Claims
- 1. A color image display driving circuit for generating a plurality of voltage signals to be applied to a plurality of pixel formation portions, based on input signals including a first, a second and a third color image signal that respectively represent gradations of a first, a second and a third color constituting three primary colors, the driving circuit comprising:
a gradation voltage generation circuit for outputting a gradation voltage group made of a plurality of voltages that represent different gradations; a plurality of selection circuits, each selection circuit being for selecting one of the plurality of voltages in the gradation voltage group in accordance with the input signals; and an output circuit for outputting the plurality of voltages selected by the plurality of selection circuits respectively as the plurality of voltage signals; wherein the plurality of selection circuits successively switch between a first period in which the voltage is selected in accordance with the first color image signal, a second period in which the voltage is selected in accordance with the second color image signal, and a third period in which the voltage is selected in accordance with the third color image signal; and wherein the gradation voltage generation circuit changes a portion of or all voltages constituting the gradation voltage group in response to the switching between the first period, the second period and the third period, and in accordance with the differences between the first color, the second color and the third color in gradation reproducibility of the plurality of pixel formation portions.
- 2. The driving circuit according to claim 1,
wherein the gradation voltage generation circuit comprises:
a first voltage divider circuit for generating a plurality of voltages representing the different gradations of the first color; a second voltage divider circuit for generating a plurality of voltages representing the different gradations of the second color; a third voltage divider circuit for generating a plurality of voltages representing the different gradations of the third color; and a selector circuit for selecting the plurality of voltages generated by the first voltage divider circuit in the first period, the plurality of voltages generated by the second voltage divider circuit in the second period, and the plurality of voltages generated by the third voltage divider circuit in the third period; wherein the plurality of voltages selected by the selector circuit are outputted as the gradation voltage group.
- 3. The driving circuit according to claim 1,
wherein the gradation voltage generation circuit comprises:
a voltage divider circuit for generating a plurality of voltages; a first variable resistor circuit connected to one side of the voltage divider circuit; and a second variable resistor circuit connected to the other side of the voltage divider circuit; wherein the first variable resistor circuit comprises a first selector switch for switching the resistance of the first variable resistor circuit such that the resistance of the first variable resistor circuit takes on a preset first value corresponding to the first color in the first period, a preset second value corresponding to the second color in the second period, and a preset third value corresponding to the third color in the third period; wherein the second variable resistor circuit comprises a second selector switch for switching the resistance of the second variable resistor circuit such that the resistance of the second variable resistor circuit takes on a preset fourth value corresponding to the first color in the first period, a preset fifth value corresponding to the second color in the second period, and a preset sixth value corresponding to the third color in the third period; and wherein the gradation voltage generation circuit outputs the plurality of voltages generated by the voltage divider circuit as the gradation voltage group.
- 4. A display device comprising:
a color image display driving circuit for generating a plurality of voltage signals to be applied to a plurality of pixel formation portions, based on input signals including a first, a second and a third color image signal that respectively represent gradations of a first, a second and a third color constituting three primary colors; a gradation voltage generation circuit for outputting a gradation voltage group made of a plurality of voltages that represent different gradations; a plurality of selection circuits, each selection circuit being for selecting one of the plurality of voltages in the gradation voltage group in accordance with the input signals; and an output circuit for outputting the plurality of voltages selected by the plurality of selection circuits respectively as the plurality of voltage signals; wherein the plurality of selection circuits successively switch between a first period in which the voltage is selected in accordance with the first color image signal, a second period in which the voltage is selected in accordance with the second color image signal, and a third period in which the voltage is selected in accordance with the third color image signal; and wherein the gradation voltage generation circuit changes a portion of or all voltages constituting the gradation voltage group in response to the switching between the first period, the second period and the third period, and in accordance with the differences between the first color, the second color and the third color in gradation reproducibility of the plurality of pixel formation portions.
- 5. The display device according to claim 4,
wherein the gradation voltage generation circuit comprises:
a first voltage divider circuit for generating a plurality of voltages representing the different gradations of the first color; a second voltage divider circuit for generating a plurality of voltages representing the different gradations of the second color; a third voltage divider circuit for generating a plurality of voltages representing the different gradations of the third color; and a selector circuit for selecting the plurality of voltages generated by the first voltage divider circuit in the first period, the plurality of voltages generated by the second voltage divider circuit in the second period, and the plurality of voltages generated by the third voltage divider circuit in the third period; wherein the plurality of voltages selected by the selector circuit are outputted as the gradation voltage group.
- 6. The display device according to claim 4,
wherein the gradation voltage generation circuit comprises:
a voltage divider circuit for generating a plurality of voltages; a first variable resistor circuit connected to one side of the voltage divider circuit; and a second variable resistor circuit connected to the other side of the voltage divider circuit; wherein the first variable resistor circuit comprises a first selector switch for switching the resistance of the first variable resistor circuit such that the resistance of the first variable resistor circuit takes on a preset first value corresponding to the first color in the first period, a preset second value corresponding to the second color in the second period, and a preset third value corresponding to the third color in the third period; wherein the second variable resistor circuit comprises a second selector switch for switching the resistance of the second variable resistor circuit such that the resistance of the second variable resistor circuit takes on a preset fourth value corresponding to the first color in the first period, a preset fifth value corresponding to the second color in the second period, and a preset sixth value corresponding to the third color in the third period; and wherein the gradation voltage generation circuit outputs the plurality of voltages generated by the voltage divider circuit as the gradation voltage group.
