Claims
- 1. A photocuring light assembly having calibration circuitry which comprises:a curing lamp; an optical light guide for providing light energy from said curing lamp; a control unit generating digital control voltage converted to analogue control voltage for providing constant current to said curing lamp; means for inputting irradiation data for curing a photosensitive composition; means for displaying said irradiation data; means for controlling light energy output to said control unit, said means for controlling light energy output including means for measuring light energy output from said optical light guide, said means for controlling light energy output programmed to incrementally increase light energy output to said curing lamp to a maximum light output while concomitantly recording and storing light energy levels, said means for controlling light energy output programmed to incrementally decrease light energy output from said maximum light output while concomitantly recording and storing light energy levels, whereby recorded and stored levels constitute light energy levels for subsequent use of said photocuring light assembly for photocuring a photosensitive composition.
- 2. The photo curing light assembly as defined in claim 1 wherein incremental increase in light energy output levels begin at about a level of 50% of said maximum light output with incremental increases at increments of 5% to said maximum light output.
- 3. The photocuring light assembly as defined in claim 2 wherein incremental decrease in light energy levels begin at said maximum light output with increments of 5% to said 50% of said maximum light output.
- 4. The photocuring light assembly as defined in claim 1 or 3 wherein said means for measuring light energy output from said optical light guide includes a photodiode having a diffuser glass to provide a uniform light beam.
- 5. The photocuring light assembly as defined in claim 1 or 3 wherein said means for controlling light energy output is activated upon reaching said maximum light output to said curing lamp and thereby initiates programming thereof to provide said recorded and stored levels.
- 6. The photocuring light assembly as defined in claim 1 or 3 wherein said means for controlling light energy output adjusts said means for inputting irradiation data to compensate for decrease in intensity of said curing lamp during useful life to achieve curing of said photosensitive composition.
- 7. The photocuring light assembly as defined in claim 1 or 3 wherein said means for controlling light energy output includes a program to provide different light output levels of said curing lamp during photocuring of said photosensitive composition.
- 8. The photocuring light assembly as defined in claim 7 wherein said program provides incremental increase in said light output levels of said curing lamp during photocuring of said photosensitive composition.
- 9. The photocuring light assembly as defined in claim 7 wherein said program provides incremental decrease in said light output levels of said curing lamp during photocuring of said photosensitive composition.
RELATED APPLICATIONS
This application claims the benefit of provisional application 60/177,367 filed Jan. 24, 2000.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
6008264 |
Ostler et al. |
Dec 1999 |
A |
6103203 |
Fischer |
Aug 2000 |
A |
6243163 |
Wakabayashi et al. |
Jun 2001 |
B1 |
6309216 |
Parker |
Oct 2001 |
B1 |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/177367 |
Jan 2000 |
US |