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
    • 2. 发明授权
    • Deformable mirror device and apparatus for observing retina of eye
    • 用于观察眼睛视网膜的可变形镜装置和装置
    • US07604353B2
    • 2009-10-20
    • US11958725
    • 2007-12-18
    • Akihiro KogaMasayuki SekimuraKei MasunishiAkio KobayashiHiroyuki KawashimaHirotake Maruyama
    • Akihiro KogaMasayuki SekimuraKei MasunishiAkio KobayashiHiroyuki KawashimaHirotake Maruyama
    • A61B3/10G02B7/188G02B26/00
    • A61B3/12G02B26/0825
    • It is made possible to improve the variations in the “generated force (load)—deflection characteristics”. A deformable mirror device includes: a substrate; a plurality of electrodes provided on the substrate; a spacer disposed on the substrate; a support member disposed above the spacer and having an opening passing through from a first face of the support member facing to the substrate to a second face of the support member facing opposite from the first face; a first insulation film provided on the first face of the support member; a second insulation film provided on the second face of the support member; and a deformable electrode film disposed so as to be opposed to the electrodes at a spacing, formed so as to cover the opening, and supported by the support member with sandwiching the first insulation film. The electrode film includes a reflection portion on a face opposite from the electrodes, and the support member is disposed on the substrate with sandwiching the electrode film, the first insulation film and the spacer.
    • 可以改善“生成力(负载) - 偏转特性”的变化。 可变形反射镜装置包括:基板; 设置在所述基板上的多个电极; 设置在基板上的间隔件; 支撑构件,其设置在所述间隔件上方,并具有从所述支撑构件的面向所述基板的第一面穿过所述支撑构件的与所述第一面相对的第二面的开口; 设置在所述支撑构件的第一面上的第一绝缘膜; 设置在所述支撑构件的第二面上的第二绝缘膜; 以及可变形电极膜,其以间隔形成为与所述电极相对的方式设置,以覆盖所述开口,并且由所述支撑构件夹持所述第一绝缘膜。 电极膜在与电极相对的面上具有反射部分,并且支撑部件设置在基板上,夹着电极膜,第一绝缘膜和间隔物。
    • 4. 发明申请
    • DEFORMABLE MIRROR DEVICE AND APPARATUS FOR OBSERVING RETINA OF EYE
    • 眼镜镜片可视化装置及观察装置
    • US20080180634A1
    • 2008-07-31
    • US11958725
    • 2007-12-18
    • Akihiro KogaMasayuki SekimuraKei MasunishiAkio KobayashiHiroyuki KawashimaHirotake Maruyama
    • Akihiro KogaMasayuki SekimuraKei MasunishiAkio KobayashiHiroyuki KawashimaHirotake Maruyama
    • A61B3/10G02B7/188
    • A61B3/12G02B26/0825
    • It is made possible to improve the variations in the “generated force (load)—deflection characteristics”. A deformable mirror device includes: a substrate; a plurality of electrodes provided on the substrate; a spacer disposed on the substrate; a support member disposed above the spacer and having an opening passing through from a first face of the support member facing to the substrate to a second face of the support member facing opposite from the first face; a first insulation film provided on the first face of the support member; a second insulation film provided on the second face of the support member; and a deformable electrode film disposed so as to be opposed to the electrodes at a spacing, formed so as to cover the opening, and supported by the support member with sandwiching the first insulation film. The electrode film includes a reflection portion on a face opposite from the electrodes, and the support member is disposed on the substrate with sandwiching the electrode film, the first insulation film and the spacer.
