Headrest-mounted monitor
10421411 ยท 2019-09-24
Assignee
Inventors
Cpc classification
B60R2011/0085
PERFORMING OPERATIONS; TRANSPORTING
B60R11/0229
PERFORMING OPERATIONS; TRANSPORTING
B60R2011/0082
PERFORMING OPERATIONS; TRANSPORTING
B60N2/879
PERFORMING OPERATIONS; TRANSPORTING
H04N5/64
ELECTRICITY
B60R2011/0075
PERFORMING OPERATIONS; TRANSPORTING
B60R11/0247
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/49947
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B60R11/02
PERFORMING OPERATIONS; TRANSPORTING
B60N2/879
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A monitor adapted for mounting in an automobile headrest is provided. A screen structure of the monitor is pivotable about an upper edge thereof, such that the monitor occupies little volume within the headrest. A viewing angle of the screen structure is independently adjustable by a viewer, such that the viewer can continuously select the optimum viewing angle with changing conditions inside the automobile. The screen structure automatically retracts into a housing when struck. Thus, the monitor poses little risk of injury to passengers. The housing of the monitor is attachable to the headrest with screws, which provides a very sturdy connection and reduces the chances of the housing becoming detached from the headrest during a vehicle collision. The hinged connection between the screen structure and the housing is preferably constructed of interconnected components made from sturdy materials, such as metals. Hinge components are optionally secured with metal fastening members and fastening apertures made of metal and strong plastics. The hinges are thus unlikely to break during a vehicle collision.
Claims
1. A monitor, comprising: a housing having a cavity that defines a storage space and having a first hinge portion, the first hinge portion comprising a slot; a screen structure substantially the same size and shape as the storage space, the screen structure having a front face and a back face, the screen structure configured to attach to the housing such that the screen structure can pivot between a first configuration and a second configuration, the screen structure having a second hinge portion, the second hinge portion comprising a planar structure which is slidable within the slot, the second hinge portion cooperating with the first hinge portion to pivotably secure the screen structure to the housing when the planar structure is disposed within the slot, the planar structure being pivotally secured at one end to the screen structure, the other end being slidably mounted within the slot; and at least one speaker within an interior of the screen structure.
2. The monitor of claim 1, wherein the at least one speaker comprises a first speaker and a second speaker.
3. The monitor of claim 2, wherein the first speaker is on a first side of the screen structure and the second speaker is on a second side of the screen structure opposite the first side.
4. The monitor of claim 1, wherein the planar structure includes a bar.
5. A video system, comprising: a housing that defines a cavity, the housing having a first hinge portion comprising a slot; a screen structure secured within the housing such that the screen structure can pivot from a first position to a second position, the screen structure having a second hinge portion, the second hinge portion comprising a planar structure which is slidable within the slot, the second hinge portion cooperating with the first hinge portion to pivotably secure the screen structure to the housing when the planar structure is disposed within the slot, the planar structure being pivotally secured at one end to the screen structure, the other end being slidably mounted within the slot; and at least one speaker within the screen structure, the speaker configured to emit sounds through a back face of the screen structure, wherein the screen structure is substantially the same size and shape as the cavity.
6. The video system of claim 5, wherein the screen structure further comprises a plurality of openings on the back face of the screen structure.
7. The video system of claim 6, wherein the plurality of openings are aligned with the at least one speaker and are configured to enable sound to pass through the back of the screen structure.
8. The video system of claim 5, wherein the at least one speaker comprises a first speaker and a second speaker.
9. The video system of claim 8, wherein the first speaker is on a first side of the screen structure and the second speaker is on a second side of the screen structure opposite the first side.
10. The video system of claim 5, wherein the planar structure includes a bar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The preferred embodiments of the headrest-mounted monitor, illustrating its features, will now be discussed in detail. These embodiments depict the novel and nonobvious headrest-mounted monitor shown in the accompanying drawings, which are for illustrative purposes only. These drawings include the following figures, in which like numerals indicate like parts:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(21)
(22) As shown in
(23) In the illustrated embodiment, the screen structure 16 includes a front portion 26 (
(24) The front surface 22 of the screen structure 16 (
(25) The monitor 10 further includes a plurality of controls for determining characteristics of the displayed images. For example, one control preferably enables power to be selectively applied to the monitor 10. Other controls preferably enable a viewer to select between various input sources for the monitor 10, such as a television tuner, a DVD player, a video game system, etc. Other controls preferably enable adjustment of qualities of the screen images, such as brightness, sharpness, contrast, etc.
