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    • 21. 发明申请
    • EVAPORATIVE HUMIDIFIER
    • 蒸发器
    • US20090224414A1
    • 2009-09-10
    • US12396070
    • 2009-03-02
    • Akira YOKOYAMAKoji SUZUKIKosei KAWASAKI
    • Akira YOKOYAMAKoji SUZUKIKosei KAWASAKI
    • B01F3/04
    • F24F6/04F24F3/14
    • In the evaporative humidifier of the present invention, a desired humidity is obtained by supplying water only to a humidifying module required for humidification. Air simply passes through a humidifying module to which water is not supplied. Accordingly, air obtained by mixing humidified air passing through the humidifying module which is wet with water being supplied thereto (wet zone) and non-humidified air passing through the humidifying module to which water is not supplied (dry zone) is blown out from an outlet of the evaporative humidifier. The mixture amount (mixture ratio) is controlled by the opening and closing of the valve, so that a desired humidity is obtained. Therefore, with the evaporative humidifier of the present invention, humidity control can be accurately performed without unnecessarily operating the humidifying device and without wasting energy.
    • 在本发明的蒸发加湿器中,通过仅向加湿所需的加湿模块供水,获得所需的湿度。 空气简单地通过不供应水的加湿模块。 因此,通过将通过加湿装置的湿润空气的加湿空气(湿润区域)与通过未供给水的加湿组件(干燥区域)的非加湿空气混合而得到的空气从 蒸发加湿器出口。 混合物量(混合比)通过阀的打开和关闭来控制,从而获得所需的湿度。 因此,利用本发明的蒸发加湿器,可以在不必要地加湿加湿装置的情况下,并且不浪费能量的情况下,可以精确地进行湿度控制。
    • 27. 发明申请
    • DYNAMIC DC OFFSET CANCELING APPARATUS AND DYNAMIC DC OFFSET CANCELING METHOD
    • 动态直流偏移消除装置和动态直流偏移消除方法
    • US20080298506A1
    • 2008-12-04
    • US12127353
    • 2008-05-27
    • Nobuhiro TAKAGIYukiteru MURAOTomohiro YUIYasutaka URAMOTOAtsushi TAGUCHIKoji SUZUKIYoshinao KAWAI
    • Nobuhiro TAKAGIYukiteru MURAOTomohiro YUIYasutaka URAMOTOAtsushi TAGUCHIKoji SUZUKIYoshinao KAWAI
    • H04L25/06
    • H04L25/061
    • The dynamic DC offset canceling apparatus includes: section 104 that detects dynamic DC offset in longest overlapping part sequences from the differences between the sampling values of a first longest overlapping part sequence and the sampling values of a second longest overlapping part sequence, the first longest overlapping part sequence and the second longest overlapping part sequence being overlapping part sequences in a training sequence of the received signal; section 105 that detects dynamic DC offset outside the longest overlapping part sequences from the difference between an average value of sampling values of a received signal which exists in a burst before the first longest overlapping part sequence, and an average value of sampling values of a received signal which exists in a burst after the second longest overlapping part sequence; and section 106 that adaptively subtracts a DC offset value from the received signal based on these results.
    • 动态DC偏移消除装置包括:根据第一最长重叠部分序列的采样值和第二最长重叠部分序列的采样值之间的差异检测最长重叠部分序列中的动态DC偏移的部分104,第一最长重叠部分序列的采样值 部分序列和第二最长重叠部分序列是接收信号的训练序列中的重叠部分序列; 从最长重叠部分序列之间的脉冲串中存在的接收信号的采样值的平均值与接收到的第一最长重叠序列之间的采样值的平均值之间的差异检测最长重叠部分序列之外的动态DC偏移的部分105 在第二最长重叠部分序列之后的突发中存在的信号; 以及基于这些结果自适应地从接收信号中减去DC偏移值的部分106。
    • 28. 发明申请
    • Optical element and optical equipment
    • 光学元件和光学设备
    • US20080258043A1
    • 2008-10-23
    • US11787853
    • 2007-04-17
    • Koji SuzukiKen Kawamata
    • Koji SuzukiKen Kawamata
    • H01L27/00
    • H01L31/02165G02B5/282H01L27/14621H01L27/14685
    • The optical element includes a substrate and optical thin film formed in multiple layers on the surface of the pertinent substrate, wherein the optical thin film is provided with low refractive index layers composed of material with a lower refractive index than that of the substrate, and high refractive index layers of which at least 1 layer is composed of material whose primary component is oxide and which have a refractive index higher than that of the low refractive index layers, and wherein at least 1 layer of the optical thin film composed of low refractive index layers and high refractive index layers contains at least one of metal ions selected from among Cu, Fe, Au, Ag, Cr, Mn, Co, and Ni.
    • 光学元件包括在相关基板的表面上形成为多层的基板和光学薄膜,其中光学薄膜设置有由折射率低于基板的折射率的材料构成的低折射率层,并且高 折射率层的至少1层由主要成分为氧化物的材料构成,折射率高于低折射率层的折射率,并且其中至少1层由低折射率构成的光学薄膜 层和高折射率层含有选自Cu,Fe,Au,Ag,Cr,Mn,Co和Ni中的至少一种金属离子。