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    • 61. 发明申请
    • Connector for memory card
    • 存储卡连接器
    • US20060183378A1
    • 2006-08-17
    • US10548433
    • 2004-05-25
    • Hirohisa TanakaToshihiro YamamotoMasato Kawashima
    • Hirohisa TanakaToshihiro YamamotoMasato Kawashima
    • H01R24/00
    • H01R13/7032
    • In a connector for memory card, it is objected to stabilize contact of detection switch for detecting insertion of a memory card, and to prevent breakage of the memory card due to bounce-out when it is taken out. The detection switch is held on a contact block with contacts which are to be contacted with terminals of the memory card, and comprised of a fixed contact plate and a movable spring piece. A groove having substantially V-shape is formed on a contacting portion of the movable spring piece so as to contact with the fixed contact plate at two points. Furthermore, elastic protrusions that can fit to recessed portions for locking formed on the memory card just before the slider holding the memory card reaches to an initial position is formed on a top plate of the housing, so that the bounce-out of the memory card is prevented.
    • 在用于存储卡的连接器中,反对用于稳定检测开关的接触,用于检测存储卡的插入,并且防止存储卡在被取出时由于反弹而破损。 检测开关保持在具有与存储卡的端子接触的触点的触点块上,并且包括固定接触板和可动弹簧片。 在可动弹簧片的接触部分上形成有大致V形的槽,以便在两点处与固定接触板接触。 此外,刚好在保持存储卡的滑块保持到初始位置之前能够形成在存储卡上的锁定凹部的弹性突起形成在壳体的顶板上,使得存储卡的反弹 被阻止
    • 62. 发明申请
    • Bearing structure
    • 轴承结构
    • US20060029317A1
    • 2006-02-09
    • US10952740
    • 2004-09-30
    • Toshihiro Yamamoto
    • Toshihiro Yamamoto
    • F16C13/00
    • B62M3/003F16C23/086F16C2326/28
    • The present invention is intended to provide a bearing structure in which a reference side bearing portion and an aligning side bearing portion can be installed with axial centers nearly aligned to each other even when the axial center of rotary shaft is inclined, and it is possible to obtain smooth and stable rotation for a long consecutive period of time. Left cup 7 of the bearing structure is axially moved so that ball 9a . . . held on holding ring 9b of aligning side bearing portion 9 is abutted on left-hand flange 4a of crank shaft 4, and also, holding ring 9b is spherically adjusted along the spherical surface of left cup 7, and the bearing center of all ball 9a . . . held on holding ring 9b is automatically aligned so as to be nearly aligned to the axial canter of crank shaft 4 which bears on reference side bearing portion 8, thereby displaying a bearing function while assuring smooth and stable rotation.
    • 本发明旨在提供一种轴承结构,其中即使当旋转轴的轴向中心倾斜时,参考侧轴承部分和对准侧轴承部分也可以安装有彼此大致对准的轴向中心,并且可以 获得平稳稳定的旋转持续一段长时间。 轴承结构的左杯7轴向移动,使球9 a。 。 。 保持在定位侧支承部9的保持环9b上的曲柄轴4与曲轴4的左手凸缘4a抵接,并且保持环9b沿着左杯7的球面球形地调整, 所有的球9 a。 。 。 保持在保持环9b上的自动对准,以与靠近基准侧轴承部8的曲柄轴4的轴向大致对准,从而显示轴承功能,同时确保平稳且稳定的旋转。
    • 63. 发明授权
    • Cooling unit and drain case for air conditioners
    • 冷气机组和排风机空调
    • US5481886A
    • 1996-01-09
    • US245502
    • 1994-05-18
    • Etsuo HasegawaYoshiharu KajikawaTakayuki MoritaSuehiro OkazakiToshihiro YamamotoToshiya NagasawaShogo Sumi
    • Etsuo HasegawaYoshiharu KajikawaTakayuki MoritaSuehiro OkazakiToshihiro YamamotoToshiya NagasawaShogo Sumi
    • B60H1/32F24F13/22F28D1/03F28F17/00F25D21/14
    • F28F17/005B60H1/3233F24F13/22F28D1/0341F28D2021/0085Y10S165/913
    • A drain case 4 is disposed between the bottom wall of a unit case and the lower end of refrigerant passage pipes 15 of a stacked type refrigerant evaporator. The drain case 4 is W-shape in cross section, and comprising two pieces of outside inclined walls 32 contacting the side ends of two pieces of tank parts 16 and 17 formed at the lower end side of the refrigerant passage pipes 15, a chevron type protruded wall 33 contacting a recessed part 28 formed at the bottom end of the part between the adjacent two pieces of tank parts 16 and 17, and inside inclined walls 34 having a drain hole 36. In this arrangement, the condensed water flows from the side ends of the two pieces of tank parts 16 and 17 and the part between the two pieces of tank part 16 and 17 into the lower ends thereof reaches the two pieces of outside inclined walls 32 and protruded wall 33 of the drain case 4 before reaching the bottom end of the two pieces of tank parts 16 and 17, and then is efficiently drained therefrom. Localized corrosion that may occur at the lower end part of refrigerant passage pipes is prevented by not allowing the condensed water to stay at the lower end side of the refrigerant passage pipes.
