IP Library Granted Patent US 7,215,840
Granted Patent B2
US 7,215,840 · App. 11/388,568 · Granted May 8, 2007

Thermally-controlled fiber optic tuning and isolating device

Assignee: Evans & Sutherland Computer Corporation
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Quick Facts
Patent No.
US 7,215,840
App. No.
11/388,568
Granted
May 8, 2007
Kind
B2
Abstract

A tunable fiber optic component providing environmental isolation, thermal tuning, and mechanical tuning and a method of tuning a fiber optic component using application of substantially simultaneous varying of temperature and mechanical strain is disclosed. A method of using a tunable fiber optic component, for example, a distributed feedback fiber laser, to compensate variations in an optical system, and a method of making a tunable fiber optic component are also disclosed.

Claims (14)

1. A tuning and isolating support device for a tunable fiber optic component comprising:

a) a thermally-conductive, acoustic-damping material defining an enclosure volume and receiving the tunable fiber optic component and configured to minimize environmental vibration effects on the fiber optic component;

b) a thermal control device in thermal contact with the thermally-conductive acoustic-damping material, wherein the thermal control device varies in temperature in response to an applied electrical signal and controls a temperature of the tunable fiber optic component so that the tunable fiber optic component optical frequency is tuned in response to the applied electrical signal; and

c) a fiber optic tension structure disposed within the enclosure volume to apply tension to the tunable fiber optic component.

2. The tuning and isolating support device of claim 1 , wherein the thermal control device comprises a resistive heater wire embedded within the thermally-conductive, acoustic-damping material.

3. The tuning and isolating support device of claim 1 , wherein the thermal control device is selected from the group consisting of a thermoelectric cooler, a heat pump, and a heat exchanger.

4. The tuning and isolating support device of claim 1 , further comprising the tunable fiber optic component mounted within the enclosure volume.

5. The tuning and isolating support device of claim 1 , further comprising:

d) wherein the fiber optic tensioning structure has at least opposing ends configured to rigidly attach to and along a common longitudinal axis with the tunable fiber optic component and formed of an electrically-active, mechanically-responsive material such that changes in dimension along the longitudinal axis arising from a first applied voltage to the tensioning structure yield corresponding dimensional changes in the tunable fiber optic component to provide tunable adjustment of an optical frequency of the tunable fiber optic component.

6. The tuning and isolating support device of claim 5 , further comprising the tunable fiber optic component longitudinally mounted and rigidly attached to the tensioning structure.

7. The tuning and isolating support device of claim 6 , wherein the tunable fiber optic component is rigidly attached to the tensioning structure with glue.

8. The tuning and isolating support device of claim 6 , wherein the tunable fiber optic component is rigidly attached to the tensioning structure with clamps.

9. The tuning and isolating support device of claim 6 , wherein the tunable fiber optic component is a distributed feedback fiber laser.

10. The tuning and isolating support device of claim 9 , wherein a length of the distributed feedback fiber laser is optimally chosen to provide a particular mechanical natural frequency and optical linewidth.

Assignments (2)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT R/F 036149/0501 Recorded Jun 25, 2024
From: PENSION BENEFIT GUARANTY CORPORATION
To: EVANS & SUTHERLAND COMPUTER CORPORATION; SPITZ, INC.
Reel/Frame 067833/0864 →
SECURITY INTEREST Recorded Jul 22, 2015
From: EVANS & SUTHERLAND COMPUTER CORPORATION; SPITZ, INC.
To: PENSION BENEFIT GUARANTY CORPORATION
Reel/Frame 036149/0501 →
Continuity (4)
Division 1080780800 · Mar 23, 2004
Continuation In Part 1001716200 · Dec 14, 2001
Continuation In Part 1038390900 · Mar 26, 2003
Related Publication 20060165339A1 · Jul 27, 2006