IP Library Granted Patent US 7,624,967
Granted Patent B1
US 7,624,967 · App. 11/737,422 · Granted Dec 1, 2009

Opposed-rope hoist driven telescoping mast

Assignee: Par Systems, Inc.
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Quick Facts
Patent No.
US 7,624,967
App. No.
11/737,422
Granted
Dec 1, 2009
Kind
B1
Abstract

An opposed-rope driven telescoping mast assembly includes a stationary support and a longitudinal mast comprising a longitudinal section joined to move relative to the stationary support. A drive assembly drives the longitudinal mast and includes a frame and a rotatable drum assembly mounted to the frame. A first rope is joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a first direction, while a second rope is joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a second direction. A sensor is operably coupled to the drive assembly to sense overload tension in the first rope or the second rope.

Claims (52)

1. An opposed-rope driven telescoping mast assembly comprising:

a stationary support;

a longitudinal mast comprising a longitudinal section joined to move relative to the stationary support;

a drive assembly having a weight that counterbalances at least a portion of the weight of the longitudinal section, the drive assembly comprising:

a frame pivotally joined to the stationary support;

a rotatable drum assembly mounted to the frame; and

a first rope and a second rope, the first rope being joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a first direction, the second rope joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a second direction;

a sensor operably coupled to the drive assembly to sense overload tension in the first rope or the second rope by movement of the drive assembly; and

a spring joined to the drive assembly to support at least a portion of the weight of the longitudinal section.

2. The telescoping mast assembly of claim 1 and further comprising a second longitudinal section moveably joined to the first-mentioned longitudinal section, and wherein the first rope is attached to the first-mentioned section and the second rope is attached to the second longitudinal section.

3. The telescoping mast assembly of claim 2 and further comprising a third rope joined to the support and the second longitudinal section.

4. The telescoping mast assembly of claim 2 and further comprising a pulley joined to the first-mentioned longitudinal section, the pulley guiding the third rope.

5. An opposed-rope driven telescoping mast assembly comprising:

a stationary support;

a longitudinal mast comprising a longitudinal section joined to move relative to the stationary support;

a drive assembly having a weight that counterbalances at least a portion of the weight of the longitudinal section, the drive assembly comprising:

a frame pivotally joined to the stationary support;

a rotatable drum assembly mounted to the frame; and

a first rope and a second rope, the first rope being joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a first direction, the second rope joined to the drum assembly and to the longitudinal mast to pull the longitudinal section in a second direction;

a sensor operably coupled to the drive assembly to sense overload tension in the first rope or the second rope by movement of the drive assembly; and

an actuator device joined to the drive assembly to support at least a portion of the weight of the longitudinal section.

6. The telescoping mast assembly of claim 5 and further comprising a second longitudinal section moveably joined to the first-mentioned longitudinal section, and wherein the first rope is attached to the first-mentioned section and the second rope is attached to the second longitudinal section.

7. The telescoping mast assembly of claim 6 and further comprising a third rope joined to the support and the second longitudinal section.

8. The telescoping mast assembly of claim 6 and further comprising a pulley joined to the first-mentioned longitudinal section, the pulley guiding the third rope.

9. An opposed-rope driven telescoping mast assembly comprising:

a stationary support;

a first longitudinal section joined to move relative to the stationary support;

a second longitudinal section joined to move relative to the first longitudinal section;

a drive assembly comprising:

a drum assembly having a first drum and a second drum;

a first rope and a second rope, the first rope being joined to the first drum for winding thereon and to the first longitudinal section, the second rope joined to the second drum for winding thereon in a direction opposite to the first rope and to the second longitudinal section;

a pulley mounted to the first longitudinal section; and

a third rope joined to the second longitudinal section and the stationary support, the third rope being guided on the pulley.

10. The telescoping mast assembly of claim 9 wherein the first drum and second drum are configured to wind and unwind the second rope at a rate twice as fast as the first rope.

