The present invention is directed to illuminable and interactive toys.
A toy can depict one of various characters or objects that have defining features that are preferably illuminable or changeable in appearance.
In embodiments, a toy comprises a housing and a unitary thermoplastic light pipe mounted to the housing. The housing comprises a first exterior surface, a second exterior surface, and a feature at the second exterior surface. The light pipe comprises a collector portion proximate the first exterior surface of the housing, a transmitter portion, and an output portion proximate the feature of the housing. The surface area of the collector portion is greater than or equal to twice the surface area of the output portion. The light pipe is configured to transmit light incident on the first exterior surface of the housing to the output portion, illuminating the feature of the housing. The light pipe provides a maximum angle of deflection of about 35-45 degrees.
In embodiments, the light pipe comprises at least one curve that is less than or equal to a maximum angle of deflection.
In embodiments, the maximum angle of deflection is about 41 degrees.
In embodiments, the light pipe is formed of PMMA.
In embodiments, the light pipe comprises two or more collector portions.
In embodiments, the light pipe comprises two or more output portions.
In embodiments, the light pipe is only attached to the housing at one or both of the collector portion and the output portion.
In embodiments, the collector portion is a truncated conical shape.
A feature and benefit of embodiments is the collector portion provided in a portion of a base of the toy.
A feature and benefit of embodiments is the output portion mounted in one or more of a head, eyes, hands, clothing, and weapon or accessory of the toy.
A feature and benefit of embodiments is the toy does not comprise the light source.
In other embodiments a toy system comprises a mount, a light source, and a toy. The toy comprises a base sized to support the toy on the mount, a housing comprising a first exterior surface, a second exterior surface, and a feature at the second exterior surface, and a light pipe mounted to the housing. The light pipe comprises a collector portion proximate a first exterior surface of the housing, a transmitter portion, and an output portion proximate the feature of the housing. The light pipe is configured to transmit light from the light source to the output portion, illuminating the feature of the housing.
In embodiments, the light pipe comprises at least one curve that is less than or equal to a maximum angle of deflection, wherein the maximum angle of deflection is about 35-45 degrees.
In embodiments, the mount comprises a predetermined placement area for the base of the toy, wherein the light source is configured to illuminate a portion of the base of the toy when the base of the toy is located in the placement area of the mount.
In embodiments, the mount comprises two or more predetermined placement areas corresponding to two or more toys having different features.
A feature and benefit of embodiments is the mount is an elevated platform configured to allow ambient light to reach the base of the toy when the toy is on the elevated platform, wherein the light pipe is configured to transmit said ambient light from the base of the toy to the output portion of the light pipe.
In embodiments, the light source comprises a display of an electronic device, the display configured to show: an outline of a base of said toy defining a placement area, an illumination area corresponding to a collector portion of the light pipe, and an activation button.
In embodiments, an electronic device comprises the mount and the light source.
A feature and benefit of embodiments is the toy comprising two or more toys, the light source configured to output a different color light to each of the two or more toys.
A feature and benefit of embodiments is the toy comprising a first toy and a second toy having different features; the mount comprising a first placement area corresponding to the base of the first toy and a second placement area of the second toy; and the light source comprising a first light source corresponding to the first placement area of the mount and a second light source corresponding to the second placement area of the mount, wherein the first light source is configured to illuminate the collector portion of the light pipe at the base of the first toy and to not illuminate the collector portion of the light pipe at the base of the second toy, and wherein the second light source is configured to illuminate the collector portion at the base of the second toy and to not illuminate the collector portion at the base of the first toy.
The above summary of the various representative embodiments of the invention is not intended to describe each illustrated embodiment or every implementation of the invention. Rather, the embodiments are chosen and described so that others skilled in the art can appreciate and understand the principles and practices of the invention. The Figures in the detailed description that follow more particularly exemplify these embodiments.
The invention can be completely understood in consideration of the following detailed description of various embodiments of the invention in connection with the accompanying drawings, in which:
While the invention is amenable to various modifications and alternative forms, specifics thereof have been depicted by way of example in the drawings and will be described in detail. It should be understood, however, that the intention is not to limit the invention to the particular embodiments described. On the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the invention as defined by the appended claims.
