Convertible child seat
09629476 ยท 2017-04-25
Assignee
Inventors
Cpc classification
A47D13/102
HUMAN NECESSITIES
International classification
Abstract
A convertible child seat has a frame assembly and a seat structure supported by the frame assembly. The seat structure defines a seating surface and is movable between at least an inclined seating position and a reclined sleeping position. A top tube assembly is coupled to a portion of the convertible child seat and is positioned above the seat structure spaced from the seating surface. The top tube assembly moves in concert with the seat structure when the seat structure is repositioned between the inclined seating position and the reclined sleeping position.
Claims
1. A convertible child seat comprising: a frame assembly; a seat structure supported by the frame assembly, the seat structure comprising a seat back portion and a seat bottom portion defining a seating surface and the seat back portion and the seat bottom portion are movable relative to each other between at least an inclined seating position and a reclined sleeping position; a top tube assembly coupled to the convertible child seat, positioned above the seat structure, and spaced from the seating surface; and at least one first vertical link and at least one second vertical link interconnecting the seat structure with the top tube assembly; wherein the seat back portion, the seat bottom portion, the at least one first vertical link, the top tube assembly, and the at least one second vertical link form a five-bar linkage, and wherein the top tube assembly moves in concert with the seat structure when the seat structure is repositioned between the inclined seating position and the reclined sleeping position to reduce or increase a distance between the top tube assembly and the seat structure.
2. A convertible child seat according to claim 1, further comprising a side wall extending between the top tube assembly and the seat structure and surrounding the seating surface.
3. A convertible child seat according to claim 2, wherein the side wall moves in concert with the top tube assembly when the seat structure is repositioned.
4. A convertible child seat according to claim 2, wherein the side wall is a fabric curtain suspended between the top tube assembly and the seat structure.
5. A convertible child seat according to claim 1, wherein the seat structure can be repositioned using only one hand.
6. A convertible child seat according to claim 5, wherein the seat structure, side wall, and top tube assembly move in concert with one another when the seat structure is repositioned.
7. A convertible child seat according to claim 5, wherein the one hand manipulates a release mechanism on the seat structure.
8. A convertible child seat according to claim 1, wherein movement of the seat back portion of the seat structure automatically moves the seat bottom portion of the seat structure and the top tube assembly when the seat structure is repositioned.
9. A convertible child seat according to claim 1, wherein a distance between the seat back portion of the seat structure and a corresponding head part of the top tube assembly is greater in the reclined sleeping position and lesser in the inclined seating position.
10. A convertible child seat according to claim 1, wherein a distance between the seat bottom portion of the seat structure and a corresponding foot part of the top tube assembly is greater in the reclined sleeping position and lesser in the inclined seating position.
11. A convertible child seat according to claim 1, wherein the frame assembly has a curved rocker base on which the convertible child seat rests.
12. A convertible child seat according to claim 1, further comprising an additional linkage coupled to the seat back portion and the seat bottom portion of the seat structure.
13. A convertible child seat according to claim 1, wherein the seat back portion and the seat bottom portion are pivotally connected to one another at a seat pivot joint, and wherein the seat back portion is pivotally connected to the frame assembly at a seat back pivot joint different from the seat pivot joint.
14. A convertible child seat according to claim 1, wherein repositioning the seat structure automatically changes the orientation of the top tube assembly.
15. A convertible child seat according to claim 1, wherein the seat back portion has an angle of about 10 degrees relative to a horizontal reference with the seat structure in the reclined sleeping position and has an angle of about 50 degrees relative to the horizontal reference with the seat structure in the inclined seating position.
16. A convertible child seat according to claim 14, wherein a distance between the seat back portion of the seat structure and a corresponding head part of the top tube assembly is greater in the reclined sleeping position and lesser in the inclined seating position, and wherein a distance between the seat bottom portion of the seat structure and a corresponding foot part of the top tube assembly is greater in the reclined sleeping position and lesser in the inclined seating position.
17. A convertible child seat according to claim 1, wherein the top tube assembly and a side wall or side curtain suspended therefrom are automatically repositioned between a bassinet height and a seat height relative to the seating surface when the seat structure is repositioned between the reclined sleeping position and the inclined seating position, respectively.
