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
    • 5. 发明申请
    • METHOD FOR MANUFACTURING OPTICAL ELEMENT, AND OPTICAL ELEMENT MOLDING DIE
    • 制造光学元件和光学元件成型模具的方法
    • US20130069257A1
    • 2013-03-21
    • US13580036
    • 2011-02-03
    • Kazuyuki OguraYoshihiro Kamada
    • Kazuyuki OguraYoshihiro Kamada
    • B29D11/00
    • B29D11/00009B29D11/005B29D11/00951C03B11/08C03B2215/60C03B2215/80G01B11/2441G01B11/27G01M11/0257G01M11/0271
    • Provided is an optical element manufacturing method for manufacturing optical elements having opposing optical surfaces by using a pair of molding dies having molding surfaces, in which each molding die is provided with a molding surface for molding a first optical element and a molding surface for molding a second optical element, wherein the later molding surface is distinct from the former one and is used to adjust the relative positions of the pair of molding dies, and in which each molding die is used to perform the steps of: molding the second optical element; determining the misalignment between the opposing optical surfaces from the transmitted wavefront aberration of the second optical element; adjusting the relative position between the molding dies on the basis of the determined relative displacement; and molding the first optical element by using the molding dies, the relative position of which has been adjusted.
    • 本发明提供一种光学元件的制造方法,其通过使用具有成型面的一对成型模具来制造具有相对的光学面的光学元件,其中,各成型模设置有用于成型第一光学元件的成形面和成型用模塑面 第二光学元件,其中后一个成型表面与前者不同,并且用于调整该对成型模具的相对位置,并且其中每个成型模具用于执行以下步骤:模制第二光学元件; 根据第二光学元件的透射波面像差确定相对的光学表面之间的偏移; 基于确定的相对位移来调节成型模具之间的相对位置; 并且通过使用已经调整其相对位置的成型模具来模制第一光学元件。
    • 7. 发明申请
    • OPTICAL ELEMENT MANUFACTURING METHOD AND OPTICAL ELEMENT
    • 光学元件制造方法和光学元件
    • US20100162762A1
    • 2010-07-01
    • US12451684
    • 2008-05-21
    • Kazuyuki OguraYoshihiro Kamada
    • Kazuyuki OguraYoshihiro Kamada
    • C03B11/00G02B27/09
    • C03B11/08C03B2215/49C03B2215/72G02B3/06G02B19/0014G02B19/0052G02B27/0966
    • Provided is an optical element manufacturing method by which optical elements, such as a beam shaping element having a molded side surface, are highly efficiently and accurately manufactured by pressure-molding a molten glass drop. After supplying a lower molding die with the molten glass drop of a prescribed volume at a temperature higher than that of the molding die, the molten glass drop is pressure-molded by the molding die, and a free surface solidified without being in contact with the molding die is formed between a molded upper surface and the molded side surface. The volume of the molten glass drop to be supplied is 0.8 times or more but not more than 0.97 times the volume of a space configured by an extended molded upper surface, an extended molded side surface and the molded lower surface when the molded upper surface and the molded side surface are extended.
    • 本发明提供一种光学元件的制造方法,通过该方法,通过对熔融玻璃液滴进行加压成型,高效率,高精度地制造具有成型侧面的光束成形元件等光学元件。 在比成型模的温度高的规定体积的熔融玻璃滴供给下模具之后,通过成型模压模熔融玻璃滴,并且自由表面固化而不与其接触 在模制的上表面和模制的侧表面之间形成模具。 要供给的熔融玻璃滴的体积是由延伸成型的上表面,延伸的模制侧表面和模制的下表面构成的空间的体积的0.8倍或更多但不超过0.97倍,当模制的上表面和 模制侧表面延伸。
    • 8. 发明授权
    • Optical element manufacturing method and optical element
    • 光学元件制造方法和光学元件
    • US08596093B2
    • 2013-12-03
    • US12451684
    • 2008-05-21
    • Kazuyuki OguraYoshihiro Kamada
    • Kazuyuki OguraYoshihiro Kamada
    • C03B23/00C03B11/08C03B11/00
    • C03B11/08C03B2215/49C03B2215/72G02B3/06G02B19/0014G02B19/0052G02B27/0966
    • Provided is an optical element manufacturing method by which optical elements, such as a beam shaping element having a molded side surface, are highly efficiently and accurately manufactured by pressure-molding a molten glass drop. After supplying a lower molding die with the molten glass drop of a prescribed volume at a temperature higher than that of the molding die, the molten glass drop is pressure-molded by the molding die, and a free surface solidified without being in contact with the molding die is formed between a molded upper surface and the molded side surface. The volume of the molten glass drop to be supplied is 0.8 times or more but not more than 0.97 times the volume of a space configured by an extended molded upper surface, an extended molded side surface and the molded lower surface when the molded upper surface and the molded side surface are extended.
    • 本发明提供一种光学元件的制造方法,通过该方法,通过对熔融玻璃液滴进行加压成型,高效率,高精度地制造具有成型侧面的光束成形元件等光学元件。 在比成型模的温度高的规定体积的熔融玻璃滴供给下模具之后,通过成型模压模熔融玻璃滴,并且自由表面固化而不与其接触 在模制的上表面和模制的侧表面之间形成模具。 要供给的熔融玻璃滴的体积是由延伸成型的上表面,延伸的模制侧表面和模制的下表面构成的空间的体积的0.8倍或更多但不超过0.97倍,当模制的上表面和 模制侧表面延伸。