摘要:
In the transition from a state in which charge is being transferred from a large-capacitance secondary power supply to an auxiliary capacitor through a step-up/down circuit by a step-up/down multiplying factor M' (M' is a positive real number excluding one) to a state in which the large-capacitance secondary power supply and the auxiliary capacitor are electrically directly coupled, the electrical energy is transferred from the large-capacitance secondary power supply to the auxiliary capacitor through the step-up/down circuit by a step-up/down multiplying factor M = 1 in a non-stepping-up/down state. A potential difference between the large-capacitance secondary power supply and the auxiliary capacitor is less than a predetermined potential difference. Since a sudden variation in a power supply voltage due to changing the step-up/down multiplying factor is prevented, malfunctioning in an electronic apparatus resulting from the sudden variation in the power supply voltage is prevented.
摘要:
In an electronic unit having a plurality of motors, a reduction in power-supply voltage is suppressed even if the plurality of motors are driven, and a difference in hand moving timing is allowed to be made inconspicuous. An electronic timepiece having a seconds motor for driving a seconds hand and an hour-and-minute motor for driving hour and minute hands, which serves as an electronic unit, moves the seconds hand and the hour and minute hands such that, when a seconds auxiliary pulse signal is output to the seconds motor at the hand moving timing of the seconds hand, control is applied in a way in which neither magnetic-field detection around the hour-and-minute motor nor the rotation detection of the hour-and-minute motor is performed at the hand moving timing of the hour and minute hands, and an hour-and-minute auxiliary pulse signal is output to the hour-and-minute motor.
摘要:
An electronic device having a plurality of motors do not cause drop of the power supply voltage and large difference in hand driving timings even when the motors are operated. When the electronic device is an electronic watch having a second motor for driving a second hand and an hour/minute hand motor for driving an hour/minute hand, and when a second auxiliary pulse signal is outputted to the second motor at the driving timing of the second hand, detection of the magnetic field around the hour/minute motor and detection of the rotation of the hour/minute motor are not performed at and after the driving timing of the hour/minute hand. An hour/minute auxiliary pulse signal is outputted to the hour/minute motor to drive the second hand and the hour/minute hand.
摘要:
There is provided an electronic device comprising a piezoelectric actuator (A) and a drive control device (100) for controlling drive of the piezoelectric actuator. The drive control device (100) includes: a drive circuit (111) for supplying a drive signal SDR to a piezoelectric element of an oscillator (12); phase difference detection means (120) for detecting a phase difference representing the oscillation state of the oscillator (12); a comparison voltage setting circuit (133) for correcting a target phase difference serving as a target of the oscillation state; and drive frequency setting means (140) for comparing the phase difference to the target phase difference. By modifying the drive frequency of the drive signal SDR so that the phase difference approaches the target phase difference according to the comparison result, it is possible to realize effective drive of the piezoelectric actuator (A) without depending on the drive voltage.
摘要:
In making a change from a first state in which an electric charge is being transferred from a secondary power source of large capacity to an auxiliary capacitor through a voltage step-up/down circuit with a step-up/down ratio M' (which is a positive real number other than 1) to a second state in which the secondary power source of large capacity and the auxiliary capacitor are directly electrically connected to each other, the electric energy is transferred from the secondary power source of large capacity to the auxiliary capacitor through the step-up/down circuit in a non-step-up/down state with a step-up/down ratio M = 1, so that the potential difference between the secondary power source of large capacity and the auxiliary capacitor is less than a predetermined potential difference. Therefore, there is no possibility of incurring a sharp power source voltage variation due to a change in step-up ratio, so that malfunction of the electronic apparatus that accompanies a sharp voltage variation of the voltage source can be prevented.