Patent classifications
H02M3/155
POWER SUPPLY DEVICE COMMUNICABLE WITH SYSTEM AND METHOD FOR SUPPLYING POWER TO SYSTEM THROUGH SWITCH THEREOF
A power supply device communicable with a system and a method for supplying power to a system through a switch thereof are disclosed. The power supply device includes a switch, a microcontroller unit and a control circuit, and supplies power to the system through the switch. The microcontroller unit provides a first operating voltage to the switch through a first pin, and performs a firmware update procedure when the power supply device communicates with the system. The control circuit is coupled to the switch, and transmits a second operating voltage to the switch. When the microcontroller unit performs the firmware update procedure, the control circuit turns on the switch at least according to the second operating voltage, so that the power supply device does not stop supplying power to the system.
POWER SUPPLY DEVICE COMMUNICABLE WITH SYSTEM AND METHOD FOR SUPPLYING POWER TO SYSTEM THROUGH SWITCH THEREOF
A power supply device communicable with a system and a method for supplying power to a system through a switch thereof are disclosed. The power supply device includes a switch, a microcontroller unit and a control circuit, and supplies power to the system through the switch. The microcontroller unit provides a first operating voltage to the switch through a first pin, and performs a firmware update procedure when the power supply device communicates with the system. The control circuit is coupled to the switch, and transmits a second operating voltage to the switch. When the microcontroller unit performs the firmware update procedure, the control circuit turns on the switch at least according to the second operating voltage, so that the power supply device does not stop supplying power to the system.
Auxiliary power supply device and electric power steering system
An auxiliary power supply device includes an auxiliary power source and a booster circuit. The auxiliary power supply device is configured to be switched among a charging state, a holding state, and a discharging state. The auxiliary power source is configured to be switched between a serial connection mode and a parallel connection mode. The auxiliary power source is configured to perform boosting to supply power to the power supply target when the auxiliary power source is switched to the serial connection mode, and perform backup when the auxiliary power source is switched to the parallel connection mode.
Auxiliary power supply device and electric power steering system
An auxiliary power supply device includes an auxiliary power source and a booster circuit. The auxiliary power supply device is configured to be switched among a charging state, a holding state, and a discharging state. The auxiliary power source is configured to be switched between a serial connection mode and a parallel connection mode. The auxiliary power source is configured to perform boosting to supply power to the power supply target when the auxiliary power source is switched to the serial connection mode, and perform backup when the auxiliary power source is switched to the parallel connection mode.
High efficiency wireless charging system and method
A system includes a receiver coil configured to be magnetically coupled to a transmitter coil, a rectifier connected to the receiver coil, a first stage and a second stage connected in cascade between the rectifier and a load and a bias voltage source configured to be connected with a first voltage node through a first switch and a second voltage node through a second switch, wherein one of the first voltage node and the second voltage node supplies power to the bias voltage source.
Transmitter
A transmitter is provided. the transmitter includes a hybrid feedback circuit and a hybrid driving circuit. The hybrid feedback circuit compares a reference voltage with a feedback voltage in closed-loop, determines whether to perform polarity reversal according to a mode control signal, controls power output according to a comparison result and the mode control signal, and generates a first output signal. The hybrid driving circuit, coupled to the hybrid feedback circuit, receives the first output signal of the hybrid feedback circuit, generates a transmitter output signal according to an input data, and generates a second output signal according to the transmitter output signal. The first output signal and the second output signal are transmitted back to the hybrid feedback circuit.
INDUCTOR CURRENT RECONSTRUCTION
In the parallel operation of power supply units, a high line ripple current may be observed in output when the power supply units (PSUs) are supplied with different inputs. For example, a high line ripple current may be observed when PSUs were supplied with different line frequency inputs and/or when PSUs were supplied with different phase angle input lines. A low pass filter is in a control loop which is capable of filtering the line frequency to get an average current reference signal. The average current reference signal is compared with the real time output current to generate an error signal. This error signal is fed back to a voltage control loop to adjust the output in order to compensate the line ripple.
INDUCTOR CURRENT RECONSTRUCTION
In the parallel operation of power supply units, a high line ripple current may be observed in output when the power supply units (PSUs) are supplied with different inputs. For example, a high line ripple current may be observed when PSUs were supplied with different line frequency inputs and/or when PSUs were supplied with different phase angle input lines. A low pass filter is in a control loop which is capable of filtering the line frequency to get an average current reference signal. The average current reference signal is compared with the real time output current to generate an error signal. This error signal is fed back to a voltage control loop to adjust the output in order to compensate the line ripple.
Capacitive coupler for high voltage step-down
Systems and methods for a capacitive coupler for high-voltage step-down include an actively-controlled current-steering circuit connected in series with a current-limiting capacitor in order to transform a higher and potentially variable AC voltage to a lower regulated DC voltage. The actively-controlled current-steering circuit includes a switching element which, during operation, is predominantly either fully open or fully closed, and comparatively spends only a small fraction of operating time in a transition-state between the open and closed positions.
POWER SUPPLY SYSTEM AND CONTROL IN A DYNAMIC LOAD CONFIGURATION
An apparatus includes a controller. The controller monitors a magnitude of first current supplied by an output voltage of a first power converter to power a dynamic load. The controller controls a second power converter to supply second current through the dynamic load based on the monitored magnitude of first current.