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    • 2. 发明专利
    • Portable provision
    • 便利条款
    • JP2006204157A
    • 2006-08-10
    • JP2005019037
    • 2005-01-27
    • Yoshio Yoshida吉田 美穂
    • YOSHIDA YOSHIO
    • A23L7/10B65D81/34
    • PROBLEM TO BE SOLVED: To provide portable provisions that are prepared by using rice cake and can be easily eaten at any place. SOLUTION: A suitable size of rice cake piece 1 is covered with a thermal conductor, for example, a sheet of aluminum foil and a pair of chemical reaction heater 24 are arranged at least on both sides of the rice cake piece and they are tightly sealed with a doubled bag 22. Simultaneously, vent holes 26 are bored on the covering bag 25 and the vent holes 26 are sealed with a sealer 27. At the start of the heating, the sealer 27 is peeled off on eating, the heating is carried out with the heating bodies 24 and the rice cake is heated from both of front and back sides until it becomes eatable. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供通过使用米糕准备的便携式规定,并且可以在任何地方容易地食用。 解决方案:将米饼块1的合适尺寸用热导体覆盖,例如,一块铝箔,一对化学反应加热器24至少布置在米饼块的两侧,并且它们 用双重袋22紧密密封。同时,通气孔26在覆盖袋25上钻孔,通气孔26用密封剂27密封。在加热开始时,密封剂27在进食时被剥离, 用加热体24进行加热,并且将米饼从前后两侧加热直至可食用。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明授权
    • Automotive air conditioning system
    • 汽车空调系统
    • US07281574B2
    • 2007-10-16
    • US10775879
    • 2004-02-10
    • Kazuji ShibataYoshio Yoshida
    • Kazuji ShibataYoshio Yoshida
    • F25B29/00B60H1/00B60H3/00
    • B60H1/00678B60H1/00064B60H2001/002B60H2001/00721Y10S454/907
    • A rear face inlet 25 and a foot inlet 28, and a rear face duct portion 26 and a foot duct portion 31 which are adapted to distribute air from the inlets, respectively, are disposed in alignment with each other in a transverse direction of a vehicle. As a result, a conventional overlapping portion where the rear face inlet and the foot inlet are made to overlap each other vertically somewhere along the length of each of the inlets in a transverse direction of the vehicle and a conventional overlapping portion where the rear face duct and the rear foot duct are disposed in such a manner as to overlap each other in a longitudinal direction of the vehicle somewhere along the length of a downwardly extending portion of each of the ducts can be eliminated, whereby the air conditioning unit can be constructed so as to be decreased in size vertically and longitudinally.
    • 分别适于从入口分配空气的后表面入口25和脚部入口28以及后表面导管部分26和脚部管道部分31在车辆的横向彼此对准地设置 。 结果,在车辆的横向方向上沿着每个入口的长度方向垂直地在后方面入口和脚部入口彼此重叠的常规重叠部分和传统的重叠部分,其中后面管 并且后脚管道以这样的方式设置,以便能够沿着每个管道的向下延伸部分的长度的某处沿着车辆的纵向方向彼此重叠,从而可以构造空调单元 在垂直和纵向上的尺寸减小。
    • 6. 发明授权
    • Optical pickup integrated with optical system
    • 光学拾音器与光学系统集成
    • US06201228B1
    • 2001-03-13
    • US09028334
    • 1998-02-24
    • Yoshio Yoshida
    • Yoshio Yoshida
    • G02B704
    • G11B7/1356G11B7/124G11B7/1353G11B11/10543
    • In an optical pickup, a beam splitter is arranged on an optical path between a hologram and a grating. Beam splitter includes a first reflecting surface reflecting part of a beam reflected from a disk, and a second reflecting surface arranged parallel to the first reflecting surface. Part of the beam which is reflected from the disk and passed through hologram is reflected at the first reflecting surface and thereafter reflected by the second reflecting surface of beam splitter, and thereafter directed to optical waveguide device, whereby a signal recorded on the disk is detected (reproduced). The beam which has transmitted through hologram and the first reflecting surface is directed to photodiode and detected as a servo error signal.
