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    • 121. 发明申请
    • CAPACITANCE SENSING APPARATUS AND METHOD, AND TOUCH SCREEN APPARATUS
    • 电容感应装置和方法,触摸屏设备
    • US20140009431A1
    • 2014-01-09
    • US13607919
    • 2012-09-10
    • Yong Il KwonKyung Hee HongSang Ho LeeTah Joon Park
    • Yong Il KwonKyung Hee HongSang Ho LeeTah Joon Park
    • G06F3/044
    • G06F3/044G06F3/0416
    • There is provided a capacitance sensing apparatus including: a driving circuit unit sequentially applying a driving signal to each of a plurality of first electrodes; a sensing circuit unit including a first integrating circuit detecting a first change in capacitance generated in a plurality of second electrodes by the driving signal and a second integrating circuit connected to another first electrode adjacent to the first electrode to which the driving signal is applied; and an operating unit connected to the sensing circuit unit to determine a touch input, wherein the second integrating circuit detects a second change in capacitance generated due to noise in the another first electrode, and the operating unit determines the touch input based on the first and second changes in capacitance.
    • 提供了一种电容感测装置,包括:驱动电路单元,对多个第一电极中的每一个依次施加驱动信号; 感测电路单元,包括:第一积分电路,其通过驱动信号检测在多个第二电极中产生的电容的第一变化;以及第二积分电路,连接到与施加驱动信号的第一电极相邻的另一第一电极; 以及连接到所述感测电路单元以确定触摸输入的操作单元,其中所述第二积分电路检测由于所述另一第一电极中的噪声而产生的电容的第二变化,并且所述操作单元基于所述第一和第二电极确定所述触摸输入, 二次电容变化。
    • 123. 发明申请
    • TOUCH SENSING APPARATUS AND DATA PROCESSING METHOD THEREOF
    • 触摸感应装置及其数据处理方法
    • US20130321327A1
    • 2013-12-05
    • US13602678
    • 2012-09-04
    • Hyun Suk LEESang Ho LeeTah Joon ParkKang Joo Kim
    • Hyun Suk LEESang Ho LeeTah Joon ParkKang Joo Kim
    • G06F3/041
    • G06F3/0416G06F3/044
    • There are provided a data processing method and a touch sensing apparatus. The data processing method includes (a) obtaining a plurality of pieces of sensing data according to one or more touch inputs; (b) selecting one or more pieces of temporary reference data having the minimum difference value between adjacent other pieces of sensing data; (c) calculating difference values between the one or more pieces of temporary reference data; (d) calculating an N number of difference values between the N number of pieces of sensing data obtained from the nodes included in the Kth row and an N number of pieces of sensing data obtained from nodes included in the K-1th row; and (e) determining the temporary reference data having a relatively small representative value as reference sensing data of the Kth row.
    • 提供了数据处理方法和触摸感测装置。 数据处理方法包括:(a)根据一个或多个触摸输入获得多条感测数据; (b)选择在相邻的其它感测数据之间具有最小差值的一个或多个临时参考数据; (c)计算一条或多条临时参考数据之间的差值; (d)计算从包括在第K行中的节点获得的N个感测数据中的N个差值的N个数和从包括在第K-1行中的节点获得的N个感测数据; 和(e)确定具有相对小的代表值的临时参考数据作为第K行的参考感测数据。
    • 125. 发明授权
    • Method for evolved multimedia broadcast/multicast service
    • 演进多媒体广播/组播服务的方法
    • US08509183B2
    • 2013-08-13
    • US12618836
    • 2009-11-16
    • Dae Ik KimJee Hyeon NaSang Ho Lee
    • Dae Ik KimJee Hyeon NaSang Ho Lee
    • H04B1/44H04W4/00H04W36/00H04J3/24
    • H04W36/0072H04W72/005
    • According to an Evolved Multimedia Broadcast Multicast Service (E-MBMS) service method of the present invention, an E-MBMS service is received from a first base station. If neighbor cell MBMS control information is modified in the first base station, MBMS paging information, including a factor informing that the neighbor cell MBMS control information has been modified, is received from the first base station. When an MBMS control information update cycle is reached, modified neighbor cell MBMS control information is received from the first base station and is stored. When a user equipment moves from the first base station to a second base station, a P-T-M radio bearer is reset based on the stored neighbor cell MBMS control information and receiving the E-MBMS service from the second base station. Accordingly, the consumption of battery power can be reduced, and an E-MBMS service being services is not interrupted although a user equipment moves.
