Abstract:
An apparatus for error compensation of a self calibrating current source adapted for compensating errors of at least one self calibrating current source. The compensation apparatus includes an imitative self calibrating current source, a current source reference apparatus and an error compensation apparatus. The imitative self calibrating current source is used to simulate the structure of the self calibrating current source to generate an error bias signal as the error of the self calibrating current source. The current source reference apparatus is used to generate an ideal bias signal. The error compensation apparatus generates a compensation bias signal to compensate errors of the self calibrating current source according to the difference of the error bias signal and the ideal bias signal.
Abstract:
A device and method for enhancing current driving are provided. The device comprises an operational amplifier, a monitor device, and an auxiliary output device. The monitor device is adopted to monitor whether the non-inverse input signal is close to a maximum or minimum voltage of an input source of the operational amplifier. When the non-inverse input signal is close to the maximum or minimum voltage, the auxiliary output device outputs an auxiliary current to an output terminal of the device of enhancing current driving.
Abstract:
An embedded storage apparatus including a control unit, a storage unit, and a signal processing and measurement unit is provided. The control unit outputs a plurality of signals, wherein the signals include a mode selection signal and a plurality of control signals. The storage unit is controlled by the control unit to read a data from a predetermined address. The storage unit has a plurality of output terminals. The signal processing and measurement unit has a plurality of input terminals and a plurality of output terminals, wherein the input terminals are connected to the output terminals of the storage unit. The signal processing and measurement unit reads the data from the output terminals and determines whether to perform a predetermined processing on the data according to the mode selection signal. After that, the signal processing and measurement unit outputs the data through the output terminals.
Abstract:
A source driving apparatus is disclosed. The source driving apparatus of the present invention is capable enough of driving all pixels in an LCD panel without extremely enhancing the driving capability of the buffers therein to suit an increasing total channel number thereof mainly by means of a novel wiring manner for connecting a plurality of first switches, a plurality of second switches, a plurality of first connection lines and a plurality of second connection lines.
Abstract:
A display and a driving control method for the display are provided. The display includes a display panel, a driving control module and a power-saving control module. The display panel is configured to display a plurality of frames. The driving control module is coupled to the display panel for providing a driving signal of each frame to the display panel. The power saving control module is coupled to the driving control module. The displaying period of each frame includes a first period and a second period. During the first period, the display enters a displaying mode. During the second period, the power-saving control module adjusts the operating parameters of the driving control module such that the display enters a power-saving mode. As a result, the power consumption of the display can be reduced.
Abstract:
A driving apparatus for driving a plurality of display devices of a panel is provided. The driving apparatus comprises a controllable current source and a plurality of current storage and duplicating apparatuses. Wherein, each of the current storage and duplicating apparatuses is coupled to the controllable current source and one of the display devices corresponding thereto to receive a first current from the controllable current source, and to output a second current which is equal, or proportional to the first current to drive the display apparatus.