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    • 4. 发明申请
    • Dual Structure Tire Wheel and Method for Installing it
    • 双结构轮胎轮及其安装方法
    • US20100212800A1
    • 2010-08-26
    • US12225853
    • 2007-12-18
    • Kazuhiro Ikeda
    • Kazuhiro Ikeda
    • B60C17/01B60C29/00
    • B60C17/01
    • It is an object of the present invention to provide a useful inner structural supporter type run flat tire having enough structural strength for controlling the steering wheel to some extent when the tire goes flat and having easy structure for installing to the rim wheel. A wheel 10 has a flange 11 with a bead part of a tubeless tire fitted thereto and a container 12 having a diameter smaller than that of the flange 11, and comprises a rim valve for adjusting the air pressure of the tubeless tire, and a second rim valve for adjusting air pressure in an inner tire 20. The inner tire 20 is stored in the container 12. While the inner tire 20 is stored in the container 12, the tubeless tire 30 is fitted to the flange of the tire wheel 10, air is fed into the inner tire 20 via the second rim valve until the air pressure reaches a predetermined value, so the inner tire 20 is inflated inside the tubeless tire 30, and an inner tire is provided as the inner tire in the outer tubeless tire space.
    • 本发明的目的是提供一种有用的内部结构支撑型横流式轮胎,其具有足够的结构强度,用于当轮胎平坦并且具有容易安装到轮辋的结构时,在一定程度上控制方向盘。 轮10具有凸缘11,凸缘11具有安装在其上的无内胎轮胎的胎圈部分和直径小于凸缘11的直径的容器12,并且包括用于调节无内胎轮胎的空气压力的边缘阀, 用于调节内轮胎20中的空气压力的轮辋阀。内轮胎20被存储在容器12中。当内轮胎20被存储在容器12中时,无内胎轮胎30装配到轮胎车轮10的凸缘, 空气通过第二边缘阀进入内轮胎20,直到空气压力达到预定值,因此内轮胎20在无内胎轮胎30内膨胀,并且在外胎筒中设置内轮胎作为内轮胎 空间。
    • 5. 发明授权
    • Key top attachment structure
    • 键顶附件结构
    • US06208730B1
    • 2001-03-27
    • US09162297
    • 1998-09-28
    • Kazuhiro IkedaShuuichi SugawaraKenichi Nishikawa
    • Kazuhiro IkedaShuuichi SugawaraKenichi Nishikawa
    • H04M100
    • H04M1/02
    • A key top attachment structure which makes the key-top attachment work easy, prevents the key top from being taken off from the outside, and suppresses looseness of the key top. A spring (11) provided with a rectangular hole (14), and lock portions (12A, 12B and 13) in which corresponding stoppers (22A, 22B and 23) of a key top (2) are to be locked respectively, are provided in a casing (1) of a small-sized electronic equipment such as an inter-call receiver or the like. A protrusion (21) which pushes the spring (11) at the time of attachment, a protrusion (24) which abuts against the spring (11) after attachment, a protrusion (25) which turns on a switch (3) on a printed board (4), and the stoppers (22A, 22B and 23) are provided in the key top (2).
    • 钥匙顶部附件结构使键顶附件工作变得容易,防止钥匙顶部从外部脱落,并抑制钥匙顶部的松动。 设置有矩形孔(14)的弹簧(11)和分别锁定相应的键顶(2)的止动件(22A,22B和23)的锁定部分(12A,12B和13) 在诸如通话接收机等的小型电子设备的外壳(1)中。 在安装时推动弹簧(11)的突起(21),在安装后抵靠弹簧(11)的突起(24),在打印机上打开开关(3)的突起(25) 板(4)和止动件(22A,22B和23)设置在键顶(2)中。
    • 7. 发明授权
    • Key top holding structure
    • 钥匙扣结构
    • US5934453A
    • 1999-08-10
    • US158258
    • 1998-09-22
    • Shuuichi SugawaraKazuhiro IkedaKenichi Nishikawa
    • Shuuichi SugawaraKazuhiro IkedaKenichi Nishikawa
    • H01H23/30H01H21/22H01H23/14H01H3/00
    • H01H23/143H01H21/22
    • A center shaft (2a) for holding a key top (1), and springs (2b) are provided in a casing (2) of a small-sized electronic equipment such as an inter-call receiver. The springs (2b) are provided so as to extend from the peripheral portions toward the center shaft (2a), and holes are formed in the springs (2b) respectively. The key top (1) is provided with a stopper nail (1a), first protrusions 1b and second protrusions 1c. The protrusions (1c) of the key top (1) for pushing switches (3) are inserted through the holes of the springs (2b) respectively, and the stopper nail (1a) of the key top (1) is engaged with the center shaft (2a) acting as a fulcrum during the seesawing operation of the key top (1). Thus, the key top (1) is held in a stable manner. The existence of the center shaft (2a) prevents simultaneous depression of the two switches (3).
    • 用于保持键顶(1)的中心轴(2a)和弹簧(2b)设置在小型电子设备(例如通话接收机)的壳体(2)中。 弹簧(2b)设置成从周边部朝向中心轴(2a)延伸,并且分别在弹簧(2b)中形成孔。 键顶(1)设置有止动爪(1a),第一突起1b和第二突起1c。 用于推动开关(3)的键顶(1)的突起(1c)分别穿过弹簧(2b)的孔插入,并且键顶(1)的止动钉(1a)与中心 轴(2a)在键顶(1)的跷跷板操作期间用作支点。 因此,关键顶(1)以稳定的方式进行。 中心轴(2a)的存在防止了两个开关(3)的同时按压。
    • 8. 发明授权
    • Clock regenerator comprising a reversible shift register and a
controllable frequency divider
    • 时钟再生器包括可逆移位寄存器和可控分频器
    • US4087627A
    • 1978-05-02
    • US731152
    • 1976-10-12
    • Yoshio SatoKazuhiro Ikeda
    • Yoshio SatoKazuhiro Ikeda
    • H04L7/033H04L7/00
    • H04L7/0331
    • A clock regenerator for a binary input which comprises a shift register having successively coupled first stages, a single predetermined stage, and second stages. A frequency divider device responsive to a local oscillation and with a controllable ratio produces timing pulses of a timing period equal to that prescribed number of clock periods which may be unity. Each timing pulse presets a binary signal in the single predetermined stage. The signal is shifted, when a transition occurs in binary values of the input signal within a predetermined interval defined by each timing period. The signal is shifted into the first and second stages if the transition occurs during a leading and a trailing half of each timing period, respectively, the timing pulse thus leading and lagging behind the input signal. The shifted binary signal controls the frequency division ratio to phase-synchronize the timing pulses with the input signal.
    • 一种用于二进制输入的时钟再生器,其包括具有连续耦合的第一级,单个预定级和第二级的移位寄存器。 响应于本地振荡并具有可控比率的分频器器件产生等于规定数量的时钟周期的定时脉冲的定时脉冲,时钟周期可以是一致的。 每个定时脉冲在单个预定阶段中预设一个二进制信号。 当在由每个定时周期定义的预定间隔内在输入信号的二进制值中发生转换时,信号被移位。 如果转换发生在每个定时周期的前半部分和后半期,则定时脉冲由此引导并滞后于输入信号,则信号被移入第一和第二级。 移位二进制信号控制分频比以使定时脉冲与输入信号相位同步。