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    • 42. 发明申请
    • SAGNAC INTERFEROMETER-TYPE FIBER-OPTIC CURRENT SENSOR
    • SAGNAC干涉仪型光纤电流传感器
    • US20110141478A1
    • 2011-06-16
    • US12965147
    • 2010-12-10
    • Kinichi SASAKIMasao TakahashiYukihisa Hirata
    • Kinichi SASAKIMasao TakahashiYukihisa Hirata
    • G01B9/02
    • G01R15/246G01D5/35322G01R19/0092
    • In one embodiment, a Sagnac interferometer-type fiber-optic sensor includes a synchronous detection circuit to carry out synchronous detection of detected light signal with a phase modulation angular frequency of a phase modulator. A signal processing circuit calculates and outputs the magnitude of current to be measured using the signal detected in the synchronous detection circuit. A phase modulator driving circuit controls the driving of the phase modulator. The phase modulator driving circuit controls a phase modulation depth of the phase modulator so that the amplitude of the second-order harmonics and the fourth-order harmonics obtained by carrying out the synchronous detection of the detected light signal with the phase modulation angular frequency becomes the same.
    • 在一个实施例中,Sagnac干涉仪型光纤传感器包括同步检测电路,以相位调制器的相位调制角频率对检测到的光信号进行同步检测。 信号处理电路使用在同步检测电路中检测的信号来计算并输出要测量的电流的大小。 相位调制器驱动电路控制相位调制器的驱动。 相位调制器驱动电路控制相位调制器的相位调制深度,使得通过以相位调制角频率执行检测到的光信号的同步检测而获得的二次谐波和四次谐波的振幅变为 相同。
    • 45. 发明授权
    • Semiconductor device
    • 半导体器件
    • US07696607B2
    • 2010-04-13
    • US11889210
    • 2007-08-09
    • Hikari SanoMasao TakahashiHiroshige HiranoKoji Takemura
    • Hikari SanoMasao TakahashiHiroshige HiranoKoji Takemura
    • H01L23/544
    • H01L23/585H01L21/78H01L2924/0002H01L2924/00
    • A semiconductor device includes: a circuit region having a function element formed on a semiconductor substrate; a scribe region located between the circuit region and another circuit region formed spaced from the circuit region, the scribe region including a cutting region and non-cutting regions provided at both sides of the cutting region; a first interlayer insulating film formed in the scribe region on the semiconductor substrate; a first dummy pattern made of conductive material and formed in the first interlayer insulating film in the cutting region; and a second dummy pattern made of conductive material and formed in the first interlayer insulating film in each of the non-cutting regions. The ratio, per unit area, of the area of the first dummy pattern to the area of the cutting region is lower than the ratio, per unit area, of the area of the second dummy pattern to the area of the non-cutting regions.
    • 半导体器件包括:具有形成在半导体衬底上的功能元件的电路区域; 位于所述电路区域和与所述电路区域间隔开的另一电路区域之间的划线区域,所述划线区域包括切割区域和设置在所述切割区域两侧的非切割区域; 形成在半导体衬底上的划线区域中的第一层间绝缘膜; 由导电材料制成并形成在切割区域中的第一层间绝缘膜中的第一虚设图形; 以及由导电材料制成并形成在每个非切割区域中的第一层间绝缘膜中的第二虚设图案。 第一虚设图形的面积与切割区域的面积的单位面积的比率低于第二虚拟图案的面积与非切割区域的面积的每单位面积的比率。
    • 49. 发明授权
    • Display device
    • 显示设备
    • US06249370B1
    • 2001-06-19
    • US09397229
    • 1999-09-16
    • Yukihisa TakeuchiNatsumi ShimogawaShigeki OkadaMasao Takahashi
    • Yukihisa TakeuchiNatsumi ShimogawaShigeki OkadaMasao Takahashi
    • G02B2600
    • G02B26/02G02B26/0833G02B26/0841G02B26/0858
    • Disclosed is a display device comprising a light-shielding plate including a metal thin film formed on a first principal surface of an optical waveguide plate for introducing the light thereinto and including light-transmitting sections formed at portions corresponding to picture elements to make penetration through the optical waveguide plate, and shutter sections provided opposingly to a second principal surface of the light-shielding plate, for selectively intercepting the light transmitted through the light-transmitting sections in accordance with an input signal. The shutter sections include actuator elements provided corresponding to the large number of light-transmitting sections so that the light to be transmitted through the light-transmitting sections is intercepted substantially in synchronization with the operation of the actuator elements. Accordingly, it is possible to improve the contrast and improve the image quality of a displayed image.
