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    • 1. 发明授权
    • Optical waveguide module
    • 光波导模块
    • US07024079B2
    • 2006-04-04
    • US10483817
    • 2003-05-14
    • Takeo KomiyaTakashi Sasaki
    • Takeo KomiyaTakashi Sasaki
    • G02B6/30
    • G02B6/4249G02B6/29368G02B6/42G02B6/4214G02B6/4246
    • In a planar-waveguide-type optical circuit 1, a reflection filter 4 is placed inside an oblique groove 3 formed to traverse optical waveguides 2n. Reflected light from the reflection filter 4 is detected by photodetectors 61n of a photodetector array 6, and thereby light intensity of signal light is monitored. A glass substrate made of glass material having a refractive index substantially identical to that of a core 20 of the optical waveguide 2n and filter fixing resin 5 fixing the reflection filter 4 is used for a substrate 10 of the optical circuit 1 constituting part of the groove 3. This inhibits reflection of light in various regions of the groove 3, thereby reducing generation of extra scattered light inside the groove 3 and its confinement. An optical waveguide module capable of enhancing monitoring characteristics of the signal light is thus realized.
    • 在平面波导型光电路1中,将反射滤光器4配置在形成为横穿光波导2 N的倾斜槽3的内部。 来自反射滤光器4的反射光由光检测器阵列6的光电检测器61N检测,从而监测信号光的光强度。 由玻璃材料制成的玻璃基板,其折射率与光波导2的核心20和固定反射滤光片4的滤光片固定树脂5的折射率基本相同,被用于 构成槽3的一部分的光电路1。 这抑制了凹槽3的各个区域的光的反射,从而减少了凹槽3内的多余的散射光的产生及其限制。 因此实现了能够增强信号光的监视特性的光波导模块。
    • 4. 发明授权
    • Optical device
    • 光学装置
    • US06850674B2
    • 2005-02-01
    • US10434368
    • 2003-05-09
    • Akira HaraguchiTakeo KomiyaMaki IkejiTakashi SasakiYasushi Fujimura
    • Akira HaraguchiTakeo KomiyaMaki IkejiTakashi SasakiYasushi Fujimura
    • G02B6/36G02B6/42H01S5/026G02B6/30
    • G02B6/4246G02B6/3636G02B6/4212G02B6/4214G02B6/4243G02B6/4249G02B6/4251G02B6/4265G02B6/4286
    • An optical device 1 has a substrate 2, whereas bare fibers 5 exposed from a coated optical fiber tape 3 by removing a coating 4 from its middle part are secured to the upper face part of the substrate 2. In the substrate 2, a transverse groove 8 is formed obliquely with respect to an axis of the bare fibers 5 so as to traverse core parts 5a of the bare fibers. An optical member 9 for reflecting a part of signal light transmitted through the bare fibers 5 is inserted in the transverse groove 8. A support member 10 is provided on the upper side of the bare fibers 5, whereas a support surface 10a of the support member 10 is provided with photodetectors 11 for detecting light reflected by the optical member 9. The support surface 10a of the support member 10 is inclined with respect to the upper face of the substrate 2, whereby the light entrance surface 13 of each photodetector 11 is inclined by a predetermined angle with respect to the upper face of the substrate 2. Such a configuration realizes an optical device which can lower the polarization dependence of received light in the photodetectors.
    • 光学装置1具有基板2,而从涂覆的光纤带3露出的裸光纤5通过从其中间部分去除涂层4被固定到基板2的上表面部分。在基板2中,横向凹槽 8相对于裸光纤5的轴线倾斜地形成,以便穿过裸光纤的芯部5a。 用于反射透过裸光纤5的信号光的一部分的光学部件9被插入到横向槽8中。在裸光纤5的上侧设置有支撑部件10,而支撑部件的支撑面10a 10设置有用于检测由光学构件9反射的光的光电检测器11.支撑构件10的支撑表面10a相对于基板2的上表面倾斜,由此每个光电检测器11的光入射表面13倾斜 相对于基板2的上表面具有预定的角度。这种结构实现了能够降低光电检测器中的接收光的偏振度依赖性的光学装置。
    • 5. 发明授权
    • Seal structure
    • 密封结构
    • US08912454B2
    • 2014-12-16
    • US13698596
    • 2011-06-30
    • Takashi Sasaki
    • Takashi Sasaki
    • H05K7/00H04M1/02H04M1/18
    • H05K7/00H04M1/0235H04M1/18
    • Provided is a seal structure which can reduce the thickness of an electronic device, can be easily assembled and disassembles, and can exhibit an excellent seal performance. Thus, the seal structure for an electronic device, which seals a gap between a flexible wiring substrate inserted to a through-hole provided in a case member of an electronic device and the through-hole, is comprised of an annular gasket composed of a rubber elastic material, a part of which is integrally molded with the flexible wiring substrate, and a retainer plate for retaining the gasket in conjunction with the case member.
    • 提供一种可以减小电子设备的厚度的密封结构,可以容易地组装和拆卸,并且可以表现出优异的密封性能。 因此,用于密封插入设置在电子设备的壳体构件中的通孔的柔性布线基板与通孔之间的间隙的电子设备的密封结构包括由橡胶 弹性材料,其一部分与柔性布线基板整体模制,以及用于将垫圈与壳体构件一起保持的保持板。
    • 6. 发明授权
    • Repeater device and control method
    • 中继设备和控制方法
    • US08898347B2
    • 2014-11-25
    • US13154955
    • 2011-06-07
    • Takashi SasakiSatoshi HiguchiKeisuke Satou
    • Takashi SasakiSatoshi HiguchiKeisuke Satou
    • G06F3/00G06F5/00H04N21/4363H04N5/765
    • H04N5/765G09G2330/021G09G2370/06G09G2370/12H04N21/43635
    • A repeater device connected to source and sink devices includes: an input terminal receiving transmission data supplied from the source device; relay means for relaying the transmission data; an output terminal outputting the transmission data relayed by the relay means to the sink device; control means for setting an operating mode of a limited state where a dynamic function of causing a superficial dynamic change and allowing a user to visually confirm the superficial dynamic change is deactivated and only a static function of not causing the superficial dynamic change is activated in response to a user's predetermined operation even when the source and sink device are connected to each other in a controllable state; and switch means for switching activated and deactivated states of a connecting line to the sink device by controlling the ON and OFF states.
    • 连接到源和宿设备的中继器设备包括:输入终端,接收从源设备提供的传输数据; 用于中继传输数据的中继装置; 输出端子,将由中继装置中继的发送数据输出到信宿装置; 控制装置用于设定动态功能导致表面动态变化并允许用户视觉上确认表面动态变化的受限状态的操作模式,并且仅响应于不引起表面动态变化的静态功能被激活 即使当源和宿设备在可控状态下彼此连接时,也可以是用户的预定操作; 以及用于通过控制ON和OFF状态来将连接线的激活和去激活状态切换到接收器装置的开关装置。