CN220754819U - Collect wireless device of accomodating in an organic whole that charges - Google Patents

Collect wireless device of accomodating in an organic whole that charges Download PDF

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Publication number
CN220754819U
CN220754819U CN202322390956.4U CN202322390956U CN220754819U CN 220754819 U CN220754819 U CN 220754819U CN 202322390956 U CN202322390956 U CN 202322390956U CN 220754819 U CN220754819 U CN 220754819U
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China
Prior art keywords
charging
receiver
charging assembly
magnetic attraction
transmitter
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CN202322390956.4U
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Chinese (zh)
Inventor
邱剑锋
孟艳军
刘凯
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Zhuhai Wei Ke Science And Technology Development Co ltd
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Zhuhai Wei Ke Science And Technology Development Co ltd
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Abstract

The utility model discloses wireless equipment integrating charging and storage, which comprises a receiver and a transmitter; the receiver is provided with a first charging assembly and at least one second charging assembly; the transmitter is provided with a third charging assembly matched with the second charging assembly, and the third charging assembly is used for being connected with the second charging assembly so that the transmitter is connected with the receiver. The utility model can mount the transmitter on the receiver and charge the transmitter through the receiver, thereby improving portability.

Description

Collect wireless device of accomodating in an organic whole that charges
Technical Field
The utility model relates to the technical field of wireless equipment, in particular to wireless equipment integrating charging and storage.
Background
Wireless devices are classified according to their function, and for most wireless devices they typically have their own battery that can continue to operate for a period of time without being powered on. Since the wireless device has a battery, the wireless device needs to be charged, and for small-sized wireless devices, such as wireless headphones, a charging box is generally provided, so that the wireless headphones can be charged while accommodating the headphones. For larger wireless equipment, for example, wireless transceiver equipment can be provided with a charging port besides the charging box for charging, and the wireless transceiver equipment can be directly charged through a power line.
The wireless transceiver generally comprises a receiver and a transmitter, the receiver and the transmitter have larger volumes, if the receiver and the transmitter are charged through a charging box, the volume of the charging box is obviously larger than that of the receiver and the transmitter, if charging ports are respectively arranged on the receiver and the transmitter, the receiver and the transmitter are directly charged through power lines, the receiver and the transmitter are separately placed, and two power lines are needed to charge the receiver and the transmitter respectively. Therefore, the existing wireless transceiver is poor in portability and not easy to carry.
Disclosure of Invention
The utility model provides wireless equipment integrating charging and storage, and aims to solve the problems that the conventional wireless equipment is poor in portability and not easy to carry.
In a first aspect, the present utility model provides a charging and housing integrated wireless device, the charging and housing integrated wireless device including a receiver and a transmitter; the receiver is provided with a first charging assembly and at least one second charging assembly; the transmitter is provided with a third charging assembly matched with the second charging assembly, and the third charging assembly is used for being connected with the second charging assembly so that the transmitter is connected with the receiver.
Further, a charging area is arranged on the top surface of the receiver, and one second charging component is arranged in the charging area.
Further, limiting pieces are respectively arranged on two sides of the charging area, and the second charging assembly is arranged between the two limiting pieces.
Further, at least one side of the receiver is also provided with one of the second charging assemblies.
Further, each side of the receiver is provided with the second charging assembly.
Further, the bottom surface of the receiver is provided with a second charging assembly.
Further, the second charging assembly comprises at least one first magnetic attraction piece and a plurality of first conductive pieces, and the third charging assembly comprises at least one second magnetic attraction piece and a plurality of second conductive pieces; the first magnetic attraction piece is fixed on the receiver, and the first conductive piece is arranged side by side with the first magnetic attraction piece and is connected with a circuit component arranged in the receiver; the second magnetic attraction piece is arranged on the emitter relative to the first magnetic attraction piece, and the second conductive piece is arranged side by side relative to the first conductive piece and the second magnetic attraction piece.
Further, the second charging assembly further comprises a protection piece, and the protection piece is covered on the first magnetic attraction piece and the first conductive piece and is provided with a plurality of openings for the first magnetic attraction piece and the first conductive piece to pass through.