18. A convertible child seat according to claim 1, wherein the seat structure and frame assembly can be removably coupled to a frame structure of a child seating device.
19. A convertible child seat according to claim 18, wherein the child seating device is a child swing or a glider.
20. A convertible child seat according to claim 1, wherein the top tube assembly includes a head part coinciding with the seat back portion of the seat structure and a foot part coinciding with the seat bottom portion of the seat structure, and wherein the head part and foot part do not move relative to one another as the top tube assembly moves relative to the seat structure when the seat structure is repositioned.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Objects, features, and advantages of the present invention will become apparent upon reading the following description in conjunction with the drawing figures, in which:
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DETAILED DESCRIPTION OF THE DISCLOSURE
(13) The disclosed convertible child seat (hereinafter a child seat or seat) solves or improves upon one or more of the above-noted and/or other problems and disadvantages with prior known child seats. The disclosed child allows for one-hand operation to convert the seat structure from a bassinet position to a seating position and vice versa. The disclosed child seat has a top tube assembly coupled to the seat structure that is automatically repositioned when the child seat is repositioned or converted. The top tube assembly of the disclosed child seat is automatically repositioned from a bassinet position to a seating position and vice versa when the child seat is converted or repositioned. These and other objects, features, and advantages of the disclosed convertible child seat will become apparent to those having ordinary skill in the art upon reading this disclosure.
(14) Turning now to the drawings,
(15) Various features, components, aspects, and combinations thereof for the seat structure 26 and the child seat 20 are disclosed herein. However, the disclosure is not intended to limit the scope of the invention or claims to only those combinations of the disclosed specific features, components, and aspects. Each may be capable of standing alone. Each may be combined with any one or more of the other features, aspects, and components and yet fall within the spirit and scope of the present disclosure.
(16) The frame assembly 22 generally has a base 30 that is configured to rest on a surface. The base in this example is a generally rectangular ring shape with elongate sides 32 and shorter ends 34. The sides 32 and ends 34 are joined at rounded corners 36 in this example. However, the construction of the base 20 can vary and can instead have two or more separate sections that each can rest on a surface. However, the base 30 in this example is optionally curved in a lengthwise direction, i.e., the sides 32 are upwardly curved or bent, as shown in
(17) The disclosed frame assembly 22 also has a pair of side supports 40 that are arranged opposing one another across and on each side of the seat assembly 24. The side supports 40 extend up from the sides 32 of the base 30 and are coupled to and support the seat assembly 24 above the base 30. In this example, each side support 40 has a keyhole like shape with a circular tube or segment 42 at the upper end of the support. The exposed top ends of the segments 42 can define handles 44 to lift and carry the child seat 20. Each side support 40 also has one or more legs 46 that continue down from the circle like segment 42, as shown in
(18) The configuration and construction of the side supports 40 can be varied substantially from the design shown and yet fall within the scope of the disclosure. The side supports 40 should be capable of supporting the seat assembly 24 above the base 30 and the surface in a manner that is stable and safe for the child occupant of the child seat 20. The side supports 40 can be part plastic, part resilient composite, and/or part metal such as aluminum, steel, or the like. The components of the frame assembly are not intended to be limited to any particular materials for their construction. The frame assembly 22 might also be optionally capable of allowing or imparting a bouncer seat function. This can be provided in part by the configuration and in part by the material selection for one or more of the components of the base 30, side supports 40, and/or frame assembly 22.
(19) The seat structure 26 of the seat assembly 24 is depicted in
(20) Each of the seat back portion 50 and seat bottom portion 52 can be a plastic molded shell and each can be a stand-alone, one-piece component connected to the other. For example, in this example, the seat pivot joint 54 is created at pivot hubs 58 at each side of the seat structure 26. Though not shown in detail herein, each of the seat back and seat bottom portions 50, 52 can carry an integrated, molded hub section on each side of the seat structure. The hub sections on each side of the seat structure can pivotally join with one another in order to define a seat pivot axis S on each side of the seat structure and to form the pivot hubs 58 and seat pivot joints 54. Alternatively, either or both of the seat back and seat bottom portions 50, 52 can instead be formed of other materials and/or can be assembled from multiple parts, if desired.
