H02M3/1563

LINEAR REGULATOR
20230161364 · 2023-05-25 ·

A gallium nitride (GaN) transistor-based regulated voltage source has a reference voltage input coupled to a reference voltage. The regulated voltage source also includes an input port and an output port. The regulated voltage source includes a GaN transistor-based voltage regulation path coupling the input port and the output port with at least a GaN regulation transistor with a threshold voltage and that is formed on a substrate. The regulated voltage source also includes a GaN transistor-based voltage compensator having an intermediate GaN transistor that is also formed on the substrate. The GaN transistor-based voltage compensator couples a gate of the GaN regulation transistor to the reference voltage input and introduces a voltage drop between the gate of the GaN regulation transistor and the reference voltage input to compensate for the threshold voltage of the GaN regulation transistor.

Hysteresis-controlled DC-DC boost converter for aerial vehicles
11469673 · 2022-10-11 · ·

A power conversion unit may include two or more power modules for providing high-voltage direct current power to electrical loads, such as one or more propulsion motors aboard an aerial vehicle. Each of the power modules may be controlled by hysteresis, and may include one or more pairs of transistors that are switched by a gate driver with respect to differences between a reference current and a sensed current passing through a boost inductor. The number, size and shape of the power modules may be selected to accommodate the electrical loads, and may be switched on or off, as necessary. The power conversion unit may feature at least one more power module than is required to meet all anticipated electrical loads, thereby ensuring that the power conversion unit may continue to provide power even in the event that one of the power modules experiences a fault of any kind.

LED driver and method of operating an LED driver

An LED driver is described, the LED driver comprising: a back end module BE comprising a switch mode power converter SMPS configured to operate in a self-oscillating current control mode, the back end module BE further comprising: an input terminal configured to receive a DC bus voltage; an output terminal configured to output a supply current for powering an LED fixture; a control unit configured to control the back end module to operate the SMPS in a voltage control mode by: determining a switching frequency of the SMPS when operating in the self-oscillating current control mode; determining a minimal switching frequency of the SMPS and receiving an input signal representative of the supply current for powering the LED fixture; wherein the control unit is further configured to control the switch of the SMPS in the voltage control mode by: operating the switch of the SMPS at a substantially constant frequency based on the determined minimal switching frequency and modulating a duty cycle of the switch to maintain the supply current at a desired current.

Switching clock phase shift for multi-port buck-boost converter

A multi-port USB Type-C® Power Delivery (USB-C/PD) power converter for switching clock phase shifts is described herein. The multi-port USB-C/PD power converter includes a first PD port, a second PD port, and a power controller coupled to the first and second PD ports. The power controller includes a first phased clock generator to generate a first phase-shifted clock signal by shifting a clock signal by a first phase with respect to a reference clock signal, and a second phased clock generator to generate a second phase-shifted clock signal to generate a second phased-shifted clock signal by shifting the clock signal by a second phase with respect to the reference clock signal. The first PD port and the second PD port output power in response to a first control signal based on the first phase-shifted clock signal and a second control signal based on the second phase-shifted clock signal, respectively.

SYSTEM AND METHOD FOR DETECTING ELECTRICAL CONNECTION AND DISCONNECTION ON USB TYPE-A CHARGING PORT

Systems and methods for detecting electrical connection and disconnection on an USB Type-A charging port like power adapters, power banks and car chargers having one or more USB Type-A charging port of an USB device. The system includes: a voltage source; a MOSFET SWITCH gate driver, in USB type-A connected state, that operatively couples MOSFET SWITCH with voltage source and VBUS supply of USB type-A port; charge pump; a current sense differential amplifier; and a control unit configured to: monitor VBUS current, and detect potential disconnected state of connected USB type-A port; and monitor VBUS voltage and compare VBUS voltage with predetermined voltage to sense external condition such that VBUS voltage drops because of load capacitance and load current. The control unit is further configured to, when the duty cycle has reached a minimum VBUS current, detect the USB type-A disconnection with a charge pump state.

POWER CONVERTER HAVING SMOOTH TRANSITION CONTROL MECHANISM
20230208299 · 2023-06-29 ·

A power converter having a smooth transition control mechanism is provided. An oscillator circuit outputs a clock signal. A control circuit receives the clock signal from the oscillator circuit and outputs a control signal based on the clock signal. A driver circuit outputs a high-side conduction signal and a low-side conduction signal according to the control signal. A high-side switch is turned on or off according to the high-side conduction signal from the driver circuit. A low-side switch is turned on or off according to the low-side conduction signal from the driver circuit. The oscillator circuit receives the high-side conduction signal from the driver circuit. The oscillator circuit, according to the high-side conduction signal, determines whether or not the clock signal outputted to the control circuit needs to be adjusted.

System and method for detecting electrical connection and disconnection on USB Type-A charging port

Systems and methods for detecting electrical connection and disconnection on an USB Type-A charging port like power adapters, power banks and car chargers having one or more USB Type-A charging port of an USB device. The system includes: a voltage source; a MOSFET SWITCH gate driver, in USB type-A connected state, that operatively couples MOSFET SWITCH with voltage source and VBUS supply of USB type-A port; charge pump; a current sense differential amplifier; and a control unit configured to: monitor VBUS current, and detect potential disconnected state of connected USB type-A port; and monitor VBUS voltage and compare VBUS voltage with predetermined voltage to sense external condition such that VBUS voltage drops because of load capacitance and load current. The control unit is further configured to, when the duty cycle has reached a minimum VBUS current, detect the USB type-A disconnection with a charge pump state.

INTEGRATED CIRCUIT AND POWER SUPPLY CIRCUIT
20230198411 · 2023-06-22 · ·

An integrated circuit configured to switch a transistor in a power supply circuit. The integrated circuit includes a first terminal to which a first resistor is coupled; a first detection circuit configured to detect whether a load of the power supply circuit is in an overload state; a second detection circuit configured to detect whether a current flowing through the transistor is overcurrent; an oscillator circuit configured to output an oscillator signal with a cycle corresponding to a first resistance value of the first resistor; and a driving signal output circuit configured to output a driving signal to turn on the transistor, based on the oscillator signal, and turn off the transistor, based on a feedback voltage corresponding to the output voltage. The driving signal output circuit further outputs the driving signal to turn off the transistor, in response to the current flowing through the transistor reaching overcurrent.

CONTROL CIRCUIT AND CONTROL METHOD FOR SWITCHING REGULATOR AND SWITCHING REGULATOR WITH THE SAME
20170338738 · 2017-11-23 ·

A control circuit for a switching regulator can include: an ON signal generator that generates an ON signal; an OFF signal generator that generates a first control signal according to an input voltage and an output voltage of the switching regulator; an on time regulator that generates an adjustment signal according to a switching signal and the first control signal; and a logic circuit configured to generate an off signal according to the first control signal, and to generate the switching signal according to the ON signal and the OFF signal, where the on time of the first switch is regulated according to the off time of the first switch when the off time of the first switch is less than the reference time, in order to regulate a duty cycle of the switching signal.

METHOD FOR OPERATING A CIRCUIT DEVICE
20170331377 · 2017-11-16 ·

A switching converter, including an input interface for providing an input voltage, an output interface for providing at least one output voltage, a voltage conversion device for converting the provided input voltage into one of the at least one output voltage, and a clock generator for providing a working clock, the clock generator being configured in such a way that the clock generator provides a modulated basic clock as the working clock. A control unit including such a switching converter, and a method for operating such a switching converter, are also described.