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    • 1. 发明申请
    • MOTION VECTOR DETECTION BY STEPWISE SEARCH
    • 运动矢量检测通过STEPWISE搜索
    • US20090268822A1
    • 2009-10-29
    • US12273717
    • 2008-11-19
    • Kengo TERADAKouji NakajimaKeisuke Kondou
    • Kengo TERADAKouji NakajimaKeisuke Kondou
    • H04N11/02G06K9/36H04N7/12
    • H04N19/533G06T7/238G06T2207/10016H04N19/61
    • A moving image encoding apparatus includes a motion vector detecting unit for executing from a wide and coarse search to a narrow and fine search in a plurality of steps and in a stepwise manner to detect a motion vector of each block in an input image. The motion vector detecting unit includes a block combining unit for generating a combination block, depending on a result of detection in a search step, a search use pixel extracting unit for extracting a search use pixel to be used in a next search step, from the combination block, and a second search combination block searching unit for performing the next search step with respect to the combination block using the search use pixel, and setting a detected motion vector of the combination block as the motion vector of each block of the combination block.
    • 运动图像编码装置包括:运动矢量检测单元,用于从多个步骤中以逐步的方式从广泛粗略搜索到窄和精细搜索,以检测输入图像中每个块的运动矢量。 运动矢量检测单元包括:块组合单元,用于根据搜索步骤中的检测结果生成组合块;搜索使用像素提取单元,用于从下一个搜索步骤中提取要使用的搜索使用像素 组合块和第二搜索组合块搜索单元,用于使用搜索使用像素执行关于组合块的下一个搜索步骤,并且将检测到的组合块的运动矢量设置为组合块的每个块的运动矢量 。
    • 2. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US07724984B2
    • 2010-05-25
    • US11463979
    • 2006-08-11
    • Kengo TeradaEiji OtomuraKouji NakajimaAkira Sakamoto
    • Kengo TeradaEiji OtomuraKouji NakajimaAkira Sakamoto
    • G06K9/40
    • G06F9/5027G06F9/52G06F9/522G06F2209/5017G06T1/20H04N19/42
    • An image processing apparatus of the invention includes: a plurality of processing units which share image processing; a parameter memory unit which holds a parameter specifying an operation of each of the processing units; and a control unit which controls the plurality of processing units, and the control unit includes: a sequence management unit which activates each of the processing units according to a sequence indicating a sequence of activation of and completion of processing by each of the processing units, and confirms completion of the processing; and a parameter setting unit which, in advance of activation of each of the processing units by the sequence management unit, reads a parameter for each processing unit to be activated, from the parameter memory unit according to a memory map indicating an address of the parameter for the processing unit, and sets the parameter to the processing unit according to the read result.
    • 本发明的图像处理装置包括:共享图像处理的多个处理单元; 参数存储单元,其保存指定每个处理单元的操作的参数; 以及控制单元,其控制多个处理单元,并且所述控制单元包括:序列管理单元,其根据指示每个所述处理单元的激活和完成处理的顺序来激活每个处理单元, 并确认完成处理; 以及参数设定单元,其在由所述顺序管理单元激活每个所述处理单元之前,根据指示所述参数的地址的存储器映射从所述参数存储单元读取要激活的每个处理单元的参数 用于处理单元,并根据读取结果将参数设置到处理单元。
    • 5. 发明授权
    • Digital amplifier
    • 数字放大器
    • US06919771B2
    • 2005-07-19
    • US10669374
    • 2003-09-25
    • Kouji Nakajima
    • Kouji Nakajima
    • H03F3/181H03F3/217H03F3/38H03G3/30H03G3/34H03K7/08G11B20/10
    • H03G3/3021H03F3/217H03F2200/03H03F2200/351H03G3/341
    • An object of the present invention is to provide a digital amplifier which is capable of preventing a reproduction of an analogue audio signal from a loud speaker, when an output sound volume from the loud speaker is set to zero and when inputting of a digital audio signal or an input signal is stopped. In order to achieve the object, in the digital amplifier of the present invention, a silent PWM signal output section 7 outputs a PWM signal having a duty ratio of 50%, instead of a PWM signal generated by the PWM signal generating section 6, in the following cases: the factor detecting section 3 detects that the digital audio signal is multiplied by the factor “0” in the gain regulation section 2, the silent signal determining section 4 determines that the signal input from the reproducing unit 13 is stopped, and the silent signal determining section 4 determines that the digital audio signal is a signal at a silent level.
