Abstract:
A relay connector assembly configured to electrically connect a power supply and a load includes a housing having a bottom configured to be mounted to a circuit board, the housing having contact cavities. Power contacts are received in corresponding contact cavities and held by the housing. The power contacts have relay tab ends and terminating ends having interfaces configured to be terminated to high current power conductors of either the power supply or the load. A relay is coupled to the housing. The relay has coil contacts configured to be electrically connected to a coil circuit of the circuit board used to energize the relay. The relay has relay tabs being terminated to the relay tab ends of corresponding power contacts. The relay electrically connects corresponding power contacts when the relay is energized.
Abstract:
An electronic device includes a substrate having a top surface, a bottom surface and at least one opening therethrough. The substrate has a circuit. A switch mechanism is mounted to the substrate and is electrically connected to the circuit. The switch mechanism has an actuator configured to activate the switch mechanism. The switch mechanism has a housing holding the actuator and leads extending from the housing. The leads are electrically connected to the circuit. The switch mechanism is mounted to the substrate in the opening such that at least a portion of the housing is positioned below the top surface.
Abstract:
A relay connector assembly configured to electrically connect a power supply and a load includes a housing having a bottom configured to be mounted to a circuit board, the housing having contact cavities. Power contacts are received in corresponding contact cavities and held by the housing. The power contacts have relay tab ends and terminating ends having interfaces configured to be terminated to high current power conductors of either the power supply or the load. A relay is coupled to the housing. The relay has coil contacts configured to be electrically connected to a coil circuit of the circuit board used to energize the relay. The relay has relay tabs being terminated to the relay tab ends of corresponding power contacts. The relay electrically connects corresponding power contacts when the relay is energized.
Abstract:
An electronic device includes a substrate having a top surface, a bottom surface and at least one opening therethrough. The substrate has a circuit. A switch mechanism is mounted to the substrate and is electrically connected to the circuit. The switch mechanism has an actuator configured to activate the switch mechanism. The switch mechanism has a housing holding the actuator and leads extending from the housing. The leads are electrically connected to the circuit. The switch mechanism is mounted to the substrate in the opening such that at least a portion of the housing is positioned below the top surface.
Abstract:
An electrical relay device includes a housing extending between a closed end and an open end defining a chamber. The closed end of the housing faces and is mounted to a circuit board. A driver is received in the chamber and is electrically connected to a relay power source. The driver includes a coil and coil terminals terminated to the circuit board. A switch member is positioned in the chamber and moves between a first position and a second position. The switch member includes a movable relay contact. A cover is coupled to the housing at the open end. The cover holds the coil with the movable relay contact positioned between the coil and the closed end of the housing facing the circuit board.
Abstract:
A light sensor assembly includes a base configured to be fixedly mounted to a housing of a light fixture. The base holds contacts configured to be electrically connected to terminals of the light fixture. A photocell module is provided on the base and includes a photocell electrically connected to the contacts. A sensor lid is coupled to the base. The sensor lid has a lightpipe directing light from an exterior of the sensor lid to the photocell. The sensor lid is variably positionable at different angular positions relative to the base to change an orientation of the lightpipe relative to the photocell.
Abstract:
A power wiring device includes a front housing having a power component at a user interface and a rear housing having a wire interface. The front and rear housings define a cavity. Control electronics are received in the cavity and include a circuit board and a controller coupled to the circuit board. The controller has control circuitry for controlling a power function of the power wiring device. The power component is coupled to the circuit board and affected by the power function. A plurality of power terminals are coupled to the circuit board. The power terminals each have a base, circuit board contacts extending from the base and being terminated to the circuit board, and wire contacts extending from the base. The wire contacts have quick connect interfaces for direct, quick connection to corresponding wires of building wiring.
Abstract:
A wireless door lock power system includes a power transmitter configured to be coupled to a building power supply having a transmit face at or near a door jamb and a power receiver configured to be coupled to a door closably received in the doorjamb. The power receiver has a receive face at or near an edge of the door. The power receiver receives a wireless power transmission from the power transmitter. A chargeable battery is received in the door. The battery is electrically coupled to the power receiver. The battery receives power from the power receiver to recharge the battery. An electronic door lock is operably coupled to the battery. The electronic door lock has a lock electronically actuated to lock the door to the doorjamb.
Abstract:
A connectorized wireless node used to distribute power and control devices in a system. The connectorized wireless node includes a housing, power control circuitry and wireless control circuitry. The power control circuitry is provided in the housing and distributes power to the devices. The wireless control circuitry is provided in the housing and receives wireless signals which contain control information. The wireless control circuitry cooperates with the power control circuitry to control the devices within a system.
Abstract:
A light bulb assembly includes a bulb housing that is configured to be connected to a light bulb socket. A light bulb is held by the bulb housing and includes a printed circuit board (PCB). The assembly includes an electrical connector having a connector housing, a negative terminal of the light bulb assembly, and a positive terminal of the light bulb assembly. The electrical connector is mounted to the PCB such that the positive terminal and the negative terminal are electrically connected to the PCB. The negative terminal is configured to mate with a corresponding negative terminal of the light bulb socket. The positive terminal is configured to mate with a corresponding positive terminal of the light bulb socket.