EARPHONE CHARGER AND NECK-MOUNTED PORTABLE POWER SUPPLY
20220408174 · 2022-12-22
Inventors
Cpc classification
H04R2420/07
ELECTRICITY
International classification
Abstract
An earphone charger includes an earphone seat fixedly disposed with two charging resilient pieces for respectively abutting against positive and negative conductive strips of a BLUETOOTH earphone, and with an anti-disengagement component preventing the earphone from disengaging from the charging resilient pieces during charging. The charging resilient pieces extend obliquely thereby a distance therebetween gradually decreases along an insertion direction of the earphone. The charger can charge BLUETOOTH earphones of various generations and a working process is that: the earphone is moved to the earphone seat, the charging resilient pieces are deformed laterally under the pressing of the earphone, and then the positive and negative conductive strips abut against the two charging resilient pieces, and moreover, the earphone is tightly attached to the charging resilient pieces through the anti-disengagement component to achieve continuous charging. After the charging, the earphone is removed and the charging resilient pieces can rapidly rebound.
Claims
1. An earphone charger, applied to a BLUETOOTH earphone, comprising: an earphone seat, fixedly disposed with two charging resilient pieces and an anti-disengagement component; wherein the two charging resilient pieces are configured to respectively abut against a positive electrode conductive strip and a negative electrode conductive strip on a charging end of the BLUETOOTH earphone, the two charging resilient pieces are obliquely arranged in a manner of approaching towards each other along an insertion direction of the BLUETOOTH earphone relative to the earphone seat, and thereby a distance between the two charging resilient pieces gradually decreases along the insertion direction; and wherein the anti-disengagement component is configured to prevent the BLUETOOTH earphone from disengaging from the two charging resilient pieces during charging.
2. The earphone charger according to claim 1, wherein the earphone seat is further disposed with a resilient piece mounting block and a mounting groove configured to mount the resilient piece mounting block; wherein the resilient piece mounting block is located on a side where the distance between the two charging resilient pieces is smaller, the resilient piece mounting block is fixed with the earphone seat, and the resilient piece mounting block is fixedly disposed with two fixing pieces corresponding to the two charging resilient pieces in a one-to-one manner; and wherein each of the two charging resilient pieces comprises a first end and a second end that are opposite to each other, each of the two fixing pieces is fixedly connected to the first end of a corresponding one of the two charging resilient pieces, and the second end is a free end.
3. The earphone charger according to claim 1, wherein a first end of the earphone seat is fixedly disposed with the two charging resilient pieces, a second end opposite to the first end of the earphone seat is disposed with a wire-passing through slot, and the wire-passing through slot is configured to allow conductive wires to pass through and form electrical connections with the two charging resilient pieces.
4. The earphone charger according to claim 2, wherein the earphone seat is further fixedly disposed with an anti-shifting resilient piece configured to prevent the BLUETOOTH earphone from side-shifting during the charging, and the anti-shifting resilient piece and the two charging resilient pieces are located on a same side of the resilient piece mounting block and are annularly distributed.
5. The earphone charger according to claim 1, wherein the anti-disengagement component comprises an annular elastic member having a hollow area, the annular elastic member is fixed to the earphone seat and matched with the charging end of the BLUETOOTH earphone, and the two charging resilient pieces are exposed in the hollow area.
6. The earphone charger according to claim 1, wherein the earphone seat is disposed with an earphone insertion cavity configured to allow the charging end of the BLUETOOTH earphone to be inserted, a side wall of the earphone insertion cavity is disposed with two avoidance slots corresponding to the two charging resilient pieces in a one-to-one manner, and free ends of the two charging resilient pieces facing towards an opening of the earphone insertion cavity correspond to the two avoidance slots respectively.
7. The earphone charger according to claim 6, wherein the anti-disengagement component comprises an annular elastic member configured to surround a periphery of the BLUETOOTH earphone during the charging, the annular elastic member is fixed to the earphone seat and is located on a side of the two charging resilient pieces facing towards the opening of the earphone insertion cavity.
