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    • 4. 发明授权
    • Ultrasonic imaging system using plural square wave pulse trains of
successively delayed intervals
    • 超声波成像系统采用多个方波脉冲序列连续延时
    • US4348902A
    • 1982-09-14
    • US206827
    • 1980-11-14
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • Ryobun TachitaYoshihiro HayakawaKazuyoshi IriokaHiroshi FukukitaTsutomu YanoAkira Fukumoto
    • A61B8/00A61B8/14G01S7/52G01N29/00
    • G01S7/52063
    • A sector scan ultrasonic imaging system comprises a source of a plurality of square wave pulse trains each being delayed by a unit quantization time with respect to adjacent trains, and a plurality of transmitter circuits corresponding to the elements of a transducer array. The duration of each square wave pulse is an integral multiple of the unit quantization time interval. Each transmitter circuit includes a read only memory in which a set of different digital delay time data is stored for the corresponding transducer element and is arranged to be retrieved in response to each angle increment of the ultrasonic beam transmitted from the array. Further included are a data selector for selecting a pulse train in response to a pulse train selection data retrieved from the memory and a programmable counter for counting the pulses of the selected train to generate an output in accordance with a pulse selection data retrieved from the memory. An Exclusive-OR gate is further included to provide bit inversion of the selected pulse train in selective response to the binary state of a data retrieved from the memory so that the number of available square wave pulse trains is doubled. A gating circuit responds to the output of the counter by gating a pulse of the selected pulse train to the corresponding transducer element.
    • 扇区扫描超声成像系统包括多个方波脉冲串的源,每个方波延迟相对于相邻列的单位量化时间,以及对应于换能器阵列的元件的多个发射器电路。 每个方波脉冲的持续时间是单位量化时间间隔的整数倍。 每个发射机电路包括只读存储器,其中针对相应的换能器元件存储一组不同的数字延迟时间数据,并且被布置为响应于从阵列发射的超声波束的每个角度增量而被检索。 还包括一个数据选择器,用于响应于从存储器检索的脉冲序列选择数据选择一个脉冲序列,以及一个可编程计数器,用于根据从存储器检索的脉冲选择数据计算所选择的列车的脉冲以产生一个输出 。 进一步包括异或门以提供选择性响应于从存储器检索的数据的二进制状态的所选脉冲序列的位反转,使​​得可用的矩形波脉冲序列的数量加倍。 门控电路通过将所选择的脉冲串的脉冲门控到相应的换能器元件来响应计数器的输出。
    • 6. 发明授权
    • Scan converter for a sector scan type ultrasound imaging system
    • 扫描转换器用于扇区扫描型超声成像系统
    • US4310907A
    • 1982-01-12
    • US100707
    • 1979-12-04
    • Ryobun TachitaYoshihiro HayakawaHiroshi FukukitaTsutomu YanoKazuyoshi IriokaAkira Fukumoto
    • Ryobun TachitaYoshihiro HayakawaHiroshi FukukitaTsutomu YanoKazuyoshi IriokaAkira Fukumoto
    • A61B8/00A61B8/14G01S7/531G01S15/89
    • G01S7/52044
    • A scan converter is disclosed for use in a sector scan type ultrasound imaging system in which ultrasound echo signals return from targets along a plurality of radial scan lines distributed in a sector field with a substantially equal tangential angular increment with respect to a reference line. The scan converter comprises a sampling circuit which samples the echo signals at a speed inversely proportional to the cosine of the angle of deflection of the radial scan lines with respect to the reference line so that the sampled points align themselves in lateral lines perpendicular to the reference line. The sampled echo signals are converted into digital echo data and stored in a random access memory in the direction of its columns. The stored data are retrieved serially in the direction of the rows and fed into an interpolator for making interpolations between the successively retrieved echo data. The interpolation data are read into a line memory in succession with the data retrieved from the RAM during each raster scan interval, and then retrieved at a constant rate from preselected storage locations so that the data on the raster scan lines have approximately equal density. The retrieved data from the line memory are converted in analog signals and displayed on a viewing screen.