Toy and Toy Housing
The housing 22 and the light pipes 24, 26 are configured such that the light pipe 24 may use light from a light source 70 incident on one surface of the housing 22 and transmit the light through the light pipe 24 to another surface of the housing 22, such as an upper front surface 52 at the first and second eyes 34, 36 of the face 32. In one embodiment, the light pipes 24, 26 transmit light from a light source 70 incident on a bottom surface 50 of a base of the housing 22 through the interior of the housing 22 and to a feature 52 on another surface of the housing, for example, but not limited to, the feature 52 being the first and second eyes 34, 36 on an upper surface 54 of the housing 22 in the face 32. In comparing
In certain embodiments, the housing 22 and light pipes 24, 26 are formed by injection molding. However, other manufacturing methods may be used including three-dimensional printing or machining. For example, in some embodiments, the light pipes 24, 26 are coextensive with the other parts of the toy 20, i.e. the toy 20 is one solid continuous piece of material, with the light pipes 24, 26 comprising portions of the toy 20 that are able to transmit light. In other embodiments, the light pipes 24, 26 are coextensive with only a portion of the toy 20 or are formed separately from the toy 20.
The housing 22 may be comprised of one or more components assembled together. In one embodiment, the housing 22 is comprised of two components, a front component 60 (
The housing 22 and the light pipes 24, 26 may be assembled by any known techniques including mechanical connections such as a snap fit or a pressure fit, or by use of adhesives, welding, rivets, screws, ribbing, or other fasteners.
In certain embodiments, the toy 20 does not include any internal electronics or batteries. In other embodiments, the toy may include electronics and/or batteries (not shown) inside the toy 20 for any purpose, including additional or supplemental illumination. For instance, the electronics and/or batteries may be used for emitting sound from the toy 20 or actuating movement of the toy 20. The base 28 of the toy 20 may include features such as tabs 56 and slots 58 (
As noted, many variations of the toy and the housing are contemplated and applicable to the present invention. In some embodiments, the housing 22 forms the shape of a humanoid figurine, an animal, a vehicle, a weapon, a building, or some other object or portion thereof. In other embodiment, the housing 22 forms a geometric shape. In some embodiments, a toy 120 (
Light Pipe
One embodiment of light pipe 24 is shown isolated in
In certain embodiments, each light pipe 24 comprises a collector portion 72, a transmitter portion 74, and an output portion 76. The collector portion 72, transmitter portion 74, and output portion 76 work together such that light incident on the collector portion 72 may be transmitted through the light pipe 24 to the output portion 76 with minimal loss of light from the light pipe 24 in between the collector and output portions. In certain embodiments, the outer surface of light pipe 24 is smooth.
In certain embodiments, the light pipe 24 is comprised of a thermoplastic such as poly (methyl methacrylate), or PMMA. In other embodiments, the light pipe 24 is made from a material selected from the group consisting of glass, crystal, acrylics, PMMA, PVC, ABS, polycarbonate, cycloolefin copolymers, PMMI, and silicones. Various other materials and arrangements are contemplated. For example, the light pipe 24 may be comprised of a transparent or clear material, while in other embodiments, the light pipe is comprised of a material that is able to transmit light and is tinted or colored. In another embodiment, the light pipe 24 and each portion thereof comprises a solid unitary piece of material. In still another embodiment, each portion of the light pipe 24 is made from separate pieces of material, which may have their own properties. The light pipe 24 or portions thereof may be supplemented with internal voids or channels or roughened or otherwise modified surfaces.
In one embodiment, the light pipe 24 is surrounded by air in the interior of the housing 22, in other words, the light pipe 24 is only held within the housing 22 at its ends. In another embodiment, the light pipe 24 is surrounded in a cladding material such as an opaque material. In still further embodiments, the light pipe 24 is integral to and coextensive with the housing.
In certain embodiments, the light pipe 24 is calibrated to transmit light in view of its material, shape, and other properties. In some embodiments, the light pipe 24 comprises one continuous piece and is designed with only smooth internal and external surfaces and gradual curves while avoiding sharp edges and sharp bends. For example, a portion or a majority of the light pipe 24 may have a consistent curve defined by a large radius R (
Collector
In one embodiment, the collector portion 72 includes a collection surface 80 and a condenser or collimator (not shown) or other such optical lenses for capturing and/or manipulating light. The collection surface 80 comprises a two-dimensional surface with a corresponding surface area. The collection surface 80 is configured to capture or transmit light from an external source such as a diffuse light source 70 such as a smartphone or tablet screen, or even ambient light, and across the collection surface and into the light pipe 24. The collection surface 80 may take on many different shapes including a circular shape, an elliptical shape, a polygonal, or free form shape. In addition, the collection surface 80 may be flat, or a three dimension shape such as convex, concave, smooth, contoured, or include bends or other features. In one embodiment, the collection surface 80 comprises a flat, circular or elliptical two-dimensional shape.