(21) With reference to
(22) The seat structure 26 can be reconfigured between two or more different selectable positions, as depicted in
(23) In the reclined bassinet or sleeping position, the side wall or side curtain 28 is at a relatively greater distance from the seat structure to create the visual sleeping barrier surrounding the seating surface 56. In the inclined seating position, the top end of the seat back portion 50 and front edge of the seat bottom portion 52 are elevated closer to the respective head and foot parts 62, 64 of the top tube assembly 60. This results in the side wall or side curtain 28 being relatively shorter in the inclined seating position, reducing the visual barrier so that an infant seat occupant can see out from the seat.
(24) With reference to
(25) The linkage system also has a second link or rod 74 disposed on each side of the seat structure 26. Each second link 74 has an upper end that is fixed to a portion of the top tube assembly 60. In this example, the upper end of each second link 74 has a forward extending segment 76 that is coupled to its respective connector 66 on the top tube assembly 60. Each second link 74 also has a lower end that is pivotally connected to a side of the seat bottom portion 52 on its respective side of the seat structure 26. The second links 74 are connected to the top tube assembly 60 forward of the first links 72 and connected to the seat bottom portion 52 forward of the seat pivot axis S.
(26) The linkage system includes a second bar 78 that extends transversely across the frame assembly 22. Two free ends of the second bar 78 are bent to form rearward extending legs 80 that are connected to the side supports 40 at fixed locations, as depicted in
(27) With reference to
(28) The release mechanism 82 in this example also has a latch 88 that is provided within each of the pivot hubs 58 at the seat pivot axis S, as best illustrated in
(29) In other examples, the latches 88 can includes mating gear teeth, a dog and pawl arrangement, a detent arrangement, or other such latching components. The actuator 84 can be used to move the rod or rods 86, which in turn can disengage or release the latching ends 90 from the latch receivers or pockets 92, 94, 96, allowing the seat structure position to be adjusted. One or more springs or other biasing elements or devices can be utilized to bias the rod or rods 86 and the actuator 84 to the engaged or latched position, which in turn can lock or retain the seat structure 26 in a selected position. These types of release mechanisms are known in the art for other child seat products and for adjusting the incline/recline angle of the seat back on such products. The configuration and construction of the release mechanism 82 can vary without departing from the scope of the disclosure and claims.
(30) The seat back portion 50 and seat bottom portion 52 are pivotally connected to one another about the seat pivot axis S defined within the pivot hubs 58 along the seat bight region SB. The seat back portion 50 is also pivotally attached to the side supports at the fixed seat back pivot axis P defined by the first bar 70. When a user wishes to change the position of the seat assembly 24 relative to the frame assembly 22, the user can pull the actuator 84 in the direction of the arrow R shown in
(31) From the bassinet position to the seating position the user will lift, with the one hand that released the actuator, the top end of the seat back portion 50. In doing so, the seat back portion 50 will pivot about the fixed seat back pivot P. The top end of the seat back portion 50 will rise and the lower end at the seat bight region SB will fall. Thus, the seat pivot axis S will drop below the seat back pivot axis P as shown in
(32) The second link 74 will automatically drop slightly along with the rear edge of the seat bottom portion 52 because of the location of the pivot connection of the second link to the seat bottom portion being rearward of the axis B. This movement of the second link 74 thus automatically pulls the foot end 64 of the top tube assembly 60 downward (compare
(33) When the seat back portion reaches the desired position, such as the inclined seating position as depicted in
(34) The disclosed linkage system can include one or more components that may be considered part of the frame assembly, part of the seat assembly, part of the seat structure, and/or a stand-alone component distinct from these named sub-assemblies. The linkage system or any of its components need not be considered a part of any of these sub-assemblies.
(35) The disclosed convertible child seat 20 provides one seat that can be converted from a bassinet configuration or mode to an inclined seat configuration or mode. A bassinet has always been a great sleeping solution for young infants. An inclined seat can be used for short naps, but is also used for entertaining a child (such as for swinging, rocking, bouncing, etc.) and allows the child to see and engage with their surroundings. The disclosed child seat 20 easily converts from one position to the other without having to secondarily readjust the side wall or side curtain, or any other part of the seat. Also, the user can convert the child seat one-handed and with one easy fluid motion.
