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    • 123. 发明申请
    • PROJECTION OPTICAL SYSTEM AND IMAGE PROJECTING APPARATUS
    • 投影光学系统和图像投影设备
    • US20080068564A1
    • 2008-03-20
    • US11854920
    • 2007-09-13
    • Issei AbeKazuhiro FujitaAtsushi Takaura
    • Issei AbeKazuhiro FujitaAtsushi Takaura
    • G03B21/28
    • G02B17/08G02B13/16G02B17/0812G02B17/0852G03B21/147G03B21/28H04N9/3102
    • A projection optical system including a first optical system configured to form a second image conjugate to a first image and a second optical system configured to include a reflective optical element which reflects light from the second image and to project a third image conjugate to the second image onto a projection surface is provided, wherein the first optical system includes a stop and at least one optical element with a positive refractive power and at least one optical element with a negative refractive power which are provided between the stop and the second image, and an optical element with a strongest positive refractive power in the at least one optical element with a positive refractive power is provided between the stop and an optical element with a strongest negative refractive power in the at least one optical element with a negative refractive power.
    • 一种投影光学系统,包括被配置为形成与第一图像的第二图像共轭的第一光学系统和被配置为包括反射光学元件的第二光学系统,所述反射光学元件反射来自所述第二图像的光并将第三图像共轭投影到所述第二图像 提供了一种投影表面,其中第一光学系统包括止动件和至少一个具有正屈光力的光学元件和至少一个具有负屈光力的光学元件,其设置在止动件和第二图像之间,并且 在具有正折光力的至少一个光学元件中具有最强正屈光力的光学元件设置在具有正屈光力的至少一个光学元件中具有最强负折射光焦度的光阑与光学元件之间。
    • 126. 发明申请
    • Multifunction, direct thermal recording material
    • 多功能,直接热敏记录材料
    • US20050284930A1
    • 2005-12-29
    • US11170245
    • 2005-06-28
    • Stephen HefnerKazuhiro Fujita
    • Stephen HefnerKazuhiro Fujita
    • G06K5/00G06K19/00G06K19/077
    • B41M5/42B41M5/30B41M5/48G06K19/077G06K19/083
    • A multifunction, direct thermal recording material made up of a base support having opposing planar surfaces, at least one thermal layer formed on at least one such planar surface for displaying a digital photographic image, graphical, numerical or textual information, or combinations thereof, and at least one machine readable information storage system (e.g., magnetic stripes, bar codes, RFIDs) contained on or within the base support and/or the thermal recording layer, is provided. In one embodiment, the inventive multifunction, direct thermal recording material is a hotel or hospitality establishment guest card which serves as both an identification card as well as a room access “key card”, and in another embodiment, the inventive recording material is a “declining balance” gift card or credit voucher which serves as a debit card and displays (or is capable of displaying) the original and declining value of the card or voucher.
    • 由具有相对平面的基座支撑件构成的多功能直接热敏记录材料,至少一个热层,形成在至少一个这样的平面上,用于显示数字摄影图像,图形,数字或文本信息,或其组合;以及 提供了包含在基座支架和/或热记录层之上或之内的至少一个机器可读信息存储系统(例如,磁条,条形码,RFID)。 在一个实施例中,本发明的多功能直接热敏记录材料是用作识别卡以及房间访问“钥匙卡”的酒店或酒店建立宾客卡,在另一个实施例中,本发明的记录材料是“ 下降余额“礼品卡或信用凭证,用作借记卡,并显示(或能够显示)卡或凭证的原始和下降的价值。
    • 128. 发明授权
    • Optical pickup method, optical pickup device, and optical information processing apparatus adapted with spherical aberration correction for sub-spot tracking control
    • 光学拾取方法,光学拾取装置和适用于子点跟踪控制的球面像差校正的光学信息处理装置
    • US06754162B2
    • 2004-06-22
    • US09897668
    • 2001-07-02
    • Kazuhiro FujitaHiroyoshi FunatoHiroshi Koide
    • Kazuhiro FujitaHiroyoshi FunatoHiroshi Koide
    • G11B700
    • G11B7/1395G11B7/0901G11B7/0948G11B7/131G11B7/1353G11B7/1378G11B7/13927G11B2007/0013
    • In an optical pickup method and device of the present invention, a grating unit separates a light beam, emitted by a light source, into a 0th order diffracted beam and 1st order diffracted beams. An objective lens focuses the diffracted beams, sent from the grating unit, onto a recording surface of an optical recording medium through a transparent substrate of the medium, so that a main spot is formed on the recording surface by the 0th order diffracted beam and sub-spots, interposing the main spot therebetween, are formed on the recording surface by the 1st order diffracted beams. A reflection beam detector receives reflection beams from the main spot and the sub-spots of the medium to generate detection signals from the received reflection beams. A control unit changes a pattern of the beams incident to the objective lens to correct a spherical aberration due to a deviation of a thickness of the substrate of the medium, and moves the grating unit relative to the light source to cancel shifting of sub-spot positions on the recording surface due to the spherical aberration correction, in order to generate a proper tracking error signal.
    • 在本发明的光拾取方法和装置中,光栅单元将由光源发射的光束分离为第0级衍射光束和一级衍射光束。 物镜将从光栅单元发送的衍射光束通过介质的透明基板聚焦到光记录介质的记录表面上,从而通过第0级衍射光束和子像素在记录表面上形成主光斑 通过1级衍射光束在记录面上形成插入其间的主光斑。 反射光束检测器接收来自主光点的反射光束和介质的子光点,以从接收的反射光束产生检测信号。 控制单元改变入射到物镜的光束的图案,以校正由于介质的基板的厚度偏差引起的球面像差,并且使光栅单元相对于光源移动以消除子点的移动 由于球面像差校正,记录表面上的位置,以便产生适当的跟踪误差信号。