Claims
- 1. A rearview mirror system for a vehicle, said rearview mirror system comprising:
an electro-optic reflective element; an ambient light sensor that is operable to sense ambient light; a glare light sensor that is operable to sense glare-producing light; and a circuit that is responsive to said ambient and glare light sensors and which establishes a reflectance level of said reflective element, said circuit comprising a sensor-responsive device and a controller, said sensor-responsive device producing an output that is a function of light sensed by said glare and ambient light sensors, said controller connecting one of said glare and ambient light sensors at a time with said sensor-responsive device to establish glare and ambient light levels and thereby the reflectance level of said reflective element.
- 2. The rearview mirror system of claim 1 wherein said sensor-responsive device comprises a charge accumulation device and said controller determines the reflectance level of said reflective element by measuring time for an output of said charge accumulation device to reach a particular level.
- 3. The rearview mirror system of claim 1 wherein said controller alternates connecting said glare and ambient light sensors with said sensor-responsive device.
- 4. The rearview mirror system of claim 3 wherein said sensor-responsive device comprises a charge accumulation device and wherein said controller discharges said charge accumulation device between connecting said glare and ambient light sensors with said charge accumulation device.
- 5. The rearview mirror system of claim 1 wherein said sensor-responsive device comprises at least one capacitor.
- 6. The rearview mirror system of claim 5 wherein said at least one capacitor comprises a plurality of capacitors and wherein said control selectively connects said capacitors with said circuit.
- 7. The rearview mirror system of claim 1 wherein said circuit includes a compensation function operable to adapt said circuit to magnitude changes in light levels sensed by said glare and ambient light levels.
- 8. The rearview mirror system of claim 7 wherein said compensation function comprises a plurality of sensor-responsive devices and said controller selectively connects said sensor-responsive devices with said circuit.
- 9. The rearview mirror system of claim 7 wherein said compensation function comprises a plurality of voltage reference levels and said controller selectively compares an output of said sensor-responsive device with one of said voltage references.
- 10. The rearview mirror system of claim 1 wherein said electro-optic reflective element comprises an electrochromic reflective element.
- 11. The rearview mirror system of claim 1 wherein said ambient light sensor comprises a generally forward-facing light sensor.
- 12. The rearview mirror system of claim 1 wherein said glare light sensor comprises a generally rearward-facing light sensor.
- 13. The rearview mirror system of claim 12 wherein said ambient light sensor comprises another generally rearward-facing light sensor.
- 14. The rearview mirror system of claim 13 wherein said rearward-facing light sensor is aimed along a generally horizontal axis and said another generally rearward-facing light sensor is aimed along another axis that deviates from said horizontal axis.
- 15. The rearview mirror system of claim 14 wherein said electro-optic reflective element comprises an exterior mirror reflective element.
- 16. The rearview mirror system of claim 1 wherein said glare and ambient light sensors comprise semiconductor devices.
- 17. The rearview mirror system of claim 1 wherein said glare and ambient light sensors are chosen from one of photo-transistors and photo-diodes.
- 18. The rearview mirror system of claim 1 wherein said circuit and at least one of said glare and ambient light sensors comprise an application specific integrated circuit.
- 19. The rearview mirror system of claim 18 wherein another of said glare and ambient light sensors comprise another application specific integrated circuit.
- 20. The rearview mirror system of claim 1 wherein said circuit comprises a drive function which produces a drive signal which is applied to said reflective element, said drive function comprising a switching device, said controller operating said switching device at a particular duty cycle to establish the reflectance level of said reflective element.
- 21. The rearview mirror system of claim 1 including temperature compensation for compensating said reflectance level for temperature variation of at least one of said glare and ambient light sensors.
- 22. The rearview mirror system of claim 21 wherein said temperature compensation comprises at least one chosen from a reference sensor that is not exposed to light and a temperature sensor.
- 23. A rearview mirror system for a vehicle, said rearview mirror system comprising:
an electro-optic reflective element; an ambient light sensor that is operable to sense ambient light; a glare light sensor that is operable to sense glare-producing light; and a circuit that is responsive to said ambient and glare light sensors and which produces an output that establishes a reflectance level of said reflective element, said circuit comprising a charge accumulation device, a comparison function and a controller, said comparison function comparing an output of said charge accumulation device with a reference, said controller connecting one of said glare and ambient light sensors at a time with said charge accumulation device, wherein said controller establishes glare and ambient light levels and thereby the reflectance level of said reflective element as a function of time for said output of said accumulation device to reach said reference.
