IP Library Granted Patent US 12692882
Granted Patent B2
US 12692882 · App. 19/287,187 · Granted Jul 28, 2026

Z-clip or furring strip with angled base for depth alignment

Inventor: Patrick Doran (Petaluma, CA)
Assignee: WEXFORD INNOVATIONS, LLC
F16B2/14F16B5/123
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Quick Facts
Patent No.
US 12692882
App. No.
19/287,187
Granted
Jul 28, 2026
Kind
B2
Abstract

A furring strip, or other similar element, has a back side that is angled relative to the front face. A wedge is designed to be used with the furring strip, where the wedge has an angle that matches the angle of the back side of the furring strip. Thus, the wedge can be slid under the furring strip at a desired position to angle the furring strip in its use position, while allowing the furring strip to be vertically offset from the wall. The system provided by the furring strip and wedge can quickly and easily set furring strips on a substrate to a vertical reference plane, thus providing an easy fit for a wall panel, or other such applications, to be subsequently attached thereto.

Claims (34)

1 . A system for creating a planar mounting surface, comprising:

an element spanning a length, where the element has a front face, a back face, a top side and a bottom side, the back face forming a first angle with respect to the top side, the front face forming a second angle with respect to the top side, and a difference of the first angle and the second angle defining an element back face angle; and

a wedge having a wedge back side configured to be positioned against a substrate, with at least a portion of the wedge back side being disposed between the back face of the element and the substrate; and a wedge front side configured to be slidable along the back face of the element, wherein

the wedge back side and the wedge front side form a wedge angle to provide a continuously increasing thickness along a length of the wedge, from a tip end toward a distal end thereof;

the length of the element is greater than a width of the wedge;

the wedge angle is equal to the element back face angle; and

the wedge includes a non-sloped portion, at the distal end thereof, where, at the non-sloped portion, the wedge back side is parallel to the wedge front side and a back side of the non-sloped portion is continuous and linear with the wedge back side.

2 . The system of claim 1 , wherein the element is a furring strip.

3 . The system of claim 1 , wherein the back face is continuous and linear about an entirety of the back face.

4 . The system of claim 1 , wherein the element back face angle is from about 4 degrees to about 10 degrees.

5 . The system of claim 1 , further comprising a through hole formed through the non-sloped portion.

6 . The system of claim 1 , wherein the wedge further includes a slot extending along a portion of the length of the wedge, from the tip end and ending at or into the non-sloped portion, the slot extending through the wedge, from the wedge back side to the wedge front side.

7 . The system of claim 1 , wherein the wedge further includes a slot extending along a portion of the length of the wedge, from the tip end thereof, the slot extending through the wedge, from the wedge back side to the wedge front side.

8 . The system of claim 7 , wherein the slot aligns with a mounting location in the furring strip.

9 . The system of claim 1 , wherein the front face is parallel to the substrate when the wedge is positioned between the substrate and the element.

10 . The system of claim 1 , further comprising a zero mark on the wedge front side, the zero mark positioned at a distance from the tip end that is equal to a length of the back face of the element.

11 . A system for creating a planar mounting surface, comprising:

a furring strip spanning a length, where the furring strip has a front face, a back face, a top side and a bottom side, the back face forming a first angle with respect to the top side, the front face forming a second angle with respect to the top side, and a difference of the first angle and the second angle defining a furring strip back face angle; and

a wedge having a wedge back side configured to be positioned against a substrate, with at least a portion of the wedge back side being disposed between the back face of the furring strip and the substrate; and a wedge front side configured to be slidable along the back face of the furring strip, wherein:

the length of the furring strip is greater than a width of the wedge;

the wedge back side and the wedge front side form a wedge angle to provide a continuously increasing thickness along a length of the wedge, from a tip end toward a distal end thereof;

the back face is continuous and linear about an entirety of the back side; and

the wedge angle matches the furring strip back face angle.

12 . The system of claim 11 , wherein the furring strip back face angle is from about 4 degrees to about 10 degrees.

13 . The system of claim 11 , wherein the wedge further includes a non-sloped portion, at the distal end thereof, where, at the non-sloped portion, the wedge back side is parallel to the wedge front side.

14 . The system of claim 13 , further comprising a through hole formed through the non-sloped portion.

15 . The system of claim 11 , wherein the wedge further includes a slot extending along a portion of the length of the wedge, from the tip end thereof, the slot extending through the wedge, from the wedge back side to the wedge front side.

16 . The system of claim 11 , further comprising a zero mark on the wedge front side, the zero mark positioned at a distance from the tip end that is equal to a length of the back face of the furring strip.

17 . A method for creating a planar mounting surface, comprising:

disposing a furring strip, spanning a length, on a substrate, where the furring strip has a front face, a back face, a top side and a bottom side, the back face forming a first angle with respect to the top side, the front face forming a second angle with respect to the top side, and a difference of the first angle and the second angle defining a furring strip back face angle;

disposing a portion of a wedge between the furring strip and the substrate, the wedge having a wedge back side positioned against the substrate, the wedge having a wedge front side slidable along the back face of the furring strip to adjust a vertical displacement of the furring strip from the substrate, wherein the wedge back side and the wedge front side form a wedge angle to provide a continuously increasing thickness along a length of the wedge, from a tip end toward a distal end thereof; and

adjusting a position of the wedge to align the furring strip to create the planar mounting surface at the front face of the furring strip, wherein:

the wedge includes a plurality of wedges disposed along a length of the furring strip; and

the furring strip includes two or more furring strips, and the method further includes adjusting the position of the plurality of wedges along each of the two or more furring strips to create the planar mounting surface both along a length of the furring strip and between each of the two or more furring strips.