会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明申请
    • OPTICAL SCANNING DEVICE
    • 光学扫描装置
    • WO2006095303A1
    • 2006-09-14
    • PCT/IB2006/050691
    • 2006-03-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.TUKKER, Teunis, W.LIEDENBAUM, Coen, T., H., F.HENDRIKS, Bernardus, H., W.STALLINGA, SjoerdIMMINK, Albert, H., J.KUIPER, SteinCHEN, Ming, S.
    • TUKKER, Teunis, W.LIEDENBAUM, Coen, T., H., F.HENDRIKS, Bernardus, H., W.STALLINGA, SjoerdIMMINK, Albert, H., J.KUIPER, SteinCHEN, Ming, S.
    • G11B7/135
    • G11B7/1369G11B7/0909G11B7/1381
    • An optical scanning device (1) includes a radiation source (7), a detector (23) and a beam splitter (9). The radiation source (7) provides an incident radiation beam (4, 20) along a first optical path (19a) for scanning an information layer (2) of an optical record carrier (3). The detector (23) detects at least a portion of the radiation beam (22) reflected from the optical record carrier (3). The beam splitter (9) transmits the incident radiation beam (4) received from the radiation source along the first optical path (19a) towards the optical record carrier. The beam splitter (9) also transmits the reflected beam (22) received from the optical record carrier (3) along a second, different optical path (19b) towards the detector. The optical scanning device further includes a beam-deflecting element (30; 130; 230; 330; 630; 830; 930) positioned on the second optical path (19b) between the beam splitter (9) and the detector (23). The beam-deflecting element (30; 130; 230; 330; 630; 830; 930) is arranged to controllably deflect the path of the reflected radiation beam (22) for adjusting the lateral position of said reflected radiation beam incident upon the detector (23) over a predetermined range.
    • 光学扫描装置(1)包括辐射源(7),检测器(23)和分束器(9)。 辐射源(7)沿着第一光路(19a)提供入射辐射束(4,20),用于扫描光学记录载体(3)的信息层(2)。 检测器(23)检测从光学记录载体(3)反射的辐射束(22)的至少一部分。 分束器(9)将从辐射源接收的入射辐射束(4)沿着第一光路(19a)传送到光学记录载体。 分束器(9)还将从光学记录载体(3)接收的反射光束(22)沿着第二不同的光路(19b)传送到检测器。 光学扫描装置还包括位于分束器(9)和检测器(23)之间的第二光路(19b)上的光束偏转元件(30; 130; 230; 330; 630; 830; 930)。 光束偏转元件(30; 130; 230; 330; 630; 830; 930)被布置成可控地偏转反射的辐射束(22)的路径,用于调节入射到检测器上的所述反射的辐射束的横向位置( 23)超过预定范围。
    • 7. 发明申请
    • SPHERICAL ABERRATION DETECTOR
    • 球形异常检测器
    • WO2006129229A2
    • 2006-12-07
    • PCT/IB2006/051625
    • 2006-05-22
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.HENDRIKS, Bernardus, H., W.STALLINGA, SjoerdLIEDENBAUM, Coen, T., H., F.KUIPER, SteinIMMINK, Albert, H., J.TUKKER, Teunis, W.
    • HENDRIKS, Bernardus, H., W.STALLINGA, SjoerdLIEDENBAUM, Coen, T., H., F.KUIPER, SteinIMMINK, Albert, H., J.TUKKER, Teunis, W.
    • G11B7/135
    • G11B7/13927G11B7/0948G11B2007/0006
    • An optical scanning device (1) for scanning at least one information layer (2) of at least one optical record carrier (3). The device includes a radiation source (7) for providing at least a first radiation beam (4) comprising a first wavelength, an objective lens system (8) for converging the first radiation beam on a respective information layer (2), an information detector (23) for detecting at least a portion of the first radiation beam (22) reflected from the respective information layer, for determining information on said layer, and a spherical aberration detection system. The spherical aberration detection system includes an aberration detector (24) for detecting at least a portion of the reflected first radiation beam for determining spherical aberration of the first radiation beam, and a diffractive element (26) for diffracting at least a portion of the reflected first radiation beam towards the aberration detector (24), and for transmitting at least a portion of the reflected first radiation beam towards the information detector (23). In a first mode of operation the grating is arranged to introduce a phase change to an incident portion of a radiation beam for transmitting that portion towards the information detector (23). In a second mode of operation the grating is arranged to introduce a phase change to an incident portion of the reflected first radiation beam for diffracting that portion towards the aberration detector (24).
    • 一种用于扫描至少一个光学记录载体(3)的至少一个信息层(2)的光学扫描装置(1)。 该装置包括用于提供至少包括第一波长的第一辐射束(4)的辐射源(7),用于将第一辐射束会聚在相应信息层(2)上的物镜系统(8),信息检测器 (23),用于检测从各个信息层反射的第一辐射束(22)的至少一部分,用于确定关于所述层的信息,以及球面像差检测系统。 球面像差检测系统包括:像差检测器(24),用于检测用于确定第一辐射束的球面像差的反射的第一辐射束的至少一部分;以及衍射元件(26),用于衍射至少部分反射 朝向像差检测器(24)的第一辐射束,并且用于将反射的第一辐射束的至少一部分传送到信息检测器(23)。 在第一操作模式中,光栅被布置成将相变引入辐射束的入射部分,以将该部分传送到信息检测器(23)。 在第二操作模式中,光栅布置成将相变引入到反射的第一辐射束的入射部分,以将该部分衍射到像差检测器(24)。
    • 10. 发明申请
    • AN OPTICAL IMAGE PROBE
    • 光学图像探测器
    • WO2010004493A1
    • 2010-01-14
    • PCT/IB2009/052900
    • 2009-07-03
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.KUIPER, SteinHENDRIKS, Bernardus, H., W.MIHAJLOVIC, Nenad
    • KUIPER, SteinHENDRIKS, Bernardus, H., W.MIHAJLOVIC, Nenad
    • G02B3/14G02B23/24
    • G02B23/2438A61B1/0019G02B3/14
    • The invention relates to an optical image probe(20) for particularly suited for miniature application e.g. in-vivo. A fluid lens(5) is positioned a housing (19),the fluid lens having a changeable optical power. An image collector (40) is positioned within the housing, the collector being arranged on an optical path of the fluid lens, the collector being displaceable along the said optical path by an actuator (42, 70, 80, 90) in various ways. It is highly advantageous in obtaining a compact optical image probe and which simultaneously has a high zoom factor. Due the possible displacement of the image collector and the changeable optical power of the fluid lens, and cooperation between these two elements, it is possible to obtain a compact endoscope with a wide dynamic range of zoom factor with satisfactory focusing properties.
    • 本发明涉及一种特别适用于微型应用的光学图像探针(20)。 被检体内。 液体透镜(5)定位在壳体(19)上,流体透镜具有可变光学功率。 图像收集器(40)定位在壳体内,集电器布置在流体透镜的光路上,集电器可以通过致动器(42,70,80,90)以各种方式沿着所述光路移动。 在获得紧凑型光学图像探针并且同时具有高变焦系数方面是非常有利的。 由于图像收集器的可能位移和流体透镜的可变光学功率以及这两个元件之间的协调,可以获得具有良好聚焦性能的宽动态范围的变焦系数的紧凑型内窥镜。