摘要:
A memory readout system comprised of a vehicle control device and a readout device to be detachably connected to the vehicle control device. The readout device reads out dialogue information stored in a built-in nonvolatile memory in the vehicle control device when connected to the vehicle control device and a predetermined certification condition is satisfied. The vehicle control device is comprised of the built-in nonvolatile memory and a dialogue information readout unit. In particular, the nonvolatile memory has a un-rewritable area which allows a dialogue information writing, but inhibits a dialogue information deletion. The dialogue information readout unit reads out the dialogue information stored in the un-rewritable area when a password certification judges that the readout device is an authorized one, and then transfers the dialogue information to the readout device.
摘要:
A memory readout system comprised of a vehicle control device and a readout device to be detachably connected to the vehicle control device. The readout device reads out dialogue information stored in a built-in nonvolatile memory in the vehicle control device when connected to the vehicle control device and a predetermined certification condition is satisfied. The vehicle control device is comprised of the built-in nonvolatile memory and a dialogue information readout unit. In particular, the nonvolatile memory has a un-rewritable area which allows a dialogue information writing, but inhibits a dialogue information deletion. The dialogue information readout unit reads out the dialogue information stored in the un-rewritable area when a password certification judges that the readout device is an authorized one, and then transfers the dialogue information to the readout device.
摘要:
A vehicular system includes a battery, an engine, an electric generator that is driven by the engine to generate electric power and thereby charge the battery, a first control apparatus that controls the battery and electric generator, a drive shaft, a CVT that transmits rotation of the engine to the drive shaft, and a second control apparatus that controls the engine and CVT. Further, the first control apparatus is configured to: (1) detect charge/discharge current of the battery; (2) monitor the SOC of the battery; (3) inform, when there is a decrease in the SOC of the battery, the second control apparatus of the decrease in the SOC; (4) set a target charge current of the battery for recovering the decreased SOC; and (5) control the electric generator to increase the amount of the electric power, thereby supplying the battery with the target charge current.
摘要:
An overcurrent protecting device for protecting a semiconductor element from an overcurrent includes: the semiconductor element; a shunt resistor for detecting the overcurrent when the electric current in the semiconductor element exceeds a threshold value; a reference resistor for setting the threshold value; a constant electric current circuit for supplying a constant electric current to the reference resistor; and a comparator for comparing a terminal voltage of the shunt resistor and a terminal voltage of the reference resistor. The shunt resistor is made of a same kind of resistor as the reference resistor.
摘要:
An electric power generation control system has an electric power generation amount determining section for determining an electric power generation request amount of a vehicle alternator by monitoring vehicle conditions, an electric power generation amount increase judgment section for judging presence/absence of an electric power generation amount increase request to the vehicle alternator based on change of the electric power generation request amount in passage of time, an idle state judgment section for judging whether or not a vehicle engine falls in idle operation state, and an electric power generation amount suppressing control section for suppressing an electric power generation amount of the vehicle alternator. In the idle operation state of the vehicle engine and the presence of the electric power generation amount increase request, the electric power generation amount suppressing control section halts the control of suppressing the electric power generation of the vehicle alternator.
摘要:
The power generation controller includes a control command receiving section receiving a control command transmitted from an external control unit for controlling an internal combustion engine, a control command holding section holding the control command received by the control command receiving section, and an excitation current control section controlling an excitation current of a generator driven by the internal combustion engine on the basis of the control command held by the control command holding section. The excitation current control section is configured to control the excitation current on the basis of a control command transmitted from the external control unit when the internal combustion engine is in a stopped sate.
摘要:
The vehicle power-generation control unit includes a voltage detecting circuit detecting a generation voltage of a vehicle generator driven by a vehicle engine, a switching device allowing an exciting current to flow into an exciting winding of the vehicle generator when the switching device is in an on state, an average duty ratio detecting circuit detecting a temporal average duty ratio of the switching device on the basis of the generation voltage, an enhanced duty-cycle signal generating circuit generating an enhanced duty-cycle signal having a duty ratio equal to the temporal average duty ratio added with a supplementary duty ratio determined depending on at least one of vehicle state information and vehicle generator state information, and a driver circuit driving the switching device with the duty ratio of the enhanced duty-cycle signal when the generation voltage detected by the voltage detecting circuit is lower than a predetermined target voltage.
摘要:
A vehicle power generation control apparatus has a power supply circuit, a rotation detecting circuit, an exciting current detecting circuit, a torque detecting/maximum exciting current determining circuit, and an exciting current control circuit. The rotation detecting circuit detects a rotation speed of a generator (or vehicle alternator) and the exciting current detecting circuit detects an exciting current flowing through an exciting winding of the generator. The torque detecting/maximum exciting current determining circuit calculates a power generation torque of the generator based on the output voltage, the exciting current, the rotation speed, and calculates an inertia torque of the generator based on a change rate of the rotation speed. The exciting current control circuit suppresses the exciting current flowing through the exciting winding so that a change rate of a total sum of the generation torque and the inertia torque does not exceed a predetermined value, for example, during the idling condition.
摘要:
A vehicle generating system includes a generator for a vehicle, a voltage regulator that supplies field current to the field coil at a variable duty ratio, a field current sensor that detects field current amount, a signal transmitting circuit that transmits a signal representing the detected field current amount and the duty ratio and an electronically controlling unit that receives the signal representing the detected field current amount and the duty ratio and controls the engine according to one of the detected field current amount and the duty ratio.
摘要:
In a vehicle generator control which detects an abnormal operating condition of a generator of a vehicle, and includes a transistor which drives a charging lamp to emit a warning indication when such a condition is detected, with the value of a quantity indicative of the flow of current through the charging lamp drive transistor being compared with a reference value, and with the transistor being set in a non-conducting state if the reference value is exceeded, a succession of respectively decreasing reference values is periodically generated. A timing of an initial flow of current through the charging lamp is controlled to be synchronized with the start of such a succession, so that the peak value of an initial surge current which flows through the charging lamp drive transistor is compared with the highest reference value. Complete protection can thereby be established for the charging lamp drive transistor against a flow of short-circuit current which would exceed any of the reference values.