Polymer light-emitting material and polymer light-emitting device
    2.
    发明申请
    Polymer light-emitting material and polymer light-emitting device 失效
    聚合物发光材料和聚合物发光装置

    公开(公告)号:US20070051922A1

    公开(公告)日:2007-03-08

    申请号:US10573839

    申请日:2004-09-28

    IPC分类号: H01L51/54 C09K11/06 C08G61/00

    摘要: A polymer light emitting material which contains a polymer compound comprising a repeating unit of the following formula (1) or (2) and having a polystyrene-reduced number-average molecular weight of 103 to 108, and which exhibits light emission from the triplet excited state. [wherein Ar1 and Ar2 each independently represent a trivalent aromatic hydrocarbon group or a trivalent heterocyclic group. X1 and X2 each independently represent O, S, C(═O), S(═O), SO2, C(R1)(R2), Si(R3)(R4), N(R5), B(R6), P(R7) or P(═O)(R8). X1 and Ar2 bond to adjacent carbon atoms in the aromatic ring of Ar1; and X2 and Ar1 bond to adjacent carbon atoms in the aromatic ring of Ar2]; [wherein Ar3 and Ar4 each independently represent a trivalent aromatic hydrocarbon group or a trivalent heterocyclic group. X3 and X4 each independently represent N, B, P, C(R9) or Si(R10). X3 and Ar4 bond to adjacent carbon atoms in the aromatic ring of Ar3; and X4 and Ar3 bond to adjacent carbon atoms in the aromatic ring of Ar4].

    摘要翻译: 一种聚合物发光材料,其含有包含下式(1)或(2)的重复单元并且具有聚苯乙烯换算的数均分子量为10 3至10重量ppm的聚合物化合物 > 8,其表现出来自三重激发态的发光。 [其中Ar 1和Ar 2各自独立地表示三价芳族烃基或三价杂环基。 X 1和X 2各自独立地表示O,S,C(-O),S(-O),SO 2,C( (R 3)(R 2),Si(R 3)(R 4),N(R 4) B(R 6),P(R 7)或P(-O)(R 8) )。 X 1和Ar 2键连接到Ar 1的芳环中的相邻碳原子; 和X 2和Ar 1键连接到Ar 2的芳环中的相邻碳原子上; [其中Ar 3和Ar 4各自独立地表示三价芳族烃基或三价杂环基。 X 3和X 4各自独立地表示N,B,P,C(R 9)或Si(R 10) SUP>)。 X 3和Ar 4键连接到Ar 3的芳环中的相邻碳原子上; 和X 4和Ar 3键连接到Ar 4的芳环中的相邻碳原子上。

    Aromatic compound
    7.
    发明授权
    Aromatic compound 有权
    芳香族化合物

    公开(公告)号:US08378340B2

    公开(公告)日:2013-02-19

    申请号:US13487405

    申请日:2012-06-04

    IPC分类号: H01L35/24 C07D333/76

    CPC分类号: C07D307/91

    摘要: An aromatic compound of the following formula (1), (2), (5) or (6), wherein, Ar1 and Ar3 represent a tetra-valent aromatic hydrocarbon group or a tetra-valent heterocyclic group, and Ar2, Ar4, Ar5, Ar6 and Ar7 represent a tri-valent aromatic hydrocarbon group or a tri-valent heterocyclic group, A1 represents —Z1—, —Z2—Z3— or —Z4═Z5—, wherein Z1, Z2 and Z3 represent O, S or the like and Z4 and Z5 represent N, B, P or the like, X1, X2, X3, X4, X9, X10, X11, and X12 represent a halogen atom or the like.