8. The earphone charger according to claim 2, wherein the earphone seat is fixedly disposed with limiting posts, and two sides of the resilient piece mounting block abut against the limiting posts to prevent the charging resilient pieces mounted on the resilient piece mounting block from side-shifting during the charging.
9. The earphone charger according to claim 8, wherein the anti-disengagement component is disposed with limit grooves configured to accommodate the limiting posts respectively, and the limiting posts are engaged with the limit grooves to prevent the anti-disengagement component from shifting during the charging.
10. The earphone charger according to claim 9, wherein the earphone seat is further fixedly disposed with an anti-shifting resilient piece configured to prevent the BLUETOOTH earphone from side-shifting during the charging, and the anti-shifting resilient piece and the two charging resilient pieces are triangularly distributed; wherein the anti-disengagement component is further disposed with through grooves corresponding to the anti-shifting resilient piece and the two charging resilient pieces in a one-to-one manner, the through grooves are configured to allow the anti-shifting resilient piece and the two charging resilient pieces to pass through and expose the anti-shifting resilient piece and the two charging resilient pieces in a hollow area of the anti-disengagement component.
11. A neck-mounted portable power supply, comprising: a neck-mounted member, two power supply boards respectively fixed at two opposite ends of the neck-mounted member, and two earphone charging cables corresponding to the two power supply boards in a one-to-one manner; wherein one of the power supply board and the earphone charging cable paired therewith is fixedly disposed with a power supply interface at an end, and the other one of the power supply board and the earphone charging cable paired therewith is fixedly disposed with a plug corresponding to the power supply interface at an end; wherein an end of each of the earphone charging cables facing away from the power supply board paired therewith is fixedly disposed with the earphone charger according to claim 1, and the two charging resilient pieces of the earphone charger are electrically connected to the earphone charging cable.
12. The neck-mounted portable power supply according to claim 11, further comprising: two sets of mounting casings respectively fixed at the two opposite ends of the neck-mounted member; wherein each of the power supply boards is disposed in corresponding one set of mounting casings of the two sets of mounting casings and fixed with the corresponding one set of mounting casings, the power supply interface and the plug are respectively disposed on the power supply board and the earphone charging cable, and each set of mounting casings are disposed with an opening configured to expose the power supply interface.
13. The neck-mounted portable power supply according to claim 12, further comprising: a battery disposed in any one set of mounting casings of the two sets of mounting casings, and two sets of conductive wires corresponding to the two power supply boards in a one-to-one manner; wherein one set of conductive wires of the two sets of conductive wires and the battery are disposed in same one set of mounting casings, and the other one set of conductive wires of the two sets of conductive wires are embedded into the neck-mounted member; wherein each set of conductive wires of the two sets of conductive wires comprise a first conductive wire conducting a positive electrode of the battery with a positive electrode of the power supply board, and a second conductive wire conducting a negative electrode of the battery with a negative electrode of the power supply board; and wherein each set of mounting casings of the two sets of mounting casings are disposed with a wire-passing through slot allowing the first conductive wire and the second conductive wire to pass through.
14. The neck-mounted portable power supply according to claim 12, wherein lower ends of the two sets of mounting casings are arranged opposite to each other, and the opening is located at an upper end of the each set of mounting casings.
