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    • 61. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20080030670A1
    • 2008-02-07
    • US11833287
    • 2007-08-03
    • Katsuhiko IshiiTakashi YamamotoHiroaki MiwaSetsuo Kobayashi
    • Katsuhiko IshiiTakashi YamamotoHiroaki MiwaSetsuo Kobayashi
    • G02F1/1339
    • G02F1/1341G02F2202/023
    • The present invention provides a liquid crystal display device having an ODF (one drop-fill) type middle-sized or miniaturized liquid crystal display panel. In a liquid crystal display device which includes a liquid crystal display panel having a pair of substrates, a sealing member which is formed on a peripheral portion between the pair of substrates without a cut, and liquid crystal which is sealed in a space surrounded by the sealing member between the pair of substrates, one substrate out of the pair of substrates includes at least one line layer which is formed along a first side of one substrate, and a portion of the sealing member which is formed along the first side of one substrate is formed in a zigzag pattern such that the sealing member traverses at least one line layer plural times.
    • 本发明提供一种具有ODF(一滴式)型中型或小型化液晶显示面板的液晶显示装置。 在包括具有一对基板的液晶显示面板的液晶显示装置中,形成在一对基板之间的周边部分上而没有切割的密封部件,以及密封在由该基板包围的空间中的空间的液晶 一对基板之间的一个基板包括沿着一个基板的第一侧形成的至少一个线层和沿着一个基板的第一侧形成的密封部件的一部分 形成为锯齿形图案,使得密封构件多次穿过至少一个线层。
    • 64. 发明申请
    • Capacitive Liquid State Sensor
    • 电容液态传感器
    • US20070227887A1
    • 2007-10-04
    • US11596474
    • 2005-05-18
    • Yoshikuni SatoTakashi YamamotoTakeo SasanumaHideki Toyoda
    • Yoshikuni SatoTakashi YamamotoTakeo SasanumaHideki Toyoda
    • G01N27/26
    • G01F23/268
    • The present invention provides a capacitive liquid state sensor configured to release a pressure in an intervening gap by providing slits to an outer tubular electrode while inhibiting decrease in strength caused by forming of the slits. The outer tubular electrode 20 disposed with a predetermined distance from an inner electrode 20 is formed with a plurality of slits 14, 15 and 16 along a generator (indicated by one-dot chain line A) extending from a front end portion 11 to a rear end portion 12. Between the slits 14, 15 and 16 are positioned intermediate no-slit formed areas 17 and 18. Circulation of liquid between the inside and the outside of the outer tubular electrode 10 and in the axial direction of the same electrode 10 is attained through the slits 14, 15 and 16, so that a pressure accompanied by volumetric expansion of liquid at the time of freezing and existing in the intervening space can be released to the outside. Further, by the provision of the intermediate no-slit formed areas 17 and 18, the outer tubular electrode 10 can maintain a good strength so that deformation of the outer tubular electrode 10 can be prevented effectively.
    • 本发明提供了一种电容式液态传感器,其被配置为通过向外部管状电极提供狭缝来释放中间间隙中的压力,同时抑制由狭缝形成引起的强度降低。 沿着从前端部11延伸到后方的发电机(由点划线A表示)形成有与内部电极20隔开规定距离的外部管状电极20形成有多个狭缝14,15,16。 端部12。 在狭缝14,15和16之间位于无狭缝形成区17和18之间。 在外管状电极10的内侧和外侧之间以及同一电极10的轴向上的液体循环通过狭缝14,15和16获得,使得伴随液体的体积膨胀的压力在 冻结并存在于居间的空间可以释放到外面。 此外,通过设置中间无狭缝形成区域17和18,外管状电极10可以保持良好的强度,从而可以有效地防止外管状电极10的变形。
    • 66. 发明申请
    • Liquid-condition detection sensor
    • 液体状态检测传感器
    • US20070193345A1
    • 2007-08-23
    • US11699550
    • 2007-01-30
    • Takashi YamamotoTakeo SasanumaYoshikuni Sato
    • Takashi YamamotoTakeo SasanumaYoshikuni Sato
    • G01N11/00G01N33/00G01N33/487
    • G01N25/18F01N3/20F01N3/2066F01N2610/148
    • A liquid-condition detection sensor (1) includes a concentration sensor element (260) for detecting the condition of liquid to be measured; a wiring board (40) including a driving control circuit (41) disposed above the concentration sensor element (260); a cable (50) mechanically connected to the wiring board (40), extending downward from the wiring board (40), and establishing an electrical connection between the driving control circuit (41) and the concentration sensor element (260); an inner tube (221) surrounding at least a portion of a cable (50) in a loose condition; and a fixing holder section (94) fixedly holding a portion (51) of the cable (50) located between the wiring board (40) and the concentration sensor element (260).
    • 液体检测传感器(1)包括用于检测待测液体的状态的浓度传感器元件(260) 包括布置在所述浓度传感器元件(260)上方的驱动控制电路(41)的布线板(40)。 机械地连接到布线板(40)的电缆(50),从布线板(40)向下延伸,并且在驱动控制电路(41)和浓度传感器元件(260)之间建立电连接; 围绕处于松散状态的电缆(50)的至少一部分的内管(221); 以及固定保持部(94),其固定地保持位于布线基板(40)和浓度传感器元件(260)之间的电缆(50)的部分(51)。
    • 70. 发明申请
    • Flat belt
    • 平带
    • US20060234820A1
    • 2006-10-19
    • US11393870
    • 2006-03-31
    • Takashi YamamotoTatsuya Nozaki
    • Takashi YamamotoTatsuya Nozaki
    • F16G1/04
    • B65G15/34B65G2201/022F16G1/16F16G3/16
    • A flat belt has a longitudinal reinforcement fabric to reinforce the flat belt along the longitudinal direction. A first thermoplastic resin layer is laminated on an upper side of the longitudinal reinforcement fabric. A second thermoplastic resin layer is laminated on a lower side of the longitudinal reinforcement fabric. A first lateral reinforcement fabric is laminated on an upper side of the first thermoplastic resin layer to reinforce the flat belt along the lateral direction. A second lateral reinforcement fabric is laminated on a lower side of the second thermoplastic resin layer to reinforce the flat belt along the lateral direction. A first friction layer is provided above an upper side of the first lateral reinforcement fabric, and is formed with a conveyor surface for conveying a subject.
    • 扁平带具有纵向加强织物,以沿纵向方向加强扁平带。 第一热塑性树脂层层压在纵向加强织物的上侧。 第二热塑性树脂层层压在纵向加强织物的下侧。 第一横向加强织物层叠在第一热塑性树脂层的上侧,以沿着横向加强扁平带。 第二横向加强织物层压在第二热塑性树脂层的下侧,以沿横向加强扁平带。 第一摩擦层设置在第一侧向加强织物的上侧上方,并且形成有用于输送被检体的输送面。