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    • 2. 发明申请
    • POWER FACTOR COMPENSATION TYPE LED LIGHTING APPARATUS
    • 功率因数补偿型LED照明设备
    • WO2012050348A3
    • 2012-06-07
    • PCT/KR2011007546
    • 2011-10-11
    • KOREA ADVANCED INST SCI & TECHOPTOMIND INCRIM CHUN TAEKKIM BONG CHEOLLEE BYUNG HUNKIM HYUN JAE
    • RIM CHUN TAEKKIM BONG CHEOLLEE BYUNG HUNKIM HYUN JAE
    • H05B37/02
    • H05B33/0809
    • A power factor compensation type LED lighting apparatus according to one embodiment of the present invention provides an LED lighting apparatus comprising: a compensation circuit including a connective terminal provided at both end portions thereof to be coupled with a socket of a rapid start type stabilizer,and a serial inductance-capacitance element serially connected to an inductance element and a capacitance element to be connected between the connective terminal of one end portion and the connective terminal of the other end portion among both end portions; and an LED load circuit including a rectification circuit connected to both ends of the capacitance element to rectify the AC current of the both ends of the capacitance element to DC current, and an LED module connected to both ends of the rectification circuit to be driven by the received DC current.
    • 根据本发明的一个实施例的功率因数补偿型LED照明装置提供了一种LED照明装置,包括:补偿电路,其包括设置在其两端部分以与快速启动型稳定器的插座耦合的连接端子,以及 串联连接到电感元件和电容元件的串联电感电容元件,所述电感元件和电容元件连接在两端部分中的一端部分的连接端子和另一端部分的连接端子之间; 以及LED负载电路,包括连接到所述电容元件的两端的整流电路,以将所述电容元件的两端的AC电流整流为DC电流,以及LED模块,连接到所述整流电路的两端以由 接收到的直流电流。
    • 6. 发明申请
    • DICHTUNGSANORDNUNG FÜR EIN RADIALWÄLZLAGER
    • 密封装置的向心轴承
    • WO2012049059A1
    • 2012-04-19
    • PCT/EP2011/067425
    • 2011-10-06
    • SCHAEFFLER TECHNOLOGIES AG & CO. KGZERNICKEL, AlexanderKIM, Hyun, JaeSTEINBINDER, Horst
    • ZERNICKEL, AlexanderKIM, Hyun, JaeSTEINBINDER, Horst
    • F16C19/06F16C33/78F16J15/32
    • F16C19/06F16C33/7859F16J13/20
    • Die Erfindung betrifft eine Dichtungsanordnung für ein Radialwälzlager (1), welches im Wesentlichen aus einem inneren Lagerring (2) und einem äußeren Lagerring (3) sowie aus einer Vielzahl zwischen den Lagerringen (2, 3) auf Laufbahnen (4,5) abrollender und durch einen Lagerkäfig (6) in gleichmäßigen Abständen zueinander gehaltener Wälzkörper (7) besteht. Die Dichtungsanordnung ist dabei zur Abdichtung des Zwischenraumes (8) zwischen den Lagerringen (2, 3) vorgesehen und wird zum einen durch zwei axial äußere sowie im Profilquerschnitt winkelförmig ausgebildete Schleuderringe (9, 10) aus einem dünnwandigen Stahlblechgebildet, die mit ihren axialen Schenkeln (11, 2) durch Presssitz am inneren Lagerring (2) befestigt sind und mit ihren radialen Schenkeln (13, 14) jeweils einen Dichtspalt (15, 16) zum äußeren Lagerring (3) bilden. Zum anderen wird die Dichtungsanordnung durch zwei axial innere, jeweils aus einer Stahlarmierung (19, 20) mit einer Elastomerummantelung (21, 22) bestehende Dichtringe (17, 18) gebildet, die mit ihren Außenumfangsseiten (23, 24) durch Presssitz am äußeren Lagerring (3) befestigt sind und an ihren Innenumfangsseiten (25, 26) zumindest jeweils eine, mit gegenüberliegenden Dichtflächen (28, 29) an der Außenmantelfläche (27) des inneren Lagerrings (2) in Dichtkontakt stehende radiale Dichtlippe (30, 31) sowie zumindest jeweils eine, mit gegenüberliegenden Dichtflächen (34, 35) an den Innenseiten (32, 33) der radialen Schenkel (13, 14) der Schleuderringe (9, 10) in Dichtkontakt stehende axiale Dichtlippe (36, 37) aufweisen. Erfindungsgemäß sind zumindest die mit den axialen Dichtlippen (36, 37) der Dichtringe (17, 18) in Dichtkontakt stehenden Dichtflächen (34, 35) an den Innenseiten (32, 33) der radialen Schenkel (13, 14) der Schleuderringe (9, 10) mit zusätzlichen Querschnittsprofilierungen ausgebildet, durch welche die Kontaktpressung zwischen den axialen Dichtlippen (36, 37) und deren Dichtflächen (34, 35) bei axialen Verkippungen der Lagerringe (2, 3) zueinander zumindest annähernd konstant bleibt.