    摘要翻译: 下式(1),(2),(5)或(6)的芳族化合物,其中Ar1和Ar3表示四元芳香族烃基或四价杂环基,Ar2,Ar4,Ar5 中,Ar 6和Ar 7表示3价芳香族烃基或3价杂环基,A1表示-Z 1 - ,Z 2 -Z 3 - 或-Z 4 = Z 5 - ,其中Z 1,Z 2和Z 3表示O,S或 Z 4和Z 5表示N,B,P等,X 1,X 2,X 3,X 4,X 9,X 10,X 11和X 12表示卤素原子等。

    Radar device
    8.
    发明授权
    Radar device 失效
    雷达设备

    公开(公告)号:US07486225B2

    公开(公告)日:2009-02-03

    申请号:US11902651

    申请日:2007-09-24

    IPC分类号: G01S13/42

    CPC分类号: H04B1/7085

    摘要: A data code generator produces a data code, while a reference code generator produces a reference code. The data code is phase-shifted by the data code generator in a predetermined sweep range, according to a sweep command signal given by a phase difference detector. The phase difference detector compares the phase of the data code with that of the reference code to obtain phase difference data. Based on the phase difference data, a correction signal generator produces a correction signal to keep the data code in phase with the reference, code. The phase setter optimizes the phase of the data code according to the correction signal.

    摘要翻译: 数据代码生成器生成数据代码,而参考代码生成器生成参考代码。 根据由相​​位差检测器给出的扫描命令信号,数据码由数据码发生器在预定的扫描范围内相移。 相位差检测器将数据码的相位与参考码的相位进行比较,以获得相位差数据。 基于相位差数据,校正信号发生器产生校正信号,以使数据代码与参考代码保持同相。 相位设定器根据校正信号优化数据码的相位。

    Composition and polymer light-emitting device
    9.
    发明申请
    Composition and polymer light-emitting device 审中-公开
    成分和聚合物发光装置

    公开(公告)号:US20070103059A1

    公开(公告)日:2007-05-10

    申请号:US10556771

    申请日:2004-05-14

    IPC分类号: H01L51/00 H01J1/62 C08L25/02

    摘要: A composition comprising a polymer compound having a polystyrene reduced number-average molecular weight of 103-108, and a compound showing light-emission from triplet excited state, and said polymer compound comprises a repeating unit of the following formula (1); and a polymer complex compound having visible light-emission in the solid state, and including a repeating unit of the above formula (1), a repeating unit selected from the above formulas (12) and (13), and a metal complex structure showing light-emission from triplet excited state: wherein, Ring P and Ring Q represent an aromatic ring, Y represents —O—, —S—, etc.; Ar15 and Ar16 represent a trivalent aromatic hydrocarbon group or a trivalent heterocyclic group; R40 represents an alkyl group, etc.; X represents a single bond, etc.; Ar6, Ar7, Ar8, and Ar9 represent an arylene group, etc.; Ar10, Ar11, and Ar12 represent aryl group, etc.; and x and y each independently represent 0 or 1, and 0≦x+y≦1.

    摘要翻译: 一种组合物,其包含聚苯乙烯换算的数均分子量为10 3〜10 8的高分子化合物,以及显示出来自三线态激发态的发光的化合物,所述 高分子化合物包含下式(1)的重复单元; 和具有固态的可见光发射的聚合物络合物,并且包含上述式(1)的重复单元,选自上述式(12)和(13)的重复单元和显示 三重激发态的发光:其中,环P和环Q表示芳环,Y表示-O - , - S-等; Ar 15和Ar 16代表三价芳族烃基或三价杂环基; R 40代表烷基等; X表示单键等; Ar 6,Ar 7,Ar 8和Ar 9代表亚芳基等; Ar 11,Ar 11和Ar 12代表芳基等; x和y各自独立地表示0或1,0 <= x + y <= 1。

    Transmission characteristic compensation control system

    公开(公告)号:US07103283B2

    公开(公告)日:2006-09-05

    申请号:US10123244

    申请日:2002-04-17

    IPC分类号: H04B10/00

    摘要: A transmission characteristic compensation system enables to reduce the generation of transmission deterioration by estimating an initially selected control direction, and also to compensate in advance with a setting value estimation so as to suppress the generation of transmission deterioration in advance. The transmission characteristic compensation control system includes a variable compensator having a control circuit; and an optimal setting value calculation portion for calculating an optimal setting value for the control circuit, wherein the optimal setting value calculation portion estimates future transmission deterioration on a predetermined time-by-time basis to set into the control circuit the optimal setting value for compensating the estimated transmission deterioration performed by the variable compensator.