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    • 71. 发明授权
    • Mixing chamber for an air-conditioning system
    • 用于空调系统的混合室
    • US4942739A
    • 1990-07-24
    • US378379
    • 1989-07-11
    • Akira UdaYoshio YoshidaMakoto HaradaMasaaki Sato
    • Akira UdaYoshio YoshidaMakoto HaradaMasaaki Sato
    • F24F5/00B64D13/00F24F13/04
    • B64D13/00F24F13/04
    • A mixing chamber for an air-conditioning system including a cylindrical vessel having a plurality of inlet ports provided at an axial end portion for introducing cool air from an air-conditioning unit and warm air from passenger compartments. The vessel is further provided at the other axial end portion with outlet ports. The inlet and outlet ports are oriented in a tangential direction with respect to the vessel to thereby form a spiral air flow in the vessel. The vessel has a water capturing ring located along the inner wall surface of the vessel to prevent film of water on the inner wall surface of the vessel from flowing toward the outlet ports. A water drawing slit is formed in the vessel to open to the inner wall surface at a side of the water capturing ring adjacent to the inlet ports to discharge the water accumulated at this side of the ring.
    • 一种用于空调系统的混合室,包括一个圆柱形容器,该圆柱形容器具有设置在轴向端部处的多个入口,用于引入来自空调单元的冷空气和来自乘客舱的暖空气。 容器进一步设置在具有出口的另一个轴向端部处。 入口和出口相对于容器沿切线方向定向,从而在容器中形成螺旋空气流。 容器具有沿容器的内壁表面定位的捕水环,以防止容器的内壁表面上的水膜流向出口。 在容器中形成一个抽水狭缝,以便在与入口相邻的捕水环侧的内壁表面开口,以排出积聚在环的这一侧的水。
    • 75. 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。
    • 76. 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。