    • 公开了一种用于扇区扫描型超声成像系统的扫描转换器,其中超声回波信号沿着分布在扇区中的多个径向扫描线从目标返回,其具有相对于参考线的基本相等的切角增量。 扫描转换器包括采样电路,该采样电路以与扫描线相对于参考线的偏转角的余弦成反比的速度对回波信号进行采样,使得采样点在与参考线垂直的横向线上对齐 线。 采样的回波信号被转换成数字回波数据,并在其列的方向上存储在随机存取存储器中。 存储的数据在行的方向上被串行检索,并被馈送到用于在连续检索的回波数据之间进行内插的内插器。 插补数据在每个光栅扫描间隔期间从RAM中检索的数据连续读入行存储器,然后以预定的存储位置以恒定速率检索,使得光栅扫描线上的数据具有大致相等的密度。 来自行存储器的检索数据被转换为模拟信号并显示在观看屏幕上。
    • 7. 发明授权
    • Two-dimensional linear B-scan ultrasound diagnostic apparatus with phase
and amplitude tapering
    • 二维线性B扫描超声诊断仪具有相位和幅度逐渐减小
    • US4224829A
    • 1980-09-30
    • US962609
    • 1978-11-21
    • Masami KawabuchiJun-ichi SatoKiyotaka NagaiHiroshi FukukitaAkira Fukumoto
    • Masami KawabuchiJun-ichi SatoKiyotaka NagaiHiroshi FukukitaAkira Fukumoto
    • A61B8/00A61B8/14G01N29/04G01N29/06G01S7/52G10K11/34G01N29/00
    • G10K11/345G01N29/06G01N29/245G01S7/5206
    • An ultrasound diagnostic apparatus includes a linear array of piezoelectric transducers or plates with a width-to-thickness ratio of less than 0.8 and a control circuit which includes a transmitter and a receiver. The transmitter comprises a plurality of transmitting channels each including a local oscillator for generating an ultrasonic pulse in response to a clock signal. The plurality of such ultrasonic pulses are applied through a switching network to a selected group of successively arranged piezoelectric transducers to transmit a beam of ultrasonic energy into a human body. Each of the ultrasonic pulses is phase shifted and amplitude modulated with respect to the ultrasonic pulses of the other transmitting channels to provide phase and amplitude taper which results in a narrow width beam through the depth of the body. The ultrasonic energy returned from discontinuities between different tissues is detected by the activated transducers and applied through the switching network to the receiver in which each of the return signals is phase shifted and amplitude modulated with respect to the other signals to provide an output signal which is displayed on a cathode ray tube screen.
    • 超声波诊断装置包括宽度与厚度比小于0.8的压电换能器或板的线性阵列和包括发射器和接收器的控制电路。 发射机包括多个发射信道,每个发射信道包括响应于时钟信号产生超声波脉冲的本地振荡器。 多个这样的超声波脉冲通过切换网络施加到所选择的一组连续布置的压电换能器,以将超声能量束传输到人体内。 每个超声波脉冲相对于其他发射通道的超声波脉冲进行相移和幅度调制,以提供相位和幅度锥度,这导致通过身体深度的窄宽度束。 通过激活的换能器检测从不同组织之间的不连续性返回的超声能量,并通过开关网络将其施加到接收机,其中每个返回信号相对于其他信号被相移和幅度调制以提供输出信号, 显示在阴极射线管屏幕上。
    • 9. 发明授权
    • Semiconductor device and manufacturing method thereof
    • 半导体装置及其制造方法
    • US07528442B2
    • 2009-05-05
    • US11399441
    • 2006-04-07
    • Akira FukumotoRie Watanabe
    • Akira FukumotoRie Watanabe
    • H01L29/72
    • H01L29/1083H01L29/7833
    • In this invention, the semiconductor device is provided with a gate electrode formed on a gate insulating film in a region sectioned by an element isolation formed on a semiconductor layer of the first conduction type, and a source region and a drain region of the second conduction type. At least one of the source region and the drain region has a first low concentration region and a high concentration region. Also, the semiconductor device of the present invention is provided with a second low concentration region of the second conduction type between a channel stopper region formed below the element isolation and the source region, and between the channel stopper region and the drain region. The semiconductor layer immediately below the gate electrode projects to the channel stopper region side along the gate electrode, and the semiconductor layer and the channel stopper region make contact with each other.
    • 在本发明中,半导体器件设置有形成在栅极绝缘膜上的栅电极,该栅电极由形成在第一导电类型的半导体层上的元件隔离区域和第二导电的源极区域和漏极区域 类型。 源极区域和漏极区域中的至少一个具有第一低浓度区域和高浓度区域。 此外,本发明的半导体器件在第一导电类型的第二低浓度区域之间设置在形成于元件隔离部之下的沟道阻挡区域与源极区域之间以及沟道阻挡区域与漏极区域之间。 栅电极正下方的半导体层沿着栅极突出到沟道截止区侧,半导体层和沟道截止区相互接触。