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Patent · US12249813B2 · B2 · US

Shutter mechanism for an electronic device

(11) Publication number
US12249813B2
(21) Application number
18/213,131
(22) Filing date
2023-06-22
(30) Priority date
2018-07-20
(43) Publication date
2025-03-11
(45) Date of grant
2025-03-11
(51) IPC
F16B 5/00; F16B 5/06; H02B 1/46; H02G 3/14
(52) CPC
  • H02B Boards, substations or switching arrangements for the supply or distribution of electric power: 1/46, 1/40, 1/42, 1/48
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 5/0004, 5/0692
  • H02G Installation of electric cables or lines, or of combined optical and electric cables or lines: 3/081, 3/121
  • H02J Electric power networks; circuit arrangements or systems for supplying or distributing electric power; systems for storing electric energy: 13/1335
(73) Assignee
Brilliant Nextgen Inc
(72) Inventors
Aaron T. Emigh; Steven Stanek
(54) Title
Shutter mechanism for an electronic device
(57) Abstract

A shutter mechanism for a camera of an electronic device can include a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of the camera is exposed and a closed state that blocks the lens of the camera. The slider mechanism comprises a one or more slider appendages that operate the shutter mechanism between the open state and the closed state. Each of the one or more slider appendages slide along a horizontal axis in relation to a horizontal axis corresponding to the lens of the camera.

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Claims (18)

  1. A shutter mechanism for a camera of an electronic device, comprising: a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of the camera is exposed and a closed state that blocks the lens of the camera; wherein the slider mechanism comprises one or more slider appendages, each of the one or more slider appendages being operable to move the shutter mechanism between the open state and the closed state, wherein each of the one or more slider appendages is configured to move along a different horizontal axis than a horizontal axis corresponding to the lens of the camera; and wherein each of the one or more slider appendages includes one or more locking features, and wherein for each of the one or more slider appendages, each locking feature is structured to engage with and disengage from a corresponding locking feature of the shutter mechanism or the electronic device, as the slider mechanism is moved between the open state and the closed state.
  2. The shutter mechanism of claim 1, wherein the slider mechanism includes a protrusion that is structured to allow a user to slide the slider mechanism between the open state and the closed state.
  3. The shutter mechanism of claim 2, wherein the protrusion is positioned on a rear-side of the slider mechanism.
  4. The shutter mechanism of claim 1, wherein each slider appendage of the slider mechanism further includes one or more sliding features, each of the one or more sliding features being structured to enable the slider mechanism to slide along a horizontal axis.
  5. The shutter mechanism of claim 4, wherein for each of the one or more slider appendages, each of the one or more sliding features is positioned in a corresponding slider opening of the shutter mechanism in a corresponding horizontal axis that is either above or below the horizontal axis of the lens.
  6. The shutter mechanism of claim 5, wherein each of the one or more locking features is structured to slide within a corresponding guiding groove as the slider mechanism is moved between the open and closed states.
  7. The shutter mechanism of claim 1, wherein the slider mechanism is structured to generate a click or other feedback when engaging and/or disengaging the corresponding locking feature of the shutter mechanism or the electronic device.
  8. The shutter mechanism of claim 1, wherein a rear side of the slider mechanism has a recess portion positioned to prevent contact between the slider mechanism and the lens of the camera.
  9. The shutter mechanism of claim 1, further comprising a faceplate from which the one or more slider appendages are provided.
  10. An electronic device comprising: a housing; a lens provided in a portion of the housing; and a shutter mechanism, the shutter mechanism comprising: a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of a camera is exposed and a closed state that blocks the lens of the camera; wherein the slider mechanism comprises one or more slider appendages, each of the one or more slider appendages being operable to move the shutter mechanism between the open state and the closed state, wherein each of the one or more slider appendages is configured to move along a different horizontal axis than a horizontal axis corresponding to the lens of the camera; and wherein each of the one or more slider appendages includes one or more locking features, and wherein for each of the one or more slider appendages, each locking feature is structured to engage with and disengage from a corresponding locking feature of the shutter mechanism or the electronic device, as the slider mechanism is moved between the open state and the closed state.
  11. The electronic device of claim 10, wherein the slider mechanism includes a protrusion that is structured to allow a user to slide the slider mechanism between the open state and the closed state.
  12. The electronic device of claim 11, wherein the protrusion is positioned on a rear-side of the slider mechanism.
  13. The electronic device of claim 10, wherein each slider appendage of the slider mechanism further includes one or more sliding features, each of the one or more sliding features being structured to enable the slider mechanism to slide along a horizontal axis.
  14. The electronic device of claim 13, wherein for each of the one or more slider appendages, each of the one or more sliding features is positioned in a corresponding slider opening of the shutter mechanism in a corresponding horizontal axis that is either above or below the horizontal axis of the lens.
  15. The electronic device of claim 14, wherein each of the one or more locking features is structured to slide within a corresponding guiding groove as the slider mechanism is moved between the open and closed states.
  16. The electronic device of claim 10, wherein the corresponding locking features are structured to slide within corresponding guiding grooves between the one or more locking features of the slider mechanism.
  17. The electronic device of claim 10, wherein a rear side of the slider mechanism has a recess portion positioned to prevent contact between the slider mechanism and the lens of the camera.
  18. The electronic device of claim 10, further comprising a faceplate from which the one or more slider appendages are provided.

