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    • 2. 发明授权
    • Electrodeless lighting system
    • 无电极照明系统
    • US07161304B2
    • 2007-01-09
    • US10950466
    • 2004-09-28
    • Ji-Young LeeJoon-Sik ChoiYun-Chul JungYong-Seog JeonByeong-Ju ParkHyun-Jung Kim
    • Ji-Young LeeJoon-Sik ChoiYun-Chul JungYong-Seog JeonByeong-Ju ParkHyun-Jung Kim
    • H01J25/50
    • H01J65/044
    • Disclosed is an electrodeless lighting system capable of being used as an optical source of an electronic device by being minimized and capable of obtaining an optimum impedance matching and controlling a resonance frequency. The electrodeless lighting system comprises: a magnetron for generating microwave and having an antenna through which the microwave is outputted; a resonator having a resonance space where the microwave is resonated and having an inner diameter partially different along a path that the microwave passes; a bulb installed inside the resonator and having a light emitting material therein for emitting light by the microwave energy; and a microwave feeder of which one side is connected to the antenna and another side thereof is connected to the bulb, for guiding microwave to the bulb, in which a ratio of an outer diameter of the microwave feeder and a ratio of an inner diameter of the resonator corresponding to the outer diameter of the microwave feeder are varied along a progressive direction of the microwave.
    • 公开了一种无电极照明系统,其能够通过最小化而被用作电子设备的光源,并且能够获得最佳的阻抗匹配和控制谐振频率。 无电极照明系统包括:用于产生微波并具有天线的磁控管,通过该天线输出微波; 具有共振空间的共振器,其中所述微波谐振并沿着所述微波通过的路径具有部分不同的内径; 安装在谐振器内的灯泡,其中具有用于通过微波能量发光的发光材料; 以及微波馈电器,其一侧连接到天线,另一侧连接到灯泡,用于将微波引导到灯泡,其中微波馈电装置的外径与外径之比 对应于微波馈线的外径的谐振器沿微波的逐行方向变化。
    • 5. 发明授权
    • Temperature control method for refrigerator
    • 冰箱温度控制方法
    • US06959559B2
    • 2005-11-01
    • US10703586
    • 2003-11-10
    • Young Sok NamSeong Ho ChoYun Chul JungJay Ho Choi
    • Young Sok NamSeong Ho ChoYun Chul JungJay Ho Choi
    • F25D17/06F25D11/02F25D17/04F25D17/08F25D29/00
    • F25D17/045F25B2600/112F25D17/065F25D29/00F25D2400/06F25D2700/122
    • Disclosed is a temperature control method for a refrigerator which can minimize a deviation in refrigerant compartment temperature while minimizing the power consumption of the refrigerator. The temperature control method includes the steps of (A) comparing a sensed temperature of a freezing compartment with a predetermined maximum freezing compartment temperature and a predetermined minimum freezing compartment temperature, respectively, thereby controlling a compressor and a circulating fan to be turned on or off such that the sensed freezing compartment temperature is ranged between the predetermined maximum and minimum freezing temperatures, (B) comparing, following the step (A), a sensed temperature of a refrigerating compartment defined with a plurality of refrigerating chambers therein, with a predetermined maximum refrigerating compartment temperature and a predetermined minimum refrigerating compartment temperature, respectively, thereby controlling a damper to be opened or closed and the circulating fan to be turned on or off such that the sensed refrigerating compartment temperature is ranged between the predetermined maximum and minimum refrigerating temperatures, and (C) discharging cold air into at least one of the refrigerating chambers when the damper is closed, and the compressor and the circulating fan are turned on.
    • 本发明公开了一种用于冰箱的温度控制方法,其能够最小化制冷剂室温度的偏差,同时最小化冰箱的功率消耗。 温度控制方法包括以下步骤:(A)将感测到的冷冻室的温度与预定的最大冷冻室温度和预定的最小冷冻室温度进行比较,从而控制压缩机和循环风扇的打开或关闭 使得感测到的冷冻室温度在预定的最大和最小冷冻温度之间的范围内;(B)在步骤(A)之后,将其中限定有多个冷藏室的冷藏室的感测温度与预定的最大值 冷藏室温度和预定的最小制冷室温度,由此控制阻尼器打开或关闭,并且循环风扇被打开或关闭,使得感测到的冷藏室温度在预定的最大和最小冷藏温度之间 并且(C)当阻尼器关闭时将冷空气排放到至少一个制冷室中,并且压缩机和循环风扇被接通。
    • 9. 发明授权
    • Driving device for switched reluctance motor and method therefor
    • 开关磁阻电机驱动装置及其方法
    • US06411060B1
    • 2002-06-25
    • US09503702
    • 2000-02-14
    • Yun Chul Jung
    • Yun Chul Jung
    • H02P146
    • H02P6/16H02P25/0925
    • The present invention relates to a driving of a switched reluctance motor, and in particular to a driving device for an SR motor which can detect a position of a rotor of the SR motor by using a smaller number of sensors than phases, and which can drive the SR motor on the basis of the detected result. At an initial stage of the starting of the SR motor, the position detection is not performed, and a microprocessor sequentially outputs a plurality of control signals, thereby aligning the rotor. After the starting, the microprocessor sequentially outputs the plurality of control signals according to a result detected from a position detection unit.
    • 本发明涉及开关磁阻电动机的驱动,特别是涉及用于SR电动机的驱动装置,其可以通过使用比相位少的传感器来检测SR电动机的转子的位置,并且可以驱动 SR电机根据检测结果。 在SR电动机起动的初始阶段,不执行位置检测,微处理器依次输出多个控制信号,从而使转子对准。 在开始之后,微处理器根据从位置检测单元检测到的结果顺序地输出多个控制信号。
    • 10. 发明授权
    • Plasma lighting system and control method thereof
    • 等离子照明系统及其控制方法
    • US07626835B2
    • 2009-12-01
    • US11392742
    • 2006-03-30
    • Joon-Sik ChoiYun-Chul Jung
    • Joon-Sik ChoiYun-Chul Jung
    • H02J3/00H02M5/40
    • H05B41/24H05B41/2806Y02B20/22
    • A plasma lighting system comprising a storage unit for storing duty ratios of first and second switching signals according to each material within a bulb by an experiment, a controlling unit for detecting an optimal duty ratio from the storage unit and outputting the first and second switching signals with the same phase corresponding to the detected duty ratio, and a converting unit for converting a direct current voltage into an alternating current voltage consisting of a positive square wave and a negative square wave according to the first and second switching signals, and a method for controlling the same.
    • 一种等离子体照明系统,包括存储单元,用于通过实验来存储根据灯泡内的每种材料的第一和第二开关信号的占空比;控制单元,用于从存储单元检测最佳占空比并输出第一和第二开关信号 具有对应于检测到的占空比的相同相位;以及转换单元,用于根据第一和第二开关信号将直流电压转换成由正方波和负方波组成的交流电压,以及用于 控制一样。