Rail for an architectural covering
US-2016230455-A1 · Aug 11, 2016 · US
US9903157B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9903157-B2 |
| Application number | US-201415026532-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 30, 2014 |
| Priority date | Oct 1, 2013 |
| Publication date | Feb 27, 2018 |
| Grant date | Feb 27, 2018 |
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Official abstract text for this publication.
A rail, such as a head rail, for an architectural covering. The rail includes a housing having elongate walls extending along a length of the housing and defining therebetween a width of the housing. A drive shaft is rotatable about a drive axis extending along the length of the housing and is configured to wind and unwind lift cords or blind material of the architectural covering. A spring assist module, e.g. a spring motor has an output shaft rotatable about an output axis with rotation of the drive shaft. The spring assist module is mounted in the housing with the output axis parallel to the drive axis. The spring assist module extends outwardly in a width direction beyond the width of the housing.
Opening claim text (preview).
The invention claimed is: 1. A rail for an architectural covering, said rail comprising: a housing having opposing front and rear walls extending in a lengthwise direction along a length of said housing, said front and rear walls spaced apart in a widthwise direction and defining therebetween a width of said housing; a drive shaft rotatable about a drive axis extending in the lengthwise direction of said housing; and a spring assist module having an output shaft rotatable about an output axis, said output shaft coupled to said drive shaft for rotation therewith; wherein: one of said rear wall or said front wall of said housing defines an aperture; said spring assist module is configured to be installed from an exterior of said housing through said aperture in said widthwise direction; and when installed relative to said housing, a portion of said spring assist module extends outwardly through said aperture in the widthwise direction to the exterior of said housing. 2. A rail according to claim 1 , wherein said spring assist module includes a spring motor having a spring tape unwindable from a storage axis parallel with said output axis of said spring assist module and configured to wind resiliently around said output shaft of said spring assist module with rotation of said output shaft of said spring assist module. 3. A rail according to claim 2 , wherein said spring motor includes a casing for surrounding and supporting at least said spring tape wound about said storage axis. 4. A rail according to claim 3 , wherein a portion of said casing extends outwardly through said aperture in the widthwise direction of said housing to the exterior of said housing. 5. A rail according to claim 1 , wherein said output axis of said spring assist module is offset from said drive axis in the widthwise direction of said housing. 6. A rail according to claim 1 , wherein: said rear wall of said housing is configured to be mounted against an architectural surface with a said front wall of said housing facing away from the architectural surface; and the output axis of said spring assist module and said drive axis are offset from each other in the widthwise direction of said housing. 7. A rail according to claim 6 , wherein said output axis of said spring assist module is disposed between said front wall of said housing and said drive axis in the widthwise direction of said housing. 8. A rail according to claim 2 , wherein said spring tape has an output end connected to said output shaft and a storage end which is not connected to any shaft and wind freely around said storage axis. 9. A rail according to claim 2 , wherein aid spring tape is configured to exert an increased torque on said drive shaft as more of said spring tape is wound around said storage axis. 10. A rail according to claim 2 , wherein: said spring tape has a stroke from fully wound around said storage axis to fully wound around said output axis; and said stroke corresponds to a rotation of said drive shaft to extend a lift cord or blind material by at least 1.75 m. 11. A rail according to claim 1 , wherein said output shaft is connected directly to said drive shaft for rotation therewith. 12. A rail according to claim 1 , further including: a coupling member connecting said output shaft to said drive shaft, said coupling member having a first end rotationally fixed to said output shaft and rotatable about said output axis, id coupling member having a second end rotationally fixed to said drive shaft and rotatable about said drive axis, and said coupling member having a middle portion extending between said first and second ends. 13. A rail according to claim 12 , wherein said first end of said coupling member is offset from said second end of said coupling member in the lengthwise direction of said housing. 14. A rail according claim 12 , wherein said coupling member is a flexible member. 15. A rail according to claim 12 , wherein said coupling member is a torsion spring or a rubber rod. 16. A rail according to claim 1 , further including at least one lift spool mounted to said drive shaft for rotation therewith, said at least one lift spool being configured to wind and unwind a respective lift cord therefrom. 17. A rail according to claim 16 , wherein said at least one lift spool is conical with respect to said drive axis. 18. A rail according to claim 1 , further including a tilt cord and a tilt pulley keyed to said drive shaft for supporting said tilt cord. 19. A rail according to claim 18 , wherein said tilt cord is looped around at least half of a circumference of said tilt pulley. 20. A rail according to claim 1 , wherein said rail corresponds to at least one of a head rail, a bottom rail, or an intermediate rail for an architectural covering. 21. An architectural covering, comprising: a first rail including a housing having opposing front and rear walls extending in a lengthwise direction along a length of said housing, said front and rear walls spaced apart in a widthwise direction and defining therebetween a width of said housing; an opposite second rail parallel with said first rail; a drive shaft rotatable about a drive axis extending in the lengthwise direction of said housing; a spring assist module having an output shaft routable about an output axis, said output shaft coupled to said drive shaft for rotation therewith; a plurality of slats arranged parallel with said first rail and between said first rail and said opposite second rail; at least one lift spool mounted to said drive shaft for rotation therewith, and a lift cord secured at one end to said opposite second rail and at another end to said lift spool and arranged to be wound and unwound from said lift spool so as to retract and extend said opposite second rail and said slats; and at least one tilt pulley mounted to said drive shaft for rotation therewith, and a tilt cord looped around said tilt pulley and connecting with both sides of a ladder supporting said slats; wherein: one of said rear wall or said front wall of said housing defines an aperture; said spring assist module is configured to be installed from an exterior of said housing through said aperture in said widthwise direction; and said tilt pulley is configured to slip relative to said tilt cord when said tilt cord resists movement as a result of said slats being fully tilted against each other.
Details of operating devices, e.g. pulleys, brakes, spring drums, drives ({operating devices E06B9/68} ; devices of general interest specially adapted or mounted for storing and repeatedly paying-out and re-storing lengths of material B65H75/34) · CPC title
Cordless, i.e. user interface without cords · CPC title
Structure or support of upper box · CPC title
Other details · CPC title
Spring motors (spring-driven toys A63H; springs in general F16F; precision time mechanisms, e.g. for clocks or watches, G04B) · CPC title
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