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
    • 13. 发明授权
    • Optical resonator, optical modulator, optical frequency comb generator, optical oscillator and method of preparing optical oscillator
    • 光谐振器,光调制器,光频梳发生器,光振荡器及其制作方法
    • US07712977B2
    • 2010-05-11
    • US11578276
    • 2005-04-14
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • G02F1/035
    • G02F2/02G02F1/225G02F2203/56H01S3/0632H01S3/0637H01S3/1608H01S3/2308
    • An optical resonator includes a waveguide (12) formed by using an incidence side reflection film (93) and an emission side reflection film (94) arranged in parallel with each other and adapted to resonate light entering it by way of the incidence side reflection film (93) and adapted to propagate light formed and resonated so as to run through from the incidence side reflection (93) to the emission side reflection film (94), a substrate (11) for forming the optical waveguide (12) on the top surface thereof and a first protection member (86) and a second protection member (87) corresponding to the material of the substrate (11) provided at an upper part of the waveguide (12) so as to make at least an end facet of each of the members form a plane (91) or (92) identical with the first end facet (84) or the second end facet (85), whichever appropriate, of the substrate (11) including the light incidence end or the light emission end, whichever appropriate, of the optical waveguide (11) and the incidence side reflection film (93) and the emission side reflection film (94) are laid respectively on the formed planes (91), (92).
    • 光谐振器包括通过使用入射侧反射膜(93)和发射侧反射膜(94)形成的波导(12),发射侧反射膜(94)彼此平行布置并且适于使通过入射侧反射膜进入的光共振 (93),并且适于将形成并谐振的光从入射侧反射(93)传播到发射侧反射膜(94),用于在顶部形成光波导(12)的基板(11) 表面,以及与设置在波导管(12)的上部的衬底(11)的材料相对应的第一保护构件(86)和第二保护构件(87),以便形成至少一个端面 的构件形成与第一端面(84)或第二端面(85)相同的平面(91)或(92)(包括光入射端或发光端的基板) (11)和(或)适当的光波导 入射侧反射膜(93)和发射侧反射膜(94)分别铺设在形成的平面(91),(92)上。
    • 14. 发明申请
    • Optical frequency comb generator and optical modulator
    • 光频梳发生器和光调制器
    • US20070076282A1
    • 2007-04-05
    • US10579262
    • 2004-11-04
    • Motonobu KourogiKazuhiro ImaiWildiyatmoko Bambang
    • Motonobu KourogiKazuhiro ImaiWildiyatmoko Bambang
    • G02B26/00
    • G02F1/0311G02F1/0356G02F2201/17G02F2203/15G02F2203/56
    • A resonance system (14, 15) is formed by a light incident side reflection mirror and a light exiting side reflecting mirror, arranged parallel to each other. The light incident on an incident side reflective mirror (14) is propagated in the outward path direction or in the backward path direction so that the light is set in a resonant state. The light in the resonant state in the resonance system (14, 15) is phase-modulated, responsive to a modulating signal supplied from an oscillating device (16) by a light modulation device (2) arranged between the light incident side reflective mirror (14) and the light exiting side reflective mirror (15). The oscillating device oscillates the modulating signal of a frequency fm. A plural number of sidebands, centered about the frequency of the incident light, are generated with an interval between neighboring sidebands equal to the frequency of the modulating signal, such as to modulate the phase of the light in the outward path direction and the phase of the light in the backward path direction.
    • 谐振系统(14,15)由彼此平行布置的光入射侧反射镜和出射侧反射镜的光形成。 入射在入射侧反射镜(14)上的光在向外的路径方向或向后路径方向上​​传播,使得光被设置在共振状态。 谐振系统(14,15)中的共振状态的光被相位调制,响应于由配置在光入射侧反射镜(...)的光调制装置(2)从振荡装置(16)提供的调制信号, 14)和光出射侧反射镜(15)。 振荡装置振荡频率f m m的调制信号。 产生以入射光的频率为中心的多个边带,其相邻边带之间的间隔等于调制信号的频率,例如调制在向外的路径方向上​​的光的相位和相位 光在向后的路径方向。
    • 17. 发明授权
    • Optical frequency comb generator and optical modulator
    • 光频梳发生器和光调制器
    • US07551342B2
    • 2009-06-23
    • US10579262
    • 2004-11-04
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • G02F1/01
    • G02F1/0311G02F1/0356G02F2201/17G02F2203/15G02F2203/56
    • A resonance system (14, 15) is formed by a light incident side reflection mirror and a light exiting side reflecting mirror, arranged parallel to each other. The light incident on an incident side reflective mirror (14) is propagated in the outward path direction or in the backward path direction so that the light is set in a resonant state. The light in the resonant state in the resonance system (14, 15) is phase-modulated, responsive to a modulating signal supplied from an oscillating device (16) by a light modulation device (2) arranged between the light incident side reflective mirror (14) and the light exiting side reflective mirror (15). The oscillating device oscillates the modulating signal of a frequency fm. A plural number of sidebands, centered about the frequency of the incident light, are generated with an interval between neighboring sidebands equal to the frequency of the modulating signal, such as to modulate the phase of the light in the outward path direction and the phase of the light in the backward path direction.
