Mounts for tracking devices
11694058 · 2023-07-04
Assignee
Inventors
Cpc classification
G06K19/07758
PHYSICS
A45C15/00
HUMAN NECESSITIES
International classification
Abstract
Mounts for securing a tracking device to an object. The mounts include a case and a coupler system. The case includes a body defining a port complementarily configured with the tracking device to receive the tracking device. The coupler system is configured to couple the case to the object and includes a fabric expanse.
Claims
1. A mount for securing a tracking device to an object, the mount comprising: a case including a body defining a port complementarily configured with the tracking device to receive the tracking device, wherein the case further comprises a cover configured to selectively couple to the body in a position enclosing the tracking device within the port; and a coupler system configured to couple the case to the object and including a fabric expanse, wherein the fabric expanse defines a fabric-expanse opening complementarily configured with the case to receive the case.
2. The mount of claim 1, wherein the case is formed from plastic.
3. The mount of claim 1, wherein the case is impact resistant.
4. The mount of claim 1, wherein the case is deformation resistant.
5. The mount of claim 1, wherein the cover selectively couples to the body via a friction fit.
6. The mount of claim 1, wherein: the body defines body threads extending around an outer periphery of the body; the cover defines cover threads extending around an inner portion of the cover; and the cover threads are complementarily configured with the body threads to enable the cover to threadingly couple to the body.
7. The mount of claim 6, wherein the mount further includes a spacer disposed within the cover.
8. The mount of claim 7, wherein the spacer is in the shape of a ring and is complementarily configured with the tracking device to receive a portion of the tracking device within a spacer opening defined by the ring shape.
9. The mount of claim 8, wherein the spacer is resiliently compressible and compresses between the cover and the tracking device to secure the tracking device between the spacer and the body when the cover threadingly couples to the body.
10. The mount of claim 1, wherein the case is substantially seamless when the cover selectively couples to the body.
11. The mount of claim 1, wherein: the case defines a flange coupled to the body; the flange is larger than the fabric-expanse opening; and the flange abuts the fabric expanse when the body extends through the fabric-expanse opening to restrict the case from passing fully through the fabric-expanse opening.
12. The mount of claim 11, wherein the flange surrounds the port.
13. The mount of claim 1 wherein the coupler system includes an adhesive layer disposed on the fabric expanse.
14. The mount of claim 13, wherein the coupler system includes a backing layer disposed on the adhesive layer.
15. The mount of claim 14, wherein the backing layer is selectively removable to expose the adhesive layer.
16. The mount of claim 1, wherein: the coupler system includes an adhesive layer disposed on the fabric expanse; and the adhesive layer is spaced from the fabric-expanse opening to define a border ring.
17. The mount of claim 16, wherein the case defines a flange coupled to the body, and wherein the flange abuts the fabric expanse within the border ring when the case is received within the fabric-expanse opening of the fabric expanse.
18. A mount for securing a tracking device to an object, the mount comprising: a case, comprising a body and a flange extending from the body and having a flange diameter, wherein the case defines a port complementarily configured with the tracking device to receive the tracking device, wherein the case further comprises a cover configured to selectively couple to the body in a position enclosing the tracking device within the port; and a coupler system having a first side and a second side opposite the first side, wherein the coupler system is configured to couple the case to the object, wherein the coupler system comprises a fabric expanse, an adhesive layer disposed on the fabric expanse on the first side, and a backing layer disposed on the adhesive layer and selectively removable to expose the adhesive layer, wherein the fabric expanse defines a fabric-expanse opening having an opening diameter than is smaller than the flange diameter; wherein the case extends through the fabric-expanse opening and the flange abuts the coupler system on the first side, and wherein the cover is positioned on the second side of the coupler system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(21) The disclosed mounts will become better understood through review of the following detailed description in conjunction with the figures. The detailed description and figures provide merely examples of the various inventions described herein. Those skilled in the art will understand that the disclosed examples may be varied, modified, and altered without departing from the scope of the inventions described herein. Many variations are contemplated for different applications and design considerations; however, for the sake of brevity, each and every contemplated variation is not individually described in the following detailed description.
