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    • 51. 发明授权
    • Manufacturing method of film type battery
    • 薄膜式电池的制造方法
    • US5431701A
    • 1995-07-11
    • US122569
    • 1993-10-01
    • Hiroshi KagawaShiro KatoKazuo Murata
    • Hiroshi KagawaShiro KatoKazuo Murata
    • H01M6/12H01M10/04
    • H01M6/12H01M10/0436Y10T29/49108Y10T29/4911
    • A method for manufacturing a film type battery equipped with a generating element composed of a positive active material, an electrolyte and a negative active material placed one upon another in a layer structure. In order to enable easy mass-production of the film type battery having the above structure, the manufacturing method includes the steps of installing sealing agent layers on a surface of a positive current collector plate and placing the component materials of the generating element i.e. the positive active material, the electrolyte and the negative active material to through holes of the sealing agent layers.
    • PCT No.PCT / JP93 / 00159 Sec。 371日期:1993年10月1日 102(e)日期1993年10月1日PCT提交1993年2月8日PCT公布。 公开号WO93 / 16497 日期:1993年8月19日。一种制造薄膜型电池的方法,该薄膜型电池装备有以层状结构彼此叠置的正极活性材料,电解质和负极活性材料构成的发电元件。 为了能够容易地批量生产具有上述结构的薄膜型电池,该制造方法包括以下步骤:在正极集电板的表面上安装密封剂层,并将发电元件的组分材料置于正极 活性物质,电解质和负极活性物质到密封剂层的通孔。
    • 52. 发明授权
    • Film type battery
    • 薄膜式电池
    • US5378557A
    • 1995-01-03
    • US39158
    • 1993-04-07
    • Kazuo MurataKenichi TakeuchiSyuichi IzuchiShiro Kato
    • Kazuo MurataKenichi TakeuchiSyuichi IzuchiShiro Kato
    • H01M2/02H01M2/08
    • H01M2/08H01M2/0212
    • In a film type battery comprising a generating element which is formed by laminating a negative active material, an electrolyte and a positive active material into a layer shape, (1, 2, 3), terminal plates (5, 6) which are installed on and under the generating element and serve also as a current collector and a container, and a frame-shaped sealing material (4) which is installed on peripheral edges of the terminal plates, seals the generating element in between the both terminal plates and insulates one terminal plate from the other; the sealing material is improved. For example, the sealing material is formed into a vertical-type multi-layer structure, in which at least one layer is composed of a layer (41, 42) comprising metal and the other layer (43) is composed of an electric insulator. Thereby, a mechanical strength of the sealing material or a battery becomes large and the battery becomes hard to be bent. Accordingly, an ingress of atmosphere from a sealing portion and a leakage of electrolyte therefrom can be prevented, a deterioration of battery performance can be prevented, and a long-term reliability can be improved.
    • PCT No.PCT / JP92 / 01007 Sec。 371日期:1993年4月7日 102(e)日期1993年4月7日PCT提交1992年8月6日PCT公布。 出版物WO93 / 03504 日期:1993年2月18日。在一种薄膜型电池中,包括通过将负极活性材料,电解质和正极活性物质层叠成层状而形成的发生元件,(1,2,3),端子板(5) ,6),其安装在发电元件上和下面,也用作集流器和容器,以及安装在端子板的周缘上的框形密封材料(4),密封发电元件之间 两个端子板和一个端子板与另一个端子板绝缘; 密封材料得到改善。 例如,密封材料形成垂直型多层结构,其中至少一层由包含金属的层(41,42)构成,另一层(43)由电绝缘体构成。 由此,密封材料或电池的机械强度变大,电池变得难弯曲。 因此,能够防止从密封部进入气氛和电解液的泄漏,能够防止电池性能的劣化,能够提高长期的可靠性。
    • 55. 发明授权
    • Chrominance signal processing apparatus
    • 色度信号处理装置
    • US4672426A
    • 1987-06-09
    • US722576
    • 1985-04-12
    • Shiro KatoKiyokazu Hashimoto
    • Shiro KatoKiyokazu Hashimoto
    • H04N5/76H04N9/45H04N9/79H04N9/83H04N9/898
    • H04N9/831H04N9/79H04N9/898
    • In a chrominance signal processing apparatus for processing a sampled and digitized signal, when a first carrier chrominance signal is frequency-converted to a second carrier chrominance signal whose carrier angular frequency is a second reference angular frequency by use of a frequency converting signal, the present invention provides an arrangement such that: a variation component of a carrier signal frequency from a first reference angular frequency signal which the first carrier chrominance signal has, namely, an angular frequency difference signal is derived by an APC circuit from the first and second reference angular frequency signals, angular frequency difference signal, and further various kinds of angular frequency signals and phase signals which give necessary functions and performances as a chrominance signal processing circuit are added or subtracted in the states of the angular frequency signals and phase signals thereby simplifying the process for obtaining the above frequency converting signal; and thereby reducing the number of circuit elements and the scale in case of realizing this by a digital circuit. In addition, the invention enables the frequency variation which the first carrier chrominance signal has to be eliminated in a wide frequency range due to its performance, thereby making it possible to perform accurate frequency conversion.
    • 在用于处理采样和数字化信号的色度信号处理装置中,当第一载波色度信号通过使用频率转换信号被频率转换为载波角频率为第二参考角频率的第二载波色度信号时, 本发明提供一种布置,使得:来自第一载波色度信号具有的第一参考角频率信号的载波信号频率的变化分量,即角频差信号,由APC电路从第一和第二参考角度 频率信号,角频率差信号以及作为色度信号处理电路提供必要功能和性能的其他各种角频率信号和相位信号在角频率信号和相位信号的状态中相加或相减,从而简化了处理 为了获得上述的频率 智能转换信号; 从而在通过数字电路实现的情况下减少电路元件的数量和刻度。 此外,本发明能够实现由于其性能而在宽频率范围内必须消除第一载波色度信号的频率变化,从而可以进行精确的频率转换。