IP Library Granted Patent US 12,480,319
Granted Patent B2
US 12,480,319 · App. 17/889,546 · Granted Nov 25, 2025

Roof-anchoring systems and methods

Inventor: Flent Ballantyne (McKinney, TX)
Assignee: Ballantyne Gear, Inc.
E04G21/3276
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Quick Facts
Patent No.
US 12,480,319
App. No.
17/889,546
Granted
Nov 25, 2025
Kind
B2
Abstract

An improved roof anchoring system configured as a non-penetrating fall protection system with no nails or screws damaging the roof and including simultaneously used multiple anchoring devices each with a connector pivotally attached to a corresponding axle and each preventing another anchoring device from moving away from the roof edge and tensioned with respect to such other anchoring device via a common tether. A stopper can be optionally used to keep a given anchoring device in place during installation of the anchoring system.

Claims (83)

1 . A method for restraining and/or arresting falls from a roof on a structure, the roof comprising at least one sloped surface, the method comprising:

(1) installing a non-penetrating fall protection system on the roof, the non-penetrating fall protection system comprising:

(a) a plurality of anchoring devices each comprising an arched body having a front end and a rear end and configured to hook around an edge of the roof, wherein the plurality of anchoring devices comprises a first anchoring device configured to hook around a first edge of the roof and a second anchoring device configured to hook around a second edge of the roof;

(b) a single tether line configured to be connected under tension between the first anchoring device and the second anchoring device and extending over the at least one sloped surface of the roof, the single tether line configured to hold the first anchoring device around the first edge and to hold the second anchoring device around the second edge;

(c) a first lifeline configured to be connected to the single tether line at a first end of the first lifeline; and

(d) a tether line slidable element comprising a rope grab configured to be connected to the first end of the first lifeline and configured to selectively and repositionably anchor the first end of the first lifeline to the single tether line at a selected one of a plurality of tether line anchor points disposed between the first anchoring device and the second anchoring device by (1) freely allowing slidable movement of the first end of the first lifeline along the single tether line in a first direction and (2) anchoring the first end of the first lifeline to the single tether line at the selected one of the plurality of tether line anchor points by not allowing slidable movement of the first end of the first lifeline in a second direction substantially reversed from the first direction unless the tether line slidable element is actuated to allow slidable movement in the second direction;

(e) a first user slidable element comprising a rope grab configured to be connected to the first lifeline and to a user device and configured to selectively and repositionably anchor the user device to the first lifeline at a selected one of a plurality of first lifeline anchor points disposed between the first end of the first lifeline and a second end of the first lifeline by (1) freely allowing slidable movement of the first user slidable element along the first lifeline in a third direction and (2) anchoring the first user slidable element to the first lifeline at the selected one of the plurality of first lifeline anchor points by not allowing slidable movement of the first user slidable element in a fourth direction substantially reversed from the third direction unless the first user slidable element is actuated to allow slidable movement in the fourth direction,

wherein the user device comprises one or more of a harness or a lanyard or a combination thereof:

wherein the installing of the first anchoring device, the second anchoring device, and the single tether line do not require a user to be on the roof;

(2) attaching the first user slidable element to the first lifeline;

(3) attaching the user device to the first user slidable element;

(4) attaching the tether line slidable element to the single tether line;

(5) attaching the first end of the first lifeline to the tether line slidable element;

(6) sliding the tether line slidable element along the single tether line and anchoring at a selected first of the plurality of tether line anchor points to prevent motion of the first end of the first lifeline along the single tether line in the second direction; and

(7) sliding the first user slidable element along the first lifeline and anchoring at a selected first of the plurality of first lifeline anchor points to prevent motion of the first user slidable element along the first lifeline in the fourth direction.

2 . The method of claim 1 , wherein the roof comprises at least two sloped surfaces forming a peak and wherein the single tether line is configured to extend over and contact the peak.

3 . The method of claim 2 , wherein the attaching the tether line slidable element to the single tether line comprises orienting the tether line slidable element on the single tether line so that the first direction is towards the peak.

4 . The method of claim 3 , wherein the selected first one of the plurality tether line anchor points and the selected first one of the plurality of first lifeline anchor points define a desired work location on the roof;

wherein the user device can reach the desired work location without risk of sliding in the fourth direction beyond the desired work location because the first user slidable element is anchored to the first lifeline and will not allow further sliding in the fourth direction, and without risk of sliding in the second direction beyond the desired work location because the tether line slidable element is anchored to the single tether line and will not allow further sliding in the second direction.

5 . The method of claim 3 , wherein the attaching the user slidable to the lifeline comprises orienting the user slidable element on the lifeline line so that the first direction is towards the single tether line.

