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    • 5. 发明专利
    • Leakage coaxial cable and its manufacturing method
    • 泄漏同轴电缆及其制造方法
    • JP2008166007A
    • 2008-07-17
    • JP2006351164
    • 2006-12-27
    • Mitsubishi Cable Ind Ltd三菱電線工業株式会社
    • OKUZONO HIROZOWATANABE SONOOKANEKO TAKASHI
    • H01B11/18
    • PROBLEM TO BE SOLVED: To provide a leakage coaxial cable that is high in radiation efficiency and excellent in radiation characteristics. SOLUTION: The leakage coaxial cable 1 is composed as follows. An external conductor 5 corrugatedly formed into a bellows shape is arranged on the outer periphery of an insulator 3 in which an internal conductor 2 is insertingly held at its center. Radio wave leakage holes 7 are formed in parallel with each other in the external conductor 5 at prescribed pitches in the longitudinal direction of the cable. The width w, in the longitudinal direction of the cable, of each radio-wave leakage hole 7 and the corrugation pitch p in the longitudinal direction of the cable in the external conductor 5 are set to have a relationship of 1p COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种辐射效率高,辐射特性优异的泄漏同轴电缆。 解决方案:泄漏同轴电缆1的组成如下。 波导形成为波纹状的外部导体5布置在绝缘体3的外周上,其内部导体2插入其中心。 无线电波泄漏孔7在外部导体5中以规定的间距在电缆的纵向方向上彼此平行地形成。 每个无线电波泄漏孔7的电缆的纵向宽度w和外部导体5中的电缆的纵向上的波纹间距p被设定为1p
    • 8. 发明专利
    • Leakage coaxial cable and method of manufacturing the same
    • 泄漏同轴电缆及其制造方法
    • JP2010141374A
    • 2010-06-24
    • JP2008312838
    • 2008-12-09
    • Mitsubishi Cable Ind Ltd三菱電線工業株式会社
    • OKUZONO HIROZOWATANABE SONOOKANEKO TAKASHI
    • H01Q13/22H01B11/18H01B13/016H01P11/00
    • Y02A30/50
    • PROBLEM TO BE SOLVED: To provide a leakage coaxial cable excellent in flexibility and flame retardance: and to provide a method of manufacturing the same. SOLUTION: The leakage coaxial cable has a structure in which a heat resistant resin layer 8 having a softening temperature higher than that of a housing 6 is provided between the housing 6 and an outer conductor 5 with a leakage hole 7 sealed from the outer circumferential side, the inner surface of the heat resistant resin layer 8 is brought into close contact with a corrugated outer surface of the outer conductor 5, and the outer surface of the heat resistant resin layer 8 is brought into close contact with the inner surface of the housing 6. Preferably, bonding layers 9a, 9b are provided on the inner and outer surfaces of the heat resistant resin layer 8 so that the softening temperature of heat resistant resin layer 8 may be higher than that of the housing 6 and the softening temperature of the housing 6 may be higher than that of an adhesive layer. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供柔性和阻燃性优异的泄漏同轴电缆,并提供其制造方法。 解决方案:泄漏同轴电缆具有这样的结构,其中在壳体6和外部导体5之间设置软化温度高于壳体6的耐热树脂层8,其中泄漏孔7被密封 外周侧,耐热树脂层8的内表面与外导体5的波纹状外表面紧密接触,耐热树脂层8的外表面与内表面紧密接触 优选地,在耐热树脂层8的内表面和外表面上设置粘结层9a,9b,使得耐热树脂层8的软化温度可以高于壳体6的软化温度,并且软化 壳体6的温度可以高于粘合剂层的温度。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • COAXIAL CABLE
    • JP2000182446A
    • 2000-06-30
    • JP35721598
    • 1998-12-16
    • MITSUBISHI CABLE IND LTD
    • FUTABOSHI AKITOBAMISHIN ETSUROUWATANABE SONOOMATSUDA NOBUYOSHI
    • H01B11/18
    • PROBLEM TO BE SOLVED: To efficiently manufacture a large diameter cable by forming an insulator installed in a cylindrical gap between an inner conductor and an outer conductor with a string-like foamed plastic spirally wound on the inner conductor. SOLUTION: An inner conductor 1 is a spiral corrugated copper tube whose outside dimension D1 is 36 mm, for example, and its outside circumferential surface is closely covered with an insulating layer 4 made of polyethylene. An outer conductor 2 is a spiral corrugated copper tube whose outer dimension D2 is 87 mm, the trough of the outer circumference of the spiral corrugated copper tube is buried with a water blocking compound 5, and further the outside is covered with an anticorrosion layer 6 made of polyethylene. An insulator 3 is made of a string-like foamed plastic having a circular transverse cross section, and three insulators are spirally wound on the inner conductor 1 through the insulating layer 4. The insulator 3 is formed so as to have a foaming ratio of 45-80%, by extruding a foamed polyethylene string on a thin polyethylene string. A large gap dimension D3 having a cylindrical vacant space M of about 25 mm is maintained.