The entire contents of Taiwan Patent Application No. 104114741, filed on May 8, 2015, from which this application claims priority, are expressly incorporated herein by reference.
1. Field of the Invention
The present invention relates to a power saving apparatus, and more particularly to a power saving apparatus of capacitive pointer.
2. Description of the Prior Art
Capacitive touch input technology is widely used in the touch panel, one of advantages is allowing user to proceed input operation via user's hand or a capacitive pointer so as to have a multi touch function which can generate a variety of applications according to specific corresponding operations by various gestures. A capacitive pointer allows user to perform exquisite input operations such as writing or to execute application programs on a touch panel via user interfaces. The coordinates of a capacitive pointer can be detected via capacitive coupling between detection electrodes of a touch panel and the capacitive pointer when the capacitive pointer approaches or contacts the touch panel. In order to establish capacitive coupling with detection electrodes of a touch panel, a capacitive pointer must receive driving signals from detection electrodes and output signals to detection electrodes so that coordinates of the capacitive pointer can be detected. In order to maintain operation, a capacitive pointer must continue receiving driving signals from detection electrodes and outputting signals. However, continuing to output signals is not always necessary and continuous high voltage output also consumes electrical energy quickly. Thus the invention provides a power saving apparatus of capacitive pointer which outputs high voltage signals according to predetermined parameters to save unnecessary electrical power consumption and to achieve objective of power saving.
An object of the present invention is to provide a power saving apparatus of capacitive pointer which outputs signals only when a voltage level of driving signal is higher than a. predetermined voltage level. If the voltage level of driving signal is lower than the predetermined voltage level, the capacitive pointer will not output signals so as to save electrical power of the capacitive pointer.
According to the object, one embodiment of the present invention provides a power saving apparatus of capacitive pointer comprising an amplifier circuit, a first comparator circuit, a controller, a switch and a second comparator circuit. The amplifier circuit receives a driving signal and generates an amplified driving signal with a voltage level. The first comparator circuit generates a first voltage level and receives the amplified driving signal with the voltage level. The first comparator circuit compares the voltage level and the first voltage level and generates a first comparator circuit signal. The controller receives the first comparator circuit signal and generates a controller signal. The switch determines whether an output signal from a high voltage output can be outputted or not. The second comparator circuit generates a second voltage level and receives the controller signal. The second comparator circuit compares the voltage level and the second voltage level and generates a second comparator circuit signal, wherein the controller signal determines whether the second comparator circuit signal turns on the switch so that the high voltage output can output the output signal, the first voltage level is higher than the second voltage level.
Another embodiment of the present invention provides a power saving apparatus of capacitive pointer comprising a first amplifier circuit and a second amplifier circuit, a first comparator circuit, a controller, a switch, and a second comparator circuit. The first and second amplifier circuits receive a driving signal and generate an amplified driving signal with a voltage level. The first comparator circuit generates a first voltage level and receives the amplified driving signal with the voltage level. The first comparator circuit compares the voltage level and the first voltage level and generates a first comparator circuit signal. The controller receives the first comparator circuit signal and generates a controller signal. The switch determines whether an output signal from a high voltage output can be outputted or not. The second comparator circuit generates a second voltage level and receives the controller signal. The second comparator circuit compares the voltage level and the second voltage level and generates a second comparator circuit signal, wherein the controller signal determines whether the second comparator circuit signal turns on the switch so that the high voltage output can output the output signal, and the first voltage level is higher than the second voltage level.
Another embodiment of the present invention provides a power saving apparatus of capacitive pointer comprising at least one amplifier circuit, a first comparator circuit, a second comparator circuit, a switch, and a controller. The amplifier circuit receives a driving signal and generates an amplified driving signal with a voltage level. The first comparator circuit generates a first voltage level and receives the amplified driving signal with the voltage level. The first comparator circuit compares the voltage level and the first voltage level and generates a first comparator circuit signal. The second comparator circuit generates a second voltage level and receives the controller signal. The second comparator circuit compares the voltage level and the second voltage level and generates a second comparator circuit signal, wherein the first voltage level is higher than the second voltage level. The switch determines whether an output signal from a high voltage output can be outputted or not. The controller receives the first comparator circuit signal and the second comparator circuit signal and generates a controller signal, wherein the controller signal determines whether the switch turns on or remains off so that the high voltage output can output the output signal,.
