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    • 34. 发明授权
    • Multidirectional input device and electronic apparatus comprising it
    • 多向输入装置和包括它的电子装置
    • US06794982B2
    • 2004-09-21
    • US10089516
    • 2002-07-19
    • Hiroto InoueHiroyasu OkadaTamotsu YamamotoMasaki SawadaKeiji Kaizaki
    • Hiroto InoueHiroyasu OkadaTamotsu YamamotoMasaki SawadaKeiji Kaizaki
    • H01C1010
    • H01H25/041H01C10/26H01H25/008H01H2025/048H01H2221/012H01H2239/078
    • A multidirectional input device includes ring-shaped resistance element layer 18, first conductive layer 22 and second conductive layer 23 shaping in arcs corresponding to resistance element layer 18, and knob 14 having ring-shaped protruded section 14D. Resistance element layer 18 has at least a pair of electrodes and is formed on flexible insulating substrate 16. Protruded section 14D brings resistance element layer 18 into contact with first conductive layer 22 or second conductive layer 23 when the knob is tilted. When a given voltage is applied to the electrodes and the knob is tilted, resistance element layer 18 comes in contact with first conductive layer 22 or second conductive layer 23, so that an output signal of a high resolution concerning a tilt angle can be obtained. The output signal is supplied to a microprocessor and calculated, then an angle or a direction is detected and recognized.
    • 多向输入装置包括环形电阻元件层18,第一导电层22和对应于电阻元件层18的圆弧形成的第二导电层23,以及具有环形突出部分14D的旋钮14。 电阻元件层18具有至少一对电极,并且形成在柔性绝缘基板16上。突出部分14D使电阻元件层18在旋钮倾斜时与第一导电层22或第二导电层23接触。 当向电极施加给定的电压并且旋钮倾斜时,电阻元件层18与第一导电层22或第二导电层23接触,从而可以获得关于倾斜角的高分辨率的输出信号。 将输出信号提供给微处理器并进行计算,然后检测并识别角度或方向。
    • 36. 发明授权
    • Push and rotary operating type electronic component
    • 推,旋式操作型电子元件
    • US06388212B1
    • 2002-05-14
    • US09666055
    • 2000-09-20
    • Yukihiro IshiharaMasaki SawadaTamotsu YamamotoHiroto Inoue
    • Yukihiro IshiharaMasaki SawadaTamotsu YamamotoHiroto Inoue
    • H01H302
    • H01H25/008G05G9/047H01H2019/006H01H2019/146
    • A push and rotation operating type electronic component that allows for rotary manipulation in a tangential direction of a peripheral surface of a cylindrical operating knob projecting from a control surface of an apparatus, and also for pushing manipulation in a direction toward a central axis of rotation of the knob. The electronic component provides for a reduction in overall dimensions of a main portion, thereby reducing a height size of an enclosure of the end-use apparatus, smooth movement to a depressing manipulation, and easy to assemble. It is provided with a rotary encoder comprising a cylindrical rotary body with stepped periphery having a cylindrical knob portion of large diameter at a center, and rotatably retained in a frame supported also rotatably on a substrate and flexible contact bars retained by the substrate and in resilient contacts with a movable contact provided on a peripheral surface of a cylindrical axle besides the knob portion, and a push switch of a self-restoring type disposed on the substrate and activated by a turning movement the frame.
    • 一种推动和旋转操作型电子部件,其允许沿着从设备的控制表面突出的圆柱形操作旋钮的外周表面的切线方向进行旋转操作,并且还用于沿朝向中心轴线旋转方向推动操作 旋钮。 该电子元件可减少主体部分的整体尺寸,从而减小最终用途装置的外壳的高度尺寸,平稳移动至按压操作,并易于组装。 它设有一个旋转编码器,它包括具有阶梯状周边的圆柱形旋转体,其中心具有大直径的圆柱形旋钮部分,并且可旋转地保持在一个支承在框架上的框架,该框架也可旋转地支撑在基板上, 与设置在圆柱形轴的圆周轴的旋钮部分的外周表面上的可动触点和设置在基板上并通过使框架转动而启动的自恢复型按钮开关接触。
    • 37. 发明授权
    • Component including magnets for input operation
    • 组件包括用于输入操作的磁体
    • US08390275B2
    • 2013-03-05
    • US12062992
    • 2008-04-04
    • Hiroto InoueTamotsu Yamamoto
    • Hiroto InoueTamotsu Yamamoto
    • G01B7/30
    • H01H25/04H01H19/20H01H36/0006H01H2003/506H01H2019/146H01H2025/043
    • A left-side ring magnet and a right-side ring magnet are fastened to a roller-shaped operation part, circumferentially displaced from each other by a certain angle. Magnetic variation generated by rotation of the magnets is detected by a magnetism detection element. Additionally, a left-side stationary magnet and a right-side stationary magnet, with the same magnetic pole, are annexed correspondingly to the left-side ring magnet and the right-side ring magnet, respectively, so that the stationary magnets are arranged with the same proximal arrangement relative to the ring magnets, respectively. With such a structure, two attractive and repulsive forces between the left-side ring magnet and the left-side stationary magnet; and between the right-side ring magnet and the right-side stationary magnet are totally exerted on the operation part, thereby providing a sharp, clear click touch during rotation.
    • 左侧的环形磁铁和右侧的环形磁铁被固定在一个辊状的操作部件上,周向地彼此偏移一定的角度。 通过磁性检测元件检测由磁体旋转产生的磁变化。 此外,具有相同磁极的左侧固定磁体和右侧固定磁体分别相应于左侧环形磁体和右侧磁铁分别附着,使得固定磁体与 相对于环形磁体分别具有相同的近端排列。 利用这种结构,在左侧环形磁体和左侧静止磁体之间有两个有吸引力和排斥力; 并且右侧的环形磁体和右侧的固定磁体之间全部地被施加在操作部分上,从而在旋转期间提供清晰的,清晰的点击触摸。
    • 40. 发明授权
    • Communication device and communication method
    • 通信设备和通信方式
    • US07729405B2
    • 2010-06-01
    • US11019239
    • 2004-12-23
    • Hiroto InoueShigemi KurashimaTakuya Uchiyama
    • Hiroto InoueShigemi KurashimaTakuya Uchiyama
    • H04B1/00
    • H04B1/7172H04B1/7183
    • A communication device performs a radio communication in an ultra wideband with the use of the impulse radio system. The communication device includes a receiver. The receiver is equipped with antennas, a correlation circuit, and a CPU. The antennas receive send signals from a transmitter. The correlation circuit detects a synchronization pulse having a longer cycle than a highly redundant data pulse among received signals. The CPU performs a synchronization process based on the synchronization pulse. The CPU establishes a channel based on the synchronization pulse, and selectively changes the antennas according to the received signal. In the case where the receive signal has not been received for a given period of time after the synchronization is established correlation signals is stopped outputting to start a polling signal. The correlation signals are output to obtain correlation of the receive signals.
    • 通信装置利用脉冲无线系统在超宽带中进行无线通信。 通信设备包括接收机。 接收机配备有天线,相关电路和CPU。 天线从发射机接收发送信号。 相关电路检测在接收信号中具有比高冗余数据脉冲更长的周期的同步脉冲。 CPU基于同步脉冲执行同步处理。 CPU基于同步脉冲建立信道,并根据接收到的信号有选择地改变天线。 在建立同步后的给定时间段内接收信号未被接收的情况下,相关信号停止输出以开始轮询信号。 输出相关信号以获得接收信号的相关性。