IP Library Granted Patent US 7,050,015
Granted Patent B2
US 7,050,015 · App. 10/638,930 · Granted May 23, 2006

Dish antenna kit including alignment tool and method of use thereof

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Quick Facts
Patent No.
US 7,050,015
App. No.
10/638,930
Granted
May 23, 2006
Kind
B2
Abstract

A dish antenna kit has at least one reflector, one feed horn, and an alignment tool. The alignment tool has a light source and a base. The base has at least one inner cylindrical surface having a diameter slightly exceeding the outer diameter of a rim of the feed horn. The alignment tool base positions the light source axis with respect to the feed horn axis. A method of aligning the feed horn with respect to the reflector includes: placing the alignment tool on the feed horn; activating the light source; rotating the alignment tool so that a light beam advances in an arcuate path on the surface of the reflector; determining from the arcuate path the offset of the feed horn with respect to a focus point on the reflector surface; and, if the offset is not within the predetermined tolerance, adjusting the feed horn attitude.

Claims (61)

1. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said horn rim, wherein said base of said alignment tool fits directly over the rim of said feed horn and bottoms thereon and may be rotated angularly relative to said feed horn and thereafter releasably secured thereto, and

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim.

2. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim, and wherein said base of said alignment tool further includes at least one fastener configured to engage said feed horn when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim.

3. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim,

wherein with respect to said alignment tool base, said inner planar surface is a first inner planar surface, said inner cylindrical surface is a first inner cylindrical surface, and said diameter of said first inner cylindrical surface is a first diameter of said first inner cylindrical surface;

wherein said at least one feed horn includes a second feed horn having a second feed horn axis and a second rim, said second rim having an outer diameter and positioned at one axial end of said second feed horn;

wherein said base of said alignment tool further includes a second inner planar surface and a second inner cylindrical surface extending between said first inner planar surface and said second inner planar surface, said second inner cylindrical surface having a second diameter less than said first diameter, and said second diameter slightly exceeding said outer diameter of said second feed horn rim, and

wherein said alignment tool base is further configured to position said light source axis with respect to said second feed horn axis when said second inner cylindrical surface is positioned around said second feed horn rim and said second inner planar surface abuts said second feed horn rim.

4. The dish antenna kit of claim 3 , wherein said base of said alignment tool further includes at least one fastener configured to engage said second feed horn when said second inner cylindrical surface is positioned around said second feed horn rim and said second inner planar surface abuts said second feed horn rim.

5. The dish antenna kit of claim 4 , wherein said base of said alignment tool further includes apertures in said first inner planar surface, and said base is further configured to receive said at least one fastener so that it extends from within said aperture toward said second inner cylindrical surface.

6. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim, and wherein said reflector sub-assembly includes a second reflector.

7. The dish antenna kit of claim 1 , wherein said light source is a laser light source.

8. The dish antenna kit of claim 1 , further comprising:

a power source.

9. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim,

further comprising:

a power source, and

wherein said power source includes a diesel generator.

10. The dish antenna kit of claim 1 , further comprising:

signal processing equipment.

11. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim,

further comprising:

signal processing equipment, and

wherein said signal processing equipment includes a router.

12. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim,

further comprising signal processing equipment,

shock attenuators, and

a trailer.

13. A dish antenna kit comprising:

a reflector sub-assembly having a first reflector;

at least one feed horn having a feed horn axis and a rim, said rim having an outer diameter and positioned at one axial end of said feed horn; and

an alignment tool having a light source and a base, and said light source having a light source axis and configured to direct a beam of light along said light source axis, and said base having a bottom surface, an inner planar surface, and an inner cylindrical surface extending between said bottom surface and said inner planar surface, said inner cylindrical surface having a diameter slightly exceeding said outer diameter of said feed horn rim,

wherein said base is further configured to position said light source axis with respect to said feed horn axis when said inner cylindrical surface is positioned around said feed horn rim and said inner planar surface abuts said feed horn rim, and

wherein the base is provided with fastening means for removably attaching the base to the rim of the feed horn, and wherein the alignment tool further comprises a generally-conical intermediate portion secured to the base substantially-centrally thereof, the intermediate portion having a converging end portion distally of the base, and the light source comprising a laser in a laser-holding portion mounted on the converging end portion of the intermediate portion of the alignment tool.

Assignments (8)
PATENT SECURITY AGREEMENT Recorded Feb 7, 2022
From: GLOBECOMM SERVICES MARYLAND LLC; GLOBECOMM SYSTEMS INC.
To: ALTER DOMUS (US) LLC
Reel/Frame 058962/0332 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Sep 30, 2020
From: BLACK DIAMOND COMMERCIAL FINANCE, L.L.C. (AS SUCCESSOR BY ASSIGNMENT FROM CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH)
To: SPEEDCAST INTERNATIONAL LIMITED; SPEEDCAST LIMITED; GLOBECOMM SYSTEMS INC.; TELAURUS COMMUNICATIONS LLC; GLOBECOMM SERVICES MARYLAND LLC
Reel/Frame 054210/0475 →
SECURITY INTEREST Recorded Sep 18, 2020
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
To: BLACK DIAMOND COMMERCIAL FINANCE L.L.C.
Reel/Frame 053817/0824 →
SECURITY INTEREST Recorded Jan 11, 2019
From: GLOBECOMM SYSTEMS INC.; GLOBECOMM SERVICES MARYLAND LLC; TELAURUS COMMUNICATIONS LLC
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
Reel/Frame 047975/0825 →
RELEASE OF SECURITY INTEREST Recorded Dec 14, 2018
From: HIGHBRIDGE PRINCIPAL STRATEGIES, LLC
To: GLOBECOMM SYSTEMS INC.; TELAURUS COMMUNICATIONS LLC
Reel/Frame 047783/0806 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2017
From: LYMAN BROS., INC.; GLOBALSAT, LLC
To: GLOBECOMM SERVICES MARYLAND LLC
Reel/Frame 042318/0067 →
SECURITY AGREEMENT Recorded Dec 12, 2013
From: GLOBECOMM SYSTEMS INC.; TELAURUS COMMUNICATIONS LLC
To: HIGHBRIDGE PRINCIPAL STRATEGIES, LLC
Reel/Frame 031804/0367 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2006
From: BRUCHIE, CHRIS E.
To: LYMAN BROTHERS, INC.
Reel/Frame 017986/0146 →