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
    • 4. 发明授权
    • Hollow reflecting optical element and scanning optical device
    • 中空反射光学元件和扫描光学器件
    • US08427726B2
    • 2013-04-23
    • US13257546
    • 2010-02-04
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • G02B26/08
    • G02B26/126B29C45/1704B29C45/7613B29C45/762B29C2945/76167B29C2945/76257B29C2945/76381B29C2945/76411B29C2945/76454B29C2945/76474B29C2945/76488B29C2945/76585B29C2945/76943B29D11/00596B29L2011/0058B41J2/471G02B27/0031
    • Provided are a resinous reflecting optical element that achieves high mirror surface precision by mitigating the warping effects associated with contraction during resin hardening and suppressing the distortion of a mirror surface that results from resistance to mold release, and a scanning optical device that uses said reflecting optical element. The reflecting optical element is characterized by having a long, tabular substrate (3), a mirror surface section (2) positioned on one surface of the substrate (3), and a hollow portion (4) positioned within the interior of the substrate (3), and is also characterized in that, as a result of configuring so that the hollow portion (4) is longer than the mirror surface section (2), warping and sink marks which form due to contraction during resin hardening are mitigated across the entire mirror surface section (2), and in that the entire mirror surface section (2) protrudes above the surface of the substrate (3), thereby suppressing the increase in resistance to mold release that occurs when a metallic mold is gripped by the molding during resin contraction, and preventing distortion of the mirror surface section (2) that is caused by resistance to mold release.
    • 提供一种树脂反射光学元件,其通过减轻与树脂硬化期间的收缩相关的翘曲效应并抑制由于抵抗脱模导致的反射镜表面的变形而实现高镜面精度;以及扫描光学装置,其使用所述反射光学 元件。 反射光学元件的特征在于具有长的平板状基板(3),位于基板(3)的一个表面上的镜面部分(2)和位于基板内部的中空部分(4) 3),其特征还在于,通过构造使得中空部分(4)比镜面部分(2)长,由于在树脂硬化期间由于收缩而形成的翘曲和凹痕被缓和 整个镜面部分(2),并且整个镜面部分(2)突出在基底(3)的表面上方,从而抑制当通过模制夹持金属模具时发生的抗脱模性的增加 在树脂收缩期间,并且防止由于抵抗脱模而引起的镜面部分(2)的变形。
    • 5. 发明申请
    • Hollow Reflecting Optical Element and Scanning Optical Device
    • 中空反射光学元件和扫描光学器件
    • US20120008184A1
    • 2012-01-12
    • US13257546
    • 2010-02-04
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • G02B26/12G02B5/08
    • G02B26/126B29C45/1704B29C45/7613B29C45/762B29C2945/76167B29C2945/76257B29C2945/76381B29C2945/76411B29C2945/76454B29C2945/76474B29C2945/76488B29C2945/76585B29C2945/76943B29D11/00596B29L2011/0058B41J2/471G02B27/0031
    • Provided are a resinous reflecting optical element that achieves high mirror surface precision by mitigating the warping effects associated with contraction during resin hardening and suppressing the distortion of a mirror surface that results from resistance to mold release, and a scanning optical device that uses said reflecting optical element. The reflecting optical element is characterized by having a long, tabular substrate (3), a mirror surface section (2) positioned on one surface of the substrate (3), and a hollow portion (4) positioned within the interior of the substrate (3), and is also characterized in that, as a result of configuring so that the hollow portion (4) is longer than the mirror surface section (2), warping and sink marks which form due to contraction during resin hardening are mitigated across the entire mirror surface section (2), and in that the entire mirror surface section (2) protrudes above the surface of the substrate (3), thereby suppressing the increase in resistance to mold release that occurs when a metallic mold is gripped by the molding during resin contraction, and preventing distortion of the mirror surface section (2) that is caused by resistance to mold release.
    • 提供一种树脂反射光学元件,其通过减轻与树脂硬化期间的收缩相关的翘曲效应并抑制由于抵抗脱模导致的反射镜表面的变形而实现高镜面精度;以及扫描光学装置,其使用所述反射光学 元件。 反射光学元件的特征在于具有长的平板状基板(3),位于基板(3)的一个表面上的镜面部分(2)和位于基板内部的中空部分(4) 3),其特征还在于,通过构造使得中空部分(4)比镜面部分(2)长,由于在树脂硬化期间由于收缩而形成的翘曲和凹痕被缓和 整个镜面部分(2),并且整个镜面部分(2)突出在基底(3)的表面上方,从而抑制当通过模制夹持金属模具时发生的抗脱模性的增加 在树脂收缩期间,并且防止由于抵抗脱模而引起的镜面部分(2)的变形。
    • 8. 发明申请
    • SIGNAL PROCESSING APPARATUS
    • 信号处理装置
    • US20100220954A1
    • 2010-09-02
    • US12681782
    • 2008-10-07
    • Toshiyuki SekiyaKen HayakawaKazuo HaraokaMasaaki HattoriNaoki KanekoTetsujiro Kondo
    • Toshiyuki SekiyaKen HayakawaKazuo HaraokaMasaaki HattoriNaoki KanekoTetsujiro Kondo
    • G02B6/42
    • G02B6/43H04B10/801
    • In the sending and receiving of a signal through an optical waveguide, an unknown substrate connected to the optical waveguide can be recognized. A signal processing apparatus 1A is provided with an optical waveguide 2A in which the light input from an arbitrary position on an outer circumference is output in an entire circumference direction at a level in accordance with a positional relation with the input location, a master substrate 3M arranged on the outer circumference of the optical waveguide 2A, a single or a plurality of slave substrates 3S arranged at any of a plurality of mount locations at different positions along the outer circumference of the optical waveguide 2A, in which as the light is output from A laser diodes 30S of all the slave substrates 3S connected to the optical waveguide 2A, from a level of a light transmitted through the optical waveguide 2A and input to the photo detector 31M of the master substrate 3M in accordance with the arrangement of the slave substrate 3S, the master substrate 3M recognizes the mount positions and number of the slave substrates 3S.
    • 在通过光波导发送和接收信号时,可以识别连接到光波导的未知基板。 信号处理装置1A设置有光波导2A,其中从外周上的任意位置输入的光在整个圆周方向上以与输入位置的位置关系一级输出,母板3M 布置在光波导2A的外周上的单个或多个从基板3S,其沿着光波导2A的外周在不同位置处设置在多个安装位置中的任一个处,其中当光从光波导2A输出时, 根据从基板的布置,从通过光波导2A透射的光的水平和与主基板3M的光电检测器31M输入的所有从基板3S的激光二极管30S连接到光波导2A, 如图3S所示,主基板3M识别从基板3S的安装位置和数量。