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    • 31. 发明申请
    • Remote Controlling System For Electric Device
    • 电气设备遥控系统
    • US20100238046A1
    • 2010-09-23
    • US12223164
    • 2006-07-28
    • Hoon-Bong LeeYong-Han KimYong-Tae Kim
    • Hoon-Bong LeeYong-Han KimYong-Tae Kim
    • G08B5/22
    • G08C17/00G08C2201/42G08C2201/50
    • The present invention discloses a remote controlling system and method for an electric device, including: one or more electric devices (200, 300) for communicating with a remote controlling device (100) through a wireless communication network, transmitting state information to the remote controlling device (100) according to a state request command from the remote controlling device (100), and controlling operations according to an operation control command from the remote controlling device (100); and the remote controlling device (100) for transmitting the state request command to the electric device (200, 300) selected by the user, and receiving and displaying the state information, or transmitting the operation control command to the electric device (200, 300). The remote controlling system and method for the electric device (200, 300) displays the states of the electric devices (200, 300) and controls the operations thereof.
    • 本发明公开了一种电气设备的遥控系统和方法,包括:一个或多个电气设备(200,300),用于通过无线通信网络与远程控制设备(100)进行通信,将状态信息发送到远程控制 设备(100)根据来自远程控制设备(100)的状态请求命令,根据来自遥控设备(100)的操作控制命令进行控制; 以及用于向用户选择的电气设备(200,300)发送状态请求命令的远程控制设备(100),并且接收并显示状态信息,或者将操作控制命令发送到电子设备(200,300) )。 电气设备(200,300)的遥控系统和方法显示电气设备(200,300)的状态并控制其操作。
    • 33. 发明授权
    • Portable personal self-operating life tube
    • 便携式个人自行管寿命管
    • US07704112B2
    • 2010-04-27
    • US12180714
    • 2008-07-28
    • Yong Tae Kim
    • Yong Tae Kim
    • B63C9/08
    • B63C9/065
    • A portable personal self-operating life tube is disclosed, in which when a user is drowned in water due to a marine disaster or a fire and sinking of a ship, it automatically operates, so the user can save his life by just wearing the tube, and the tube is able to keep a user's a body temperature until a rescue comes after the tube is expanded along with the above features, and a life tube can be easily used without a particular care by improving the problems found in a conventional art in which a user feels bad when wearing a life tube since a conventional life equipment is not customized, and it is not portable and is not easy to use.
    • 公开了一种便携式个人自行生命管,其中当用户由于海洋灾害或船舶的下沉而淹没在水中时,其自动操作,因此用户可以通过佩戴管子来节省他的生命 ,并且管能够保持使用者的身体温度,直到在管与上述特征一起膨胀之后进行救援,并且可以容易地使用寿命管,而不需要特别注意,通过改进常规技术中发现的问题 由于常规生活设备没有定制,使用寿命管时使用者觉得不好,而且不便携,不易使用。
    • 35. 发明申请
    • AUTOMATIC OPTICAL POWER CONTROL METHOD FOR OLT IN PON
    • PON中PON的自动光功率控制方法
    • US20100008667A1
    • 2010-01-14
    • US12443416
    • 2007-09-21
    • Sung-Chang KimBin-Yeong YoonYong-Tae KimGeun-Yong KimBong-Tae Kim
    • Sung-Chang KimBin-Yeong YoonYong-Tae KimGeun-Yong KimBong-Tae Kim
    • H04J14/00
    • H04Q11/0067H04Q2011/0083
    • Provided is an automatic optical power control method for an optical line terminal (OLT) of a passive optical network (PON). The automatic optical power control method includes at the OLT, measuring an allowable range of the optical power allowing a normal network operation on the PON, at the OLT, setting an optimum optical signal level within the measured allowable range of the optical power, and at the OLT, adjusting a power level of a transmitter to the set optimum optical signal level. Accordingly, an appropriate power level can be selected depending on an optical distribution network (ODN) structure to drive the transmitter. Also, when the entire optical network units are deactivated, a laser of the transmitter is turned off to thereby minimize unnecessary power consumption at the OLT.
    • 提供了一种用于无源光网络(PON)的光线路终端(OLT)的自动光功率控制方法。 自动光功率控制方法包括在OLT处,在OLT处测量允许PON上的正常网络操作的光功率的允许范围,在所测量的光功率允许范围内设置最佳光信号电平,并且在 OLT将发射机的功率电平调整到设定的最佳光信号电平。 因此,可以根据用于驱动发射机的光分配网络(ODN)结构来选择适当的功率电平。 此外,当整个光网络单元被去激活时,发射机的激光被关闭,从而最小化OLT处的不必要的功率消耗。
    • 37. 发明授权
    • Nonvolatile memory device and method of fabricating the same
    • 非易失性存储器件及其制造方法
    • US07642593B2
    • 2010-01-05
    • US11698658
    • 2007-01-26
    • Yong-Suk ChoiJeong-Uk HanHee-Seog JeonYong-Tae KimSeung-Jin YangHyok-Ki Kwon
    • Yong-Suk ChoiJeong-Uk HanHee-Seog JeonYong-Tae KimSeung-Jin YangHyok-Ki Kwon
    • H01L21/336
    • H01L29/42336H01L27/115H01L27/11521H01L29/7881
    • a nonvolatile memory device Includes an active region defined in a semiconductor substrate and a control gate electrode crossing over the active region. A gate insulating layer is interposed between the control gate electrode and the active reigon. A floating gate is formed in the active region to penetrate the control gate electrode and extend to a predetermined depth into the semiconductor substrate. A tunnel insulating layer is successively interposed between the control gate electrode and the floating gate, and between the semiconductor substrate and the floating gate. The floating gate may be formed after a trench is formed by sequentially etching a control gate conductive layer and the semiconductor substrate, and a tunnel insulating layer is formed on the trench and sidewalls of the control gate conductive layer. The floating gate is formed in the trench to extend into a predetermined depth into the semiconductor substrate.
    • 非易失性存储器件包括限定在半导体衬底中的有源区和跨越有源区的控制栅电极。 栅极绝缘层介于控制栅极电极和活性电极之间。 在有源区中形成浮栅,以穿透控制栅电极并延伸到预定深度进入半导体衬底。 隧道绝缘层被连续插入在控制栅电极和浮栅之间以及半导体衬底和浮栅之间。 可以在通过顺序蚀刻控制栅极导电层和半导体衬底形成沟槽之后形成浮置栅极,并且在控制栅极导电层的沟槽和侧壁上形成隧道绝缘层。 浮动栅极形成在沟槽中,以延伸到预定深度进入半导体衬底。