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    • 124. 发明授权
    • Projection display apparatus
    • 投影显示装置
    • US08390774B2
    • 2013-03-05
    • US12450210
    • 2008-03-06
    • Shinichiro ChikahisaIsao Takahashi
    • Shinichiro ChikahisaIsao Takahashi
    • G02F1/1335
    • G02B27/28G02F1/13363G03B21/006
    • A projection display apparatus is provided with a liquid crystal panel, and first to third polarizing layers are arranged on an optical path of light. The transmission axis of the first polarizing layer and the transmission axis of the second polarizing layer orthogonally intersect with each other. The transmission axis of the second polarizing layer and the transmission axis of the third polarizing layer are parallel to each other. The first compensation layer compensates a phase difference generated due to pre-tilt angle on the entering side of the liquid crystal panel. The second compensation layer compensates a phase difference generated due to a pre-tilt angle on the outgoing side of the liquid crystal panel. The third compensation layer compensates a phase difference generated due to deviation between the polarization axis of the light entering the third polarizing layer and the transmission axis of the third polarizing layer.
    • 投影型显示装置具有液晶面板,第一至第三偏振层配置在光路上。 第一偏振层的透射轴和第二偏振层的透射轴彼此正交。 第二偏振层的透射轴和第三偏振层的透射轴彼此平行。 第一补偿层补偿在液晶面板的进入侧由于预倾角产生的相位差。 第二补偿层补偿由于液晶面板的出射侧的预倾角而产生的相位差。 第三补偿层补偿由于进入第三偏振层的光的偏振轴与第三偏振层的透射轴之间的偏差而产生的相位差。
    • 129. 发明申请
    • ACTUATOR DEVICE AND INPUT APPARATUS
    • 执行器装置和输入装置
    • US20120001520A1
    • 2012-01-05
    • US13230450
    • 2011-09-12
    • Isao TakahashiKenichi Mitsumori
    • Isao TakahashiKenichi Mitsumori
    • H01L41/053H01L41/193
    • B81B3/0072B81B2203/0118
    • An actuator device includes an actuator having one end as a fixed end and the other end as a free end, and bendable when a voltage is applied; and a base member having a fixed section that fixes the fixed end of the actuator. A projecting section is provided at the base member. In a state where the actuator is bent, when a force is applied and the free end is deformed toward a direction that is reverse to the bending direction, the actuator contacts the projecting section. The projecting section is a fulcrum of the displacement and a generating load is capable of being large by the principle of material mechanics without losing the displacement amount.
    • 致动器装置包括具有一端作为固定端的致动器,另一端作为自由端,并且在施加电压时可弯曲; 以及具有固定部分的底座部件,该固定部分固定致动器的固定端。 在基座部件上设有突出部。 在致动器弯曲的状态下,当施加力并且自由端朝向与弯曲方向相反的方向变形时,致动器接触突出部。 突出部分是位移的支点,并且通过材料力学原理能够使发电负载大,而不会损失位移量。
    • 130. 发明申请
    • RADIATION DETECTION MODULE AND RADIATION IMAGE-CAPTURING DEVICE
    • 辐射检测模块和辐射图像捕获装置
    • US20110297837A1
    • 2011-12-08
    • US13201914
    • 2010-02-17
    • Takafumi IshitsuIsao TakahashiKatsutoshi TsuchiyaKazuma YokoiYuichiro Ueno
    • Takafumi IshitsuIsao TakahashiKatsutoshi TsuchiyaKazuma YokoiYuichiro Ueno
    • G01T1/24H01L27/146
    • H01L27/14658
    • The radiation detection module (20) is provided with a semiconductor element (1) having a plurality of pixels (Pn), radiation detection elements (30) in which a plurality of first electrodes (31n) are arranged along one side of the semiconductor element (1), and a second electrode (32m) is disposed astride a plurality of pixels (Pn) along the other side, and which output detection signals when a radioactive ray comes incident on the detection pixels (Pn), and a support PCB (21) placed to stand along the direction in which the radioactive ray comes incident. The support PCB (21) has a connection section (21a) detachably connectable to an external connecting section. Radiation detection elements (30) are connected on the support PCB (21) to fabricate a signal read-out circuit having mutually-perpendicular wiring in a pseudo way and that the incident position of the radioactive ray is identified by coincidence determination of the detection signals.
    • 放射线检测模块(20)设置有具有多个像素(Pn)的半导体元件(1),放射线检测元件(30),多个第一电极(31n)沿半导体元件 (1),并且第二电极(32m)沿着另一侧跨越多个像素(Pn)设置,并且当放射线入射到检测像素(Pn)上时输出检测信号和支撑PCB( 21)沿着放射线入射的方向放置。 支撑PCB(21)具有可拆卸地连接到外部连接部分的连接部分(21a)。 辐射检测元件(30)连接在支撑PCB(21)上,以伪造的方式制造具有相互垂直布线的信号读出电路,并且通过检测信号的一致确定来识别放射线的入射位置 。