Abstract:
An exemplary electronic device includes an optical disc drive, a digital photo frame, and a connector mounted on the optical disc drive and cooperating with the optical disc drive to form two slide rails holding the digital photo frame in position. The digital photo frame includes a display panel for selectively displaying the digital photos or the video information, and a selection module. The selection module is for transmitting data corresponding to the digital photos to the display panel for display when the selection module does not receive the video information from the optical disc drive, and transmitting the video information to the display panel for display when the selection module receives the video information from the optical disc drive.
Abstract:
An exemplary portable media player includes a main body and a cover. The portable media player further includes a main display unit, an auxiliary display unit, a control device, and a power management unit. The control device provides a first control signal when the cover is detected to be in the first state, and a second control signal when the cover is detected to be in the second state. The power management unit is electrically coupled to the control device, the main display unit, and the auxiliary unit. The power management selectively supplies electrical power to the main display unit and the auxiliary unit based on the first control signal and the second control signal, respectively.
Abstract:
An illumination apparatus comprises a control unit, an image capturing unit, a processor unit, a comparison unit, an adjustment unit and an illumination unit. The control unit generates a start signal in a predetermined time. The image capturing unit captures a plurality of images of ambient road condition according to the start signal. The processor unit extracts the edges of the vehicle from the captured images to obtain a current traffic. The adjustment unit generates different pulse voltages according to the different volume of traffic. The illumination unit emits light according to the different pulse voltages.
Abstract:
A video display includes a display, a memory, a timer, and a processor. The memory is used for storing schedules and a predetermined time intervals, wherein each schedule comprising at least one scheduled event and at least one predetermined time corresponding to the at least one scheduled event. The timer is used for obtaining a current time. The processor is used for obtaining a scheduled event based on the current time and the predetermined time interval, and displaying the obtained scheduled event in the display. A set-top box is also provided.
Abstract:
An entertainment system includes a television and a set-top box. The set-top box is configured to receive television signals, convert the television signals to signals which can be reproduced on the television, and output the converted signals to the television. The set-top box includes a storage unit storing at least one game application and a processing unit configured to run the at least one game application to generate game video/audio signals which are displayed on the television. A related set-top box is also provided.
Abstract:
A television system includes a remote control and a television. The remote control includes a sensor and a transmitting unit. The sensor generates a detecting signal according to a user's operation. When the user' operations are different, the detecting signals are different. The transmitting unit transmits the detecting signal. The television includes a receiving unit, a determining unit, and a channel selecting unit. The receiving unit receives the detecting signal. The determining unit determines whether the detecting signal is a first channel signal or a second channel signal. The determining unit generates a first control signal when the detecting signal is the first channel signal, and generates a second control signal when the detecting signal is the second channel signal. The channel selecting unit selects the last channel in response to the first control signal, and selects the next channel in response to the second control signal.
Abstract:
A warning device includes a sensing unit, a comparing unit, a controlling unit and a warning unit. The sensing unit sense whether a part of the body of a person is sticking out of the window and generates a sensing signal. The comparing unit detects if the sensing signal is at least a predetermined value. If it is determined that the sensing signal is at least the predetermined value, a part of the body of the person is sticking out of the window and the comparing unit generates a warning signal. The warning unit is used for generating the alarm, and is capable of alternating between an alarm state and standby state. The controlling unit responds to the warning signal to detect whether the warning unit is in the alarm state, and disables the warning unit to start generating the alarm when the warning unit is in the standby state.
Abstract:
An electronic device includes interfaces adapted to electrically connect peripheral devices, a searching unit, an obtaining unit, a receiving unit, a comparing unit, and an output unit. Each interface has an exclusive first identifying code. Each peripheral device has an exclusive second identifying code. A one to one relationship exists between the first identifying codes and the second identifying codes. The searching unit generates a searching signal responding to user's operations. The obtaining unit obtains the first indentifying codes of the interfaces responding to the searching signal. The receiving unit receives the second indentifying codes of the peripheral devices responding to the searching signal. The comparing unit compares the first obtained identifying codes and the received second indentifying codes to determine a connection relationship between the interfaces and the peripheral devices according to the one to one relationship. The output unit delivers the connection relationship.
Abstract:
An electronic device includes a first receiving unit and a processing unit. The first receiving unit receives a plurality of detection signals respectively from a plurality of electronic apparatuses, the detection signals respectively indicates the working states of all electronic apparatuses. The processing unit outputs the detection signals to an output unit, thus the output unit defines the working states of all electronic apparatuses. A related method is also provided.
Abstract:
An electronic device includes a power managing unit configured to supply power to the electronic device. A receiver adapted to receive program signals, wherein the program signals comprises at least one composite video signal. A processor configured for obtaining the composite video signal from the program signals according to a selected program/channel, and processing the composite video signal to directly output the composite video signal. An automatic turnoff unit electrically connected to the processor and the power managing unit, configured to detect whether the composite video signal has been interrupted for a predetermined time interval and control the power managing unit to power off the electronic device if the composite video signal has been interrupted for the predetermined time interval. A related automatic turnoff method for automatically turning off an electronic device is also disclosed.