Further, the second charging assembly comprises two first magnetic attraction pieces, the two first magnetic attraction pieces are oppositely arranged on the receiver, and the first conductive piece is positioned between the two first magnetic attraction pieces; the third charging assembly comprises two second magnetic attraction pieces, the two second magnetic attraction pieces are oppositely arranged on the emitter, and the second conductive piece is positioned between the two second magnetic attraction pieces.
Further, the second charging assembly includes three of the first conductive members, and the third charging assembly includes three of the second conductive members.
The wireless device integrating charging and storage comprises the receiver and the transmitter, wherein the receiver is provided with the first charging assembly for charging and the second charging assembly for connecting with the transmitter, the transmitter is provided with the third charging assembly matched with the second charging assembly, and when the wireless device needs to be stored, the third charging assembly is connected with the second charging assembly, so that the transmitter is stored on the receiver, a power line can be connected with the first charging assembly, the transmitter can be charged through the receiver while the receiver is charged, portability is improved, and the wireless device is easy to carry.
Drawings
In order to more clearly illustrate the technical solutions of the present utility model, the drawings required for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present utility model, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a block diagram of a wireless device integrated with charging and receiving according to an embodiment of the present utility model;
fig. 2 is a front view of a receiver of a wireless device integrated with charging and receiving according to an embodiment of the present utility model;
fig. 3 is a bottom view of a receiver of a wireless device integrated with charging and receiving according to an embodiment of the present utility model;
fig. 4 is a block diagram of a transmitter of a wireless device integrated with charging and receiving according to an embodiment of the present utility model; and
fig. 5 is an exploded view of a second charging assembly of a wireless device integrated with charging and receiving according to an embodiment of the present utility model.
Description of the drawings: 100. wireless equipment integrating charging and storage; 10. a receiver; 11. a housing; 12. a first charging assembly; 13. a second charging assembly; 131. a first magnetic attraction member; 132. a first conductive member; 133. a guard; 134. an opening; 14. a charging area; 15. a limiting piece; 16. a side surface; 17. a bottom surface, 20, an emitter; 21. a third charging assembly; 22. a second conductive member; 23. a second magnetic attraction member; 24. and a fourth charging assembly.
Detailed Description
The following description of the embodiments of the present utility model will be made more apparent and fully hereinafter with reference to the accompanying drawings, in which some, but not all embodiments of the utility model are shown. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be understood that the terms "comprises" and "comprising," when used in this specification and the appended claims, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
It is also to be understood that the terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. As used in this specification and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should be further understood that the term "and/or" as used in the present specification and the appended claims refers to any and all possible combinations of one or more of the associated listed items, and includes such combinations.
Fig. 1 is an overall structure diagram of a wireless device 100 integrated with charging and receiving according to an embodiment of the present utility model; fig. 2 is a front view of a receiver 10 of a wireless device 100 integrated with charging and receiving according to an embodiment of the present utility model; fig. 3 is a bottom view of a receiver 10 of a wireless device 100 integrated with charging and receiving according to an embodiment of the present utility model; fig. 4 is a block diagram of a transmitter 20 of a wireless device 100 integrated with charging and receiving according to an embodiment of the present utility model; fig. 5 is an exploded view of the second charging assembly 13 of the wireless device 100 integrated with charging and storage according to an embodiment of the present utility model. As shown in the drawings, the wireless device 100 integrated with charging and receiving functions provided by the present utility model includes a receiver 10 and a transmitter 20; the receiver 10 is provided with a first charging assembly 12 and at least one second charging assembly 13; the transmitter 20 is provided with a third charging assembly 21 adapted to the second charging assembly 13, the third charging assembly 21 being adapted to be connected to the second charging assembly 13 for connecting the transmitter 20 to the receiver 10.
