The present invention relates generally to a cord connector and more particularly to a cord connector that includes a plurality of housing members that are releasably fastenable to each other by a magnetic connection.
Cord connectors associated with window coverings including blinds, shades and the like that include a breakaway feature are known. Typically, cord connectors are designed to bundle a plurality of cords together to provide a more aesthetically pleasing appearance and, in many situations, to aid in simplifying the use of the cords by requiring the operation of only a single cord. However, several deaths each year are attributed to strangulation by loops formed from cords associated with window coverings. The breakaway feature is intended to prevent an individual, particularly a child that may become tangled in the plurality of cords associated with a cord connector, from suffocating. That is, when a force above a threshold level is applied to the cord connector, the housing elements of the connector will separate from each other.
The present invention is directed broadly to a breakaway cord connector for three or more cords that includes a plurality of magnets that are releasable upon an application of force. In an embodiment, a breakaway cord connector for releasably connecting cords associated with a window covering comprises three substantially similar housing members including a first housing member, a second housing member and a third housing member that each include a curved external sidewall, a top wall extending from the curved external sidewall that includes a through hole, a base extending from the curved external sidewall, a protrusion extending from the curved external sidewall between the top wall and the base and magnets fixed at the protrusion. Cords are connectable to each of the housing members. These cords include a first cord being connectable to the first housing member, a second cord being connectable to the second housing member and a third cord being connectable to the third housing member. The housing members are configured to be releasably connectable to each other such that the magnets of the housing members are aligned with each other in an assembled state.
In an embodiment, at least two of the housing members have identical features. In an embodiment, each of the housing members further include a first sidewall and a second sidewall at that converge at a 120° angles.
In an embodiment, the protrusion of each of the first, second and third housing members includes a first vertical sidewall with a first circular recess formed therein and a second vertical sidewall with a second circular recess formed therein.
In an embodiment, each of the first, second and third housing members includes a first magnet that is arranged within the first recess and a second magnet that is arranged within the second recess, one of the magnets having a positive polarity and the other of the magnets having a negative polarity. In an embodiment, the magnets of the first, second and third housing member are aligned in an assembled state such that a positive magnet of each of the first, second and third housing members is aligned with a negative magnet of each of the first, second and third housing members to releasably fasten the housing members to each other.
In an embodiment, the base of the third housing member is offset from a distal end of the curved vertical sidewall toward the top wall. In an embodiment, the base of the third housing member includes a semicircular protrusion extending outwardly therefrom and away from the curved vertical sidewall. In an embodiment, the base of the first housing member and the base of the second housing member are configured and adapted to be contactable with an outer surface of the base of the third housing member and an inner surface of the curved vertical sidewall of the third housing member.
In an embodiment, the amount of force required to release the connecting elements from each other is less than 3 pounds.
In an embodiment, the first housing member, the second housing member and the third housing member in combination form a cylindrical structure.
In an embodiment, the housing members are comprised of plastic, metal, composite or wood.
In an embodiment, a breakaway cord connector for releasably connecting cords associated with a window covering comprises four substantially similar housing members including a first housing member, a second housing member, a third housing member and a fourth housing member. The housing members each including a curved external sidewall, a top wall extending from the curved external sidewall that includes a through hole, a base extending from the curved external sidewall, a protrusion extending from the curved external sidewall between the top wall and the base and magnets fixed at the protrusion. The breakaway connector also comprises four cords including a first cord being connected to the first housing member, a second cord being connected to the second housing member, a third cord being connected to the third housing member, and a fourth cord being connected to the fourth housing member. The housing members are configured to be releasably connectable to each other such that the magnets of the housing members are aligned with each other in an assembled state.
In an embodiment, at least three of the housing members have identical features. In an embodiment, each of the housing members further include a first sidewall and a second sidewall at that converge at a 90° angle. In an embodiment, the protrusion of each of the first, second, third and fourth housing members includes a first vertical sidewall with a first circular recess formed therein and a second vertical sidewall with a second circular recess formed therein. In an embodiment, each of the first, second, third and fourth housing members each include a first magnet that is arranged within the first recess and a second magnet that is arranged within the second recess, one of the magnets having a positive polarity and the other of the magnets having a negative polarity.
In an embodiment, the magnets of the first, second, third and fourth housing member are aligned in an assembled state such that a positive magnet of each of the first, second, third and fourth housing members is aligned with a negative magnet of each of the first, second, third and fourth housing members to releasably fasten the housing members to each other.
In an embodiment, the base of the third housing member is offset from a distal end of the curved vertical sidewall toward the top wall.
In an embodiment, the base of the fourth housing member includes a semicircular protrusion extending outwardly therefrom and away from the curved vertical sidewall.
In an embodiment, the base of the first housing member, the base of the second housing member and the base of the third housing member are configured and adapted to be contactable with an outer surface of the base of the fourth housing member and an inner surface of the curved vertical sidewall of the fourth housing member.
In an embodiment, the amount of force required to release the connecting elements from each other is less than 3 pounds.
In an embodiment, the first housing member, the second housing member, the third housing member and the fourth housing member in combination form a cylindrical structure.