- 24. The rearview mirror system of claim 23 wherein said controller alternates connecting said glare and ambient light sensors with said charge accumulation device.
- 25. The rearview mirror system of claim 24 wherein said controller discharges said charge accumulation device between connecting said glare and ambient light sensors with said charge accumulation device.
- 26. The rearview mirror system of claim 23 wherein said charge accumulation device comprises at least one capacitor.
- 27. The rearview mirror system of claim 23 wherein said circuit includes a compensation function operable to adapt said circuit to magnitude changes in light levels sensed by said glare and ambient light levels.
- 28. The rearview mirror system of claim 27 wherein said at least one capacitor comprises a plurality of capacitors and wherein said compensation function comprises said controller selectively connecting said capacitors with said circuit.
- 29. The rearview mirror system of claim 27 wherein said compensation function comprises a plurality of charge accumulation devices and said controller selectively connecting said charge accumulation devices with said circuit.
- 30. The rearview mirror system of claim 27 wherein said compensation function comprises a plurality of voltage reference levels and said controller selectively compares an output of said charge accumulation device with one of said voltage references.
- 31. The rearview mirror system of claim 23 wherein said electro-optic reflective element comprises an electrochromic reflective element.
- 32. The rearview mirror system of claim 23 wherein said ambient light sensor comprises a generally forward-facing light sensor.
- 33. The rearview mirror system of claim 23 wherein said glare light sensor comprises a generally rearward-facing light sensor.
- 34. The rearview mirror system of claim 23 wherein said ambient light sensor comprises another generally rearward-facing light sensor.
- 35. The rearview mirror system of claim 34 wherein said rearward-facing light sensor is aimed along a generally horizontal axis and said another generally rearward-facing light sensor is aimed along another axis that deviates from said horizontal axis.
- 36. The rearview mirror system of claim 35 wherein said electro-optic reflective element comprises an exterior mirror reflective element.
- 37. The rearview mirror system of claim 23 wherein said glare and ambient light sensors comprise semiconductor devices.
- 38. The rearview mirror system of claim 23 wherein said glare and ambient light sensors are chosen from one of photo-transistors and photo-diodes.
- 39. The rearview mirror system of claim 23 wherein said circuit and at least one of said glare and ambient light sensors comprise an application specific integrated circuit.
- 40. The rearview mirror system of claim 39 wherein another of said glare and ambient light sensors comprise another application specific integrated circuit.
- 41. The rearview mirror system of claim 23 wherein said circuit comprises a drive function which produces a drive signal which is applied to said reflective element, said drive function comprising a switching device, said controller operating said switching device at a particular duty cycle to establish the reflectance level of said reflective element.
- 42. The rearview mirror system of claim 23 including a temperature compensation function for compensating said reflectance level for temperature variation of at least one of said glare and ambient light sensors.
- 43. The rearview mirror system of claim 42 wherein said temperature compensation comprises at least one chosen from a reference sensor that is not exposed to light and a temperature sensor.
- 44. A rearview mirror system for a vehicle, said rearview mirror system comprising:
an interior rearview mirror assembly including an interior electro-optic reflective element; at least one exterior rearview mirror assembly including an exterior electro-optic reflective element; an ambient light sensor that is operable to sense ambient light; a glare light sensor that is operable to sense glare-producing light; and a circuit that is responsive to said ambient and glare light sensors and which establishes reflectance levels of said interior reflective element and said exterior reflective element, said circuit comprising a sensor-responsive device and a controller, said sensor-responsive device producing at least one output that is a function of light sensed by said glare and ambient light sensors, said controller connecting one of said glare and ambient light sensors at a time with said sensor-responsive device to establish glare and ambient light levels and thereby the reflectance levels of said interior reflective element and said exterior reflective element.
- 45. The rearview mirror system of claim 44 wherein said sensor-responsive device comprises a charge accumulation device and said controller determines the reflectance levels of said interior and exterior reflective elements by measuring time for an output of said charge accumulation device to reach a particular level.
- 46. The rearview mirror system of claim 44 wherein said controller alternates connecting said glare and ambient light sensors with said sensor-responsive device.
