。 在一个优选实施例中,发光元件(5),遮光元件和窗(10)的位置满足S3 @ 2 * S7-S7 * S2 / S1的功能,其中S1表示垂直 发光元件与窗之间的距离; S2表示遮光元件的垂直高度; S3表示遮光元件与发光元件之间的垂直距离; S7表示窗口的长度。

    Dual Beam Set-Up for Parousiameter
    15.
    发明申请
    Dual Beam Set-Up for Parousiameter 有权
    双梁设置可调直径

    公开(公告)号:US20080192258A1

    公开(公告)日:2008-08-14

    申请号:US12063126

    申请日:2006-08-04

    Applicant: Sipke Wadman

    Inventor: Sipke Wadman

    Abstract: A scatterometer or parousiameter having a dual beam setup and method for use thereof is provided for producing measurements of optical parameters. The dual beam parousiameter includes a hemispherical dome enclosure (318) sealed at the bottom with a base (320). A radiation source (302) produces radiation in two beams, an illumination beam (304) for illuminating a sample surface (308) and a calibration beam (330) for providing optical characterization information about the illumination beam (304). Each beam is guided into the hemispherical dome enclosure (318) via separate optical paths. An optical imaging device (324) is positioned to acquire an image of scatter radiation (314) scattered by the sample surface (308) illuminated by the illumination beam (304), and acquire an image of the calibration beam, simultaneously. The calibration beam image is used to compensate for variability in optical output of the radiation source (302) when analyzing the scatter radiation data.

    Abstract translation: 提供了具有双光束设置的散射仪或观测器及其使用方法,用于产生光学参数的测量。 所述双光束测光仪包括在底部与底部(320)密封的半球形圆顶罩(318)。 辐射源(302)产生两个光束的辐射,用于照射样品表面(308)的照明光束(304)和用于提供关于照明光束(304)的光学表征信息的校准光束(330)。 每个光束通过分开的光路被引导到半球形圆顶壳体(318)中。 定位光学成像装置(324)以获取被照明光束(304)照射的样品表面(308)散射的散射辐射(314)的图像,同时获取校准光束的图像。 当分析散射辐射数据时,校准光束图像用于补偿辐射源(302)的光输出的变化。

    Optical measuring device and image forming apparatus
    16.
    发明申请
    Optical measuring device and image forming apparatus 审中-公开
    光学测量装置和成像装置

    公开(公告)号:US20070070351A1

    公开(公告)日:2007-03-29

    申请号:US11346150

    申请日:2006-02-03

    Abstract: An optical measuring device measures optical characteristics of an object in a non-contact state. The optical measuring device has a light source that illuminates an object surface, a light receiver that receives a light beam reflected from the object surface, and a light-regulating member that regulates an illuminating light beam radiated onto the object surface and the reflective light beam reflected from the object surface. The light-regulating member has a first light-regulating member that determines at least one of an illuminating region and a reflective region with respect to the object surface, and a second light-regulating member that determines a region where the reflected light beam that is reflected from the object surface and is incident on the light receiver is measured on the object surface.

    Abstract translation: 光学测量装置测量非接触状态下物体的光学特性。 光学测量装置具有照射物体表面的光源,接收从物体表面反射的光束的光接收器和调节照射到物体表面上的照明光束的光调节部件和反射光束 从物体表面反射。 所述调光部件具有:第一调光部件,其对所述物体表面确定照明区域和反射区域中的至少一个;以及第二调光部件,其将所述反射光束 在物体表面上测量物体表面反射并入射到光接收器上。

    Portable apparatus for the non-destructive measurement of the internal quality of vegetable products
    17.
    发明授权
    Portable apparatus for the non-destructive measurement of the internal quality of vegetable products 有权
    便携式仪器,用于无损测量蔬菜产品的内部质量

    公开(公告)号:US07173246B2

    公开(公告)日:2007-02-06

    申请号:US10475106

    申请日:2002-02-22

    CPC classification number: G01N21/255 G01N33/025 G01N2201/0221 G01N2201/0642

    Abstract: An apparatus for non-destructive measurement of internal properties of individual vegetable or fruit pieces comprises: LEDs constructed and arranged to emit radiation into a vegetable or fruit product; pick-up structure constructed and arranged to pick up radiation, emitted by the LEDs, that has entered the vegetable or fruit product and then exited the vegetable or fruit product; a hollow cylinder between the LEDs and the pick-up structure for preventing radiation emitted by the LEDs from directly reaching the pick-up structure; a spectrometer; structure for conveying to the spectrometer the radiation picked up by the pick-up structure; and structure for processing a spectrum frequency and amplitude data as produced by the spectrometer upon the radiation picked up by the pick-up structure being analyzed by the spectrometer.