11. The telescoping mast assembly of claim 9 wherein the drive assembly includes a second pulley configured to guide the second rope, the second pulley being mounted to the stationary support.

12. The telescoping mast assembly of claim 9 wherein the drive assembly further comprises a frame member configured to move relative to the stationary support and carry the first drum and the second drum.

13. The telescoping mast assembly of claim 12 wherein the frame member pivots.

14. The telescoping mast assembly of claim 12 wherein the drive assembly is configured to substantially counter-balance the weight of the first and second longitudinal sections.

15. The telescoping mast assembly of claim 12 and a sensor configured to sense movement of the frame member.

16. The telescoping mast assembly of claim 15 wherein the frame member pivots.

17. An opposed-rope driven telescoping mast assembly comprising:

a stationary support;

a first longitudinal section joined to move relative to the stationary support;

a second longitudinal section joined to move relative to the first longitudinal section; and

a drive assembly comprising:

a drum assembly having a first drum and a second drum; and

a first rope and a second rope, the first rope being joined to the first drum for winding thereon and to the first longitudinal section, the second rope joined to the second drum for winding thereon in a direction opposite to the first rope and to the second longitudinal section, wherein the drive assembly is configured to maintain tension on the first rope and the second during extension and retraction of the sections limiting backlash movement of the sections relative to each other.

18. The telescoping mast assembly of claim 17 wherein the drive assembly further comprises a frame member configured to move relative to the stationary support and carry the first drum and the second drum.

19. The telescoping mast assembly of claim 18 wherein the frame member pivots.

20. The telescoping mast assembly of claim 19 wherein the drive assembly is configured to substantially counter-balance the weight of the first and second longitudinal sections.

21. The telescoping mast assembly of claim 20 and a sensor configured

to sense movement of the frame member.

Assignments (8)
SECURITY INTEREST Recorded Jan 31, 2025
From: PAR SYSTEMS, LLC; JERED LLC
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 070076/0289 →
RELEASE OF SECURITY INTEREST Recorded Jan 31, 2025
From: THE PRUDENTIAL INSURANCE COMPANY OF AMERICA
To: PAR SYSTEMS GROUP, LLC; OAKRIVER TECHNOLOGY, LLC; I-STIR TECHNOLOGY, LLC
Reel/Frame 070080/0327 →
SECURITY INTEREST Recorded Aug 28, 2018
From: PAR SYSTEMS, LLC; OAKRIVER TECHNOLOGY, LLC; I-STIR TECHNOLOGY, LLC
To: THE PRUDENTIAL INSURANCE COMPANY OF AMERICA, AS COLLATERAL AGENT
Reel/Frame 046724/0692 →
CERTIFICATE OF CONVERSION Recorded Mar 23, 2018
From: PAR SYSTEMS, INC.
To: PAR SYSTEMS, LLC
Reel/Frame 045680/0151 →
RELEASE OF SECURITY INTEREST Recorded Nov 1, 2017
From: BANK OF MONTREAL
To: PAR SYSTEMS, INC.; OAKRIVER TECHNOLOGY, INC.; EDERER, LLC
Reel/Frame 044007/0625 →
SECURITY INTEREST Recorded Nov 1, 2017
From: PAR SYSTEMS, INC.
To: THE PRUDENTIAL INSURANCE COMPANY OF AMERICA, AS COLLATERAL AGENT
Reel/Frame 044011/0932 →
SECURITY AGREEMENT Recorded Jun 15, 2012
From: PAR SYSTEMS, INC.; OAKRIVER TECHNOLOGY, INC.; EDERER, LLC
To: BANK OF MONTREAL, AS ADMINISTRATIVE AGENT
Reel/Frame 028383/0414 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2007
From: DOEBLER, GARY R.; JUNG, THOMAS E.; STURM, JR., ALBERT J.
To: PAR SYSTEMS, INC.
Reel/Frame 019470/0010 →
Continuity (1)
Provisional Application 6079313100 · Apr 19, 2006