Universal operating device for a screen, such as a window covering
11505993 · 2022-11-22
Assignee
Inventors
- Ruben Hubert Jan de Vries (Zevenaar, NL)
- Bastiaan Franciscus Klein Tuente (Groenlo, NL)
- Harry Davids (Utrecht, NL)
- Wouter Hendriks (Enschede, NL)
- Thomas Johan Maria Ter Haar (Hengelo, NL)
Cpc classification
E06B9/78
FIXED CONSTRUCTIONS
E06B9/42
FIXED CONSTRUCTIONS
E06B2009/785
FIXED CONSTRUCTIONS
E06B2009/3265
FIXED CONSTRUCTIONS
International classification
E06B9/78
FIXED CONSTRUCTIONS
E06B9/42
FIXED CONSTRUCTIONS
Abstract
An operating device for a screen comprises: a first operating mechanism with a first operating element which is connected to a first movement transfer element connected by means of a first transmission to a drive element for a screen shaft. The first operating mechanism is configured to convert a linear movement of the first operating element to a rotational movement of the drive element for operating the screen shaft in a first rotational direction. The operating device further comprises a second operating mechanism comprising a second operating element which is connected to a second movement transfer element connected by means of a second transmission to the drive element. The second operating mechanism is configured to convert a linear movement of the second operating element to a rotational movement of the drive element for operating the screen shaft in a second rotational direction opposite to the first rotational direction.
Claims
1. An operating device for a screen, wherein the screen is provided with a screen shaft, said operating device comprising: a drive element for the screen shaft, comprising: a first operating mechanism comprising a first operating element wherein the first operating element is connected to a first movement transfer element connected by a first transmission to the drive element, wherein the first operating mechanism is configured to convert a linear movement of the first operating element to a rotational movement of the drive element for operating the screen shaft in a first rotational direction, a second operating mechanism comprising a second operating element wherein the second operating element is connected to a second movement transfer element connected by a second transmission to the drive element, wherein the second operating mechanism is configured to convert a linear movement of the second operating element to a rotational movement of the drive element for operating the screen shaft in a second rotational direction opposite to the first rotational direction, wherein the first operating mechanism comprises a first pull cord and the first movement transfer element comprises a first cord reel for winding up the first pull cord, wherein the second operating mechanism comprises a second pull cord and the second movement transfer element comprises a second cord reel for winding up the second pull cord, wherein the operating device comprises a recoil spring, wherein the recoil spring mutually connects the first pull cord and the second pull cord, wherein the first cord reel has a first central passage for a pin of a screen shaft holder and the first cord reel is provided with a first collar extending concentrically around the first central passage, wherein the second cord reel has a second central passage for the pin and the second cord reel is provided with a second collar extending concentrically around the second central passage, wherein the first cord reel and the second cord reel are arranged adjacently and completely enclose the recoil spring, wherein the recoil spring is arranged between the first collar and the second collar and a first end of the recoil spring is directly connected to the first collar and a second end of the recoil spring is directly connected the second collar.
2. The operating device as claimed in claim 1, wherein the first transmission is provided with a first unidirectional coupling and a first toothed wheel on the drive element for co-action with the first unidirectional coupling in an operational position, wherein the first transmission is further provided with a first activator for activating the operational position of the first unidirectional coupling, wherein the first cord reel is connected to the first activator, and wherein the second transmission is provided with a second unidirectional coupling and a second toothed wheel on the drive element for co-action with the second unidirectional coupling in an operational position, wherein the second transmission is further provided with a second activator for activating the operational position of the second unidirectional coupling, wherein the cord reel is connected to the second activator.
3. The operating device as claimed in claim 1, comprising a housing with a passage for connecting the screen shaft to the pin wherein the first cord reel and the second cord reel and the spring are accommodated in the housing.
4. The operating device as claimed in claim 2, wherein the first unidirectional coupling is provided with a central first body with a first opening and a number of flexible first arms and wherein the second unidirectional coupling is provided with a central second body with a second opening and a number of flexible second arms.
5. The operating device as claimed in claim 2, wherein the drive element is provided on an inner side with the first and second toothed wheels.
6. The operating device as claimed in claim 2, wherein the first unidirectional coupling is arranged around a connecting bush for the drive element, wherein the connecting bush is arranged on the pin.
7. The operating device as claimed in claim 2, comprising a housing with a passage for connecting the screen shaft to the pin wherein the first cord reel and the second cord reel and the spring are accommodated in the housing, wherein the second unidirectional coupling is arranged around a connecting bush for the drive element, wherein the connecting bush is arranged on the pin.
8. The operating device as claimed in claim 2, comprising a housing with a passage for connecting the screen shaft to the pin, wherein the first cord reel and the second cord reel and the spring are accommodated in the housing, wherein the first activator and the second activator are arranged coaxially around the screen shaft in the passage of the housing.
9. The operating device as claimed in claim 4, wherein the first activator is provided with a first flange with a number of first protrusions for bending the first arms outward in a radial direction of the first unidirectional coupling and wherein the second activator is provided with a second flange with a number of second protrusions for bending the second arms outward in a radial direction of the second unidirectional coupling.