    • 谐振系统(14,15)由彼此平行布置的光入射侧反射镜和出射侧反射镜的光形成。 入射在入射侧反射镜(14)上的光在向外的路径方向或向后路径方向上​​传播,使得光被设置在共振状态。 谐振系统(14,15)中的共振状态的光被相位调制,响应于由配置在光入射侧反射镜(...)的光调制装置(2)从振荡装置(16)提供的调制信号, 14)和光出射侧反射镜(15)。 振荡器振荡频率fm的调制信号。 产生以入射光的频率为中心的多个边带,其相邻边带之间的间隔等于调制信号的频率,例如调制在向外的路径方向上​​的光的相位和相位 光在向后的路径方向。
    • 18. 发明申请
    • Optical Resonator, Optical Modulator, Optical Frequency Comb Generator, Optical Oscillator and Method of Preparing Optical Oscillator
    • 光谐振器,光调制器,光频梳发生器,光振荡器和准备光振荡器的方法
    • US20070292069A1
    • 2007-12-20
    • US11578276
    • 2005-04-14
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • Motonobu KourogiKazuhiro ImaiWidiyatmoko Bambang
    • H01S3/08G02F1/035
    • G02F2/02G02F1/225G02F2203/56H01S3/0632H01S3/0637H01S3/1608H01S3/2308
    • An optical resonator includes a waveguide (12) formed by using an incidence side reflection film (93) and an emission side reflection film (94) arranged in parallel with each other and adapted to resonate light entering it by way of the incidence side reflection film (93) and adapted to propagate light formed and resonated so as to run through from the incidence side reflection (93) to the emission side reflection film (94), a substrate (11) for forming the optical waveguide (12) on the top surface thereof and a first protection member (86) and a second protection member (87) corresponding to the material of the substrate (11) provided at an upper part of the waveguide (12) so as to make at least an end facet of each of the members form a plane (91) or (92) identical with the first end facet (84) or the second end facet (85), whichever appropriate, of the substrate (11) including the light incidence end or the light emission end, whichever appropriate, of the optical waveguide (11) and the incidence side reflection film (93) and the emission side reflection film (94) are laid respectively on the formed planes (91), (92).
    • 光谐振器包括通过使用入射侧反射膜(93)和发射侧反射膜(94)形成的波导(12),发射侧反射膜(94)彼此平行布置并且适于使通过入射侧反射膜进入的光共振 (93),并且适于将形成并谐振的光从入射侧反射(93)传播到发射侧反射膜(94),用于在顶部形成光波导(12)的基板(11) 表面,以及与设置在波导管(12)的上部的衬底(11)的材料相对应的第一保护构件(86)和第二保护构件(87),以便形成至少一个端面 的构件形成与第一端面(84)或第二端面(85)相同的平面(91)或(92)(包括光入射端或发光端的基板) ,以适当者为准, (91)和(92)分别铺设光波导(11)和入射侧反射膜(93)和发射侧反射膜(94)。
    • 19. 发明授权
    • Vertical continuous oven
    • 立式连续烤箱
    • US5906484A
    • 1999-05-25
    • US471355
    • 1995-06-06
    • Kazuhiro Imai
    • Kazuhiro Imai
    • H01L21/00F27B9/00F27D3/00
    • H01L21/67109
    • The continuous oven for baking planar works according to the present invention comprises an oven main body, a work lifting unit for conveying works upward inside the oven main body in a sequential manner; a work lowering unit for conveying works downward inside the oven main body in a sequential manner; whereby the works are baked while being conveyed by the work lifting and lowering units in a substantially vertical direction. Thus, the works are conveyed vertically most of the time during the stay in the oven, and the floor space area necessary for the installation of the continuous oven can be therefore minimized. In particular, by arranging the works one over the other, typically in a mutually spaced relationship, in the work lifting and lowering units, it is possible to minimize the dead space inside the oven. Also, by avoiding the profile of the oven from becoming elongated in any particular direction, it is possible to reduce the surface area of the oven main body for a given internal volume of the oven. This obviously is highly desirable in terms of the economy of thermal energy.
    • 根据本发明的用于烘焙平面工程的连续烘箱包括炉主体,用于沿着炉子主体中顺序地向上运送工件的作业提升单元; 工作下降单元,用于以连续的方式在炉主体内向下输送工件; 由此工件在由工作提升和降低单元沿基本上垂直的方向输送时被烘烤。 因此,在烘箱停留期间大部分时间垂直输送作品,因此能够使安装连续烘箱所需的地板空间面积最小化。 特别地,通过在工作提升和降低单元中通常以相互间隔的关系布置工件,可以使炉内的死空间最小化。 此外,通过避免烤箱的轮廓在任何特定方向上变长,可以减小烤箱本体对于烘箱的给定内部容积的表面积。 这在热能的经济方面显然是非常可取的。
    • 20. 发明授权
    • Baking oven having a minimized access opening
    • 烘烤炉具有最小化的通道开口
    • US5591026A
    • 1997-01-07
    • US576964
    • 1995-12-26
    • Kazuhiro Imai
    • Kazuhiro Imai
    • F27B9/20F27B9/30F27B17/00H01L21/00F27D3/00
    • H01L21/67098
    • In a baking oven for baking a relatively planar work such as semiconductor substrates, LCD panels and integrated circuit boards, a laterally elongated slot is formed in a shutter door which is moveable in the vertical direction. The oven main body is internally provided with a rack having a plurality of shelves which are each associated with the slot of the shutter door in such a manner that the work supported by each of the shelves of the rack may be aligned with the slot of the shutter door by appropriately determining the vertical position of the shutter door. Thus, by minimizing the area of the access opening of the oven main body, not only the loss of energy is minimized but also undesirable fluctuations in the internal temperature of the oven main body is minimized.
    • 在用于烘烤诸如半导体衬底,LCD面板和集成电路板的相对平面的工作的烘烤炉中,横向细长的狭槽形成在可沿垂直方向移动的快门门中。 烤箱主体内部设置有具有多个搁架的搁架,每个搁架各自与快门门的狭槽相关联,使得由搁板的每个搁架支撑的工件可与该搁板的槽相对准 快门门通过适当确定快门门的垂直位置。 因此,通过使炉主体的进入口的面积最小化,不仅能量损失最小化,而且也使炉主体的内部温度的不期望的波动最小化。