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    • 2. 发明申请
    • LIGHT EMITTING DIODE LIGHTING SYSTEM
    • 发光二极管照明系统
    • US20140312806A1
    • 2014-10-23
    • US14000863
    • 2011-10-10
    • Young Jong KimDong Young HuhTaek Soo KimHyun Sik Kim
    • Young Jong KimDong Young HuhTaek Soo KimHyun Sik Kim
    • H05B33/08
    • H05B33/0815H05B33/0851Y02B20/347Y02B20/348
    • An LED lighting system is provided. The LED lighting system includes a main transformer, a voltage detector, a current controller, a second reference voltage supplier, and a power factor compensation circuit. The main transformer transforms an input signal to supply the transformed input signal to an LED group. The voltage detector supplies a control voltage proportional to a level of an input voltage corresponding to the input signal. The current controller includes a first voltage storage, a negative voltage applier, a second voltage storage, switch, and a current control signal generator. The first voltage storage stores the control voltage supplied from the voltage detector or discharges a stored voltage. The negative voltage applier is connected to the first voltage storage, and connected to a ground to apply the control voltage to the ground when the control voltage is a negative voltage. The second voltage storage is connected to the first voltage storage, and stores the control voltage applied through the first voltage storage or discharges a stored voltage. The switch is connected to the second voltage storage, and activated by a driving signal to apply a ground voltage to the second voltage storage. The current control signal generator generates a current control signal according to a voltage signal and gain of the second voltage storage. The first voltage storage or the second voltage storage supplies the current control signal through the voltage detector. The second reference voltage supplier supplies the second reference voltage when the control signal supplied from the voltage detector is equal to or greater than the second reference voltage. The power factor compensation circuit controls a duty ratio of the driving signal according to a level of the current control signal, and controls a peak value of a primary current in the main transformer according to a level of the second reference voltage.
    • 提供LED照明系统。 LED照明系统包括主变压器,电压检测器,电流控制器,第二参考电压供应器和功率因数补偿电路。 主变压器转换输入信号以将变换的输入信号提供给LED组。 电压检测器提供与对应于输入信号的输入电压的电平成比例的控制电压。 电流控制器包括第一电压存储器,负电压施加器,第二电压存储器,开关和电流控制信号发生器。 第一电压存储器存储从电压检测器提供的控制电压或放电所存储的电压。 负电压施加器连接到第一电压存储器,并且当控制电压为负电压时,连接到地面以将控制电压施加到地。 第二电压存储器连接到第一电压存储器,并且存储通过第一电压存储器施加的控制电压或放电存储的电压。 开关连接到第二电压存储器,并由驱动信号激活,以将接地电压施加到第二电压存储器。 电流控制信号发生器根据电压信号和第二电压存储器的增益产生电流控制信号。 第一电压存储器或第二电压存储器通过电压检测器提供电流控制信号。 当从电压检测器提供的控制信号等于或大于第二参考电压时,第二参考电压供应器提供第二参考电压。 功率因数补偿电路根据电流控制信号的电平来控制驱动信号的占空比,并且根据第二参考电压的电平来控制主变压器中的初级电流的峰值。
    • 3. 发明授权
    • Method of communicating in wireless network
    • 无线网络通信方式
    • US08228874B1
    • 2012-07-24
    • US13455079
    • 2012-04-24
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • H04B1/26
    • H04W84/20H04W36/12H04W72/0406H04W72/087H04W76/20H04W76/22H04W84/18
    • A wireless network includes a current coordinator, at least one device which is currently associated with the wireless network, and a device selected as a new coordinator among the at least one device by the current coordinator. The current coordinator transmits a handover request message to the new coordinator; receives a handover response message in response to the handover request message from the new coordinator, the handover response message including a reason code field that is set to “success”; and broadcasts one or more beacons, each beacon including identification information which identifies the new coordinator and number information which indicates a number of remaining beacons that the current coordinator will broadcast before a handover occurs. The number information included in a last beacon among the one or more beacons is set to “0,” and the new coordinator broadcasts a beacon after receiving the last beacon from the current coordinator.
    • 无线网络包括当前协调器,当前与无线网络相关联的至少一个设备,以及当前协调器在该至少一个设备之间被选择为新协调器的设备。 当前协调器向新协调器发送切换请求消息; 响应于来自新协调器的切换请求消息接收切换响应消息,切换响应消息包括被设置为“成功”的原因码字段; 并且广播一个或多个信标,每个信标包括标识新协调器的识别信息和指示当前协调器将在切换发生之前广播的剩余信标数量的号码信息。 包含在一个或多个信标中的最后信标中的号码信息被设置为“0”,并且新协调器在从当前协调器接收到最后一个信标之后广播信标。
    • 4. 发明申请
    • METHOD OF ALLOCATING RESOURCES IN A WIRELESS NETWORK
    • 在无线网络中分配资源的方法
    • US20120057556A1
    • 2012-03-08
    • US13296171
    • 2011-11-14
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • H04W72/04
    • H04W72/042H04W72/0433
    • A device for allocating a channel resource in a wireless network includes a Media Access Control (MAC)/MAC Layer Management Entity (MLME) sublayer and the MAC/MLME sublayer receives a primitive requesting to transmit a message for requesting the channel resource from an upper layer; transmits the message for requesting the channel resource to a coordinator, wherein the message for requesting the channel resource includes information about a duration of the channel resource; and receives channel resource allocation information for allocating the channel resource from a MAC/MLME sublayer of the coordinator, the channel resource allocation information including information about a duration of the allocated channel resource, wherein the device transmits a first message to a second device during the channel resource allocated based upon the channel resource allocation information, and receives a second message from the second device in response to the first message during the allocated channel resource.
