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    • 88. 发明授权
    • Analytical apparatus and detection method employed in analytical apparatus
    • 分析仪器中使用的分析仪器和检测方法
    • US08842280B2
    • 2014-09-23
    • US13519228
    • 2010-12-22
    • Shuhei YamamotoMinoru SanoAkiyuki NemotoMichiru Fujioka
    • Shuhei YamamotoMinoru SanoAkiyuki NemotoMichiru Fujioka
    • G01N21/00
    • G01N35/02B65B7/2821G01N35/04G01N2035/0405G01N2035/0491
    • Disclosed is an analytical apparatus wherein a container is automatically transferred and the container is automatically closed with a cap member, said analytical apparatus being provided with a suitable mechanism that reliably closes the container. The analytical apparatus is provided with an optical sensor composed of at least one pair of a light source (4) and a light detector (5), which face each other with the container disposing position therebetween, and which are disposed such that the container disposing position is irradiated with light, and the analytical apparatus detects whether the container (1) is disposed or not or the absence/presence of the cap of the container, corresponding to a transmitted light quantity detected by means of the optical sensor. Thus, cap closing is prevented from being performed if there is no container, and the container is prevented from being transferred without the cap.
    • 公开了一种分析装置,其中容器被自动转移并且容器被盖构件自动关闭,所述分析装置设置有可靠地关闭容器的适当机构。 分析装置设置有由至少一对光源(4)和光检测器(5)组成的光学传感器,所述至少一对光源(4)和光检测器(5)在其间具有容器设置位置彼此面对,并且被布置成使得容器设置 位置被照射,并且分析装置检测容器(1)是否被放置,或者与通过光学传感器检测到的透射光量相对应的容器的盖子的存在/不存在。 因此,如果没有容器,则防止盖子关闭,并且防止容器在没有盖子的情况下传送。
    • 90. 发明授权
    • Clock data restoration device
    • 时钟数据恢复装置
    • US08553828B2
    • 2013-10-08
    • US13386552
    • 2010-07-14
    • Seiichi OzawaShuhei Yamamoto
    • Seiichi OzawaShuhei Yamamoto
    • H04L25/00
    • H04L7/033H03L7/0891
    • A clock data restoration device (1A) includes a sampler portion (11), a phase comparison portion (12), a drive portion (13), a charge pump (14), a capacitive element (15), a potential adjustment portion (16) and a voltage control oscillator (17). The phase comparison portion (12) outputs a signal (UP) that becomes a significant value when the phase of a clock (CKX) delays with respect to an input digital signal, and outputs a signal (DN) that becomes a significant value when the phase advances. The drive portion (13) increases or decreases a value δ to or from a variable Δ when the signals (UP) and (DN) become a significant value, and increases or decrease a value N to or from the variable Δ when the value of the variable Δ is equal to or more than +N or when the value of the variable Δ is equal to or less than −N, and signals (UPFRQ) and (DNFRQ) are output to the charge pump (14). The potential adjustment portion (16) increases or decreases a potential at a first end of a capacitive element (15) based on the signals (UP) and (DN).
    • 时钟数据恢复装置(1A)包括取样器部分(11),相位比较部分(12),驱动部分(13),电荷泵(14),电容元件(15),电位调节部分 16)和电压控制振荡器(17)。 相位比较部分(12)输出当时钟相位(CKX)相对于输入数字信号延迟时变为有效值的信号(UP),并输出当该输入数字信号成为有效值时的信号(DN),当信号 阶段进展。 当信号(UP)和(DN)变为有效值时,驱动部分(13)增加或减小与变量Delta的值或从变量Delta增加值,并且当变量Delta的值 变量Delta等于或大于+ N,或当变量Delta的值等于或小于-N时,信号(UPFRQ)和(DNFRQ)被输出到电荷泵(14)。 电位调整部(16)基于信号(UP)和(DN)增大或减小电容元件(15)的第一端的电位。