Claims
- 1. A projector performing a keystone correction of a projected image during a tilted projection, comprising:
a trigger determination module configured to determine a predetermined trigger state included in normal procedure to project an image except for an instruction to perform a keystone correction; an elevation detecting module configured to detect an elevation angle of the projector; and a keystone correction module configured to perform a keystone correction based on the elevation angle in response to the trigger state.
- 2. The projector in accordance with claim 1, further comprising:
an operation determination module configured to determine a user operation which is required to project images, the trigger state including the user operation.
- 3. The projector in accordance with claim 2, the user operation including an operation for a power supply.
- 4. The projector in accordance with claim 2, further comprising:
an elevation adjustment mechanism configured to adjust the elevation angle of the projector, the trigger state including an operation of the elevation adjustment mechanism.
- 5. The projector in accordance with claim 1, further comprising:
a light source lamp; an light-on detecting module configured to detect a light-on state of the light source lamp, the trigger state including the light-on state.
- 6. The projector in accordance with claim 1, the trigger state including a variation of the elevation angle of the projector.
- 7. The projector in accordance with claim 6, the trigger state including a state that the elevation angle stops varying.
- 8. The projector in accordance with claim 7, the keystone correction module determining the stop when a varying rate of the elevation angle decreases below a predetermined value after once exceeding over the value.
- 9. A method for correcting keystone distortion of a projected image during a tilted projection of a projector, comprising:
determining a predetermined trigger state included in normal procedure to project an image except for an instruction to perform a keystone correction; detecting an elevation angle of the projector; and performing a keystone correction based on the elevation angle in response to the trigger state.
- 10. The method in accordance with claim 9, further comprising:
determining a user operation which is required to project images, the trigger state including the user operation.
- 11. The method in accordance with claim 10, the user operation including an operation for a power supply.
- 12. The method in accordance with claim 10, further comprising:
the trigger state including an operation of an elevation adjustment mechanism, which is equipped with the projector to adjust the elevation angle.
- 13. The method in accordance with claim 9, further comprising:
detecting a light-on state of a light source lamp of the projector, the trigger state including the light-on state.
- 14. The method in accordance with claim 9, the trigger state including a variation of the elevation angle.
- 15. The method in accordance with claim 14, the trigger state including a state that the elevation angle stops varying.
- 16. The method in accordance with claim 15, the state that the elevation angle stops varying is determined when a varying rate of the elevation angle decreases below a predetermined value after once exceeding over the value.
- 17. A projector, comprising:
an optical unit that modulates a light flux illuminated from a light source according to an image data so as to form an optical image, and performs an extended projection of the optical image; an elevation adjustment mechanism to adjust a tilted state of the optical unit; an adjust-completion-determining-module to determine completion of an operation of the elevation adjustment mechanism; a tilted state measuring module to measure a tilted state of the optical unit in response to the determination of the completion of the operation; and a projection correction module to execute a distortion correction of the optical image according to the measured tilted state.
- 18. The projector in accordance with claim 17, further comprising a correction value calculator to calculate a distortion correction value of the optical image according to the tilted state, the projection correction module executing the correction based on the distortion correction value.
- 19. The projector in accordance with claim 17, further comprising a timer configured to measure an elapsed time from a start of an adjustment by the elevation adjustment mechanism, the projection correction module executing the correction in a case where the elapsed time exceeds a predetermined threshold.
- 20. The projector in accordance with claim 17, the elevation adjustment mechanism is power-driven, and the adjust-completion-determining-module determining the completion of the operation in a case where a power-driving of the elevation adjustment mechanism is stopped.
- 21. The projector in accordance with claim 17, the elevation adjustment mechanism including a variable length stay to stay the projector and an adjust switch to control extending and contracting of the stay, and the adjust-completion-determining-module determining the completion of the operation in a case where the adjust switch is turned off.
- 22. The projector in accordance with claim 17, the elevation adjustment mechanism including a plurality of stay mechanisms to stay the projector, the plurality of stay mechanisms are able to individually extend and contract, and the adjust-completion-determining-module determining the completion of the operation in a case where all operations for the plurality of the stay mechanism are completed.
- 23. The projector in accordance with claim 17, the tilted state measuring module including a sensor, either an angle sensor or a G-sensor, the sensor mounted on a rear half of the projector to the opposite side of a supporting point to tilt the projector.