    • 本发明涉及一种密封装置,用于径向滚子轴承(1),其基本上从内轴承环(2)和外轴承环轧制(3)和从所述轴承环之间的各种各样的(2,3)上的滚道(4,5)和 由轴承保持架(6)彼此以规则的间隔保持所述滚动元件(7)。 所述密封组件被设置用于密封所述中间空间(8)的轴承环之间(2,3),并且是在一方面通过两个轴向外,以及在轮廓横截面角形旋环(9,10)由形成有薄壁钢板(具有它们的轴向的四肢 11,2)(通过压轴承内环2上配合)与它们的径向臂(13,14)固定每个都具有密封间隙(15,16)到所述外轴承环(3)的形式。 其次,密封组件由形成两个轴向内侧,各自由钢加强件(19,20)与弹性体外壳(21,22)的现有的密封环(17,18)通过压配合在外轴承环上形成与它们的外周侧(23,24) (3)在密封接触径向密封唇(30,31)被安装,并在至少其内周侧(25,26)中的每一个,与所述内轴承环(2)竖立的外侧表面(27)在相对的密封表面(28,29)和至少 每一个,以在离心环(9,10)直立在密封的轴向密封唇(36,37)相接触的径向腿部(13,14)的内侧面(32,33)相对的密封面(34,35)。 根据本发明,至少与所述轴向密封所述密封环密封接触静止密封表面上的内侧的径向腿的离心环的唇部(36,37)(17,18)(34,35)(32,33)(13,14)(图9, 10)形成有额外的横截面轮廓通过该轴向密封唇(36,37),并在轴承环的轴向倾斜(2其密封表面(34,35)之间的接触压力,3)彼此至少大致保持恒定。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR DETERMINING TIMING FOR INITIAL RANGING OF USER EQUIPMENT USING RANGING OF ADJACENT PIECES OF USER EQUIPMENT IN MULTI-HOP MOBILE RELAY SYSTEM
    • 用于多用户移动终端系统中用户设备的邻接角度用户设备初始范围确定时间的方法和装置
    • WO2008069457A1
    • 2008-06-12
    • PCT/KR2007/005467
    • 2007-10-31
    • ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEKIM, Hyun-JaeKIM, Young-Il
    • KIM, Hyun-JaeKIM, Young-Il
    • H04L7/00
    • H04W56/002H04B7/2606H04W16/26H04W24/10H04W92/18
    • Provided is a method and apparatus for determining timing for initial ranging of user equipment by using ranging of adjacent pieces of user equipment in a multi-hop mobile relay (MMR) system, and more particularly, a method and apparatus for determining timing for initial ranging of user equipment in which a power value and a timing value for periodic ranging of adjacent pieces of user equipment are measured so as to minimize an uplink timing error of a base station. In the MMR system, user equipment transmits an initial ranging code to the base station with irregular timing while not knowing an exact start point of an uplink of the base station. In particular, if the user equipment attempts the initial ranging at the same time as when adjacent pieces of user equipment attempt the periodic ranging and the handover ranging, an error occurs between transmission timing of the initial ranging and uplink timing, thereby acting as an inter-symbol interference (ISI) and inter-channel interference (ICI) of different ranging. As a result, the initial ranging acts as an interference signal in a ranging process of adjacent pieces of user equipment. However, the apparatus and method can minimize a timing error of the initial ranging code of user equipment by avoiding the initial ranging acting as the interference signal.
