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    • 1. 发明授权
    • Conductive particle with protrusions and anisotropic conductive material therefrom
    • 具有突起的导电粒子及其各向异性导电材料
    • US07410698B2
    • 2008-08-12
    • US10559688
    • 2005-01-27
    • Hiroya IshidaTakeshi WakiyaShinya Uenoyama
    • Hiroya IshidaTakeshi WakiyaShinya Uenoyama
    • B32B5/16
    • H01R13/03B22F1/025B22F2999/00C23C18/1635C23C18/1641C23C18/30H05K3/323H05K2201/0218H05K2201/0272Y10T428/12181Y10T428/24612Y10T428/2991C23C18/16
    • A conductive particle having a low connection resistance, a small variation of conduction performance, and excellent conduction reliability and an anisotropic conductive material using such particles are disclosed. Conventional anisotropic conductive materials using conductive particles are used in the form that they are interposed between opposed boards or between opposed electrode terminals of electronic devices such as mobile telephones. However, as electronic devices have been recently developing, enhancement of the conduction reliability of the conductive particles used for the anisotropic conductive materials have been required. The surface (2) of the base particle of a conductive particle (1) of the invention used for an anisotropic conductive material is covered with a conductive film or films (4, 5). The conductive particle (1) has projections (5b) projecting from the conductive film or films. A core material (3)for projecting the surface of the conductive film is provided on the surface of the base particle. The core material (3) is different from the conductive material of the conductive films. By thus using such conductive particles, the conduction reliability is enhanced.
    • 公开了具有低连接电阻,导电性能变化小,导电可靠性优异的导电颗粒和使用这种颗粒的各向异性导电材料。 使用导电颗粒的传统的各向异性导电材料以它们被插入相对的板之间或电子设备例如移动电话的相对的电极端子之间的形式使用。 然而,随着电子器件近来的发展,需要提高用于各向异性导电材料的导电粒子的导电可靠性。 用于各向异性导电材料的本发明的导电颗粒(1)的基础颗粒的表面(2)被导电膜或膜(4,5)覆盖。 导电粒子(1)具有从导电膜或膜突出的突起(5b)。 在基体颗粒的表面上设置用于投射导电膜表面的芯材(3)。 芯材(3)与导电膜的导电材料不同。 通过这样使用这样的导电粒子,可以提高导通可靠性。
    • 2. 发明申请
    • Conductive particle and anisotropic conductive material
    • 导电颗粒和各向异性导电材料
    • US20070092698A1
    • 2007-04-26
    • US10559688
    • 2005-01-27
    • Hiroya IshidaTakeshi WakiyaShinya Uenoyama
    • Hiroya IshidaTakeshi WakiyaShinya Uenoyama
    • B32B1/00B32B3/00
    • H01R13/03B22F1/025B22F2999/00C23C18/1635C23C18/1641C23C18/30H05K3/323H05K2201/0218H05K2201/0272Y10T428/12181Y10T428/24612Y10T428/2991C23C18/16
    • A conductive particle having a low connection resistance, a small variation of conduction performance, and excellent conduction reliability and an anisotropic conductive material using such particles are disclosed. Conventional anisotropic conductive materials using conductive particles are used in the form that they are interposed between opposed boards or between opposed electrode terminals of electronic devices such as mobile telephones. However, as electronic devices have been recently developing, enhancement of the conduction reliability of the conductive particles used for the anisotropic conductive materials have been required. The surface (2) of the base particle of a conductive particle (1) of the invention used for an anisotropic conductive material is covered with a conductive film or films (4, 5). The conductive particle (1) has projections (5b) projecting from the conductive film or films. A core material (3) for projecting the surface of the conductive film is provided on the surface of the base particle. The core material (3) is different from the conductive material of the conductive films. By thus using such conductive particles, the conduction reliability is enhanced.