15. An earphone charger, comprising: an earphone seat, disposed with a resilient piece mounting block, a first charging resilient piece, a second charging resilient piece, an anti-shifting resilient piece, a mounting groove, and an annular elastic member; wherein the first charging resilient piece and the second charging resilient piece are configured to respectively abut against a positive electrode conductive strip and a negative electrode conductive strip on a charging end of a BLUETOOTH earphone to charge the BLUETOOTH earphone, the first charging resilient piece and the second charging resilient piece are fixed on the resilient piece mounting block and spaced from each other, and the first charging resilient piece and the second charging resilient piece are obliquely arranged in a manner of approaching towards each other along an insertion direction of the BLUETOOTH earphone relative to the earphone seat; wherein the anti-shifting resilient piece is configured to prevent the BLUETOOTH earphone from side-shifting during charging, and the anti-shifting resilient piece is fixed on the resilient piece mounting block and is located on a same side of the resilient piece mounting block as the first charging resilient piece and the second charging resilient piece; wherein the resilient piece mounting block is installed in the mounting groove; and wherein the annular elastic member is fixed to the earphone seat and configured to allow the BLUETOOTH earphone to be extended therein to thereby make the positive electrode conductive strip and the negative electrode conductive strip on the charging end respectively abut against the first charging resilient piece and the second charging resilient piece for the charging, and the annular elastic member is further configured to prevent the BLUETOOTH earphone from disengaging from the first charging resilient piece and the second charging resilient piece during the charging.
16. The earphone charger according to claim 15, wherein the resilient piece mounting block is disposed with fixing pieces corresponding to the first charging resilient piece and the second charging resilient piece in a one-to-one manner; each of the first charging resilient piece and the second charging resilient piece comprises a first end and a second end that are opposite to each other, the first end is fixedly connected to a corresponding one of the fixing pieces, and the second end is a free end.
17. The earphone charger according to claim 16, wherein the second end is closer to the resilient piece mounting block than the first end.
18. The earphone charger according to claim 15, wherein the anti-shifting resilient piece, the first charging resilient piece and the second charging resilient piece are spaced apart from each other and triangularly arranged.
19. The earphone charger according to claim 15, wherein the annular elastic member comprises a hollow rubber sleeve or an annular rubber strip.
20. The earphone charger according to claim 15, wherein the earphone seat is disposed with an earphone insertion cavity configured to allow the charging end of the BLUETOOTH earphone to be inserted, a side wall of the earphone insertion cavity is disposed with avoidance slots corresponding to the first charging resilient piece and the second charging resilient piece in a one-to-one manner, and the free ends of the first charging resilient piece and the second charging resilient piece facing towards an opening of the earphone insertion cavity correspond to the avoidance slots respectively.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0029] In order to more clearly illustrates technical solutions of embodiments of the disclosure, the following is a brief description of the drawings used for the illustrative embodiments of the disclosure. Apparently, the accompanying drawings in the following description are only some embodiments of the disclosure. For those skilled in the art, other drawings can be obtained based on these accompanying drawings without paying creative labor.
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DETAILED DESCRIPTION OF EMBODIMENTS
[0042] In order to make purposes, technical solutions and advantages of embodiments of the disclosure clearer, the technical solutions in the illustrative embodiments of the disclosure will be described clearly and completely below with reference to the accompanying drawings. Apparently, the described embodiments are only some of embodiments of the disclosure, rather than all of embodiments of the disclosure. Based on the embodiments illustrated in the disclosure, all other embodiments obtained by those skilled in the art without paying creative labor fall within the protection scope of the disclosure.
[0043] It should be noted that all directional indications (such as up, down, left, right, front, rear, etc.) in the illustrative embodiments of the disclosure are only used to explain relative positional relationships and movements of various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will change accordingly.
[0044] In the disclosure, unless otherwise specified and defined, the terms “connected”, “fixed” and the like shall be understood in a broad sense, for example, “fixed” can be fixed connection, detachable connection, or integrated; it may be a mechanical connection or an electrical connection; and it can be directly connected or indirectly connected through an intermediate medium. It can be a connection between two elements or an interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in the disclosure can be understood according to specific circumstances.
[0045] In addition, references of “first”, “second” and the like in the disclosure are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implying quantity of the indicated features. Thus, the features defined as “first” and “second” may explicitly or implicitly include at least one of the features. In addition, the technical solutions of various illustrative embodiments may be combined with each other, but they must be based on what can be realized by those skilled in the art. When the combination of technical solutions is contradictory or impossible to realize, it shall be considered that the combination of such technical solutions does not exist and is not within the scope of protection claimed in the disclosure.
