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    • 71. 发明申请
    • LOUDSPEAKER
    • 喇叭
    • US20100128917A1
    • 2010-05-27
    • US11994880
    • 2007-09-28
    • Koji SanoKazuki HondaSatoshi ItohMasashi Kawabe
    • Koji SanoKazuki HondaSatoshi ItohMasashi Kawabe
    • H04R11/02
    • H04R9/025H04R2499/11
    • A speaker comprising a first rod magnet having a longitudinal direction, a second rod magnet having a longitudinal direction parallel with the longitudinal direction of the first rod magnet, a third rod magnet forming a second magnetic gap between it and the first rod magnet, a diaphragm vibrating in the vibrating direction, a housing for storing the first rod magnet, the second rod magnet, the third rod magnet and the diaphragm, and voice coils bonded to the diaphragm and arranged in first and second magnetic gaps. The second rod magnet has a longitudinal direction parallel with the longitudinal direction of the first rod magnet, and has the opposite end faces in the longitudinal direction. The third rod magnet has a longitudinal direction parallel with the longitudinal direction of the first rod magnet, and has the opposite end faces in the longitudinal direction. The diaphragm is located between the first and second rod magnets and between the first and third rod magnets. The housing forms a first space surrounded by one of the opposite end faces of the second rod magnet and one of the opposite end faces of the third rod magnet, and forms a second space surrounded by the other of the opposite end faces of the second rod magnet and the other of the opposite end faces of the third rod magnet. The housing is composed of a nonmagnetic body and supports the outer circumference of the diaphragm. First and second sound radiating holes respectively facing the first and second spaces are formed in the housing. This speaker is thin and can deliver big sound.
    • 一种扬声器,包括具有纵向方向的第一杆状磁体,具有与第一杆状磁体的纵向方向平行的纵向方向的第二杆状磁体,在其与第一杆状磁体之间形成第二磁性间隙的第三杆状磁体, 在振动方向上振动的壳体,用于存储第一杆状磁体,第二杆状磁体,第三杆状磁体和隔膜的壳体,以及与隔膜接合并设置在第一和第二磁隙中的音圈。 第二杆状磁体具有与第一杆状磁体的长度方向平行的长度方向,并且在长度方向上具有相对的端面。 所述第三杆状磁体具有与所述第一杆状磁体的长度方向平行的长度方向,并且在所述长度方向上具有相对的端面。 隔膜位于第一和第二杆状磁体之间以及第一和第三棒状磁体之间。 壳体形成由第二杆状磁体的相对端面之一和第三杆状磁体的相对端面之一围绕的第一空间,并形成第二空间,该第二空间被第二杆的相对端面中的另一端面包围 磁体和第三杆磁体的另一个相对端面。 外壳由非磁性体构成,并支撑隔膜的外周。 分别面对第一和第二空间的第一和第二声音辐射孔形成在壳体中。 这个扬声器很薄,可以发出很大的声音。
    • 75. 发明授权
    • Methods for designing, evaluating and manufacturing semiconductor devices
    • 设计,评估和制造半导体器件的方法
    • US07464352B2
    • 2008-12-09
    • US11326355
    • 2006-01-06
    • Satoshi Itoh
    • Satoshi Itoh
    • G06F9/45H01L29/40H01L21/4763
    • G06F17/5068
    • A semiconductor device 100 has a configuration having a via 124 formed on a first interconnect 112. A method for designing the semiconductor device 100 includes: calculating an anticipated value xopen of a dimension of a growing region of a void 150 expanding in a stress induced voiding (SIV)-ensured time topen at a predetermined temperature, assuming that the void 150 grows from an origin in a copper interconnect (interconnect metallic film 110); and determining a geometric factor of the via 124 by comparing a dimension of a contacting region between a first interconnect 112 and the via 124 with the anticipated value xopen. The dimension of the contacting region may be presented as d+h (where d represents a diameter of a via 124, and h represents a buried depth that the via 124 is buried within the first interconnect 112).
