Abstract in simplified Chinese:一种插座连接器,用于移动电话或类似物,包括绝缘材料之一外壳,一屏蔽,及多个接触终端。外壳具有一主要长方形块部份,具有平坦上及下侧边及前,后及横向侧边。在前与后侧边之间之横向侧边平行延伸各波道,接触终端被制成安装于此等波道中之条形组件。至少某些接触终端各设有宽度大于各波道宽度之二阻留部份,以提供主要与上及下侧边平行之一阻留力。靠近外壳上侧边之上方壁处各波道宽度小于在外壳下侧边之下方壁处宽度,以迫使接触终端抵靠下方壁。接触终端各设有一对接安装接触端部及一后方端部,其中后方端部处之阻留部份宽度大于对接安装接触端部处之宽度。一种插头连接器,用以相互连接一活动设备于一固定设备,包括绝缘材料之一外壳,一屏蔽,安装于外壳中之多个接触终端,至少一闩锁组件锁定插头连接器于活动设备之一插座连接器,及一按钮操纵闩锁组件。插头连接器之外壳设有至少一定位钉以被收纳于插头连接器之一室中。外壳包括内方及外方部份,内方部份制成一接触块收容接触终端,外方部份制成相连之底部及顶盖,外方部份包括定位钉及按钮。
Abstract in simplified Chinese:一种连接器,其包含一绝缘材料制成之外壳,该外壳系具有一安装表面,且安装表面上系具有复数凹沟,一金属连接组件系借由夹持之方式而安装在每一凹沟。该连接组件系可以通过该凹沟入口,此金属连接组件系可以由实心杆体或者系中空管体所构成。在连接组件系由管体构成之例子中,该管体系具有一纵向凹槽,此凹槽系可使该管体之中空内壁与外界环境相连通,其中该凹槽系指向远离外壳之安装表面的方向。
Abstract:
A connector (1) for receiving a microcircuit card, the connector having a resilient arm (9) on a first border (10) of the seat (2) of the connector. The arm is curved inwardly towards the seat to exert pressure on an edge of the card in the direction of a second border (11) of the seat, opposite the first border. It allows to limit a longitudinal mobility of the card in its seat. Further, the connector also has releases (14, 15, 19, 31, 36) on an upper portion of its housing to cover an upper portion of the card, in order to prevent a vertical mobility of the seated card.
Abstract:
The invention pertains to an electro-optical connector module comprising a connection part, at least one optical transmitter circuit and/or optical receiver circuit and at least one electro-optical converter for respectively converting electrical signals into optical signals or vice versa. The module further comprises at least two substantially flat and substantially parallel electrically insulating sheets on which the transmitter circuit and/or receiver circuit and the converter are mounted. It is preferred that the connector module according, comprises at least one optical transmitter circuit, at least one optical receiver circuit and at least two electro-optical converters for respectively converting electrical signals into optical signals and vice versa, wherein the optical transmitter circuit and a first converter are mounted on a first sheet and the optical receiver circuit and a second converter are mounted on a second sheet.
Abstract:
The invention describes a control unit of a valve mechanism with an electromagnetic coil (1) where the electromagnetic coil (1) is connected to the coil (1) via an electrically conducting spring-mounted connecting ridge (10).
Abstract:
The invention relates to a connector module set (12) consisting of at least one male module and at least one female module, which are designed to be coupled to establish an electric connection. The module (2) not associated with the receptacle (18) includes an antirotation member (10) which is designed to be inserted in a housing (14) formed in said receptacle (18), said antirotation member (10) being adapted to ensure both keying and guiding functions when said two modules are coupled.
Abstract:
The invention pertains to a connector for a cable containing one or more conductors within a common shielding, which connector comprises a housing that comprises two or more constituent parts, a shielding and a passage for the cable and that accommodates at least one terminal block with terminals connected to the conductors in the cable. The shielding of the cable is placed over a rigid bush and is pressed against the bush by means a resilient ring washer that is placed over the shielding and that is compressed by the constituent parts of the housing.
Abstract:
The invention pertains to a connector for at least one cable with one or more conductors, comprising at least one housing of an electrically insulating material containing contact elements that are connected or to be connected to the conductors. The connector comprises a hood, which at least partially accommodates the housing and which comprises at least a passage for at least one cable, means for connecting the hood to a support panel for a printed circuit board, cable or the like, and one or more coding protrusions on the side that, upon connection to the support panel that is provided with holes for receiving corresponding coding protrusions, faces the support panel.
Abstract:
The invention pertains to a connector comprising a grounding element a and a housing of an electrically insulating material, which housing comprises at least one contact element comprising a contact end, an intermediate part, and a connection end. The connector further comprises an electrically insulating voltage variable medium that is provided between the at least one contact element and the grounding element, which medium becomes electrically conducting at a voltage that is substantially higher than the operating voltages of a device for which the connector is intended or of which it is a part. The connector according to the present invention is relatively compact and enables constant ESD suppression.
Abstract:
A connector assembly comprises an insulating housing with interconnected front and rear housing parts, a plurality of contact elements arranged in the housing in rows and columns, each contact element being provided with a first section having a mating contact end and a second section having a connection end. The rear housing part comprises a plurality of module housings, each module housing accommodating one column of contact elements. Each module housing is provided with at least one opening exposing at least one contact element of the corresponding column of contact elements. A shielding plate is inserted between adjacent columns of contact elements, the shielding plate contacting the one contact element through the opening. The shielding plate is provided with fastening means and is attached to the one contact element by means of the fastening means only.