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    • 31. 发明公开
    • Plasma display panel suitable for high-quality display and production method
    • Plasmaanzeigetafel geeignetfürAnzeige hoherQualitätund Herstellungsverfahren
    • EP0779643A3
    • 1999-03-10
    • EP96309148.3
    • 1996-12-13
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Aoki, MasakiTorii, HideoFujii, EijiOhtani, MitsuhiroInami, TakashiKawamura, HiroyukiTanaka, HiroyoshiMurai, RyuichiIshikura, YasuhisaNishimura, YutakaYamashita, Katsuyoshi
    • H01J17/20H01J17/16H01J17/49
    • C23C16/404C23C16/403H01J9/02H01J11/12H01J11/38H01J11/40H01J11/50H01J2211/38H01J2211/40H01J2211/50Y10T117/1004Y10T117/1008
    • The first object of the present invention is to provide a PDP with improved panel brightness which is achieved by improving the efficiency in conversion from discharge energy to visible rays. The second object of the present invention is to provide a PDP with improved panel life which is achieved by improving the protecting layer protecting the dielectrics glass layer. To achieve the first object, the present invention sets the amount of xenon in the discharge gas to the range of 10% by volume to less than 100% by volume, and sets the charging pressure for the discharge gas to the range of 500 to 760Torr which is higher than conventional charging pressures. With such construction, the panel brightness increases. Also, to achieve the second object, the present invention has, on the surface of the dielectrics glass layer, a protecting layer consisting of an alkaline earth oxide with (100)-face or (110)-face orientation. The protecting layer, which may be formed by using thermal Chemical Vapor Deposition (CVD) method, plasma enhanced CVD method, or a vapor deposition method with irradiation of ion or electron beam, will have a high sputtering resistance and effectively protect the dielectrics glass layer. Such a protecting layer contributes to the improvement of the panel life.
    • 本发明的第一个目的是提供一种具有改进的面板亮度的PDP,其通过提高从放电能量到可见光的转换效率来实现。 本发明的第二个目的是提供一种具有改善面板寿命的PDP,其通过改进保护电介质玻璃层的保护层来实现。 为了实现第一个目的,本发明将放电气体中的氙的量设定为10体积%至小于100体积%的范围,并且将放电气体的充电压力设定在500至760乇的范围内 这高于常规的充气压力。 通过这样的结构,面板亮度增加。 此外,为了实现第二个目的,本发明在电介质玻璃层的表面上具有由具有(100)面或(110)面取向的碱土金属氧化物构成的保护层。 可以通过使用热化学气相沉积(CVD)法,等离子体增强CVD法或通过离子或电子束照射的气相沉积法形成的保护层将具有高的溅射电阻并且有效地保护电介质玻璃层 。 这样的保护层有助于提高面板寿命。
    • 33. 发明公开
    • Temperature sensor element and temperature sensor including the same
    • TemperaturfühlerelementundTemperaturfühlerdamit
    • EP0844466A1
    • 1998-05-27
    • EP97309279.4
    • 1997-11-18
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Tomozawa, AtsushiFujii, EijiTorii, HideoTakayama, Ryoichi
    • G01K7/22H01C7/04
    • G01K7/223H01C7/041H01C7/043H01C17/30
    • The present invention provides a temperature sensor element having excellent heat resistance, quick heat response, stable resistance, and high reliability with less variation in resistance against time. The temperature sensor element includes a thermo-sensitive film mainly composed of a heat sensitive material having electrical resistance varies depending on the temperature; a pair of electrode films arranged to measure the electrical resistance in the direction of the thickness of the thermo-sensitive film, a base plate mainly composed of a heat-resistant insulating material for supporting the thermo-sensitive film and the electrode films, an anti-diffusion film interposed between the thermo-sensitive film and the electrode film in the vicinity of the base plate, and a film mainly composed of a heat-resistant insulating material for covering the thermo-sensitive film and the electrode films except the lead-connecting terminals of the electrode films. The thermo-sensitive film is composed of an oxide of corundum crystalline structure represented by the formula of (Al 1-x-y Cr x Fe y ) 2 O 3 , where 0.05≤x+y≤0.95, and 0≤y/(x+y)≤0.6, and the anti-diffusion film is composed of an oxide of corundum crystalline structure represented by the formula of (Al 1-x-y Cr x Fe y ) 2 O 3 , where 0≤x+y≤0.95.
    • 本发明提供一种具有优异的耐热性,快速的热响应性,稳定的电阻和高可靠性以及较短的耐时间变化的温度传感器元件。 温度传感器元件包括主要由具有根据温度而变化的电阻的热敏材料组成的热敏膜; 布置成测量热敏膜厚度方向上的电阻的一对电极膜,主要由用于支撑热敏膜的耐热绝缘材料和电极膜组成的基板, 介于热敏膜与基板附近的电极膜之间的扩散膜,以及主要由用于覆盖热敏膜的耐热绝缘材料和除引线连接之外的电极膜构成的膜 电极膜的端子。 热敏膜由(Al1-x-yCrxFey)2O3表示的刚玉晶体结构的氧化物,0.05≤x+y≤0.95,0≤y/(x + y)≤0.6, 反扩散膜由(Al1-x-yCrxFey)2O3表示的刚玉结晶结构的氧化物构成,其中0≤x+y≤0.95。
    • 36. 发明公开
    • Rigid disk and signal recording and reproducing method using same
    • Festplatte和seine Aufzeichnungs-和Wiedergabemethode。
    • EP0479547A2
    • 1992-04-08
    • EP91308970.2
    • 1991-10-01
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Torii, HideoFujii, EijiHattori, MasumiAoki, MasakiKuribayashi, Kiyoshi
    • G11B5/55
    • G11B5/59677G11B5/82
    • A rigid disk includes a transparent glass substrate having guide grooves for a laser beam for an optical disk which grooves are formed in one surface of the substrate, a reflective film formed on the lower surface of the substrate, a light-transmitting magnetic oxide film formed on the other surface of the substrate which is flat and smooth, and a lubricating layer formed on the magnetic oxide film. The magnetic oxide film has only a spinel-type crystal structure, and contains iron and cobalt. A magnetic head and an optical head are mounted on an arm movable back and forth relative to the rigid disk in a radial direction of the rigid disk. A laser beam emitted from the optical head passes through the lubricating layer, the magnetic oxide film and the substrate of the rigid disk, and is reflected by the reflective film to be returned to the optical head, thereby detecting a track signal formed by a configuration of the grooves by the optical head, so that the driving of the arm is controlled so as to move the magnetic head along a track on a recording surface of the rigid disk in a servo-controlled manner.
    • 刚性盘包括透明玻璃基板,其具有用于光盘激光束的引导槽,该基板的一个表面中形成有槽,在基板的下表面上形成的反射膜,形成有透光性的氧化物膜 在平坦光滑的基板的另一个表面上,以及形成在该磁性氧化膜上的润滑层。 磁性氧化膜仅具有尖晶石型晶体结构,并含有铁和钴。 磁头和光学头安装在可在刚性盘的径向方向上相对于刚性盘来回移动的臂上。 从光头发射的激光束通过润滑层,磁性氧化膜和刚性盘的基板,被反射膜反射回到光头,从而检测由配置形成的轨迹信号 通过光头来控制凹槽,从而控制臂的驱动,以便以伺服控制的方式沿着刚性盘的记录表面上的轨道移动磁头。