Description

Examples relate to mounting devices, and more specifically to mounting devices with fastener receiving structures.

Numerous types of mounting devices require installation using screws, bolts, nails, or other insertive fasteners. For example, screws such as machine screws may be used to install a device such as a switch, e.g., a light or fan switch, into an electrical box, which may for example be in or attached to a wall. It is presently difficult to ensure that such a device is securely fastened without being fastened so tightly as to warp or otherwise cause damage to the device.

FIG. 1 A through FIG. 1 D illustrate an example of a mounting device having a fastener receiving structure with strain reduction capabilities.

FIG. 1 E illustrates a variation of an example mounting device such as shown by FIG. 1 A through FIG. 1 D.

FIG. 1 F illustrates a variation of a fastener receiving structure, for use with mounting devices, according to one or more examples.

FIG. 2 A and FIG. 2 B illustrate an example of a base device having at least one fastener receiving structure to mount the base device against a wall.

FIG. 3 A and FIG. 3 B illustrate another example of a base device having at least one fastener receiving structure.

FIG. 4 A and FIG. 4 B illustrate yet another example of a base device having at least one fastener receiving structure.

FIG. 5 A illustrates a base device that can be installed to provide a modularized interface to receive an electronic module, according to one or more examples.

Citations (37)

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Record as JSON
{
  "publication_number": "US12249813B2",
  "country": "US",
  "kind": "B2",
  "title": "Shutter mechanism for an electronic device",
  "abstract": "A shutter mechanism for a camera of an electronic device can include a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of the camera is exposed and a closed state that blocks the lens of the camera. The slider mechanism comprises a one or more slider appendages that operate the shutter mechanism between the open state and the closed state. Each of the one or more slider appendages slide along a horizontal axis in relation to a horizontal axis corresponding to the lens of the camera.",
  "claims": [
    "1. A shutter mechanism for a camera of an electronic device, comprising: a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of the camera is exposed and a closed state that blocks the lens of the camera; wherein the slider mechanism comprises one or more slider appendages, each of the one or more slider appendages being operable to move the shutter mechanism between the open state and the closed state, wherein each of the one or more slider appendages is configured to move along a different horizontal axis than a horizontal axis corresponding to the lens of the camera; and wherein each of the one or more slider appendages includes one or more locking features, and wherein for each of the one or more slider appendages, each locking feature is structured to engage with and disengage from a corresponding locking feature of the shutter mechanism or the electronic device, as the slider mechanism is moved between the open state and the closed state.",
    "2. The shutter mechanism of claim 1, wherein the slider mechanism includes a protrusion that is structured to allow a user to slide the slider mechanism between the open state and the closed state.",
    "3. The shutter mechanism of claim 2, wherein the protrusion is positioned on a rear-side of the slider mechanism.",
    "4. The shutter mechanism of claim 1, wherein each slider appendage of the slider mechanism further includes one or more sliding features, each of the one or more sliding features being structured to enable the slider mechanism to slide along a horizontal axis.",
    "5. The shutter mechanism of claim 4, wherein for each of the one or more slider appendages, each of the one or more sliding features is positioned in a corresponding slider opening of the shutter mechanism in a corresponding horizontal axis that is either above or below the horizontal axis of the lens.",
    "6. The shutter mechanism of claim 5, wherein each of the one or more locking features is structured to slide within a corresponding guiding groove as the slider mechanism is moved between the open and closed states.",
    "7. The shutter mechanism of claim 1, wherein the slider mechanism is structured to generate a click or other feedback when engaging and/or disengaging the corresponding locking feature of the shutter mechanism or the electronic device.",
    "8. The shutter mechanism of claim 1, wherein a rear side of the slider mechanism has a recess portion positioned to prevent contact between the slider mechanism and the lens of the camera.",
    "9. The shutter mechanism of claim 1, further comprising a faceplate from which the one or more slider appendages are provided.",
