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    • 52. 发明申请
    • ELECTRIC DISCHARGE DEVICE
    • 电动放电装置
    • US20100294743A1
    • 2010-11-25
    • US12864195
    • 2008-01-31
    • Takashi HashimotoKoichiro HattoriTakashi YuzawaYoshikazu Ukai
    • Takashi HashimotoKoichiro HattoriTakashi YuzawaYoshikazu Ukai
    • B23K15/00
    • B23H1/022
    • To provide an electric discharge device capable of performing an optimum process that achieves a high-quality process in a satisfactory quality of processing precision and the like. In an electric discharge device that processes a workpiece by electric discharge, a reserve electric-discharge pulse is applied by alternately switching between a positive polarity and a reverse polarity, and a current waveform shape of a main electric-discharge pulse is differentiated corresponding to a polarity of a reserve electric-discharge pulse, to a main electric-discharge pulse to be applied after detecting electric discharge following the reserve electric-discharge pulse. With this arrangement, a processing current shape can be optimized corresponding to an electric discharge characteristic, and thus a high-precision process can be performed.
    • 提供一种能够以令人满意的加工精度等进行优质加工的最佳工序的放电装置。 在通过放电处理工件的放电装置中,通过在正极性和反极性之间交替切换来施加保留放电脉冲,并且主放电脉冲的电流波形形状对应于 保留放电脉冲的极性与在保留放电脉冲之后检测到放电后施加的主放电脉冲。 通过这种布置,可以根据放电特性来优化处理电流形状,因此可以进行高精度处理。
    • 54. 发明申请
    • IMAGE DECODING DEVICE AND IMAGE DECODING METHOD
    • 图像解码设备和图像解码方法
    • US20100239024A1
    • 2010-09-23
    • US12743033
    • 2008-11-14
    • Keishi ChikamuraTakashi Hashimoto
    • Keishi ChikamuraTakashi Hashimoto
    • H04N7/12
    • H04N19/436H04N19/44H04N19/51H04N19/52H04N19/61
    • To decode coded pictures each of which has dependencies within the picture, using conventional decoding circuits and without deteriorating the efficiency in parallel processing.An image decoding device (100) includes: a stream segmentation unit (110) which segments a bit stream such that each of the coded pictures are segmented into two areas; and decoding processing units (120, 130) each of which decodes a corresponding one of the two segmented bit streams. The respective decoding processing units (120, 130) include: decoding units (123, 133) each of which generates decoded data including pixel data and control data; transfer determination units (124, 134) each of which determines whether or not the decoded data is referred to in another one of the processing units; data transfer units (125, 135) each of which transfers decoded data to the other processing unit; and decoding determination units (122, 132) each of which determines whether or not the decoded data to be referred to has been obtained. Each of the decoding units (123, 133) decodes a corresponding one of the segmented bit streams when reference decoded data has been obtained.
    • 为了解码每个图像中具有依赖性的编码图像,使用传统的解码电路并且不降低并行处理的效率。 图像解码装置(100)包括:流分割单元(110),其分割位流,使得每个编码图像被分割成两个区域; 以及解码处理单元(120,130),每个解码处理单元解码两个分段比特流中的对应的一个。 相应的解码处理单元(120,130)包括:解码单元(123,133),每个解码单元生成包括像素数据和控制数据的解码数据; 转移确定单元(124,134),每个确定单元确定在另一个处理单元中是否参考解码数据; 数据传送单元(125,135),每个数据传送单元将解码的数据传送到另一个处理单元; 以及解码确定单元(122,132),每个解码确定单元确定是否已经获得了要被提及的解码数据。 当已经获得参考解码数据时,解码单元(123,133)中的每一个解码对应的一个分段比特流。
    • 58. 发明授权
    • Integrated circuit package
    • 集成电路封装
    • US07519396B2
    • 2009-04-14
    • US11182556
    • 2005-07-15
    • Takashi Hashimoto
    • Takashi Hashimoto
    • H04M1/00H04B7/14H04B15/00H01Q21/00
    • H01Q3/24H01Q23/00
    • The integrated circuit package according to the present invention comprises: a plurality of functioning units operable to perform processing on input data and output a result of the processing; a plurality of antenna units each of which is positioned to (i) receive radio-transmitted data from at least another one of the plurality of antenna units by radio and (ii) transmit data to at least another one of the plurality of antenna units by radio; a first switching unit operable to selectively connect output of a first functioning unit, which is one of the plurality of functioning units, and a first antenna unit, which is one of the plurality of antenna units; and a second switching unit operable to selectively connect a second antenna unit, which is positioned to receive the radio-transmitted data from the first antenna unit by radio, and input of a second functioning unit different from the first functioning unit.
