Abstract:
A scanner self-adaptive to an optimized scanning speed, comprising: a register storing a scanning speed parameter; a frequency adjusting circuit outputting a driving signal having variable frequency corresponding to the scanning speed parameter using a predetermined method; and a stepping motor controlling the scanning speed of the scanner, coupled to receive the driving signal and changing its rotate speed, as well as the scanning speed of the scanner, corresponding to the frequency of the driving signal.
Abstract:
A driving device is provided for a cathode fluorescent lamp (CCFL) circuit, comprising a voltage generator outputting a driving voltage and a controller coupled thereto. The controller directs the voltage generator to output a first voltage exceeding a working voltage of the CCFL to initialize the CCFL. When brightness of the cold cathode lamp tube exceeds a working brightness of the CCFL, the controller directs the voltage generator to decrease the driving voltage gradually so that the brightness of the CCFL equals the working brightness. The controller stops decreasing the driving voltage when the driving voltage equals the working voltage.
Abstract:
A document management system generates a hierarchical category tree itemizing documents within a database from associated attributes of the documents. The document management system further provides access privileges to the documents itemized in the hierarchical category tree by associating access privileges to the attributes of the documents with itemized by the hierarchical category tree.
Abstract:
A driving device for a CCFL circuit comprising at least one CCFL is provided. The driving device comprising at least one heating device controlling the temperature of the CCFL, a power supply outputting a first voltage, and a switching device having a first input terminal receiving the first voltage and a first and second output terminal; wherein the first output terminal is coupled to the CCFL circuit outputting a second voltage when the first voltage is higher than a first level, and the second output terminal is coupled to the heating device outputting a third voltage when the first voltage is lower than the first level. The driving device further comprises a controller controlling the power supply to output the first voltage higher than the first level to lighting up the CCFL, and lower than the first level to control the temperature of the CCFL.
Abstract:
An inverter and a method for rapid warm-up of luminance loadings are disclosed, thereby minimizing the warm-up time and maintaining continuity of luminance of luminance loadings. The inverter includes a voltage source, a sensor, a voltage regulator, and a converter. When heating the luminance loadings starts, the inverter detects the temperature of luminance loadings by the sensor and then provides the luminance loadings with a voltage corresponding to the detected temperature. Further, the inverter detects the temperature of luminance loadings by the sensor and automatically adjusts the voltage supplied to the luminance loadings by the voltage regulator according to detected temperature during the warm-up of luminance loadings.
Abstract:
The present disclosure provides a system for sharing confidential semiconductor manufacturing information which includes an access monitor module for authorizing user access to confidential information, an information sharing module for creating a transitory link to the confidential information in response to authorization, and a transitory link maintenance module for maintaining and removing the transitory link. A user may request access to the confidential information and, upon authorization, a transitory link is created which allows the user to access the confidential information. The transitory link is then removed from the system.
Abstract:
A rapid warmup light actuator is disclosed to solve the problems that the light actuator cannot rapidly warm up the lighting load in the prior art and that unstable light sources result from the rapid temperature drop if the light is instantaneously disconnected and restarted. The device consists of an energy storage circuit, an oscillatory circuit, and a transformer. In the beginning of power supply, the energy storage circuit is charged. When starting the lighting load, the energy stored in the energy storage circuit rapidly warms up the lighting load in order to illuminate stable light. Using the energy stored in the energy storage circuit, the lighting load can continue its stable status even it is instantaneously disconnected and restarted.
Abstract:
A method for activating an illuminator and an illuminating device. The invention uses pins on an application specific integrated circuit (ASIC) in a scanner to output pulses of different frequencies. The illuminator has different efficiencies at different frequencies, so the heat generated by the illuminator at the frequencies of inferior efficiency is used to achieve fast warm-up, and the voltage output frequency of the highest light efficiency is provided to the illuminator after warm-up. The illumination device can be designed according to the activation method. It comprises an illuminator, a pulse output unit, a driving unit and a power supply unit. The power supply unit outputs the frequency needed for the warm-up period and the frequency needed for the working period. The driving unit activates the pulse output of the pulse output unit.
Abstract:
A warm-up circuit adjusts the brightness of a CCFL through using PWM technique for a scanner. The warm-up circuit has an inverter connected to the CCFL for supplying power, and a PWM controller connected to the inverter for outputting a first control signal to the inverter in a warm-up time and outputting a second control signal to the inverter to control the inverter supplying power to the CCFL in a scan time.
Abstract:
A driving device for a CCFL circuit comprising at least one CCFL is provided. The driving device comprising at least one heating device controlling the temperature of the at least one CCFL, a power supply outputting a first voltage, and a switching device having a first input terminal receiving the first voltage and a first and second output terminal; wherein the first output terminal is coupled to the CCFL circuit outputting a second voltage when the first voltage is higher than a first level, and the second output terminal is coupled to the at least one heating device outputting a third voltage when the first voltage is lower than the first level. The driving device further comprises a controller controlling the power supply to output the first voltage higher than the first level to lighting up the at least one CCFL, and lower than the first level to control the temperature of the at least one CCFL.