Claims
- 1. An electrostatic actuator array and control system therefor, comprising:
an array of electromechanical elements formed in a substrate and regularly arranged along at least a first direction on a first pitch on a surface of said substrate and including electrostatic actuators associated with respective ones of said elements for mechanically controlling said elements; an array of driver circuits regularly arranged on said first pitch in association with respective ones of said actuators and supplying respective analog drive signals to said actuators; and an address decoder receiving a multi-bit address signal and providing separate address enable signals to different ones of said actuators arranged along said first direction; and at least one analog power signal delivered to all of said actuators and having a magnitude varying according to a desired position of a selected one of said actuators.
- 2. The array and control system of claim 1, wherein said arrays of electromechanical elements and driver circuits are additionally arranged in a second direction on a second pitch, thereby forming rows and columns and wherein said address enable signals include row enable signals and column enable signals.
- 3. The array and control system of claim 1, further comprising a hold capacitor associated with each of said actuators connected to a variable gap capacitor of said each electrostatic actuator.
- 4. The array and control system of claim 3, wherein said analog power signal selectively charges and discharges said hold capacitor.
- 5. The array and control system of claim 3, further comprising a multiplexing control system for sequentially charging or discharging all of said hold capacitors.
- 6. The array and control system of claim 1, wherein any one of hold capacitors is charged or discharged by said analog power signal only when enabled by a respective one of said address enable signals.
- 7. The array and control system of claim 1, wherein said each of said electromechanical elements comprises a mirror supported on opposed torsion beams arranged along an axis and tiltable about said axis by a corresponding one of said actuators.
- 8. The array and control system of claim 1, wherein said two arrays are formed in a bonded planar structure.
- 9. The array and control system of claim 8, wherein said decoder is also formed in said bonded planar structure.
- 10. A control system in an electrostatic actuator array,
a first plurality of electromechanical elements formed in a substrate and having respective movable mechanical elements forming part of respective actuator capacitors; a first plurality of hold capacitors coupled to said respective ones of said actuator capacitors; a common source of a selectably variable drive power signal; a first plurality of driver circuits all receiving said drive power signal and including a switching path connected to respective ones of said hold capacitors controlled according to address signals supplied to said driver circuits; and at least one address decoder providing distinctive address signals to said driver circuits.
- 11. The control system of claim 10, further comprising a first plurality of selectable inverters coupling respective ones of said hold capacitors to respective ones of said actuator capacitors.
- 12. The control system of claim 11, wherein said inverters are concurrently controlled by a signal having a 50% duty cycle.
- 13. The control system of claim 11, wherein said first pluralities of hold capacitors drive circuits, and inverters are formed in a same substrate as said first plurality of electromechanical elements.
- 14. The control system of claim 13, wherein said first pluralities of hold capacitors, driver circuits, and inverters are formed in a first two dimensional array on at least one same pitch as said first plurality of electromechanical elements formed in a second two dimensional array.
- 15. The control system of claim 14, wherein first array is formed on two same pitches as said second array.
- 16. The control system of claim 11, wherein said movable mechanical elements include tiltable mirrors.
- 17. The control system of claim 11, said common source of said selectably variable drive power signal comprises a digital to analog converter producing a signal selectively controlling a magnitude of said common source of said selectably variable drive current.
- 18. The control system of claim 11, further comprising a processor providing a correction signal for a selected one of said electrostatic actuators to digital inputs of said digital to analog converter.
- 19. The control system of claim 17, wherein said mechanical elements are tiltable mirrors coupling optical signals from input ports to output ports.
- 20. The control system of claim 19, further comprising:
an optical detection system detecting an intensity of an optical signal on at least one of said output ports; and a processor receiving a signal from said optical detection system indicating said intensity and in response thereto providing a correction signal for a selected one of said electrostatic actuators to digital inputs of said digital to analog converter
RELATED APPLICATION
[0001] This application claims benefit of U.S. Provisional Application Serial No. 60/267,288, filed Feb. 7, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60267288 |
Feb 2001 |
US |