The condenser or collimator is a lens that comprises one or more three-dimensional geometric shapes. The condenser is configured to transmit light from the collection surface to the transmitter portion. In certain embodiments, the condenser portion 72 changes shape from the larger surface area of the collection surface 80 to the smaller diameter of the transmitter portion 74. The condenser may take on many different shapes including a truncated polyhedron, cone, cylinder, sphere, or other geometric shape. In embodiments shown, for example, in
The collector portion 72 and, in particular, the collection surface 80, may be located proximate to any portion of the toy housing 22. In one embodiment, the collector portion 72 is located within the base 28 and/or feet 46 of the toy 20 and the collection surface 80 is facing downward when the toy is positioned upright on its base 28. Other locations may include vertical surfaces of the base 28 or any area of the housing 30 of the toy 20.
Transmitter
In one embodiment, the transmitter portion 74 is connected to the collector portion 72 on one end and the output portion 76 on the other end. The transmitter portion 74 is configured to transmit light from the collector portion 72 to the output portion 76. In some embodiments, the transmitter portion 74 may include one or more optical lenses (not shown) for transmitting and/or manipulating light.
In certain embodiments, the transmitter portion 74 comprises one or more three-dimensional geometric shapes. The transmitter portion 74 may take on many different shapes including a polyhedron, cone, cylinder, sphere, or other geometric shape. In one embodiment, the transmitter portion 74 is generally tubular in shape. The transmitter portion 74 may be linear or fully or partially curved or bent. In one embodiment, the transmitter portion 74 comprises a cylinder or tube with a maximum bend angle as discussed above.
Output
In one embodiment, the output portion 76 is connected to the transmitter portion 74 and further comprises an output surface 82. In one embodiment, the output portion 76 corresponds to the feature 52 of the toy 20 to be illuminated such as the eyes 34, 36 of the toy, the details of the costume of the toy, or another accessory of the toy. In some embodiments, the output portion 76 may include one or more optical lenses (not shown) for emitting and/or manipulating light.
The output surface 82 comprises a surface with a corresponding surface area. The output surface 82 may take on many different shapes including a circular shape, an elliptical shape, or a polygonal shape. In addition, the output surface 82 may be flat or two dimensional, or may form a three-dimensional shape such as convex, concave, smooth, contoured, or include bends or other features. In one embodiment, the output surface 82 comprises a smooth surface without any bends or other features. Such a smooth surface allows for a more uniform light distribution across the output surface 82.
In certain embodiments, the output area does not include sharp interior corners or large interior shapes. In further embodiments, the surface area of the output portion 76 is not larger than the area of the cross-section of the transmitter portion 74. In still further embodiments, the surface area of the output portion 76 is not more than 10% larger than the area of the cross-section of the transmitter portion 74. In other embodiments, the surface area of the output portion 76 is not more than 20% larger than the area of the cross-section of the transmitter portion 74. In further embodiments, the surface area of the output portion 76 is not more than 50% larger than the area of the cross-section of the transmitter portion 74.
