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    • 1. 发明授权
    • Method for fabrication of optical element having metal ring
    • 具有金属环的光学元件的制造方法
    • US06935136B2
    • 2005-08-30
    • US10146210
    • 2002-05-14
    • Motohiko OtsukiKimihiro Kikuchi
    • Motohiko OtsukiKimihiro Kikuchi
    • C03B11/00C03B11/06C03B11/14C03C27/02G02B7/02C03B11/08
    • C03B11/14C03C27/02G02B7/026
    • A metal ring for an optical element that is served to cover a peripheral side surface of a lens and served to fix the lens to a mounting member by means of soldering is provided with a thin-wall sleeve a diameter of which is expanded toward a peripheral direction by means of pressure received from an optical material disposed inside the metal ring to thereby obtain a final peripheral side surface size, a thin-wall portion having an inside periphery near an extension of an inside peripheral surface of the thin-wall sleeve on one of apertures of the thin-wall sleeve, and a holding portion comprising a flange that projects from an edge of the aperture toward the aperture. A metal ring for an optical element, a method for fabrication of the optical element having the metal ring, and an optical element having a metal ring of the invention employ the abovementioned metal ring.
    • 用于覆盖透镜的周边侧表面并用于通过焊接将透镜固定到安装构件的光学元件的金属环设置有薄壁套筒,其直径朝向周边 方向,通过从设置在金属环内的光学材料接收的压力,从而获得最终的周边侧面尺寸;薄壁部分,其具有在薄壁套筒的内周面的延伸部附近的内周 所述薄壁套筒的孔的一部分,以及包括从所述孔的边缘向所述孔突出的凸缘的保持部。 用于光学元件的金属环,用于制造具有金属环的光学元件的方法以及具有本发明金属环的光学元件采用上述金属环。
    • 2. 发明授权
    • Beam-splitting/coupling apparatus having frame holding optical filter
    • 具有框架保持滤光器的分束/耦合装置
    • US06560389B2
    • 2003-05-06
    • US09852387
    • 2001-05-09
    • Motohiko OtsukiKimihiro Kikuchi
    • Motohiko OtsukiKimihiro Kikuchi
    • G02B626
    • G02B6/2817G02B6/29361
    • A beam-splitting/coupling apparatus comprises first and second frame member which each have a contact surface and a beam guide path. An optical filter is provided between the contact surfaces with the front and rear surfaces of the optical filter held by the first and second frame members respectively. The first and second frame members are held in a case by external flexible forces. A beam propagates from the beam guide path of the first frame member to the beam guide path of the second frame member by way of the optical filter. As a result, the optical filter can be installed firmly with ease. In addition, the effect of the installed optical filter on optical performance can be reduced.
    • 分束/耦合装置包括第一和第二框架构件,每个框架构件具有接触表面和梁引导路径。 在所述接触表面之间分别设置有由所述第一和第二框架构件保持的所述滤光器的前表面和后表面的滤光器。 第一和第二框架构件通过外部柔性力保持在壳体中。 光束通过光学滤波器从第一框架构件的光束引导路径传播到第二框架构件的光束引导路径。结果,可以容易地安装光学滤光器。 此外,可以降低安装的滤光器对光学性能的影响。
    • 6. 发明授权
    • Module for optical fiber communication
    • 光纤通信模块
    • US5533159A
    • 1996-07-02
    • US370993
    • 1995-01-10
    • Ken OkochiKimihiro Kikuchi
    • Ken OkochiKimihiro Kikuchi
    • G02B6/42H01L31/0232H01L33/58G02B6/36
    • G02B6/4207
    • A module for optical communication, adapted to prevent light from being reflected on the end surface of an optical fiber when a ferrule is inserted therein, and to increase the precision with which the positioning of an end surface of the optical fiber is performed. In the module, the circumference of an anti-reflection transparent film is held in a groove of a stopper member and is pressed against the inner circumference of an elastic sleeve. When the ferrule is inserted in the sleeve, the film adheres to the end surfaces of the optical fiber and the ferrule closely and securely. Thus, no air layer is formed between the film and the end surface of the optical fiber. Laser light is not reflected on the end surface of the optical fiber. The end surface of the ferrule adheres closely to a positioning face of the stopper member, though the film intervenes therebetween. The position of the ferrule is determined so that an image point, at which an image is formed from laser light, is coincident with the end surface of the optical fiber. Thereby, the precision with which light is input to the optical fiber, can be always increased.
    • 一种用于光通信的模块,适用于防止光纤插入光纤时在光纤端面反射光,并提高光纤端面的定位精度。 在该模块中,防反射透明膜的圆周被保持在止动构件的槽中,并被压靠在弹性套筒的内圆周上。 当套圈插入套筒中时,膜紧密地粘附到光纤和套圈的端面。 因此,在膜和光纤的端面之间不形成空气层。 激光不会反射在光纤的端面上。 尽管胶片介于其间,套圈的端面紧贴在止动件的定位面上。 确定套圈的位置,使得从激光形成图像的图像点与光纤的端面重合。 因此,可以始终增加光输入到光纤的精度。
    • 10. 发明授权
    • Optical semiconductor device provided with high-NA lens
    • 提供高NA透镜的光学半导体器件
    • US06625188B2
    • 2003-09-23
    • US09784592
    • 2001-02-15
    • Miki OnoKimihiro Kikuchi
    • Miki OnoKimihiro Kikuchi
    • H01S500
    • G02B6/4204H01S5/02252H01S5/02284
    • An optical semiconductor device to increase optical communication speed has a silicon substrate with an etched V-shaped first groove portion, a light emitting element which has an optical axis in the direction of the first groove portion and is mounted to the upper surface of the silicon substrate, and a high NA aspheric lens is mounted in the first groove portion. The first groove portion is composed of first and second opposing inclined surfaces and a third inclined surface perpendicular to the first and second inclined surfaces. A slit is cut in the silicon substrate extends in a direction perpendicular to the direction of the first groove portion and includes the first, second, and third inclined surfaces. The aspheric lens is mounted to the first and second inclined surfaces and has a part thereof protruding in the slit.
    • 提高光通信速度的光半导体装置具有具有蚀刻的V形第一槽部分的硅衬底,在第一槽部分的方向上具有光轴并且安装到硅的上表面的发光元件 衬底和高NA非球面透镜安装在第一凹槽部分中。 第一槽部由第一和第二相对的倾斜表面和垂直于第一和第二倾斜表面的第三倾斜表面组成。 在硅基板上切割的狭缝在与第一槽部的方向垂直的方向上延伸并且包括第一,第二和第三倾斜表面。 非球面透镜安装在第一和第二倾斜表面上,并且其一部分在狭缝中突出。