6 . The method of claim 5 , wherein a safe work area on the roof comprises an area that is (1) in the second direction relative to the selected first of the plurality of tether line anchor points and (2) in the fourth direction relative to the selected first of the plurality of first lifeline anchor points.

7 . The method of claim 1 , wherein no screws or nails secure the non-penetrating fall protection system to the roof.

8 . The method of claim 1 , wherein the installing further comprises placing the single tether line laterally across the roof with a throw line and a line thrower, wherein the throw line is connected to the single tether line.

9 . The method of claim 1 , wherein the installing further comprises:

positioning the single tether line across the roof with a first portion of the single tether line disposed on a first side of the structure near the first edge of the roof and a second portion of the single tether line disposed on a second side of the structure near the second edge of the roof, wherein the at least one sloped surface is disposed between the first edge and the second edge, and wherein the first edge is disposed substantially opposite from the second edge;

attaching the first portion of the single tether line to the first anchoring device;

lifting the first anchoring device to the first edge of the roof;

hooking the first anchoring device around the first edge of the roof;

attaching the second portion of the tether line to the second anchoring device;

lifting the second anchoring device to the second edge of the roof; and

hooking the second anchoring device around the second edge of the roof.

10 . The method of claim 9 , wherein the installing further comprises:

connecting a tensioning device to the single tether line at or near the first anchoring device or the second anchoring device;

pulling the single tether line through the tensioning device to apply tension to the single tether line to hold the first anchoring device in position around the first edge of the roof and the second anchoring device in position around the second edge of the roof; and

wherein the tensioning device operates as a progress capture pulley or a ratchet.

11 . The method of claim 10 , wherein when the installing is complete, the non-penetrating fall protection system is secured to the roof by only the single tether line connected under tension between the first anchoring device and the second anchoring device, the rear end of the first anchoring device being disposed in contact with a first eave at the first edge, and the rear end of the second anchoring device being disposed in contact with a second eave at the second edge.

12 . The method of claim 9 , wherein the first anchoring device further comprises a first connector pivotably connected to the first arched body near the first front end;

the second anchoring device further comprises a second connector pivotably connected to the second arched body near the second front end;

wherein attaching the first portion of the single tether line to the first anchoring device comprises connecting the first portion of the single tether line to the first connector; and

wherein attaching the second portion of the single tether line to the second anchoring device comprises (1) connecting a tensioning device to the second connector with the tensioning device is positioned between the first anchoring device and the second anchoring device; (2) looping the second portion of the single tether line in the tensioning device with a free end of the second portion of the single tether line extending from the tensioning device.

13 . The method of claim 12 , wherein the lifting the second anchoring device comprises pulling on the free end of the second portion of the single tether line to raise the second anchoring device to the second edge; and

wherein applying tension to the single tether line comprises pulling on the free end of the second portion of the single tether line after the positioning the second anchoring device is complete.

14 . The method of claim 1 , wherein the installing further comprises connecting a single tensioning device, configured to put the single tether line under tension, to the single tether line at or near the first anchoring device or the second anchoring device.

15 . The method of claim 14 , wherein the single tensioning device operates as a progress capture pulley or a ratchet.

16 . The method of claim 1 , wherein when the installing is complete, the non-penetrating fall protection system is secured to the roof by only the single tether line connected under tension between the first anchoring device and the second anchoring device, the rear end of the first anchoring device being disposed in contact with a first eave at the first edge, and the rear end of the second anchoring device being disposed in contact with a second eave at the second edge.

17 . The method of claim 1 , wherein the plurality of anchoring devices further comprises a third anchoring device configured to hook around a third roof edge;

wherein there are two of the tether line slidable elements, a first tether line slidable element and a second tether line slidable element;

wherein the non-penetrating fall protection system further comprises:

(f) a support line configured to be connected under tension between the single tether line and the third anchoring device;

wherein the attaching the tether line slidable element to the single tether line comprises attaching the first tether line slidable element and the second tether line slidable element to the single tether line;

wherein the attaching the first end of the first lifeline to the tether line slidable element comprises attaching the first end of the first lifeline to the first tether line slidable element;

wherein the method further comprises:

(8) attaching a first portion of the support line to the third anchoring device; and

(9) attaching a second portion of the support line to the second tether line slidable element.

18 . The method of claim 17 wherein the support line is substantially perpendicular to the single tether line.