Specifically, the receiver 10 includes a housing 11, a first charging assembly 12 and at least one second charging assembly 13 are disposed on a surface of the housing 11, and a circuit assembly is disposed inside the housing 11, wherein the circuit assembly includes a circuit for driving the receiver 10 to operate normally. The housing 11 may be provided in a circular shape, a rectangular shape, a square shape, etc., and may be provided according to actual needs, and preferably, the housing 11 is provided in a rectangular shape, and then the housing 11 may include six surfaces, i.e., a left side surface, a right side surface, a front side surface, a rear side surface, a bottom surface 17, and a top surface, respectively. A second charging assembly 13 may be provided on either surface. If a plurality of second charging members 13 are provided, a corresponding one of the surfaces may be provided with one second charging member 13. Preferably, two second charging assemblies 13 may be provided, a first charging assembly 12 and one of the second charging assemblies 13 being disposed on the top surface of the housing 11 and the other second charging assembly 13 being disposed on the bottom surface 17. The emitter 20 is provided with a third charging assembly 21, and the third charging assembly 21 may be disposed at any position of the emitter 20, and preferably, the third charging assembly 21 may be disposed on the top surface of the emitter 20. In some embodiments, a groove may be formed on the housing 11 of the receiver 10, and the second charging assembly 13 may be disposed in the groove, where the size of the groove matches the size of the emitter 20, so that the emitter 20 may be mounted in the groove, thereby further reducing the volume. The connection mode of the transmitter 20 and the receiver 10 may be a common detachable mechanical connection, such as a clamping connection, or an adsorption connection through magnetic force, and preferably, the connection mode of the transmitter 20 and the receiver 10 is an adsorption connection.
After the use of the receiver 10 and the transmitter 20 is completed, the third charging unit 21 of the transmitter 20 is connected with the second charging unit 13 of the receiver 10, so that the transmitter 20 is fixed on the receiver 10, and if the receiver 10 is provided with a plurality of second charging units 13, one portable second charging unit 13 can be selected to be connected. If it is desired to charge the transmitter 20 and the receiver 10, a charging cord may be connected to the first charging assembly 12 of the receiver 10, and the transmitter 20 and the receiver 10 may be charged.
As a further example, referring to fig. 2, the top surface of the receiver 10 is provided with a charging area 14, and the charging area 14 is provided with a second charging assembly 13.
Wherein the top surface of the receiver 10 may be provided with a charging area 14, which charging area 14 is used for providing the second charging assembly 13 and mounting the transmitter 20. The shape and size of the charging area 14 matches the shape and size of the emitter 20, for example, if the emitter 20 is rectangular in shape, the charging area 14 is also rectangular in shape. In addition, the charging area 14 may also be a display screen, and when the receiver 10 and the transmitter 20 are needed to be used, the transmitter 20 is taken out from the receiver 10, so that the charging area 14 can normally display content.
As a further embodiment, two sides of the charging area 14 are respectively provided with a limiting member 15, and the second charging assembly 13 is disposed between two limiting members 15.
Wherein, be equipped with a locating part 15 respectively in the both sides of charging area 14, be equipped with second charging assembly 13 between locating part 15, when installing transmitter 20, with the third charging assembly 21 of transmitter 20 with be located the second charging assembly 13 between two locating parts 15 and be connected for transmitter 20 is located between two locating parts 15, and locating part 15 can restrict the position of transmitter 20 on the one hand, avoids transmitter 20 to remove, and on the other hand is used for supplementary fixed transmitter 20. Preferably, the side of the stopper 15 facing the emitter 20 may be provided as a curved surface, facilitating the installation of the emitter 20.
As a further embodiment, at least one side 16 of the receiver 10 is also provided with one of the second charging assemblies 13.
The housing 11 of the receiver 10 may include a plurality of sides 16, where the number of sides 16 is related to the shape of the housing 11, for example, if the housing 11 is rectangular, four sides 16 may be included, that is, a left side, a right side, a front side, and a rear side, and one second charging assembly 13 may be additionally disposed on any one of the sides 16, for example, one second charging assembly 13 is disposed on the left side.
As a further embodiment, each side 16 of the receiver 10 is provided with the second charging assembly 13.
Wherein a second charging assembly 13 may be provided on each side 16 of the receiver 10, and a user may mount the transmitter 20 on any side 16 provided with the second charging assembly 13.
Referring to fig. 3, as a further embodiment, the bottom surface 17 of the receiver 10 is provided with one of the second charging assemblies 13.
Wherein, in addition to the second charging assembly 13 on the side 16, a second charging assembly 13 may be disposed on the bottom 17, which further facilitates the installation of the transmitter 20 by the user.
Referring to fig. 4 and 5, as a further embodiment, the second charging assembly 13 includes at least one first magnetic attraction member 131 and a plurality of first conductive members 132, and the third charging assembly 21 includes at least one second magnetic attraction member 23 and a plurality of second conductive members 22; the first magnetic attraction piece 131 is fixed on the receiver 10, and the first conductive piece 132 is arranged side by side with the first magnetic attraction piece 131 and is connected with a circuit component arranged in the receiver 10; the second magnetic attraction piece 23 is disposed on the emitter 20 opposite to the first magnetic attraction piece 131, and the second conductive piece 22 is disposed side by side with the second magnetic attraction piece 23 opposite to the first conductive piece 132.
