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    • 4. 发明专利
    • Microorganism detection device
    • 微生物检测装置
    • JP2011045300A
    • 2011-03-10
    • JP2009196936
    • 2009-08-27
    • Sharp Corpシャープ株式会社
    • OTONASHI MIEKOBAN KAZUOYAMANAKA MIKIHIROHIJIGURO EMI
    • C12M1/34G01N15/00
    • PROBLEM TO BE SOLVED: To provide a microorganism detection device enabling the grasp of a detection area.
      SOLUTION: The microorganism detection device 1 exhibits the detection area by emitting visible light prior to its detecting operation. The microorganism detection device 1 has a UV-shielding cover on an emission face provided with a light-emitting element, and ultraviolet rays are radiated to the detection area exhibited by the visible light by pressing the detection device against the detection area in a manner to cover the detection area and a UV-emitting element with the UV-shielding cover. The microorganism detection device 1 detects the microorganism in the detection area by detecting fluorescent light and displays the detection result.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够掌握检测区域的微生物检测装置。 解决方案:微生物检测装置1在其检测操作之前通过发射可见光而显示检测区域。 微生物检测装置1在具有发光元件的发射面上具有紫外线屏蔽罩,并且通过将检测装置按照检测区域的方式按照可见光的方式将检测装置照射到可见光所呈现的检测区域 覆盖检测区域和带UV屏蔽罩的紫外线发射元件。 微生物检测装置1通过检测荧光来检测检测区域中的微生物,并显示检测结果。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Gas component detecting device
    • 气体组分检测装置
    • JP2010249556A
    • 2010-11-04
    • JP2009096694
    • 2009-04-13
    • Sharp Corpシャープ株式会社
    • KAWADA TSUNEHISAYAMANAKA MIKIHIROHARA KEITA
    • G01N30/60G01N30/26G01N30/88G01N33/497G01N37/00
    • G01N30/6095A61B5/097G01N30/34G01N2030/025
    • PROBLEM TO BE SOLVED: To provide a compact gas component detection device having a simple structure for accurately measuring the concentration of a gas component as a measurement object, even when sample gas contains a plurality of gas components. SOLUTION: The gas component detection device includes: a gas introduction section for introducing the sample gas; a gas separation section connected to the gas inlet section; a flow path switching section connected to the gas separating section and having a plurality of connection flow paths for switching a flow path connected to the gas separating section to any one of the plurality of connection flow paths; and a gas detecting section, provided in at least one of the plurality of connection flow paths. The gas separation section is preferably formed of a chromatography column having therein a flow path having a width and a depth of micro order. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:即使在样本气体包含多个气体成分的情况下,也能提供一种具有简单结构的小型气体成分检测装置,用于精确地测量作为测量对象的气体成分的浓度。 气体成分检测装置包括:用于引入样品气体的气体导入部; 连接到气体入口部分的气体分离部分; 流路切换部,其连接到所述气体分离部,并且具有多个连接流路,用于将连接到所述气体分离部的流路切换到所述多个连接流路中的任一个; 以及气体检测部,设置在所述多个连接流路中的至少一个。 气体分离部优选由其中具有宽度和微细深度的流路的色谱柱形成。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Cooking apparatus
    • 烹饪设备
    • JP2010025422A
    • 2010-02-04
    • JP2008186734
    • 2008-07-18
    • Sharp Corpシャープ株式会社
    • YAMANAKA MIKIHIRO
    • F24C1/00A47J27/16A61B5/08
    • PROBLEM TO BE SOLVED: To provide a cooking apparatus determining healthy cooking conditions based on information on specific gas components in exhalation.
      SOLUTION: A control part 12 of the cooking apparatus executes a program including: a step (S104) of reading sensory test determination of a user based on user taste database, when request for personal cooking is input and name of the user is input (S100, Yes in S102); a step (S116) of determining food restriction based on exhalation acetone concentration data DEN, when the data DEN is received from an exhalation measuring device (Yes in S108); and a step (S118) of determining cooking temperature by superheated steam based on the sensory test determination and food restriction determination.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种基于呼气中特定气体组分的信息来确定健康烹饪条件的烹饪设备。 烹饪装置的控制部件12执行程序,该程序包括:步骤(S104),当输入个人烹饪请求时,基于用户品味数据库读取用户的感觉测试确定,并且用户的名称为 输入(S100,S102中的是); 当从呼气测量装置接收到数据DEN时,基于呼气丙酮浓度数据DEN确定食物限制的步骤(S116)(S108中为是)。 以及基于感官测试确定和食物限制确定来确定过热蒸汽的烹调温度的步骤(S118)。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Gas sensor device
    • 气体传感器装置
    • JP2009257772A
    • 2009-11-05
    • JP2008103728
    • 2008-04-11
    • Sharp Corpシャープ株式会社
    • MATSUI NORIEYAMANAKA MIKIHIROHARA KEITATAKAO KATSUTOSHIKAWADA TSUNEHISAMURASHI YASUAKINISHIURA SHUJIOTONASHI MIEKOKUDO ATSUSHIMIKATA JUNKO
    • G01N27/12A61B5/08
    • PROBLEM TO BE SOLVED: To provide a gas sensor device capable of detecting a specific gas in exhalation easily by an individual.
