Panel mounting bracket with under-mounting clamp and related methods
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H02S-020/22
H02S-020/23
F24J-002/52
E04B-001/41
출원번호
US-0203043
(2016-07-06)
등록번호
US-9628018
(2017-04-18)
발명자
/ 주소
Stapleton, Kevin
출원인 / 주소
Stapleton, Kevin
대리인 / 주소
Allen, Dyer, Doppelt & Gilchrist
인용정보
피인용 횟수 :
0인용 특허 :
11
초록▼
A system for mounting a solar panel(s) on a building, where the solar panel has an outer frame defining a lip. The system may include a plurality of panel mounting brackets each including a base to be positioned on the building, and a vertical extension having a proximal end coupled to the base and
A system for mounting a solar panel(s) on a building, where the solar panel has an outer frame defining a lip. The system may include a plurality of panel mounting brackets each including a base to be positioned on the building, and a vertical extension having a proximal end coupled to the base and a distal end vertically spaced apart from the base, with the distal end defining a fastener channel therein. The system may also include a plurality of mounting clamps each including a bottom flange, and a top flange spaced apart from the bottom flange and partially overhanging the bottom flange and defining a slot therebetween to receive the lip. An end extension may couple respective ends of the bottom flange and top flange together, and a fastener channel connector may be coupled to the bottom flange and configured to be slidably received within the fastener channel.
대표청구항▼
1. A method for mounting a plurality of solar panels on a building, each one of the plurality of solar panels comprising an outer frame defining a lip, the method comprising: coupling a plurality of panel mounting bracket assemblies to the plurality of solar panels, each of the panel mounting bracke
1. A method for mounting a plurality of solar panels on a building, each one of the plurality of solar panels comprising an outer frame defining a lip, the method comprising: coupling a plurality of panel mounting bracket assemblies to the plurality of solar panels, each of the panel mounting bracket assemblies comprising a base to be positioned on the building,a vertical extension having a proximal end coupled to the base and a distal end vertically spaced apart from the base, the distal end defining a fastener channel therein, anda plurality of mounting clamps each comprising a bottom flange having first and second ends,a top flange having first and second ends, the top flange spaced apart from the bottom flange and defining a slot therebetween to receive the lip of a respective one of the plurality of solar panels,an end extension coupling the first ends of the bottom flange and the top flange together,at least one set screw extendable into the slot between the top and bottom flanges to contact the lip of the respective solar panel and secure the lip within the slot, anda fastener channel connector coupled to the bottom flange and configured to be slidably received within the fastener channel of a respective vertical extension; andcoupling the bases of the mounting brackets to the building with the solar panels attached thereto, wherein at least two fastener channel connectors are connected to a fastener channel of a same vertical extension. 2. The method of claim 1 wherein the fastener channel connector comprises a T-shaped connector coupled to the bottom flange on a side thereof opposite the top flange; and wherein the coupling of the plurality of panel mounting bracket assemblies to the plurality of solar panels further comprises sliding the T-shaped connector of each mounting clamp into a fastener channel of a respective panel mounting bracket. 3. The method of claim 2 wherein each one of the plurality of mounting clamps further comprises a retaining bolt and a corresponding nut coupling the T-shaped connector to the bottom flange. 4. The method of claim 1 wherein the at least one set screw is carried by the bottom flange; and wherein the coupling of the panel mounting bracket assemblies to the plurality of solar panels further comprises tightening the at least one set screw to secure the lip within the slot. 5. The method of claim 1 wherein at least one set screw is carried by the top flange; and wherein the coupling of the panel mounting bracket assemblies to the plurality of solar panels further comprises tightening the at least one set screw to secure the lip within the slot. 6. The method of claim 1 wherein the vertical extension is laterally centered on the base. 7. The method of claim 1 wherein each one of the plurality of panel mounting brackets comprises aluminum. 8. The method of claim 1 wherein the base defines a plurality of mounting holes on opposing sides of the vertical extension. 9. The method of claim 1 wherein the vertical extension is hollow and comprises at least one cross-support member therein. 10. The method of claim 1 wherein the fastener channel connector comprises a horizontal member having an upper surface coupled to the bottom flange and a lower surface to be positioned on the distal end of the vertical extension, a pair of spaced apart vertical side members on opposite sides of the horizontal member and configured to extend along the distal end of the vertical extension when the lower surface of the horizontal member is positioned on the distal end of the vertical extension, a bolt coupled to the lower surface of the horizontal member and configured to extend downward into the fastener channel when the lower surface of the horizontal member is positioned on the distal end of the vertical extension, and a nut to be screwed onto the bolt; and wherein the coupling of the plurality of panel mounting bracket assemblies to the plurality of solar panels further comprises sliding the nut of each mounting clamp into the fastener channel of a respective panel mounting bracket. 