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    • 29. 发明授权
    • Reception device, integrated circuit, digital television receiver, reception method, and reception program
    • 接收装置,集成电路,数字电视接收机,接收方式和接收方案
    • US08433010B2
    • 2013-04-30
    • US12670934
    • 2009-06-11
    • Yoshinobu MatsumuraTomohiro Kimura
    • Yoshinobu MatsumuraTomohiro Kimura
    • H04L27/00
    • H04L5/0048H04L25/022H04L25/0232H04L25/0236H04L25/0256H04L2025/03414
    • An orthogonal transform subunit 14 separates a reception signal into carriers on a per-symbol basis. In a channel characteristics estimation subunit 15, (i) an SP channel characteristics estimation part 20 calculates channel characteristics at carriers to which SPs are allocated, by using signals output from the orthogonal transform subunit 14, (ii) a symbol direction interpolation part 30 interpolates, in the symbol (time) direction, signals output from the SP channel characteristics estimation part 20, (iii) a TMCC channel characteristics estimation part 40 calculates channel characteristics at carriers to which TMCCs are allocated, by using signals output from the orthogonal transfer subunit 14, and (iv) an adaptive interpolation part 50 calculates filter coefficients by using signals output from the symbol direction interpolation part 30 and the TMCC channel characteristics estimation part 40, and adaptively interpolates signals output from the symbol direction interpolation part 30 by using values of the calculated filter coefficients.
    • 正交变换子单元14将每个符号的接收信号分离为载波。 在信道特性估计子单元15中,(i)SP信道特性估计部20通过使用从正交变换子单元14输出的信号来计算分配有SP的载波的信道特性,(ii)符号方向插值部30内插 在符号(时间)方向上,从SP信道特性估计部20输出的信号,(iii)TMCC信道特性估计部40通过使用从正交转移子单元输出的信号来计算分配有TMCC的载波的信道特性 如图14所示,(iv)自适应插值部50使用从符号方向内插部30和TMCC信道特性估计部40输出的信号来计算滤波器系数,并且使用从符号方向插值部30输出的信号自适应地内插 计算滤波器系数。
    • 30. 发明申请
    • ELECTRONIC COMPONENT MOUNTING DEVICE AND AN OPERATION PERFORMING METHOD FOR MOUNTING ELECTRONIC COMPONENTS
    • 电子元件安装设备和安装电子元件的操作执行方法
    • US20120317804A1
    • 2012-12-20
    • US13581845
    • 2011-07-27
    • Tadashi EndoHiroshi OgataTomohiro KimuraTakaaki Yokoi
    • Tadashi EndoHiroshi OgataTomohiro KimuraTakaaki Yokoi
    • H05K13/04H05K3/30
    • H05K13/0452H01L2224/81H05K13/0413H05K13/0812H05K13/083Y10T29/49128Y10T29/4913Y10T29/49904Y10T29/53013Y10T29/53174Y10T29/53178
    • It is intended to provide an electronic component mounting device and an operation performing method for mounting electronic components so that both the operation quality and the productivity can be improved. Height precision division information that divide the height precision required for up and down movements of operating heads into the first division which indicates a normal height precision and the second division which indicates that a high height precision is required based on the type of electronic components are stored as operation data beforehand. In operation performing procedures, when an electronic component belongs to the first division, an operating head is made to move up and down based on an approximate operation position height derived from an approximate curved surface of the top surface of a board which is calculated by using the height measurement result obtained by measuring a plurality of height measuring points on the surface of the board, and when the electronic component belongs to the second division, the operating head is made to move up and down based on an individual operation position height obtained by individually measuring the board height at the operation position.
    • 旨在提供一种电子部件安装装置和用于安装电子部件的操作执行方法,从而可以提高操作质量和生产率。 存储高精度分割信息,其将操作头的上下运动所需的高度精度分成表示正常高度精度的第一分区,以及基于电子部件的类型指示需要高高度精度的第二分割 作为操作数据。 在操作执行过程中,当电子部件属于第一分割时,操作头基于从通过使用计算出的板的顶面的大致曲面导出的近似操作位置高度而上下移动 通过测量板的表面上的多个高度测量点而获得的高度测量结果,并且当电子部件属于第二分割时,操作头基于通过以下获得的各个操作位置高度而上下移动: 单独测量操作位置的板高度。