    • 提供了一种用于通过使用多跳移动中继(MMR)系统中的相邻用户设备的测距来确定用户设备的初始测距的定时的方法和装置,更具体地,用于确定初始测距的定时的方法和装置 测量用于相邻用户设备的周期性测距的功率值和定时值的用户设备,以使基站的上行链路定时误差最小化。 在MMR系统中,用户设备以不规则的定时向基站发送初始测距码,而不知道基站的上行链路的确切起点。 特别地,如果用户设备在相邻的用户设备尝试周期性测距和切换测距的同时尝试初始测距,则在初始测距和上行链路定时的传输定时之间出现错误, 符号干扰(ISI)和不同范围的信道间干扰(ICI)。 结果,初始测距在相邻的用户设备的测距过程中充当干扰信号。 然而,该装置和方法可以通过避免作为干扰信号的初始测距来最小化用户设备的初始测距码的定时误差。
    • 8. 发明申请
    • MIXCOLUMN BLOCK DEVICE AND METHOD OF PERFORMING MULTIPLICATION CALCULATION USING THE SAME
    • MIXCOLUMN块装置及使用其进行多项式计算的方法
    • WO2008069386A2
    • 2008-06-12
    • PCT/KR2007/003027
    • 2007-06-21
    • ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTESAMSUNG ELECTRONICS CO., LTD.OH, Jung-HoonKIM, Hyun-JaeKIM, Young-Il
    • OH, Jung-HoonKIM, Hyun-JaeKIM, Young-Il
    • H04L9/06
    • H04L9/0631H04L2209/12
    • The present invention relates to a MixColumn block device and a method of performing a multiplication operation using the same. According to an exemplary embodiment of the present invention, a MixColumn block device includes a storage unit that stores input data of a bit unit as a byte unit and outputs stored input bytes, a first multiplication operation block unit that performs and outputs multiplication operations of {01 } and {02} as hexadecimal values for the input bytes that are received from the storage unit, a second multiplication operation block unit that performs and outputs multiplication operations of {01 }, {02}, and {03} as hexadecimal values by using the {01 } and {02} multiplication operation results received from the first multiplication operation block unit, and an exclusive logical sum operation unit that performs an exclusive logical sum operation on the {01 }, {02}, and {03} multiplication operation results received from the second multiplication operation block unit and outputs output bytes for the input bytes.
    • 本发明涉及一种MixColumn块装置和使用该装置进行乘法运算的方法。 根据本发明的示例性实施例,MixColumn块装置包括:存储单元,其将位单元的输入数据存储为字节单元并输出存储的输入字节;第一乘法运算块单元,其执行并输出{ 01}和{02}作为从存储单元接收的输入字节的十六进制值,第二乘法运算块单元,其执行并输出{01},{02}和{03}的乘法运算作为十六进制值,由 使用从第一乘法运算块单元接收的{01}和{02}乘法运算结果,以及对{01},{02}和{03}乘法执行异或运算的异或逻辑和运算单元 从第二乘法运算块单元接收到运算结果,输出输入字节的输出字节。
    • 10. 发明申请
    • THIN FILM TRANSISTOR ARRAY PANEL
    • 薄膜晶体管阵列
    • WO2004042781A3
    • 2004-09-30
    • PCT/KR0302346
    • 2003-11-04
    • SAMSUNG ELECTRONICS CO LTDLEE SU-GYEONGKANG SOOK-YOUNGKANG MYUNG-KOOKIM HYUN-JAEIM JAMES S
    • LEE SU-GYEONGKANG SOOK-YOUNGKANG MYUNG-KOOKIM HYUN-JAEIM JAMES S
    • G02F1/136H01L21/77H01L27/12H01L29/786
    • H01L27/1285H01L27/1214H01L27/1296H01L29/78645
    • A thin film transistor array panel is provided, which includes: a substrate (110) including a plurality of pixel areas; a semiconductor layer (140, 142) formed on the substrate (110) and including a plurality of pairs of first (140) and second (142) semiconductor portions in respective pixel areas; a first insulating layer (130) formed on the semiconductor layer; a gate wire (121-124); formed on the first insulating layer; a second insulating layer (180) formed on the gate wire (121-124); a data wire (171, 172) formed on the second insulating layer (180); a third insulating layer (185) formed on the data wire (171, 172) a pixel electrode (192) formed on the third insulating layer (185) and connected to the data wire (171, 172), wherein width and length of at least one of the first (140) and the second (142) semiconductor portions vary between at least two pixel areas.
    • 提供薄膜晶体管阵列面板,其包括:包括多个像素区域的基板(110); 形成在所述基板(110)上并在各像素区域中包括多对第一(140)和第二(142)半导体部分的半导体层(140,142) 形成在所述半导体层上的第一绝缘层(130) 栅极线(121-124); 形成在第一绝缘层上; 形成在栅极导线(121-124)上的第二绝缘层(180); 形成在第二绝缘层(180)上的数据线(171,172); 形成在数据线(171,172)上的形成在第三绝缘层(185)上并连接到数据线(171,172)的像素电极(192)的第三绝缘层(185),其中宽度和长度为 第一(140)和第二(142)半导体部分中的至少一个在至少两个像素区域之间变化。