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
    • 52. 发明授权
    • Optical element, metal die, and cutting tool
    • 光学元件,金属模具和切削工具
    • US06771435B2
    • 2004-08-03
    • US09964728
    • 2001-09-28
    • Shigeru Hosoe
    • Shigeru Hosoe
    • G02B302
    • G02B5/1895G02B5/1852G02B5/1876Y10T83/9319Y10T407/23
    • An optical element has diffractive grooves. Each diffractive groove includes a first surface approximated by a predetermined optical function; a second surface extending in a direction to cross the first surface and being parallel to the optical axis; and a third surface to connect the first surface and the second surface. A width of the third surface in the direction perpendicular to the optical axis is 0.5% to 15% of the sum of a width of the first surface in the direction perpendicular to the optical axis and the width of the third surface in the direction perpendicular to the optical axis.
    • 光学元件具有衍射槽。 每个衍射槽包括由预定光学功能近似的第一表面; 第二表面,其在与第一表面交叉的方向上延伸并且平行于光轴; 以及连接第一表面和第二表面的第三表面。 第三表面在与光轴垂直的方向上的宽度是垂直于光轴的方向上的第一表面的宽度与垂直于光轴的方向上的第三表面的宽度之和的0.5%至15% 光轴。
    • 53. 发明授权
    • Method for continuously forming lamination optical function element sheet and lamination optical function element sheet forming apparatus
    • 用于连续地形成层压光学功能元件片和层压光学功能元件片材成形装置的方法
    • US08778113B2
    • 2014-07-15
    • US13574748
    • 2011-01-24
    • Shigeru Hosoe
    • Shigeru Hosoe
    • B32B37/24
    • B29C39/18B29C39/148B29C2035/0827B29D11/00288B29K2995/0018B32B27/08B32B37/0053B32B37/1284B32B37/203B32B38/06B32B2038/1891B32B2310/0831B32B2457/206
    • Provided are a method and an apparatus for continuously forming a laminated optical function element sheet which has optical function elements formed on three or more faces by laminating a first optical function element sheet which has an optical function element formed on both of the front and back faces with a second optical function element sheet which has an optical function element formed on at least one of the two faces. The method comprises a first optical function element sheet forming step of molding, forming, or printing an optical function element on both of the front and back faces of a first base film, a second optical function element sheet forming step of molding, forming or printing an optical function element on at least one of the two faces of a second base film, and a laminating and bonding step of simultaneously performing the first and second optical function element sheet forming steps to laminate and bond the formed first and second optical function element sheets and form a laminated optical function element sheet.
    • 本发明提供一种连续形成层叠光学功能元件片的方法和装置,该叠层光学功能元件片具有形成在三个或多个面上的光学功能元件,该第一光学功能元件片材具有形成在前后两面上的光学功能元件 具有形成在两个面中的至少一个上的光学功能元件的第二光学功能元件片。 该方法包括在第一基底膜的前表面和后表面上模制,形成或印刷光学功能元件的第一光学功能元件片材形成步骤,第二光学功能元件片材成型步骤,模制,成形或印刷 在第二基膜的两个表面中的至少一个面上的光学功能元件,以及层叠和接合步骤,同时执行第一和第二光学功能元件片材形成步骤,以将形成的第一和第二光学功能元件片材 并形成层压光学功能元件片。
    • 54. 发明申请
    • Method for Continuously forming Laminated Optical Function Element Sheet and Apparatus for Continuously forming Laminated Optical Function Element Sheet
    • 用于连续地形成层压光学功能元件片的方法和用于连续形成层压光学功能元件片的设备
    • US20120312457A1
    • 2012-12-13
    • US13574748
    • 2011-01-24
    • Shigeru Hosoe
    • Shigeru Hosoe
    • B32B37/24B32B38/14B32B37/06
    • B29C39/18B29C39/148B29C2035/0827B29D11/00288B29K2995/0018B32B27/08B32B37/0053B32B37/1284B32B37/203B32B38/06B32B2038/1891B32B2310/0831B32B2457/206
    • Provided are a method and an apparatus for continuously forming a laminated optical function element sheet which has optical function elements formed on three or more faces by laminating a first optical function element sheet which has an optical function element formed on both of the front and back faces with a second optical function element sheet which has an optical function element formed on at least one of the two faces. The method comprises a first optical function element sheet forming step of molding, forming, or printing an optical function element on both of the front and back faces of a first base film, a second optical function element sheet forming step of molding, forming or printing an optical function element on at least one of the two faces of a second base film, and a laminating and bonding step of simultaneously performing the first and second optical function element sheet forming steps to laminate and bond the formed first and second optical function element sheets and form a laminated optical function element sheet.