    • 根据本发明的Evolved Multimedia Broadcast Multicast Service(E-MBMS)服务方法,从第一基站接收E-MBMS服务。 如果在第一基站中修改了相邻小区MBMS控制信息,则从第一基站接收包括通知相邻小区MBMS控制信息已被修改的因素的MBMS寻呼信息。 当达到MBMS控制信息更新周期时,从第一基站接收修改后的相邻小区MBMS控制信息,并存储。 当用户设备从第一基站移动到第二基站时,基于所存储的相邻小区MBMS控制信息重新设置P-T-M无线承载,并从第二基站接收E-MBMS业务。 因此,尽管用户设备移动,但是可以减少电池电力的消耗,并且作为服务的E-MBMS服务不被中断。
    • 126. 发明申请
    • TOUCH SENSING APPARATUS AND METHOD THEREOF
    • 触摸感应装置及其方法
    • US20130127774A1
    • 2013-05-23
    • US13359620
    • 2012-01-27
    • Gyung Hee HongTah Joon ParkSang Ho LeeYong Il Kwon
    • Gyung Hee HongTah Joon ParkSang Ho LeeYong Il Kwon
    • G06F3/044
    • G06F3/044G06F3/0416
    • There are provided a touch sensing apparatus and a touch sensing method. The touch sensing apparatus includes: a panel unit provided with a plurality of electrodes; a sensing circuit unit detecting variations in capacitance in the plurality of electrodes; and a calculating unit determining a touch from the variations in capacitance, wherein the calculating unit applies different parameters for determining the touch to the plurality of individual electrodes. The parameters such as an integration time, a digital signal conversion time, and a driving signal application time are set differently according to positions in which the variations in capacitance are detected, driving efficiency may be improved and power consumption may be significantly reduced.
    • 提供了触摸感测装置和触摸感测方法。 触摸感测装置包括:具有多个电极的面板单元; 感测电路单元,其检测所述多个电极中的电容的变化; 以及计算单元,根据电容的变化确定触摸,其中所述计算单元应用用于确定对所述多个单独电极的触摸的不同参数。 根据检测到电容变化的位置,积分时间,数字信号转换时间和驱动信号施加时间等参数被不同地设定,可以提高驱动效率,并且能够显着降低功耗。
    • 128. 发明授权
    • RF receiver having timing offset recovery function and timing offset recovery method using thereof
    • RF接收机具有定时偏移恢复功能和使用其定时偏移恢复方法
    • US08184742B2
    • 2012-05-22
    • US12137463
    • 2008-06-11
    • U Sang LeeJae Hyung LeeSang Ho LeeKwang Mook Lee
    • U Sang LeeJae Hyung LeeSang Ho LeeKwang Mook Lee
    • H03K9/00H04L27/00
    • H04L7/043H04B1/7075
    • A preprocessing unit samples and digitalizes analog signal. A differential operation unit delays digitalized signal for a predetermined period and differentiates delayed signals. A correlation unit correlates differentiated signal with a plurality of predetermined PN code sequences. A setting unit includes a shift register having a plurality of storage locations for shifting the correlation values and sequentially storing shifted correlation values at the storage locations, respectively, a detector including the determination slots for detecting the storage location of the maximum value, and a slot setter for comparing the storage location of the maximum value from the detector with the predetermined reference storage location and shifting the determination slots by the difference therebetween. A demodulation value estimation unit estimates, as a demodulation value of the received analog signal, a symbol of a PN code sequence corresponding to the maximum value from the shifted determination slots.
