Abstract:
A connection includes a widened reinforcement harness which comprises a reinforced harness, a non-deformable ferrule and a reinforcement portion which has a greater diameter than the reinforcement of the harness, the non-deformable ferrule being arranged around the harness with the reinforcement of the harness folded on the outer side of the non-deformable ferrule, a first end of the reinforcement portion being attached around the folded portion of the reinforcement of the harness, the connection further comprising an integrated coupling connector, a second end of the reinforcement portion of the widened reinforcement harness being attached to a section of the integrated coupling connector. This connection is particularly advantageous for the small harness, wherein the reinforcement of the harness has a diameter which is too small to surround the section of an integrated coupling connector.
Abstract:
A circuit includes a connector having first and second mateable portions. Each portion includes at least two terminals configured to mechanically engage at least two terminals of the other portion. The two terminals within the first and second portions are arranged so that as the first and second portions are mated, a first terminal of the first portion and a first terminal of the second portions come into contact before respective second terminals of the first and second portions. The circuit also includes a polymeric positive temperature coefficient (PPTC) device with a first terminal in electrical communication with the first terminal of the first portion and a second terminal in electrical communication with the second terminal of the first portion. A power terminal is in electrical communication with the second terminal of the first portion and is configured to be connected to a power source. A load terminal is in electrical communication with the first and second terminals of the second portion and is configured to be connected to a load.
Abstract:
A connector for being attached to a power-supply unit including a switching element and for mating with a mating connector of a wire harness, the connector including a connecting terminal including an end portion connected to an output terminal in a casing of the power-supply unit, a housing fixed to the casing and enclosing at least a portion of the connecting terminal, a current sensor enclosed in the housing so as to detect a magnetic field generated by an electric current flowing through the connecting terminal, and a signal line for transmitting an output signal of the current sensor.
Abstract:
A pluggable module is provided and includes a plug receptacle in which a plug is receivable, a housing coupled to the plug receptacle, a heat removal device partially disposable within the housing to assume and be movable between first and second positions and an armature. The armature is interposed between corresponding portions of the housing and the heat removal device and is configured for selective manipulation to thereby move the heat removal device from the second position to the first position. With the plug received in the plug receptacle and the heat removal device in the first position, the heat removal device forms a thermal pathway with the plug by which heat is removed from the plug.
Abstract:
An electrical connector includes an insulative housing with a plurality of contacts therein and a metallic shell enclosing said housing to form a mating cavity in which the contacting sections of the contacts are exposed upon a mating tongue of the housing, which extends in the mating cavity. A heating device is retained in the housing and located adjacent to the contacting sections of the contacts to expel humidity therefrom and away from the mating cavity.
Abstract:
The invention describes an adapter part (2, 9) for a modular lighting assembly (1) comprising a number of light-emitting diodes (4) mounted on a separate base part (3), which adapter part (2, 9) comprises a number of first electrical connectors (21) arranged to connect the light-emitting diodes (4) to an external power supply; at least one electrical component (5) arranged in a body of the adapter part (2, 9); and a number of second electrical connectors (22) arranged to connect external circuitry to an electrical component (5) arranged in the body of the adapter part (2, 9). The invention further describes a modular lighting assembly (1) comprising a base part (3) upon which a number of light-emitting diodes (4) is mounted; and an adapter part (2, 9) according to the invention. The invention also describes a method of assembling such a modular lighting arrangement (1), comprising the steps of connecting a first adapter part (2, 9) according to the invention to a separate base part (3); choosing a number of electrical components (5, 6) on the basis of an application requirement of the modular lighting arrangement (1); and arranging an electrical component (5, 6) in the adapter part (2, 9) such that an electrical connection is formed between a contact surface of the electrical component (5, 6) and a second electrical connector (22) of the adapter part (2, 9).
Abstract:
An electric connecting structure includes L-shaped terminals having electric connecting portions and a resin member which contains the electric connecting portions. The L-shaped terminals are assembled to a circuit board so that a mounting direction of electric components to the resin member is substantially parallel to an extending direction of the circuit board. The electric components are mounted to the resin member in a plurality of stages which are stacked in a substantially vertical direction with respect to the extending direction of the circuit board. Mounting planes of the resin member in which the electric components are mounted to the resin member are arranged in a step-like shape so as to be displaced backward in the mounting direction by a unit of the stage in accordance with increasing of a distance from the circuit board.
Abstract:
A power line filter including a socket, a housing, a plurality of filter elements and a ground inductor is disclosed. The socket includes at least one power pin and a ground pin. The housing is assembled with the socket, and includes a first receptacle and a second receptacle. The opening direction of the first receptacle is opposite to the opening direction of the second receptacle. The plurality of filter elements is disposed in the first receptacle. At least one of the filter elements is electrically connected to the power pin. The ground inductor is disposed in the second receptacle and electrically connected to the ground pin.
Abstract:
An electrical connector including a body, an electrical contact and a microphone is provided. The body has a front part and a plug aperture on the front part. The electrical contact is disposed in the plug aperture. The microphone is disposed inside the body and connected to the outside of the body through an acoustic path provided by the body. The electrical connector is adapted to a handheld electronic device, such as a mobile phone, wherein a housing of the handheld electronic device can be provided without an independent sound input aperture for the microphone, to simplify the structural design of the housing. Furthermore, at least a through hole may be formed outside the plug aperture to form multiple acoustic paths.
Abstract:
An apparatus and method for substantially reducing the electrical energy consumption of a.c. induction motor-driven appliances by connecting a database predetermined capacitance in parallel with the motor-driven appliances and connecting a database predetermined inductance in series with the a.c. induction motor-driven appliances to effect the optimal power factor correction and optimal inrush current limiting of such motor-driven appliances thereby conserving electrical energy and reducing electrical energy costs. The databases of the present invention which specify the optimal power factor correction capacitance value and an optimal inductance value for specific a.c. induction motor-driven appliances eliminates the need for preliminary power factor and inrush current related electrical measurements and making the mass production and sale of the present invention practical.