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    • 52. 发明授权
    • Vehicle drive unit, and four-wheel-drive vehicle drive unit
    • 车辆驱动单元和四轮驱动车辆驱动单元
    • US07354373B2
    • 2008-04-08
    • US11248151
    • 2005-10-13
    • Yuji AbiruShinji OgawaKoji Naito
    • Yuji AbiruShinji OgawaKoji Naito
    • F16H37/08B60W17/00B60W17/06
    • B60K5/04B60K17/08B60K17/16B60K17/34F16H3/089F16H61/688
    • A vehicle drive unit including (a) a transversely-mounted engine, (b) a transmission receiving an output of the engine and having an output shaft, and (c) a differential gear device including a ring gear and arranged to transmit an output of the transmission to a pair of right and left drive wheels while permitting a differential action, and wherein the differential gear device is located on one side of the engine which is on the side of the right and left drive wheels, and rotary power transmitting elements between an output gear fixedly mounted on the output shaft of the transmission and the ring gear of the differential gear device are arranged in a single row parallel to the longitudinal direction of vehicle, so that the vehicle drive unit has a relatively small axial dimension in the transverse or width direction B of the vehicle.
    • 一种车辆驱动单元,包括(a)横向安装的发动机,(b)接收所述发动机的输出并具有输出轴的变速器,以及(c)包括齿圈的差速齿轮装置, 传动到一对左右驱动轮同时允许差速动作,并且其中差速齿轮装置位于发动机的位于左右驱动轮一侧的一侧上,并且旋转动力传递元件位于 固定地安装在变速器的输出轴上的输出齿轮和差动齿轮装置的齿圈布置成平行于车辆纵向方向的单列,使得车辆驱动单元在横向上具有相对较小的轴向尺寸 或宽度方向B.
    • 57. 发明授权
    • Connector and a method of forming it
    • 连接器及其形成方法
    • US06902417B2
    • 2005-06-07
    • US10832216
    • 2004-04-26
    • Akihito MaegawaShinji Ogawa
    • Akihito MaegawaShinji Ogawa
    • H01R24/00H01R13/46H01R13/514H01R13/516H01R43/24H01R43/28H01R107/00H02G3/16H01R13/64
    • H01R43/24H01R43/28
    • A connector (10) has a casing-side holding portion (11) that fits in an opening (H) in a casing (C), and device-side holding portions (12) for receiving connectors (KC) of a device (K) in the casing (C). Terminal holding portions (30) are fixed to branches (22) of busbars (20), and covers (40) are held onto the terminal holding portions (30). An outer covering element (60) has a coupled portion (61) and a separated portion (62). The coupled portion (61) is coupled to the covers (40) and includes the casing-side holding portion (11). The separated portion (62) is separated from the covers (40) and includes the device-side holding portions (12). Displacement permitting spaces (51) are defined between the branches (22) and the covers (40) to permit displacements of the branches (22).
    • 连接器(10)具有装配在壳体(C)中的开口(H)中的壳体侧保持部分(11),以及用于接收装置(K)的连接器(KC)的装置侧保持部分 )在壳体(C)中。 端子保持部(30)固定在汇流条(20)的分支(22)上,盖(40)被保持在端子保持部(30)上。 外覆盖元件(60)具有联接部分(61)和分离部分(62)。 联接部分(61)联接到盖(40)并且包括壳体侧保持部分(11)。 分离部分(62)与盖(40)分离并且包括装置侧保持部分(12)。 在分支(22)和盖(40)之间限定位移允许空间(51),以允许分支(22)的位移。
    • 58. 发明授权
    • Impregnated cathode and method of manufacturing same, electron gun and electron tube
    • 浸渍阴极及其制造方法,电子枪和电子管
    • US06425793B1
    • 2002-07-30
    • US09671689
    • 2000-09-28
    • Yoji HasegawaShinji OgawaDaichi ImabayashiMakoto FurukawaNobuyuki YoshinoJunji SatoYoshirou HiraiNaoto OgasawaraKuniyasu Kobayashi
    • Yoji HasegawaShinji OgawaDaichi ImabayashiMakoto FurukawaNobuyuki YoshinoJunji SatoYoshirou HiraiNaoto OgasawaraKuniyasu Kobayashi
    • H01J1906
    • H01J1/28
    • An impregnated cathode and a method of manufacturing the same are provided for suppressing emission of unwanted electrons and particles generated from an excess electron emitting substance so as to achieve a steady electron emission characteristic. The impregnated cathode is placed directly beneath an electron emission hole of a first grid. The impregnated cathode is made up of a first sintered porous element whose surface functions as an electron emitting region and a second sintered porous element whose surface is a peripheral region other than the electron emitting region. The porosity of the first sintered porous element is greater than that of the second sintered porous element. Not only the first sintered porous element having the electron emitting region but also the second sintered porous element corresponding to the region around the electron emitting region is impregnated with the electron emitting substance. In addition, the amount of the electron emitting substance per unit volume contained in the first sintered porous element is greater than that contained in the second sintered porous element.
    • 提供一种浸渍阴极及其制造方法,用于抑制由过量的电子发射物质产生的不想要的电子和颗粒的发射,以实现稳定的电子发射特性。 浸渍的阴极直接放置在第一栅极的电子发射孔的正下方。 浸渍的阴极由其表面用作电子发射区的第一烧结多孔元件和表面是除电子发射区以外的周边区的第二烧结多孔元组成。 第一烧结多孔元件的孔隙率大于第二烧结多孔元件的孔隙率。 不仅具有电子发射区的第一烧结多孔元件,而且与电子发射区周围的区域相对应的第二烧结多孔元件也被电子发射物质浸渍。 此外,包含在第一烧结多孔元件中的每单位体积的电子发射物质的量大于第二烧结多孔元件中包含的电子发射物质的量。
    • 59. 发明授权
    • Molded coil a method and a mold for producing the same
    • 成型线圈的制造方法和模具
    • US06118361A
    • 2000-09-12
    • US352293
    • 1999-07-12
    • Shinji Ogawa
    • Shinji Ogawa
    • F16K31/06H01F27/28H01F27/32H01F41/12H01F27/02H01F27/829
    • H01F41/127H01F27/327
    • A molded coil is provided for preventing the entrance of water, oil and the like into the inside a coil. The molded coil 1 is comprised of a coil 2 provided therein and having the outer surfaces thereof covered by a resin material, and a molded element 17 formed by curing the resin material. Bulging portions 6 are provided at the opposite ends of a shaft 5 of a bobbin 3 of the coil 2. The molded element 17 is so formed as to cover the coil 2 from the outer surfaces of the two bulging portions 6 over the outer circumferential surface of the wound wire 4. On the outer surface of the lower bulging portion 6 is provided an embossed engaging portion in the form of a closed ring along the entire circumference of the bulging portion 6. Thus, even if water, oil or the like enters through mold detaching holes 18, it will not reach the inside of the coil 2.
    • 设置有用于防止水,油等进入线圈内部的模制线圈。 模制线圈1包括设置在其中的线圈2,其外表面被树脂材料覆盖,以及通过固化树脂材料形成的模制元件17。 凸出部分6设置在线圈2的线轴3的轴5的相对端。模制元件17形成为从两个凸出部分6的外表面在外周表面上覆盖线圈2 在下部鼓出部分6的外表面上沿着凸出部分6的整个圆周设置一个呈闭环形式的压花接合部分。因此,即使水,油等进入 通过模具拆卸孔18,它不会到达线圈2的内部。