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    • 1. 发明授权
    • Cable conductor clamping connector
    • 电缆导体夹紧连接器
    • US5071365A
    • 1991-12-10
    • US671584
    • 1991-03-19
    • Dieter FremgenHorst HoffmannAlban Vernaleken
    • Dieter FremgenHorst HoffmannAlban Vernaleken
    • H01R4/24H01R13/58
    • H01R13/582H01R4/2425
    • A cable connector clamping connector comprises a plastics housing consisting of at least two elements having integrated therein a contact blade for contacting the ends of cable conductors which have been pushed into the housing. After inserting the cable conductors, the housing halves can be pushed together to lock, applying to the cable conductors the force necessary to press them into the contact blades for contacting. In order to make it possible for the user to check the depth of insertion in order to be certain that contacting is guaranteed in every case and with which, at the same time, a catch effect with respect to the outlet direction of the conductors is achieved, a resistance element, in the form of a plastics tongue, for tangibly signalling the depth of insertion of the cable conductor into the housing is provided in the effective insertion channel of each cable conductor, behind the contact blade in the direction of insertion.
    • 电缆连接器夹持连接器包括由至少两个元件组成的塑料壳体,所述至少两个元件集成有用于接触被推入壳体中的电缆导体的端部的接触片。 在插入电缆导体之后,壳体半部可以被推到一起锁定,向电缆导体施加将它们压入接触叶片以进行接触所需的力。 为了使用户能够检查插入深度,以确保在每种情况下保证接触,并且同时对导体的出口方向实现捕获效果 在塑料舌片形式的电阻元件,用于有形地将电缆导体插入壳体的深度信号设置在每个电缆导体的有效插入通道中,在接触片的插入方向后面。
    • 2. 发明授权
    • Switching contact arrangement, in particular for keyboards and a keyboard
    • 切换触点布置,特别是键盘和键盘
    • US4575589A
    • 1986-03-11
    • US627755
    • 1984-07-05
    • Horst Hoffmann
    • Horst Hoffmann
    • H01H13/702H01H13/703H01H3/12
    • H01H13/702H01H13/703H01H2207/016H01H2211/034H01H2227/018
    • The switching contact arrangement contains a support or base (1), above it a layer of at least two tracks approaching each other at an angle, one of which comprises a switching contact surface (11). The other one (13, 13') is divided in the region of the switching contact surfaces (11) and their track sections, so that a space is formed there. An insulating layer is provided in the region of the track intersection to be formed. A layer (30) of electrically conductive material is then applied thereto, which has a recess in the region of the switching contact surfaces (11). This layer also serves as a bridge for the track intersection and as a switching contact surface for a switching surface (41 or 43) arranged thereabove and made of a flexible, electrically conductive material. In addition, the electrically conductive layer (30) serves as a spacer for the switching surface (41). A particularly compact switching contact arrangement is provided by integrating the switching contact surface and the bridge.
    • 切换触点装置包括支撑件或基座(1),在其上方具有一个至少两个轨道的层,其一个角度彼此靠近,其中一个包括开关接触表面(11)。 另一个(13,13')被分割在开关接触表面(11)和它们的轨道部分的区域中,使得在那里形成空间。 在要形成的轨道交叉点的区域中设置绝缘层。 然后将导电材料层(30)施加到其上,在开关接触表面(11)的区域中具有凹部。 该层还用作轨道交叉点的桥,并且用作布置在其上方并由柔性导电材料制成的开关表面(41或43)的开关接触表面。 此外,导电层(30)用作切换面(41)的间隔件。 通过集成开关接触表面和桥接件提供了特别紧凑的开关触点布置。
    • 3. 发明授权
    • Multi-layer conductor plate and a method of making
    • 多层导体板及其制造方法
    • US4520228A
    • 1985-05-28
    • US410983
    • 1982-08-24
    • Horst Hoffmann
    • Horst Hoffmann
    • H05K3/46H05K1/09
    • H05K3/4685
    • A multi-layer conductor plate consists of a copper-clad base plate (1) on which a first layer of conductor paths (2,3,4; 5,6,7) is formed by applying an etch-resistant, electrically conductive varnish at the respective locations. The copper layers not covered by the etch-resistant varnish are removed by etching in etching bath. Subsequently an insulating varnish layer (16) is applied at least in the area of intersections of conductor paths of the first layer and a second layer. A varnish adapted to be galvanized and preferably being carbonaceous is applied at predetermined locations and subsequently coated with a metal layer applied galvanically.
    • 多层导体板由覆铜基板(1)组成,其上通过施加耐蚀刻的导电清漆形成第一层导体路径(2,3,4; 5,6,7) 在各个位置。 通过在蚀刻浴中的蚀刻除去未被耐蚀刻清漆覆盖的铜层。 随后,至少在第一层和第二层的导体路径的交叉区域中施加绝缘漆层(16)。 适用于镀锌且优选碳质的清漆在预定位置施加,随后涂覆有电镀金属层。