    • 可以改善“生成力(负载) - 偏转特性”的变化。 可变形反射镜装置包括:基板; 设置在所述基板上的多个电极; 设置在基板上的间隔件; 支撑构件,其设置在所述间隔件上方,并具有从所述支撑构件的面向所述基板的第一面穿过所述支撑构件的与所述第一面相对的第二面的开口; 设置在所述支撑构件的第一面上的第一绝缘膜; 设置在所述支撑构件的第二面上的第二绝缘膜; 以及可变形电极膜,其以间隔形成为与所述电极相对的方式设置,以覆盖所述开口,并且由所述支撑构件夹持所述第一绝缘膜。 电极膜在与电极相对的面上具有反射部分,并且支撑部件设置在基板上,夹着电极膜,第一绝缘膜和间隔物。
    • 7. 发明申请
    • Variable optical attenuator and ranging apparatus using the same
    • 可变光衰减器及使用其的测距装置
    • US20080044152A1
    • 2008-02-21
    • US11890559
    • 2007-08-07
    • Makoto FujinoHiroyuki Kawashima
    • Makoto FujinoHiroyuki Kawashima
    • G02B6/26
    • G02B6/266G01S7/481G01S7/4868G01S17/08
    • A variable optical attenuator for adjusting a power of light which is output from an output end of a first optical fiber and is to be led to an input end of a second optical fiber, includes a reflection member which reflects the light output from the output end of the first optical fiber, a density filter which transmits the light reflected from the reflection member and controls the power of the light which is transmitted by the density filter depending on a light-transmitting position on the density filter, and an optical member which reflects the light transmitted by the density filter to lead the light to the reflection member. The reflection member is disposed tiltably, the power of the light transmitted by the density filter attenuates along a direction in which the light-transmitting position is changed, and the light-transmitting position of the light is changed by tilting the reflection member.
    • 一种用于调节从第一光纤的输出端输出并被引导到第二光纤的输入端的光功率的可变光衰减器包括:反射部件,其反射从输出端 第一光纤的密度滤波器,透射从反射构件反射的光并根据密度滤光器上的透光位置控制由密度滤光器透射的光的功率的浓度滤光器;以及反射 由密度滤光器透射的光将光引导到反射构件。 反射构件可倾斜地设置,由密度滤波器透射的光的功率沿着透光位置改变的方向衰减,并且通过使反射构件倾斜来改变光的透光位置。
    • 8. 发明授权
    • Variable optical attenuator and ranging apparatus using the same
    • 可变光衰减器及使用其的测距装置
    • US07546008B2
    • 2009-06-09
    • US11890559
    • 2007-08-07
    • Makoto FujinoHiroyuki Kawashima
    • Makoto FujinoHiroyuki Kawashima
    • G02B6/26G02B6/00G01C3/00C01C3/08
    • G02B6/266G01S7/481G01S7/4868G01S17/08
    • A variable optical attenuator for adjusting a power of light which is output from an output end of a first optical fiber and is to be led to an input end of a second optical fiber, includes a reflection member which reflects the light output from the output end of the first optical fiber, a density filter which transmits the light reflected from the reflection member and controls the power of the light which is transmitted by the density filter depending on a light-transmitting position on the density filter, and an optical member which reflects the light transmitted by the density filter to lead the light to the reflection member. The reflection member is disposed tiltably, the power of the light transmitted by the density filter attenuates along a direction in which the light-transmitting position is changed, and the light-transmitting position of the light is changed by tilting the reflection member.
    • 一种用于调节从第一光纤的输出端输出并被引导到第二光纤的输入端的光功率的可变光衰减器包括:反射部件,其反射从输出端 第一光纤的密度滤波器,透射从反射构件反射的光并根据密度滤光器上的透光位置控制由密度滤光器透射的光的功率的浓度滤光器;以及反射 由密度滤波器透射的光将光引导到反射构件。 反射构件可倾斜地设置,由密度滤波器透射的光的功率沿着透光位置改变的方向衰减,并且通过使反射构件倾斜来改变光的透光位置。
    • 9. 发明授权
    • Wavefront aberration compensating apparatus and ophthalmologic unit having the same
    • 波前像差补偿装置和眼科单元
    • US07537341B2
    • 2009-05-26
    • US12048095
    • 2008-03-13
    • Noriko SaitoAkio KobayashiHiroyuki Kawashima
    • Noriko SaitoAkio KobayashiHiroyuki Kawashima
    • A61B3/10A61B3/14A61B3/00
    • G02B26/06A61B3/1015A61B3/14G02B26/0825
    • A wavefront aberration compensating apparatus, which includes: a deformable mirror having electrodes and a thin-film mirror; an optical system provided with the deformable mirror and including an object; a wavefront sensor which measures a wavefront aberration of a light flux; and a controller configured to: calculate a first voltage value applied to each of the electrodes, on the basis of differences between application points on the thin-film mirror and target points both corresponding to the electrodes respectively; determine a superposition amplitude value of each expansion mode according to a polynomial of wavefront aberration, and calculate a second voltage value applied to each of the electrodes by using voltage templates previously stored, such that the wavefront aberration obtained by the wavefront sensor becomes a desired aberration; determine the voltage value applied to each of the electrodes, by mainly using the second voltage value in an initial stage of compensation of the configuration of the thin-film mirror and by mainly using the first voltage value in an end stage of the compensation; and repeat the compensation on the basis of the determined voltage value, such that the wavefront aberration of the light flux is suppressed.
