Claims
- 1. A method of operating an element of a spatial light modulator, said method comprising the steps of:
providing a pixel data signal to said element of said spatial light modulator; providing a reference signal to said element of said spatial light modulator; comparing said pixel data signal and said reference signal as at least one of said pixel data signal and said reference signal change; and operating said element of said spatial light modulator according to the results of said comparing step.
- 2. The method of claim 1, said step of providing said pixel data signal further comprising providing said pixel data signal once each field.
- 3. The method of claim 1, further comprising the step of decaying said pixel data signal during a frame time.
- 4. The method of claim 1, said step of providing a reference signal further comprising providing a changing reference signal.
- 5. The method of claim 1, said step of providing a reference signal further comprising providing a gradually increasing reference signal.
- 6 The method of claim 1, said step of providing a reference signal further comprising providing a gradually decreasing reference signal.
- 7 The method of claim 1, said step of providing a reference signal further comprising providing a gradually increasing then gradually decreasing reference signal.
- 8 The method of claim 1, further comprising the step of selecting a global reset waveform upon a change in an output of said comparing step.
- 9 The method of claim 1, further comprising the step of generating a reset waveform upon a change in an output of said comparing step.
- 10. The method of claim 1, further comprising the step of generating a reset waveform upon a change in an output of said comparing step.
- 11. A micromirror device comprising:
at least two address electrodes; a deflectable mirror element suspended above said at least two address electrodes; a capacitor for storing charge representing an image data signal; a reference voltage input; and a comparator receiving said image data signal and said reference voltage, said comparator for comparing said reference voltage input with said image data signal, and for providing address voltages to said at least two address electrodes to cause a deflection of said deflectable mirror element.
- 12. The micromirror device of claim 11, said micromirror cell further comprising an edge detector to detect a change in the output of said comparator.
- 13. The micromirror device of claim 12, said micromirror cell further comprising a switch for enabling a global reset signal when said edge detector detects a change in the output of said comparator.
- 14. The micromirror device of claim 12, said micromirror cell further comprising a reset generator for outputting a reset signal when said edge detector detects a change in the output of said comparator.
- 15. A micromirror cell comprising:
at least two address electrodes; a deflectable mirror element suspended above said at least two address electrodes; a capacitor for storing charge representing an image data signal; a reference voltage input; and a comparator receiving said image data signal and said reference voltage, said comparator comparing said reference voltage input and said image data signal providing address voltages to said at least two address electrodes to cause a deflection of said deflectable element.
- 16. The micromirror cell of claim 15, further comprising an edge detector to detect a change in the output of said comparator.
- 17. The micromirror cell of claim 16, further comprising a switch for enabling a global reset signal when said edge detector detects a change in the output of said comparator.
- 18. The micromirror cell of claim 16, further comprising a reset generator for outputting a reset signal when said edge detector detects a change in the output of said comparator.
- 19. A display system comprising:
a light source for providing a beam of light along a light path; an array of micromirror cells on said light path, each micromirror cell operable to selectively reflect incident light along a projection path, each said micromirror cell comprising;
at least two address electrodes; a deflectable mirror element suspended above said at least two address electrodes; a capacitor for storing charge representing an image data signal; a reference voltage input; and a comparator receiving said image data signal and said reference voltage, said comparator comparing said reference voltage input and said image data signal providing address voltages to said at least two address electrodes to cause a deflection of said deflectable element; a controller providing said image data signal to said micromirror array; and projection optics on said projection path, said projection optics operable to focus said selectively reflected incident light on an image plane.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The following patents and/or commonly assigned patent applications are hereby incorporated herein by reference:
1Patent No.Filing DateIssue DateTitle5,061,049Sep. 13, 1990Oct. 29, 1991Spatial Light Modulatorand Method5,278,652Mar. 23, 1993Jan. 11, 1994DMD Architecture andTiming for Use in aPulse-Width ModulatedDisplay System5,583,688Dec. 21, 1993Dec. 10, 1996Multi-Level DigitalMicromirror Device
Continuations (1)
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Number |
Date |
Country |
| Parent |
09468980 |
Dec 1999 |
US |
| Child |
10453953 |
Jun 2003 |
US |