    • 在单元壳体的底壁和层叠型制冷剂蒸发器的制冷剂通过管15的下端之间设置有排水口4。 排水壳体4的横截面为W形,并且包括两个与制冷剂通道管15的下端侧形成的两个箱部16和17的侧端接触的外侧倾斜壁32,人字形 与形成在相邻的两个槽部16和17之间的部分的底端处的凹部28以及具有排水孔36的内倾斜壁34接触的突出壁33构成。冷凝水从侧面流动 两个储罐部分16和17的两端和两个罐部分16和17之间的部分进入其下端,在到达泄漏壳4的两个外倾斜壁32和突出壁33之前到达 两个罐部分16和17的底端,然后被有效地排出。 通过不使冷凝水停留在制冷剂通路管的下端侧,可以防止在制冷剂通路管的下端部发生局部腐蚀。
    • 64. 发明授权
    • Air conditioner
    • 冷气机
    • US5385030A
    • 1995-01-31
    • US208223
    • 1994-03-10
    • Koichi KitagawaKazuo SaitoToshio OtakaToshihiro YamamotoYoshihiro Ito
    • Koichi KitagawaKazuo SaitoToshio OtakaToshihiro YamamotoYoshihiro Ito
    • F25B9/00F25B13/00F25B49/02F25B39/00
    • F25B13/00F25B49/027F25B9/006F25B2600/111Y02B30/743
    • An air conditioner employs a refrigerating cycle involving a compressor 1, an outdoor heat exchanger 5, an indoor heat exchanger 9, an expansion valve 7, and a non-azeotropic coolant mixture composed of high and low boiling coolants sealed in the refrigerating cycle. The outdoor heat exchanger 5 is provided with a first blower 15 and a second blower 17. A speed controller 18 drives and controls the first, and second blowers 15 and 17. The speed controller 18 achieves a first mode to decrease an air quantity to part of the outdoor heat exchanger located on the upstream side of a flow of the coolant smaller than an air quantity to part of the outdoor heat exchanger located on the downstream side of the flow of the coolant, and a second mode to increase the air quantity to the upstream side of the outdoor heat exchanger greater than the air quantity to the downstream side of the outdoor heat exchanger.
    • 空调机采用包括压缩机1,室外热交换器5,室内热交换器9,膨胀阀7以及由密封在制冷循环中的高沸点冷却剂组成的非共沸冷却剂混合物的制冷循环。 室外热交换器5设置有第一鼓风机15和第二鼓风机17.速度控制器18驱动并控制第一和第二鼓风机15和17.速度控制器18实现第一模式以减少部分的空气量 位于冷却剂流的上游侧的室外热交换器的空气量比空气量低的部分位于冷却剂流动下游侧的室外热交换器,第二模式将空气量增加到 室外热交换器的上游侧比室外热交换器的下游侧的空气量大。