    • 公开了具有低连接电阻,导电性能变化小,导电可靠性优异的导电颗粒和使用这种颗粒的各向异性导电材料。 使用导电颗粒的传统的各向异性导电材料以它们被插入相对的板之间或电子设备例如移动电话的相对的电极端子之间的形式使用。 然而,随着电子器件近来的发展,需要提高用于各向异性导电材料的导电粒子的导电可靠性。 用于各向异性导电材料的本发明的导电颗粒(1)的基础颗粒的表面(2)被导电膜或膜(4,5)覆盖。 导电粒子(1)具有从导电膜或膜突出的突起(5b)。 在基体颗粒的表面上设置用于投射导电膜表面的芯材(3)。 芯材(3)与导电膜的导电材料不同。 通过这样使用这样的导电粒子,可以提高导通可靠性。
    • 4. 发明申请
    • Conductive Fine Particles And Anisotropic Conductive Material
    • 导电微粒和各向异性导电材料
    • US20070281161A1
    • 2007-12-06
    • US11660537
    • 2005-08-19
    • Hiroya Ishida
    • Hiroya Ishida
    • H01B5/00H01B1/22H01B5/16
    • H01B1/22Y10T428/2991Y10T428/2998
    • Conductive fine particles which prevent a leak current from being caused by conductive fine particles as a result of fine-pitched electrodes and are low in connection resistance and excellent in conduction reliability, and an anisotropic conductive material using the conductive fine particles. The conductive fine particles have the surfaces of base material fine particles covered with conductive films, with the conductive films provided on the surfaces thereof with swelling protrusions, wherein the swelling protrusions have an average height of at least 50 nm, the portions of swelling protrusions consist of, as a core material, conductive materials different from those of the conductive films, and the outer peripheries of the conductive fine particles are provided with insulating coating layers or insulating fine particles, preferably the thickness of the insulating coating layers being at least 0.2 nm, preferably an average particle size of the insulating fine particles being at least 30 nm and up to an average height of the protrusions; and the anisotropic conductive material having the conductive fine particles dispersed in its resin binder.
    • 作为微细电极的结果,导电性细颗粒导致的漏电流导电性微粒,导通性小的连接电阻和导电可靠性优异的导电性微粒,以及使用该导电性微粒的各向异性导电材料。 导电性细颗粒具有被导电膜覆盖的基材细颗粒的表面,导电膜在其表面上设置有膨胀突起,其中膨胀突起具有至少50nm的平均高度, 作为芯材,与导电膜不同的导电材料,导电性细颗粒的外周设置有绝缘涂层或绝缘细颗粒,优选绝缘涂层的厚度为至少0.2nm 优选绝缘微粒的平均粒径为30nm以上且达到突起的平均高度; 和具有导电性微粒分散在其树脂粘合剂中的各向异性导电材料。
    • 6. 发明授权
    • Conductive fine particles and anisotropic conductive material
    • 导电细颗粒和各向异性导电材料
    • US07470416B2
    • 2008-12-30
    • US11660537
    • 2005-08-19
    • Hiroya Ishida
    • Hiroya Ishida
    • B32B5/16
    • H01B1/22Y10T428/2991Y10T428/2998
    • Conductive fine particles which prevent a leak current from being caused by conductive fine particles as a result of fine-pitched electrodes and are low in connection resistance and excellent in conduction reliability, and an anisotropic conductive material using the conductive fine particles. The conductive fine particles have the surfaces of base material fine particles covered with conductive films, with the conductive films provided on the surfaces thereof with swelling protrusions, wherein the swelling protrusions have an average height of at least 50 nm, the portions of swelling protrusions consist of, as a core material, conductive materials different from those of the conductive films, and the outer peripheries of the conductive fine particles are provided with insulating coating layers or insulating fine particles, preferably the thickness of the insulating coating layers being at least 0.2 nm, preferably an average particle size of the insulating fine particles being at least 30 nm and up to an average height of the protrusions; and the anisotropic conductive material having the conductive fine particles dispersed in its resin binder.
    • 作为微细电极的结果,导电性细颗粒导致的漏电流导电性微粒,导通性小的连接电阻和导电可靠性优异的导电性微粒,以及使用该导电性微粒的各向异性导电材料。 导电性细颗粒具有被导电膜覆盖的基材细颗粒的表面,导电膜在其表面上设置有膨胀突起,其中膨胀突起具有至少50nm的平均高度, 作为芯材,与导电膜不同的导电材料,导电性细颗粒的外周设置有绝缘涂层或绝缘细颗粒,优选绝缘涂层的厚度为至少0.2nm 优选绝缘微粒的平均粒径为30nm以上且达到突起的平均高度; 和具有导电性微粒分散在其树脂粘合剂中的各向异性导电材料。