    "10. An electronic device comprising: a housing; a lens provided in a portion of the housing; and a shutter mechanism, the shutter mechanism comprising: a slider mechanism that enables the shutter mechanism to operate between an open state in which a lens of a camera is exposed and a closed state that blocks the lens of the camera; wherein the slider mechanism comprises one or more slider appendages, each of the one or more slider appendages being operable to move the shutter mechanism between the open state and the closed state, wherein each of the one or more slider appendages is configured to move along a different horizontal axis than a horizontal axis corresponding to the lens of the camera; and wherein each of the one or more slider appendages includes one or more locking features, and wherein for each of the one or more slider appendages, each locking feature is structured to engage with and disengage from a corresponding locking feature of the shutter mechanism or the electronic device, as the slider mechanism is moved between the open state and the closed state.",
    "11. The electronic device of claim 10, wherein the slider mechanism includes a protrusion that is structured to allow a user to slide the slider mechanism between the open state and the closed state.",
    "12. The electronic device of claim 11, wherein the protrusion is positioned on a rear-side of the slider mechanism.",
    "13. The electronic device of claim 10, wherein each slider appendage of the slider mechanism further includes one or more sliding features, each of the one or more sliding features being structured to enable the slider mechanism to slide along a horizontal axis.",
    "14. The electronic device of claim 13, wherein for each of the one or more slider appendages, each of the one or more sliding features is positioned in a corresponding slider opening of the shutter mechanism in a corresponding horizontal axis that is either above or below the horizontal axis of the lens.",
    "15. The electronic device of claim 14, wherein each of the one or more locking features is structured to slide within a corresponding guiding groove as the slider mechanism is moved between the open and closed states.",
    "16. The electronic device of claim 10, wherein the corresponding locking features are structured to slide within corresponding guiding grooves between the one or more locking features of the slider mechanism.",
    "17. The electronic device of claim 10, wherein a rear side of the slider mechanism has a recess portion positioned to prevent contact between the slider mechanism and the lens of the camera.",
    "18. The electronic device of claim 10, further comprising a faceplate from which the one or more slider appendages are provided."
  ],
  "description_excerpt": "Examples relate to mounting devices, and more specifically to mounting devices with fastener receiving structures.\n\nNumerous types of mounting devices require installation using screws, bolts, nails, or other insertive fasteners. For example, screws such as machine screws may be used to install a device such as a switch, e.g., a light or fan switch, into an electrical box, which may for example be in or attached to a wall. It is presently difficult to ensure that such a device is securely fastened without being fastened so tightly as to warp or otherwise cause damage to the device.\n\nFIG. 1 A through FIG. 1 D illustrate an example of a mounting device having a fastener receiving structure with strain reduction capabilities.\n\nFIG. 1 E illustrates a variation of an example mounting device such as shown by FIG. 1 A through FIG. 1 D.\n\nFIG. 1 F illustrates a variation of a fastener receiving structure, for use with mounting devices, according to one or more examples.\n\nFIG. 2 A and FIG. 2 B illustrate an example of a base device having at least one fastener receiving structure to mount the base device against a wall.\n\nFIG. 3 A and FIG. 3 B illustrate another example of a base device having at least one fastener receiving structure.\n\nFIG. 4 A and FIG. 4 B illustrate yet another example of a base device having at least one fastener receiving structure.\n\nFIG. 5 A illustrates a base device that can be installed to provide a modularized interface to receive an electronic module, according to one or more examples.",
  "cpc": [
    "H02B 1/46",
    "F16B 5/0004",
    "F16B 5/0692",
    "H02B 1/40",
    "H02B 1/42",
    "H02B 1/48",
    "H02G 3/081",
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  ],
  "ipc": [
    "F16B 5/00",
    "F16B 5/06",
    "H02B 1/46",
    "H02G 3/14"
  ],
  "assignees": [
    "Brilliant Nextgen Inc"
  ],
  "inventors": [
    "Aaron T. Emigh",
    "Steven Stanek"
  ],
  "filing_date": "2023-06-22",
  "publication_date": "2025-03-11",
  "grant_date": "2025-03-11",
  "priority_date": "2018-07-20",
  "application_number": "US-202318213131-A",
  "family_id": "69162668",
  "cited_by_count": 0,
  "citations": [
    "US2043865A",
    "US2149719A",
    "US3745664A",
    "US3854374A",
    "US4105862A",
    "US5170014A",
    "US5170013A",
    "US5594205A",
    "US5623124A",
    "US6608253B1",
    "US5907126A",
    "US6005190A",
    "US6023021A",
    "US6566602B1",
    "US20060079126A1",
    "US8261926B2",
    "US6794572B1",
    "US7030319B2",
    "US7456358B2",
    "US20060005989A1",
    "US20090126968A1",
    "US7950859B2",
    "CN102927101A",
    "CN204493381U",
    "US11054719B2",
    "US10761404B2",
    "US11143937B2",
    "US20210273419A1",
    "US20200388995A1",
    "US20210273420A1",
    "US10749319B2",
    "US20200028335A1",
    "US11211777B2",
    "US11715938B2",
    "US11728628B2",
    "US10826554B2",
    "US11422433B2"
  ]
}

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