(22) Throughout the following detailed description, examples of various mounts are provided. Related features in the examples may be identical, similar, or dissimilar in different examples. For the sake of brevity, related features will not be redundantly explained in each example. Instead, the use of related feature names will cue the reader that the feature with a related feature name may be similar to the related feature in an example explained previously. Features specific to a given example will be described in that particular example. The reader should understand that a given feature need not be the same or similar to the specific portrayal of a related feature in any given figure or example.
(23) Definitions
(24) The following definitions apply herein, unless otherwise indicated.
(25) “Substantially” means to be more-or-less conforming to the particular dimension, range, shape, concept, or other aspect modified by the term, such that a feature or component need not conform exactly. For example, a “substantially cylindrical” object means that the object resembles a cylinder, but may have one or more deviations from a true cylinder.
(26) “Comprising,” “including,” and “having” (and conjugations thereof) arc used interchangeably to mean including but not necessarily limited to, and are open-ended terms not intended to exclude additional elements or method steps not expressly recited.
(27) Terms such as “first”, “second”, and “third” are used to distinguish or identify various members of a group, or the like, and are not intended to denote a serial, chronological, or numerical limitation.
(28) “Coupled” means connected, either permanently or releasably, whether directly or indirectly through intervening components.
(29) Mounts for Tracking Devices
(30) With reference to the figures, mounts for tracking devices will now be described. The mounts discussed herein function to mount tracking devices, smart tags, or other small electronic devices to objects. The mounts may secure tracking devices to a wide range of objects, including pet collars, backpacks, purses, satchels, and clothing.
(31) The reader will appreciate from the figures and description below that the presently disclosed mounts address many of the shortcomings of conventional mounts. For example, the novel mounts described below are small and unobtrusive. Further, the novel mounts discussed herein are strong and protect tracking devices from impact and moisture damage. An additional benefit of the novel mounts disclosed in this document is that they are easy to use and easy to secure to objects.
(32) Contextual Details
(33) Ancillary features relevant to the mounts described herein will first be described to provide context and to aid the discussion of the mounts.
(34) Object
(35) The mounts described in this document are often used to secure tracking devices to a wide variety of objects. For example, as shown in
(36) With reference to
(37) Indeed, the object may be any currently known or later developed type of object. A variety of object types exist and could be used in place of the objects shown in the figures. In addition to the types of objects existing currently, it is contemplated that the mounts described herein could be used with new types of objects developed in the future.
(38) In the example shown in
(39) The size and shape of the object may be varied as needed for a given application. In some examples, the object is larger relative to the other components than depicted in the figures. In other examples, the object is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the object and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(40) Tracking Device
(41) The mounts disclosed herein are often used to protect tracking devices and to secure tracking devices to objects. Two examples of a tracking device, tracking device 301 and tracking device 401, are depicted in
(42) The tracking device may be any currently known or later developed type of tracking device, including the Apple® AirTag® smart tag. A variety of tracking device types exist and could be used. In addition to the types of tracking devices existing currently, it is contemplated that the mounts described herein could be used with new types of tracking devices developed in the future.
Mount Embodiment One
(43) With reference to
(44) With reference to
(45) The size and shape of the mount may be varied as needed for a given application. In some examples, the mount is larger relative to the other components than depicted in the figures. In other examples, the mount is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the mount and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(46) Case
(47) Case 103 functions to contain and protect the tracking device. The reader can see in
(48) In the present example, case 103 is robustly configured. In particular, case 103 is impact resistant, deformation resistant, and forms a moisture seal.
