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    • 4. 发明申请
    • OPTICAL DETECTOR FOR SENSOR SYSTEM HAVING MEANS FOR DETECTING A VIRTUAL IMAGE
    • 具有用于检测虚拟图像的传感器系统的光学检测器
    • WO2014042834A1
    • 2014-03-20
    • PCT/US2013/055824
    • 2013-08-20
    • APPLE INC.
    • RUH, Richard
    • G01J1/04G01S17/02G01V8/10
    • G01J1/0414G01J1/0422G01S7/4813G01S17/026G01V8/12
    • A proximity and light sensing device including a light emitting compartment having a light emitter positioned on a substrate and an optical element positioned along a side of the light emitter opposite the substrate. The device further including a light receiving compartment including a light detector positioned on the substrate and an optical element positioned along a side of the light detector opposite the substrate. A mid wall extends in a direction substantially normal to the substrate and is positioned between the light emitting compartment and the light receiving compartment. The device further includes a reflective element positioned at a side of the mid wall facing the light receiving compartment, the reflective element capable of reflecting an off-axis light beam onto the light detector so as to form a real image on the light detector of an otherwise virtual image formed behind the reflector. Other embodiments are also described.
    • 一种接近和光感测装置,包括具有位于基板上的发光体的发光室和沿着与发光体相对的基板侧的光学元件。 该装置还包括一个光接收室,该光接收室包括位于基板上的光检测器和沿着该光检测器与该基板相对的一侧定位的光学元件。 中间壁沿基本上垂直于基板的方向延伸并且位于发光室和光接收室之间。 该装置还包括位于面向光接收室的中间壁的一侧的反射元件,该反射元件能够将离轴光束反射到光检测器上,以便在光检测器上形成实像 否则在反射器后面形成虚拟图像。 还描述了其它实施例。
    • 5. 发明申请
    • LIGHT GUIDE AND ELECTRONIC DEVICE USING LIGHT GUIDE
    • 导光装置和使用光导的电子装置
    • WO2009006190A3
    • 2009-02-19
    • PCT/US2008068319
    • 2008-06-26
    • MOTOROLA INCWANG DONGXUE
    • WANG DONGXUE
    • H04B1/40
    • G01J1/32G01J1/04G01J1/0422G01J1/0474G01J1/4204G02B6/4203G02B6/4298
    • Disclosed are a light guide (750) and an electronic device including a light guide for coupling ambient light to a light sensor. The light guide (750) that is a structure of light-transmitting material having an elongate shape including a first end (752) for receiving ambient light and a second end (754) for collecting ambient light to transmit to a light sensor. The first end (752) of the light guide has a concave shape and the second end (754) of the light guide also has a concave shape. An electronic device may support the light guide and a light sensor. The concave shape of the second end of the light sensor may disperse light toward the light sensor, rather than tightly focusing the light toward the light sensor. Accordingly, the light sensor may have a sensing area that forms a detection plane so that the detection plane is positioned adjacent to the second end.
    • 公开了一种光导(750)和包括用于将环境光耦合到光传感器的光导的电子设备。 光导(750)是具有细长形状的光传输材料的结构,其包括用于接收环境光的第一端(752)和用于收集环境光以传输到光传感器的第二端(754)。 光导的第一端(752)具有凹形形状,并且光导的第二端(754)也具有凹形形状。 电子设备可以支撑光导和光传感器。 光传感器的第二端的凹面形状可以朝向光传感器散射光,而不是使光朝着光传感器紧密聚焦。 因此,光传感器可以具有形成检测平面的感测区域,使得检测平面位于第二端附近。
    • 6. 发明申请
    • FLUOROMETERS
    • 荧光计
    • WO2005064318A1
    • 2005-07-14
    • PCT/EP2004/014484
    • 2004-12-20
    • PRECISENSE A/SAASMUL, Søren
    • AASMUL, Søren
    • G01N21/64
    • G01N21/645G01J1/04G01J1/0422G01N2021/6463G01N2201/0636
    • In apparatus for the production and detection of fluorescence at a sample surface, the height of the apparatus above the sample surface is reduced, and loss of the emitted fluorescence due to reflection loss and light scattering is minimized. The apparatus comprises a three-dimensionally curved light reflecting surface (40) that directs light from a light source (32) transversely to its original path and focuses the light on to an illumination zone (30) at or below the sample surface. The reflecting surface (40) also collects, directs and at least partially collimates emitted fluorescence transversely to its original path and towards a detector (46).
    • 在用于在样品表面生产和检测荧光的装置中,样品表面上方的装置的高度减小,并且由于反射损失和光散射引起的发射的荧光的损失最小化。 该装置包括三维弯曲的光反射表面(40),其将来自光源(32)的光横向于其原始路径引导并将光聚焦到在样品表面处或下方的照明区域(30)。 反射表面(40)还收集,引导并至少部分地将发射的荧光横向于其原始路径并朝向检测器(46)准直。
    • 9. 发明申请
    • APPARATUS AND METHOD FOR SPRAYING HERBICIDE ON WEEDS IN A COTTON FIELD
    • 用于在棉花领域喷洒除草剂的装置和方法
    • WO1997037372A1
    • 1997-10-09
    • PCT/US1997005508
    • 1997-04-01
    • PATCHEN, INC.
    • PATCHEN, INC.BECK, James, L.KINTER, Malcolm, L.
    • H01J40/14
    • A01M21/00A01M7/0089G01C3/085G01J1/04G01J1/0407G01J1/0422G01J1/0437G01J1/44G01J3/42G01J3/50G01J3/501G01J2001/4242G01N21/255G01N2021/8466
    • Weeds (100) growing around the bases of the stalks of cotton plant (101) growing in a row (105 and 105A) in a cotton field are sprayed with herbicide without spraying the cotton stalks (101) or wasting herbicide on bare ground (107). The cotton plants are adequately mature that their stalks exhibit a significantly different spectral reflectance characteristic than the weeds typically growing amid the cotton. The cotton plants are adequately tall that the majority of the leaves of the cotton plants are disposed outside the area which can be sprayed using an electronically-controlled valve and nozzle (103). Light is transmitted toward an object (a cotton stalk, a weed, or soil) in the row and the reflected light is analyzed. If the object has a spectral characteristic of a growing weed, then the valve is activated and the object is sprayed with herbicide. If the object does not have the spectral characteristic of a growing weed, then the valve is not activated and the object is not sprayed with herbicide.
    • 在棉田中连续生长(105和105A)的棉花植物(101)茎的基部生长的杂草(100)用除草剂喷洒,而不将棉花秆(101)或除草剂除草剂暴露在裸地(107 )。 棉花植物已经充分成熟,它们的茎表现出与通常在棉花中生长的杂草显着不同的光谱反射率特征。 棉花植物足够高,使得棉花植物的大部分叶子布置在可以使用电子控制的阀和喷嘴(103)喷射的区域的外部。 光朝向该行中的物体(棉秆,杂草或土壤)传递,并且分析反射光。 如果物体具有不断增长的杂草的光谱特征,则阀被激活,物体用除草剂喷洒。 如果物体不具有不断增长的杂草的光谱特征,则阀不被激活,并且物体不被除草剂喷洒。