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    • 5. 发明申请
    • ADJUSTABLE INTERFERENCE FILTER
    • 可调干扰滤波器
    • WO2006110042A1
    • 2006-10-19
    • PCT/NO2006/000124
    • 2006-04-03
    • SINVENT ASJOHANSEN, Ib-RuneFERBER, AlainSAGBERG, Håkon
    • JOHANSEN, Ib-RuneFERBER, AlainSAGBERG, Håkon
    • G01N21/35G01J3/26G02B5/28
    • G02B26/001G01J3/26G01N21/3504G02B5/281
    • The present invention relates to an adjustable interference filter, especially for use in gas detection with infrared light within a chosen range, comprising at least two essentially parallel reflective surfaces separated by a chosen distance defining a cavity delimited by the reflective surfaces between which the light may oscillate, and at least one of said surfaces being semitransparent for transmission of light to or from the cavity. The filter comprises a transparent material with a chosen thickness and having a high refractive index positioned in the cavity, and adjustable separation means for adjusting the cavity length between the reflecting surfaces, so as to obtain a cavity constituted by the transparent, high refractive index material and a an adjustable part.
    • 本发明涉及可调干涉滤光器,特别是用于在选定范围内的具有红外光的气体检测中,包括至少两个基本上平行的反射表面,所述至少两个基本平行的反射表面以选定的距离分开,限定由反射表面限定的空腔, 振荡,并且至少一个所述表面是半透明的,用于将光传输到空腔或从空腔传播。 滤光器包括具有选定厚度并且具有位于空腔中的高折射率的透明材料,以及用于调节反射表面之间的空腔长度的可调分离装置,以便获得由透明高折射率材料构成的空腔 和一个可调部分。
    • 9. 发明申请
    • OPTICAL DISPLACEMENT SENSOR ELEMENT
    • 光学位移传感器元件
    • WO2014202753A1
    • 2014-12-24
    • PCT/EP2014/063025
    • 2014-06-20
    • SINVENT AS
    • LACOLLE, MatthieuJOHANSEN, Ib-RuneBAKKE, ThorBJOR, Ole-Hermann
    • G01B11/14H04R23/00
    • G01B11/14H04R23/008
    • The present invention relates to an optical displacement sensor comprising a first at least partially reflective surface and a second surface having a diffractive pattern, the surfaces being provided on elements having a variable distance between them, each surface pair defining a cavity between them. The sensor also comprising at least one light source transmitting light at least one a chosen wavelength range into said cavities and at least one light detector receiving light from the cavities, wherein said diffractive patterns are adapted to direct light toward at least one detector provided in a known position relative to said diffractive surfaces..
    • 本发明涉及一种光学位移传感器,其包括第一至少部分反射表面和具有衍射图案的第二表面,所述表面设置在其间具有可变距离的元件上,每个表面对在它们之间限定空腔。 所述传感器还包括至少一个光源,所述至少一个光源将至少一个所选择的波长范围的光透射到所述空腔中,并且至少一个光检测器接收来自所述空腔的光,其中所述衍射图案适于将光引导至至少一个检测器 相对于所述衍射表面的已知位置。
    • 10. 发明申请
    • PROTEIN SPECIFIC OPTICAL DETECTION
    • 蛋白质特异性光学检测
    • WO2014026968A1
    • 2014-02-20
    • PCT/EP2013/066880
    • 2013-08-13
    • SINVENT AS
    • MIELNIK, Michal MarekGREPSTAD, Jon OlavJOHANSEN, Ib-Rune
    • B82Y20/00G01N33/53G01N21/77G01N21/05
    • G01N33/54366B82Y20/00G01N21/4788G01N21/77G01N21/7743G01N2021/7763G01N2021/7773G01N2021/7789
    • This invention relates to a system and method for detecting target molecules using an optical sensor element comprising a photonic crystal constituted by a membrane of a chosen transparent material, being provided with a number of defined openings in a chosen pattern, a chosen number of said openings providing a capture molecules having a high affinity to said target molecules, the pattern being adapted to provide resonance at a chosen wavelength, or range of wavelengths. The system and method also moving a first fluid flow containing target molecules through said openings and after this conducting a second fluid flow containing a second reactant being different from said capture molecules but having a high affinity for the target molecules but a low affinity for other possible molecules in said first flow. By illuminating said sensor element at said chosen wavelength thus obtaining a resonance and imaging means for providing an image of said sensor element it is possible to detect tight leaking from the resonator. Analyzing means may then detect the captured molecules as well as the reactant having reacted with them based on the amount of light leaking from, the resonator.
    • 本发明涉及一种用于使用光学传感器元件检测目标分子的系统和方法,所述光学传感器元件包括由所选择的透明材料的膜构成的光子晶体,所述光子晶体以选定的图案设置有多个限定的开口,所选数量的所述开口 提供对所述目标分子具有高亲和力的捕获分子,所述图案适于在选定的波长或波长范围内提供共振。 该系统和方法还通过所述开口移动含有目标分子的第一流体流,并且在此之后进行含有不同于所述捕获分子但对靶分子具有高亲和力但对其它可能性具有低亲和力的第二流体流 所述第一流中的分子。 通过以所述选择的波长照亮所述传感器元件,从而获得谐振和用于提供所述传感器元件的图像的成像装置,可以检测从谐振器的紧密泄漏。 然后分析装置可以基于从谐振器泄漏的光量来检测捕获的分子以及与它们反应的反应物。