10. The operating device as claimed in claim 5, wherein the first and second toothed wheels have a straight toothing and are arranged adjacently.
11. The operating device as claimed in claim 9, wherein each of the second protrusions is provided with a securing element, wherein the securing element extends in a peripheral direction of the second flange for locking one of the flexible second arms.
12. An operating device for a screen, wherein the screen is provided with a screen shaft, said operating device comprising: a drive element for the screen shaft: a first operating mechanism comprising a first operating element, wherein the first operating element is connected to a first movement transfer element connected by a first transmission to the drive element, wherein the first operating mechanism is configured to convert a linear movement of the first operating element to a rotational movement of the drive element for operating the screen shaft in a first rotational direction, a second operating mechanism comprising a second operating element, wherein the second operating element is connected to a second movement transfer element connected by a second transmission to the drive element, wherein the second operating mechanism is configured to convert a linear movement of the second operating element to a rotational movement of the drive element for operating the screen shaft in a second rotational direction opposite to the first rotational direction, wherein the first transmission is provided with a first unidirectional coupling and a first toothed wheel on the drive element for co-action with the first unidirectional coupling in an operational position, wherein the second transmission is provided with a second unidirectional coupling and a second toothed wheel on the drive element for co-action with the second unidirectional coupling in an operational position, wherein the first transmission is further provided with a first activator for activating the operational position of the first unidirectional coupling, wherein the first movement transfer element is connected to the first activator, and wherein the second transmission is further provided with a second activator for activating the operational position of the second unidirectional coupling, wherein the second movement transfer element is connected to the second activator, wherein the first unidirectional coupling is provided with a central first body with a first opening and a number of flexible first arms and wherein the second unidirectional coupling is provided with a central second body with a second opening and a number of flexible second arms.
13. The operating device as claimed in claim 12, comprising a housing with a passage for connecting the screen shaft to a pin of a screen shaft holder, wherein the first movement transfer element and the second movement transfer element and the spring are accommodated in the housing.
14. The operating device as claimed in claim 12, wherein the drive element is provided on an inner side with the first and second toothed wheels.
15. The operating device as claimed in claim 12, wherein the first unidirectional coupling is arranged around a connecting bush for the drive element, wherein the connecting bush is arranged on a pin of a screen shaft holder.
16. The operating device as claimed in claim 14, wherein the first and second toothed wheels have a straight toothing and are arranged adjacently.
17. The operating device as claimed in claim 12, comprising a housing with a passage for connecting the screen shaft to a pin of a screen shaft holder, wherein the first movement transfer element and the second movement transfer element and the spring are accommodated in the housing, wherein the first activator and the second activator are arranged coaxially around the pin in the passage of the housing.
18. The operating device as claimed in claim 12, wherein the first activator is provided with a first flange with a number of first protrusions for bending the first arms outward in a radial direction of the first unidirectional coupling and wherein the second activator is provided with a second flange with a number of second protrusions for bending the second arms outward in a radial direction of the second unidirectional coupling.
19. The operating device as claimed in claim 12, comprising a housing with a passage for connecting the screen shaft to a pin of a screen shaft holder, wherein the first movement transfer element and the second movement transfer element and the spring are accommodated in the housing, wherein the second unidirectional coupling is arranged around a collar around the passage of the housing.
20. The operating device as claimed in claim 18, wherein each of the second protrusions is provided with a securing element, wherein the securing element extends in a peripheral direction of the second flange for the purpose of locking one of the second flexible arms.
Description
DESCRIPTION OF THE DRAWING
(1) The invention will now be described in more detail with reference to the figures.
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DETAILED DESCRIPTION
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(12) Operating device 1 according to the invention comprises two operating mechanisms. Each operating mechanism has its own respective operating element 7, 8 which is connected to a respective movement transfer element 10, 20. Both movement transfer elements 10, 20 are received in a housing comprising two housing parts 2, 4. First housing part 2 has a central passage 3, second housing part 4 has a central passage 5, first movement transfer element 10 has a central passage 14 and second movement transfer element 20 has a central passage 24 for the purpose of connecting the screen shaft to pin 104 of screen shaft holder 103.
(13) Each movement transfer element is connected by means of an associated transmission to a drive element 60. The first operating mechanism is configured to convert a linear movement of first operating element 7 to a rotational movement of drive element 60 in clockwise direction. The second operating mechanism is configured to convert a linear movement of second operating element 8 to a rotational movement of drive element 60 in counterclockwise direction.
(14) The first transmission is provided with a first unidirectional coupling 31 and a first toothed wheel 33 on drive element 60 for co-action with first unidirectional coupling 31 in an operational position. The first transmission is further provided with a first activator 32 for activating the operational position of unidirectional coupling 31. First activator 32 is connected to first movement transfer element 10.
(15) The second transmission 40 is provided with a second unidirectional coupling 41 and a second toothed wheel 43 on drive element 60 for co-action with second unidirectional coupling 41 in an operational position. The second transmission is further provided with a second activator 42 for activating the operational position of second unidirectional coupling 41. Second activator 42 is connected to second movement transfer element 20.
