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    • 33. 发明授权
    • Ferroelectric memory device
    • 铁电存储器件
    • US06509597B2
    • 2003-01-21
    • US09939738
    • 2001-08-28
    • Hiromichi WakiKeiichi YoshizumiMitsuhiro Mori
    • Hiromichi WakiKeiichi YoshizumiMitsuhiro Mori
    • H01L27108
    • H01L27/11502H01L27/1085H01L27/10894H01L27/11507H01L28/55
    • A shielding film having a higher lead content than that of a capacitive insulating film is formed under a lower electrode of a capacitor in a FeRAM memory cell, and another shielding film having a higher lead content than that of the capacitive insulating film is formed on an upper electrode. PZT films to be used as barrier layers are formed in the interlayer insulating films of the FeRAM memory cell. As a result, it is possible to prevent H2 or H2O from entering an upper portion or a lower portion of the capacitor, and lead diffused from the capacitive insulating film can be compensated by lead included in the shielding films, and it is possible to prevent characteristics of the capacitive insulating film from being degraded.
    • 在FeRAM存储单元中,在电容器的下部电极的下方形成具有比电容绝缘膜高的铅含量的屏蔽膜,并且在电容绝缘膜上形成具有比电容绝缘膜高的铅含量的另一屏蔽膜 上电极。 在FeRAM存储单元的层间绝缘膜中形成用作阻挡层的PZT膜。 结果,可以防止H 2或H 2 O进入电容器的上部或下部,并且可以通过包含在屏蔽膜中的引线来补偿从电容绝缘膜扩散的引线,并且可以防止 电容绝缘膜的特性降低。
    • 34. 发明授权
    • Method for producing polyolefin
    • 生产聚烯烃的方法
    • US6130301A
    • 2000-10-10
    • US923407
    • 1997-09-04
    • Sadaki NishimuraHideyuki TakitaniYutaka NaitoMitsuhiro Mori
    • Sadaki NishimuraHideyuki TakitaniYutaka NaitoMitsuhiro Mori
    • C08F4/658C08F4/60C08F10/00C08F4/649C08F4/58
    • C08F10/00Y10S526/907
    • A method for producing a polyolefin, which comprises polymerizing or copolymerizing at least one olefin in the presence of a catalyst system comprising (A) a solid catalyst component of a titanium catalyst component obtained by reacting at least one aluminum halide compound with a homogeneous solution containing magnesium, titanium and alkoxy groups, wherein the aluminum halide compound is added to the homogeneous solution to provide a halogen atom in a mol ratio of from 0.2 to 0.4 to one mol of the alkoxy groups contained in the homogeneous solution to precipitate particles in the former step, and the aluminum halide compound is further added to provide a halogen atom in a mol ratio of from 1 to 20 to one mol of the alkoxy groups to treat the resultant mixture containing the precipitated particles in the latter step, and (B) at least one organic aluminum compound catalyst component.
    • 一种制备聚烯烃的方法,其包括在催化剂体系存在下聚合或共聚至少一种烯烃,所述催化剂体系包含(A)通过使至少一种卤化铝化合物与均匀溶液反应而获得的钛催化剂组分的固体催化剂组分 镁,钛和烷氧基,其中将卤化铝化合物加入到均相溶液中以提供卤素原子,其摩尔比为0.2-0.4至均一溶液中所含烷氧基的1摩尔,以使前者中的颗粒沉淀 并且进一步加入卤化铝化合物以提供摩尔比为1至20至1摩尔烷氧基的卤素原子,以在后一步骤中处理含有沉淀颗粒的所得混合物,和(B)在 至少一种有机铝化合物催化剂组分。
    • 38. 发明申请
    • VIDEO PROCESSING DEVICE AND VIDEO DISPLAY DEVICE
    • 视频处理设备和视频显示设备
    • US20120162528A1
    • 2012-06-28
    • US13393690
    • 2011-01-06
    • Shinya KiuchiMitsuhiro Mori
    • Shinya KiuchiMitsuhiro Mori
    • H04N5/00
    • G09G3/20G09G3/2022G09G2320/106H04N19/513H04N19/533
    • Provided are a video processing device and a video display device capable of inhibiting the degradation of image quality and improving the video resolution. The video processing device has a motion vector detection unit (2) which detects a motion vector using at least two or more time-sequential input images, a low visual saliency area detection unit (3) which detects a low visual saliency area having a low visual saliency in an input image, and a motion vector correction unit (4) which corrects the motion vector detected by the motion vector detection unit (2) so that the motion vector decreases in the low visual saliency area detected by the low visual saliency area detection unit (3).
    • 提供了能够抑制图像质量劣化并提高视频分辨率的视频处理装置和视频显示装置。 视频处理装置具有使用至少两个以上的时间顺序输入图像检测运动矢量的运动矢量检测部(2),低视觉显着区域检测部(3),其检测低视觉显着区域 输入图像中的视觉显着性,以及运动矢量校正单元(4),其校正由运动矢量检测单元(2)检测到的运动矢量,使得运动矢量在低视觉显着区域检测到的低视觉显着区域中减小 检测单元(3)。
    • 39. 发明授权
    • Pipe joint construction
    • 管接头施工
    • US07604263B2
    • 2009-10-20
    • US10582809
    • 2004-12-15
    • Mitsuhiro MoriFumiyoshi Miyazaki
    • Mitsuhiro MoriFumiyoshi Miyazaki
    • F16L19/04F16L21/03
    • F16L37/113F16L2201/80
    • A pipe joint construction comprising an elastic seal member (4) for hermetically sealing between an inner circumferential surface of a receiving pipe section (1) and an outer circumferential surface of an inserted pipe section (2) inserted into and connected to the receiving pipe section in a pipe axis direction (X), and a lock member (7) provided in the inner circumferential surface of the receiving pipe section (1) adjacent a receiving opening thereof for preventing separation of the pipe sections by contacting an engaging projection (5) protruding from the outer circumferential surface of the inserted pipe section (2) in the pipe axis direction, wherein the construction further comprises an attachment/detachment control device (A) for attaching and detaching the lock member (7) to/from the receiving pipe section (1) by rotating the lock member (7) about the pipe axis direction (X) relative to the receiving pipe section (1) and by moving, in the pipe axis direction (X), the lock member (7) placed in a specific position in a passage of rotation.
    • 一种管接头结构,包括用于在接收管部分(1)的内周表面和插入并连接到接收管部分(2)的插入管部分(2)的外周表面之间气密密封的弹性密封件(4) 在管轴方向(X)上设置有锁定部件(7),所述锁定部件(7)设置在所述接收管部(1)的与其接收开口相邻的内周面,用于通过使接合突起(5)接触来防止所述管部分的分离, 在所述管轴方向从所述插入管部(2)的外周面突出,其特征在于,所述结构还包括用于将所述锁定部件(7)安装于所述接收管的上述安装·拆卸控制装置(A) 通过使锁定构件(7)相对于接收管部(1)绕管轴方向(X)旋转并且沿管轴方向(X)移动锁定膜(1) 呃(7)放置在旋转通道的特定位置。