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    • 31. 发明授权
    • Marginless status determination circuit
    • 无边缘状态确定电路
    • US07454649B2
    • 2008-11-18
    • US11238957
    • 2005-09-30
    • Kenji YoshidaYoshihiko KoikeTetsuya Yoshida
    • Kenji YoshidaYoshihiko KoikeTetsuya Yoshida
    • G06F1/00
    • G01R31/31727
    • By including a unit for storing data to be determined, a unit for delaying the data, a unit for storing the output of the delay unit, and a unit for comparing the storage contents of the data before the delay with the storage contents of the data after the delay, and outputting a marginless status detection signal when they are different, the presence/absence of a margin is monitored regardless of ambient conditions by using an output marginless status detection signal as a switch control signal for a clock switch circuit, thereby operating electronic equipment without changing a frequency of a clock signal up to the critical condition.
    • 通过包括用于存储要确定的数据的单元,用于延迟数据的单元,用于存储延迟单元的输出的单元,以及用于将延迟之前的数据的存储内容与数据的存储内容进行比较的单元 在延迟之后,并且当它们不同时输出无余位状态检测信号,通过使用输出无余位状态检测信号作为时钟切换电路的开关控制信号,无论环境条件如何,都监视是否存在余量,从而操作 电子设备,而不改变时钟信号的频率,直到临界状态。
    • 34. 发明申请
    • Fluid colloid crystal and process for producing three-dimensionsl aligned particle mass therefrom
    • 流体胶体晶体和从其中产生三维尺寸的颗粒物质的方法
    • US20060182968A1
    • 2006-08-17
    • US10565576
    • 2004-07-30
    • Tetsuya YoshidaYuka OkudaYouichi TakizawaJunji Watanabe
    • Tetsuya YoshidaYuka OkudaYouichi TakizawaJunji Watanabe
    • B32B5/16B05D7/00B05D1/12
    • C08J3/05C08F220/14G02B5/20Y10T428/2982
    • Fluid colloidal crystals comprising a solid-liquid dispersion electrostatically charged at not more than 2000 μS/cm in terms of an electrical conductivity, wherein the solid-liquid dispersion comprises, as a dispersoid, electrostatically chargeable spherical colloidal particles of an organic or inorganic polymer having a mean volume diameter (d) of not more than 30 μm, and as a dispersion medium, an aqueous solution or a dissolving water-containing non-aqueous solution, the dispersion concentration of the spherical colloidal particles is not more than 70%, around the dispersoid an electric double layer of a given thickness (Δe) is formed, and the spherical colloidal particles form a three-dimensionally ordered lattice that shows fluidity and is a particle array structure in which the colloidal particles are aligned longitudinally and laterally in a lattice form while an interparticle distance (L) defined as a distance between centers of the particles arranged opposite to each other along the center line satisfies the relationship (d)
    • 流体胶体晶体包含以导电率计不超过2000μS/ cm静电荷的固液分散体,其中所述固液分散体包含有机或无机聚合物的分散质,可静电电荷的球形胶体颗粒,其具有 平均体积直径(d)不超过30μm,作为分散介质,水溶液或含溶解水的非水溶液,球状胶体粒子的分散浓度不超过70% 形成给定厚度(Deltae)的分散质双电层,并且球形胶体颗粒形成显示流动性的三维有序晶格,并且是粒子阵列结构,其中胶体颗粒在晶格中纵向和横向排列 形成颗粒间距离(L),其被定义为与每个第二相对排列的颗粒的中心之间的距离 (d)<(L)<=(d)+2(Deltae)。 一种制备三维有序晶格的方法,包括干燥流体胶体晶体以形成由分散质的有机或无机单分散球形细颗粒构成的均匀粒子阵列结构的三维有序晶格。
    • 39. 发明授权
    • Ultrasonic diagnostic apparatus and ultrasonic diagnostic method
    • 超声诊断仪和超声诊断方法
    • US09119558B2
    • 2015-09-01
    • US12705074
    • 2010-02-12
    • Tetsuya YoshidaNaohisa Kamiyama
    • Tetsuya YoshidaNaohisa Kamiyama
    • A61B8/00A61B8/08A61B17/34G01S7/52
    • A61B8/0833A61B8/0841A61B17/3403A61B2017/3413G01S7/52038G01S7/52074G01S7/52085
    • An ultrasonic diagnostic apparatus has an ultrasonic probe, a control unit, a basic image generating unit, a differential image generating unit, and a composite image generating unit. The control unit controls the ultrasonic probe so as to sequentially perform, every scanning line of scanning lines in a scanning region, a transmitting and receiving under a first transmitting/receiving condition, a second transmitting/receiving condition, and a third transmitting/receiving condition. The basic image generating unit generates a first image based on the first transmitting/receiving condition, a second image based on the second transmitting/receiving condition, and a third image based on the third transmitting/receiving condition. The differential image generating unit performs a differential processing based on the first image and the second image to generate a differential image. The composite image generating unit performs a composite processing based on the differential image and the third image to generate a composite image.
    • 超声波诊断装置具有超声波探头,控制单元,基本图像生成单元,差分图像生成单元以及合成图像生成单元。 所述控制单元控制所述超声波探头,以顺序地执行扫描区域中的扫描线的每条扫描行,在第一发送/接收状态下的发送和接收,第二发送/接收状态和第三发送/接收条件 。 基本图像生成单元基于第一发送/接收条件生成第一图像,基于第二发送/接收条件生成第二图像,并且基于第三发送/接收条件生成第三图像。 差分图像生成单元基于第一图像和第二图像执行差分处理,以生成差分图像。 合成图像生成单元基于差分图像和第三图像执行复合处理,以生成合成图像。