(26) In the illustrated embodiment, a first cluster of manual controls 54 is located on the front face 22 of the screen structure 16, and a second cluster of manual controls 56 is located on the outer surface 24 of the housing 18 adjacent the screen structure 16. The front face 22 of the screen structure 16 further includes an infrared sensor 58 for receiving signals from a handheld wireless remote control unit (not shown). Those of skill in the art will appreciate that all controls may be located on the screen structure 16, or all controls may be located on the housing 18. Alternatively, the monitor 10 may include no integrated manual controls, such that the monitor 10 is controllable using only a handheld wired or wireless remote control unit.
(27) An interior of the screen structure 16 preferably includes at least one speaker 59 that produces audible sounds that accompany the images displayed on the screen 46. At least one of the controls 54, 56 on the monitor 10 or on an optional remote control unit preferably enables adjustment of a volume level produced by the at least one speaker 59. The rear face 30 of the screen structure 16, shown in
(28) Those of skill in the art will also appreciate that the monitor 10 need not include a speaker 59. The monitor 10 could, for example, be connected to the vehicle's sound system such that sounds from the monitor 10 are produced by speakers mounted in the vehicle's interior. However, front seat passengers, who are not in a position to view the images on the monitor 10, may wish to listen to, for example, a radio broadcast through the vehicle's sound system. Therefore, providing at least one speaker 59 in the monitor 10 enables rear seat passengers to listen to sounds produced by the monitor 10, and front seat passengers to listen to sounds produced by the vehicle's sound system. To eliminate any dissonance created by two sources of different sounds, the monitor 10 could also include a headphone jack so that only backseat passengers wearing headphones can hear sounds produced by the monitor 10.
(29) As shown in
(30) A floor 76 of the cavity 20 preferably includes a plurality of apertures 78 (
(31) Adjacent the top surface 82, each side surface 86 of the cavity 20 includes a second hinge portion 44 (
(32) A tab 88 within the slot cooperates with an aperture 90 (
(33) While the illustrated second hinge portions 44 are preferred for their ease of assembly together with the illustrated first hinge portions 36, those of skill in the art will appreciate that the illustrated second hinge portions 44 are merely exemplary. A variety of alternate hinge constructions could be used to achieve many advantages of the present monitor 10.
(34) Preferably, the first and second hinge portions 36, 44 are located near an upper edge 38, 82 of the screen structure 16 and housing 18, respectively. The upper edge 38 of the screen structure 16 thus remains substantially fixed with respect to the housing 18, while a lower edge 100 of the screen structure 16 is capable of protruding substantially from the front face 24 of the housing 18, as shown in
(35) Advantageously, as the screen structure 16 pivots from the stowed position of
(36) With prior art monitors, such as the monitors disclosed in U.S. Pat. No. 5,267,775 to Nguyen, U.S. Pat. No. 5,507,556 to Dixon, and U.S. Pat. No. 5,842,715 to Jones, additional depth beyond the thickness of the screen structure would be required within a headrest to accommodate these monitors. As the screen structures of these monitors pivot from the stowed position to a viewing position, an upper edge of the screen structure would move backward into the headrest. This configuration is disadvantageous because limited space is available within a headrest.
(37) The function of a headrest is to provide padding for comfort and safety. Thus, a headrest must comprise at least a minimum amount of padding. When a monitor is added to a headrest, padding is displaced. The padding may be eliminated entirely, but such elimination makes the headrest less comfortable and less safe. Alternatively, the padding may be retained but moved elsewhere within the headrest. Disadvantageously, this option makes the headrest larger. If the headrest is made wider, the extra width obstructs a larger portion of the driver's view. If instead the headrest is made deeper, (extends farther into rear passenger area) the portion of the headrest that protrudes into the rear passenger area presents an obstacle to rear seat passengers. Therefore, a headrest-mounted monitor desirably occupies minimal space.
(38) Besides defining a thickness of the present monitor 10, the housing 18 also provides a self-contained casing for the monitor 10. The housing 18 thus protects the monitor 10 from impacts, for example. The housing 18 also facilitates installation and removal of the monitor 10. To exchange one monitor 10 for another, for example if the first monitor 10 is defective, the housing 18 and all of the components within the housing are easily removed from the headrest 12. A new monitor 10 is then easily installed by inserting the housing 18 of the new monitor 10 into the headrest 12.