- 7. The display device according to claim 4, further comprising:
a plurality of video signal lines for transmitting the plurality of voltage signals to the plurality of pixel formation portions; and a connection switching circuit for connecting the output circuit and the plurality of video signal lines such that each of the plurality of voltage signals is applied to one of the plurality of video signal lines, and for switching the video signal lines to which the voltage signals are applied within predetermined video signal line groups; wherein the output circuit comprises a plurality of output terminals respectively corresponding to a plurality of video signal lines groups obtained by grouping the plurality of video signal lines into a plurality of groups of three video signal lines made of video signal lines for a first, a second and a third color for respectively transmitting voltage signals to the pixel formation portions of a first, second and third color in the plurality of pixel formation portions; and wherein the connection switching circuit connects each output terminal of the output circuit to the video signal line for the first color of the three corresponding video signal lines in the first period, connects each output terminal of the output circuit to the video signal line for the second color of the three corresponding video signal lines in the second period, and connects each output terminal of the output circuit to the video signal line for the third color of the three corresponding video signal lines in the third period.
- 8. The display device according to claim 7, further comprising:
a plurality of scanning signal lines intersecting with the plurality of video signal lines; and a scanning signal line driving circuit for selectively driving the plurality of scanning signal lines; wherein the plurality of pixel formation portions are arranged in a matrix, in correspondence with the intersections between the plurality of video signal lines and the plurality of scanning signal lines; wherein each of the pixel formation portions comprises: a switching element that is turned on and off by a scanning signal line passing through the corresponding intersection; a pixel electrode that is connected via the switching element to the video signal line passing through the corresponding intersection; and a common electrode that is shared by the plurality of pixel formation portions, and that is arranged such that a predetermined capacitance is formed between that common electrode and the pixel electrode; wherein the plurality of selection circuits switch between the first period, the second period and the third period, such that a period from a time at which one scanning signal line is selected by the scanning signal line driving circuit to a time when the next scanning signal line is selected is divided into the first, the second and the third period.
- 9. A color image display driving method generating a plurality of voltage signals to be applied to a plurality of pixel formation portions, based on input signals including a first, a second and a third color image signal that respectively represent gradations of a first, a second and a third color constituting three primary colors, the driving method comprising:
a gradation voltage generation step of outputting a gradation voltage group made of a plurality of voltages that represent different gradations; selection steps of selecting one of the plurality of voltages in the gradation voltage group in accordance with the input signals; and an output step of outputting the plurality of voltages selected by executing the selection steps in parallel as the plurality of voltage signals; wherein, in the selection steps, successive switches are made between a first period in which the voltage is selected in accordance with the first color image signal, a second period in which the voltage is selected in accordance with the second color image signal, and a third period in which the voltage is selected in accordance with the third color image signal; and wherein, in the gradation voltage generation step, a portion of or all voltages constituting the gradation voltage group is/are changed in response to the switching between the first period, the second period and the third period, and in accordance with the differences between the first color, the second color and the third color in gradation reproducibility of the plurality of pixel formation portions.
- 10. The driving method according to claim 9,
wherein the gradation voltage generation step comprises:
a first voltage dividing step of generating a plurality of voltages representing the different gradations of the first color; a second voltage dividing step of generating a plurality of voltages representing the different gradations of the second color; a third voltage dividing step of generating a plurality of voltages representing the different gradations of the third color; and a selecting step of selecting the plurality of voltages generated by the first voltage dividing step in the first period, the plurality of voltages generated by the second voltage dividing step in the second period, and the plurality of voltages generated by the third voltage dividing step in the third period; wherein, in the gradation voltage generation step, the plurality of voltages selected by the selecting step are outputted as the gradation voltage group.
- 11. The driving method according to claim 9,
wherein the gradation voltage generation step comprises:
a first switching step of switching a resistance of a first variable resistor connected to one side of a voltage divider circuit; and a second switching step of switching a resistance of a second variable resistor connected to the other side of the voltage divider circuit; wherein, in the first switching step, the resistance of the first variable resistor is switched such that the resistance of the first variable resistor takes on a preset first value corresponding to the first color in the first period, a preset second value corresponding to the second color in the second period, and a preset third value corresponding to the third color in the third period; wherein, in the second switching step, the resistance of the second variable resistor is switched such that the resistance of the second variable resistor takes on a preset fourth value corresponding to the first color in the first period, a preset fifth value corresponding to the second color in the second period, and a preset sixth value corresponding to the third color in the third period; and wherein, in the gradation voltage generation step, the plurality of voltages generated by the voltage divider circuit are outputted as the gradation voltage group.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2003-119397 |
Apr 2003 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(a) upon Japanese Patent Application No.2003-119397 titled “DRIVING CIRCUIT FOR COLOR IMAGE DISPLAY AND DISPLAY DEVICE PROVIDED WITH THE SAME,” filed on Apr. 24, 2003, the content of which is hereby incorporated by reference.