(49) The size and shape of the case may be varied as needed for a given application. In some examples, the case is larger relative to the other components than depicted in the figures. In other examples, the case is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the case and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(50) Body 104 functions to receive and protect the tracking device. Body 104 defines a port (obscured by cover 107 in the figures). The port is complementarily configured with the tracking device to the receive tracking device.
(51) The size and shape of the body and the port may be varied as needed for a given application. In some examples, the body and/or the port are larger relative to the other components than depicted in the figures. In other examples, the body and/or the port are smaller relative to the other components than depicted in the figures. Further, the reader should understand that the body, the port and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(52) As shown in
(53) In the present example, the body is composed of plastic. However, the case may be composed of any currently known or later developed material suitable for device protection applications. Suitable materials include metals, polymers, ceramics, wood, and composite materials.
(54) Cover
(55) Cover 107 functions to cover the tracking device within the port and to provide selective access to the port. With reference to
(56) As depicted in
(57) With reference to
(58) In the present example, the cover is composed of plastic. However, the cover may be composed of any currently known or later developed material suitable for covering applications. Suitable materials include metals, polymers, ceramics, wood, and composite materials.
(59) The size and shape of the cover may be varied as needed for a given application. In some examples, the cover is larger relative to the other components than depicted in the figures. In other examples, the cover is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the cover and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(60) Coupler System
(61) The reader can see in
(62) The coupler system may be any currently known or later developed type of coupler system. A variety of coupler system types exist and could be used in place of the coupler system shown in the figures. In addition to the types of coupler systems existing currently, it is contemplated that the mounts described herein could incorporate new types of coupler systems developed in the future.
(63) The size and shape of the coupler system may be varied as needed for a given application. In some examples, the coupler system is larger relative to the other components than depicted in the figures. In other examples, the coupler system is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the coupler system and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(64) Backplate
(65) The role of backplate 111 is to frictionally engage object 102. In the example shown in
(66) As shown in
(67) The number of backplates in the mount may be selected to meet the needs of a given application. The reader should appreciate that the number of backplates may be different in other examples than is shown in the figures. For instance, some mount examples include additional or fewer backplates than described in the present example.
(68) In the present example, the backplate is composed of plastic. However, the backplate may be composed of any currently known or later developed material suitable for anchoring applications. Suitable materials include metals, polymers, ceramics, wood, and composite materials.
(69) The size and shape of the backplate may be varied as needed for a given application. In some examples, the backplate is larger relative to the other components than depicted in the figures. In other examples, the backplate is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the backplate and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(70) Mechanical Fasteners
(71) The mechanical fasteners may be any currently known or later developed type of mechanical fastener. Various mechanical fastener types exist and could be used in place of the mechanical fasteners shown in the figures. In addition to the types of mechanical fasteners existing currently, it is contemplated that the mounts described herein could incorporate new types of mechanical fasteners developed in the future.
(72) In the present example, the mechanical fasteners are composed of metal. However, the mechanical fasteners may be composed of any currently known or later developed material suitable for fastening applications.
(73) The size and shape of the mechanical fasteners may be varied as needed for a given application. In some examples, the mechanical fasteners are larger relative to the other components than depicted in the figures. In other examples, the mechanical fasteners are smaller relative to the other components than depicted in the figures. Further, the reader should understand that the mechanical fasteners and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
Additional Embodiments
(74) With reference to
Mount Embodiment Two
(75) Turning attention to
(76) Case
(77) The reader can see in
(78) Flange
(79) Flange 218 functions to interface with fabric expanse 216. In particular, with reference to
(80) With reference to
(81) The size and shape of the flange may be varied as needed for a given application. In some examples, the flange is larger relative to the other components than depicted in the figures. In other examples, the flange is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the flange and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(82) Coupler System
(83) Coupler system 206 functions to couple case 203 to object 202. In the embodiment shown in
(84) Fabric Expanse
(85) Fabric expanse 216 functions to flexibly couple case 203 to object 202. As depicted in
(86) The size and shape of the opening may be varied as needed, such as for different sized cases. In some examples, the opening is smaller or larger than depicted in the figures.
