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    • 1. 发明专利
    • Cervical vertebra traction device
    • CERVICAL VERTEBRA TRACTION DEVICE
    • JP2009100807A
    • 2009-05-14
    • JP2007272932
    • 2007-10-19
    • Amir AyalonLife Harmony KkTakashi SanoHitoshi ToidaTsubata Tsuneichiアミール アヤロンライフハーモニー株式会社隆 佐野等 戸井田津幡 常一
    • TOIDA HITOSHISANO TAKASHI
    • A61F5/042
    • PROBLEM TO BE SOLVED: To provide an inexpensive and simply structured cervical vertebra traction device allowing a general user to easily use. SOLUTION: The cervical vertebra traction device comprises a head unit 30 having a jaw holder 10 for supporting the load caused by the weight of a user 1 by receiving the jaws of the user 1 and a head holder 20 for supporting the occipital part of the user 1 while holding the jaw holder 10; a coil spring 40 for supporting the head unit 30 and pulling the head of the user 1 upward by utilizing the load applied to the head unit 30; lower support bars 50 located under the left and right armpits of the user for supporting part of the weight of the user; and a support 60 extending in the vertical direction. The coil spring 40 and the lower support bars 50 are attached to the support 60 in such a way that the height position from the floor surface can be adjusted. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供便宜且简单的结构的颈椎牵引装置,允许一般用户容易地使用。 解决方案:颈椎牵引装置包括头单元30,头单元30具有夹持器10,用于通过接收使用者1的钳口来支撑由使用者1的重量引起的负荷,以及用于支撑枕部的头部保持器20 同时保持夹持器10; 用于支撑头单元30并通过利用施加到头单元30的负载向上拉使用者1的头部的螺旋弹簧40; 下支撑杆50位于使用者的左和右腋下,用于支撑使用者的一部分重量; 以及沿垂直方向延伸的支撑件60。 螺旋弹簧40和下支撑杆50以可调节地板表面的高度位置的方式附接到支撑件60。 版权所有(C)2009,JPO&INPIT
    • 7. 发明申请
    • RADIO WAVE TIMEPIECE
    • 无线电波定时器
    • US20120294126A1
    • 2012-11-22
    • US13470595
    • 2012-05-14
    • Takashi SANOEiji Yamakawa
    • Takashi SANOEiji Yamakawa
    • G04C11/02
    • G04R20/10
    • A radio wave timepiece includes: a display unit, a display drive unit, a receiver unit and a control unit. The display unit displays a current time in a digital manner. The display drive unit drives the display unit by a drive signal of a predetermined drive waveform frequency. The receiver unit is capable of receiving radio waves of a plurality of different frequencies including time information. The control unit sets the drive waveform frequency during the reception of a radio wave by the receiver unit so that harmonic frequencies with respect to the drive waveform frequencies can be different from a receiving frequency of the radio wave.
    • 无线电波表包括:显示单元,显示驱动单元,接收器单元和控制单元。 显示单元以数字方式显示当前时间。 显示驱动单元通过预定的驱动波形频率的驱动信号驱动显示单元。 接收机单元能够接收包括时间信息在内的多个不同频率的无线电波。 控制单元在由接收器单元接收无线电波期间设置驱动波形频率,使得相对于驱动波形频率的谐波频率可以不同于无线电波的接收频率。
    • 9. 发明申请
    • VIDEO ENCODING METHOD, VIDEO ENCODING APPARATUS, VIDEO ENCODING PROGRAM AND STORAGE MEDIUM OF THE SAME
    • 视频编码方法,视频编码设备,视频编码程序及其存储介质
    • US20110096840A1
    • 2011-04-28
    • US12936626
    • 2008-04-08
    • Takashi SanoHiroe IwasakiJiro Naganuma
    • Takashi SanoHiroe IwasakiJiro Naganuma
    • H04N7/26
    • H04N19/16H04N19/112H04N19/139H04N19/176
    • A motion detection portion of a video encoding apparatus conducts motion detection on each of frame macroblocks and field macroblocks to calculate motion vectors and respective detection cost. A motion vector evaluation value calculation portion calculates an evaluation value of the size of motion vectors. A motion vector threshold determination portion compares the evaluation value of the size of motion vectors to a predetermined threshold to determine whether the target area is a moving area or a still area. If the target area is a moving area, it is determined whether frame or field macroblock mode is to be used by comparing the detection costs. If the target area is a still area, it is determined whether frame or field macroblock mode is to be used in accordance with the size of the sum of absolute values of differences between neighboring pixels in a vertical direction regarding the frame macroblock and field macroblock.
    • 视频编码装置的运动检测部分对帧宏块和场宏块中的每一个进行运动检测,以计算运动矢量和相应的检测成本。 运动矢量评估值计算部分计算运动矢量大小的评估值。 运动矢量阈值确定部分将运动矢量大小的评估值与预定阈值进行比较,以确定目标区域是移动区域还是静止区域。 如果目标区域是移动区域,则通过比较检测成本确定是使用帧还是场宏块模式。 如果目标区域是静止区域,则根据关于帧宏块和场宏块的垂直方向上的相邻像素之间的差异的绝对值之和的大小,确定是使用帧还是场宏块模式。
    • 10. 发明授权
    • Valve-integrated transponder
    • 阀门集成转发器
    • US07804398B2
    • 2010-09-28
    • US12133699
    • 2008-06-05
    • Makoto ShigiharaTakashi SanoMichiya Katou
    • Makoto ShigiharaTakashi SanoMichiya Katou
    • B60C23/00
    • B60C23/0408B60C23/0452B60C23/0494
    • A valve-integrated transponder includes an air valve and a casing that are integrated with each other, and is disposed within a tire. The casing houses a substrate having a detecting element mounted thereon, an inverse F antenna element, and a supporting member. The antenna element has a substantially line symmetrical shape where a pair of radiation conductors extend away from each other. A longitudinal direction of the substrate is substantially perpendicular to an axial direction of the air valve, and a lateral direction of the substrate is inclined relative to a well of a wheel rim. The two radiation conductors of the antenna element disposed on the substrate are inclined at a predetermined angle with respect to the substrate, so as to be disposed substantially in parallel to the well that extends at the inner side of the transponder as viewed in the radial direction of the tire.
    • 阀集成式应答器包括彼此一体化的空气阀和壳体,并且设置在轮胎内。 壳体容纳具有安装在其上的检测元件的基板,反F天线元件和支撑构件。 天线元件具有大致线对称的形状,其中一对辐射导体彼此远离地延伸。 基板的纵向大致垂直于空气阀的轴向,并且基板的横向方向相对于轮缘的孔倾斜。 设置在基板上的天线元件的两个辐射导体相对于基板以预定的角度倾斜,以便在沿径向方向观察时基本平行于在应答器的内侧延伸的阱 的轮胎。