Substrate with touch function and display using the same

US9547398B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9547398-B2
Application numberUS-201414456331-A
CountryUS
Kind codeB2
Filing dateAug 11, 2014
Priority dateAug 28, 2013
Publication dateJan 17, 2017
Grant dateJan 17, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A substrate with touch function includes a plurality of scan lines and at least a touch device disposed thereon. The touch device includes at least a power line, at least a readout line, a light sensing circuit and a voltage divider circuit. The power line and the readout line are disposed on the substrate. The light sensing circuit is electrically coupled to a (N+1)th of the power lines, an Nth of the scan lines and an Nth of the readout lines, wherein N is an integer. The voltage divider circuit has an output terminal and is configured to output a first voltage to the light sensing circuit through the output terminal thereof according to a degree of illumination thereon or a degree of capacitance change. A display using the aforementioned substrate is also provided.

First claim

Opening claim text (preview).

What is claimed is: 1. A substrate with touch function, comprising: a plurality of scan lines disposed on the substrate; at least a touch device disposed on the substrate, the touch device comprising: at least a power line disposed on the substrate; at least a readout line disposed on the substrate; a light sensing circuit electrically coupled to a (N+1)th of the power lines, a Nth of the scan lines and a Nth of the readout lines, wherein N is an integer; and a voltage divider circuit comprising an output terminal and configured to output a voltage to the light sensing circuit through the output terminal thereof according to a degree of illumination thereon or a degree of capacitance change; wherein the light sensing circuit is controlled by a scan signal delivered through the Nth scan line and the voltage output from the voltage divider circuit, the light sensing circuit comprises: a readout transistor comprising a first control terminal, a first communication terminal and a second communication terminal, wherein the first control terminal is electrically coupled to the Nth of the scan lines, and the first communication terminal is electrically coupled to the Nth of the readout lines; a first light sensing transistor comprising a second control terminal, a third communication terminal and a fourth communication terminal, wherein the second control terminal is electrically coupled to a (N+1)th of the scan lines, and the third communication terminal is electrically coupled to the second communication terminal; a second light sensing transistor comprising a third control terminal, a fifth communication terminal and a sixth communication terminal, wherein the third control terminal is electrically coupled to the output terminal of the voltage divider circuit and for receiving the voltage, the fifth communication terminal is electrically coupled to the fourth communication terminal, and the sixth communication terminal is electrically coupled to the (N+1)th of the power lines; a first capacitor electrically coupled between the third communication terminal and a constant voltage; and a second capacitor electrically coupled between the third control terminal and the sixth communication terminal; wherein the (N+1)th of the scan lines is arranged next to the Nth of the scan lines. 2. The substrate according to claim 1 , wherein the voltage divider circuit comprises: a light sensing transistor comprising a first control terminal, a first communication terminal and a second communication terminal, wherein the first control terminal is electrically coupled to the second communication terminal, the first communication terminal is electrically coupled to a (N+2)th of the scan lines, and the second communication terminal is electrically coupled to the output terminal of the voltage divider circuit and for outputting the voltage; and a reference transistor comprising a second control terminal, a third communication terminal and a fourth communication terminal, wherein the second control terminal is electrically coupled to the fourth communication terminal, the third communication terminal is electrically coupled to the second communication terminal, and the fourth communication terminal is electrically coupled to a predetermined voltage; wherein the (N+2)th of the scan lines is arranged next two scan lines from the Nth of the scan lines. 3. The substrate according to claim 1 , wherein the voltage divider circuit comprises: a light sensing diode comprising an anode terminal and a cathode terminal, wherein the anode terminal is electrically coupled to a reverse bias, and the cathode terminal is electrically coupled to the output terminal of the voltage divider circuit and for outputting the voltage. 4. The substrate according to claim 1 , wherein the voltage divider circuit comprises: a first capacitor electrically coupled between the output terminal of the voltage divider circuit and a first predetermined voltage; and a second capacitor electrically coupled between the output terminal of the voltage divider circuit and a second predetermined voltage; wherein the first predetermined voltage is greater than the second predetermined voltage, and the voltage divider circuit is configured to output a corresponding degree of the voltage according to a degree of capacitance change of the first capacitor. 5. The substrate according to claim 1 , wherein the voltage divider circuit comprises: a light sensing transistor comprising a first control terminal, a first communication terminal and a second communication terminal, wherein the first control terminal is electrically coupled to a (N+1)th of the scan lines, the first communication terminal is electrically coupled to the output terminal of the voltage divider circuit, and the second communication terminal is for receiving an inverse signal of a scan signal on the (N+1)th of the scan lines; and a capacitor electrically coupled between the first communication terminal and a constant voltage; wherein the (N+1)th of the scan lines is arrange next to the Nth of the scan lines. 6. A substrate with touch function, comprising: a plurality of scan lines disposed on the substrate; at least a touch device disposed on the substrate, the touch device comprising: at least a power line disposed on the substrate; at least a readout line disposed on the substrate; a light sensing circuit electrically coupled to a (N+1)th of the power lines, a Nth of the scan lines and a Nth of the readout lines, wherein N is an integer; and a voltage divider circuit comprising an output terminal and configured to output a voltage to the light sensing circuit through the output terminal thereof according to a degree of illumination thereon or a degree of capacitance change; wherein the light sensing circuit is controlled by a scan signal delivered through the Nth scan line and the voltage output from the voltage divider circuit, the light sensing circuit comprises: a readout transistor comprising a first control terminal, a first communication terminal and a second communication terminal, wherein the first control terminal is electrically coupled to the Nth of the scan lines, and the first communication terminal is electrically coupled to the Nth of the readout lines; a light sensing transistor comprising a second control terminal, a third communication terminal and a fourth communication terminal, wherein the second control terminal is electrically coupled to the output terminal of the voltage divider circuit and for receiving the first voltage, the third communication terminal is electrically coupled to the second communication terminal, and the fourth communication terminal is electrically coupled to the (N+1)th of the power lines; and a capacitor electrically coupled between the second communication terminal and a constant voltage. 7. The substrate according to claim 6 , wherein the voltage divider circuit comprises: a light sensing transistor comprising a first control terminal, a first communication terminal and a second communication terminal, wherein the first control terminal is electrically coupled to the second communication terminal, the first communication terminal is electrically coupled to a (N+2)th of the scan lines, and the second communication terminal is electrically coupled to the output terminal of the voltage divider circuit and for outputting the voltage; and a reference transistor comprising a second control terminal, a third communication terminal and a fourth communication terminal, wherein the second control terminal is electrically coupled to the fourth communication terminal, the third communication terminal is electrically coupled to the second communication terminal, and the fourth communication terminal is elect

Assignees

Inventors

Classifications

  • Generation of voltages supplied to electrode drivers · CPC title

  • Details of driving circuits · CPC title

  • G06F3/0412Primary

    Digitisers structurally integrated in a display · CPC title

  • Multi-sensing digitiser, i.e. digitiser using at least two different sensing technologies simultaneously or alternatively, e.g. for detecting pen and finger, for saving power or for improving position detection · CPC title

  • G06F3/044Primary

    by capacitive means · CPC title

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What does patent US9547398B2 cover?
A substrate with touch function includes a plurality of scan lines and at least a touch device disposed thereon. The touch device includes at least a power line, at least a readout line, a light sensing circuit and a voltage divider circuit. The power line and the readout line are disposed on the substrate. The light sensing circuit is electrically coupled to a (N+1)th of the power lines, an Nt…
Who is the assignee on this patent?
Au Optronics Corp
What technology area does this patent fall under?
Primary CPC classification G06F3/0412. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jan 17 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).