会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 13. 发明授权
    • Acupuncture point position evaluating apparatus
    • 针灸点位置评估仪
    • US07818054B2
    • 2010-10-19
    • US11911464
    • 2006-04-13
    • Takenori FukumotoHisashi Akiyama
    • Takenori FukumotoHisashi Akiyama
    • A61H39/02A61B5/05A61B5/04
    • A61H39/02A61B5/05A61B5/0532A61H39/08
    • An acupuncture point position evaluating apparatus in which a current generated in a current generating section is applied to measurement points of skin of a subject through current application electrodes. The applied current and a voltage generated in the skin by the current application are measured in a measuring section. In a frequency analyzing section, the measured current and the measured voltage are provided with frequency analysis, and skin impedance Z(jf) in the respective measurement points is calculated. In a characteristics amount generating section, based on the frequency response of the skin impedance Z(jf) in the measurement points, frequency response K(f)=XZ(f)/RZ(f) as a ratio between real part RZ(f) and imaginary part XZ(f) of the skin impedance Z(jf) are calculated. In a determining section, based on the difference of the frequency response K(f), an acupuncture point position is determined from among the respective measurement points.
    • 一种针刺点位置评价装置,其中通过电流施加电极将在电流产生部分中产生的电流施加到被检体的皮肤的测量点。 在测量部分中测量施加的电流和由当前应用在皮肤中产生的电压。 在频率分析部中,对测量电流和测量电压进行频率分析,并计算各测量点的皮肤阻抗Z(jf)。 在特征量生成部中,基于测定点的皮肤阻抗Z(jf)的频率响应,作为实际部分RZ(f)之间的比率的频率响应K(f)= XZ(f)/ RZ(f) )和皮肤阻抗Z(jf)的虚部XZ(f)。 在确定部分中,基于频率响应K(f)的差异,从各个测量点中确定针刺点位置。
    • 14. 发明授权
    • Exposure mask, optical proximity correction device, optical proximity correction method, manufacturing method of semiconductor device, and optical proximity correction program
    • 曝光掩模,光学邻近校正装置,光学邻近校正方法,半导体器件的制造方法和光学邻近校正程序
    • US07353493B2
    • 2008-04-01
    • US10846837
    • 2004-05-14
    • Hisashi Akiyama
    • Hisashi Akiyama
    • G06F17/50
    • G03F1/36
    • An optical proximity correction is provided that generates a corrected pattern P0 corresponding to a state M0 where the focus is in focus and the exposure dose is optimal, a corrected pattern P1 corresponding to a state M1 where the focus is in focus and the exposure dose is at the lower limit, a corrected pattern P2 corresponding to a state M2 where the focus is in focus and the exposure dose is at the upper limit, a corrected pattern P3 corresponding to a state M3 where the focus deviates to the lower side and the exposure dose is optimal, and a corrected pattern P4 corresponding to a state M4 where the focus deviates to the upper side and the exposure dose is optimal. By combining these corrected patterns P0 through P4, a composed pattern P5 is generated that reflects the scattering of the exposure dose and the deviation of the focus.
    • 提供了一种光学邻近校正,其产生对应于聚焦对焦的状态M 0并且曝光剂量最佳的校正图案P 0,对应于焦点聚焦的状态M 1的校正图案P 1和 曝光剂量处于下限,对应于焦点聚焦的状态M 2和曝光剂量处于上限的校正图案P 2,对应于状态M 3的校正图案P 3,其中焦点 偏移到下侧,曝光剂量是最佳的,并且对应于焦点偏离上侧的状态M 4的校正图案P 4和曝光剂量是最佳的。 通过组合这些校正图案P 0至P 4,产生反映曝光剂量的散射和焦点的偏差的组合图案P 5。
    • 17. 发明授权
    • Liquid crystal display device having multiple insulating films with different etch characteristics
    • 具有不同蚀刻特性的多个绝缘膜的液晶显示装置
    • US06452659B1
    • 2002-09-17
    • US09062811
    • 1998-04-20
    • Hisashi AkiyamaMitsuhiro Shigeta
    • Hisashi AkiyamaMitsuhiro Shigeta
    • G02F11343
    • G02F1/134336G02F1/13439
    • A liquid crystal display device includes a transparent substrate provided with a plurality of stripe scanning electrodes, and another substrate provided with a plurality of stripe signal electrodes orthogonal to the scanning electrodes, and a liquid crystal layer enclosed between the two transparent substrates. The scanning electrodes are provided on the transparent substrate via a color filter, under overcoat film, and a hard coat film made of hard silicon resin. In the hard coat film, in order to reduce electrode resistance of the scanning electrodes, there are provided a plurality of metal electrodes which are electrically connected individually to the scanning electrodes. The metal electrodes are also connected to the signal electrodes in the same manner as the scanning electrodes.