11. A method for mounting at least one solar panel on a building, the at least one solar panel comprising an outer frame defining a lip, the method comprising: coupling a plurality of panel mounting bracket assemblies to the at least one solar panel, each of the panel mounting bracket assemblies comprising a base to be positioned on the building,a vertical extension having a proximal end coupled to the base and a distal end vertically spaced apart from the base, the distal end defining a fastener channel therein, anda mounting clamp comprising a bottom flange having first and second ends,a top flange having first and second ends, the top flange spaced apart from the bottom flange and defining a slot therebetween to receive the lip of the at least one solar panel,an end extension coupling the first ends of the bottom flange and the top flange together, anda fastener channel connector coupled to the bottom flange and configured to be slidably received within the fastener channel of a respective vertical extension, the fastener channel connector comprising a horizontal member having an upper surface coupled to the bottom flange and a lower surface to be positioned on the distal end of the vertical extension,a pair of spaced apart vertical side members on opposite sides of the horizontal member and configured to extend along the distal end of the vertical extension when the lower surface of the horizontal member is positioned on the distal end of the vertical extension,a bolt coupled to the lower surface of the horizontal member and configured to extend downward into the fastener channel when the lower surface of the horizontal member is positioned on the distal end of the vertical extension, anda nut to be screwed onto the bolt and configured to be slidably received within the fastener channel; andcoupling the bases of the mounting bracket assemblies to the building with the at least one solar panel attached thereto. 12. The method of claim 11 wherein each of the plurality of mounting clamps further comprises at least one set screw carried by the bottom flange; and wherein the coupling of the panel mounting bracket assemblies to the at least one solar panel further comprises tightening the at least one set screw to secure the lip within the slot. 13. The method of claim 11 wherein each of the plurality of mounting clamps further comprises at least one set screw carried by the top flange; and wherein the coupling of the panel mounting bracket assemblies to the at least one solar panel further comprises tightening the at least one set screw to secure the lip within the slot. 14. The method of claim 11 wherein the vertical extension is laterally centered on the base. 15. The method of claim 11 wherein the vertical extension is hollow and comprises at least one cross-support member therein. 16. A method for mounting at least one solar panel on a building, the at least one solar panel comprising an outer frame defining a lip, the method comprising: coupling a plurality of solar panel mounting assemblies to the at least one solar panel, each solar panel mounting assembly comprising a panel mounting bracket comprisinga base to be positioned on a building,a vertical extension having a proximal end coupled to the base and a distal end vertically spaced apart from the base, the distal end defining a fastener channel therein, anda mounting clamp comprising a bottom flange having and end,a top flange having an end and being spaced apart from the bottom flange and partially overhanging the bottom flange and defining a slot therebetween and receiving the lip of the at least one solar panel therein,an end extension coupling the ends of the bottom flange and top flange together,at least one set screw extendable into the slot between the upper and lower flanges to contact the lip of the respective solar panel and secure the lip within the slot, anda fastener channel connector coupled to the bottom flange and configured to be slidably received within the fastener channel; andcoupling the bases of the mounting brackets to the building with the at least one solar panel attached thereto. 17. The method of claim 16 wherein the fastener channel connector comprises a T-shaped connector coupled to the bottom flange on a side thereof opposite the top flange; and further comprising sliding the T-shaped connector of each mounting clamp into a fastener channel of a respective panel mounting bracket. 18. The method of claim 16 wherein the fastener channel connector comprises a horizontal member having an upper surface coupled to the bottom flange and a lower surface to be positioned on the distal end of the vertical extension, a pair of spaced apart vertical side members on opposite sides of the horizontal member and configured to extend along the distal end of the vertical extension when the lower surface of the horizontal member is positioned on the distal end of the vertical extension, a bolt coupled to the lower surface of the horizontal member and configured to extend downward into the fastener channel when the lower surface of the horizontal member is positioned on the distal end of the vertical extension, and a nut to be screwed onto the bolt; and further comprising sliding the nut of each mounting clamp into the fastener channel of a respective panel mounting bracket. 19. The method of claim 16 wherein the at least one solar panel comprises a plurality of solar panels; and wherein the coupling of the plurality of solar panel mounting assemblies to the at least one solar panel further comprises sliding the fastener channel connector of at least two mounting clamps each coupled to the outer frame of different respective solar panels into the fastener channel of a same vertical extension. 20. The method of claim 16 wherein the coupling of the panel mounting bracket assemblies to the at least one solar panel further comprises tightening the at least one set screw to secure the lip within the slot.
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이 특허에 인용된 특허 (11)
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