    • 本发明的目的是提供一种数字放大器,其能够防止从扬声器再现模拟音频信号,当来自扬声器的输出音量被设置为零时,并且当输入数字音频信号 或输入信号停止。 为了实现该目的,在本发明的数字放大器中,静音PWM信号输出部分7输出占空比为50%的PWM信号,而不是由PWM信号产生部分6产生的PWM信号 以下情况:因素检测部分3检测到数字音频信号在增益调节部分2中乘以因子“0”,无声信号确定部分4确定从再现单元13输入的信号停止,以及 无声信号确定部分4确定数字音频信号是静音级的信号。
    • 6. 发明授权
    • Color cathode ray tube with first and second magnetic compensators
    • 彩色阴极射线管,带有第一和第二磁补偿器
    • US06211610B1
    • 2001-04-03
    • US09115651
    • 1998-07-15
    • Kouji Nakajima
    • Kouji Nakajima
    • H01J2976
    • H01J29/703
    • A cathode ray tube including (a) a panel having a fluorescent film on an inner surface thereof for three primary colors emission, (b) an electron gun for emitting electron beams to the fluorescent film, (c) a deflecting yoke located between the panel and the electron gun, and including first and second coils for generating horizontally and vertically deflected magnet fields, (d) at least one first compensator (34) composed of magnetic substance having high magnetic permeability and low hysteresis characteristic for compensating for a profile of magnetic flux density in the horizontally deflected magnetic field, and (e) at least one second compensator (35) composed of magnetic substance having hysteresis characteristic for keeping magnetization when a polarity of the horizontally deflected magnetic field is inverted. The first compensator compensates for misconvergence generated between a central electron beam and two electron beams between which the central electron beam is situated, and the second compensator compensates for misconvergence generated between the two electron beams. Thus, misconvergence is readily compensated for, ensuring qualified images on a screen.
    • 一种阴极射线管,包括:(a)在其内表面具有用于三原色发射的荧光膜的面板,(b)用于向荧光膜发射电子束的电子枪,(c)位于面板之间的偏转磁轭 和电子枪,并且包括用于产生水平和垂直偏转的磁场的第一和第二线圈,(d)由具有高导磁率和低磁滞特性的磁性物质组成的至少一个第一补偿器(34),用于补偿磁场的轮廓 水平偏转磁场中的磁通密度;(e)至少一个第二补偿器(35),其由具有磁滞特性的磁性体组成,该磁滞特性用于当水平偏转磁场的极性反转时保持磁化。 第一补偿器补偿在中心电子束和中心电子束所在的两个电子束之间产生的失会聚,第二补偿器补偿在两个电子束之间产生的失会聚。 因此,容易地弥补失会聚,从而确保屏幕上的合格图像。
    • 8. 发明授权
    • Power semiconductor device including gate lead-out electrode
    • 功率半导体器件包括栅极引出电极
    • US08183645B2
    • 2012-05-22
    • US12588392
    • 2009-10-14
    • Kouji Nakajima
    • Kouji Nakajima
    • H01L21/70
    • H01L29/7802H01L21/823475H01L29/1095H01L29/4238H01L29/4925H01L29/66712H01L29/7811H01L29/7813
    • Flexibility for the design of the pattern layout of the gate lead-out electrode and the source electrode is enhanced without increasing the chip thickness of the semiconductor device. A semiconductor device includes a cell region where plural transistor cells are arranged and a gate finger region different from a region where the cell region is formed. In the cell region, a gate electrode formed of a polysilicon (first conductive material) is formed. A polysilicon layer formed indivisibly with the gate electrode is formed in the gate finger region. An adhesion metal layer and a wiring metal layer are formed above the polysilicon layer by a lift-off method. The gate lead-out electrode is formed of a laminate structure including the polysilicon layer, the adhesion metal layer, and the wiring metal layer. A single layer of interlayer insulation film covering them is formed, on which a source electrode is formed.
    • 在不增加半导体器件的芯片厚度的情况下,增强了栅极引出电极和源电极的图案布局设计的灵活性。 半导体器件包括布置多个晶体管单元的单元区域和与形成单元区域的区域不同的栅极指状区域。 在单元区域中,形成由多晶硅(第一导电材料)形成的栅电极。 在栅指区域中形成与栅电极不可分割地形成的多晶硅层。 通过剥离法在多晶硅层的上方形成粘附金属层和布线金属层。 栅极引出电极由包括多晶硅层,粘合金属层和布线金属层的层叠结构形成。 形成覆盖它们的单层层间绝缘膜,在其上形成源电极。