Claims
- 1. A sensor for measuring the temperature of a surface of an object, comprising:
a cap having an end wall of thermally conducting material and shaped to conform to a shape of the object surface to be measured; a surface on an inside of the end wall of the cap that emits electromagnetic radiation having a detectable optical characteristic that is functionally dependent on the temperature of the end wall; a light waveguide disposed generally orthogonal to the cap and in optical communication therewith; and a resilient member connected to the cap in a manner to urge the cap toward the surface of the object in a manner allowing a limited degree of directional freedom with respect to the waveguide, thereby causing the cap outside surface to firmly engage the object surface when positioned in contact therewith.
- 2. The sensor of claim 1 further comprising a light shield surrounding the waveguide.
- 3. The sensor of claim 2 further comprising a seal core attached to the light shield, the seal core being configured to allow the waveguide to pass therethrough;
- 4. The sensor of claim 3 further comprising an optical connector in optical communication with the optical waveguide and configured to transmit the electromagnetic radiation from the waveguide.
- 5. The sensor of claim 4 being configured to measure the temperature of a process selected from the group consisting of:
physical vapor deposition; dielectric etching; optical coating of glass substrates; chemical vapor deposition; metal organic vapor deposition; low pressure chemical vapor deposition; and atomic layer deposition.
- 6. The sensor of claim 1 wherein the electromagnetic radiation emitting surface includes a surface of a layer of luminescent material attached to an inside of the cap.
- 7. The sensor of claim 1 wherein the electromagnetic radiation emitting surface includes a surface of known emissivity that emits radiation within an infrared range.
- 8. The sensor of claim 1 wherein the end wall has a rounded edge to facilitate thermal contact with the object surface.
- 9. A sensor for measuring the temperature of an object, the sensor comprising:
a thermally conducting contact having a surface that emits electromagnetic radiation with a detectable optical characteristic that is functionally dependent on the temperature of the contact; a resilient member attached to the contact and configured to extend the contact toward the object; a first light waveguide attached to the contact and configured to transmit the electromagnetic radiation from the contact; a guide having a bore through which the first waveguide is insertable into, such that when the contact is moved, the first waveguide is movable within the bore; and a second light waveguide fixedly attached to the guide, the second light waveguide positioned to form a variable gap between an end of the first waveguide and an end of the second waveguide such that electromagnetic energy from the first waveguide traverses the gap and can be transmitted by the second waveguide.
- 10. The sensor of claim 9 further comprising a shield attached to the guide and surrounding the resilient member and the first waveguide.
- 11. The sensor of claim 9 further comprising an extension attached to the guide and surrounding the second waveguide.
- 12. The sensor of claim 11 further comprising a base attached to the extension for attaching the temperature sensor to a mount.
- 13. The sensor of claim 12 further comprising a keeper for securing the base to the mount.
- 14. The sensor of claim 12 further comprising a ferrule in optical communication with the second waveguide and attached to the base, the ferrule being configured to transmit the optical radiation emitted from the second waveguide.
- 15. The sensor of claim 9 being configured to measure the temperature of a process selected from the group consisting of:
physical vapor deposition; dielectric etching; optical coating of glass substrates; chemical vapor deposition; metal organic vapor deposition; low pressure chemical vapor deposition; and atomic layer deposition.
- 16. The sensor of claim 9 wherein the electromagnetic radiation emitting surface includes a surface of a layer of luminescent material attached to an inside of the cap.
- 17. The sensor of claim 9 wherein the electromagnetic radiation emitting surface includes a surface of known emissivity that emits radiation within an infrared range.
- 18. The sensor of claim 9 wherein the contact has an end wall with a rounded edge to facilitate contact with the surface of the object.
- 19. A sensor for measuring the temperature of an object, the sensor comprising:
a thermally conducting contact having a surface that emits electromagnetic radiation with a detectable optical characteristic that is functionally dependent on the temperature of the contact; a tip attached to the contact, the tip having an barrel section and a mating section; a shield having an opening with an annular edge formed in an end thereof, the opening being configured such that the barrel portion passes therethrough and the annular edge being shaped complementary to the mating section of the tip; a resilient member attached to the contact and configured to extend the barrel portion through the opening and extend the contact toward the object; and a light waveguide disposed within the tip and configured to transmit the electromagnetic radiation emitted from the surface of the contact; wherein the opening and the ledge allow a limited degree of directional freedom of the tip to thereby provide engagement between the contact and the object.
- 20. The sensor of claim 19 further comprising a fiber guide configured to secure the waveguide within the shield.
- 21. The sensor of claim 19 being configured to measure the temperature of a process selected from the group consisting of:
physical vapor deposition; dielectric etching; optical coating of glass substrates; chemical vapor deposition; metal organic vapor deposition; low pressure chemical vapor deposition; and atomic layer deposition.
- 22. The sensor of claim 19 wherein the electromagnetic radiation emitting surface includes a surface of a layer of luminescent material attached to an inside of the cap.
- 23. The sensor of claim 19 wherein the electromagnetic radiation emitting surface includes a surface of known emissivity that emits radiation within an infrared range.
- 24. The sensor of claim 19 wherein the contact has an end wall with a rounded edge to facilitate contact with the surface of the object.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of application Ser. No. 10/452,551, filed May 30, 2003, which is a continuation of U.S. Pat. No. 6,572,265 filed Apr. 20, 2001, the contents of each are incorporated by reference herein.
Continuations (1)
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Number |
Date |
Country |
Parent |
09839857 |
Apr 2001 |
US |
Child |
10452551 |
May 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10452551 |
May 2003 |
US |
Child |
10839876 |
May 2004 |
US |