Liquid crystal display panel with image sensing system and image processing system using same
A liquid crystal display panel ( 21 ) includes a display area ( 210 ) and an image sensing system ( 23 ). The image sensing system is arranged in the display area. The image sensing system is capable of sensing ambient light and converting the ambient light into image signals. The display area is capable of displaying images corresponding to the image signals.
1 . A liquid crystal display panel, comprising:
a display area; and
an image sensing system, wherein the image sensing system is arranged in the display area, the image sensing system is capable of sensing ambient light and converting the ambient light into image signals, and the display area is capable of displaying images corresponding to the image signals.
2 . The liquid crystal display panel of claim 1 , wherein the image sensing system comprises a plurality of pixel units arranged in a matrix, a first scanning circuit, and a second scanning circuit, the pixel units are capable of converting ambient light into electrical signals, and the first and second scanning circuits are respectively coupled to each pixel unit for driving the pixel unit.
3 . The liquid crystal display panel of claim 2 , wherein the first scanning circuit comprises a vertical scanning shift register and reset control circuit, for specifying the pixel units in each row of the matrix.
4 . The liquid crystal display panel of claim 2 , wherein the second scanning circuit comprises a horizontal scanning circuit and a selecting circuit, for specifying output from the pixel units in each column of the matrix.
5 . The liquid crystal display panel of claim 2 , wherein each pixel unit comprises at least one light sensor.
6 . The liquid crystal display panel of claim 5 , wherein the at least one light sensor is selected from the group consisting of a charge coupled device light sensor and a complementary metal-oxide semiconductor light sensor.
7 . The liquid crystal display panel of claim 5 , wherein the at least one light sensor comprises a first transistor, a second transistor, a third transistor, a photodiode, a reset voltage supply line, a selection signal line, and a reset signal line, an anode of the photodiode is grounded and a cathode of the photodiode is electrically coupled to a source electrode of the first transistor and a gate electrode of the second transistor, a gate electrode of the first transistor is electrically coupled to the first scanning circuit via the reset signal line, and a drain electrode of the first transistor is electrically coupled to the reset voltage supply line, a drain electrode of the second transistor is electrically coupled to the reset voltage supply line, and a source electrode of the second transistor is electrically coupled a source electrode of the third transistor, a gate electrode of the third transistor is electrically coupled to the first scanning circuit via the selection signal line, and a drain electrode of the third transistor is electrically coupled to the second scanning circuit.
8 . The liquid crystal display panel of claim 2 , further comprising a first substrate, a second substrate parallel to the first substrate, and a liquid crystal layer sandwiched between the first and second substrates, wherein the image sensing system is arranged between the first substrate and the liquid crystal layer.
9 . The liquid crystal display panel of claim 8 , wherein the pixel units are arranged between the first substrate and the liquid crystal layer.
10 . The liquid crystal display panel of claim 8 , further comprising a color filter arranged between the first substrate and the liquid crystal layer, wherein the pixel units are arranged between the first substrate and the color filter.
11 . The liquid crystal display panel of claim 8 , wherein the color filter comprises a plurality of color filter units, and each of a plurality of the plurality of color filter units corresponds to at least one of the pixel units of the image sensing system.
12 . An image processing system, comprising:
a liquid crystal display panel comprising a display area and an image sensing system arranged in the display area, the image sensing system being capable of sensing ambient light and converting the ambient light into electrical image signals;
an analog-to-digital converter configured for converting the electrical image signals into digital image signals;
a digital signal processing unit configured for processing the digital image signals; and
a micro controller unit configured for controlling the image sensing system to function and the liquid crystal display panel to display images corresponding to the image signals at the display area.
13 . The image processing system of claim 12 , further comprising a memory configured for storing the image signals processed by the micro controller unit.
14 . The image processing system of claim 12 , wherein the image sensing system comprises a plurality of pixel units arranged in a matrix, a first scanning circuit, and a second scanning circuit, the pixel units are capable of converting the ambient light into the electrical image signals, and the first and second scanning circuits are respectively coupled to each pixel unit for driving the pixel unit.
15 . The image processing system of claim 14 , wherein the first scanning circuit comprises a vertical scanning shift register and reset control circuit, for specifying the pixel units in each row of the matrix.
16 . The image processing system of claim 14 , wherein the second scanning circuit comprises a horizontal scanning circuit and a selecting circuit, for specifying output from the pixel units in each column of the matrix.
17 . The image processing system of claim 13 , wherein each pixel unit comprises at least one light sensor.
18 . The image processing system of claim 17 , wherein the at least one light sensor is selected from the group consisting of a charge coupled device light sensor and a complementary metal-oxide semiconductor light sensor.
19 . The image processing system of claim 17 , further comprising a first substrate, a second substrate parallel to the first substrate, and a liquid crystal layer sandwiched between the first and second substrates, wherein the image sensing system is arranged between the first substrate and the liquid crystal layer, and the pixel units are arranged between the first substrate and the liquid crystal layer.
20 . The image processing system of claim 19 , further comprising a color filter arranged between the first substrate and the image sensing system.