Claims
- 1. A display comprising at least one pixel, said pixel comprising:
a first transistor having a gate, a source and a drain, where said gate is for coupling to a first select line; a capacitor having a first and second terminals, where said drain of said first transistor is coupled to said first terminal of said capacitor; a second transistor having a gate, a source and a drain, where said drain of said first transistor is coupled to said drain of said second transistor, where said gate of said second transistor is for coupling to an autozero line; a third transistor having a gate, a source and a drain, where said source of said third transistor is coupled to said drain of said second transistor, where said gate of said third transistor is for coupling to a second select line; a fourth transistor having a gate, a source and a drain, where said drain of said fourth transistor is coupled to said source of said second transistor, where said gate of said fourth transistor is coupled to said source of said first transistor; a fifth transistor having a gate, a source and a drain, where said drain of said fifth transistor is coupled to said drain of said third transistor, where said gate of said fifth transistor is coupled to said source of said first transistor; and a light element having two terminals, where said source of said fourth transistor and said source of said fifth transistor are coupled to one of said terminal of said light element.
- 2. The display of claim 1, wherein said light element is an organic light emitting diode (OLED).
- 3. The display of claim 1, wherein said transistors are thin film transistors constructed from amorphous-silicon.
- 4. The display of claim 1, wherein said second select line is an autozero line from a previous row.
- 5. A display comprising at least one pixel, said pixel comprising:
a first transistor having a gate, a source and a drain, where said gate is for coupling to a select line; a capacitor having a first and second terminals, where said drain of said first transistor is coupled to said first terminal of said capacitor; a second transistor having a gate, a source and a drain, where said drain of said first transistor is coupled to said drain of said second transistor, where said gate of said second transistor is for coupling to an autozero line; a diode having a first and second terminals, where said source of said second transistor is coupled to said first terminal of said diode, where said second terminal of said diode is for coupling to an illuminate line; a third transistor having a gate, a source and a drain, where said drain of said third transistor is coupled to said first terminal of said diode, where said gate of said third transistor is coupled to said source of said first transistor; and a light element having two terminals, where said source of said third transistor is coupled to one of said terminal of said light element.
- 6. The display of claim 5, wherein said diode is a Schottky diode.
- 7. A display comprising at least one pixel, said pixel comprising:
a first transistor having a gate, a source and a drain, where said gate is for coupling to a first select line; a capacitor having a first and second terminals, where said drain of said first transistor is coupled to said first terminal of said capacitor; a second transistor having a gate, a source and a drain, where said source of said first transistor is coupled to said source of said second transistor, where said gate of said second transistor is for coupling to an autozero line; a third transistor having a gate, a source and a drain, where said source of said third transistor is coupled to said drain of said second transistor, where said gate of said third transistor is for coupling to a second select line; a fourth transistor having a gate, a source and a drain, where said drain of said fourth transistor is coupled to said source of said third transistor, where said gate of said fourth transistor is coupled to said source of said first transistor; a fifth transistor having a gate, a source and a drain, where said drain of said fifth transistor is coupled to said drain of said third transistor, where said gate of said fifth transistor is coupled to said source of said first transistor; and a light element having two terminals, where said source of said fourth transistor and said source of said fifth transistor are coupled to one of said terminal of said light element.
- 8. The display of claim 7, wherein said light element is an organic light emitting diode (OLED).
- 9. The display of claim 7, wherein said second select line is an autozero line from a previous row.
- 10. A display comprising:
at least one autozeroing pixel structure; an autozero line, coupled to said autozeroing pixel structure, for allowing said autozeroing pixel structure to perform autozeroing; and a second line, coupled to said autozeroing pixel structure, for carrying a voltage to said autozeroing pixel structure that permits a range of autozero voltages to be extended.
- 11. A method of illuminating a display having at least one pixel, where said pixel contains a circuit for controlling application of energy to a light element, said method comprising the steps of:
(a) autozeroing the pixel; (b) loading data onto said pixel via a data line; and (c) illuminating said light element in accordance with said stored data.
- 12. The method of claim 11, further comprising the step of:
(a′) precharging said pixel prior to said autozeroing step (a).
- 13. The method of claim 11, wherein said autozeroing step (a) comprises the step of applying a reference black level.
- 14. A method of illuminating a display having at least one pixel, said method comprising the steps of:
(a) measuring a pixel parameter of said pixel; (b) adjusting an input pixel data in accordance with said measured pixel parameter; and (c) illuminating said pixel in accordance with said adjusted input pixel data.
- 15. The method of claim 14, wherein said measuring step (a) measures externally a current drawn by said pixel.
- 16. The method of claim 15, wherein said adjusting step (b) adjusts said pixel data by using said measured pixel parameter to determine a voltage offset (Voffset) parameter.
- 17. The method of claim 16, wherein said adjusting step (b) further adjusts said pixel data by using said measured pixel parameter to determine a gain factor (C) parameter.
- 18. A system comprising:
a display controller; and a display, coupled to said display controller, where said display comprises a plurality of pixels, where each pixel comprises: a first transistor having a gate, a source and a drain, where said gate is for coupling to a first select line; a capacitor having a first and second terminals, where said drain of said first transistor is coupled to said first terminal of said capacitor; a second transistor having a gate, a source and a drain, where said source of said first transistor is coupled to said source of said second transistor, where said gate of said second transistor is for coupling to an autozero line; a third transistor having a gate, a source and a drain, where said source of said third transistor is coupled to said drain of said second transistor, where said gate of said third transistor is for coupling to a second select line; a fourth transistor having a gate, a source and a drain, where said drain of said fourth transistor is coupled to said source of said third transistor, where said gate of said fourth transistor is coupled to said source of said first transistor; a fifth transistor having a gate, a source and a drain, where said drain of said fifth transistor is coupled to said drain of said third transistor, where said gate of said fifth transistor is coupled to said source of said first transistor; and a light element having two terminals, where said source of said fourth transistor and said source of said fifth transistor are coupled to one of said terminal of said light element.
- 19. A system comprising:
a display controller having a measurement module for measuring a pixel parameter of a pixel and a storage for storing said measured pixel parameter; and a display, coupled to said display controller, for displaying an input pixel data that is adjusted in accordance with said stored pixel parameter.
- 20. The system of claim 19, wherein said measurement module comprises a current sensing circuit for measuring a current drawn by said pixel.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/060,386 filed Sep. 29, 1997, and U.S. Provisional Application No. 60/060,387 filed Sep. 29, 1997, which are herein incorporated by reference.
[0002] The invention relates to an active matrix light emitting diode pixel structure. More particularly, the invention relates to a pixel structure that improves brightness uniformity by reducing current nonuniformities in a light-emitting diode of the pixel structure and method of operating said active matrix light emitting diode pixel structure.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60060386 |
Sep 1997 |
US |
|
60060387 |
Sep 1997 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09161862 |
Sep 1998 |
US |
Child |
09793933 |
Feb 2001 |
US |