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
    • 3. 发明授权
    • Rod lens array for line scanning
    • 棒状透镜阵列用于线扫描
    • US06597512B2
    • 2003-07-22
    • US09960534
    • 2001-09-21
    • Minoru Toyama
    • Minoru Toyama
    • G02B300
    • G02B13/0095G02B3/005G02B3/0056G02B3/0087
    • A rod lens array for line scanning is provided that can reduce the degradation of image quality (i.e., vertical stripes (streaks) in the sub-scanning direction of an output image) caused by a periodic irregularity in the light quantity, considering an angular aperture and the positional deviation of an image line in the sub-scanning direction. A rod lens array for one-to-one imaging is used as the rod lens array for line scanning, including a plurality of columnar rod lenses having a refractive index distribution in the radial direction that are arranged in one row in the main scanning direction with their optical axes in parallel. The effective overlapping degree m is in the range defined by (1.55+0.5j)D/d≦m≦(1.80+0.5j)D/d  Eq. 37 where d is the lens diameter of the rod lens and D is the array pitch of the rod lenses.
    • 提供了一种用于线扫描的棒状透镜阵列,其可以考虑到光孔的周期性不规则性,从而可以降低由于光量引起的图像质量(即,输出图像的副扫描方向上的垂直条纹(条纹))的劣化 以及图像线在副扫描方向上的位置偏差。 使用用于一对一成像的棒状透镜阵列作为用于线扫描的棒状透镜阵列,包括多个在径向方向上具有折射率分布的柱状棒状透镜,其沿主扫描方向排列成一行, 它们的光轴平行。 有效重叠度m在由d透镜的透镜直径定义的范围内,D是棒状透镜的阵列间距。
    • 4. 发明授权
    • Image transfer device having laminated lens array sheets
    • 具有层叠透镜阵列片的图像转印装置
    • US06856463B2
    • 2005-02-15
    • US10208815
    • 2002-08-01
    • Minoru Toyama
    • Minoru Toyama
    • G02B3/00G02B27/10
    • G02B3/0068
    • An image transfer device having: a lens array laminate 14 forming an erecting unit magnification optical system, the lens array laminate including a plurality of lens array sheets 12 of the same specification each of which has convex-convex lens elements 10 arranged in a plurality of rows and which are substantially closely laminated in a direction of each lens optical axis. Typically, two to four lens array sheets of the same specification each of which has convex-convex lens elements each having are fractive index of not lower than 1.45 and arranged in 3 to 9 rows are closely laminated on each other or one another in a direction of each lens optical axis. Each of the lens array sheets is preferably formed so that the lens thickness is in a range of from about 4 mm to about 0.5 mm and the number of lens rows is in a range of from 4 to 6.
    • 一种图像传送装置,具有:形成竖立单位倍率光学系统的透镜阵列层叠体14,所述透镜阵列层叠体具有多个相同规格的透镜阵列片12,每个具有凸状透镜要素10, 并且其在每个透镜光轴的方向上基本上紧密地层叠。 通常,具有相同规格的两至四个透镜阵列片具有凸凸透镜元件,每个凸凸透镜元件具有不低于1.45并且排列成3至9列的折射率指数彼此紧密层叠, 的每个透镜光轴。 每个透镜阵列片优选地形成为使得透镜厚度在约4mm至约0.5mm的范围内,并且透镜列的数量在4至6的范围内。
    • 8. 发明授权
    • Light source-optical fiber coupler
    • 光源光纤耦合器
    • US06776537B2
    • 2004-08-17
    • US09983395
    • 2001-10-24
    • Minoru Toyama
    • Minoru Toyama
    • G02B642
    • G02B6/4206G02B6/4292
    • A light source-optical fiber coupler using a gradient index rod lens 12 by which a diffused luminous flux emitted from a light source (for example, a semiconductor laser 10) is coupled onto an end surface of an optical fiber (for example, a single-mode optical fiber 14). The gradient index rod lens has a planar end surface facing the light source, and a convex spherical end surface facing the optical fiber. The gradient index rod lens has a light source side numerical aperture NA2 in a range of from 0.40 to 0.75, an effective lens radius r0 in a range of from 0.3 to 1.0 mm, and a spherical curvature radius R1 in a range of from 1.2 to 2.0 mm.
    • 使用使用从光源(例如,半导体激光器10)发射的漫射光束的梯度折射率棒状透镜12耦合到光纤的端面上的光源 - 光纤耦合器(例如,单个 模式光纤14)。 梯度折射率棒透镜具有面向光源的平面端面和面向光纤的凸形球形端面。 梯度分度杆透镜的光源侧数值孔径NA2在0.40〜0.75的范围内,有效透镜半径r0在0.3〜1.0mm的范围内,球面曲率半径R1在1.2〜 2.0毫米。
    • 9. 发明授权
    • Optical imaging system
    • 光学成像系统
    • US6031668A
    • 2000-02-29
    • US212076
    • 1998-12-15
    • Minoru ToyamaShigeo KittakaAtsushi Akiba
    • Minoru ToyamaShigeo KittakaAtsushi Akiba
    • G02B3/00G02B13/00G02B6/02
    • G02B3/0087G02B13/0095G02B3/005G02B3/0056
    • An optical imaging system includes a rod lens array, whose individual lenses have a refractive index distribution optimized for high resolving power, which can be expressed byn(r).sup.2 =n.sub.0.sup.2 .multidot.{1-(g.multidot.r).sup.2 +h.sub.4 .multidot.(g.multidot.r).sup.4 +h.sub.6 .multidot.(g.multidot.r).sup.6 }(Eq. 93)wherein r is a radial distance from an optical axis of said rod lenses, n.sub.0 is the refractive index at the optical axis of said rod lenses, and g, h.sub.4 and h.sub.6 are coefficients of the refractive index distribution. The refractive index distribution coefficients h.sub.4 and h.sub.6 are defined, using parameters a, b, c, and d, asc-d.ltoreq.h.sub.4 .ltoreq.c+d (Eq. 94){(h.sub.4 -c)/d}.sup.2 +[{h.sub.6 -(a.multidot.h.sub.4 +b)}/e].sup.2 .ltoreq.1. (Eq. 95)
    • 光学成像系统包括棒状透镜阵列,其单独的透镜具有针对高分辨率优化的折射率分布,其可以由n(r)2 = n02x {1-(gxr)2 + h4x(gxr)4 + h6x (gxr)6}(式93)其中r是从所述棒状透镜的光轴的径向距离,n0是所述棒状透镜的光轴处的折射率,g,h4和h6是折射率的系数 指数分布。 使用参数a,b,c和d,定义折射率分布系数h4和h6,(d),(d4) + [{h6-(axh4 + b)} / e] 2 <= 1(式95)