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    • 65. 发明申请
    • ULTRASOUND DIAGNOSIS APPARATUS
    • 超声诊断装置
    • US20100016723A1
    • 2010-01-21
    • US12501993
    • 2009-07-13
    • Tomohisa IMAMURAHiroki YoshiaraTetsuya YoshidaNaohisa Kamiyama
    • Tomohisa IMAMURAHiroki YoshiaraTetsuya YoshidaNaohisa Kamiyama
    • A61B8/14
    • G01S15/8963A61B8/06A61B8/0833A61B8/481A61B8/483G01S7/52038G01S7/52039G01S7/52046
    • An ultrasound diagnosis apparatus for generation of image data based on harmonic wave components of ultrasound reception signals. The ultrasound diagnosis apparatus includes a transmission/reception control unit configured to set a plurality of ultrasound transmission/reception directions to an object, an ultrasound probe having a plurality of transducers, a transmission/reception unit configured to produce drive signals of a different polarity for transmission of ultrasound into the object and configured to receive reception signals from the object at the transmission/reception directions, a harmonic wave component extracting unit configured to extract harmonic wave components in the reception signals by performing summation of a plurality of reception signals that is sequentially received through the transmission/reception unit, a reception signals processing unit configured to generate first ultrasound data by performing a logarithmic conversion of a fundamental-wave component included in the reception signals, and to generate second ultrasound data by performing a logarithmic conversion of the harmonic wave components in the reception signals, a subtraction unit configured to perform a subtraction between the first ultrasound data and the second ultrasound data, and an image data generating unit configured to generate the image data based on the subtracted ultrasound data acquired along each of the transmission/reception directions.
    • 一种用于根据超声波接收信号的谐波分量产生图像数据的超声波诊断装置。 超声波诊断装置包括:发送/接收控制单元,被配置为对目标设置多个超声发送/接收方向,具有多​​个换能器的超声波探头;发送/接收单元,其被配置为产生不同极性的驱动信号, 将超声波传输到物体中并被配置为从发送/接收方向接收来自物体的接收信号;谐波分量提取单元,被配置为通过顺序地执行多个接收信号的和来提取接收信号中的谐波分量 通过发送/接收单元接收的接收信号处理单元,被配置为通过执行包括在接收信号中的基波分量的对数转换来生成第一超声数据,并且通过执行谐波的对数转换来生成第二超声数据 波c 所述接收信号中的组件,被配置为执行所述第一超声数据和所述第二超声数据之间的减法的减法单元,以及图像数据生成单元,被配置为基于所述发送/ 接待方向。
    • 68. 发明授权
    • Semiconductor device
    • 半导体器件
    • US07399999B2
    • 2008-07-15
    • US10958640
    • 2004-10-06
    • Tetsuya YoshidaTetsuya OkadaHiroaki SaitoShigeyuki MuraiKikuo Okada
    • Tetsuya YoshidaTetsuya OkadaHiroaki SaitoShigeyuki MuraiKikuo Okada
    • H01L29/06
    • H01L29/7397H01L29/0619
    • In a conventional semiconductor device, there was a problem that, in a guard ring region, a shape of a depletion layer is distorted and stable withstand voltage characteristics cannot be obtained. In a semiconductor device of the present invention, a thermal oxide film in an actual operation region and a thermal oxide film in a guard ring region are formed in the same process. Thereafter, the thermal oxide film is once removed and is formed again. Thus, a film thickness of the thermal oxide film on the upper surface of the guard ring region is set to, for example, about 8000 to 10000 Å. Accordingly, a CVD oxide film including moving ions is formed in a position distant from a surface of an epitaxial layer. Consequently, distortion of a depletion layer, which is influenced by the moving ions, is suppressed and desired withstand voltage characteristics can be maintained.
    • 在传统的半导体器件中,存在在保护环区域中耗尽层的形状变形而不能得到稳定的耐电压特性的问题。 在本发明的半导体装置中,以相同的工序形成实际工作区域中的热氧化膜和防护环区域的热氧化膜。 此后,热氧化膜被一次除去并再次形成。 因此,保护​​环区域的上表面上的热氧化膜的膜厚设定为例如约8000〜10000。 因此,包含移动离子的CVD氧化膜形成在远离外延层的表面的位置。 因此,受到移动离子影响的耗尽层的失真被抑制,并且可以保持期望的耐受电压特性。