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
    • 11. 发明授权
    • Polarizing filter and optical device using the same
    • 偏光过滤器和使用其的光学装置
    • US07164530B2
    • 2007-01-16
    • US10946316
    • 2004-09-22
    • Isao MuraguchiTerufusa KunisadaYukinari Sekiguchi
    • Isao MuraguchiTerufusa KunisadaYukinari Sekiguchi
    • G02B5/30G02B27/28G02B1/10
    • G02B5/3025
    • A polarizing filter has a laminate structure: wherein one to four layers of first dielectric thin films 1 and one to four layers of second dielectric thin films 2 are alternately laminated on a transparent flat substrate 10 to form the laminate structure, the layers of second dielectric thin films 2 having a refractive index lower than that of the first dielectric thin films 1 with respect to the wavelength of incident light; wherein one layer of the third dielectric thin film 3 having a refractive index intermediate between the refractive indices of the first and second dielectric thin films with respect to the wavelength of incident light is laminated on a surface of the laminate structure.In an optical device using the polarizing filter, the angle of incidence is set to be in a range of from 20 to 70 degrees.
    • 偏振滤光器具有叠层结构:其中一至四层第一电介质薄膜1和一至四层第二电介质薄膜2在透明平坦基板10上交替层叠以形成层压结构,第二电介质层 相对于入射光的波长,折射率低于第一电介质薄膜1的折射率的薄膜2; 其中在层叠结构的表面上层压具有相对于入射光波长的第一和第二电介质薄膜的折射率之间折射率之间的折射率的第三电介质薄膜3。 在使用偏振滤光器的光学装置中,入射角设定在20〜70度的范围内。
    • 13. 发明申请
    • Heat insulating and shielding glass panel
    • 隔热和屏蔽玻璃面板
    • US20060083873A1
    • 2006-04-20
    • US11289231
    • 2005-11-28
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • E06B3/24
    • C03C17/3618B32B17/00C03C17/36C03C17/3626C03C17/3644C03C17/3652C03C17/366C03C27/10C03C2217/78E06B3/66304
    • A heat insulating and shielding glass panel that is capable of maintaining heat shielding performance even if heat treatment is carried out during manufacture. The heat insulating and shielding glass panel 1 is comprised of a pair of glass plates 11 and 12 that are hermetically joined together at their outer peripheral edges via a sealing frame 13 that fluidizes at low temperature, such that respective one surfaces of the glass plates 11, 12 face each other and a hollow layer 14 is formed between the glass plates; and pillars 15 that are substantially cylindrical spacers that are inserted into the hollow layer 14 as atmospheric pressure supporting members and determine the gap between the glass plates 11 and 12. A low-emission transparent multilayer 17 having an emittance of not more than 0.1 is coated by sputtering on each of surfaces 11a and 12a of the respective glass plates 11 and 12 facing the hollow layer 14 so as to realize high heat insulation performance. The low-emission transparent multilayer 17 is comprised of ZnO layers 33 and 35 as dielectric layers separated from each other in the direction of film thickness by an SiNx layer 34 as an amorphous layer, and an Ag—Pd layer 32 as a metal layer containing Ag and Pd.
    • 即使在制造过程中进行热处理也能够保持隔热性能的隔热屏蔽玻璃面板。 隔热屏蔽玻璃面板1由一对玻璃板11和12组成,玻璃板11和12通过密封框架13在其外周缘处气密地接合在一起,该密封框架13在低温下流化,使得玻璃板11的相应一个表面 12彼此面对,并且在玻璃板之间形成中空层14; 以及作为大气压支撑构件插入中空层14中的大致圆柱形间隔件并且确定玻璃板11和12之间的间隙的柱15。 通过溅射将面对中空层14的各个玻璃板11和12的表面11a和12a上的发射率不大于0.1的低发射透明多层17覆盖,以实现高绝热性能。 低发射透明多层17由ZnO层33,35构成,作为电介质层,通过作为非晶层的SiNx层34在膜厚方向上彼此分离的电介质层和作为金属层的Ag-Pd层32 Ag和Pd。
    • 14. 发明授权
    • Polarizing filter and optical device using the same
    • 偏光过滤器和使用其的光学装置
    • US06967776B2
    • 2005-11-22
    • US09940716
    • 2001-08-29
    • Isao MuraguchiTerufusa KunisadaYukinari Sekiguchi
    • Isao MuraguchiTerufusa KunisadaYukinari Sekiguchi
    • G02B5/30G02B1/10G02B27/28
    • G02B5/3025
    • A polarizing filter has a laminate structure: wherein one to four layers of first dielectric thin films 1 and one to four layers of second dielectric thin films 2 are alternately laminated on a transparent flat substrate 10 to form the laminate structure, the layers of second dielectric thin films 2 having a refractive index lower than that of the first dielectric thin films 1 with respect to the wavelength of incident light; wherein one layer of the third dielectric thin film 3 having a refractive index intermediate between the refractive indices of the first and second dielectric thin films with respect to the wavelength of incident light is laminated on a surface of the laminate structure. In an optical device using the polarizing filter, the angle of incidence is set to be in a range of from 20 to 70 degrees.
    • 偏振滤光器具有叠层结构:其中一至四层第一电介质薄膜1和一至四层第二电介质薄膜2在透明平坦基板10上交替层叠以形成层压结构,第二电介质层 相对于入射光的波长,折射率低于第一电介质薄膜1的折射率的薄膜2; 其中在层叠结构的表面上层压具有相对于入射光波长的第一和第二电介质薄膜的折射率之间折射率之间的折射率的第三电介质薄膜3。 在使用偏振滤光器的光学装置中,入射角设定在20〜70度的范围内。
    • 16. 发明授权
    • Reflection type diffraction grating
    • 反射型衍射光栅
    • US06839173B2
    • 2005-01-04
    • US09953219
    • 2001-09-17
    • Katsuhide ShimmoShinji KawamotoTerufusa KunisadaKenichi Nakama
    • Katsuhide ShimmoShinji KawamotoTerufusa KunisadaKenichi Nakama
    • G02B5/18
    • G02B5/1861
    • A reflection type diffraction grating according to the present invention has a structure in which a metal film as a first layer with reflectance not lower than 30% with respect to the wavelength of incident light and a transparent dielectric film as a second layer are laminated successively on the surface of the reflection type diffraction grating. With respect to the wavelength of incident light, the metal film has a refractive index selected to be not higher than 1.5 and an extinction coefficient selected to be not smaller than 6.0. The transparent dielectric film has a refractive index selected to be in a range of from 1.30 to 1.46, both inclusively, with respect to the wavelength of incident light and has an optical film thickness selected to be in a range of from 0.20λ to 0.38λ, both inclusively, when λ is the wavelength of incident light.
    • 根据本发明的反射型衍射光栅具有如下结构:将相对于入射光的波长的反射率不低于30%的第一层的金属膜和作为第二层的透明电介质膜依次层叠在 反射型衍射光栅的表面。 对于入射光的波长,金属膜的折射率选择为不高于1.5,消光系数选择为不小于6.0。 透明电介质膜的折射率选择在1.30至1.46的范围内,包括相对于入射光的波长,并且具有选择在0.20λ至0.38λ范围内的光学膜厚度 ,当λ是入射光的波长时,都包括在内。