Abstract:
A method for exchanging information with a base station includes: communicating with the base station using electromagnetic waves with a first frequency; detecting a first connection request carried in the first electromagnetic; receiving the first connection request if the first connection request is detected; and receiving information carried in the electromagnetic waves with a second frequency that is higher than the first frequency from the base station. An apparatus for exchanging information with the base station is also disclosed.
Abstract:
A method and an apparatus for displaying contact information using an image including the contact information. The method includes displaying an image; detecting when a preset region of the image is selected; and displaying the contact information corresponding to the preset region of the image, when the preset region is selected.
Abstract:
An exemplary signal processing apparatus includes a signal transmission port, a first signal processing circuit, a second signal processing circuit, and a control circuit. The signal transmission port is shared between a first signal processing operation and a second signal processing operation. The first signal processing circuit performs the first signal processing operation, wherein when the signal processing apparatus operates, the first signal processing circuit is not required to be consistently enabled to use the signal transmission port for signal transmission. The second signal processing circuit performs the second signal processing operation, wherein the signal transmission port is not always required to carry out signal transmission each time the second signal processing circuit is enabled to perform the second signal processing operation. The control circuit selectively enables the first signal processing circuit or the second signal processing circuit.
Abstract:
An exemplary liquid crystal display includes a liquid crystal panel and a backlight module facing the liquid crystal panel. The backlight module includes a light guide plate, a light source and an accommodating frame accommodating the liquid crystal panel, the light guide plate and the light source. The accommodating frame includes a plurality of side walls. The side walls define an absorbing portion and a reflecting portion thereat. The absorbing portion is adjacent to the liquid crystal panel and is configured for absorbing light beams leaking from a periphery of the liquid crystal panel. The reflecting portion is adjacent to the light guide plate and is configured for reflecting light beams leaking from at least one peripheral portion of the light guide plate.
Abstract:
An exemplary liquid crystal display includes a liquid crystal panel and a backlight module facing the liquid crystal panel. The backlight module includes a light guide plate, a light source and an accommodating frame accommodating the liquid crystal panel, the light guide plate and the light source. The accommodating frame includes a plurality of side walls. The side walls define an absorbing portion and a reflecting portion thereat. The absorbing portion is adjacent to the liquid crystal panel and is configured for absorbing light beams leaking from a periphery of the liquid crystal panel. The reflecting portion is adjacent to the light guide plate and is configured for reflecting light beams leaking from at least one peripheral portion of the light guide plate.
Abstract:
An exemplary mold for manufacturing different-sized plastic frames simultaneously includes a first mold half and a second mold half. The first and second mold halves cooperatively define a first molding chamber and a second molding chamber, and the first molding chamber surrounds the second molding chamber.
Abstract:
An exemplary backlight module includes a light guide plate (12), an illuminator (14), and a frame (16) receiving the light guide plate and the illuminator. The light guide plate includes a light incident surface (122) and has a cutout defined in a corner thereof at one end of the light incident surface. The illuminator is located adjacent to the light incident surface. The frame includes a stopper (166) engagingly received in the cutout such that the stopper blocks movement of the light guide plate toward the illuminator.
Abstract:
An exemplary light guide plate (20) includes a transparent body (21) having a major surface (24) and a light diffusing structure (28) coated or embossed on the major surface of the transparent body. The light diffusing layer makes light beams emitting out from the light guide plate more uniform. Therefore the backlight module does not need a thick light diffusing plate. This means the backlight module is thin, assembly of the backlight module is simplified, and costs are reduced.
Abstract:
A optical disk drive long distance seek control device and method thereof, capable of feeding back the optical head control device through the step motor control device during the long distance seek; wherein, the step motor control device comprises a velocity profile generator capable of producing a quadratic profile to stabilize the step motor when finishing the seek; and more particular, the optical head control device uses a center error signal and a velocity error signal alternatively; moreover, the velocity error signal can be adjusted according to the output signals from the optical head control device and the step motor control device through a weighting mechanism.
Abstract:
An electrical impedance detecting device of a portable electrical impedance imaging system by utilizing a theory of sending excitation signal and detecting response signal and a method thereof, wherein the excitation signal is a constant square wave excitation current signal, the response voltage signal on a target is transformed to a square wave signal with appropriate amplitudes by buffering, amplifying, RC filtering and differential amplifying circuits, and then is transformed to a digital signal at a proper time by an analog-to-digital converter. The response voltage signal is sampled once when at high level and once when at low level for every circle of the square wave signal by the ADC, and a sample V1 and a sample V2 are obtained respectively, difference of the sample V1 and the sample V2 is taken as a detecting result for one circle. An average value of the detecting result from a plurality of circles may be taken as a final result. Information of electrical impedance is illustrated by the final result because the excitation current signal is constant.