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    • 1. 发明申请
    • SENSING DEVICE FOR DETECTING A TARGET SUBSTANCE
    • 用于检测目标物质的感应装置
    • WO2010095071A1
    • 2010-08-26
    • PCT/IB2010/050553
    • 2010-02-08
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BRULS, Dominique, M.EVERS, Toon, H.SCHLEIPEN, Johannes, J., H., B.
    • BRULS, Dominique, M.EVERS, Toon, H.SCHLEIPEN, Johannes, J., H., B.
    • G01N21/27G01N21/55G01N21/77G01N33/543
    • G01N21/552G01N21/274G01N33/54373
    • The present invention relates to a sensing device (100) for detecting a target substance (2) in an investigation region (113). The sensing device (100) comprises a sensing surface (112) with an investigation region (113) and a reference region (120) thereon. The sensing device (100) further comprises a reference element (121) located at the reference region (120). The reference element (121) is adapted to shield the reference region (120) from the target substance (2) such that light reflected at the reference region (120) under total internal reflection conditions remains unaffected by the presence or absence of the target substance (2). This allows measuring a property, typically the intensity, of light reflected at the reference region (120) independent of the presence or absence of the target substance (2). This measured property of the reflected light can be used for performing an improved correction of light reflected at the investigation region (113).
    • 本发明涉及一种用于在调查区域(113)中检测目标物质(2)的感测装置(100)。 感测装置(100)包括其上具有调查区域(113)和参考区域(120)的感测表面(112)。 感测装置(100)还包括位于参考区域(120)处的参考元件(121)。 参考元件(121)适于屏蔽参考区域(120)与目标物质(2),使得在全内反射条件下在参考区域(120)处反射的光线不会受到目标物质的存在或不存在的影响 (2)。 这允许独立于目标物质(2)的存在或不存在来测量在参考区域(120)处反射的光的特性(通常为强度)。 反射光的测量特性可用于对在调查区域(113)反射的光进行改进的校正。
    • 3. 发明申请
    • OPTICAL SCANNING DEVICE
    • 光学扫描装置
    • WO2004010201A2
    • 2004-01-29
    • PCT/IB2003/002974
    • 2003-07-02
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN DER AA, Michael, A., H.JANSEN, Gerardus, L., M.NIJSSE, Gerard, J., P.SCHLEIPEN, Johannes, J., H., B.KASTELIJN, Aukje, A., A.PENNING, Frank, C.OPHEY, Willem, G.
    • VAN DER AA, Michael, A., H.JANSEN, Gerardus, L., M.NIJSSE, Gerard, J., P.SCHLEIPEN, Johannes, J., H., B.KASTELIJN, Aukje, A., A.PENNING, Frank, C.OPHEY, Willem, G.
    • G02B26/12
    • G11B7/1359G02B26/108G11B7/08576G11B7/1362G11B7/1398
    • An optical scanning device for scanning an information layer of an optical record carrier and including a rotary aim (2; 102; 202; 302; 402; 502) which is arranged to swing about a rotation axis (CR) to alter an angular position of the rotary arm about the rotation axis; a detector arrangement (10) arranged separate from the rotary arm (2; 102; 202; 302; 402; 502) for detecting a radiation beam spot, the radiation beam spot (40; 140; 240; 340; 440; 540) having an angular disposition; a first reflective surface (4; 104; 204; 304; 404; 504) attached to the rotary arm (2; 102; 202; 302; 402; 502); a second reflective surface (6; 106; 206; 306; 406; 506) attached to the rotary arm (2; 102; 302; 402; 502); a first light path (LP 1; LP 1 O 1; LP201; LP301; LP401; LP501) running from a location on the record carrier to said first reflective surface; a second light path (LP2; LP102; LP202; LP302; LP402; LP502) running from said first reflective surface to said second reflective surface; a third light path (LP3; LP103; LP203; LP303; LP403; LP503) running from said second reflective surface to said detector arrangement (10). The rotary arm includes at least one optical inversion element (52; 54; 56; 58; 64; 66) arranged such that a dependence between variation of the angular disposition of the radiation beam spot and variation of the angular position of the rotary arm is reduced.
    • 一种用于扫描光学记录载体的信息层并且包括旋转目标(2; 102; 202; 302; 402; 502)的光学扫描设备,所述旋转目标被布置成围绕旋转轴 CR)以改变所述旋转臂围绕所述旋转轴线的角度位置; 与用于检测辐射束点的旋转臂(2; 102; 202; 302; 402; 502)分开布置的检测器装置(10),所述辐射束点(40; 140; 240; 340; 440; 540)具有 角度配置; (2; 102; 202; 302; 402; 502)附接的第一反射表面(4; 104; 204; 304; 404; 504); (2; 102; 302; 402; 502)附接的第二反射表面(6; 106; 206; 306; 406; 506); 从记录载体上的位置延伸到所述第一反射表面的第一光路(LP1; LP1O1; LP201; LP301; LP401; LP501) 从所述第一反射表面延伸到所述第二反射表面的第二光路(LP2; LP102; LP202; LP302; LP402; LP502) 从所述第二反射表面延伸到所述检测器装置(10)的第三光路(LP3; LP103; LP203; LP303; LP403; LP503)。 旋转臂包括至少一个光学反转元件(52; 54; 56; 58; 64; 66),该光学反转元件布置成使得辐射束点的角度布置的变化与旋转臂的角度位置的变化之间的相关性是 降低。
    • 7. 发明申请
    • OPTICAL SCANNING DEVICE
    • 光学扫描装置
    • WO2004090881A2
    • 2004-10-21
    • PCT/IB2004/050396
    • 2004-04-05
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.SCHLEIPEN, Johannes, J., H., B.
    • SCHLEIPEN, Johannes, J., H., B.
