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    • 82. 发明授权
    • Relay apparatus between relative rotary materials
    • 相对旋转材料之间的继电器
    • US6096976A
    • 2000-08-01
    • US161958
    • 1998-09-29
    • Yasutaka NagaokaNobuhiko Suzuki
    • Yasutaka NagaokaNobuhiko Suzuki
    • B60R16/027B60R16/02B62D1/04H01R35/04H02G11/00H02G11/02H01B7/06
    • B60R16/027H02G11/00H02G11/02
    • A relay apparatus between relative rotary members has a first rotator (a rotator) having an inner cylindrical portion, a second rotator (a fixed body) having an outer cylindrical portion for surrounding the inner cylindrical portion at a predetermined interval, and for rotating relative to the inner cylindrical portion, a flexible flat cable coiled along the inside of the circular space between the inner cylindrical portion and the outer cylindrical portion, wherein the terminal portion of the inner circumference and the terminal portion of the outer circumference of the flexible flat cable are held in the inner cylindrical portion and the outer cylindrical portion, respectively, and a C-shaped mobile body is disposed in a freely movable manner for reversing the flexible flat cable in the aperture, wherein the mobile body is defined so that an inner circumferential side is polygon-shaped. The C-shaped movable member comprises a planar horizontal rib with a planar upper rib projecting vertically to contact the upper cover and a planar lower rib projecting to contact the lower cover and has a gap in its perimeter defined by first and second end portions, one having a concave and one a convex surface.
    • 相对旋转构件之间的中继装置具有具有内圆筒部的第一旋转体(旋转体),具有外筒部的第二旋转体(固定体),用于以预定间隔包围内圆筒部,并且相对于 所述内圆柱部分是沿着所述内圆柱部分和所述外圆筒部分之间的所述圆形空间的内侧盘绕的柔性扁平电缆,其中所述柔性扁平电缆的内圆周的端部和外周的端部部分是 分别保持在内圆筒部和外圆筒部中,C形移动体以可自由移动的方式设置,以便使孔中的柔性扁平电缆反转,其中移动体被限定为内周侧 是多边形的。 C形可动构件包括平面的水平肋,平面上肋垂直突出以接触上盖,并且平坦的下肋凸出以与下盖接触,并且在其周边上具有由第一和第二端部限定的间隙,一个 具有凹面和一个凸面。
    • 83. 发明授权
    • C-shaped relay apparatus between relative rotary materials
    • 相对旋转材料之间的C形继电器
    • US5841069A
    • 1998-11-24
    • US744528
    • 1996-11-06
    • Yasutaka NagaokaNobuhiko Suzuki
    • Yasutaka NagaokaNobuhiko Suzuki
    • B60R16/027B60R16/02B62D1/04H01R35/04H02G11/00H02G11/02H01B7/06
    • B60R16/027H02G11/00H02G11/02
    • A relay apparatus between relative rotary members has a first rotator (a rotator) having an inner cylindrical portion, a second rotator (a fixed body) having an outer cylindrical portion for surrounding the inner cylindrical portion at a predetermined interval, and for rotating relative rotating to the inner cylindrical portion, a flexible flat cable coiled along the inside of the circular space between the inner cylindrical portion and the outer cylindrical portion, wherein the terminal portion of the inner circumference and the terminal portion of the outer circumference of the flexible flat cable are held in the inner cylindrical portion and the outer cylindrical portion, respectively, and a C-shaped mobile body is disposed in a freely movable manner for reversing the flexible flat cable in the aperture, wherein the mobile body is defined so that an inner circumferential side is polygon-shape, and its end portions are convex and concave.