(39) As will be readily recognized by persons of ordinary skill in the art from the disclosure herein, one method of replacing a mobile entertainment system comprises providing a headrest 12 having a first monitor 10 mounted therein, the first monitor 10 comprising: a first housing 18 including a hinge portion 44, the first housing 18 having a first floor 76 defining one or more apertures 78 which cooperate with mounting hardware 79 to secure the first housing 18 to the headrest 12, the first housing 18 having a top wall 82, a bottom wall 84, and two side walls 86 which cooperate to define a first storage cavity 20; and a first screen structure 16 including a hinge portion 36, the hinge portions 44, 36 cooperating to pivotably secure the first screen structure 16 to the first housing 18. The method comprises rotating the first screen structure 16 outward from the first housing 18 to provide access to the first floor 76, removing the mounting hardware 79 from the first floor 76, and removing the first monitor 10 from the headrest 12. The method further comprises providing a second monitor 10 comprising: a second housing 18 including a hinge portion 44, the second housing 18 having a second floor 76 defining one or more apertures 78, the second housing 18 having a top wall 82, a bottom wall 84, and two side walls 86 which cooperate to define a second storage cavity 20; and a second screen structure 16 including a hinge portion 36, the hinge portions 44, 36 cooperating to pivotably secure the second screen structure 16 to the second housing 18. The method further comprises inserting the second monitor 10 into the headrest 12.
(40) As shown in
(41) The shape of the bracket 106, illustrated in
(42) All three wires 108, 110, 110 are coplanar, and both L-shaped wires 110 extend from the straight wire 108 in the same direction. The upright portion 112 of each L-shaped wire 110 is substantially perpendicular to the straight wire 108, and the base portion 114 of each L-shaped wire 110 is substantially parallel to the straight wire 108. Further, the base portions 114 of each L-shaped wire 110 extend toward each other, and include a small gap 116 between their ends. The upright portions 112 of the L-shaped wires 110 are attached to the straight wire 108 such that opposite end portions of the straight wire 108, comprising posts 118, extend beyond the attachment points of the L-shaped wires 110.
(43) The base portions 114 of the L-shaped wires 110, which define a first end 124 of the bracket 106, are pivotably retained within a tube 120 (
(44) Preferably, the hinges 36, 44 that pivotably connect the screen structure 16 to the housing 18 are self-tensioning. Thus, the hinges 36, 44 retain the screen structure 16 in the position of
(45) The present monitor 10 advantageously collapses toward the storage position (
(46) As shown in
(47) However, as explained above and illustrated in
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(49) The screen structure 128 is substantially similar to the screen structure 16 described above. The first hinge portion 132 of the screen structure is mounted on, and pivotable about, a post imbedded in the screen structure 128. Because the post is a separate component from the rest of the screen structure 128, the post is very easily constructed of a different material than the screen structure 128. The screen structure 128 is preferably constructed of plastic to make it lightweight and less expensive to manufacture. However, the post, which is part of the hinged connection holding the screen structure 128 to the housing 130, is preferably made from a high strength material, such as a metal. Like the first hinge portion 36 on the screen structure 16 described above, both the first hinge portion 132 and the post are preferably constructed of a high-strength material, such as a metal.
(50) The first hinge portion 132 (
(51) The housing 130 is substantially similar to the housing 18 described above. However, the second hinge portion 136 of the housing 130 does not include the tab 88 in the second hinge portion 44 of the housing 18. A side wall portion 138 (
(52) The first hinge portion 132 on the screen structure 128 is slidable within the slot 142 (
(53) The sturdy construction of the hinged connection between the screen structure 128 and the housing 130 reduces the risk of the screen structure 128 becoming detached from the housing 130 during a collision. The post that is imbedded in the screen structure 128 is preferably metal. Thus, the connection between the post and the screen structure 128 is very strong. The first hinge portion 132 is also preferably metal. Thus, the connection between the first hinge portion 132 and the post is also very strong.
(54) The fastening member is preferably a metal screw, and the second hinge portion 136 is preferably a strong plastic. The interconnection of each of these high-strength materials greatly reduces the likelihood of the hinged connection breaking. Even in a high speed vehicle collision, the screen structure 128 is likely to remain firmly connected to the housing 130. By preventing the screen structure 128 from becoming detached during a crash, and subsequently drifting throughout the passenger compartment, the sturdy hinged connection of the monitor 10 decreases the likelihood of injury to the vehicle's passengers that might otherwise be caused by a flying screen structure 128.
Scope of the Invention
(55) The above presents a description of the best mode contemplated for the present headrest-mounted monitor, and of the manner and process of making and using it, in such full, clear, concise, and exact terms as to enable any person skilled in the art to which it pertains to make and use this headrest-mounted monitor. This headrest-mounted monitor is, however, susceptible to modifications and alternate constructions from that discussed above which are fully equivalent. Consequently, it is not the intention to limit this headrest-mounted monitor to the particular embodiments disclosed. On the contrary, the intention is to cover all modifications and alternate constructions coming within the spirit and scope of the headrest-mounted monitor as generally expressed by the following claims, which particularly point out and distinctly claim the subject matter of the headrest-mounted monitor.