SPEAKER ASSEMBLY WITH RESILIENT MOUNTING ARRANGEMENT FOR A VEHICLE AND ASSOCIATED METHODS
20220303650 ยท 2022-09-22
Inventors
Cpc classification
H04R1/025
ELECTRICITY
H04R1/2869
ELECTRICITY
H04R2201/028
ELECTRICITY
H04R2400/11
ELECTRICITY
H04R2420/07
ELECTRICITY
H04R2201/021
ELECTRICITY
B60R2011/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
H04R1/02
ELECTRICITY
B60R11/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A speaker assembly may be for being resiliently mounted to spaced apart frame members of a vehicle. The speaker assembly may include an elongate housing having a respective retention chamber at each opposing end, and audio speakers and associated wireless receiver circuitry carried by the housing. The speaker assembly may also include a respective inboard elastomeric body within each retention chamber, and a respective vehicle frame mounting bracket at each end of the elongate housing and to be mounted to an adjacent frame member of the vehicle. The assembly may further include respective fasteners coupling each vehicle frame mounting bracket to the elongate housing via a corresponding inboard elastomeric body so that each vehicle frame mounting bracket is resiliently coupled to the elongate housing.
Claims
1. A speaker assembly to be resiliently mounted to spaced apart frame members of a vehicle, the speaker assembly comprising: an elongate housing having a respective retention chamber at each opposing end; a plurality of audio speakers and associated wireless receiver circuitry carried by the elongate housing; a respective inboard elastomeric body within each retention chamber and extending through a wall of the elongate housing; a respective inboard backing plate positioned adjacent each inboard elastomeric body; a respective vehicle frame mounting bracket at each end of the elongate housing and to be mounted to an adjacent frame member of the vehicle; and a respective plurality of fasteners coupling each vehicle frame mounting bracket to a corresponding end of the elongate housing and extending through a corresponding inboard backing plate and inboard elastomeric body so that each vehicle frame mounting bracket is resiliently coupled to the elongate housing.
2. The speaker assembly of claim 1 comprising a respective outboard elastomeric body between each vehicle frame mounting bracket and the elongate housing so that the corresponding vehicle frame mounting bracket serves as an outboard backing plate for outboard ends of the respective plurality of elongate fasteners.
3. (canceled)
4. The speaker assembly of claim 1 wherein each inboard elastomeric body comprises a base and a plurality of legs extending outwardly therefrom.
5. The speaker assembly of claim 4 wherein each leg has a fastener-receiving passageway extending therethrough and receiving a corresponding fastener from among the plurality therein.
6. The speaker assembly of claim 1 wherein each vehicle frame mounting bracket has a U-shaped base and an elongate arm extending outwardly therefrom.
7. The speaker assembly of claim 1 comprising a user interface panel carried by the elongate housing and coupled to the wireless receiver circuitry.
8. The speaker assembly of claim 7 comprising at least one light carried by the user interface panel.
9. The speaker assembly of claim 1 wherein the wireless receiver circuitry comprises Bluetooth receiver circuitry.
10. A speaker assembly to be mounted to spaced apart frame members of a vehicle, the speaker assembly comprising: an elongate housing having a respective retention chamber at each opposing end; a plurality of audio speakers and associated wireless receiver circuitry carried by the elongate housing; a respective inboard elastomeric body within each retention chamber and extending through a wall of the elongate housing; a respective inboard backing plate positioned adjacent each inboard elastomeric body; a respective vehicle frame mounting bracket at each end of the elongate housing and to be mounted to an adjacent frame member of the vehicle; a respective plurality of fasteners coupling each vehicle frame mounting bracket to a corresponding end of the elongate housing and extending through a corresponding inboard backing plate and inboard elastomeric body so that each vehicle frame mounting bracket is resiliently coupled to the elongate housing; and a respective outboard elastomeric body between each vehicle frame mounting bracket and the elongate housing so that the corresponding vehicle frame mounting bracket serves as an outboard backing plate for outboard ends of the respective plurality of elongate fasteners.
