1460725751-9f15df77-256f-42b3-9bee-e8ac055b9a1a

1. A display device comprising;
a display panel having a high pixel and a low pixel, wherein the high pixel and the low pixel are formed in a pixel area; and
a driving section receiving a first image signal from an external device, outputting a second image signal to the high pixel by using gamma data that corresponds to a high pixel gamma curve, and outputting a third image signal to the low pixel by using gamma data that corresponds to a low pixel gamma curve,
wherein the driving section outputs the third image signal to the low pixel by using the same gamma data for each of RGB data that corresponds to a low gradation of the low pixel gamma curve.
2. The display device of claim 1, wherein the driving section comprises:
a timing controller generating the second and third image signals based on the first image signal;
a gate driver outputting a plurality of gate signals to activate a plurality of gate lines; and
a data driver compensating the second image signal that is provided from the timing controller by using the gamma data that corresponds to the high pixel gamma curve, compensating the third image signal that is provided from the timing controller by using the gamma data that corresponds to the low pixel gamma curve, and outputting the compensated second and third image signals to the display panel.
3. The display device of claim 2, further comprising a storing section storing the RGB gamma data corresponding to the high pixel and the RGB data corresponding to the low pixel,
wherein the timing controller generates the second image signal by using the RGB gamma data corresponding to the high pixel, and generates the third image signal by using the RGB data corresponding to the low pixel.
4. The display device of claim 2, wherein the pixel area is defined by two adjacent gate lines, an odd numbered data line and an even numbered data line that is adjacent to the odd numbered data line.
5. The display device of claim 4, wherein the high pixel comprises;
a switching element electrically connected to one gate line of the two adjacent gate lines and to the even numbered data line; and
a liquid crystal capacitor electrically connected to the switching element.
6. The display device of claim 5, wherein the low pixel comprises:
a switching element electrically connected to a remaining gate line of the two adjacent gate lines and to the odd numbered data line; and
a liquid crystal capacitor electrically connected to the switching element.
7. The display device of claim 1, wherein the driving section comprises:
a timing controller generating the second image signal based on the first image signal;
a first gate driver outputting a plurality of gate signals to activate even-numbered gate lines;
a second gate driver outputting a plurality of gate signals to activate odd-numbered gate lines; and
a data driver outputting the second image signal provided from the timing controller to the display panel.
8. The display device of claim 7, further comprising a storing section storing a high RGB gamma data corresponding to the high pixel and a low RGB gamma data corresponding to the low pixel,
wherein the driving section further comprises a switching section outputting the high RGB gamma data and the low RGB gamma data to the data driver in response to a controlling of the timing controller.
9. The display device of claim 8, wherein the data driver compensates the second image signal using the high RGB gamma data and the low RGB gamma data, and outputs the compensated high RGB gamma data and the compensated low RGB gamma data to the display panel.
10. The display device of claim 9, wherein the pixel area is defined by two adjacent gate lines and adjacent two data lines,
the high pixel comprises,
a first switching element electrically connected to an even-numbered gate line corresponding to the first gate driver; and
a first liquid crystal capacitor electrically connected to the first switching element.
11. The display device of claim 10, wherein the low pixel comprises:
a second switching element electrically connected to an odd-numbered gate line corresponding to the second gate drive; and
a second liquid crystal capacitor electrically connected to the second switching element.
12. A display device comprising:
a display panel having a high pixel and a low pixel that are formed in a pixel area;
a storing section storing high RGB gamma data corresponding to the high pixel and low RGB gamma data corresponding to the low pixel;
a timing controller receiving a first image signal from an external device, outputting a second image signal adapted the first image signal to the high RGB gamma data, and outputting a third image signal adapted the first image signal to the low RGB gamma data;
a gate driver outputting a gate signal to activate the gate line in response to controlling of the timing controller; and
a data driver outputting the second and third image signals to the data line in response to the controlling of the timing controller,
wherein the storing section stores same RGB gamma data, which corresponds to a low-gradation of the low RGB gamma data.
13. The display device of claim 12, wherein the low gradation is about 10% of a full-gradation.
14. A display device comprising:
a display panel having high and low pixels that are formed in a pixel area;
a first storing section storing high RGB gamma data corresponding to high pixel gamma curves of RGB data, respectively;
a second storing section storing low RGB gamma data corresponding to low pixel gamma curves of RGB data, respectively;
a timing controller receiving a first image signal from an external device and generating a second image signal based on the first image signal;
a switching section selectively outputting the high RGB gamma data and the low RGB gamma data in response to controlling of the timing controller;
a first gate driver outputting a first gate signal to activate an even-numbered gate line of the display panel;
a second gate driver outputting a second gate signal to activate an odd-numbered gate line of the display panel; and
a data driver compensating the second image signal using the high RGB gamma data and the low RGB gamma data, and outputting the compensated second image signal to the display panel,
wherein the second storing section stores the same RGB gamma data corresponding to a low-gradation of the low RGB gamma data.
