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    • 12. 发明申请
    • SENSOR FOR MEASURING ELECTRICAL CHARACTERISTICS
    • 用于测量电特性的传感器
    • WO2011027984A2
    • 2011-03-10
    • PCT/KR2010005617
    • 2010-08-24
    • PLASMART INCLEE SANG WONKIM JAE HYUN
    • LEE SANG WONKIM JAE HYUN
    • G01R19/00G01R29/00
    • G01R15/181G01R15/142G01R15/165
    • According to the present invention, a sensor for measuring electrical characteristics is provided, comprising a voltage sensor and a current sensor. The voltage sensor comprises: a printed circuit board defining a round through-hole into which a power transmission line is inserted; a ring-shaped electrode fixed against the inner periphery of the through-hole to measure a voltage formed in the power transmission line; and a first terminal portion, one end of which contacts one side of the electrode and the other end of which is exposed through a side of the printed circuit board. The current sensor comprises: a pick up coil wound like a spring and bent along the outer periphery of the through-hole so as to form a doughnut shape when viewed from above, and arranged with at least a portion thereof embedded in the printed circuit board, wherein said pick up coil measures a current flowing in the power line by means of induced current; and a second terminal portion extending from both ends of the pick up coil and exposed through a side of the printed circuit board.
    • 根据本发明,提供了一种用于测量电特性的传感器,其包括电压传感器和电流传感器。 该电压传感器包括:印刷电路板,其限定供电传输线插入其中的圆形通孔; 环形电极,所述环形电极固定在所述通孔的内周上以测量在所述电力传输线中形成的电压; 以及第一端子部分,其一端接触电极的一侧,另一端通过印刷电路板的一侧暴露。 电流传感器包括:拾取线圈,像弹簧那样缠绕并且沿着通孔的外周边弯曲,从而在俯视时形成环形形状,并且布置有至少一部分嵌入在印刷电路板中 其中所述拾取线圈借助于感应电流来测量在所述电力线中流动的电流; 以及第二端子部分,其从拾取线圈的两端延伸并且通过印刷电路板的一侧暴露。
    • 16. 发明申请
    • METHOD FOR MAKING PICKLED VEGETABLES USING UNRIPE MATERIALS
    • 使用不寻常材料制作切片蔬菜的方法
    • WO2011159101A3
    • 2012-05-18
    • PCT/KR2011004385
    • 2011-06-15
    • KIM JAE HYUN
    • KIM JAE HYUN
    • A23L19/20A23L19/00
    • A23L19/20
    • The present invention relates to a method for making pickled vegetables using unripe materials, and more specifically, to a method for making new pickled vegetables through which: nutrients are preserved since unripe fruits and vegetables are used in an unpeeled state, and the shape of the pickled vegetables and chewing texture are improved; long-term storage is available due to ripening with low-salt and low-temperature; the amount of salt, acidity, and moisture are reduced by a mechanical dewatering step using rotation; and chewing texture and the taste of the pickled vegetables are enhanced by adding secondary seasoning, thereby remarkably improving the taste by keeping nutrients intact so that anyone regardless of age and gender can easily enjoy the invention.
    • 本发明涉及一种使用未成熟材料制造腌制蔬菜的方法,更具体地说,涉及一种制备新腌制蔬菜的方法,通过该方法可以保持营养物,因为未成熟的水果和蔬菜以未剥皮状态使用, 腌制蔬菜和咀嚼质地得到改善; 由于低盐和低温成熟,长期储存可用; 通过使用旋转的机械脱水步骤减少盐的量,酸度和水分; 通过添加二次调味来增强腌制质地和腌制蔬菜的味道,从而通过保持营养物质完整地显着改善味道,使得任何不分年龄和性别的人都可以容易地享受本发明。
    • 17. 发明申请
    • CHEMICAL-MECHANICAL POLISHING SLURRY COMPOSITION COMPRISING NONIONIZED HEAT-ACTIVATED NANOCATALYST, AND POLISHING METHOD USING SAME
    • 化学机械抛光浆料组合物,其包含非活化的活化纳米催化剂和使用其的抛光方法
    • WO2010140788A3
    • 2011-03-31
    • PCT/KR2010003349
    • 2010-05-27
    • DONGJIN SEMICHEM CO LTDPARK JONG DAILIM JIN HYUKCHOI JUNG MINKONG HYUN GOOKIM JAE HYUNPARK HYE JUNG
    • PARK JONG DAILIM JIN HYUKCHOI JUNG MINKONG HYUN GOOKIM JAE HYUNPARK HYE JUNG
    • C09K3/14H01L21/304
    • H01L21/3212C09G1/02
    • The invention relates to a polishing slurry composition which comprises a nonionized heat-activated nanocatalyst, and which is useful for a chemical-mechanical planarization process, and to a polishing method using the composition. The chemical-mechanical polishing slurry composition comprises: a nonionized heat-activated nanocatalyst which discharges electrons and holes by the energy generated during a chemical-mechanical polishing process; an abrasive; and an oxidizing agent. The nonionized heat-activated nanocatalyst and the abrasive are different from each other. Preferably, the nonionized heat-activated nanocatalyst is a semiconductor substance which discharges, in an aqueous solution state, electrons and holes at a temperature of 10 to 100°C. Preferably, transition metal silicide selected from a group consisting of CrSi, MnSi, CoSi, ferrosilicon (FeSi) and a mixture thereof can be used as the nonionized heat-activated nanocatalyst. More preferably, a semiconductor substance such as nanoferrosilicon can be used as the nonionized heat-activated nanocatalyst. The content of the nonionized heat-activated nanocatalyst is 0.00001 to 0.1 wt % with respect to the total slurry composition.
    • 本发明涉及一种抛光浆料组合物,其包含非离子热活化纳米催化剂,并且其可用于化学机械平面化工艺,以及使用该组合物的抛光方法。 化学机械抛光浆料组合物包括:非化学热活化纳米催化剂,其通过在化学机械抛光过程中产生的能量而排出电子和空穴; 研磨剂 和氧化剂。 非活性热活化纳米催化剂和研磨剂彼此不同。 优选地,非离子化热活化纳米催化剂是在10〜100℃的温度下以水溶液状态排出电子和空穴的半导体物质。 优选地,可以使用选自CrSi,MnSi,CoSi,硅铁(FeSi)及其混合物的过渡金属硅化物作为非离子化热活化纳米催化剂。 更优选地,可以使用诸如纳米铁的半导体物质作为非离子化热活化纳米催化剂。 非离子化热活化纳米催化剂的含量相对于总淤浆组成为0.00001〜0.1重量%。