Claims
- 1. An optical spectrum sensitive instrument comprising:
a plane grating having an aperture therethrough at a predetermined location; a parabolic reflector positioned with its axis passing at least near said aperture; a light conductor assembly injecting light of multiwavelength spectral content through said aperture toward said reflector for reflection toward said plane grating whereby the spectral content of said injected light is spread and redirected toward said parabolic reflector for reflection back toward said aperture with a spectral portion returned back through said aperture and into said light conductor assembly; a positioner coupled to said plane grating and controlling in response to an input an angle of said plane grating over a range about an axis that maintains said aperture positioned to pass said injected and returning light.
- 2. The instrument of claim 1 further including:
a detector for a predetermined spectral content in the injected light associated with a predetermined controlled position of said plane grating to thereby calibrate said spectral instrument by associating said predetermined spectral content with a position of said plane grating.
- 3. The instrument of claim 1 wherein said plane grating has a first order mode at 1500 nm and a second order mode at 750 nm.
- 4. The instrument of claim 3 further including a detector for Argon radiation spectra reflected by said plane grating.
- 5. The instrument of claim 1 further including a continuously operative calibration assembly based on reference material spectra.
- 6. The instrument of claim 1 wherein said parabolic reflector is positioned with the plane grating aperture at least near the focus point of said parabolic reflector whereby radiation injected through said aperture is returned by reflection by said parabolic reflector to said grating as substantially collimated light and said plane grating redirects said collimated light back toward said parabolic reflector as substantially collimated light at angles corresponding to wavelength of said light so that collimated light of a unique wavelength is reflected by said parabolic reflector back toward said aperture.
- 7. The instrument of claim 1 further including a multichannel optical waveguide having a termination for the injection and reception of light proximate to said aperture.
- 8. The instrument of claim 1 further including a housing for said grating and parabolic reflector, with said housing, reflector and grating of low coefficient of thermal expansion material.
- 9. The instrument of claim 1 further including a sealed fiber optic assembly having a termination approximate said aperture.
- 10. The instrument of claim 1 further including plurality of calibration radiation interfaces adjacent a central location of said aperture for emitting radiation to said parabolic reflector and receiving radiation from said parabolic reflector whereby an angle of said plane grating can be calibrated therefrom.
- 11. The instrument of claim 1 further comprising a controller for the positioner and responsive to an input for positioning said plane grating at an angle to redirect a predetermined spectral range injected through said aperture back to said aperture.
- 12. The instrument of claim 11 wherein said injected light is multi-channel telecommunications signals with telecommunications channels separated by wavelength and said controller operates in response to said signal to select a channel for return to said aperture.
- 13. An optical spectrum sensitive instrument comprising:
a grating having an aperture therethrough at a predetermined location; a focussing reflector positioned with its axis passing at least near said aperture; said aperture being adapted for a light conductor assembly to inject light of multiwavelength spectral content through said aperture toward said reflector for reflection toward said plane grating whereby the spectral content of said injected light is spread and redirected toward said reflector for reflection back toward said aperture with a selected spectral portion returned back through said aperture and into said light conductor assembly; a positioner coupled to said grating and controlling in response to an input an angle of said grating over a range about an axis that maintains said hole positioned to pass said injected and returning light.
- 14. The instrument of claim 13 further including:
a detector for a predetermined spectral content in the injected light associated with a predetermined controlled position of said grating to thereby calibrate said spectral instrument by associating said predetermined spectral content with a position of said plane grating.
- 15. The instrument of claim 16 wherein said grating has a first order mode at 1500 nm and a second order mode at 750 nm.
- 16. The instrument of claim 15 further including a detector for Argon radiation spectra reflected by said grating.
- 17. The instrument of claim 16 further including a continuously operative calibration assembly based on a selected spectra.
- 18. The instrument of claim 13 wherein said reflector is positioned with the grating aperture at least near a focus point of said reflector whereby radiation injected through said aperture is returned by reflection by said reflector to said grating as substantially collimated light and said plane grating redirects said collimated light back toward said reflector as substantially collimated light at angles corresponding to wavelength of said light so that collimated light of a unique wavelength is reflected by said reflector back toward said aperture.
- 19. The instrument of claim 13 further including a multichannel optical waveguide having a termination for the injection and reception of light proximate to said aperture.
- 20. The instrument of claim 13 further including a housing for said grating and reflector, with said housing, reflector and grating being of low coefficient of thermal expansion material.
- 21. The instrument of claim 13 further including a sealed fiber optic assembly having a termination approximate said aperture.
- 22. The instrument of claim 13 further including a plurality of calibration radiation interfaces adjacent a central location of said aperture for emitting radiation to said reflector and receiving radiation from said reflector whereby an angle of said grating can be calibrated therefrom.
- 23. The instrument of claim 13 further comprising a controller for the positioner and responsive to an input for positioning said grating at an angle to redirect a predetermined spectral range injected through said aperture back to said aperture.
- 24. The instrument of claim 23 wherein said injected light is multi-channel telecommunications signals with telecommunications channels separated by wavelength and said controller operates in response to said signal to select a channel for return to said aperture.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(e) to provisional patent application serial No. 60/179,519 filed Feb. 1, 2000; the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60179519 |
Feb 2000 |
US |
Continuations (1)
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Number |
Date |
Country |
| Parent |
PCT/US01/40004 |
Feb 2001 |
US |
| Child |
10011236 |
Oct 2001 |
US |