15. The display device of claim 14, wherein the low gradation is about 10% of a full-gradation.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A balancing board, comprising:
a first surface for receiving one or more feet of a user when said balancing board is in operation;
a second surface including one or more outwardly curved forms for engaging with a floor surface when said balancing board is in operation, wherein said second surface provides means for varying an orientation and movement of the balancing board relative to the floor surface;
a signal receiving arrangement for receiving one or more sensor signals indicative of one or more user reactions when operating the balancing board in reaction to said variations in the orientation and movement of the balancing board, wherein the user is supported upon the first surface of the balancing board;
a processor which is operable to receive said one or more sensor signals from a first set of sensors, comprising one or more sensors indicative of said one or more user reactions, wherein the processor is further operable to control means of changing a profile of the second surface;
wherein said signal receiving arrangement is coupled to a second set of sensors, comprising one or more sensors and is operable to receive one or more signals from the second set of sensors, the second set of sensors being operable to determine an orientation, movement, and acceleration of the balancing board, and to communicate with the processor via the signal receiving arrangement; and
one or more actuators, wherein the one or more sensors of the second set of sensors are coupled to the signal receiving arrangement and the processor and wherein the one or more sensors of the second set are operable to communicate with the one or more actuators, said actuators being operable to modify one or more outwardly curved forms of the balancing board.
2. The balancing board as claimed in claim 1, wherein the processor is operable to cause the balancing board to exhibit a plurality of levels.
3. The balancing board as claimed in claim 2, wherein each of the plurality of balancing board levels corresponds to a predefined combination of orientation, movement, and acceleration of the balancing board.
4. The balancing board as claimed in claim 2, wherein the processor is operable to automatically change between the balancing board levels based on the user feedback sensed by the first set of sensors.
5. The balancing board as claimed in claim 2, wherein the processor is operable to automatically advance from one of the plurality of balancing board levels to another of the plurality of balancing board levels after a predefined time period.
6. The balancing board as claimed in claim 1, wherein said signal receiving arrangement is coupled to the first set of sensors being, at least in part, attached in operation to a body of the user for sensing user reactions.
7. The balancing board as claimed in claim 6, wherein the balancing board is operable to communicate to an electronic device the user reaction sensed by the first set of sensors and the data sensed corresponding to the balancing board by the second set of sensors, wherein the electronic device is operable to perform analysis on the data received from the processor for determining a medical condition of the user.
8. The balancing board as claimed in claim 1, wherein the balancing board includes a safety mechanism which is deployable based on feedback sensed by the one or more sensors of the first set, the one or more sensors of the second set, or both, which sensors are coupled to the signal receiving arrangement, wherein said one or more actuators are operable to deploy the safety mechanism.
9. The balancing board as claimed in claim 8, wherein the safety mechanism comprises airbags.
10. The balancing board as claimed in claim 1, wherein said balancing board further includes means for moving the first surface relative to the second surface to facilitate a change in orientation and movement independently of any changes generated through the user balancing on the balancing board.
11. The balancing board as claimed in claim 1, wherein the one or more sensors of the second set of sensors comprises one or more of: an accelerometer, a gyroscope, a microphone, a pressure sensor, a force sensor, a camera, a depth sensor for gesture recognition, a biometric sensor, a proximity sensor.
12. The balancing board as claimed in claim 1, wherein the first surface is substantially planar in form.
13. The balancing board as claimed in claim 1, wherein the second surface of one or more outwardly curved forms is defined, at least in part, in profile by a volume of gas under pressure, wherein the volume of gas is inflated or deflated in operation based upon which mode of operation for the balancing board is activated by the processor, wherein the one or more actuators are operable to inflate or deflate the volume of gas to modify orientation and movement of the balancing board.
14. The balancing board as claimed in claim 1, wherein the one or more outwardly curved forms on the second surface are solid, wherein the one or more actuators are operable to selectively retract or extend the one or more curved forms to modify orientation and movement of the balancing board.
15. The balancing board as claimed in claim 1, wherein the first surface is operable to rotate independently about a substantially central axis of the balancing board, the first surface and the balancing board having the central axis common thereto, wherein the one or more actuators are operable to rotate the first surface.
16. The balancing board as claimed in claim 1, wherein the balancing board is operable to change balancing board levels in response to the user using a mobile device, wherein the mobile device is operable to communicate with the processor, the mobile device comprising a software to control the balancing board.
17. The balancing board as claimed in claim 1, wherein the balancing board is operable to change its balancing board level in response to one or more of gesture and vocal commands from the user, wherein the first or the second set of sensors is operable to sense and communicate one or more of gesture and vocal commands to the processor.
18. The balancing board as claimed in claim 1, wherein said balancing board is operable to communicate with an electronic device for configuring a balancing board training program for the user based on a performance analysis of the user, wherein the training program comprises a plurality of combinations of balancing board levels, therein the electronic device is operable to communicate the training program to the processor.
19. The balancing board as claimed in claim 1, wherein the balancing board is operable to be activated to present a lighting pattern on the first surface to facilitate training of the user, wherein the lighting pattern comprises lighting one or more portions of the first surface, the user stepping on the lighted one or more portions of the first surface for training.