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    • 2. 发明申请
    • A SYSTEM AND METHOD FOR THIN FILM QUALITY ASSURANCE
    • 薄膜质量保证的系统和方法
    • WO2010079474A1
    • 2010-07-15
    • PCT/IL2009/001211
    • 2009-12-23
    • BRIGHTVIEW SYSTEMS LTDNOY, NoamLIPSON, ArielFINAROV, Moshe
    • NOY, NoamLIPSON, ArielFINAROV, Moshe
    • G01N21/84
    • G01N21/8422H02S50/15
    • A method of a photovoltaic panel (104) quality control, said method comprising: enabling a relative movement in at least one direction (112) between the photovoltaic panel (104) and a low-resolution scanning imaging unit (132) and capturing successive two-dimensional frames of the scanned area; analyzing the aquired image frames for presence of thin film production defects (144) and communicating to a high resolution image scanning unit (136) locations of said production defects; enabling a relative movement (148) between the photovoltaic panel and the high resolution scanning unit said, movement following the low-resolution unit movement and at least one additional direction parallel to the photovoltaic panel movement direction to aquire and classify the thin film production defects communicated by the low resolution scanning unit; and wherein the low and high resolution scanning units move simultaneously with the same speed (124) across the photovoltaic panel and the speed of the high resolution scanning unit moving in the direction parallel to the thin film movement direction is different from the speed at which the photovoltaic panel moves.
    • 一种光伏面板(104)质量控制的方法,所述方法包括:实现光伏面板(104)和低分辨率扫描成像单元(132)之间的至少一个方向(112)的相对运动,并捕获连续的两个 扫描区域的三维帧; 分析所述彩色图像帧以存在薄膜生产缺陷(144)并与所述生产缺陷的位置的高分辨率图像扫描单元(136)通信; 使得能够在光伏面板和高分辨率扫描单元之间进行相对运动(148),所述运动遵循低分辨率单元运动和平行于光伏面板运动方向的至少一个附加方向,以产生并分类所传播的薄膜生产缺陷 由低分辨率扫描单元; 并且其中所述低分辨率和高分辨率扫描单元以相同的速度(124)同时移动穿过所述光伏面板,并且所述高分辨率扫描单元在与所述薄膜移动方向平行的方向上移动的速度不同于 光伏面板移动。
    • 3. 发明申请
    • SURFACE PLASMON RESONANCE SENSOR
    • 表面等离子体共振传感器
    • WO2004059301A1
    • 2004-07-15
    • PCT/IL2002/001037
    • 2002-12-25
    • PROTEOPTICS LTD.RAN, BoazNOTCOVICH, Ariel, G.LIPSON, ArielNIMRI, ShayLIPSON, Stephen, G.LIPSON, Doron
    • RAN, BoazNOTCOVICH, Ariel, G.LIPSON, ArielNIMRI, ShayLIPSON, Stephen, G.LIPSON, Doron
    • G01N21/55
    • G01N21/55G01N21/553G01N2021/058
    • An SPR sensor comprising: a thin conducting layer comprising at least one conductive element formed on a surface of a transparent substrate; an illumination system controllable to illuminate an interface between the conducting layer and the substrate; a photosensitive surface that generates signals responsive to light from the light source that is reflected from a region of the interface; a flow cell formed with at least one flow channel having a lumen defined by a wall at least a portion of which is formed from an elastic material and a portion of which is formed by a region of the conducting layer; and at least one hollow needle having an exit orifice communicating with the needle's lumen and wherein fluid flow is enabled between the flow channel and the needle's lumen by puncturing the elastic material with the at least one needle so that the exit orifice communicates with the flow channel lumen.
    • 一种SPR传感器,包括:薄导电层,包括形成在透明基板的表面上的至少一个导电元件; 照明系统,其可控制以照亮所述导电层和所述衬底之间的界面; 感光表面,其产生响应于来自所述界面的区域反射的来自所述光源的光的信号; 形成有至少一个流动通道的流动池,所述流动通道具有由壁限定的内腔,壁的至少一部分由弹性材料形成,并且其一部分由导电层的区域形成; 以及至少一个中空针,其具有与所述针的内腔连通的出口孔,并且通过用所述至少一个针刺穿所述弹性材料,使得所述流动通道与所述针的内腔之间能够流动,使得所述出口与所述流动通道连通 流明。