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    • 1. 发明授权
    • 배터리 충전 회로
    • 电池充电电路
    • KR101525937B1
    • 2015-06-09
    • KR1020140112353
    • 2014-08-27
    • 윤천영홍준희
    • 윤천영홍준희
    • H02J7/04
    • 본기술의일 실시예에의한배터리충전회로는외부전원을이용하여내부전원을생성하는충전전원부, 복수의배터리를포함하고, 복수의배터리각각의전압레벨에따라결정되는측정신호를출력하며, 충전제어신호에응답하여복수의배터리중 적어도하나를충전하는충전부및 측정신호에대응하여기 저장된충전제어신호를출력하는제어부를포함하고, 충전제어신호는하나의충전배터리를이용하여하나의피충전배터리를충전하는제 1 모드, 복수의충전배터리를이용하여하나의피충전배터리를충전하는제 2 모드, 내부전원을이용하여복수의배터리의일부또는전부를충전하는제 3 모드중 적어도어느하나를선택하는신호일수 있다.
    • 根据本技术的实施例的电池充电电路包括:充电电源单元,将多个电池以产生通过使用外部电源的内部电源,并输出其按照多个单独的电压电平的电池的确定的测量信号,进行充电 响应于所述控制信号包括多个控制部分,用于输出一个预先存储在响应于所述充电部和用于使用单个电池充电血液充电电池充电的电池中的至少一个,所述充电控制信号,测量信号的充电控制信号 用于使用多个可再充电电池为一个充电电池充电的第二模式以及用于使用内部电源对所述多个电池的一部分或全部进行充电的第三模式, Lt。
    • 2. 发明公开
    • 과전류 방지 장치
    • 超过电流保护装置
    • KR1020130119405A
    • 2013-10-31
    • KR1020130121038
    • 2013-10-11
    • 윤천영홍준희
    • 윤천영홍준희
    • H02H3/093H02H3/08
    • PURPOSE: An apparatus for preventing over-current can immediately block current flow, thereby effectively protecting a target device. CONSTITUTION: A current sensor (110) converts input current into voltage signal and outputs it. The current sensor is one of a hall sensor, current transformer, and resistor. An over-current sensing unit (120) is driven by voltage signal outputted from the current sensor. The over-current sensing unit comprises an optical switching device. An excess current determining unit (130) determines whether it is over-current or not by responding a signal outputted as the over-current sensing unit is driven. [Reference numerals] (110) Current sensor; (120) Over-current sensing unit; (130) Excess current determining unit; (AA) Current; (BB) Switching unit
    • 目的:防止过流的装置可以立即阻止电流流动,从而有效地保护目标装置。 构成:电流传感器(110)将输入电流转换为电压信号并将其输出。 电流传感器是霍尔传感器,电流互感器和电阻器之一。 过电流感测单元(120)由从电流传感器输出的电压信号驱动。 过电流感测单元包括光开关器件。 过电流确定单元(130)通过响应驱动过电流感测单元输出的信号来判定是否过电流。 (附图标记)(110)电流传感器; (120)过电流检测单元; (130)过电流确定单元; (AA)电流; (BB)开关单元
    • 3. 发明公开
    • 배터리 충전 회로
    • 电池充电电路
    • KR1020140111244A
    • 2014-09-18
    • KR1020140112356
    • 2014-08-27
    • 윤천영홍준희
    • 윤천영홍준희
    • H02J7/02
    • H02J7/02
    • A battery charging circuit according to one embodiment of the present technology includes: a charging power source unit which generates an internal power source by using an external power source; a charging unit which measures the voltage levels of first to fourth batteries, outputs a measurement signal determined according to the measurement result, and selectively charges at least one of the first to fourth batteries in response to a charging control signal; and a control unit which outputs the charging control signal which is previously stored in response to the measurement signal. The charging control signal is a signal to select at least one of a first mode to charge one battery to be charged using one charging battery, a second mode to charge a plurality of batteries to be charged using a plurality of charging batteries, and a third mode to partially or entirely charge the first to fourth batteries using the internal power source.
    • 根据本技术的一个实施例的电池充电电路包括:充电电源单元,其通过使用外部电源产生内部电源; 测量第一至第四电池的电压电平的充电单元,输出根据测量结果确定的测量信号,并且响应于充电控制信号选择性地对第一至第四电池中的至少一个充电; 以及控制单元,其输出响应于测量信号预先存储的充电控制信号。 充电控制信号是选择使用一个充电电池对要充电的一个电池进行充电的第一模式中的至少一个的信号,使用多个充电电池对要充电的多个电池进行充电的第二模式,以及第三模式 模式,以使用内部电源对第一至第四电池进行部分或全部充电。
    • 4. 发明公开
    • 배터리 충전 회로
    • 电池充电电路
    • KR1020140111243A
    • 2014-09-18
    • KR1020140112353
    • 2014-08-27
    • 윤천영홍준희
    • 윤천영홍준희
    • H02J7/04
    • H02J7/042H02J7/0016
    • A battery charging circuit according to one embodiment of the present technology includes a charging power source unit which generates an internal power source by using an external power source, a charging unit which includes a plurality of batteries, outputs a measurement signal determined according to the voltage level of each battery, and charges at least one battery in response to a charging control signal, and a control unit which outputs a charging control signal which is previously stored in response to the measurement signal. The charging control signal can be a signal which selects at least one of a first mode of charging one battery to be charged by using one charging battery, a second mode of charging one battery to be charged by using a plurality of charging batteries, and a third mode of partially or entirely charging the batteries by using the internal power source.
