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    • 1. 发明专利
    • Condensation detecting device, condensation promoting device, and condensation detecting method
    • 冷凝检测装置,冷凝促进装置和冷凝检测方法
    • JP2012098082A
    • 2012-05-24
    • JP2010244293
    • 2010-10-29
    • Espec CorpNokodai Tlo Kkエスペック株式会社農工大ティー・エル・オー株式会社
    • UMEDA TSUNEHIROIWAMI KENTARONAGASAKI HIDEAKITANAHASHI NORISATOYAMAUCHI SATORUAKAMATSU KENSUKENISHIGUCHI TOSHIYUKIKUSAKA MICHIYA
    • G01N21/27G01N25/68
    • PROBLEM TO BE SOLVED: To provide a condensation detecting device which can easily detect the condensation of liquefied molecules of size of a molecular degree, a condensation promoting device, and a condensation detecting method.SOLUTION: A condensation detecting device comprises a light source, a condensation promoting portion 12, a light-receiving portion, and a liquid condensation analysis portion. The condensation promoting portion 12 has: a substrate 41; a periodic structure 42 which is formed on an upper surface of the substrate 41 and whose surface is at least partially covered by predetermined metal; and a plurality of metallic particulates 43 which is configured by predetermined metal, has a smaller diameter than a period of the periodic structure 42, and adheres to the surface of the periodic structure 42. The condensation promoting portion 12 plasmon-absorbs a part of light emitted from the light source by the surface plasmon resonance of the predetermined metallic periodic structure and the surface plasmon resonance of the metallic particulates. The light-receiving portion receives reflection light due to the condensation promoting portion. The liquid condensation analysis portion analyzes the condensation of liquid on an upper surface of the condensation promoting portion 12 on the basis of the reflection light received by the light-receiving portion.
    • 要解决的问题:提供一种可以容易地检测分子量大小的液化分子的冷凝的冷凝检测装置,缩合促进装置和冷凝检测方法。 解决方案:冷凝检测装置包括光源,冷凝促进部分12,光接收部分和液体冷凝分析部分。 冷凝促进部12具有:基板41; 周期性结构42,其形成在基板41的上表面上,其表面至少部分被预定金属覆盖; 并且由预定金属构成的多个金属微粒43具有比周期性结构42的周期小的直径,并且附着到周期性结构42的表面。缩合促进部分12等离子体吸收一部分光 通过预定金属周期结构的表面等离子体共振和金属颗粒的表面等离子体共振从光源发射。 光接收部分由于缩合促进部分而接收反射光。 液体冷凝分析部分基于受光部分所接收的反射光来分析液体在冷凝促进部分12的上表面上的冷凝。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Vapor permeation measuring device and vapor permeation measuring method
    • 蒸气渗透测量装置和蒸气渗透测量方法
    • JP2012098083A
    • 2012-05-24
    • JP2010244294
    • 2010-10-29
    • Espec CorpNokodai Tlo Kkエスペック株式会社農工大ティー・エル・オー株式会社
    • UMEDA TSUNEHIROTANAHASHI NORISATOIWAMI KENTAROYAMAUCHI SATORUAKAMATSU KENSUKENISHIGUCHI TOSHIYUKIKUSAKA MICHIYANAGASAKI HIDEAKI
    • G01N21/27G01N15/08
    • PROBLEM TO BE SOLVED: To provide a vapor permeation measuring device and a vapor permeation measuring method capable of simply measuring vapor permeating a sealing member with high sensitivity, while a device is sealed.SOLUTION: A vapor permeation measuring device 10 comprises a light source 21, a condensation promoting portion 12, a light-receiving portion 22, a liquid condensation analysis portion 32, and a sealing member 13. The condensation promoting portion 12 plasmon-absorbs a part of light emitted from the light source 21. The light-receiving portion 22 receives at least either one of reflection light and transmission light by the condensation promoting portion 12. The liquid condensation analysis portion 32 analyzes the condensation of liquid on an upper surface of the condensation promoting portion 12 on the basis of at least either one of the reflection light and the transmission light received by the light-receiving portion 22. The sealing member 13 seals a part or all of a solar cell device 14 and the condensation promoting portion 12.
    • 要解决的问题:提供一种透明度测量装置和蒸气渗透测量方法,其能够在密封装置的同时简单地测量以高灵敏度渗透密封构件的蒸气。 < P>解决方案:蒸汽透过测量装置10包括光源21,冷凝促进部分12,光接收部分22,液体冷凝分析部分32和密封部件13.缩合促进部分12等离子体 - 吸收从光源21发射的光的一部分。光接收部22通过冷凝促进部12接收反射光和透射光中的至少一个。液体冷凝分析部32分析液体在上部 基于由光接收部22接收的反射光和透射光中的至少一个,缩合促进部12的表面。密封部件13密封太阳能电池装置14的一部分或全部, 促销部分12.版权所有(C)2012,JPO&INPIT