(16) First activator 32 and second activator 42 are arranged coaxially round pin 104 in the passage of housing 2, 3.
(17) First unidirectional coupling 31 has a central first body 310 with a first opening 311 and a number of flexible first arms 312.
(18) Second unidirectional coupling 41 has a central second body 410 with a second opening 411 and a number of flexible second arms 412.
(19) First activator 32 has a first flange 321 with a number of first protrusions 322 and a first passage 323 with a first neck 324. Neck 324 is provided with first projections for co-action with a discontinuous collar 15 around central passage 14 on first cord reel 10.
(20) Second activator 42 has a second flange 421 with a number of second protrusions 422 and a second passage 423 with a second discontinuous collar 424 with second projections. The discontinuous collar is configured to be received in recesses 25 in passage 24 on second cord reel 20.
(21) Operating device 1 comprises a connecting bush 50 for receiving in drive element 60, which connecting bush is arranged on pin 104. Arranged with braking effect round connecting bush 50 are a number of throttle springs 51. The number of throttle springs preferably lies between one and five, and is most preferably three.
(22) First unidirectional coupling 31 is arranged clamping lightly round an outer end of connecting bush 50. Second housing part 4 is provided with an external collar 6 round central passage 5. Second unidirectional coupling 41 is arranged clamping lightly round collar 6. First toothed wheel 33 and second toothed wheel 43 are arranged adjacently on the inner side of drive element 60.
(23) Drive element 60 is configured for co-action with an end plug 107 intended to be received in a roller blind tube of roller blind system 100.
(24) Housing 2, 4 is rotatable and so is not dependent on the direction of installation.
(25) The operating device according to the invention can be used for both left or right-hand operation for a window covering.
(26) The operation of the operating mechanisms will be explained in more detail with reference to
(27) In the shown preferred embodiment the first operating mechanism comprises a first pull cord 11 and the first movement transfer element is a first cord reel 10 for winding up the first pull cord 11.
(28) In the shown preferred embodiment the second operating mechanism comprises a second pull cord 21 and the second movement transfer element is a second cord reel 10 for winding up the second pull cord 21.
(29) First pull cord 11 and second pull cord 21 are mutually connected by a spring, preferably a recoil spring 12. This recoil spring 12 is shown in
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(31) The other outer end of first pull cord 11 is connected to first operating element 7. Cord reel 10 is provided with a stop for first operating element 7 during winding up of first pull cord 11. In the shown preferred embodiment first operating element 7 is a bead chain and the narrowed cord passage on the underside of housing 4 functions as stop for the beads of bead chain 7.
(32) The outer end of first pull cord 11 is connected to an outer end of recoil spring 12. In the shown preferred embodiment this connection is indirect, i.e. via cord reel 10.
(33) Cord reel 20 is configured to guide second pull cord 21 along the periphery. In the shown preferred embodiment second cord reel 20 is provided with a second peripheral edge 28. Second cord reel 20 is also provided with a second collar 26 with a second recess 27. The other hook-like end of recoil spring 21 hooks into recess 27. Also situated in the second collar is a second outer cord passage 23 for passage of second pull cord 21.
(34) The other end of pull cord 21 is connected to the second operating element. Cord reel 20 is provided with a stop for second operating element 8 during winding up of second pull cord 21. In the shown preferred embodiment second operating element 8 is a bead chain and the narrowed cord passage on the underside of housing 4 functions as stop for the beads of bead chain 8.
(35) The outer end of second pull cord 21 is connected to an outer end of recoil spring 12. In the shown preferred embodiment this connection is indirect, i.e. via cord reel 20.
(36) The operation of the transmissions will be explained in more detail with reference to
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(39) In the variant of the transmission the second unidirectional coupling of
(40) When operating element 8 is operated in counterclockwise direction (arrow L), each protrusion 422 slides under the nearby arm 412 and forces it to bend outward in radial direction of unidirectional coupling 41. Hooks 413 engage in toothed wheel 43, as a result of which drive element 60 co-rotates in counterclockwise direction.
(41) When operating element 8 is no longer being operated by the user, recoil spring 12 ensures that activator 42 moves in clockwise direction (arrow R). As a result each securing element 426 slides partially over and locks the nearby arm 412. Drive element 60 can rotate freely round unidirectional coupling 41.
(42) It is noted that the number of arms of the unidirectional coupling can vary, preferably between two and four. The number of protrusions of the activator has to be the same. The securing element or locking element on the protrusion of the activator is optional. Although the variant of
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(44) Although the operating device according to the invention has been elucidated on the basis of a roller blind system, it will be apparent that the operating device is universally applicable with other types of window covering. A skilled person in the field will appreciate that this can be achieved by adapting the drive element for co-action with a type of plug other than the end plug for connection to the screen shaft of another type of window covering.
(45) The invention is of course not therefore limited to the described and shown preferred embodiments but extends to any embodiment falling within the scope of protection as defined in the claims and as seen in the light of the foregoing description and accompanying drawings.