1. Field of the Invention
The invention relates to a sensing circuit apparatus, particularly to an active touch sensing circuit apparatus.
2. Description of the Prior Art
The application range of touch panel is very wide, including portable information, consumer and communication products, finance or commercial use, factory automatic control system, public information use etc. In addition, since every large electronic factory introduces the hot touch action apparatus, such as the smart cell phone, tablet computer etc., the users realize the application convenience touch products again. Meantime, it also generates another change on conventional operation practice, the more convenient touch solution is started to be introduced into the consumer products, in order to replace relatively aged, failed, or corroded mechanical switch. The flat layout of apparatus is able to be integrated with the design of most electronic apparatuses very easily, thus the demand of touch panel is increased greatly.
In addition, the detection of surface capacitance change is often used as the basic operation principle of touch sensing unit, wherein the sensation of positioning and pressing action is carried at the contact point. When the part or finger of human body touches the metal sheet of sensing unit, a small change of capacitance value will be caused on the metal sheet immediately. When the conductive part is moved on the metal sheet, the electric field of metal sheet will be changed at the same time, and then the capacitance value will be changed. The touch sensing unit collects these small changes, deals with the coordinate of feedback contact point and the action form, which are the basic touch sensing the mechanisms. The touch sensing circuit is one of main components in the touch panel. It is used to sense the contact position of body, so that the control system is able to know the actual contact position of body on the panel in order to control the apparatus correctly.
As shown in Patent No. 100405146C of the People Republic of China, a touch liquid crystal display is disclosed. Please refer to
The liquid crystal display 100 of
As shown in
The liquid crystal molecules of liquid crystal capacitance 206 in
However, the above-mentioned conventional touch liquid crystal display should use an extra gate electrode to control and drive the scan lines G1-GN, which would increase the extra cost. The voltage is used as the response signal, and the source electrode of sensing circuit is used to read the voltage value, which is apt to sound by the variation among the components. This case utilizes the partial voltage concept of capacitance for sensing. Thus, its response signal is weaker and hard to be read. Finally, when it is not touched, there is still big current that is passed, thus the power consumption is very large, and it will be unfavorable for the use of touch panel with large area.
From the above-mentioned description, the touch sensing circuit of conventional touch panel is unable to achieve a the required demand, thus it is necessary to invent a touch sensing circuit with high sensing signal intensity, in order to produce high sensing signal intensity and reduce the cost of read circuit.
The purpose of the invention is for providing an active touch sensing circuit with a controllable gate voltage close time, which can be used in the in-cell or the on-cell touch panel. When the capacitance is touched, its capacitance value will be changed at the same time, so that as serious RC delay effect will be generated for the wave form of the gate electrode of transistor. The drain electrode of transistor will output a larger open current, make the open current is easy to be read, raise the intensity of sensing signal, and reduce the wrong judgment rate.
The invention discloses an active matrix touch sensing circuit apparatus used in a touch panel includes a sensing unit, a resistance, and a thin film transistor. The first end of sensing unit connects the prescribed constant voltage. The first end of resistance connects the second end of sensing unit, and the second end of resistance connects the first scan line. The control end of the thin film transistor connects the second end of sensing unit, the second scan line connects the input end of the thin film transistor, and the read out line connects the output end of the thin film transistor. The sensing value of the sensing unit is changed, when the sensing unit senses a body touched the circuit, and wave form of the control end is changed. The output end generates an open current, and the read out line transmits the open current.
The sensing unit of the invention may be a variable capacitance, wherein when the body touches the variable capacitance, the capacitance value of the variable capacitance will be changed.
The resistance of the invention can be achieved by a thin film transistor, and when the capacitance value is changed, the corresponding wave form will be changed.
When the wave form is inputted in the invention, the wave form will be changed, because a RC delay is generated by the resistance and the variable capacitance.
The first scan line of the invention comprises a first signal. The first signal is changed from the high electric potential to the low electric potential. The second scan line includes a second signal. The second signal is changed from the low electric potential to the high electric potential. Wherein, there is the prescribed time interval between the first signal and the second signal.
The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
The invention relates to an active touch sensing circuit apparatus. Please refer to
Please refer to
In
Please refer to
In this embodiment, when the finger of user touches the active touch sensing circuit apparatus 300 installed in the touch panel (not shown in the figure), the sensing value of the sensing unit 310 is changed, and the input wave form of control end 3022 of transistor 302 is changed. The output end 3026 generates an open current I, and the read out line RN transmits the open current I. Wherein, the wave form will be changed, because a RC delay is produced by the resistance and the variable capacitance.
In another embodiment, the sensing unit 302 of the active touch sensing circuit apparatus 300 is a variable capacitance. When the finger of user touches the variable capacitance, the capacitance value of the variable capacitance is changed. In addition, when the capacitance value is changed, the corresponding wave form will be changed. The input wave form received by the control end 3022 of transistor 302 will also be changed. Finally, the output end 3026 generates an open current I, and the read out line RN transmits the open current I.
Please refer to
As shown in
In this embodiment of the invention, the large current will be generated only upon touching. There is no current generated upon untouched. It can make the whole circuit consume lower power. The large open current I will be used the response signal of the active touch sensing circuit apparatus 300. Thus the influence of component variation can be reduced greatly. The read of simultaneous large current is very low for the design demand of the integrated circuit. Thus the circuit cost can be reduced, and it can also be used in the touch panel with large area.
It is understood that various other modifications will be apparent to and can be readily made by those skilled in the art without departing from the scope and spirit of this invention. Accordingly, it is not intended that the scope of the claims appended hereto be limited to the description as set forth herein, but rather that the claims be construed as encompassing all the features of patentable novelty that reside in the present invention, including all features that would be treated as equivalents thereof by those skilled in the art to which this invention pertains.
Number | Date | Country | Kind |
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100116715 | May 2011 | TW | national |