Abstract:
Coupling structure (10) for coupling a fuel injector to a fuel rail (16) includes a fuel injector receiving cup (14) having an outer wall (22) and an interior space (24). The cup includes slot structure (26, 28) through the outer wall. Clip structure (30, 32) has a base (31) and a wall (40) extending transversely from the base. The base is received in the slot structure and extends into the interior space so that a portion of the base engages the fuel injector to limit movement thereof both axially and radially with respect to the receiving cup, with the wall being disposed adjacent to a portion of the outer wall of the receiving cup. A retainer (41) engages the wall of the clip structure to secure the clip structure to the receiving cup.
Abstract:
A method adjusts a pulse width of a signal. The method provides a fixed voltage input trigger pulse (34), of a certain pulse width, to a pulse width generator circuit (10) and provides an output pulse (52) from the pulse width generator circuit such that a pulse width of the output pulse is longer than the certain pulse width, without changing a voltage or frequency of the input trigger pulse. The method is used to drive an injector of a diesel reductant delivery system to inject fluid into an exhaust flow path.
Abstract:
A solenoid device includes a solenoid assembly (30) including a stator (42, 32, 38) and a coil (36) for generating a magnetic field. An armature structure (14, 16) can move with respect to the solenoid assembly from a closed position, defining a working gap area (62) between the coil and a portion of the armature structure, to an open position in response to the magnetic field generated by the coil. Seal structure (22) is coupled with a proximal end of the armature structure and has a sealing edge (28) to seal with a component when the armature structure is in the closed position thereof. A spring (44) biases the armature structure to the closed position. Under certain operating conditions of the device, pressure is balanced between the working gap area and an area defined adjacent to 1) the sealing edge, and 2) a distal end of the armature structure.
Abstract:
A system and method for airbag deployment sensing with a mobile device is provided. The system senses an effluent indicative of airbag deployment with a chemical sensor and determines if an airbag deployment condition exists based on the sensing of the chemical sensor. The system may then initiate an emergency communication if it is determined that the airbag deployment condition exists.
Abstract:
An electronic high frequency induction heater driver, for a variable spray fuel injection system, uses a scalable array of zero-voltage switching oscillators that utilize full and half-bridge topology with inductors between semiconductor switches wherein the semiconductor switches are synchronous within each bridge for function, and each bridge is synchronized for function along the entire array. The induction heater driver, upon receipt of a turn-on signal, multiplies a supply voltage through a self-oscillating series resonance, wherein one component of each tank resonator circuit comprises an induction heater coil magnetically coupled to an appropriate loss component so that fuel inside a fuel component is heated to a desired temperature.
Abstract:
A display is provided that includes a display surface and a bezel. The bezel includes a top surface and a bottom surface and the bottom surface of the bezel covers a first area of display surface leaving a second area of the display surface uncovered. At least one graphical indicator is disposed at the bezel. The display is configured and arranged to produce and emit light from one or more selected portions of the first area of the display surface such that the emitted light passes through the bezel and is effective to illuminate the at least one graphical indicator.
Abstract:
An example vehicle instrument panel includes a speaker for producing alert and warning sounds. A membrane prevents water from intruding into the speaker assembly and instrument panel. The membrane is spaced apart from the speaker and over an open end of the speaker housing. Sound energy from the speaker travels through an open space against the membrane. The membrane possesses acoustic properties to receive and pass on the sound energy.
Abstract:
A spring-actuator assembly (10) is provided for a fuel pressure regulator. The assembly includes a housing (30) and a washer spring (10) received in the housing. The washer spring has a body (12) with a top surface (13) and a bottom surface (15). The body includes an opening (14) there-through and a plurality of pleats (16, 16′) therein so that that first faces (20) of the top surface are disposed on a plane that is different from a plane of second faces (22) of the top surface. At least certain first faces define contact points (24). The assembly also includes an actuating member (26) disposed at least partially in the opening and engaging the contact points of the certain first faces such that a fluid flow passage (36) are defined between the washer spring and the actuating ball for dampening.
Abstract:
A method of manufacturing a venturi tube 10′ having a certain fluid flow direction is provided. The method provides a first core member 11 in a mold. The first core member has a periphery and an end 21 of a certain size. A second core member 17 is provided in the mold upstream of the first core member. The second core member has a periphery and an end 22 with a size that is less than the certain size. At least a portion of the end of the second core member is disposed adjacent to at least a portion of the end of the first core member such that a step is defined between the first and second core members. Material is molded about the peripheries of the first and second core members such that the peripheries define a stepped fluid flow surface of a venturi tube, and so that any resulting flash occurs only in the certain flow direction.
Abstract:
Coupling structure (10) for coupling a fuel injector to a fuel rail (16) includes a fuel injector receiving cup (14) having an outer wall (22) and an interior space (24). The cup includes slot structure (26, 28) through the outer wall. Clip structure (30, 32) has a base (31) and a wall (40) extending transversely from the base. The base is received in the slot structure and extends into the interior space so that a portion of the base engages the fuel injector to limit movement thereof both axially and radially with respect to the receiving cup, with the wall being disposed adjacent to a portion of the outer wall of the receiving cup. A retainer (41) engages the wall of the clip structure to secure the clip structure to the receiving cup.