    Abstract translation: 用于非破坏性测量单个植物或水果片的内部特性的装置包括:LED构造和布置以将辐射辐射到蔬菜或水果产品中; 拾取结构构造并布置成拾取由LED发出的已经进入蔬菜或水果产品然后退出蔬菜或水果产品的辐射; 在LED和拾取结构之间的中空圆柱体,用于防止由LED发射的辐射直接到达拾取结构; 光谱仪 用于将由拾取结构拾取的辐射传送到光谱仪的结构; 以及用于处理在由光谱仪分析的由拾取结构拾取的放射线上由光谱仪产生的光谱频率和振幅数据的结构。

    Particle counter with laser diode
    18.
    发明申请

    公开(公告)号:US20060038998A1

    公开(公告)日:2006-02-23

    申请号:US10923339

    申请日:2004-08-20

    Applicant: Gregg Wagner

    Inventor: Gregg Wagner

    Abstract: A liquid particle counter for optically detecting an unconstrained particle suspended in a flowing liquid includes a sample chamber having a liquid inlet and a liquid outlet; a laser diode module producing a symmetrically collimated laser beam; a beam shaping optical system directing the laser beam at the sample chamber; and an optical detector located to detect light scattered by the particle in the sample chamber, the detector producing an electric signal characteristic of a parameter of the particle. The laser beam has an energy of a watt or more and passed through an aperture in a black glass aperture element in the sample chamber. The black glass aperture element removes diffracted and stray light from the beam without damage to the sample chamber.

    Portable apparatus for the non-destructive measurement to the internal quality of vegetable products
    19.
    发明申请
    Portable apparatus for the non-destructive measurement to the internal quality of vegetable products 有权
    便携式仪器,用于对蔬菜产品的内部质量进行非破坏性测量

    公开(公告)号:US20040149916A1

    公开(公告)日:2004-08-05

    申请号:US10475106

    申请日:2003-10-17

    CPC classification number: G01N21/255 G01N33/025 G01N2201/0221 G01N2201/0642

    Abstract: Instrument for measuring the properties of vegetable products, comprising:nullan energy source adapted to direct a radiation against the fruit,nullmeans for picking up the radiation being re-emitted by said fruit,nulla spectrograph analysing said radiation,nullmeans for conveying said radiation into the spectrograph,nullmeans for processing the data generated by the spectrograph, in which the energy source comprises a plurality of LEDs contained in a single portable casing provided with a handgrip and a probing head. The spectrograph and the processing means are physically separated from said portable casing, to which they are electrically and optically connected via at least a multiple optical/electric connection. The LEDs are provided in closed-loop arrangements on the surface of the probing head and said means for picking up the re-emitted radiation are arranged at the centre of the rings formed by the LEDs that emit radiations whose respective emission spectra are contiguous.

    Abstract translation: 用于测量蔬菜产品性质的仪器包括:适于将辐射引导到水果上的能量源, - 用于拾取由所述水果重新发射的辐射的装置, - 分析所述辐射的光谱仪, - 用于输送 所述辐射进入所述光谱仪, - 用于处理由所述光谱仪产生的数据,其中所述能量源包括容纳在设置有手柄和探测头的单个便携式壳体中的多个LED。 光谱仪和处理装置在物理上与所述便携式外壳分开,它们经由至少多个光/电连接电和光学连接。 LED在探头的表面上以闭环布置提供,并且用于拾取再发射的辐射的拾取装置布置在由发射各自发射光谱相邻的辐射的LED形成的环的中心处。

    Photometric flow apparatus for small sample volumes and method of making
same
    20.
    发明授权
    Photometric flow apparatus for small sample volumes and method of making same 失效
    小样品量的光度流量仪及其制作方法

    公开(公告)号:US5917606A

    公开(公告)日:1999-06-29

    申请号:US709017

    申请日:1996-09-06

    Abstract: A photometric apparatus (100) for small sample volumes comprises a cell body (102), a light input means (104) arranged adjacent to a first surface of the cell body (102), a light source (105) emitting light of predetermined wavelength or wavelength range through the light input means (104), a light output means (106) arranged adjacent to a second surface of the cell body (102) opposite to the first surface, a light detector (107) arranged adjacent to the light out put means (104), and a flow channel (108) formed in the cell body (102), wherein surfaces of the walls of the channel (108) have a roughness smaller than the predetermined wavelength.

    Abstract translation: 用于小样品体积的测光装置(100)包括电池体(102),与电池体(102)的第一表面相邻布置的光输入装置(104),发射预定波长的光的光源(105) 或波长范围,与第一表面相对的与电池体(102)的第二表面相邻布置的光输出装置(106),与光出射相邻布置的光检测器(107) 放置装置(104)和形成在电池体(102)中的流动通道(108),其中通道(108)的壁的表面具有小于预定波长的粗糙度。

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