    • 在光学拾取器中,分束器布置在全息图和光栅之间的光路上。 光束分离器包括反射从盘反射的光束的一部分的第一反射表面和平行于第一反射表面布置的第二反射表面。 从光盘反射并穿过全息图的光束的一部分在第一反射表面反射,然后被分束器的第二反射表面反射,然后指向光波导器件,由此检测记录在盘上的信号 (转载)。 已透射全息图的光束和第一反射表面被引导到光电二极管并被检测为伺服误差信号。
    • 7. 发明授权
    • Waveguide-photodetector, method for producing the same, waveguide usable
in the waveguide-photodetector, and method for producing the same
    • 波导光检测器,其制造方法,可用于波导 - 光电探测器的波导管及其制造方法
    • US6078707A
    • 2000-06-20
    • US717355
    • 1996-09-20
    • Hiroyuki YamamotoYoshio YoshidaMotohiko YamamotoYukio Kurata
    • Hiroyuki YamamotoYoshio YoshidaMotohiko YamamotoYukio Kurata
    • G02B6/12G02B6/122G02B6/42H01L31/0232
    • G02B6/1228G02B6/12004G02B6/42H01L31/0232G02B2006/12195
    • A waveguide-photodetector includes a semiconductor substrate; a waveguide section, provided on the semiconductor substrate, for propagating light; an opto-electric converting section, provided in the semiconductor substrate, for converting the light into an electric signal; and an insulative layer provided between the semiconductor substrate and the waveguide section. The waveguide section includes at least an introducing part for introducing the light to the waveguide section, a coupling part for coupling the light introduced to the waveguide section to the opto-electric converting section, and a propagating part for propagating the light from the introducing part to the coupling part. The insulative layer includes a first region for defining a position and a shape of an impurity diffused region of the opto-electric converting section, a second region which encloses the first region and is thicker than the first region, and a step portion between the first region and the second region. The introducing part, the propagating part and the coupling part of the waveguide section are located on the first region.
    • 波导 - 光电检测器包括半导体衬底; 设置在半导体基板上的用于传播光的波导部分; 设置在半导体衬底中的用于将光转换成电信号的光电转换部; 以及设置在半导体衬底和波导部分之间的绝缘层。 波导部分至少包括用于将光引入到波导部分的引导部分,用于将引入波导部分的光耦合到光电转换部分的耦合部分和用于传播来自导入部分的光的传播部分 到耦合部分。 绝缘层包括用于限定光电转换部分的杂质扩散区域的位置和形状的第一区域,包围第一区域并且比第一区域厚的第二区域,以及第一区域 区域和第二区域。 引导部分,波导部分的传播部分和耦合部分位于第一区域上。
    • 9. 发明授权
    • Compact optical pickup device with beam splitter
    • 带光束分离器的紧凑型光学拾取装置
    • US5726962A
    • 1998-03-10
    • US465886
    • 1995-06-06
    • Kuniaki OkadaKohji MinamiHiroyuki YamamotoYoshio YoshidaYukio Kurata
    • Kuniaki OkadaKohji MinamiHiroyuki YamamotoYoshio YoshidaYukio Kurata
    • G02B6/122G02B6/42G11B7/09G11B7/12G11B7/135G11B11/10G11B11/105G11B7/00
    • G11B11/10543G11B7/124
    • The optical pickup device according to the present invention, includes: a light emitting diode for emitting a light beam; a collimating lens for collimating the light beam; an objective lens for focusing the collimated light beam from the collimating lens onto a recording medium; a beam splitter for splitting the light beam returned from the recording medium into two light beams; a servo error signal detector for receiving one of the two light beams and detecting a servo error signal; a diffracting element for diffracting the one of the two light beams from the beam splitter to direct the one of the two light beams toward the servo error signal detector; and an optical waveguide element for receiving the other one of the two light beams and detecting a magneto-optical signal, the other one of the two light beams from the beam splitter being incident upon the optical waveguide element without passing through the diffracting element, wherein the beam splitter is disposed between the collimating lens and the diffracting element.
    • 根据本发明的光拾取装置包括:用于发射光束的发光二极管; 用于准直光束的准直透镜; 用于将来自准直透镜的准直光束聚焦到记录介质上的物镜; 用于将从记录介质返回的光束分成两束光束的分束器; 伺服误差信号检测器,用于接收两个光束中的一个并检测伺服误差信号; 衍射元件,用于将来自分束器的两个光束中的一个衍射,以将两个光束中的一个导向伺服误差信号检测器; 以及用于接收两个光束中的另一个并检测磁光信号的光波导元件,来自分束器的两个光束中的另一个光束入射到光波导元件上而不穿过衍射元件,其中 分束器设置在准直透镜和衍射元件之间。