The first conductive member 132 is disposed on the receiver 10 and connected to a circuit component disposed inside the receiver 10 through the receiver 10, and the first magnetic attraction member 131 is disposed side by side with the first conductive member 132. The number of the first conductive elements 132 is determined by the fourth charging assembly, and the number of the first magnetic elements 131 can be set according to practical situations, so that the greater the number of the first magnetic elements 131, the stronger the stability when the transmitter 20 is connected with the receiver 10. Also, a second conductive member 22 matched with the first conductive member 132 and a second magnetic member 23 matched with the first magnetic member 131 may be provided on the third charging member 21 of the transmitter 20, the number of the second conductive members 22 being identical to the number of the first conductive members 132, and the number of the second magnetic members 23 being identical to the number of the first magnetic members 131. When the transmitter 20 is connected with the receiver 10, the second conductive member 22 of the transmitter 20 abuts against the first conductive member 132, and the second magnetic attraction member 23 of the transmitter 20 abuts against the first magnetic attraction member 131 of the receiver 10, so that the transmitter 20 is attracted to the receiver 10. The first conductive member 132 and the second conductive member 22 may be conductive metals commonly used in the art for charging, such as a charging pin and a charging spring, and preferably, the first conductive member 132 and the second conductive member 22 are both charging pins. As shown in fig. 4 and 5, the second conductive member 22 in fig. 4 and the first conductive member 132 in fig. 5 are both charging pins. When the transmitter 20 is attached to the receiver 10, if it is desired to charge the transmitter 20 and the receiver 10, a power cord may be connected to the first charging assembly 12, and the power source charges the transmitter 20 through the receiver 10 while charging the receiver 10. In some embodiments, a fourth charging assembly 24 may also be provided on the transmitter 20, and may charge both the receiver 10 and the transmitter 20 through the receiver 10, or may charge both the receiver 10 and the transmitter 20 through the transmitter 20 when the transmitter 20 is connected to the receiver 10. In addition, if the fourth charging unit 24 is provided on the transmitter 20, since the charging interfaces are provided on both the receiver 10 and the transmitter 20, in addition to connecting the receiver 10 and the transmitter 20 together and simultaneously charging both by the receiver 10 or the transmitter 20, the convenience in charging can be further improved by charging the receiver 10 alone by the first charging unit 12 and charging the transmitter 20 alone by the fourth charging unit 24.
As a further embodiment, the second charging assembly 13 further includes a protecting member 133, where the protecting member 133 is covered on the first magnetic member 131 and the first conductive member 132, and a plurality of openings 134 are formed for the first magnetic member 131 and the first conductive member 132 to pass through.
The protecting member 133 may be a protecting shell, and the protecting shell is provided with a plurality of openings 134 for facilitating the first magnetic attraction member 131 and the first conductive member 132 to pass through, and the protecting member 133 is used for protecting the first magnetic attraction member 131 and the first conductive member 132.
As a further embodiment, the second charging assembly 13 includes two first magnetic attraction members 131, the two first magnetic attraction members 131 are oppositely disposed on the receiver 10, and the first conductive member 132 is located between the two first magnetic attraction members 131; the third charging assembly 21 includes two second magnetic attraction members 23, the two second magnetic attraction members 23 are oppositely disposed on the emitter 20, and the second conductive member 22 is disposed between the two second magnetic attraction members 23.
The number of the first magnetic attraction pieces 131 may be determined by practical situations, preferably, two first magnetic attraction pieces 131 may be provided, and a first conductive piece 132 is provided between the two first magnetic attraction pieces 131, and the first magnetic attraction pieces 131 are arranged side by side with the first conductive piece 132. Also, two second magnetic attraction pieces 23 may be provided on the emitter 20, and a second conductive piece 22 may be provided between the two second magnetic attraction pieces 23.
As a further embodiment, the second charging assembly 13 includes three first conductive members 132, and the third charging assembly 21 includes three second conductive members 22.
The second charging assembly 13 may be provided with three first conductive members 132, and the third charging assembly 21 may be provided with three second conductive members 22, respectively.
According to the utility model, the first charging assembly and the second charging assembly are arranged on the receiver, the third charging assembly is arranged on the transmitter, the transmitter can be arranged on the second charging assembly through the third charging assembly, the transmitter is fixed, and meanwhile, the receiver and the transmitter can be charged through the first charging assembly, so that the whole volume is reduced, and the portable device is convenient to carry.
While the utility model has been described with reference to certain preferred embodiments, it will be understood by those skilled in the art that various changes and substitutions of equivalents may be made and equivalents will be apparent to those skilled in the art without departing from the scope of the utility model. Therefore, the protection scope of the utility model is subject to the protection scope of the claims.

