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    • 2. 发明授权
    • Reflecting mirror
    • 反射镜
    • US06480335B1
    • 2002-11-12
    • US09484182
    • 2000-01-18
    • Junichi NakahoNoriyuki TakaiHiroshi Yoshida
    • Junichi NakahoNoriyuki TakaiHiroshi Yoshida
    • G02B528
    • B60R1/08G02B5/0808G02B5/0866
    • A reflecting mirror is obtained which prevents double images from being formed and provides sufficient the hydrophilic property. The hydrophilic coating is approximately 15 nm in thickness and the photocatalytic coating between the hydrophilic coating and the glass substrate is approximately 240 nm in thickness. This setting of dimensions reduces the surface optical reflectance of light having a wavelength ranging from approximately 550 nm to 580 nm. This also reduces the deterioration of the photocatalytic action caused by the diffusion of sodium ions contained in the glass substrate into the photocatalytic coating. Furthermore, the aforementioned setting of dimensions turns the color of surface reflected light to whitish. Even when images formed by the surface reflected light or images formed by reflected light from the reflecting film interfered by surface reflected light are viewed, the after-image thereof hardly remains.
    • 获得反射镜,其防止形成双重图像并提供足够的亲水性。 亲水涂层的厚度约为15nm,亲水涂层和玻璃基板之间的光催化涂层的厚度约为240nm。 尺寸的这种设置减小了波长范围从大约550nm到580nm的光的表面光学反射率。 这也降低了由玻璃基板中所含的钠离子扩散到光催化涂层中引起的光催化作用的劣化。 此外,上述尺寸的设置使得表面反射光的颜色变白。 即使当由表面反射光形成的图像或由反射膜反射的反射光形成的图像被表面反射光干扰时,也不会留下其后像。
    • 9. 发明授权
    • Transmission system, transmission device, and clock synchronization method
    • 传输系统,传输设备和时钟同步方法
    • US08867681B2
    • 2014-10-21
    • US13248215
    • 2011-09-29
    • Hiroshi Yoshida
    • Hiroshi Yoshida
    • H04L7/00G06F1/12H04J3/06
    • G06F1/12H04J3/0685
    • A transmission system which couples a plurality of transmission devices to a control device includes a first transmission device which is one of the plurality of transmission devices; a first calculation circuit which calculates a first difference value indicating a frequency difference value between a common clock supplied from the control device and a first clock as a clock used in the first transmission device; and a transmitter which reports the first difference value to a second transmission device other than the first transmission device, wherein the second transmission device comprises: a second calculation circuit which calculates a second difference value indicating a frequency difference value between the common clock and a second clock used in the second transmission device, and a frequency controller which controls an oscillator generating the second clock so that the second difference value approaches the first difference value reported from the first transmission device.
    • 将多个传输设备耦合到控制设备的传输系统包括作为多个传输设备之一的第一传输设备; 第一计算电路,其计算指示从所述控制装置提供的公共时钟与所述第一时钟之间的频率差值作为所述第一发送装置中使用的时钟的第一差值; 以及向所述第一发送装置以外的第二发送装置报告所述第一差分值的发送机,其中,所述第二发送装置包括:第二计算电路,其计算表示所述公共时钟与第二发送装置之间的频率差值的第二差分值 在第二发送装置中使用的时钟,以及频率控制器,其控制产生第二时钟的振荡器,使得第二差值接近从第一发送装置报告的第一差值。