The accompanying drawings illustrate various embodiments of the present invention and are a part of the specification. The illustrated embodiments are merely examples of the present invention and do not limit the scope of the invention.
The detailed description of the present invention will be discussed in the following embodiments, which are not intended to limit the scope of the present invention, but can be adapted for other applications. While drawings are illustrated in details, it is appreciated that the scale of each component may not be expressly exactly.
In embodiments of the invention, some features related to a capacitive pointer which are not essential to the invention and are well known for any person skilled in the art to make and use the same will not be described in detail herein. For example, the following features relating to a capacitive pointer and a touch panel are well known for any person skilled in the art to make and use the same. A capacitive pointer includes a conductive tip while a touch panel has a capacitive detection array with a plurality of detection electrodes, wherein the detection electrodes comprise transmitting electrodes (Tx) and receiving electrodes (Rx). When a capacitive pointer is used upon a touch panel, the conductive tip approaches or contacts the capacitive detection array of the touch panel, and the conductive tip of the capacitive pointer will establish capacitive coupling with the detection electrodes under or adjacent the capacitive pointer which provide the capacitive pointer with driving signals. The capacitive pointer outputs a signal to the detection electrodes under or adjacent the capacitive pointer after receiving and processing the driving signals. Through capacitive coupling between the conductive tip and the detection electrodes, the signal from the capacitive pointer will be detected during scanning transmitting electrodes and receiving electrodes so that coordinates of the capacitive pointer can be calculated and determined. The capacitive detection array can use charge accumulation circuit, a capacitance modulation circuit, or other capacitance sensing methods known by those skilled in the art.
If the voltage level of the driving signal is lower than the first voltage level, the controller signal determines that the second comparator circuit signal maintains the switch 17 at off status so that the high voltage output 21 cannot outputs a output signal. If the voltage level of the driving signal is higher than the first voltage level, the controller signal determines that the second comparator circuit signal turns on the switch 17 so that the high voltage output 21 can outputs an output signal. Thus only when the voltage level of the driving signal is higher than the first voltage level, the capacitive pointer will output a output signal so as to save electrical power of the capacitive pointer.
If the voltage level of the driving signal is lower than the first voltage level, the controller 16 determines that the switch 17 maintains at off status so that the high voltage output 21 cannot outputs a output signal. If the voltage level of the driving signal is higher than the first voltage level, the controller 16 turns on the switch 17 so that the high voltage output 21 can outputs a output signal. Thus only when the voltage level of the driving signal is higher than the first voltage level the capacitive pointer will output a output signal so as to save electrical power of the capacitive pointer.
U24 comprises any suitable digital or analog switch devices, such as metal oxide semiconductor devices. The second comparator circuit comprising comparator U23, capacitor C61 and resistors R96, R97, R98 is used to provide a second voltage level and to compares the voltage level and the second voltage level to generate a second comparator circuit signal. The controller signal determines whether the second comparator circuit signal turns on the switch comprising transistor Q5 so that the high voltage output can outputs a output signal. Capacitor C61 and resistors R96, R98 are used to generate the second voltage level, and the first voltage level is higher than the second voltage level. The circuit diagram of a power saving apparatus of capacitive pointer shown in
The power saving apparatus of capacitive pointer of the invention outputs signals only when a voltage level of driving signal higher than predetermined voltage levels. The capacitive pointer establishes capacitive coupling with detection electrodes of a touch panel under or adjacent the capacitive pointer after scanning transmitting electrodes and receiving electrodes of the detection electrodes to generate a detection signal so as to calculate and determine coordinates of the capacitive pointer. If the voltage level of driving signal is lower than the predetermined voltage level, the capacitive pointer will not outputs an output signal so that the capacitive pointer will not establish capacitive coupling with detection electrodes under or adjacent the capacitive pointer so as to save electrical power of the capacitive pointer.
Although specific embodiments have been illustrated and described, it will be appreciated by those skilled in the art that various modifications may be made without departing from the scope of the present invention, which is intended to be limited solely by the appended claims.
Number | Date | Country | Kind |
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104114741 | May 2015 | TW | national |