First Embodiment
[0046] As shown in
[0047] For the first-generation or the second-generation BLUETOOTH earphone, the positive electrode conductive strip 20 and the negative electrode conductive strip 21 are disposed on a lower surface of the earphone; and for the third-generation BLUETOOTH earphone, the positive electrode conductive strip 20 and the negative electrode conductive strip 21 are located on an outer round surface of a lower end of the earphone. Therefore, when the inserted BLUETOOTH earphone 2 is the first-generation or the second-generation, a degree of being opened outwards of the two charging resilient pieces 11 is relatively large; and when the inserted BLUETOOTH earphone 2 is the third-generation, the degree of being opened outwards of the two charging resilient pieces 11 is relatively small. That is, a contact position between the first/second-generation BLUETOOTH earphone and the charging resilient pieces 11 is lower than a contact position between the third-generation BLUETOOTH earphone and the charging resilient pieces 11. In this situation, through the adaptive adjustment of the degree of being opened outwards of the two charging resilient pieces 11, it can be adapted to various generations of BLUETOOTH earphones, and thus is convenient to use and has good applicability.
[0048] In an embodiment, as shown in
[0049] In an embodiment, as shown in
[0050] In an embodiment, as shown in
[0051] It is worth mentioning that, as shown in
Second Embodiment
[0052] The earphone charger adapted for various generations of BLUETOOTH earphone according to the second embodiment is shown in
[0053] As shown in
[0054] As shown in
Third Embodiment
[0055] The earphone charger adapted for various generations of BLUETOOTH earphone according to the third embodiment is shown in
[0056] As shown in
[0057] As shown in
[0058] As shown in
[0059] In addition, the limit block 121 is further disposed with limit grooves 1211 for accommodating the limiting posts respectively, and the limiting posts 184 are engaged with the limit grooves 1211, to prevent the anti-disengagement component 12 from side-shifting during the charging.
[0060] In summary, in the embodiment of the disclosure, the earphone seat, the resilient piece mounting block and the anti-disengagement component are tightly connected and mutually limited by providing the limiting posts, the limit grooves, and the through grooves positioning the anti-shifting resilient piece and the charging resilient pieces, so as to ensure that the components will not be side-shifting during the charging for the BLUETOOTH earphone. On the basis of being adapted for the charging of the BLUETOOTH earphones of various generations, the stability of the BLUETOOTH earphone during the charging is further improved.
Fourth Embodiment
[0061] As shown in
[0062] Among them, the neck-mounted member 30 may be made of hard plastic or rubber, and the plug 34 may be a universal serial bus (USB) plug or a TYPE-C plug.
[0063] As shown in
[0064] As shown in
[0065] Each set of conductive wires of the two sets of conductive wires 310 include a first conductive wire 311 conducting a positive electrode of the battery 39 with a positive electrode of the power supply board 31, and a second conductive wire 312 conducing a negative electrode of the battery 39 with a negative electrode of the power supply board 31. For example, each set of mounting casings of the two sets of mounting casings 38 are disposed with a wire-passing through slot 381 allowing the first conductive wire 311 and the second conductive wire 312 to pass through. The technical solution of this embodiment has the advantages of portability, compactness and better use experience. Specifically, only one battery 39 is required to supply power, and the overall product is lighter in weight. In addition, one set of conductive wires 310 are embedded into the neck-mounted member 30, which is neater and more beautiful, and the user will not be caught by the conductive wires when wearing or taking off the neck-mounted member 30.
[0066] As shown in
[0067] As shown in
[0068] In addition, it is worth noting that the earphone charger 35 may also be replaced with the earphone charger described in the first embodiment or the third embodiment.
[0069] The above description is only the illustrative embodiments of the disclosure, and is not intended to limit the scope of protection of the disclosure. On a premise of not departing from the spirit and scope of the disclosure, the disclosure may be subject to various changes and modifications. Any equivalent structural change made based on the description and the accompanying drawings of the disclosure under the inventive concept of the disclosure, or direct/indirect applications of the illustrated embodiments of the disclosure in other related technical fields should be included in the scope of protection of the disclosure.