Abstract:
The invention relates to a connection arrangement (1) for connecting at least one voltage source and/or voltage sink (25) which is in the form of a cell to an external electrical component (13) and electrical arrangement comprising a voltage source and/or sink (25) and a connection arrangement (1). An object of the invention is to provide a solution in which the production complexity is low. A connection arrangement (1) according to the invention for connecting at least one voltage source and/or voltage sink (25) which is in the form of a cell to an external electrical component (13) comprises a cell contact (2) for contacting the voltage source and/or sink (25), a cell connection line (4) connected to the cell contact (2) and a connection line (12), which is connected to the cell connection line (4) at the end thereof facing away from the cell contact (2), for connection to the external electrical component (13), wherein the cell connection line (4) comprises the same material as the cell contact (2). An electrical arrangement according to the invention comprises a voltage source and/or sink (25) and a connection arrangement (1) according to the invention.
Abstract:
A terminal device is proposed which has a housing of insulating material, said housing surrounding a portion of the cable end in the manner of a sleeve and comprising a flange directed towards the terminal receptacle. There is additionally provided an inner shield sleeve of conductive material arranged in the housing and surrounding the cable, which sleeve is connected conductively to the shield and which comprises a flanged contact zone directed towards the terminal receptacle. Fastening means, preferably screws, are used simultaneously to press the housing and the contact zone, resting on the housing, of the inner shield sleeve axially against a shield housing of the terminal receptacle.
Abstract:
The invention concerns a connector for connecting cellular electrical elements. The invention seeks to supply a solution that is less complex and thus more cost-efficient. This objective is met by a ribbon-shaped connector (1) for connecting cellular electrical elements (20), consisting of a ribbon-shaped support element (2) and a ribbon-shaped retaining element (3), whereby at least one contact element (4) is arranged between the support element (2) and the retaining element (3).