    • 半导体器件100具有在第一互连112上形成的通孔124的结构。半导体器件100的设计方法包括:计算在应力引起的空隙中膨胀的空隙150的生长区域的尺寸的预期值xopen (互连金属膜110)中假定空隙150从原点生长,预定时间(SIV)被保持在预定温度下。 以及通过将第一互连112和过孔124之间的接触区域的尺寸与预期值xopen进行比较来确定通孔124的几何因子。 接触区域的尺寸可以表示为d + h(其中d表示通孔124的直径,h表示通孔124埋在第一互连112内的掩埋深度)。
    • 77. 发明申请
    • Heat pump cycle device
    • 热泵循环装置
    • US20080041071A1
    • 2008-02-21
    • US11784107
    • 2007-04-05
    • Satoshi Itoh
    • Satoshi Itoh
    • F25B30/00
    • F25B29/003B60H1/00342B60H1/00899B60H2001/00928B60H2001/00949F25B9/008F25B39/04F25B40/00F25B2309/061F25B2400/0411F25B2600/2507F28D7/0025F28D7/0066F28D7/0083
    • A heat pump cycle device includes a compressor for drawing and compressing refrigerant, a first high-pressure heat exchanger located for heating a first fluid circulating in a first fluid circuit using high-pressure refrigerant discharged from the compressor, a second high-pressure heat exchanger for heating a second fluid circulating in a second fluid circuit using the high-pressure refrigerant flowing out of the first high-pressure heat exchanger, a first heating heat exchanger located to heat a third fluid using the first fluid, a second heating heat exchanger located to heat the third fluid using the second fluid, a decompression unit located to decompress the high-pressure refrigerant flowing out of the second high-pressure heat exchanger, and a low-pressure heat exchanger for evaporating low-pressure refrigerant decompressed by the decompression unit. Because the first and second high-pressure heat exchangers are located, cycle efficiency can be improved.
    • 热泵循环装置包括用于拉制和压缩制冷剂的压缩机,第一高压热交换器,用于加热使用从压缩机排出的高压制冷剂在第一流体回路中循环的第一流体;第二高压热交换器 用于使用从第一高压热交换器流出的高压制冷剂在第二流体回路中循环的第二流体加热,第一加热热交换器,其位于使用第一流体加热第三流体的位置,第二加热热交换器 使用第二流体加热第三流体,减压单元,其对从第二高压热交换器流出的高压制冷剂进行减压,以及用于蒸发由减压单元减压的低压制冷剂的低压热交换器 。 由于第一和第二高压热交换器的定位,可以提高循环效率。
    • 80. 发明授权
    • Air conditioner for a vehicle using a composite heat exchanger
    • 使用复合热交换器的车辆空调
    • US09352634B2
    • 2016-05-31
    • US13435574
    • 2012-03-30
    • Yoshiki KatohSatoshi Itoh
    • Yoshiki KatohSatoshi Itoh
    • B60H1/32B60H1/00F28F9/02F28D1/053
    • B60H1/00328B60H1/00335F28D1/05391F28F9/0214F28F9/0246
    • A composite heat exchanger includes a first heat exchanger configured to exchange heat between feed air and a refrigerant, and a second heat exchanger configured to exchange heat between the feed air and engine coolant. The composite heat exchanger is integrated so as to enable heat transfer between discharge refrigerant flowing through the first heat exchanger and the coolant flowing through the second heat exchanger. Furthermore, the composite heat exchanger is configured to change an amount of the heat exchanged among the feed air, the discharge refrigerant and the coolant in the composite heat exchanger by changing at least one of a volume of the feed air, a refrigerant discharge capacity of the compression mechanism, and an inflow amount of the heat medium.
    • 复合热交换器包括构造成在进料空气和制冷剂之间交换热量的第一热交换器和被配置为在进料空气和发动机冷却剂之间交换热量的第二热交换器。 复合式热交换器是一体的,以便使流过第一热交换器的排放制冷剂和流过第二热交换器的冷却剂之间的热传递。 此外,复合热交换器构成为,通过改变原料空气的体积,制冷剂的排出容量,制冷剂的排出容量等,来改变复合式热交换器中的进料空气,排出制冷剂和冷却剂之间的热交换量 压缩机构和热介质的流入量。