      SOLUTION: This exhalation gas sensor device 10 includes an exhalation collection box 12; an outside air introduction part 24 for introducing a sample gas into the exhalation collection box 12; CNT (Carbon Nano Tube) gas sensors 40a, 40b, 40c provided in the exhalation collection box 12, and having each electric resistance changing by adsorbing a specific chemical substance; a detection part for detecting a change of the electric resistance of the CNT gas sensor 40a or the like; and exhaust parts 28, 29 for discharging gas inside the exhalation collection box 12 to the outside. Each of the CNT gas sensors 40a, 40b, 40c includes a CNT structure whose surface is modified by a material selected corresponding to the specific chemical substance which is a measuring object. A shutter 41 for separating the inside of the exhalation collection box 12 into two spaces may be provided in addition.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够容易地由个体检测呼气中的特定气体的气体传感器装置。 呼气气体传感器装置10包括呼气收集箱12; 外部空气导入部24,用于将样品气体导入呼气收集箱12; 设置在呼气收集箱12中的CNT(碳纳米管)气体传感器40a,40b,40c,并且通过吸附特定化学物质而使每个电阻变化; 用于检测CNT气体传感器40a等的电阻变化的检测部件; 以及用于将呼气收集箱12内的气体排出到外部的排气部28,29。 CNT气体传感器40a,40b,40c中的每一个包括CNT结构,其表面被对应于作为测量对象的特定化学物质选择的材料修改。 另外,还可以设置用于将呼气收集箱12的内部分成两个空间的活门41。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Antibacterial water making apparatus
    • 防水制水装置
    • JP2008194562A
    • 2008-08-28
    • JP2007029449
    • 2007-02-08
    • Sharp Corpシャープ株式会社
    • MATSUI NORIEYAMANAKA MIKIHIRO
    • C02F1/46C02F1/30C02F1/50
    • PROBLEM TO BE SOLVED: To provide a novel antibacterial water making apparatus capable of developing higher antibacterial action by lower power consumption by utilizing a silver ion antibacterial effect.
      SOLUTION: The antibacterial water making apparatus is equipped with a microbubble producing part for producing microbubbles to make microbubble-containing water, a silver ion forming part for forming silver ions by electrolysis and an irradiation part for irradiating microbubble-containing silver ion water containing the microbubble-containing water and silver ions with light, and preferably equipped with at least one joint for guiding the microbubble-containing water to the silver ion forming part.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种通过利用银离子抗菌作用,能够通过降低功耗而产生更高抗菌作用的新型抗菌制水装置。 解决方案:抗菌制水装置配备有用于产生微泡以产生含微泡水的微泡生成部件,通过电解形成银离子的银离子形成部分和用于照射含微泡的银离子水的照射部分 含有含微泡的水和银离子,并且优选配备有至少一个用于将含微泡的水引导到银离子形成部分的接头。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Porous precursor manufacturing apparatus
    • 多孔前置器制造设备
    • JP2007296750A
    • 2007-11-15
    • JP2006126627
    • 2006-04-28
    • Sharp Corpシャープ株式会社
    • YAMANAKA MIKIHIROKAWADA TSUNEHISAKUDO ATSUSHIMATSUI NORIE
    • B28B1/00
    • PROBLEM TO BE SOLVED: To provide a porous precursor manufacturing apparatus which manufactures in a self-molding way, a porous precursor which is easily made into a porous structural body with required characteristics by drying or drying and calcining without using an extrusion molding method.
      SOLUTION: The porous precursor manufacturing apparatus is equipped with: a raw material holder 1 for storing a porous precursor raw material containing at least water; a refrigerant tank 2 having an inserting opening capable of taking in and out the raw material holder 1 on its upper part and provided with a refrigerant inside; a liquid face position sensor 5 for continuously measuring the position of the liquid face of the refrigerant changing vertically in the refrigerant tank 2; and a raw material holder position controlling means for forwarding the raw material holder into the refrigerant while a relative vertically moving speed of the raw material holder is controlled in relation to the liquid face position of the refrigerant measured by the liquid face position sensor.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:为了提供以自成型方式制造的多孔前体制造装置,通过干燥或干燥并煅烧而不使用挤出成型容易地制成具有所需特性的多孔结构体的多孔前体 方法。 解决方案:多孔前体制造装置配备有:原料保持器1,用于储存至少含有水的多孔前体原料; 一个制冷剂罐2,具有一个插入口,该插入口能够在其上部引入和排出原料保持器1,并在其内设有制冷剂; 液面位置传感器5,用于连续地测量在制冷剂罐2中垂直变化的制冷剂的液面的位置; 以及原料保持器位置控制装置,用于将原料保持器转移到制冷剂中,同时相对于由液面位置传感器测量的制冷剂的液面位置控制原料保持器的相对垂直移动速度。 版权所有(C)2008,JPO&INPIT