    • 预处理单元对模拟信号进行采样和数字化。 差分操作单元在预定时间段内延迟数字化信号并区分延迟信号。 相关单元将微分信号与多个预定PN码序列相关联。 一个设置单元包括一个移位寄存器,它具有多个存储位置,用于移位相关值,并分别在存储位置依次存储偏移的相关值;检测器,包括用于检测最大值的存储位置的确定时隙; 用于将来自检测器的最大值的存储位置与预定参考存储位置进行比较,并且将确定时隙移位其间的差。 解调值估计单元从所述移位的确定时隙估计与所接收的模拟信号的解调值相对应的最大值的PN码序列的符号。
    • 129. 发明申请
    • PERSONAL PORTABLE DEVICE
    • 个人便携式设备
    • US20110102989A1
    • 2011-05-05
    • US12934985
    • 2009-03-27
    • Sang Ho LeeByung Han Kim
    • Sang Ho LeeByung Han Kim
    • H05K5/03
    • G06F1/1626G06F1/1624G06F1/1679G06F2200/1634H04M1/0237H04M1/0247
    • A personal portable device that can simplify a structure and provide convenience in use is disclosed. A personal portable device comprising a main body portion including a display portion, a first cover portion coupled to the main body portion such that it is moved to an overlap position with the main body portion and an extension position to the outside of the main body portion, and a second cover portion coupled to the main body portion such that it is moved to an overlap position with the main body portion and an extension position to the outside of the main body portion, the personal portable device comprising: a hinge unit having one side connected to the first cover portion and the other side connected to the second cover portion, when any one of the first cover portion and the second cover portion is moved with respect to the main body portion, moving the other one together with the one.
    • 公开了可以简化结构并提供使用方便的个人便携式设备。 一种个人便携式装置,包括:主体部分,包括显示部分;第一盖部分,其联接到主体部分,使得其移动到与主体部分的重叠位置,以及到主体部分的外部的延伸位置 以及第二盖部分,其联接到主体部分,使得其移动到与主体部分的重叠位置和到主体部分的外部的延伸位置,该个人便携式设备包括:铰链单元,其具有一个 一侧连接到第一盖部分,另一侧连接到第二盖部分,当第一盖部分和第二盖部分中的任何一个相对于主体部分移动时,另一个与该主体部分一起移动。
    • 130. 发明申请
    • SEMICONDUCTOR DEVICE HAVING VOIDS ALONG BURIED GATES AND METHOD FOR MANUFACTURING THE SAME
    • 具有孔盖的半导体器件及其制造方法
    • US20110024829A1
    • 2011-02-03
    • US12639193
    • 2009-12-16
    • Sang Ho Lee
    • Sang Ho Lee
    • H01L29/78H01L21/28
    • H01L29/4236
    • A semiconductor device having voids along buried gates and a method of manufacturing the same is presented. The semiconductor device includes recesses, a first gate electrode, a second gate electrode, and a gate protection layer. The first gate electrode fills in a lower portion of the recess. The second gate electrode is formed on the first gate electrode and partially fills in the upper portion of the recess such that the second gate electrode has a downwardly tapered width. The gate protection layer fills in the remaining portion of the recess while leaving voids next to the second gate electrode. Accordingly, it is thought that the voids reduce gate resistance and improve the gate-induced drain leakage (GIDL) characteristics of the resultant device.
    • 提出了一种具有沿掩埋栅极的空隙的半导体器件及其制造方法。 半导体器件包括凹槽,第一栅电极,第二栅极电极和栅极保护层。 第一栅电极填充凹部的下部。 第二栅电极形成在第一栅电极上并且部分地填充在凹部的上部,使得第二栅极具有向下锥形的宽度。 栅极保护层填充凹部的剩余部分,同时留下邻近第二栅电极的空隙。 因此,认为空穴减小栅极电阻并提高所得器件的栅极引起的漏极漏极(GIDL)特性。