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    • 4. 发明申请
    • METHOD FOR CONTROLLING DISPLAY OF AIR CONDITIONER
    • 用于控制空调显示器的方法
    • WO2006129942A2
    • 2006-12-07
    • PCT/KR2006/002050
    • 2006-05-29
    • LG ELECTRONICS INC.KIM, Suk ChulKIM, Dong Jin
    • KIM, Suk ChulKIM, Dong Jin
    • F24F11/00
    • F24F11/30
    • A display control method for an air-conditioner is disclosed. A preparation process for operating a display is executed by a power-supply signal. The display control method for the air-conditioner equipped with the display for displaying an image or message includes the step of: executing a preparation process which allows the display to implement a display environment upon receiving a power-supply signal from an external part. The preparation process includes a booting process for loading an Operating System (OS) to operate the display, a loading process for loading data from a memory, and a screen display process for displaying the loading process. Therefore, a user can easily recognize an operation state of the air-conditioner.
    • 公开了一种空调机的显示控制方法。 用于操作显示器的准备处理由电源信号执行。 具有用于显示图像或消息的显示器的空调器的显示控制方法包括以下步骤:执行允许显示器在从外部部分接收到电源信号时实现显示环境的准备处理。 准备过程包括用于加载操作系统(OS)以操作显示器的启动过程,用于从存储器加载数据的加载过程以及用于显示加载过程的屏幕显示过程。 因此,用户能够容易地识别空调机的运转状态。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR ANALYSING OXIDATION NUMBER 3 AND 6 OF CHROMIUM SIMULTANEOUSLY
    • 用于分析氧化同位素3号和6号的方法和装置
    • WO2004057312A1
    • 2004-07-08
    • PCT/KR2002/002406
    • 2002-12-20
    • RESEARCH INSTITUTE OF INDUSTRIAL SCIENCE & TECHNOLOGYLEE, Do-HyungHAN, Jong HoonCHO, Won HeeNO, Kyung WonKIM, Dong Jin
    • LEE, Do-HyungHAN, Jong HoonCHO, Won HeeNO, Kyung WonKIM, Dong Jin
    • G01N21/00
    • G01N21/76
    • The present invention relates to a method of analyzing trivalent chromium and hexavalent chromium, and more particularly, to a method of simultaneously analyzing the trivalent chromium and the hexavalent chromium in precise, real-time, and cost-effective manners, based on the techniques of flow injection analysis and chemical luminescence detection. In this analysis method, in a first step S1, a mixed sample of the trivalent chromium and the hexavalent chromium and distilled water as well as a chemical luminescence reagent and an oxidant are input in a mixed manner. In a second step S2, the mixture solution of the mixed sample and the distilled water as well as the mixture solution of the chemical luminescence reagent and the oxidant are transferred. In a third step S3, the mixture solutions are input in a mixed manner while reacting the chemical luminescence reagent with the trivalent chromium to emit light. In a fourth step S4, the generated light is detected to assay the trivalent chromium. In a fifth step S5, the reacted sample and reagent are discharged. In sixth to eighth steps S6 to S8, a reductant is input instead of the distilled water with the first inputting step S1, and the second transferring step S2, the third light emission step S3, the fourth detection step S4, and the fifth discharge step S5 are repeated. The quantities of the trivalent chromium assayed in the detection steps are compared with each other to assay the hexavalent chromium. In order to conduct the analysis method, a microanalysis board is fabricated based on a lab-on-a-chip technique.
    • 本发明涉及一种分析三价铬和六价铬的方法,更具体地说,涉及一种以精确,实时和成本有效的方式同时分析三价铬和六价铬的方法,基于以下技术: 流动注射分析和化学发光检测。 在该分析方法中,在第一步骤S1中,以混合的方式输入三价铬和六价铬和蒸馏水以及化学发光试剂和氧化剂的混合样品。 在第二步骤S2中,转移混合样品和蒸馏水的混合溶液以及化学发光试剂和氧化剂的混合溶液。 在第三步骤S3中,混合溶液以混合的方式输入,同时使化学发光试剂与三价铬反应发光。 在第四步骤S4中,检测所产生的光以测定三价铬。 在第五步骤S5中,反应的样品和试剂被排出。 在第六至第八步骤S6至S8中,在第一输入步骤S1,第二转印步骤S2,第三发光步骤S3,第四检测步骤S4和第五放电步骤中,代替蒸馏水输入还原剂 S5重复。 将检测步骤中测定的三价铬的量进行比较以测定六价铬。 为了进行分析方法,基于片上实验室技术制造微量分析板。
    • 10. 发明申请
    • LOCKING TAILPIECE
    • 锁定TAILPIECE
    • WO2007082180A2
    • 2007-07-19
    • PCT/US2007/060219
    • 2007-01-08
    • GIBSON GUITAR CORP.KIM, Dong JinPARK, Hyung BaeROSENBERG, James RichardAKERS, Richard Taylor
    • KIM, Dong JinPARK, Hyung BaeROSENBERG, James RichardAKERS, Richard Taylor
    • G10D3/04
    • G10D3/04
    • Included herein is an instrument component (118) for mounting to the body (14) of an instrument (10) having strings, for example a guitar. The instrument component (118) comprises a plurality of attachment devices (119, 120), an elongated bracket (112), and a biasing element (114). The elongated bracket (112) includes a plurality of attachment apertures (123, 124) where each aperture (123, 124) includes a center (126) and is shaped to accept one of the attachment devices (119, 120). A biasing element (114) is positioned in each attachment aperture (123, 124) wherein each biasing element (114) engages one of the attachment devices (119, 120). Each biasing element (114) includes a plurality of protrusions (113) wherein each protrusion (113) biases the attachment device (119, 120) toward the center (126) of the attachment aperture (123, 124).
    • 这里包括用于安装到具有弦乐器(例如吉他)的乐器(10)的主体(14)的乐器部件(118)。 仪器部件(118)包括多个附接装置(119,120),细长支架(112)和偏置元件(114)。 细长支架(112)包括多个附接孔(123,124),其中每个孔(123,124)包括中心(126)并且成形为接受附接装置(119,120)之一。 偏置元件(114)定位在每个附接孔(123,124)中,其中每个偏置元件(114)接合附接装置(119,120)中的一个。 每个偏置元件(114)包括多个突起(113),其中每个突起(113)朝向连接孔(123,124)的中心(126)偏压附接装置(119,120)。