Correspondence Among Collector, Transmitter, and Output Portions
In one embodiment, the surface area of the collection surface 80 of the collector portion 72 has a size ratio compared to the surface area of a transverse cross-section of the transmitter portion 74. In other embodiments, the surface area of the collection surface 80 of the collector portion 72 has a size ratio compared to the surface area of the output surface 82 of the output portion 76. In some embodiments, the size ratio is about 2×, wherein, for example, the surface area of the collection surface 80 is about two times the size of the surface area of a transverse cross-section of the transmitter portion 74. In other embodiments, the size ratio is greater than about 2×. In other embodiments, the size ratio is in a range of from about 2× to 10×. In still other embodiments, the size ratio is about 7.5×. In the example shown in
In various embodiments, one or more collector portions 72 may be connected to one or more transmitter portions 74 and/or the one or more transmitter portions 74 may be further connected to one or more output portions 76. For instance, as shown in
In one embodiment, the design of the collector portion 72, transmitter portion 74, and output portion 76 as described in certain embodiments herein are unexpectedly effective at transmitting light incident on the collection surface 80 to the output surface 82. In one embodiment, the design of the collector, transmitter, and output portions is such that ambient light incident on the collection surface 80 is clearly visible at the output portion 76 and stands out even in ambient light such as shown in
Toy System
Light Illumination Source
The toy may be illuminated by any light source 70. In certain embodiments, the light illumination source 70 is a display 90 that is part of an electronic device 92 such as a smartphone or tablet having a screen that is generally operable in a horizontal condition. In other embodiments, the light source 70 is an artificial light source such as a flashlight, LED or a lamp. In other embodiments, the light source 70 is a surface such as a table, paper, mirror, or polished surface. In those embodiments, the toy 20 may be held at a certain distance away from the light source 70, and the light is reflected from the light source 70 and into the collector portion 72. In some embodiments, the light pipe 24 transmits an effective amount of illumination to the output portion 76 from such reflected light, or even ambient light when the collector portion 72 is facing a light source 70 at a distance, e.g. an artificial light source or the sun or moon.
In one embodiment, the toy 20 and collector portion 72 may be placed directly on a light source 70, allowing the light source 70 to also function as a mount 94 for the toy. In other embodiments, the toy 20 and collector portion 72 may be positioned in proximity from the light source 70. In any embodiment, the housing 22 and one or more light pipes 24, 26 are configured such that the light pipes 24, 26 may use light from the light source 70 incident on one surface of the housing 22 and transmit it through the one or more light pipes 24, 26 to another surface of the housing 22 as discussed herein.
Light Source and Mount—Electronic Device Display
In one embodiment, the electronic device 92 including the display 90 is programmed to emit light from the display 90. One skilled in the art will appreciate that the electronic device 92 comprises the requisite battery, memory, and computer-readable media to run a program applicable to the present disclosure. The light emitted by the display 90 may be any color, intensity, or brightness permitted by the display hardware and software. The light may further be emitted in any shape on the surface of the display 90. The light emitted by the display 90 may be constant in intensity or color, or the light may change, adjust, dim, shimmer, or shift color.
In one embodiment, the device 92 is programmed to emit multiple colors across the surface of the display 90, represented in
In another embodiment, the device 92 is programmed to emit light in certain shapes across the surface. In related embodiments, the collector portions 72 of different toys may have different arrangements, such that a given arrangement of the light source 70 will illuminate one toy but not another. In still other embodiments, the shapes corresponding to the collector portions 72 of the toys may emit the same color, or may emit different colors. In still further embodiments, the shapes corresponding to the collector portions 72 of the toys may emit light effects such as changing color, flashing, strobe effects, and changes in intensity.
Referring to
The placement area 96 and the illumination area 98 providing the light source 70 may have various arrangements to have different effects on different toys applicable to the present disclosure. In some embodiments, the placement area 96 is an outline shape that is consistent for all applicable toys, a subset of applicable toys, or only one applicable toy. Moreover, the illumination area 98 corresponds to the collector portion 72 of one or more toys. Applicable toys may have respective collector portion(s) 72 in the same locations (e.g., in the same place at the bottom of the base 28 of the housing 22) or varied locations. Accordingly, illumination areas 98 may be provided that will illuminate all applicable toys, a subset of applicable toys, or only one applicable toy. As such, the light source 70 may illuminate the collector portion at the base of a first toy but not illuminate the collector portion at the base of a second toy.
In a further embodiment, the device 92 is programmed to emit an image on the display 90 corresponding to the area of the collector portion 72 of the toy 20, wherein the image is reproduced at the output portion 76 of the light pipe 24 in the toy 20. In other embodiments, the device 92 is programmed to output one or more sounds such as music, dialogue, and/or sound effects in conjunction with the light effects. In embodiments, the device 92 is programmed to emit one or more lights upon activation. In other embodiments, the device 92 is programmed to choreograph or coordinate the sounds and emitted light such as for a light show or to illustrate a story or a scene including the toy 20.