    • 根据本发明的集成电路封装包括:多个功能单元,用于对输入数据执行处理并输出处理结果; 多个天线单元,每个天线单元定位成(i)通过无线电从多个天线单元中的至少另一个天线单元接收无线电发送的数据;以及(ii)通过以下方式将数据发送到所述多个天线单元中的至少另一个天线单元 无线电; 第一切换单元,其可操作以选择性地连接作为所述多个功能单元中的一个的第一功能单元的输出和作为所述多个天线单元之一的第一天线单元; 以及第二切换单元,其可操作以选择性地连接第二天线单元,所述第二天线单元被定位成通过无线电从第一天线单元接收无线电发送的数据,以及与第一功能单元不同的第二功能单元的输入。
    • 59. 发明申请
    • SEMICONDUCTOR LIGHT-EMITTING DEVICE
    • 半导体发光器件
    • US20090045423A1
    • 2009-02-19
    • US12159919
    • 2006-12-27
    • Takashi HashimotoTakaki Yasuda
    • Takashi HashimotoTakaki Yasuda
    • H01L33/00
    • H01L33/60H01L2224/13H01L2224/45144H01L2224/48091H01L2224/48465H01L2924/00014H01L2924/00
    • An object of the present invention is to provide a light-emitting device with a high output and a high efficiency by improving the efficiency for utilizing light emitted from a semiconductor light-emitting element.The inventive semiconductor light-emitting device comprises a package substrate, a sub-mount provided on the package substrate, a semiconductor light-emitting element provided on the sub-mount, and a reflector surrounding the sub-mount and the semiconductor light-emitting element, wherein the positions and sizes of the sub-mount, light-emitting element and reflector satisfy the following relationship (A) on a cross section perpendicular to the package substrate that passes through the center of the semiconductor light-emitting element, r−1s≦(hs−d)×(1s−1c)/hc  (A) wherein r, 1s and 1c are distances from the drooping portion of the reflector, from the outer circumference of the sub-mount and from the outer circumference of the semiconductor light-emitting element to the center of the semiconductor light-emitting element, respectively, hs and d are heights of the sub-mount and of the drooping portion of the reflector, respectively, and hc is a height of the upper surface of the semiconductor light-emitting element from the upper surface of the sub-mount.
    • 本发明的目的是通过提高利用从半导体发光元件发出的光的效率来提供具有高输出和高效率的发光装置。 本发明的半导体发光装置包括封装基板,设置在封装基板上的副安装座,设置在副安装座上的半导体发光元件以及围绕副安装座和半导体发光元件的反射器 其中,子载体,发光元件和反射体的位置和尺寸在垂直于穿过半导体发光元件的中心的封装衬底的横截面上满足以下关系式(A):< -line-formula description =“In-line Formulas”end =“lead”?> r-1s <=(hs-d)x(1s-1c)/ hc(A)<?in-line-formula description = 其中r,1s和1c是与反射器的下垂部分相距离子载体的外圆周和半导体发光元件的外圆周的距离, 半导体发光元件的中心分别为hs和d为子的高度 和反射器的下垂部分的高度,hc是半导体发光元件的上表面的高度。