High efficiency roller shade
US-9771755-B2 · Sep 26, 2017 · US
US10975619B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10975619-B2 |
| Application number | US-201916378013-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 8, 2019 |
| Priority date | Oct 3, 2011 |
| Publication date | Apr 13, 2021 |
| Grant date | Apr 13, 2021 |
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Official abstract text for this publication.
Methods and apparatus to control architectural opening covering assemblies are disclosed herein. An architectural covering assembly including an architectural covering; a tube to which the architectural covering is coupled; a manual controller operatively coupled to the tube to rotate the tube; a motor including a motor housing and a motor shaft; and a clutch assembly including a clutch and a clutch housing in which the clutch is disposed, the motor shaft coupled to the clutch and the clutch coupled to the manual controller to hold the motor shaft substantially stationary when the architectural covering is moved under an influence of the motor to cause the motor housing to rotate with the clutch housing and the tube.
Opening claim text (preview).
What is claimed is: 1. An architectural covering assembly comprising: a roller tube; a manual controller; a motor including a motor housing and a motor shaft; and a clutch including a frame coupled to said motor housing and said roller tube such that said roller tube rotates with said motor housing; wherein: said clutch is configured to disengage said frame from said motor shaft when said motor is energized to enable said motor housing and said roller tube to rotate relative to said motor shaft, and said clutch is configured to engage said frame with said motor shaft when said manual controller is operated to enable said manual controller to rotate said motor shaft, said motor housing, and said frame to rotate said roller tube. 2. The architectural covering assembly of claim 1 , wherein said clutch includes: a coupling; and a drive shaft that couples said coupling to said manual controller. 3. The architectural covering assembly of claim 2 , wherein said coupling includes a bore, said motor shaft is disposed in said bore, and a portion of said frame extends into said bore of said coupling. 4. The architectural covering assembly of claim 3 , wherein said motor shaft includes an inner shaft and an outer shaft concentric to said inner shaft, and wherein said portion of said frame is disposed between said inner shaft and said outer shaft. 5. The architectural covering assembly of claim 3 , wherein said clutch includes a wrap spring disposed around said portion of said frame. 6. The architectural covering assembly of claim 5 , wherein, when said motor is energized, said drive shaft engages said wrap spring to loosen said wrap spring from around said portion of said frame to release resistance to relative movement between said frame and said motor shaft. 7. The architectural covering assembly of claim 6 , wherein, when said manual controller is operated, said coupling engages said wrap spring to tighten said wrap spring around said portion of said frame to resist relative movement between said frame and said motor shaft. 8. The architectural covering assembly of claim 2 , wherein said clutch includes a first clutch and a second clutch, wherein said first clutch includes said drive shaft and a first connector coupled to said drive shaft, and wherein said second clutch includes said coupling. 9. The architectural covering assembly of claim 8 , wherein said first connector is engaged with a second connector of said manual controller. 10. An architectural covering assembly comprising: a roller tube; a manual controller; a motor including a motor housing and a motor drive shaft, said motor housing coupled to said roller tube to rotate therewith, said motor drive shaft coupled to said manual controller, said motor drive shaft to be rotated via operation of said manual controller; and a clutch engaged with said motor (1) to lock said motor drive shaft against rotation relative to said motor housing when said manual controller is operated and said motor is not energized, operation of said manual controller causing rotation of said motor drive shaft and said motor housing, and rotation of said motor housing causing rotation of said roller tube; and (2) to unlock said motor drive shaft and said motor housing to enable said motor housing to rotate, and thereby rotate said roller tube, relative to said motor drive shaft when said motor is energized. 11. The architectural covering assembly of claim 10 , wherein said manual controller prevents rotation of said motor drive shaft when said manual controller is not operated. 12. The architectural covering assembly of claim 10 , further including a frame, said frame coupling said motor housing to said roller tube to rotate therewith. 13. The architectural covering assembly of claim 12 , wherein said clutch is disposed within said frame. 14. The architectural covering assembly of claim 13 , wherein said clutch includes: a coupling defining a bore, wherein a brake shaft of said frame extends into said bore of said coupling; and a wrap spring disposed around said brake shaft, said wrap spring to loosen from around said brake shaft to enable relative movement between said brake shaft and said motor drive shaft or tighten around said brake shaft to resist relative movement between said brake shaft and said motor drive shaft. 15. An architectural covering assembly for an architectural structure, the architectural covering assembly comprising: a motor including a motor housing and a motor shaft; a frame coupled to said motor housing; and a manual controller including a connector and a rotating member, said connector coupled to said motor shaft of said motor, wherein: said manual controller is configured to transfer torque from said rotating member to said connector when said rotating member is rotated via user input, such that said connector rotates said motor shaft to rotate said frame, and said manual controller is configured to resist movement of said connector when said motor is energized and said rotating member is not rotated via user input, such that said motor shaft is held substantially stationary with respect to the architectural structure such that said motor housing and said frame rotate relative to said motor shaft. 16. The architectural covering assembly of claim 15 , wherein said manual controller includes: a manual controller housing; a ring coupled to said manual controller housing; and a wrap spring disposed adjacent an inner surface of said ring. 17. The architectural covering assembly of claim 16 , wherein, when said rotating member is rotated, said rotating member engages said wrap spring to tighten said wrap spring such that said wrap spring disengages said ring to enable said rotating member to rotate said connector. 18. The architectural covering assembly of claim 17 , wherein, when torque is applied to said connector via activation of said motor, said connector engages said wrap spring to loosen said wrap spring such that said wrap spring engages said ring to prevent said connector from rotating. 19. The architectural covering assembly of claim 18 , wherein a sprocket of the manual controller housing includes one or more arms disposed adjacent one or more tangs of said wrap spring, and wherein said second connector includes one or more arms adjacent said one or more tangs of said wrap spring.
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