Abstract:
A power filter output architecture of a power supply includes a power conversion circuit board, a filter inductor, and a power output port. The power conversion circuit board includes a conversion circuit which converts an input power into at least one converted power, a power output circuit arranged at an edge of the power conversion circuit board, and a ground circuit arranged between the conversion circuit and the power output circuit. The filter inductor includes a first pin which obtains the converted power, an inductor body which receives the converted power and induces it to produce a filtered power, and a second pin which crosses the ground circuit to connect to the power output circuit. The power output port includes a plurality of power output terminals disposed on the power output circuit to obtain the filtered power, and a plurality of ground terminals connected to the ground circuit.
Abstract:
This invention provides a power supply comprising a mother board, a first socket, and a DC-DC converter module. The mother board comprises a transformer operative for transforming an input power into a first AC output power and a filter operative for receiving the first AC output power and filtering the first AC output power into a first DC output power. The first socket is mounted on the mother board and electrically coupled to a circuitry of the mother board by way of at least one conductor terminal operative for providing the first DC output power. The DC-DC converter module mounted on a printed circuit board electrically coupled to the mother board comprises a DC-DC converter operative for receiving the first DC output power and converting the first DC output power into a second DC output power and a third DC output power and a second socket operative for providing the second DC output power and the third DC output power by means of a conductive path of the printed circuit board. There are several advantages including the reduction of the use of the conductive wires, the improvement of the efficiency of the power supply, the simplicity of the circuitry of the power supply, and the easy replacement of the broken component because the DC-DC converter module is mounted on an individual printed circuit board different from the mother board.
Abstract:
This invention provides a motor control method which comprises the steps of operating a motor at a fanless operation mode when a ambient temperature is lower than a lower temperature, operating the motor at a silent operation mode when the ambient temperature is higher than the lower temperature and lower than a higher temperature, and operating the motor at a cooling operation mode when the ambient temperature is higher than the higher temperature. When the motor operates at the fanless operation mode, the rotation speed of the motor is zero rpm. When the motor operates at the silent operation mode, the motor operates at a constant rotation speed. When the ambient temperature is higher than the higher temperature, the rotation speed of the motor is a linear function of the temperature and varies between the higher temperature and a maximum temperature corresponding to the full rotation speed of the motor.
Abstract:
A method for controlling a motor comprises steps of: first, determining whether a switch of a motor control circuit in an electronic system is in a first state; then, operating the motor at a fanless operation mode when a temperature inside an enclosure of the electronic system is higher than zero and lower than a first threshold temperature, wherein the rotation speed of the motor is zero rpm; operating the motor at a silent operation mode when the temperature is higher than the first threshold temperature and lower than a second threshold temperature, wherein the rotation speed of the motor is a constant rotation speed; and operating the motor at a cooling operation mode when the temperature is higher than the second threshold temperature, wherein the rotation speed of the motor is a function of the temperature and varies between the constant rotation speed and a maximum rotation speed.
Abstract:
A power supply of personal computers equipped with a modular conversion circuit comprises a main circuit board, a conversion module board, a first conversion circuit and a first module slot located on the main circuit board, and a second conversion circuit and a second module slot located on the conversion module board. The first conversion circuit converts an input power to generate at least one output power. The first module slot outputs the output power. The second conversion circuit converts the output power and generates at least one conversion power. The second module slot outputs the conversion power to allow at least one external element to respectively electrically connect to the first module slot and the second module slot according to power requirement.
Abstract:
The present application provides an image projection system and a calibration method of projected image. The calibration method comprises: displaying an original image data as a first image having a first boundary characteristic; projecting the first image as a projected image; analyzing a difference between a boundary shape of the projected image and the first boundary characteristic which is unadjusted; according to the difference between the boundary shape of the projected image and the unadjusted first boundary characteristic, adjusting the first boundary characteristic until the boundary shape of the projected image is similar to the unadjusted first boundary characteristic; and recording the first boundary characteristic at the time when the boundary shape of the projected image is similar to the unadjusted first boundary characteristic as a second boundary characteristic, wherein the first boundary characteristic is the shape of at least one displaying boundary line around the first image.
Abstract:
A method for controlling a motor comprises steps of: first, determining whether a switch of a motor control circuit in an electronic system is in a first state; then, operating the motor at a fanless operation mode when a temperature inside an enclosure of the electronic system is higher than zero and lower than a first threshold temperature, wherein the rotation speed of the motor is zero rpm; operating the motor at a silent operation mode when the temperature is higher than the first threshold temperature and lower than a second threshold temperature, wherein the rotation speed of the motor is a constant rotation speed; and operating the motor at a cooling operation mode when the temperature is higher than the second threshold temperature, wherein the rotation speed of the motor is a function of the temperature and varies between the constant rotation speed and a maximum rotation speed.
Abstract:
This invention provides a power supply comprising a mother board, a first socket, and a DC-DC converter module. The mother board comprises a transformer operative for transforming an input power into a first AC output power and a filter operative for receiving the first AC output power and filtering the first AC output power into a first DC output power. The first socket is mounted on the mother board and electrically coupled to a circuitry of the mother board by way of at least one conductor terminal operative for providing the first DC output power. The DC-DC converter module mounted on a printed circuit board electrically coupled to the mother board comprises a DC-DC converter operative for receiving the first DC output power and converting the first DC output power into a second DC output power and a third DC output power and a second socket operative for providing the second DC output power and the third DC output power by means of a conductive path of the printed circuit board. There are several advantages including the reduction of the use of the conductive wires, the improvement of the efficiency of the power supply, the simplicity of the circuitry of the power supply, and the easy replacement of the broken component because the DC-DC converter module is mounted on an individual printed circuit board different from the mother board.
Abstract:
A power filter output architecture of a power supply includes a power conversion circuit board, a filter inductor, and a power output port. The power conversion circuit board includes a conversion circuit which converts an input power into at least one converted power, a power output circuit arranged at an edge of the power conversion circuit board, and a ground circuit arranged between the conversion circuit and the power output circuit. The filter inductor includes a first pin which obtains the converted power, an inductor body which receives the converted power and induces it to produce a filtered power, and a second pin which crosses the ground circuit to connect to the power output circuit. The power output port includes a plurality of power output terminals disposed on the power output circuit to obtain the filtered power, and a plurality of ground terminals connected to the ground circuit.
Abstract:
This invention provides a motor control method which comprises the steps of operating a motor at a fanless operation mode when a ambient temperature is lower than a lower temperature, operating the motor at a silent operation mode when the ambient temperature is higher than the lower temperature and lower than a higher temperature, and operating the motor at a cooling operation mode when the ambient temperature is higher than the higher temperature. When the motor operates at the fanless operation mode, the rotation speed of the motor is zero rpm. When the motor operates at the silent operation mode, the motor operates at a constant rotation speed. When the ambient temperature is higher than the higher temperature, the rotation speed of the motor is a linear function of the temperature and varies between the higher temperature and a maximum temperature corresponding to the full rotation speed of the motor.