(36) When the seat back portion is inclined, the seat bottom portion also inclines to give a traditional infant seat shape, such as that provided by a traditional infant carrier, bouncer seat, or swing. The disclosed design differs from prior art seats in that the top tube or top bar assembly operates automatically and as a single unit. The top tube assembly can be a rigid top tube that tilts forward as a complete entity as the seat back portion is inclined to the seat position or mode. The result is a papasan-shaped seat, typical of many infant seats on the market. The disclosed seat can have a deep center that tapers to a more shallow head and foot area to support an infant seated in the child seat. The top tube assembly tilts forward using the disclosed linkage system, with linkage components on each side of the child seat. When the child seat is reclined to the bassinet mode or sleeping position, the child seat mimics a standard bassinet configuration, which helps convey to the consumer that it is indeed a sleeping solution.
(37) When the child seat is inclined to the seat position, the wave-like top tube assembly can offer a more open feel around the child's head, feet, and hips, while providing the required side containment at the child's shoulders. The contouring of the top tube assembly can be altered to achieve the desired positioning in each mode and the desired effect in each position. Side containment requirements are dictated by U.S. federal regulations. The contoured shape of the top tube assembly is also unique in comparison to prior art seats of this type, which have a generally flat configuration when viewed from the side. The disclosed top tube assembly 60 has a curved contour that dips toward the seating surface 56 nearer the center (i.e., nearer the side supports 40 and the seat pivot axis S) and nearer the head end and foot end. The disclosed top tube assembly 60 also is contoured so as to protrude out and away from the seating surface nearer a shoulder location and a knee location of a seated infant (i.e., between the center and the head end and between the center and the foot end).
(38) With the disclosed convertible child seat, the seat back and seat bottom portions adjust relative to each other to provide the desired seat angle along the seating surface. The disclosed child seat employs a single top tube assembly to form the bassinet top and to define the side wall or side curtain, which then tilts forward as the seat is inclined. The linkage system is unique in how it connects the top tube assembly to the seat bottom portion and seat back portion. There are many alternative ways in which this can be accomplished. Some ways would achieve the same result, while others might position the top tube assembly and seat structure components in slightly different positions. The contouring of the top tube assembly could be used to counteract such differences, if desired.
(39) The disclosed side wall or side curtain 28 can be a fabric material that loosely hands from the top tube assembly 60. The side wall or side curtain, however, can be formed of other materials and be configured so as to be fixed to one or both of the top tube assembly and the seat structure. The side wall or side curtain can also be formed of multiple pieces that together define the entire wall or can be one contiguous piece. The material can be opaque, translucent, mesh, and/or the like.
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(43) The handles 44 provided on the child seat 20 or something similar can be provided on the child seat 110 or other seat designs. Such handles can make it easier for a user to manipulate and carry the child seat. The disclosed child seats can use two linkages on each side which can replace the slot and second bar, if desired. Likewise, the first bar can be removed and the seat structure can be mounted separately and pivotally to each side support. The disclosed convertible child seats can offer a look that is consistent with standard bassinets. Also, the disclosed child seats have the potential to create an extended seat back portion for more toddler use, if desired.
(44) The disclosed top tube assembly is a one-piece structure, whether constructed of one or more than one part. The top tube assembly does not need separate action to move any part of the assembly. The disclosed top tube assembly can also be shaped so that it is wider at the top and bottom to give a more open feel while narrower at the shoulders to meet Federal regulations and to convey a snug seat.
(45) The angle adjustments between the lying flat or sleeping position and the seated or seat position can vary from about 10 degrees up to about 50 degrees. This angle should not be any less than 10 degrees if the seat is to include a safety harness, per Federal regulation. The convertible child seat can also have one or more intermediate seat angles, such as about 30 degrees.
(46) The disclosed convertible child seats can also be easily operated. The seats can be adjusted using only one hand. The one hand motion can adjust the seat incline angle as well as the top bar position and side wall height all at the same time with the same motion.
(47) Although certain convertible child seats and features, aspects, and components thereof have been described herein in accordance with the teachings of the present disclosure, the scope of coverage of this patent is not limited thereto. On the contrary, this patent covers all embodiments of the teachings of the disclosure that fairly fall within the scope of permissible equivalents.