IP Library Granted Patent US 10,998,849
Granted Patent B2
US 10,998,849 · App. 15/890,934 · Granted May 4, 2021

Clamp assembly for solar tracker

Inventor: Alexander W. Au (El Cerrito, CA)
Assignee: NEXTRACKER INC.
H02S20/32F16L3/02F16M13/022F24S25/10F24S25/70F24S30/425H02S20/00F24S2030/15F24S2030/17Y02E10/47Y02E10/50Y10T29/49826Y10T29/49947
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Quick Facts
Patent No.
US 10,998,849
App. No.
15/890,934
Granted
May 4, 2021
Kind
B2
Abstract

In an example, the solar tracker has a clamp assembly configured to pivot a torque tube. In an example, the assembly has a support structure configured as a frame having configured by a first and second anchoring region. In an example, the support structure is configured from a thickness of metal material. In an example, the support structure is configured in an upright manner, and has a major plane region. In an example, the assembly has a pivot device configured on the support structure, a torque tube suspending on the pivot device and aligned within an opening of the support, and configured to be normal to the plane region. In an example, the torque tube is configured on the pivot device to move about an arc in a first direction or in a second direction such that the first direction is in a direction opposite to the second direction.

Claims (28)

1. A method of forming a clamp assembly for a solar module, the method comprising:

providing a thickness of rigid material having a first surface defining a length and a width of the rigid material and a second surface opposite the first surface; and

forming a single monolithic structure comprising:

a planar surface region configured from a first portion of the thickness of rigid material;

a saddle region configured from a second portion of the thickness of rigid material, the second portion being configured within an inner region of the planar surface region, the second surface of the saddle region having a concave shape configured to accept a cylindrical torque tube structure such that a longitudinal axis of the cylindrical torque tube structure is oriented in the width direction;

a first recessed region on a first side of the saddle region, the first surface of the rigid material of the first recessed region having a concave shape; and

a second recessed region on a second side of the saddle region, the first surface of the rigid material of the second recessed region having a concave shape,

wherein the planar surface region has a first part disposed on a third side of the saddle region and a second part disposed on a fourth side of the saddle region, and

wherein a portion of the concave shape of the first recessed region and a portion of the concave shape of the second recessed region form the concave shape of the saddle region.

2. The method of claim 1 , wherein the saddle region comprises a key structure to be inserted into a notch structure configured on a peripheral portion of the cylindrical torque tube structure such that the key structure is a male portion to be inserted into a female portion of the notch structure to intimately connect the saddle region to the peripheral portion of the cylindrical torque tube structure.

3. The method of claim 1 , wherein the first recessed region is a mirror image of the second recessed region.

4. The method of claim 1 , wherein the first recessed region includes a first opening and the second recessed region includes a second opening.

5. The method of claim 1 , wherein the saddle region comprises a first wider region within a vicinity of the first recessed region, and a second wider region within a vicinity of the second recessed region.

6. The method of claim 1 , wherein a U-bolt is configured on a peripheral portion of the cylindrical torque tube structure such that a first bolt protrudes through a first opening and a second bolt protrudes through a second opening, and a first fastener is coupled to the first bolt and a second fastener is coupled to the second bolt to secure the saddle region to the torque tube structure by sandwiching the cylindrical torque tube structure between the second surface and a U-shaped portion of the U-bolt.

7. The method of claim 1 , wherein the first recessed region, the saddle region, and the second recessed region are configured as an hour glass type shape when viewed from a location parallel to the planar surface region.

8. The method of claim 1 , wherein the thickness of rigid material comprises steel, and

wherein the method further comprises:

configuring a first border on a first edge of the planar surface region and a second border on second edge of the planar surface region; and

forming a pair of first openings within a vicinity of a first end of the planar surface region and a pair of second openings within a vicinity of a second end of the planar surface region.

9. A method of forming a clamp assembly for a solar module, the method comprising:

providing a thickness of rigid material having a first surface defining a length and a width of the rigid material and a second surface opposite the first surface; and

forming a single monolithic structure comprising:

a planar surface region configured from a first portion of the thickness of rigid material;

a saddle region configured from a second portion of the thickness of rigid material, the second portion being configured within an inner region of the planar surface region, the second surface of the saddle region having a concave shape configured to accept a cylindrical torque tube structure such that a longitudinal axis of the cylindrical torque tube structure is oriented in the width direction;

a first recessed region on a first side of the saddle region, the first surface of the rigid material of the first recessed region having a concave shape; and

a second recessed region on a second side of the saddle region, the first surface of the rigid material of the second recessed region having a concave shape,

wherein the planar surface region has a first part disposed on a third side of the saddle region and a second part disposed on a fourth side of the saddle region, and

wherein the concave shape of the saddle region faces a direction opposite from the concave shape of the first recessed region and the concave shape of the second recessed region.

Assignments (2)
CHANGE OF NAME Recorded Apr 12, 2022
From: NEXTRACKER INC.
To: NEXTRACKER LLC
Reel/Frame 059680/0719 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2018
From: AU, ALEXANDER W.
To: NEXTRACKER INC.
Reel/Frame 044880/0469 →
Cited By (2)
US 12,395,117 US 12,431,834