Abstract:
A method of cable assembly with electromagnetic interference protection and a structure thereof are described. The cable comprises a transmission cable, a ground cable, and metal rings. The transmission cable connects the liquid crystal display and a motherboard of a notebook computer. The insulating cover of the ground cable is peeled off in at least one position of an insulating cover and exposes an internal conductive wire. The exposed positions correspond to positions of clips of the notebook computer. The conductive wire and the transmission cable are clamped in the metal rings, and therefore the electromagnetic interference noises transmit to a ground of the notebook computer.
Abstract:
A method for generating an image object, performed by a mobile electronic device, comprises the following steps. The mobile electronic device comprises multiple shutter objects, and each shutter object corresponds to an orientation type. A signal generated by one of the shutter objects is detected. A orientation type is determined according to the shutter object generating the signal. The image object with the determined orientation type is stored.
Abstract:
An electronic device is disclosed. The electronic device comprises a transmitter, a converter, and a receiver. The transmitter transmits data and a control signal. The converter receives the control signal from the transmitter and converts the control signal. The receiver receives the data from the transmitter via a data bus isolated from the converter and receives the converted control signal from the converter. The data transmitted from the transmitter is directly electrically connected to the receiver.
Abstract:
An apparatus for capturing and storing real-time images is provided. A camera module records frames corresponding to sensed light, outputs pixel data of the frames on a data bus, and generates synchronization control signals to control the synchronized transmission of the frames. An interrupt controller receives the synchronization control signals and correspondingly generates interrupt signals. A processing unit receives the interrupt signals, fetches the pixel data of the frames on the data bus according to at least one of the interrupt signals, and stores the fetched pixel data in a memory device.
Abstract:
The invention discloses a general purpose interface controller, including a slave interface controller and a master interface controller, used to exchange data among master devices and slave devices in an electronic device. The slave interface controller receives data and a first control signal from one of the master devices, and converts the first control signal to a request signal. The master interface controller receives the data and the request signal from the slave interface controller, converts the request signal to a second control signal recognized by at least one of the slave devices, and forwards the data and the second control signal to the slave device.
Abstract:
Methods for texture image management are provided. An embodiment of a method for texture image management comprises the following steps. A texture image is acquired from a non-writable memory device. The received texture image is directly applied to a fragment.
Abstract:
An embodiment of a method for remotely controlling an electronic apparatus, performed by a processor of the electronic apparatus, comprises the following steps. Existence of an object in close proximity to the electronic apparatus is detected. A camera module of the electronic apparatus is turned on to capture a series of images. A control operation in response to the captured images is determined. The control operation is performed to an electronic device of the electronic apparatus.
Abstract:
An apparatus for capturing and storing real-time images is provided. A camera module records frames corresponding to sensed light, outputs pixel data of the frames on a data bus, and generates synchronization control signals to control the synchronized transmission of the frames. An interrupt controller receives the synchronization control signals and correspondingly generates interrupt signals. A processing unit receives the interrupt signals, fetches the pixel data of the frames on the data bus according to at least one of the interrupt signals, and stores the fetched pixel data in a memory device.
Abstract:
An electronic device is disclosed. The electronic device comprises a transmitter, a converter, and a receiver. The transmitter transmits data and a control signal. The converter receives the control signal from the transmitter and converts the control signal. The receiver receives the data from the transmitter via a data bus isolated from the converter and receives the converted control signal from the converter. The data transmitted from the transmitter is directly electrically connected to the receiver