    • 相对旋转构件之间的中继装置具有具有内圆筒部的第一旋转体(旋转体),具有外筒部的第二旋转体(固定体),用于以预定间隔围绕内筒部,并且旋转相对旋转 内圆柱部分是沿内圆柱部分和外圆柱部分之间的圆形空间的内侧螺旋形的柔性扁平电缆,其中柔性扁平电缆的内圆周端部和外圆周端部分 分别被保持在内圆筒部分和外圆筒部分中,并且C形移动体以可自由移动的方式设置,以便使孔中的柔性扁平电缆反转,其中移动体被限定为使得内周 侧面为多边形,其端部为凸状,凹状。
    • 85. 发明授权
    • Relay device between relative rotating members
    • 相对旋转构件之间的继电器
    • US5762508A
    • 1998-06-09
    • US755453
    • 1996-11-22
    • Hiraku TanakaSatoshi IshikawaNobuhiko SuzukiYasutaka NagaokaHidehiro IchikawaTakuji Kinoshita
    • Hiraku TanakaSatoshi IshikawaNobuhiko SuzukiYasutaka NagaokaHidehiro IchikawaTakuji Kinoshita
    • B60R16/027B60R16/02H01R35/02H01R35/04
    • B60R16/027H01R35/025
    • A relay device 10 between relative rotating members has a flexible flat cable 13 wound in a spiral shape and arranged in a ring space K between sleeve-shaped members (an inside cylindrical portion, an outside cylindrical portion) 11a, 12a relatively rotating on inner and outer sides. The sleeve-shaped members 11a, 12a are electrically connected to each other through the flexible flat cable 13. The flexible flat cable 13 is constructed such that at least one end portion (an inner circumferential end portion, an outer circumferential end portion) 13a, 13b of the flexible flat cable is held in one of the sleeve-shaped members 11a, 12a through a holding member (an inner circumferential end holding portion, an outer circumferential end portion) 13g, 13h and a direction of the flexible flat cable is changed outward from one of the sleeve-shaped members 11a, 12a through a bent portion 13e, 13f bent at a predetermined angle. The holding member 13g, 13h is fixedly arranged in the flexible flat cable 13 near its center from the bent portion 13e, 13f.
    • 相对旋转构件之间的中继装置10具有缠绕成螺旋形状的柔性扁平电缆13,并且配置在环形空间K内的套筒状构件(内筒部,外筒部11a,12a)内部相对旋转的环状构件 外侧。 套筒状构件11a,12a通过柔性扁平电缆13彼此电连接。柔性扁平电缆13构造成使得至少一个端部(内周端部,外周端部)13a, 柔性扁平电缆13b通过保持构件(内周端部保持部,外周端部)13g,13h保持在一个套筒状构件11a,12a中,柔性扁平电缆的方向变化 从一个套筒状构件11a,12a通过弯曲部分13e,13f以预定角度弯曲。 保持构件13g,13h从弯曲部13e,13f靠近其中心固定地布置在柔性扁平电缆13中。
    • 87. 发明授权
    • Control system for variable capacity type compressor for air
conditioning system of vehicle
    • 车用空调系统变容式压缩机控制系统
    • US4723416A
    • 1988-02-09
    • US50545
    • 1987-05-14
    • Nobuhiko Suzuki
    • Nobuhiko Suzuki
    • B60H1/32F04B49/00F25B49/02F25B1/00
    • B60H1/3208F25B49/022
    • A control system for controlling a compressor for an air conditioning system of a vehicle. A variable capacity type compressor is disposed to be driven by an engine of the vehicle. The compressor is adapted to vary in capacity with a change in pressure within a crank chamber thereof. A first calculator calculates thermal load on the air conditioning system, and a second calculator calculates the rotational speed of the engine. An upper limit setter sets an upper limit value of suction pressure within the compressor in such a manner that the upper limit value is increased with an increase in the thermal load, and decreased with an increase in the rotational speed of the engine. A capacity controller is responsive to a difference between the set upper limit value of suction pressure and the sensed actual suction pressure for adjusting the pressure within the crank chamber to vary the capacity of the compressor.
    • 一种用于控制车辆空调系统的压缩机的控制系统。 可变容量型压缩机设置为由车辆的发动机驱动。 压缩机适于随其曲轴室内的压力变化而变化。 第一计算器计算空调系统的热负荷,第二计算器计算发动机的转速。 上限设定器以压缩机内的吸入压力的上限值为上限值,随着热负荷的增加而上升,随着发动机转速的增加而减小。 容量控制器响应于设定的吸入压力上限值和感测到的实际吸入压力之间的差异,用于调节曲柄室内的压力以改变压缩机的容量。