11. The speaker assembly of claim 10 wherein each inboard elastomeric body comprises a base and a plurality of legs extending outwardly therefrom.
12. The speaker assembly of claim 11 wherein each leg has a fastener-receiving passageway extending therethrough and receiving a corresponding fastener from among the plurality of fasteners therein.
13. The speaker assembly of claim 10 wherein each vehicle frame mounting bracket has a U-shaped base and an elongate arm extending outwardly therefrom.
14. The speaker assembly of claim 10 comprising a user interface panel carried by the elongate housing and coupled to the wireless receiver circuitry.
15. The speaker assembly of claim 14 comprising at least one light carried by the user interface panel.
16. The speaker assembly of claim 10 wherein the wireless receiver circuitry comprises Bluetooth receiver circuitry.
17. A method for making a speaker assembly to be mounted to spaced apart frame members of a vehicle, the method comprising: positioning a plurality of audio speakers and associated wireless receiver circuitry within an elongate housing having a retention chamber at each opposing end; positioning a respective inboard elastomeric body within each retention chamber and extending through a wall of the elongate housing; positioning a respective inboard backing plate adjacent each inboard elastomeric body; and coupling a respective vehicle frame mounting bracket at each end of the elongate housing using a respective plurality of fasteners coupling each frame mounting bracket to the elongate housing and extending through a corresponding inboard backing plate and inboard elastomeric body so that each vehicle frame mounting bracket is resiliently coupled to the elongate housing.
18. The method of claim 17 comprising positioning a respective outboard elastomeric body between each vehicle frame mounting bracket and the elongate housing so that the corresponding vehicle frame mounting bracket serves as an outboard backing plate for outboard ends of the respective plurality of elongate fasteners.
19. (canceled)
20. The method of claim 17 wherein each inboard elastomeric body comprises a base and a plurality of legs extending outwardly therefrom.
21. The method of claim 20 wherein each leg has a fastener-receiving passageway extending therethrough and receiving a corresponding fastener from among the plurality of fasteners therein.
22. The method of claim 17 wherein each vehicle frame mounting bracket has a U-shaped base and an elongate arm extending outwardly therefrom.
23. The method of claim 17 comprising positioning a user interface panel carried by the elongate housing and coupled to the wireless receiver circuitry.
24. The method of claim 17 wherein the wireless receiver circuitry comprises Bluetooth receiver circuitry.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The present invention will now be described more fully hereinafter with reference to the accompanying drawings in which preferred embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the illustrated embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. Like numbers refer to like elements throughout.
[0022] With reference to
[0023] As will be appreciated by those skilled in the art, the speaker assembly 20 may be used on many different types of vehicles including land vehicles, such as golf carts, ATVs, UTVs, etc., as well as similar watercraft. As described above, the speaker assembly 20 is subject to shock, vibration, and other forces, unlike a fixed application, such as in the home. In other words, the speaker assembly 20 resilient mounting arrangement as described in greater detail below is configured to significantly reduce squeaks, rattles, and potential damage as the vehicle is operated and the frame members move relative to one another.
[0024] Referring now additionally to the block diagram of
[0025] The audio speakers 22a, 22b, 22n may be directed downward through a bottom grill 27 of the housing 20 and/or may be directed through wing speaker grills 28a, 28b (
[0026] The wireless communications circuitry 23 may communicate with a user-operated short-range wireless device in the form of the illustrated cellular telephone 32. Of course, wired connections may additionally be used in other embodiments.
[0027] The speaker assembly 20 also includes a power supply 33 for the wireless communications circuitry 23. The power supply 33 may take the form of a battery contained with the housing 21, or voltage control circuitry powered by an electrical source of the vehicle, or may be a direct connection to an electrical source of the vehicle.