    • 一种波前像差补偿装置,包括:具有电极和薄膜反射镜的可变形反射镜; 设置有可变形反射镜并包括物体的光学系统; 测量光通量的波前像差的波前传感器; 以及控制器,其被配置为:基于薄膜反射镜上的应用点和分别对应于电极的目标点​​之间的差异来计算施加到每个电极的第一电压值; 根据波前像差的多项式确定每个扩展模式的叠加振幅值,并且通过使用预先存储的电压模板来计算施加到每个电极的第二电压值,使得由波前传感器获得的波前像差成为期望的像差 ; 通过在补偿薄膜反射镜的构造的初始阶段主要使用第二电压值,并且主要在补偿的最后阶段使用第一电压值来确定施加到每个电极的电压值; 并根据确定的电压值重复补偿,从而抑制光通量的波前像差。
    • 10. 发明授权
    • Wavefront aberration compensating apparatus and ophthalmologic unit having the same
    • 波前像差补偿装置和眼科单元
    • US07520613B2
    • 2009-04-21
    • US12047946
    • 2008-03-13
    • Noriko SaitoAkio KobayashiHiroyuki Kawashima
    • Noriko SaitoAkio KobayashiHiroyuki Kawashima
    • A61B3/10A61B3/14
    • G02B26/06A61B3/1015A61B3/12
    • A wavefront aberration compensating apparatus, including: a deformable mirror which compensates a wavefront aberration of a light flux and includes electrodes, and a thin-film mirror which changes a configuration thereof in accordance with a voltage value applied to each of the electrodes; an optical system provided with the deformable mirror and including an object subjected to aberration compensation; a wavefront sensor which measures the wavefront aberration of the light flux; a memory which stores therein a voltage template provided for each expansion mode according to a polynomial of wavefront aberration, as a voltage alignment data for the electrodes which induces the corresponding expansion mode; and a controller configured to determine a superposition amplitude value of each of the expansion modes and calculate the voltage value applied to each of the electrodes by using the voltage templates stored such that the wavefront aberration obtained by the wavefront sensor becomes a desired aberration, and to repeat compensation of the configuration of the thin-film mirror on the basis of the calculated voltage value, such that the wavefront aberration of the light flux measured by the wavefront sensor is suppressed.
    • 一种波前像差补偿装置,包括:可变形反射镜,其补偿光束的波前像差并包括电极;以及薄膜反射镜,其根据施加到每个电极的电压值改变其配置; 设置有可变形反射镜并包括经受像差补偿的物体的光学系统; 测量光通量波前像差的波前传感器; 存储器,其中存储根据波前像差的多项式为每个扩展模式提供的电压模板作为引起相应扩展模式的电极的电压对准数据; 以及控制器,被配置为确定每个扩展模式的叠加振幅值,并且通过使用存储的电压模板来计算施加到每个电极的电压值,使得由波前传感器获得的波前像差成为期望的像差,并且 基于计算出的电压值重复补偿薄膜反射镜的结构,从而抑制由波前传感器测量的光通量的波前像差。