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    • 4. 发明申请
    • APPARATUS AND METHOD FOR CONTROLLING A PIPELINE-TYPE ION CYCLOTRON RESONANCE MASS SPECTROMETER
    • 控制管式离子回旋共振质谱仪的装置和方法
    • WO2011081298A3
    • 2011-11-03
    • PCT/KR2010008079
    • 2010-11-16
    • KOREA BASIC SCIENCE INSTKIM SEUNG YONGKIM HYUN SIKYOO JONG SHIN
    • KIM SEUNG YONGKIM HYUN SIKYOO JONG SHIN
    • H01J49/34G01N27/62H01J49/26
    • H01J49/38H01J49/022
    • The present invention relates to an apparatus and method for controlling a pipeline-type ion cyclotron resonance mass spectrometer, in which an ion trap unit of the ion cyclotron resonance mass spectrometer is capable of using two digitizers at the same time, thus enabling a measurement process for detecting an electrical signal which indicates the mass of ions corresponding to a specific purpose, and another measurement process for detecting another electrical signal which indicates the mass of ions corresponding to another specific purpose, to be simultaneously performed. Accordingly, it is an aim of the present invention to provide an apparatus and method for controlling a pipeline-type ion cyclotron resonance mass spectrometer, which can overcome the problems of time delay among control procedures, and can present a signal detection step wherein an excitation electrode is utilized to improve the sensitivity and speed of signal detection.
    • 本发明涉及一种用于控制管道型离子回旋共振质谱仪的装置和方法,其中离子回旋共振质谱仪的离子阱单元能够同时使用两个数字转换器,从而能够进行测量过程 用于检测指示对应于特定目的的离子的质量的电信号以及用于检测指示与另一特定目的对应的离子的质量的另一电信号的另一测量过程被同时执行。 因此,本发明的一个目的是提供一种用于控制流水线式离子回旋共振质谱仪的装置和方法,该装置和方法可以克服控制过程中时间延迟的问题,并且可以提供一种信号检测步骤,其中激励 电极用于提高信号检测的灵敏度和速度。
    • 5. 发明申请
    • HIGH-ENERGY HEAT SOURCE APPARATUS APPLIED WITH INVERTER
    • 应用于逆变器的高能热源设备
    • WO2011071235A3
    • 2011-09-15
    • PCT/KR2010006653
    • 2010-09-30
    • I & H CO LTDPARK IL MUNKIM HYUN SIK
    • PARK IL MUNKIM HYUN SIK
    • H05B1/02F24C7/04F24C7/08
    • H05B1/02
    • The present invention relates to a high-energy heat source apparatus applied with an inverter, and the apparatus comprises: a VVVF inverter that converts again a DC voltage, which was created by converting an AC voltage received through an AC power plug by a converter unit, into a high-frequency AC voltage under control of an VVVF inverter unit; a voltage controller (ETP) that is connected between the AC power plug and the VVVF inverter, by being embedded with an IC circuit and a transformer which includes a primary coil and a secondary coil on which a coil is wound at more times than that of the primary coil; a heating unit that includes a heating element which has a lower resistance value than a normal resistance value by the high-frequency AC voltage received from the VVVF inverter, a case in which the heating element is embedded, and an air inlet fan; and an overheating prevention sensor that prevents overheating of the heating element. Thus, since a voltage supplied to the heating element from the VVVF inverter is stably provided by the voltage controller even with a low resistance value of the heating element, much energy can be obtained with the same amount of electricity.
    • 本发明涉及应用了逆变器的高能量热源装置,并且该装置包括:VVVF逆变器,该VVVF逆变器再次转换通过转换通过转换器单元通过AC电源插头接收的AC电压而产生的DC电压 在VVVF逆变器单元的控制下转换成高频AC电压; 通过嵌入IC电路和变压器而连接在AC电源插头和VVVF逆变器之间的电压控制器(ETP),所述IC电路和变压器包括初级线圈和次级线圈,其上缠绕线圈的次数多于 初级线圈; 加热单元,其包括加热元件和进气风扇,所述加热元件具有比通过从所述VVVF逆变器接收的高频AC电压的正常电阻值低的电阻值,所述加热元件被嵌入的情况; 以及防止加热元件过热的防过热传感器。 因此,即使加热元件的电阻值较低,由于从VVVF变换器向加热元件供给的电压也稳定地由电压控制器提供,所以在相同的电量下可以获得更多的能量。