19 . The method of claim 17 , wherein the non-penetrating fall protection system further comprises:

(g) a second lifeline configured to be connected to the support line at a first end of the second lifeline;

(h) a support line slidable element comprising a rope grab configured to be connected to the first end of the second lifeline and configured to selectively and repositionably anchor the first end of the second lifeline to the support line at a selected one of a plurality of support line anchor points disposed between the third anchoring device and the single tether line by (1) freely allowing slidable movement of the first end of the second lifeline along the support line in a fifth direction and (2) anchoring the first end of the second lifeline to the support line at the selected one of the plurality of support line anchor points by not allowing slidable movement of the first end of the second lifeline in a sixth direction substantially reversed from the fifth direction unless the support line slidable element is actuated to allow slidable movement in the sixth direction;

(i) a second user slidable element comprising a rope grab configured to be connected to the second lifeline and to the user device and configured to selectively and repositionably anchor the user device to the second lifeline at a selected one of a plurality of second lifeline anchor points disposed between the first end of the second lifeline and a second end of the second lifeline by (1) freely allowing slidable movement of the second user slidable element along the second lifeline in a seventh direction and (2) anchoring the second user slidable element to the second lifeline at the selected one of the plurality of second lifeline anchor points by not allowing slidable movement of the second user slidable element in an eighth direction substantially reversed from the seventh direction unless the second user slidable element is actuated to allow slidable movement in the eighth direction; and

wherein the method further comprises:

(10) attaching the second user slidable element to the second lifeline;

(11) attaching the user device to the second user slidable element;

(12) attaching the support line slidable element to the support line;

(13) attaching the first end of the second lifeline to the support line slidable element:

(14) sliding the support line slidable element along the support line and anchoring at a selected first of the plurality of support line anchor points to prevent motion of the first end of the second lifeline along the support line in the sixth direction; and

(15) sliding the second user slidable element along the second lifeline and anchoring at a selected first of the plurality of second lifeline anchor points to prevent motion of the second user slidable element along the second lifeline in the eighth direction.

20 . The method of claim 19 wherein the roof comprises at least two sloped surfaces forming a peak;

wherein the single tether line is configured to extend over and contact the peak.

21 . The method of claim 20 wherein a safe work area on the roof comprises an area that is (1) in the second direction relative to the selected first of the plurality of tether line anchor points (2) in the fourth direction relative to the selected first of the plurality of first lifeline anchor points, (3) in the sixth direction relative to the selected first of the plurality of support line anchor points, and (4) in the eighth direction relative to the selected first of the plurality of second lifeline anchor points.

22 . The method of claim 20 wherein the roof comprises a corner disposed between (1) the first anchoring device or the second anchoring device and (2) the third anchoring device; and

wherein a safe work area comprises the corner.

23 . The method of claim 19 wherein the roof comprises at least two sloped surfaces forming a peak and wherein the single tether line is configured to extend over and contact the peak; and

wherein the attaching the support line slidable element to the support line comprises orienting the support line slidable element on the support line so that the fifth direction is towards the single tether line.

24 . The method of claim 19 , wherein a first work area on the roof is defined by the selected first of the plurality of tether line anchor points, the selected first of the plurality of first lifeline anchor points, the selected first the plurality of support line anchor points, and the selected first of the plurality of second lifeline anchor points.

25 . The method of claim 24 , further comprising selecting a second work area on the roof, wherein the selecting the second work area comprises:

sliding the first user slidable element along the first lifeline and anchoring at a selected second of the plurality of first lifeline anchor points; or

sliding the tether line slidable element along the single tether line and anchoring at a selected second of the plurality of tether line anchor points; or

sliding the first user slidable element along the second lifeline and anchoring at a selected second of the plurality of second lifeline anchor points; or

sliding the support line slidable element along the support line and anchoring at a selected second of the plurality of support line anchor points; or

a combination thereof.

26 . The method of claim 1 , wherein the non-penetrating fall protection systems comprises at least two of the tether line slidable elements;

wherein attaching the tether line slidable elements to the single tether line comprises attaching a first tether line slidable element and a second tether line slidable element to the single tether line in opposing orientations, such that the first direction for the first tether line slidable element is toward the second tether line slidable element and the first direction for the second tether line slidable element device is toward the first tether line slidable element, to prevent motion of the first end of the first lifeline attached to either of the first tether line slidable element or the second tether line slidable element in both the first direction and in the second direction.

27 . The method of claim 1 , wherein a safe work area on the roof comprises an area that is (1) in the second direction relative to the selected first of the plurality of tether line anchor points and (2) in the fourth direction relative to the selected first of the plurality of first lifeline anchor points.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2024
From: BALLANTYNE GEAR INC.
To: BALLANTYNE GEAR, INC
Reel/Frame 067155/0856 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2022
From: BALLANTYNE, FLENT
To: BALLANTYNE GEAR, INC.
Reel/Frame 061282/0727 →
Continuity (3)
Continuation 16876674 · May 18, 2020
Continuation In Part 15906113 · Feb 27, 2018
Related Publication 20230032045A1 · Feb 2, 2023
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