    • 公开了一种显示装置,其包括遮光板,该遮光板包括金属薄膜,该金属薄膜形成在光波导板的第一主表面上,用于将光引入其中,并且包括形成在对应于图像元素的部分处的透光部分, 光波导板和与遮光板的第二主表面相对设置的遮光部分,用于根据输入信号有选择地遮挡透过透光部分的光。 闸门部分包括对应于大量光透射部分设置的致动器元件,使得要透过光传输部分的光基本上与致动器元件的操作同步地截获。 因此,可以提高对比度并提高显示图像的图像质量。
    • 50. 发明授权
    • Device for stabilizing a treatment site and method of use
    • 用于稳定治疗部位和使用方法的装置
    • US06231585B1
    • 2001-05-15
    • US09328526
    • 1999-06-09
    • Masao TakahashiElazer E. EdelmanKenneth W. Carpenter
    • Masao TakahashiElazer E. EdelmanKenneth W. Carpenter
    • A61M2900
    • A61B17/02A61B17/0218A61B2017/00243A61B2017/00252A61B2017/0243A61B2017/306
    • The present invention provides stabilizing devices and methods of use for temporarily remotely immobilizing a local area of tissue, such as a local area of tissue on a beating heart, or other internal organ, to thereby permit minimally-invasive or robotic surgery thereon. The invention stabilizing device, which is coupled to a vacuum source, features an elastomeric suction body mounted on the steerable tip of a rod-like instrument, such as a steerable catheter. The flexible or steerable tip and elongate suction channel are sized for introduction into an interior body cavity via a small surgical opening. A steering mechanism mounted at the proximal end of the device is used to coil the elongate tip and suction channel into a ring- or horseshoe-shape within the body cavity. Preferably, the suction channel has a flexible, spreadable outer rim portion which is designed to flatten and spread outwardly against the surface of the treatment site as air is withdrawn from the coiled suction channel to distribute the pressure against the treatment site while maximizing the suction field. The suction body is manufactured of a soft, compliant material, such as an elastomeric polymer, to allow the suction channel to be transformed into the coiled conformation without deformation sufficient to defeat its purpose of use, i.e., clinging to the surface of a treatment site under partial vacuum.
    • 本发明提供了用于临时远程地固定组织局部区域(例如跳动心脏上的组织的局部区域)或其他内部器官的稳定装置和方法,从而允许其上进行微创或机器人手术。 耦合到真空源的发明稳定装置的特征在于安装在诸如可导向导管的杆状器械的可转向尖端上的弹性抽吸体。 该柔性或可操纵的尖端和细长的吸入通道的尺寸适于通过小的手术开口引入到内部体腔中。 安装在装置的近端处的转向机构用于将细长末端和抽吸通道线圈成体腔内的环形或马蹄形。 优选地,吸入通道具有柔性的可展开的外缘部分,其被设计成在处理部位的表面上向外平坦化并向外展开,因为空气从盘旋抽吸通道排出,以将压力分配到治疗部位上,同时最大化吸入场 。 吸入体由柔软的柔顺材料制成,例如弹性体聚合物,以允许吸入通道转化成卷曲结构,而不会产生足够的变形,以破坏其使用目的,即粘附于治疗部位的表面 在部分真空下。