- 47. The rearview mirror system of claim 46 wherein said sensor-responsive device comprises a charge accumulation device and wherein said controller discharges said charge accumulation device between connecting said glare and ambient light sensors with said charge accumulation device.
- 48. The rearview mirror system of claim 44 wherein said sensor-responsive device comprises at least one capacitor.
- 49. The rearview mirror system of claim 48 wherein said at least one capacitor comprises a plurality of capacitors and wherein said control selectively connects said capacitors with said circuit.
- 50. The rearview mirror system of claim 44 wherein said circuit includes a compensation function operable to adapt said circuit to magnitude changes in light levels sensed by said glare and ambient light levels.
- 51. The rearview mirror system of claim 50 wherein said compensation function comprises a plurality of sensor-responsive devices and said controller selectively connects said sensor-responsive devices with said circuit.
- 52. The rearview mirror system of claim 50 wherein said compensation function comprises a plurality of voltage reference levels and said controller selectively compares an output of said sensor-responsive device with one of said voltage references.
- 53. The rearview mirror system of claim 44 wherein said electro-optic reflective element comprises an electrochromic reflective element.
- 54. The rearview mirror system of claim 44 wherein said ambient light sensor comprises a generally forward-facing light sensor.
- 55. The rearview mirror system of claim 44 wherein said glare light sensor comprises a generally rearward-facing light sensor.
- 56. The rearview mirror system of claim 55 wherein said ambient light sensor comprises another generally rearward-facing light sensor.
- 57. The rearview mirror system of claim 56 wherein said rearward-facing light sensor is aimed along a generally horizontal axis and said another generally rearward-facing light sensor is aimed along another axis that deviates from said horizontal axis.
- 58. The rearview mirror system of claim 57 wherein said glare and ambient light sensors are positioned at said at least one exterior rearview mirror assembly.
- 59. The rearview mirror system of claim 44 wherein said glare and ambient light sensors comprise semiconductor devices.
- 60. The rearview mirror system of claim 44 wherein said glare and ambient light sensors are chosen from one of photo-transistors and photo-diodes.
- 61. The rearview mirror system of claim 44 wherein said circuit and at least one of said glare and ambient light sensors comprise an application specific integrated circuit.
- 62. The rearview mirror system of claim 61 wherein another of said glare and ambient light sensors comprise another application specific integrated circuit.
- 63. The rearview mirror system of claim 44 wherein said circuit comprises a drive function which produces a drive signal which is applied to said interior reflective element and another drive signal which is applied to said exterior reflective element, said drive function comprising at least one switching device, said controller operating said at least one switching device at a particular duty cycle to establish the reflectance level of said interior and exterior reflective elements.
- 64. The rearview mirror system of claim 44 including temperature compensation for compensating said reflectance level for temperature variation of at least one of said glare and ambient light sensors.
- 65. The rearview mirror system of claim 64 wherein said temperature compensation comprises at least one chosen from a reference sensor that is not exposed to light and a temperature sensor.
- 66. The rearview mirror system of claim 44 wherein at least one of said reflectance level of said interior reflective element and said reflectance level of said exterior reflective element are communicated over a vehicle communication bus.
- 67. The rearview mirror system of claim 44 wherein said at least one exterior rearview mirror assembly comprises a first exterior rearview mirror assembly and a second exterior rearview mirror assembly, and wherein said exterior reflective element comprises a first exterior reflective element in said first exterior rearview mirror assembly and a second exterior reflective element in said second exterior rearview mirror assembly and wherein said circuit establishes a reflectance level of said first and second exterior rearview mirror assemblies.
- 68. The rearview mirror system of claim 67 wherein said first exterior mirror assembly comprises a driver side exterior mirror assembly and said second exterior mirror assembly comprises a passenger side exterior mirror assembly.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority of U.S. provisional applications, Serial No. 60/377,561, filed May 3, 2002 by Schofield for CONTROL OF DISPLAY THROUGH MIRRORED SURFACE (Attorney Docket DON01 P-976); and Ser. No. 60/426,227, filed Nov. 14, 2002 by Drummond et al. for VEHICLE REARVIEW MIRROR SYSTEM WITH SEQUENTIAL INTEGRATION (Attorney Docket DON01 P-1024), which are hereby incorporated herein by reference in their entireties.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60377561 |
May 2002 |
US |
|
60426227 |
Nov 2002 |
US |