Abstract:
A connector assembly is disclosed for interconnection to conductors of a flat circuit, wherein the conductors are in a pattern of varying widths. A dielectric housing has a receptacle with an opening communicating the receptacle to the exterior of the housing. A plurality of terminal blocks of conductive material are positionable in the receptacle. The terminal blocks have varying sizes with corresponding varying planar surfaces exposed at the opening in the housing for engaging the conductors of the flat circuit. The blocks are arranged in the receptacle so that they present a pattern of varying sized planar surfaces matching the pattern of varying width conductors.
Abstract:
A filter connector includes a dielectric housing having a mounting face. At least one row of terminal-receiving passages are formed in the housing through the mounting face. A row of filter-receiving pockets are formed in the housing through the mounting face respectively in alignment with the passages, and with one side of each pocket communicating with its respective passage. A slot is formed in the mounting face of the housing and extends along the row of pockets in communication with opposite sides thereof. A plurality of terminals are mounted into the passages. A plurality of filters are inserted into the pockets through the mounting face, with one side of the filters respectively engageable with the terminals. A single shorting bar is inserted into the slot in the housing through the mounting face and into engagement with opposite sides of the filters.
Abstract:
An electrical device (10) includes a flat flexible insulating substrate (12) having an opening (14) therethrough. A flat conductive terminal (16) is deposited on one side (12a) of the substrate at the opening. A portion (20) of the terminal is formed through the opening (14) so that the terminal has opposite ends at opposite sides of the substrate. One end (20) of the terminal forms a contact portion thereof, and an opposite end (18) of the terminal forms a land portion for receiving a solder ball (22).
Abstract:
A connector is provided for electrically interconnecting the conductors of a flat flexible circuit to a plurality of discrete terminal pins. The connector includes a dielectric housing having a front mating face and a rear terminating face. A plurality of terminal pin-receiving passages are provided in the mating face. A flat circuit-receiving receptacle is provided in the terminating face in communication with the passages. A circuit carrier is insertable into the receptacle of the housing and includes an attachment portion for attaching the flat flexible circuit pin receiving passages. Insertion of the pins in the passages causes the pins to engage the conductors of the circuit.
Abstract:
A filter connector such as one suitable for suppressing electromagnetic interference, radio frequency interference or both is provided according to an assembly approach that reduces cost. Included is a unitary spring plate that overlies the plug portion of the filter connector and biases the filter components up against the terminals of the connector.
Abstract:
A modular filter connector (10) includes an outer housing (12) having a cavity. A plurality of inner housing modules (16) are positionable in the cavity in a side-by-side array. At least one terminal (28) is mounted in each housing module to define at least one row of terminals along the cavity. A filter (34) is mounted in each housing module electrically coupled to each terminal to define at least one row of filters. A common shorting bar (36) spans the plurality of housing modules and is electrically coupled to the plurality of filters of the modules.
Abstract:
A system and method are provided for faciliating the interconnection of the conductors of a flat circuit. A flat circuit substrate is provided with a plurality of conductors thereon. A dielectri c film on the substrate substantially covers the conductors. An opening is formed in the film to selectively expose the conductors. A layer of solder material is preapplied to the exposed conductors in the opening. Therefore, the opening can be juxptaposed with a mating conductor to faciliate interconnecting the conductors by an appropriate soldering process using the preapplied solder material.
Abstract:
A keying system is provided in a connector assembly for electrically interconnecting the conductors of a flat flexible circuit to the conductors of a complementary connecting device. The assembly includes a first connector having a body member for positioning the flat flexible circuit thereon. A second connector mates with the first connector and includes a pattern of keying projections isertable into a corresponding pattern of keying holes in the flat flexible circuit on the first connector.
Abstract:
A polarizing system is provided in a connector for electrically interconnecting the conductors of a flat flexible circuit to the conductors of a complementary connecting device. The flat flexible circuit has a longitudinal center-line and a pattern of polarizing holes therein asymmetrical to the center-line. A connector body member positions the flat flexible circuit thereon and has an asymmetrical pattern of polarizing posts insertable into the polarizing holes of the flat flexible circuit.
Abstract:
A connector is provided for electrically interconnecting the conductors of a flat flexible circuit to a plurality of discrete terminal pins. The connector includes a dielectric housing having a front mating face and a rear terminating face. A plurality of terminal pin-receiving passages are provided in the mating face. A flat circuit-receiving receptacle is provided in the terminating face in communication with the passages. A circuit carrier is insertable into the receptacle of the housing and includes an attachment portion for attaching the flat flexible circuit pin receiving passages. Insertion of the pins in the passages causes the pins to engage the conductors of the circuit.