    • 本发明提供一种连续形成层叠光学功能元件片的方法和装置,该叠层光学功能元件片具有形成在三个或多个面上的光学功能元件,该第一光学功能元件片材具有形成在前后两面上的光学功能元件 具有形成在两个面中的至少一个上的光学功能元件的第二光学功能元件片。 该方法包括在第一基底膜的前表面和后表面上模制,形成或印刷光学功能元件的第一光学功能元件片材形成步骤,第二光学功能元件片材成型步骤,模制,成形或印刷 在第二基膜的两个表面中的至少一个面上的光学功能元件,以及层叠和接合步骤,同时执行第一和第二光学功能元件片材形成步骤,以将形成的第一和第二光学功能元件片材 并形成层压光学功能元件片。
    • 55. 发明授权
    • Method for producing wafer lens assembly and method for producing wafer lens
    • 晶片透镜组件的制造方法及晶片透镜的制造方法
    • US08194323B2
    • 2012-06-05
    • US12682460
    • 2009-04-08
    • Naoko OkazakiShigeru HosoeMasashi Saito
    • Naoko OkazakiShigeru HosoeMasashi Saito
    • G02B27/10
    • G02B3/0012B29C31/006B29D11/00365G02B3/0062
    • There is provided a method for producing a wafer lens assembly capable of adhering a wafer lens and a spacer surely. The wafer lens assembly includes a first substrate including plural optical members formed of a curable resin on at least one surface, a second substrate joined to the first substrate, and a stop member arranged between the first and second substrates. The first and second substrates are adhered with an adhesive made of a photo-curable resin. The method includes an adhesive applying step of applying the adhesive made of a photo-curable resin on a joining area, a stop-member forming step, and a photo-curing step of irradiating and hardening the adhesive applied in the adhesive applying step with light after the stop-member forming step. The stop member is formed so as not to prevent the light irradiated in the photo-curing step from reaching the adhesive.
    • 提供了一种用于制造能够确实地粘附晶片透镜和间隔件的晶片透镜组件的方法。 晶片透镜组件包括:第一基板,包括在至少一个表面上由可固化树脂形成的多个光学部件;与第一基板接合的第二基板;以及设置在第一和第二基板之间的止动部件。 用由光固化树脂制成的粘合剂粘合第一和第二基片。 该方法包括将由光固化树脂制成的粘合剂施加到接合区域上的粘合剂施加步骤,停止构件形成步骤和光固化步骤,用光照射和硬化涂布在粘合剂施加步骤中的粘合剂 在停止部件形成步骤之后。 止挡构件形成为不防止光固化步骤中照射的光到达粘合剂。
    • 56. 发明申请
    • MOLDING METHOD, OPTICAL ELEMENT MANUFACTURING METHOD, AND ARRAYED OPTICAL ELEMENT
    • 模制方法,光学元件制造方法和阵列光学元件
    • US20100323105A1
    • 2010-12-23
    • US12675048
    • 2008-08-21
    • Shigeru Hosoe
    • Shigeru Hosoe
    • B05D5/06B29D11/00G02B3/00
    • B29C45/14434B29C45/14418B29C45/372B29D11/00365B29L2011/00G02B3/0031
    • There is provided a high-efficient molding method for realizing an inexpensive optical element exhibiting environmental stability of optical performance approximately equivalent to glass optical elements. Optical plate 71p which is a transparent inorganic material with stable optical property in the environment, is inserted in molding cavity CV. Then, molds 61 and 62 are closed and optical plate 71p is unitedly molded with energy curable resin to obtain molded body MP. Thereby, optical path length of the energy curable resin is shortened, and the optical property of the molded body MP is hardly affected by environmental change. A highly accurate molding transferability of the shape of optical surfaces 71j and 71k formed by injection molding, simultaneous molding of the opposing optical surfaces 71j and 71k, and securing alignment of the double-molded optical surfaces 71j and 71k are easily realized. Therefore, inexpensive optical element 71a can be molded with high efficiency.
    • 提供了一种用于实现表现出与玻璃光学元件大致相等的光学性能的环境稳定性的廉价光学元件的高效成型方法。 在环境中具有稳定的光学性质的透明无机材料的光学板71p插入成型腔CV中。 然后,关闭模具61和62,并将光学板71p与能量固化树脂一体模制,以获得成型体MP。 由此能量固化树脂的光路长度缩短,成型体MP的光学特性几乎不受环境变化的影响。 通过注射成型形成的光学表面71j和71k的形状的高度精确的模塑转印性,相对的光学表面71j和71k的同时成型以及双重模制的光学表面71j和71k的定位的确保很容易。 因此,可以高效率地模制廉价的光学元件71a。