As shown in
The second housing member 104 is similar to the first housing member 102. Like the first housing member 102, the second housing member 104 includes a first vertical sidewall 144 that has an upper end 146 and a lower end 148 and a second vertical sidewall 150 that has an upper end 152 and a lower end 154. The sidewalls 144 and 150 meet at an angle of about 120°. A horizontal flat top wall 156 extends between the upper ends 146, 152 of the vertical sidewalls 144, 150, a horizontal flat base wall 158 extends between the lower ends 148, 154 of the vertical sidewalls 144, 150 and a central protrusion 160 extends from the vertical sidewall 105 centrally between the top wall 156 and the base wall 158. An upper curved cavity 162 is formed between the top horizontal wall 156 and the central protrusion 160 and a lower curved cavity 164 is formed between the central protrusion 160 and the base wall 158. The top horizontal wall 156 includes an opening 166 that is substantially centrally located through which a third cord 168 can extend. The upper and lower cavities 162, 164 are large enough to each receive the third cord 168 that can be connected to the housing member 104 by knotting the cord 168. The central protrusion 160 includes a first vertical sidewall 168 and a second vertical sidewall 170 that are orientated such that they come to a central apex 172, and they meet at an angle of about 120°. A first circular depression 174 extends centrally into the first vertical sidewall 168 to house one of the connecting elements 108, 110 and a second circular depression 176 extends centrally into the second vertical sidewall 170 to house the other of the magnets 108, 110. The magnets 108, 110 can be press fit and/or glued into the depressions 174, 176 such that the magnets 108, 110 are flush with the surface of the side walls 168, 170. The horizontal base 158 includes a semi-circular recess 178 located between the lower ends 148, 154 of the vertical sidewalls 144, 150 in which a second cord 142 can be arranged.
The third housing member 106 includes a first vertical sidewall 180 that has an upper end 182 and a lower end 184 and a second vertical sidewall 186 that has an upper end 188 and a lower end 190. The sidewalls 180 and 186 meet at an angle of about 120°. A horizontal flat top wall 192 extends between the upper ends 182, 188 of the vertical sidewalls 180, 186, a horizontal flat base wall 194 extends near the lower ends 148, 154 of the vertical sidewalls 180, 186, offset from the lower ends 184, 190 toward the upper ends 182, 188 and a central protrusion 196 extends from the vertical sidewall 107 centrally between the top wall 192 and the base wall 194. An upper curved cavity 198 is formed between the top horizontal wall 192 and the central protrusion 196 and a lower curved cavity 200 is formed between the central protrusion 196 and the base wall 194. The top horizontal wall 192 includes an opening 202 that is substantially centrally located through which a fourth cord 204 can extend. The upper and lower cavities 198, 200 are large enough to each receive the fourth cord 204 that can be connected to the housing member 106 by knotting the cord 204. The central protrusion 196 includes a first vertical sidewall 206 and a second vertical sidewall 208 that are orientated such that they come to a central apex 210, and they meet at a 120° angle. A first circular depression 212 extends centrally into the first vertical sidewall 206 to house one of the connecting elements 108, 110 and a second circular depression 214 extends centrally into the second vertical sidewall 208 to house the other of the connecting elements 108, 110. The magnets 108, 110 can be press fit into the depressions 212, 214 such that the magnets 108, 110 are flush with the surface of the side walls 206, 208. The horizontal base 194 includes a substantially semicircular protrusion 216 in which an opening 218 is formed. The second cord 142 can be arranged through the opening 218 and a collar 220 can contact the horizontal base to space the cord 142 from directly contacting a surface of the base. Extending from the cord 142 at an end of the second cord 142 not connected to the third housing member 106 is a cylindrical housing 222. The cylindrical housing 222 includes a pot-shaped opening 224 extending from a first end and a through hole 226 formed in a second end. The cord 142 extends through the hole 226 and is fastenable, for example, by knotting the cord 142 within the pot-shaped opening 224.
In an assembled state, the bases of the first and second housing members 102, 104 rest on the substantially semicircular protrusion 216 of the third housing member 106. The substantially semicircular protrusion 216 aids to substantially prevent vertical movement of the first and second housing members 102, 104 in relation to the third housing member 106 such that the housing members 102, 104, 106 nest amongst each other. The housing members 102, 104, 106 can be made of any material that is known or may become known, including, but not limited to plastics, metals, composites and wood.
As shown in
Although embodiments herein depict embodiments of breakaway cord connectors that include three and four housing members, as will be recognized by a person of ordinary skill in the art, any number of housing members can be combined to form the breakaway cord connector for any number of cords. Additionally, each housing member can be formed of any shape and/or size that is known or may later become known.
Further, the connectors 100, 300 are believed to be in compliance with the standards set forth in the American National Standard for Safety of Corded Window Covering Products, ANSI/WCMA A100.1-2012 (Approved American National Standard/Window Covering Manufacturers Association, Incorporated). The document outlines the requirements for products, including breakaway cord connectors to encourage the development of devices and methods that further improve safety of window covering products. The test procedure for cord release and cord shear can be found in Appendix B of the standards.
The foregoing description and accompanying drawings illustrate the principles, exemplary embodiments, and modes of operation of the invention. However, the invention should not be construed as being limited to the particular embodiments discussed above. Additional variations of the embodiments discussed above will be appreciated by those skilled in the art and the above-described embodiments should be regarded as illustrative rather than restrictive. Accordingly, it should be appreciated that variations to those embodiments can be made by those skilled in the art without departing from the scope of the invention.
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20160017655 A1 | Jan 2016 | US |