    • G11B7/125
    • G11B7/1392G11B7/0909G11B7/0916G11B7/1378G11B2007/13727
    • The invention relates to an optical scanning device and to an optical wavefront modifier for use therein, for scanning an optical record carrier, such as an optical disk comprising an information layer. The device comprises a radiation source (9) for emitting an incident radiation beam; a detection system comprising an information signal detector (25) arranged to receive radiation reflected from the information layer and to detect an information signal therein; an optical system (14, 12) for focusing the incident radiation beam to a spot on in the record carrier, and for directing the reflected radiation beam onto the information signal detector; and an optical wavefront modifier (10) arranged in the path of the incident radiation beam and the reflected radiation beam. The incident radiation beam has a first wavefront shape at a given location (L) prior to its incidence on the optical wavefront modifier and the reflected radiation beam has a second wavefront shape at the given location after passing through the optical wavefront modifier. In embodiments of the invention, the optical wavefront modifier is arranged to perform wavefront modification on the incident and reflected radiation beams such that the second wavefront shape is substantially different to the first wavefront shape. The second wavefront shape is of such a form that the optical path of the reflected radiation beam is less than the optical path of the incident radiation beam so that the optical scanning device can be further miniaturised.
    • 本发明涉及一种用于扫描光学记录载体(例如包括信息层的光盘)的光学扫描装置和光学波前修正器。 该装置包括用于发射入射辐射束的辐射源(9) 检测系统,包括信息信号检测器(25),其被布置为接收从所述信息层反射的辐射并检测其中的信息信号; 用于将入射的辐射束聚焦到记录载体上的点上并用于将反射的辐射束引导到信息信号检测器上的光学系统(14,12) 以及布置在入射辐射束和反射辐射束的路径中的光波前修正器(10)。 入射辐射束在入射到光波前修正器之前在给定位置(L)处具有第一波前形状,并且反射的辐射束在通过光波前修正器之后具有在给定位置处的第二波前形状。 在本发明的实施例中,光波前修正器被布置成对入射和反射的辐射束执行波前修改,使得第二波阵面形状与第一波前形状基本不同。 第二波前形状是这样的形式:反射辐射束的光路小于入射辐射束的光路,使得光学扫描装置可以进一步小型化。
    • 10. 发明申请
    • OPTICAL SCANNING DEVICE
    • 光学扫描装置
    • WO2004010201A3
    • 2004-05-21
    • PCT/IB0302974
    • 2003-07-02
    • KONINKL PHILIPS ELECTRONICS NVVAN DER AA MICHAEL A HJANSEN GERARDUS L MNIJSSE GERARD J PSCHLEIPEN JOHANNES J H BKASTELIJN AUKJE A APENNING FRANK COPHEY WILLEM G
    • VAN DER AA MICHAEL A HJANSEN GERARDUS L MNIJSSE GERARD J PSCHLEIPEN JOHANNES J H BKASTELIJN AUKJE A APENNING FRANK COPHEY WILLEM G
    • G02B26/10G02B26/12G11B7/085G11B7/135
    • G11B7/1359G02B26/108G11B7/08576G11B7/1362G11B7/1398
    • An optical scanning device for scanning an information layer of an optical record carrier and including a rotary aim (2; 102; 202; 302; 402; 502) which is arranged to swing about a rotation axis (CR) to alter an angular position of the rotary arm about the rotation axis; a detector arrangement (10) arranged separate from the rotary arm (2; 102; 202; 302; 402; 502) for detecting a radiation beam spot, the radiation beam spot (40; 140; 240; 340; 440; 540) having an angular disposition; a first reflective surface (4; 104; 204; 304; 404; 504) attached to the rotary arm (2; 102; 202; 302; 402; 502); a second reflective surface (6; 106; 206; 306; 406; 506) attached to the rotary arm (2; 102; 302; 402; 502); a first light path (LP 1; LP 1 O 1; LP201; LP301; LP401; LP501) running from a location on the record carrier to said first reflective surface; a second light path (LP2; LP102; LP202; LP302; LP402; LP502) running from said first reflective surface to said second reflective surface; a third light path (LP3; LP103; LP203; LP303; LP403; LP503) running from said second reflective surface to said detector arrangement (10). The rotary arm includes at least one optical inversion element (52; 54; 56; 58; 64; 66) arranged such that a dependence between variation of the angular disposition of the radiation beam spot and variation of the angular position of the rotary arm is reduced.
    • 一种用于扫描光学记录载体的信息层并包括旋转瞄准镜(2; 102; 202; 302; 402; 502)的光学扫描装置,其被设置成围绕旋转轴线(CR)摆动以改变角度位置 旋转臂围绕旋转轴线; 与所述旋转臂(2; 102; 202; 302; 402; 502)分离设置的用于检测辐射束点的检测器装置(10),所述辐射束点(40; 140; 240; 340; 440; 540)具有 角度配置; 附接到旋转臂(2; 102; 202; 302; 402; 502)的第一反射表面(4; 104; 204; 304; 404; 504) 附接到旋转臂(2; 102; 302; 402; 502)的第二反射表面(6; 106; 206; 306; 406; 506) 从记录载体上的位置到所述第一反射表面的第一光路(LP1; LP1O1; LP201; LP301; LP401; LP501) 从所述第一反射表面延伸到所述第二反射表面的第二光路(LP2; LP102; LP202; LP302; LP402; LP502) 从所述第二反射表面延伸到所述检测器装置(10)的第三光路(LP3; LP103; LP203; LP303; LP403; LP503)。 旋转臂包括至少一个光学反转元件(52; 54; 56; 58; 64; 66),其布置成使得辐射束点的角度配置的变化与旋转臂的角位置的变化之间的依赖关系是 降低。