    • 根据本技术的一个实施例的电池充电电路包括通过使用外部电源产生内部电源的充电电源单元,包括多个电池的充电单元,输出根据电压确定的测量信号 每个电池的电平,并且响应于充电控制信号对至少一个电池充电;以及控制单元,其输出响应于测量信号预先存储的充电控制信号。 充电控制信号可以是选择使用一个充电电池对要充电的一个电池进行充电的第一模式中的至少一个的信号,通过使用多个充电电池对要充电的一个电池进行充电的第二模式,以及 通过使用内部电源对电池进行部分或全部充电的第三模式。
    • 6. 发明公开
    • 과전류 방지 장치
    • 超过电流保护装置
    • KR1020130121791A
    • 2013-11-06
    • KR1020130121039
    • 2013-10-11
    • 윤천영홍준희
    • 윤천영홍준희
    • H02H3/093H02H3/08
    • A device for preventing over currents comprises a current sensor outputting an inputted current converted into a voltage signal; an over current sensing unit which is driven according to the voltage signal; and an over current determining unit generating a driving signal for a switching unit that a logic level is determined according to the duration of the signal outputted from the over current sensing unit. [Reference numerals] (110) Current sensor;(120) Over current sensing unit;(130) Over current determining unit;(AA) Current;(BB) Switching unit
    • 用于防止过电流的装置包括输出转换成电压信号的输入电流的电流传感器; 根据电压信号驱动的过电流感测单元; 以及过电流确定单元,产生用于切换单元的驱动信号,根据从过电流感测单元输出的信号的持续时间来确定逻辑电平。 (110)电流传感器;(120)过电流检测单元;(130)过流判定单元;(AA)电流;(BB)开关单元
    • 7. 发明授权
    • 배터리 충전 회로
    • 电池充电电路
    • KR101525941B1
    • 2015-06-09
    • KR1020140112356
    • 2014-08-27
    • 윤천영홍준희
    • 윤천영홍준희
    • H02J7/02
    • 본기술의일 실시예에의한배터리충전회로는외부전원을이용하여내부전원을생성하는충전전원부, 제 1 내지제 4 배터리의전압레벨을측정하여측정결과에따라결정되는측정신호를출력하고, 충전제어신호에응답하여제 1 내지제 4 배터리중적어도하나를선택적으로충전하는충전부및 측정신호에대응하여기 저장된충전제어신호를출력하는제어부;를포함하며, 충전제어신호는하나의충전배터리를이용하여하나의피충전배터리를충전하는제 1 모드, 복수의충전배터리를이용하여복수의피충전배터리를충전하는제 2 모드, 내부전원을이용하여제 1 내지제 4 배터리의일부또는전부를충전하는제 3 모드중 적어도어느하나를선택하는신호일수 있다.
    • 8. 发明公开
    • 과전류 방지 장치
    • 超过电流保护装置
    • KR1020140117332A
    • 2014-10-07
    • KR1020140120237
    • 2014-09-11
    • 윤천영홍준희
    • 윤천영홍준희
    • H02H3/08
    • An overcurrent protection apparatus includes: a current sensor to convert a first direction input current and a second direction input current to a first voltage signal and a second voltage signal respectively and to output the same respectively; an overcurrent detection unit to be driven in response to the first voltage signal which is output by the current sensor; and an overcurrent determination unit to generate a switching unit driving signal for determining a logic level depending on the duration of the signal to be output from the overcurrent detection unit, wherein the amount of the second direction input current is decreased if the amount of the first direction input current is increased, and the amount of the second direction input current is increased if the amount of the first direction input current is decreased.
    • 一种过电流保护装置包括:分别将第一方向输入电流和第二方向输入电流转换为第一电压信号和第二电压信号并分别输出的电流传感器; 响应于由电流传感器输出的第一电压信号而驱动的过电流检测单元; 以及过电流确定单元,用于产生用于根据从过电流检测单元输出的信号的持续时间来确定逻辑电平的开关单元驱动信号,其中如果第一方向输入电流的量第一 如果第一方向输入电流的量减小,则方向输入电流增加,并且第二方向输入电流的量增加。
    • 9. 发明公开
    • 배터리 충전회로
    • 电池充电电路
    • KR1020140111242A
    • 2014-09-18
    • KR1020140112351
    • 2014-08-27
    • 윤천영홍준희
    • 윤천영홍준희
    • H02J7/02
    • H02J7/0021H02J7/045
    • A battery charging circuit according to an embodiment of a present technology includes a plurality of unit batteries which are serially connected to each other; a controller which detects charge states of the unit batteries, generates a charge path selection signal corresponding to a current path capable of charging at least one unit battery requiring charge according to a charge state detection result, generates a charge control signal according to the charge state detection result, and adjusts a duty ratio of a charge control signal based on the number of unit batteries requiring the charge; a charge current path forming unit coupled between an end of a charge power supply unit and the unit batteries, and between an opposite end of the charge power supply unit and the unit batteries to form a current path in response to the charge path selection signal; and a charge power supply unit which controls a voltage level of charge power to be provided to the charge current path forming unit according to a charge control pulse.
    • 根据本技术的实施例的电池充电电路包括彼此串联连接的多个单元电池; 检测单元电池的充电状态的控制器产生与根据充电状态检测结果对需要充电的至少一个单元电池充电的电流通路相对应的充电路径选择信号,根据充电状态产生充电控制信号 检测结果,并且基于需要充电的单元电池的数量来调整充电控制信号的占空比; 充电电流路径形成单元,其耦合在充电电源单元的端部和单元电池之间,并且在充电电源单元的相对端与单元电池之间,以响应于充电路径选择信号形成电流路径; 以及充电电源单元,其根据充电控制脉冲控制要提供给充电电流路径形成单元的充电电力的电压电平。