Abstract:
A touch screen system includes a touch screen corresponding to a Descartes coordinate system XOY, a first image capturing unit, a second capturing unit, and a processing unit. The first image capturing unit and the second capturing unit are arranged at the periphery of the touch screen and are substantially perpendicular to each other. Both the two image capturing units include a camera and a housing, the camera is housed in the housing to take images, an optical axis of the lens of each camera is perpendicular to X or Y axis of the system XOY respectively for acquiring images including one touch point. The processing unit identifies a touched point on the touch screen and determines X and Y coordinates of the touched point in the system XOY and executing a function corresponding to the X and Y coordinates of the touched point.
Abstract:
An electronic reader system includes an electronic book and a stylus. The electronic book includes a battery and a cover. The stylus includes a pen body for writing on the electronic book to input data or commands into the electronic book, and an illumination member detachably attached to the pen body. The illumination member can be detached from the pen body and attached onto the electronic book, receiving electrical power from the book as it does so, to illuminate the electronic book.
Abstract:
An anti-counterfeiting electronic device includes a function component assigned with an identification code ID and a processor. The processor generates a random code K1 and transmits the random code K1 to the function component; the function component encrypts the random code K1 and the identification code ID to generate a key ID1. The processor further obtains the key ID1 from the function component and decrypts the key ID1 to generate an identification code ID2, and determines whether the identification code ID2 is the same as the ID and executes the system login command if the identification code ID2 is the same as the identification code ID. An anti-counterfeiting method is also provided.
Abstract:
A method of switching working modes, the method includes: supplying a storage unit, therein the storage unit stores at least two working modes, alarm information, and alarm time, the alarm information includes indicating information and determining information; detecting whether a system time matches the alarm time; outputting the indicating information when the system time matches the alarm time; receiving input; determining whether the input matches the determining information; controlling the electronic device to switch from one working mode to another working mode when the input matches the determining information. An electronic device with working modes switching function is also provided.
Abstract:
An electronic device with a sleep mode includes a CPU and a monitoring unit. The monitoring unit includes a testing module, a storage module, a comparing module, and a signal generating module. The CPU falls into standby mode when the electronic device is in the sleep mode. When the comparing module determines any one of one or more parameters of a battery which supplies power to the electronic device measured by the testing module is not within a corresponding predetermined range stored in the storage module, the signal generating module generates signals to awake the CPU. The awaked CPU executes protection operation to protect the electronic device. A related method is also provided.
Abstract:
An electronic device comprising an input unit and a remote control for generating control signals; an interface unit; and a processor unit configured to analyze operation type according to the control signals, and control the electronic device to flip page. A remote control method applied in an electronic device is also provided.
Abstract:
A stylus pen includes a penholder and a pen tip connected to the penholder. The pen tip includes a first pen tip and a second pen tip. A first contact surface and a second contact surface are respectively defined in one end of the first pen tip and the second pen tip, and both are substantially parallel to each other. A cavity is defined in the second pen tip, in which the first pen tip is slidably received. An elastic member is arranged in the cavity to provide an elastic force to the first pen tip to cause the first pen tip to extend out of the cavity. When the pen tip is pressed, the elastic member is compressed to allow the first pen tip to retract into the cavity, allowing the first contact surface and the second contact surface to be flush with each other.
Abstract:
An electronic device with an alarm clock function includes a storage unit storing an alarm time, audio files and related information; an audio playing module for randomly playing an audio file via an audio output unit which matches the alarm time; an option generating module for generating and outputting preset number options, at least one of them containing the related information of the playing audio file; a comparison module for receiving inputs and determining whether the input matches the related information of the playing audio file; a managing unit for disabling the alarm clock function when the input matches the related information. A method of controlling the alarm clock function is also provided.
Abstract:
A battery charger includes a base, a plug formed on the base and electrically connected to an external power source, an interface formed on the base and electrically connecting an external device, a clamp formed on the base and fixing and electrically connecting a battery, and a controller embedded in the base and electrically connected to the plug, the clamp, and the interface. The controller is able to boost the battery voltage to a rated charging voltage of the external device and conducting the voltage to the interface to charge the external device.
Abstract:
A rechargeable battery checker for measuring the voltage of a rechargeable battery includes a PMIC, a charging switch, a voltage measuring switch, and a control circuit. The charging switch is connected to a charging terminal of the PMIC and the rechargeable battery, to control the PMIC to charge or pause charging the rechargeable battery. The voltage measuring switch is connected to a voltage measuring terminal of the PMIC and the rechargeable battery, to control the PMIC to measure or pause measuring the voltage of the rechargeable battery. The control circuit connects to the charging switch and the voltage measuring switch, and to output a modulated signal, and periodically change the signal to switch on/off the charging switch and the voltage measuring switch. The PMIC determines whether the rechargeable battery is fully charged according to the measured voltage of the rechargeable battery.