    • 用于在无线网络中分配信道资源的设备包括媒体接入控制(MAC)/ MAC层管理实体(MLME)子层,并且MAC / MLME子层接收请求从上层请求信道资源的消息发送的原语 层; 向协调器发送用于请求信道资源的消息,其中用于请求信道资源的消息包括关于信道资源的持续时间的信息; 并且从所述协调器的MAC / MLME子层接收用于分配信道资源的信道资源分配信息,所述信道资源分配信息包括关于所分配的信道资源的持续时间的信息,其中,所述设备在所述第二设备期间向第二设备发送第一消息 基于信道资源分配信息分配的信道资源,并且在分配的信道资源期间响应于第一消息从第二设备接收第二消息。
    • 8. 发明申请
    • METHOD FOR MANAGING THE POWER IN THE WIRELESS NETWORK
    • 在无线网络中管理电源的方法
    • US20100008279A1
    • 2010-01-14
    • US12562110
    • 2009-09-17
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • Beom Jin JeonHyeon Cheol ChoTaek Soo Kim
    • G08C17/00
    • H04W52/0229H04W48/08H04W52/287Y02D70/144Y02D70/168
    • In wireless network communication, the present invention provides a method of checking whether information on a request for a mode change is received for a prescribed channel time in a manner that a device configuring a network enters a power save mode in the course of not performing data transmission/reception and that a modem enters an awake state from a sleep state for the prescribed channel time. And, the prescribed channel time is determined to correspond to a time for transmitting a beacon. According to one preferred embodiment of the present invention, a modem of a device in a power save mode enters an awake state for a channel time period for broadcasting a beacon and then checks whether information on a power management mode change is received. If the information does not exist, a sleep state is reentered. If the power management mode change information is received, a power is managed by performing data transmission/reception in a manner of switching to a normal mode.
    • 在无线网络通信中,本发明提供了一种在不执行数据的过程中以配置网络的设备进入省电模式的方式来检查是否针对规定的信道时间接收关于模式改变的请求的信息的方法 发送/接收,并且调制解调器从睡眠状态进入唤醒状态达规定的频道时间。 并且,规定的信道时间被确定为对应于发送信标的时间。 根据本发明的一个优选实施例,节电模式的设备的调制解调器进入用于广播信标的信道时间段的唤醒状态,然后检查是否接收到关于电源管理模式改变的信息。 如果信息不存在,则重新进入睡眠状态。 如果接收到功率管理模式改变信息,则通过以切换到正常模式的方式执行数据发送/接收来管理功率。
    • 10. 发明申请
    • Pulse Width Modulation Apparatus and Apparatus for Driving Light Source Having the Same
    • 用于驱动具有相同光源的脉宽调制装置和装置
    • US20080278087A1
    • 2008-11-13
    • US11997493
    • 2007-04-17
    • Taek Soo KimHyun Sik Kim
    • Taek Soo KimHyun Sik Kim
    • H05B37/02
    • H05B41/3927
    • Provided are a pulse width modulation (PWM) apparatus and a light source-driving apparatus including the PWM apparatus. The PWM apparatus includes a voltage division part, a capacitor part, a first operational amplifier, a first noise reduction part, and a second operational amplifier. The voltage division part divides and outputs an input voltage. The capacitor part charged by an input current or discharged for provides a charge voltage. The first operational amplifier operates according to a result of comparing a divided voltage output from the voltage division part with the charge voltage output from the capacitor part. The first noise reduction part removes a high frequency noise of the divided voltage. The second operational amplifier converts a signal generated from the capacitor part into a pulse width modulation signal by a dimming control signal.
    • 提供了包括PWM装置的脉宽调制(PWM)装置和光源驱动装置。 PWM装置包括分压部分,电容器部分,第一运算放大器,第一降噪部分和第二运算放大器。 分压部分分压输出电压。 由输入电流或放电充电的电容器部分提供充电电压。 第一运算放大器根据将分压部分的分压输出与从电容器部分输出的充电电压进行比较的结果进行工作。 第一降噪部分去除分压电压的高频噪声。 第二运算放大器通过调光控制信号将从电容器部分产生的信号转换为脉宽调制信号。