Abstract:
A transformer includes a bobbin. The bobbin includes a base and a main body. The main body is disposed on the base. The main body has a channel passing through the main body. The channel has two openings. Each of the openings has a first center. The main body includes a first main body portion and a second main body portion respectively at two sides of a first plane that is parallel to the base and passes through the first centers. The second main body portion is connected between the first main body portion and the base. The first main body portion and the second main body portion are asymmetric and have different heights relative to the first plane.
Abstract:
An electronic apparatus with a touch input system is provided. When a complete touch signal is detected, a sliding angle and a sliding track of the complete touch signal are calculated. A menu operation interface with arc-shaped arrangement is displayed in a touch display screen when the sliding angle of the complete touch signal exceeds a predetermined angle. And when an incomplete touch signal is detected, a sliding angle and a sliding track of the incomplete touching signal are calculated for displaying a part of the menu operation interface with arc-shaped arrangement in the touch display screen.
Abstract:
A constant speed control method for a vehicle and a device thereof are disclosed. The constant speed control method includes steps of: firstly examining if a constant speed switch of the vehicle is pressed by an electronic control unit; allowing the electronic control unit to enter a constant speed mode when the constant speed switch is pressed; and sending a signal by the electronic control unit, so as to lock a throttle locking device for maintaining an opening degree of a throttle valve, and to adjust an transmission ratio of an electric continuously variable transmission (ECVT) for maintaining the constant speed driving of the vehicle. The present invention is further related to a constant speed control device for implementing the above method.
Abstract:
A transformer includes a base, a magnetic core unit and a winding assembly. The base includes a base body and a pin disposed on the base body. The magnetic core unit is disposed in the base body, and the winding assembly is disposed in the magnetic core unit. A winding of the winding assembly is connected to the pin.
Abstract:
A holder is disclosed, wherein the holder is situated on a circuit board and is used for connecting with an electronic component. The holder comprises an upper surface, a lower surface, and an opening. The upper surface comprises a recess used for laying a flat component, wherein the recess comprises at least one rough area; the lower surface comprises a protruding edge, wherein the protruding edge is connected with the circuit board with glue, and the protruding side and the circuit board delimit a space; and the opening penetrates the upper surface and the lower surface, whereby the gas generated from heating the glue will accumulate in the enclosed space, and the gas will then escape through the opening and out through at least one of the rough areas.
Abstract:
A constant speed control method for a vehicle and a device thereof are disclosed. The constant speed control method includes steps of: firstly examining if a constant speed switch of the vehicle is pressed by an electronic control unit; allowing the electronic control unit to enter a constant speed mode when the constant speed switch is pressed; and sending a signal by the electronic control unit, so as to lock a throttle locking device for maintaining an opening degree of a throttle valve, and to adjust an transmission ratio of an electric continuously variable transmission (ECVT) for maintaining the constant speed driving of the vehicle. The present invention is further related to a constant speed control device for implementing the above method.
Abstract:
An electronic device and a method of operating a screen are disclosed; the touch screen has a display area and a non-display area, and the method includes steps as follows. First, a first sensing signal is generated when a designator controls a pointer on the non-display area. Then, a second sensing signal is generated when the pointer is moved from the non-display area to the display area. Then, a third sensing signal is generated when the pointer is moved on the display area. Last, a user interface is opened in the display area when a processing module receives the first, second and third sensing signals sequentially.
Abstract:
A built-in self repair (BISR) circuit for a multi-port memory and a method thereof are provided. The circuit includes a test-and-analysis module (TAM) and a defect locating module (DLM) coupled to the TAM. The TAM tests a repairable multi-port memory to generate a fault location and determines whether the test generates a port-specific fault candidate according to the fault location. If a port-specific fault candidate is generated, the DLM generates a defect location based on the fault location and provides the defect location to the TAM so that the TAM can determine how to repair the repairable multi-port memory according to the defect location. If no port-specific fault candidate is generated in the test, the TAM determines how to repair the repairable multi-port memory according to the fault location.
Abstract:
An information display method for an electronic device is provided, wherein the electronic device includes a display apparatus, a processor and a sensor unit. The display apparatus displays at least a stacked icon composed of a plurality pieces of information. The information display method includes processing the sensing signal received from the sensor unit by the electronic device. According the sensing signal, a launching signal is provided by the processor. According the launching signal, the stacked icon is spread out by the processor to display each piece of the information.
Abstract:
An electronic apparatus with a touch input system is provided. When a complete touch signal is detected, a sliding angle and a sliding track of the complete touch signal are calculated. A menu operation interface with arc-shaped arrangement is displayed in a touch display screen when the sliding angle of the complete touch signal exceeds a predetermined angle. And when an incomplete touch signal is detected, a sliding angle and a sliding track of the incomplete touching signal are calculated for displaying a part of the menu operation interface with arc-shaped arrangement in the touch display screen.