(87) The size and shape of the fabric expanse may be varied as needed for a given application. In some examples, the fabric expanse is larger relative to the other components than depicted in the figures. In other examples, the fabric expanse is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the fabric expanse and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(88) In the present example, the fabric expanse is composed of fabric. However, the fabric expanse may be composed of any currently known or later developed material suitable for flexible backing applications.
(89) Adhesive Layer
(90) The adhesive layer functions to adhere fabric expanse 216 to object 202. The adhesive layer is disposed on fabric expanse 216 and selectively covered by backing layer 220. With reference to
(91) The size and shape of the border ring may be varied as needed for a given application. In some examples, the border ring is larger relative to the other components than depicted in the figures. In other examples, the border ring is smaller relative to the other components than depicted in the figures. Further, the reader should understand that the border ring and the other components may all be larger or smaller than described herein while maintaining their relative proportions.
(92) The adhesive layer may be any currently known or later developed type of adhesive layer. Various adhesives exist and may be used. In addition to the types of adhesives existing currently, it is contemplated that the mounts described herein could incorporate new types of adhesives developed in the future.
(93) Backing Layer
(94) Backing layer 220 functions to selectively cover adhesive layer with a non-stick layer until a user is ready to adhere fabric expanse 216 to an object. As shown in
Mount Embodiment Three
(95) Turning attention to
(96) Case
(97) The reader can see in
(98) Body 304 includes a sidewall 360 and a flange 318. The components of body 304 are described in the sections below.
(99) Sidewall
(100) Sidewall 360 extends from flange 318 and defines a port 305. As shown in
(101) Cover 307 couples to sidewall 360 via a friction fit. The reader can sec in
(102) Flange
(103) As described above for mount 200, flange 318 functions to interface with fabric expanse 316. With reference to
(104) With reference to
Mount Embodiment Four
(105) Turning attention to
(106) Case
(107) The reader can see in
(108) Body 404 includes a sidewall 460 and a flange 418. The components of body 404 are described in the sections below.
(109) Sidewall
(110) Sidewall 460 extends from flange 418 and defines a port 405. As shown in
(111) As shown in
(112) The reader can see in
(113) Flange
(114) As described above for mounts 200 and 300, flange 418 functions to interface with fabric expanse 416. With reference to
(115) With reference to
(116) Spacer
(117) Spacer 470 functions to secure tracking device 401 between cover 407 and body 404. As shown in
(118) In the example shown in
(119) In the present example, spacer 470 is resiliently compressible. Spacer 470 compresses between cover 407 and tracking device 401 when cover 407 threadingly couples to body 404. Spacer 470 compressing between cover 407 and tracking device 401 functions to more tightly secure tracking device 401 between spacer 470 and body 404 when cover 407 threadingly couples to body 404.
(120) The disclosure above encompasses multiple distinct inventions with independent utility. While each of these inventions has been disclosed in a particular form, the specific embodiments disclosed and illustrated above are not to be considered in a limiting sense as numerous variations are possible. The subject matter of the inventions includes all novel and non-obvious combinations and subcombinations of the various elements, features, functions and/or properties disclosed above and inherent to those skilled in the art pertaining to such inventions. Where the disclosure or subsequently filed claims recite “a” element, “a first” element, or any such equivalent term, the disclosure or claims should be understood to incorporate one or more such elements, neither requiring nor excluding two or more such elements.
(121) Applicant(s) reserves the right to submit claims directed to combinations and subcombinations of the disclosed inventions that are believed to be novel and non-obvious. Inventions embodied in other combinations and subcombinations of features, functions, elements and/or properties may be claimed through amendment of those claims or presentation of new claims in the present application or in a related application. Such amended or new claims, whether they are directed to the same invention or a different invention and whether they are different, broader, narrower or equal in scope to the original claims, are to be considered within the subject matter of the inventions described herein.