Claims (10)

1. A wireless device integrating charging and storage, comprising:
the receiver is provided with a first charging assembly and at least one second charging assembly;
the transmitter is provided with a third charging assembly matched with the second charging assembly, and the third charging assembly is used for being connected with the second charging assembly so that the transmitter is connected with the receiver.
2. The wireless device of claim 1, wherein the top surface of the receiver defines a charging area, and wherein the charging area defines a second charging assembly.
3. The wireless device of claim 2, wherein the two sides of the charging area are respectively provided with a limiting member, and the second charging assembly is arranged between the two limiting members.
4. The charging and stowing integrated wireless device of claim 2, wherein at least one side of said receiver is further provided with a said second charging assembly.
5. The charging and stowing integrated wireless device of claim 4, wherein each side of said receiver is provided with said second charging assembly.
6. The wireless device of claim 4, wherein the bottom surface of the receiver is provided with a second charging assembly.
7. The charging and housing integrated wireless device of any of claims 1-6, wherein the second charging assembly comprises at least one first magnetically attractable member and a plurality of first electrically conductive members, and the third charging assembly comprises at least one second magnetically attractable member and a plurality of second electrically conductive members;
the first magnetic attraction piece is fixed on the receiver, and the first conductive piece is arranged side by side with the first magnetic attraction piece and is connected with a circuit component arranged in the receiver;
the second magnetic attraction piece is arranged on the emitter relative to the first magnetic attraction piece, and the second conductive piece is arranged side by side relative to the first conductive piece and the second magnetic attraction piece.
8. The wireless device of claim 7, wherein the second charging assembly further comprises a protective member, the protective member covers the first magnetic member and the first conductive member and has a plurality of openings for the first magnetic member and the first conductive member to pass through.
9. The wireless device of claim 7, wherein the second charging assembly comprises two first magnetic attraction pieces, the two first magnetic attraction pieces are oppositely arranged on the receiver, and the first conductive piece is positioned between the two first magnetic attraction pieces;
the third charging assembly comprises two second magnetic attraction pieces, the two second magnetic attraction pieces are oppositely arranged on the emitter, and the second conductive piece is positioned between the two second magnetic attraction pieces.
10. The wireless device of claim 9, wherein the second charging assembly comprises three of the first conductive members and the third charging assembly comprises three of the second conductive members.
CN202322390956.4U 2023-09-04 2023-09-04 Collect wireless device of accomodating in an organic whole that charges Active CN220754819U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322390956.4U CN220754819U (en) 2023-09-04 2023-09-04 Collect wireless device of accomodating in an organic whole that charges

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322390956.4U CN220754819U (en) 2023-09-04 2023-09-04 Collect wireless device of accomodating in an organic whole that charges

Publications (1)

Publication Number Publication Date
CN220754819U true CN220754819U (en) 2024-04-09

Family

ID=90552350

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322390956.4U Active CN220754819U (en) 2023-09-04 2023-09-04 Collect wireless device of accomodating in an organic whole that charges

Country Status (1)

Country Link
CN (1) CN220754819U (en)

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