    • 液晶显示装置包括设置有多个条形扫描电极的透明基板和设置有与扫描电极正交的多条条状信号电极的另一基板以及封闭在两个透明基板之间的液晶层。 扫描电极通过滤色器在外涂膜和由硬硅树脂制成的硬涂膜上设置在透明基板上。 在硬涂膜中,为了降低扫描电极的电极电阻,设置有多个金属电极,其分别与扫描电极电连接。 金属电极也以与扫描电极相同的方式连接到信号电极。
    • 19. 发明授权
    • Ultrasonic imaging system
    • 超声波成像系统
    • US5327892A
    • 1994-07-12
    • US68172
    • 1993-05-28
    • Yasuhiro NakamuraHisashi AkiyamaSatoshi Akaishi
    • Yasuhiro NakamuraHisashi AkiyamaSatoshi Akaishi
    • A61B8/00A61B8/14G01N29/44G01S7/52
    • G01S7/52046G01S7/52034
    • An ultrasonic imaging system includes an ultrasonic probe for transmitting and receiving an ultrasonic wave, a driver unit for driving the ultrasonic probe, a detector unit for detecting an echo signal received by the ultrasonic probe, a filter unit operative to pass a detection signal from the detector unit and having a plurality of passbands which have respective flat frequency response characteristics and respective gains different from each other, a scanning conversion unit for converting the detection signal, which has passed through the filter unit, to a display signal to be displayed on a television, etc., and a display unit receiving the display signal from the scanning conversion unit to display it as a tomographic image. The filter unit operates to decrease respective amplitudes of high frequency components contained in the detection signal and to reduce a difference in brightness between adjacent scanning lines of the display unit, and flat frequency response characteristics of the filter unit prevent deterioration of frequency response characteristics of the detection signal. This makes it possible to produce a tomographic image of high resolution up to the resolution limit of the scanning lines of the display unit without impairing the image quality.
    • 超声波成像系统包括用于发送和接收超声波的超声波探头,用于驱动超声波探头的驱动器单元,用于检测由超声波探头接收到的回波信号的检测器单元,用于使检测信号从 检测器单元,具有多个通带,它们具有彼此平坦的频率响应特性和各自的增益,扫描转换单元用于将已经通过滤波器单元的检测信号转换成显示信号以显示在 电视等,以及显示单元,其从扫描转换单元接收显示信号,将其显示为断层图像。 滤波器单元操作以减小检测信号中包含的高频分量的各个振幅,并且减小显示单元的相邻扫描线之间的亮度差,并且滤波器单元的平坦频率响应特性防止频率响应特性的劣化 检测信号。 这使得可以产生高分辨率的截面图像,直到显示单元的扫描线的分辨率极限,而不损害图像质量。
    • 20. 发明申请
    • ULTRASONOGRAPHIC DEVICE
    • 超声波设备
    • US20100022890A1
    • 2010-01-28
    • US12516299
    • 2007-11-21
    • Hiroshi FukukitaHisashi Akiyama
    • Hiroshi FukukitaHisashi Akiyama
    • A61B8/14
    • A61B8/00A61B8/463A61B8/483
    • A technique for realizing an ultrasonographic device that can obtain respective rendering images for a plurality of regions of a 3D space is disclosed. According to the technique, in such a way that a transmission beam former 2 generates an ultrasonic beam for scanning a plurality of regions of interest, a matrix array 1 is driven, and when a reception beam former 3 generates a plurality of beam forming signals corresponding to the regions of interest, respectively, in accordance with the reception signal of the matrix array by the reflection wave from the respective regions of interest, a signal processing unit 4 processes the beam forming signals, and with a viewpoint set for each of the regions of interest as a standard, generates respective rendering images of the plurality of regions of interest, and a display unit 5 displays the plurality of rendering images in parallel. At this time, a control unit 20 carries out the setting of the plurality of regions of interest and the setting of the viewpoints of the rendering images, by the external operation.
    • 公开了一种用于实现可以获得3D空间的多个区域的各自的渲染图像的超声波装置的技术。 根据该技术,以发射束形成器2生成用于扫描多个感兴趣区域的超声波束的方式,驱动矩阵阵列1,并且当接收波束成形器3产生相应的多个波束形成信号时 分别根据来自各感兴趣区域的反射波的矩阵阵列的接收信号分别对感兴趣的区域进行处理,信号处理单元4处理波束形成信号,并且对每个区域设置视点 感兴趣的区域作为标准生成多个感兴趣区域的各自的渲染图像,并且显示单元5并行地显示多个渲染图像。 此时,控制单元20通过外部操作执行多个感兴趣区域的设置和再现图像的视点的设置。