Patent classifications
H01R13/14
LED light apparatus
A LED light apparatus includes an electrical connector device for electrically connecting a light source board and a driver board. The electrical connector device comprising an input terminal and an output terminal, one end of input terminal is fixed on the driver board of the LED light and electrically connected to the driver board. The output terminal includes a conductive terminal, an elastic clipping portion, and a resistance portion, the conductive terminal includes a conductive pin, the conductive pin is fixed on the light source board and electrically connected to the light source board, the elastic clipping portion and the resistance portion are placed on the conductive terminal, and when assembled, the other end of the input terminal elastically touches one end of the elastic resistance portion and the resistance portion touches the other end of the resistance portion. The electrical connector of LED light owns the advantages of simple structure and high reliability.
Electrical connector
A connector for holding a linear conductor by a first contact portion and a second contact portion is provided. The linear conductor is inserted through an insertion portion. The first contact portion is formed in a pressing portion configured to be deformed elastically to press the linear conductor against the second contact portion. The second contact portion is formed in a fixed portion which is not deformed elastically and the second contact portion has at least one edge portion.
Electrical connector
A connector for holding a linear conductor by a first contact portion and a second contact portion is provided. The linear conductor is inserted through an insertion portion. The first contact portion is formed in a pressing portion configured to be deformed elastically to press the linear conductor against the second contact portion. The second contact portion is formed in a fixed portion which is not deformed elastically and the second contact portion has at least one edge portion.
High-power board-to-board floating connector
The present invention provides a high-power board-to-board floating connector that comprises a male header and a female socket. The male head comprises a first electrode, a first housing and a first insertion element. The female socket comprises a second electrode, a second housing, a floating member, and a second insertion element. The second housing combines with the floating member to form a connection part which can be slightly moved in one or more directions, so that the male head can be connected to the female socket in a permissible range, and then the first electrode is electrically connected to the second electrode.
High-current connector
The invention relates to a high-current plug connector (1) for an electrical connection between a first line (11) and a second line (12), comprising: a plug pin (2) that can be connected to the first line (11), a plug socket (3) that can be connected to the second line (12), a contact cage (4), which is arranged between the plug pin (2) and the plug socket (3) and is designed to establish electrical contact between the plug pin (2) and the plug socket, a spring element (5), which exerts a preload (F) in the axial direction (X-X) of the high-current plug connector, and a flexible connection element (6), by means of which the plug pin (2) can be connected to the first line (11) and/or by means of which the plug socket (3) can be connected to the second line (12).
High-current connector
The invention relates to a high-current plug connector (1) for an electrical connection between a first line (11) and a second line (12), comprising: a plug pin (2) that can be connected to the first line (11), a plug socket (3) that can be connected to the second line (12), a contact cage (4), which is arranged between the plug pin (2) and the plug socket (3) and is designed to establish electrical contact between the plug pin (2) and the plug socket, a spring element (5), which exerts a preload (F) in the axial direction (X-X) of the high-current plug connector, and a flexible connection element (6), by means of which the plug pin (2) can be connected to the first line (11) and/or by means of which the plug socket (3) can be connected to the second line (12).
SELF-SET HOME AUTOMATION AND METHOD FOR OPERATING THE HOME AUTOMATION
A self-set home automation and method for handling the self-set home automation and the related devices including cascading intelligent support boxes and plug-in devices to provide simple to install and operate, with less wiring wherein the cascaded devices are optically linked, to include separated low voltage grid and related devices, and a converter for communicating RF, wifi and IR.
SELF-SET HOME AUTOMATION AND METHOD FOR OPERATING THE HOME AUTOMATION
A self-set home automation and method for handling the self-set home automation and the related devices including cascading intelligent support boxes and plug-in devices to provide simple to install and operate, with less wiring wherein the cascaded devices are optically linked, to include separated low voltage grid and related devices, and a converter for communicating RF, wifi and IR.
CURVED ELECTRICAL CONNECTORS
A connector system includes a receptacle configured for mounting on a structure having a curved sidewall with an opening formed therein, such as an aerial vehicle having a curved skin with an access opening. The receptacle is configured so that the contacts of the receptacle are accessible from the exterior of the structure, through the opening; and the receptacle does not protrude above the outer surface of the sidewall. The connector system can further include a plug configured to mate with the receptacle to form an electrical connection. The plug can include a retractable shroud that protects the contacts of the plug when the plug is not mated with the receptacle.
WIRE-TO-WIRE CONNECTOR WITH SPLICE CONTACT PORTION
A contact for a wire-to-wire electrical connector includes a first contact portion defining a first wire receiving opening to receive a first wire and a second wire receiving opening to receive a second wire. The contact further includes a splice contact portion abutting the first contact portion and defining a third wire receiving opening to receive a third wire. The first contact portion also includes a first plurality of contact tines to electrically connect the first wire and the second wire and the splice contact portion includes a second plurality of contact tines to electrically connect the third wire to the first wire and the second wire.