IP Library Granted Patent US 7,260,298
Granted Patent B2
US 7,260,298 · App. 11/096,873 · Granted Aug 21, 2007

Fiber optical illumination system

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Quick Facts
Patent No.
US 7,260,298
App. No.
11/096,873
Granted
Aug 21, 2007
Kind
B2
Abstract

A fiber optical illumination delivery system, which is effective in reducing the effects of source coherence. The system preferably utilizes either a single bundle of optical fibers, or serial bundles of optical fibers. In the single bundle embodiment, the differences in optical lengths between different fibers of the bundle is preferably made to be equal to even less than the coherence length of the source illumination. In the serial bundle embodiment, the fibers in the other bundle are arranged as groups of fibers of the same length, and it is the difference in lengths of these groups which is made equal to, or even more preferably, less than the overall difference in length between the shortest and the longest fibers in the other bundle. Both of these fiber systems enable construction of illumination systems delivering a higher level of illumination, but without greatly affecting the coherence breaking abilities of the system, thus enabling a generally more applicable system to be constructed.

Claims (28)

1. A method of reducing the coherence of light transmitted through a fiber optical bundle, at least part of which light has a characteristic coherence length, comprising the steps of:

providing at least one fiber optical bundle comprising a plurality of optical fibers, at least some of which have differing optical lengths;

determining said differences in optical lengths which provide said fiber optical bundle with optimal coherence breaking properties; and

arranging the lengths of said plurality of optical fibers such that an increase in the light transmitted through said fiber optical bundle is gained and said optimum coherence breaking properties are compromised;

wherein said step of arranging is performed by using differing optical lengths for at least some of said plurality of fibers, at least some of said differences in optical length being less than said characteristic coherence length.

2. A method according to claim 1 and wherein said reducing the coherence of light transmitted through said fiber optical bundle is also attained by the reduction in the differences in light intensity output from different optical fibers of said bundle.

3. An optical system for reducing the coherence of a beam for illumination of an object, comprising:

a source of at least partially coherent illumination, at least part of said illumination having a characteristic coherence length;

a first fiber optics bundle comprising a plurality of optical fibers, at least some of which have differing optical lengths, at least some of said fibers of differing optical length having differences in optical lengths therebetween which are less than said characteristic coherence length; and

at least a second fiber optics bundle disposed serially with said first bundle, comprising a plurality of optical fibers at least some of which have differences in optical lengths therebetween which are at least equal to the sum of all of the optical length differences of said fibers in said first bundle.

4. A method of stretching a pulse of a laser for illuminating an object under inspection, at least part of the light of said pulse having a characteristic coherence length, comprising the steps of:

providing at least a first fiber optical bundle comprising a plurality of optical fibers, at least some of which have differing optical lengths;

arranging the lengths of said plurality of optical fibers such that at least some of said fibers have differences in optical length therebetween which are less than 60% of said coherence length of said pulse illuminating said object under inspection; and

transmitting said pulse along said at least first fiber optical bundle.

5. A method of stretching a pulse of a laser illuminating an object under inspection, at least part of the light of said pulse having a characteristic coherence length, the method comprising the steps of:

providing at least a first fiber optical bundle comprising a plurality of optical fibers, at least some of which have differing optical lengths, wherein said plurality of optical fibers are arranged in a plurality of groups of optical fibers, each group of fibers comprising fibers of essentially the same length, and wherein at least some of said group of fibers have differing optical lengths;

arranging the lengths of said plurality of optical fibers such that at least some of said fibers have differences in optical length therebetween which are less than said coherence length of said pulse illuminating said object under inspection; and

transmitting said pulse along said at least first fiber optical bundle.

6. A method according to claim 5 and wherein each of said groups comprises essentially the same number of fibers.

7. A method according to claim 5 and wherein the number of fibers in each of said groups increases according to the Optical length of said group.

8. A method according to claim 7 and wherein the number of fibers in each group is generally proportional to the length of said group.

9. A method of stretching a pulse of a laser illuminating an object under inspection, at least part of the light of said pulse having a characteristic coherence length, comprising the steps of:

providing at least a first fiber optical bundle comprising a plurality of optical fibers, at least some of which have differing optical lengths;

arranging the lengths of said plurality of optical fibers such that at least some of said fibers have differences in optical length therebetween which are less than said coherence length of said pulse illuminating said object under inspection;

transmitting said pulse along said at least first fiber optical bundle; and

transmitting said pulse along at least a second fiber optics bundle disposed serially with said first bundle, said second fiber optics bundle comprising a plurality of groups of optical fibers, each group of fibers comprising fibers of essentially the same length, and wherein at least some of said group of fibers have differing optical lengths, at least some of said groups of fibers having differences in optical lengths therebetween which are at least equal to the sum of all of the optical length differences of said fibers in said first bundle.

10. A method according to claim 4 , and wherein said plurality of optical fibers are arranged in a plurality of groups of optical fibers, each group of fibers consisting of fibers of essentially the same length, and wherein at least some of said group of fibers have differing optical lengths.

11. A method according to claim 4 , and comprising the additional step of transmitting said pulse along at least a second fiber optics bundle disposed serially with said first bundle, said second fiber optics bundle comprising a plurality of groups of optical fibers, each group of fibers comprising fibers of essentially the same length, and wherein at least some of said group of fibers have differing optical lengths, at least some of said groups of fibers having differences in optical lengths therebetween which are at least equal to the sum of all of the optical length differences of said fibers in said first bundle.

Assignments (2)
SECURITY AGREEMENT Recorded Jun 19, 2008
From: NEGEVTECH LTD.
To: KREOS CAPITAL II LIMITED
Reel/Frame 021109/0971 →
SECURITY AGREEMENT Recorded Jun 19, 2008
From: NEGEVTECH LTD.
To: PLENUS II, L.P.; PLENUS II (D.C.M)
Reel/Frame 021118/0061 →