Systems and devices for securing a photovoltaic module to a mounting rail
A clip for attaching a frame rail to a mounting rail in a photovoltaic (PV) module system may include a first arm and a second arm, both with proximal and distal ends, and a connecting body that connects the proximal ends of the first arm and second arm. The first arm includes a first retention recess that may be configured to interface with a first clip retention tab and the second arm includes a second retention recess that may be configured to interface with a second clip retention tab. The first arm, the second arm, and the connecting body define a slot that may be configured to receive a mounting rail flange and a frame rail flange. One or more of the first arm, the second arm, or the connecting body may be configured to elastically deform to apply a spring force when the clip is in a compressed state.
1 . A clip for attaching a frame rail to a mounting rail in a photovoltaic (PV) module system, comprising:
a first arm including a proximal end and a distal end and defining a first slot portion;
a second arm including a proximal end and a distal end and defining a second slot portion; and
a connecting body that connects the proximal end of the first arm with the proximal end of the second arm and defines a third slot portion, wherein:
the first, second, and third slot portions together define a slot with a perimeter that is fully enclosed by the first arm, the second arm, and the connecting body, the slot being configured to receive a mounting rail flange and a frame rail flange; and
one or more of the first arm, the second arm, or the connecting body is configured to elastically deform to decrease a distance between the distal end of the first arm and the distal end of the second arm relative to each other and apply a spring force to the first arm and the second arm away from a longitudinal axis of the clip when the clip is in a compressed state.
2 . The clip of claim 1 , wherein:
the first slot portion defined by the first arm includes a first center line and the second slot portion defined by the second arm includes a second center line, the first center line extending from the connecting body at an angle (β) relative to the second center line extending from the connecting body to allow the clip, in an engaged state, to provide a spring force to the mounting rail flange and the frame rail flange.
3 . The clip of claim 2 , wherein the angle beta (β) is determined based on a combined thickness of the mounting rail flange and the frame rail flange.
4 . The clip of claim 1 , wherein the first arm further includes a first retention recess that is configured to interface with a first clip retention tab on the mounting rail and the second arm further includes a second retention recess that is configured to interface with a second clip retention tab on the mounting rail.
5 . The clip of claim 4 , wherein a first distance between the first retention recess and the second retention recess is greater in an unengaged state than a second distance between the first retention recess and the second retention recess in the engaged state.
6 . The clip of claim 4 , wherein the slot on the first arm extends partially into the first retention recess and the slot on the second arm extends partially into the second retention recess.
7 . The clip of claim 1 , wherein the slot at the connecting body includes a portion that is larger than the slot defined on either the first arm or the second arm, the larger portion of the slot configured to allow the clip to be positioned for installation.
8 . The clip of claim 1 , wherein the distal ends of the first arm and the second arm respectively turn outward relative to each other.
9 . A clip for attaching a frame rail to a mounting rail in a photovoltaic (PV) module system, comprising:
a first arm including a proximal end and a distal end and defining a first slot portion;
a second arm including a proximal end and a distal end and defining a second slot portion; and
a connecting body that connects the proximal end of the first arm with the proximal end of the second arm and defines a third slot portion, wherein:
the first, second, and third slot portions together define a slot that is fully enclosed by the first arm, the second arm, and the connecting body, the slot being configured to receive a mounting rail flange and a frame rail flange;
the first slot portion includes a first center line and the second slot portion includes a second center line, wherein the first center line extends from the connecting body at an angle (β) relative to the second center line extending from the connecting body to allow the clip, in an engaged state, to provide a spring force to the mounting rail flange and the frame rail flange.
10 . The clip of claim 9 , wherein the angle (β) is determined based on a combined thickness of the mounting rail flange and the frame rail flange.
11 . The clip of claim 9 , wherein the third slot portion is larger than each of the first and second slot portions the third slot portion being configured to allow the clip to be positioned for installation.
12 . The clip of claim 9 , wherein the first arm further includes a first retention recess and the second arm further includes a second retention recess that is configured to interface with a second clip retention tab.