In some embodiments, the device 92 may be programmed to illustrate and narrate a story or scene. For instance, the device 92 may prompt the user to place one or more toys 320 on one or more portions of the display 90 and press an activation button 100 (such button may also be part of a touchscreen interface of the device display 90 as shown in
In another embodiment, the device 92 is programmed to allow the user to program their own light and/or sound output according to user preference. In embodiments, the device 92 may be programmed with pre-existing options for light and/or sound output which may be adjusted according to user preference. In certain embodiments, the device 92 may be configured to sense a toy 320 or its position on or in proximity to a display 90 including, for instance, by using the capacitive touch capabilities of a device 92.
Light Source and Mount—Platform
Referring to embodiments shown in
In the embodiment of
In some embodiments, the upper portion 112 may be used to support one or more toys 520. In another embodiment, the upper portion 112 may have one or more lighting areas 118 formed as an opening or cutaway which allows a light source 70 to shine onto the collection surface(s) 72 of the toy 520. The upper portion 112 may include an outline (not shown) of the base 528 of the toy 520 as a placement area to show a user how to position the toy 520 on the upper portion 112, similar to the placement area 96 shown in
Referring to
In another embodiment, the platform 110 does not include any power source, electronic light source for the lighting areas, or other electronics. In this embodiment shown in
In a further embodiment, the lower portion 114 of the platform 110 may be used to help reflect light to the upper portion 112 and, in particular, to the lighting area(s) 118. In embodiments without a lower portion, the platform 110 may be positioned on a separate surface such as a table and the table may help reflect light to the lighting area 118. In other embodiments, the platform 110 may be held and the light may reach the upper portion 112 without reflection. In another embodiment, the platform 110 includes its own light pipe (not shown) to transmit light from a first surface of the platform 110 to a lighting area of the platform and to the collection surface 80 of the toy 520. In certain of these embodiments, the toy 520 is positioned in such a way such that light is reflected into the collection surface 80 of the toy. The light source 70 may be ambient light as described herein, or the light may be from an indirect electric light source such as a flashlight, device display or some other portable electric light.
It will be appreciated that the present disclosure provides toys with unique functionality and even a digital interactive experience from a relatively low-cost and simplified design. Embodiments of the toy provide passively illuminated features such as eyes or other components of the toy without the need for electronics or batteries inside the toy. The disclosed toy and toy system provide a user an experience combining a physical toy and a digital experience through software on a separate electronic device, which digital experience can include visual animated effects and/or audio effects. Various light sources may be utilized to illuminate features of the toy, including a smartphone, tablet, LED, ambient light, or other sources such as reflection from bright colored table surfaces or light colored paper. One or more toys and one or more mounts may be combined together as a toy system with greater variety in play.
The above description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles described herein can be applied to other embodiments without departing from the spirit or scope of the invention. Thus, it is to be understood that the description and drawings presented herein represent embodiments of the invention and are therefore representative of the subject matter which is broadly contemplated by the present invention. It is further understood that the scope of the present invention fully encompasses other embodiments and that the scope of the present invention is accordingly limited by nothing other than the appended claims.
All of the features disclosed, claimed, and incorporated by reference herein, and all of the steps of any method or process so disclosed, may be combined in any combination, except combinations where at least some of such features and/or steps are mutually exclusive. Each feature disclosed in this specification may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise. Thus, unless expressly stated otherwise, each feature disclosed is an example only of a generic series of equivalent or similar features. Inventive aspects of this disclosure are not restricted to the details of the foregoing embodiments, but rather extend to any novel embodiment, or any novel combination of embodiments, of the features presented in this disclosure, and to any novel embodiment, or any novel combination of embodiments, of the steps of any method or process so disclosed.
Although specific examples have been illustrated and described herein, it will be appreciated by those of ordinary skill in the art that any arrangement calculated to achieve the same purpose could be substituted for the specific examples disclosed. This application is intended to cover adaptations or variations of the present subject matter. Therefore, it is intended that the invention be defined by the attached claims and their legal equivalents, as well as the illustrative aspects. The above described embodiments are merely descriptive of its principles and are not to be considered limiting. Further modifications of the invention herein disclosed will occur to those skilled in the respective arts and all such modifications are deemed to be within the scope of the inventive aspects.
This application claims the benefit under 35 U.S.C. § 119(e) of the earlier filing date of U.S. Provisional Patent Application No. 62/907,067 filed on Sep. 27, 2019, the disclosure of which is incorporated by reference herein.
Filing Document | Filing Date | Country | Kind |
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PCT/US20/53121 | 9/28/2020 | WO |
Number | Date | Country | |
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62907067 | Sep 2019 | US |