[0028] The speaker assembly 20 also includes a user interface panel 35 carried by the elongate housing 21 in a medial portion thereof 40c and coupled to the wireless receiver circuitry 23. In some embodiments, at least one light 36a, 36b may be carried by the user interface panel 35. The user interface panel 35 also includes user interface controls 37 in form of buttons/switches to permit the user to control operation of the speaker assembly 20. As will be appreciated by those skilled in the art, the various electronic components for the speaker assembly 20 may be resistant to water, shock resistant, and be suitable for operation within the temperatures compatible with outdoor use.
[0029] The housing 21 in the illustrated embodiment has an elongate shape and includes a medial portion 40c between two opposing ends. As also shown in the illustrated embodiment, the ends of the housing 21 are provided by endcaps 40a, 40b (
[0030] Referring now additionally to
[0031] In the illustrated embodiment the vehicle frame mounting bracket 50a has a U-shaped base 51a and an elongate arm 52a extending outwardly therefrom. The elongate arm 52a may have one or more openings 53a to receive a fastener, not shown, to secure the elongate arm to the adjacent portions of the vehicle frame member 16a. The vehicle frame mounting bracket 50a may have other shapes in other embodiments, depending on the particular shape and construction of the vehicle frame member 16a. An elastomeric layer 54a may also be added to the elongate arm 52a to further cushion contact with adjacent portions of the vehicle frame, such as to reduce squeaks and rattles, for example.
[0032] An inboard elastomeric body 60a is positioned within a retention chamber 70a formed within the endcap 40a. The retention chamber 70a may be readily molded into the plastic endcap 40a as will be appreciated by those skilled in the art.
[0033] The inboard elastomeric body 60a illustratively has a base 61a and three legs 63a extending therefrom. Each leg 63a has a corresponding fastener-receiving passageway 64a extending therethrough. In other embodiments, the number of legs 63a could be less or greater than three. In addition, the inboard elastomeric body 60a may be formed as a single molded part or could be provided by several individual parts as will be appreciated by those of skill in the art.
[0034] A plurality of elongate fasteners 80a, (three in the illustrated embodiment) in the form of bolts 68a with nuts 66a and associated washers 67a, are used to couple the vehicle frame mounting bracket 50a to the inboard elastomeric body 60a.
[0035] An inboard backing plate 85a is positioned between inboard ends of the plurality of elongate fasteners 80a (the bolt heads) and adjacent portions of the inboard elastomeric body 60a, such as the inboard elastomeric body base 61a as in the illustrated embodiment. The inboard backing plate 85a spreads the load to the elastomeric body 60a from the plurality of fasteners 80a.
[0036] An outboard elastomeric body 62a is also provided between the vehicle frame mounting bracket 50a and the end cap 40a of the elongate housing 21 so that the vehicle frame mounting bracket serves as an outboard backing plate for outboard ends of the respective plurality of elongate fasteners 80a. In other words, the U-shaped base 51a of the vehicle frame mounting bracket 50a may also serve as an outboard backing plate for outboard ends of the plurality of elongate fasteners 80a.
[0037] A method aspect is for making a speaker assembly 20 to be resiliently mounted to spaced apart frame members 16a, 16b of a vehicle, such as the illustrated golf cart 15. The method may include positioning a plurality of audio speakers 22a, 22b, 22n and associated wireless receiver circuitry 23 within an elongate housing 21 having a retention chamber 70a at each opposing end. The method may also include positioning a respective inboard elastomeric body 60a within each retention chamber 70a, and coupling a respective vehicle frame mounting bracket 50a at each end of the elongate housing using a respective plurality of fasteners coupling each frame mounting bracket to the elongate housing via a corresponding inboard elastomeric body so that each vehicle frame mounting bracket is resiliently coupled to the elongate housing 21.
[0038] Many modifications and other embodiments of the invention will come to the mind of one skilled in the art having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. Accordingly, it is understood that the invention is not to be limited to the illustrated embodiments disclosed, and that the modifications and embodiments are intended to be included within the spirit and scope of the appended claims.