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    • 1. 发明申请
    • CONTROL APPARATUS AND CONTROL METHOD FOR MULTI-ROOM AIR CONDITIONER
    • 多室空调器的控制装置和控制方法
    • US20090138127A1
    • 2009-05-28
    • US12294580
    • 2007-03-28
    • Hideki SangenyaTakeshi Kitagawa
    • Hideki SangenyaTakeshi Kitagawa
    • G05B15/00F25B39/02F25D17/06
    • F24F13/24F24F1/12F24F1/40F24F11/30F24F11/62F24F11/65
    • A heat source side controller of an air conditioner has an operating mode allocator and an operating mode setter. The air conditioner has a heat source unit and a plurality of room units. The heat source unit can be switched among a plurality of operating modes having different noise-reduction levels. The operating mode allocator allocates one operating mode to each of the operating room units. The operating mode setter sets the heat source unit to one operating mode from among the plurality of operating modes on the basis of the operating modes allocated by the operating mode allocator to each of the operating room units. In cases in which a specific operating mode is allocated to all of the operating room units, the operating mode setter sets the heat source unit to the specific operating mode.
    • 空调的热源侧控制器具有操作模式分配器和操作模式设定器。 空调器具有热源单元和多个房间单元。 可以在具有不同降噪水平的多个操作模式之间切换热源单元。 操作模式分配器为每个操作室单元分配一个操作模式。 操作模式设定器基于由操作模式分配器分配给每个操作室单元的操作模式,将热源单元从多个操作模式中设置为一个操作模式。 在将特定操作模式分配给所有操作室单元的情况下,操作模式设定器将热源单元设置为特定操作模式。
    • 2. 发明授权
    • Control apparatus and control method for multi-room air conditioner
    • 多室空调的控制装置和控制方法
    • US07957840B2
    • 2011-06-07
    • US12294580
    • 2007-03-28
    • Hideki SangenyaTakeshi Kitagawa
    • Hideki SangenyaTakeshi Kitagawa
    • G06F19/00
    • F24F13/24F24F1/12F24F1/40F24F11/30F24F11/62F24F11/65
    • A heat source side controller of an air conditioner has an operating mode allocator and an operating mode setter. The air conditioner has a heat source unit and a plurality of room units. The heat source unit can be switched among a plurality of operating modes having different noise-reduction levels. The operating mode allocator allocates one operating mode to each of the operating room units. The operating mode setter sets the heat source unit to one operating mode from among the plurality of operating modes on the basis of the operating modes allocated by the operating mode allocator to each of the operating room units. In cases in which a specific operating mode is allocated to all of the operating room units, the operating mode setter sets the heat source unit to the specific operating mode.
    • 空调的热源侧控制器具有操作模式分配器和操作模式设定器。 空调器具有热源单元和多个房间单元。 可以在具有不同降噪水平的多个操作模式之间切换热源单元。 操作模式分配器为每个操作室单元分配一个操作模式。 操作模式设定器基于由操作模式分配器分配给每个操作室单元的操作模式,将热源单元从多个操作模式中设置为一个操作模式。 在将特定操作模式分配给所有操作室单元的情况下,操作模式设定器将热源单元设置为特定操作模式。
    • 4. 发明授权
    • Optical waveguide circuit
    • 光波导电路
    • US06925228B2
    • 2005-08-02
    • US10320189
    • 2002-12-16
    • Shin KameiMotohaya IshiiAkihiro TakagiTakeshi Kitagawa
    • Shin KameiMotohaya IshiiAkihiro TakagiTakeshi Kitagawa
    • G02B6/12G02B6/122G02B6/125G02B6/34G02B6/26
    • G02B6/12019G02B6/1228G02B6/125G02B2006/121
    • A practical optical waveguide circuit is provided which includes many intersections but is low loss. The width of a waveguide core is w1 at input and output terminal sections and w2 at an intersecting section, where w2>w1. The core width of the intersecting section is made different from that of the input and output terminal sections, or the core height of the intersecting section is made different from that of the input and output terminal sections. The core width is smoothly varied between the intersecting section and the input and output terminal sections by a tapered section. When the number of the waveguides intersecting with the intersecting section is 100, the intersection loss is 5.8 dB for the conventional device where w2=w1=5 μm, but is 1.8 dB when w2=12 μm, thereby being able to reduce the intersection loss sharply.
    • 提供了一种实用的光波导电路,其包括许多交叉点,但是具有低损耗。 在输入和输出端子部分处的波导芯的宽度为w 1,在交叉部分处为w 2 2,其中w 2 2 < SUB> 1 。 使交叉部分的芯部宽度与输入和输出端子部分的芯宽不同,或者使交叉部分的芯高度与输入和输出端子部分的芯高度不同。 芯部宽度通过锥形部分在交叉部分和输入和输出端子部分之间平滑地变化。 当与交叉部分相交的波导的数量为100时,对于其中w 2 2 = w 1 = 5mum的常规装置,交叉损耗为5.8dB,但是 当w 2 2 = 12时为1.8dB,从而能够急剧减少交叉损失。
    • 10. 发明授权
    • Substrate for assaying β-glucan and/or endotoxin and assay method
    • 用于测定β-葡聚糖和/或内毒素的底物和测定方法
    • US08546072B2
    • 2013-10-01
    • US12918724
    • 2009-02-20
    • Takeshi KitagawaNaoyuki YamamotoMutsuhiro Date
    • Takeshi KitagawaNaoyuki YamamotoMutsuhiro Date
    • A61K38/00A61K38/04C07K2/00C07K4/00C07K5/00C07K7/00C07K14/00C07K16/00C07K17/00C12Q1/00G01N33/53
    • C07K5/1013C07K5/0606C07K5/06095C07K5/0808C07K5/081C07K5/101G01N33/5308G01N2400/24
    • An object of the present invention is to provide a peptide derivative for determining β-glucan or endotoxin which allows high sensitivity measurement, and a method for determining β-glucan and/or endotoxin using the same. The present invention relates to (1) a peptide derivative represented by the following general formula [1]: X-A1-Gly-Arg-A2-E-D  [1], (2) a reagent for determining β-glucan and/or endotoxin comprising the above-described peptide derivative, (3) a method for determining β-glucan and/or endotoxin, characterized in that a sample containing β-glucan and/or endotoxin, an amebocyte lysate of a horseshoe crab and the above-described peptide derivative are reacted each other, then the resulting released compound represented by the following general formula [2]: H-A2-E-D  [2] is separated from unreacted substance and quantified, and the determination is made based on this value, and (4) a reagent kit for determining β-glucan and/or endotoxin, comprising an amebocyte lysate of a horseshoe crab and the above-described peptide derivative as constituents thereof.
    • 本发明的目的是提供一种用于测定允许高灵敏度测定的β-葡聚糖或内毒素的肽衍生物,以及使用该衍生物测定β-葡聚糖和/或内毒素的方法。 本发明涉及(1)由以下通式[1]表示的肽衍生物:X-A1-Gly-Arg-A2-ED [1],(2)用于测定β-葡聚糖和/或内毒素的试剂 其包含上述肽衍生物,(3)β-葡聚糖和/或内毒素的测定方法,其特征在于,含有β-葡聚糖和/或内毒素的样品,马蹄蟹的血小板裂解物和上述肽 衍生物彼此反应,然后将由以下通式[2]表示的所得释放化合物:H-A2-ED [2]与未反应物质分离并定量,并基于该值进行测定,和(4 )用于测定β-葡聚糖和/或内毒素的试剂盒,其包含鲎的微血管裂解物和上述肽衍生物作为其组成。