Patent classifications
F02N11/0803
SYSTEM AND METHOD FOR CONTROLLING A STOP-START VEHICLE AFTER JUMP START OR BATTERY REPLACEMENT
A stop-start vehicle and a method of controlling a stop-start vehicle include a controller configured to, in response to a power-reset event, inhibit an engine auto-stop function. The controller is additionally configured to, in response to a successful key start event subsequent the power-reset event, cease the inhibiting of the engine auto-stop function.
POWER DEVICE OF MOTORBIKE FOR ENGINE IGNITION
A power device of motorbikes includes a generator, a step down transformer and a voltage regulator. The generator is driven by output of the engine and generates alternating current which is input to the rectifier, and the rectifier outputs direct current. The rectifier includes a first output portion and a second output portion. The first output portion is electrically connected to a battery of a motorbike, and the second output portion includes a capacitor. The step down transformer is electrically connected to the first output portion. The output of the step down transformer is electrically connected to the battery. The second output portion outputs a voltage greater than that of the battery. The regulator is electrically connected to the rectifier and the battery. When the battery is fully charged, the rectifier stops outputting to the battery. The present invention provides two different output voltages to ignite the engine.
Controller and control method for hybrid vehicle
A controller for a hybrid vehicle restarts an engine in a start mode selected from multiple start modes. The multiple start modes include a first start mode of starting combustion in the engine when a clutch starts transmitting torque and a second start mode of starting combustion in the engine after the clutch starts transmitting torque. The controller is configured to, in a case in which the engine is restarted in the second start mode, measure a cranking start time from when engagement of the clutch is commanded to when transmission of the torque through the clutch is started, and only when measurement of the cranking start time has been completed after the vehicle is activated, restart the engine in the first start mode.
Electric starting system for an internal combustion engine
An electric starting system for an internal combustion engine is provided. The starting system includes a battery, a starter motor, and a blower housing. The starter motor is configured to start the internal combustion engine. The battery is integrated with the blower housing.
SWITCH DEVICE
A switch device includes an operation button including an operation surface on which a push operation is performed, a guide recess portion that has an elongated shape surrounded by inclined surfaces and is provided on the operation surface to guide an operating finger, and a biometric information sensor including a reading surface for reading biometric information of the operating finger in contact therewith. The reading surface is exposed situated nearer an end surface of the guide recess portion in relation to a longitudinal center of the guide recess portion.
Automobile Security System Aids in Passenger Heatstroke Prevention
A vehicle, system, and method provide determining whether a thermal risk exists for an occupant of a passenger compartment of a vehicle based on: identifying, via the temperature sensor, that the temperature within the passenger compartment is outside of a safe temperature range, identifying, via an electronic control module, that an engine of the vehicle is not running, and identifying, via the occupant sensor, that an occupant is in the passenger compartment. In response to determining that the thermal risk exists, a controller starts starting the engine via an ignition locking system, closes power-actuated windows of the passenger compartment, locks power-locked doors of the passenger compartment, and activates a heating, ventilation and air conditioning system of the vehicle via a climate control unit. The HVAC maintains the temperature of the passenger compartment within the safe temperature range to safeguard the occupant until return of a responsible party.
Construction machine with engine restart section and horn switch and gate lock lever operations
A controller mounted on a small-sized hydraulic excavator includes an engine restart section that restarts an engine when a horn switch operation determining section determines that a horn switch is operated and a gate lock lever position determining section determines that a gate lock lever is at a lock position in a case where a restart standby time determining section determines that restart standby time does not yet elapse after the engine is automatically stopped by an idling stop function, and a power supply stopping section that stops an electric power supply of a vehicle body when the restart standby time determining section determines that the restart standby time has elapsed.
Vehicle start-up mechanism
A vehicle start-up mechanism is provided in a vehicle configured to travel while occupants are boarded in a vehicle cabin. The vehicle start-up mechanism includes: a first vehicle start-up switch configured to switch the state of the vehicle between the start-up state and the halt state; and a switch box provided on an outer surface of the vehicle and having the first vehicle start-up switch. The vehicle has an autonomous driving function.
Battery pack for powering and controlling outdoor power equipment
A battery pack includes a housing, rechargeable lithium-ion battery cells enclosed in the housing, terminals, a processing circuit, and a communications interface. The processing circuit is configured to control a supply of electrical power from the rechargeable lithium-ion battery cells to a positive terminal and a negative terminal in response to receiving signals from data terminals. The signals from the data terminals include operational information that includes at least a condition of an electric motor on power equipment coupled with the data terminals. The communications interface is configured to communicate over a wireless communication protocol to receive an identification of a type of power equipment coupled with the plurality of terminals. The processing circuit is configured to adjust one or more functions of the battery pack based upon identification data received from the communications interface, which includes the type of power equipment that is coupled with the plurality of terminals.
Fuel gelling prevention using engine auto start functionality
In some embodiments, a fuel temperature sensor is located proximate to a vehicle component that is expected to experience fuel gelling, such as near or within a fuel filter, in order to obtain temperature information that accurately reflects the likelihood of fuel gelling occurring within the component. The proximate fuel temperature sensor can provide more accurate temperature information for components such as fuel filters that are installed at the periphery of the vehicle, compared to other temperature sensors that measure oil temperatures or other temperatures of centrally located vehicle components. In some embodiments, the vehicle is automatically started when the temperature indicated by the fuel temperature sensor falls below a startup temperature threshold value, and is automatically stopped after a predetermined time period or after the temperature reaches a shutdown temperature threshold value.