Abstract:
A system to provide alignment between a source resonator and a capture resonator. The source resonator is configured to emit a magnetic charging signal or a magnetic beacon signal. The source resonator is coupled to an electrical power source that provides current to the source resonator. The source resonator emits the charging signal when the current exceeds a first threshold and emits the beacon signal when the current is below a second threshold. The capture resonator is configured to receive the charging signal and provide electrical power based on the charging signal. The system also includes a magnetic sensor configured to receive the beacon signal and provide a location signal indicative of a relative location between the transmit and capture resonators to a controller that provides an alignment signal indicative of a movement required to align the source resonator and the capture resonator.
Abstract:
A method is provided for attaching a termination arrangement to a shielded cable which includes a conductive core, a core insulation layer, a conductive shield layer, and an outer insulation layer. A length of the outer insulation layer is removed to expose an end portion of the conductive shield layer and a length of the core insulation layer is removed to expose a portion of the conductive core. The termination assembly is provided having a terminal, a core crimp section in electrical communication with the terminal, and an inner ferrule section connected to the core crimp section. The core crimp section is positioned adjacent to the exposed conductive core and crimped around said conductive core in electrical contact therewith. The inner ferrule section is positioned adjacent to the exposed conductive shield layer and crimped around the core insulation layer. The core crimp section is separated from the inner ferrule section.
Abstract:
An evaporator configured to transfer heat between air flowing through the evaporator and refrigerant within the evaporator, and transfer heat between the refrigerant within the evaporator and phase change material (PCM) within the evaporator. The evaporator includes a first plate, a second plate, and a first tube. The second plate is coupled to the first plate to form an assembly that defines a cavity to contain PCM. The assembly also defines a first opening that cooperates with corresponding first openings in other assemblies to define a first manifold to convey refrigerant. The first manifold is defined when the assembly is arranged with the other assemblies to form a stack. The first tube is in fluidic communication with the first manifold. The assembly cooperates with an adjacent assembly of the other assemblies when the stack is formed to define a first slot configured to receive the first tube.
Abstract:
A lightweight radio/CD player for vehicular application includes a case and frontal interface formed of polymer based material molded to provide details to accept audio devices and radio receivers, as well as the circuit boards required for electrical control and display. The case and frontal interface are of composite structure, including an insert molded electrically conductive wire mesh screen that has been pre-formed to contour with the molding operation. The wire mesh provides shielding and grounding of the circuit boards via exposed wire mesh pads and adjacent ground clips.
Abstract:
The invention relates to an electrical terminal element comprising a base element with at least one terminal section and at least one socket section which has at least one contact arm for contacting a plug-in contact which can be introduced into the socket section. In a contact region in which contacting of the inserted plug-in contact takes place, the contact arm is divided into at least two partial contacts. Also, the electrical terminal element comprises an additional spring which surrounds the base element in the region of the socket section and which has at least one additional spring arm which at least in the contact region cooperates with the contact arm, so that the latter can be deflected against a return force of the additional spring arm.
Abstract:
A portable holder for an electric vehicle charger with an inline electronics module. The holder includes or defines a cavity, a first extension, a second extension, and a slot. The cavity is configured to receive the inline electronics module through an opening in the cavity. The first extension is arranged about a first side of the cavity. The second extension is arranged about a second side of the cavity opposite the first side. The first extension and the second extension cooperate to hold in place a vehicle cord connected to the inline electronics module when the vehicle cord is wrapped around the cavity. The slot is defined by the second extension and the cavity. The slot is configured to receive a power cord connected to the inline electronics module when the inline electronics module is inserted into the cavity.
Abstract:
A system for a multi-cylinder compression ignition engine includes a plurality of nozzles, at least one nozzle per cylinder, with each nozzle configured to spray oil onto the bottom side of a piston of the engine to cool that piston. Independent control of the oil spray from the nozzles is provided on a cylinder-by-cylinder basis. A combustion parameter is determined for combustion in each cylinder of the engine, and control of the oil spray onto the piston in that cylinder is based on the value of the combustion parameter for combustion in that cylinder. A method for influencing combustion in a multi-cylinder engine, including determining a combustion parameter for combustion taking place in in a cylinder of the engine and controlling an oil spray targeted onto the bottom of a piston disposed in that cylinder is also presented.
Abstract:
An electrical splice assembly includes a housing having a forward portion, a rearward portion, and an intermediate portion defining a plurality of terminal retention cavities between the forward portion and the rearward portion. A conductive bus plate is retained within the forward portion of the housing. A plurality of terminals each extend into a respective terminal retention cavity and each terminal is in electrical contact with the bus plate. Each of the terminal retention cavities is defined by 1) a pair of opposing sidewalls connected to the forward portion and to the rearward portion and 2) a pair of opposing retention beams. The retention beams each include a latch which engages a respective terminal to retain the terminals in the terminal retention cavities.
Abstract:
A method is provided for forming a grounding arrangement on a shielded cable which includes a conductive core, a core insulation layer, a conductive shield layer, and an outer insulation layer. An inner ferrule is positioned adjacent an end portion of the conductive shield layer that has been exposed, the inner ferrule is crimped around the core insulation layer, and the end portion is folded over the inner ferrule to radially surround the inner ferrule. An electrically conductive outer ferrule is positioned radially adjacent to the end portion and the outer ferrule is crimped radially around the inner ferrule to capture the end portion radially between the inner ferrule and the outer ferrule, thereby fixing the outer ferrule in electrical contact with the conductive shield layer.
Abstract:
An anti-rattle sleeve that includes a retention feature on a split end that extends radially from the body portion and a slot configured to allow the retention feature to be pressed through an opening. The sleeve also includes a flange portion opposite the split end that includes an inner bump configured to contact a surface of an object bracket and an outer bump configured to contact a surface of a mounting bracket. The inner bump and the outer bump are located relative to the slot such that the sleeve is deformed by the brackets in a manner effective to reduce relative motion between the object bracket and the mounting bracket when compressed between the brackets.