- 24. A method for controlling a projector, which includes an optical unit that modulates a light flux illuminated from a light source according to image data so as to form an optical image and performs an extended projection of the optical image, and an elevation adjustment mechanism to adjust the tilted state of the optical unit, comprising:
an adjust-completion-determining-step determining a completion of an operation for the elevation adjustment mechanism; a tilted state measuring step measuring a tilted state of the optical unit in response to a determination of the completion of the operation; and a projection correction step executing a distortion correction of the optical image according to a measured tilted state.
- 25. The method in accordance with claim 24, further comprising a correction value calculation step calculating a distortion correction value of the optical image according to the tilted state, the correction is executed based on the distortion correction value in the projection correction step.
- 26. The method in accordance with claim 24, further comprising a time measuring step measuring an elapsed time from the start of an adjustment by the elevation adjustment mechanism, the correction is executed in a case where the elapsed time exceeds a predetermined threshold in the projection correction step.
- 27. The method in accordance with claim 24, the elevation adjustment mechanism is power-driven, and in the adjust-completion-determining-step, the completion of the operation is determined in a case where a power-driving of the elevation adjustment mechanism is stopped.
- 28. The method in accordance with claim 24, the elevation adjustment mechanism including a variable length stay to stay the projector and an adjust switch to control extending and contracting of the stay, and in the adjust-completion-determining-step, the completion of the operation is determined in a case where the adjust switch is turned off.
- 29. The method in accordance with claim 24, the elevation adjustment mechanism including a plurality of stay mechanisms to stay the projector, the plurality of stay mechanisms able to individually extend and contract, and in the adjust-completion-determining step, the completion of the operation is determined in a case where all operations for the plurality of the stay mechanism are completed.
- 30. The method in accordance with claim 24, in the tilted state measuring step, the tilted state is determined by a sensor, either an angle sensor or a G-sensor, the sensor mounted on a rear half of the projector to the opposite side of a supporting point to tilt the projector.
- 31. A computer program to control a projector, the computer program stored in a computer readable recording medium which includes an optical unit that modulates a light flux illuminated from a light source according to an image data so as to form an optical image and performs an extended projection of the optical image, and an elevation adjustment mechanism to adjust a tilted state of the optical unit, comprising:
an adjust-completion-determining-code determining completion of an operation for the elevation adjustment mechanism; a tilted state measuring code measuring the tilted state of the optical unit in response to a determination of the completion of the operation; and a projection correction code executing a distortion correction of the optical image according to the measured tilted state.
- 32. The computer program in accordance with claim 31, further comprising a correction value calculation code calculating a distortion correction value of the optical image according to the tilted state, the projection correction code executing the correction based on the distortion correction value.
- 33. The computer program in accordance with claim 31, further comprising a time measuring code measuring an elapsed time from a start of an adjustment by the elevation adjustment mechanism, the projection correction code executing the correction in a case where the elapsed time exceeds a predetermined threshold.
- 34. The computer program in accordance with claim 31, the elevation adjustment mechanism is power-driven, and the adjust-completion-determining-code determining the completion of the operation in a case where a power-driving of the elevation adjustment mechanism is stopped.
- 35. The computer program in accordance with claim 31, the elevation adjustment mechanism including a variable length stay to stay the projector and an adjust switch to control extending and contracting of the stay, and the adjust-completion-determining-code determining the completion of the operation in a case where the adjust switch is turned off.
- 36. The computer program in accordance with claim 31, the elevation adjustment mechanism including a plurality of stay mechanisms to stay the projector, the plurality of stay mechanisms able to individually extend and contract, and the adjust-completion-determining-code determining the completion of the operation in a case where all operations for the plurality of the stay mechanism are completed.
- 37. The computer program in accordance with claim 31, the tilted state measuring code determining the tilted state by a sensor, either an angle sensor or a G-sensor, the sensor mounted on a rear half of the projector to the opposite side of a supporting point to tilt the projector.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2002-79313 |
Mar 2003 |
JP |
|
2002-180265 |
Jun 2002 |
JP |
|
2003-160374 |
Jun 2003 |
JP |
|
Parent Case Info
[0001] This is a Continuation-In-Part of application Ser. No. 10/386,534 filed Mar. 13, 2003.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10386534 |
Mar 2003 |
US |
Child |
10465879 |
Jun 2003 |
US |