CN210840008U - Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch - Google Patents

Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch Download PDF

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Publication number
CN210840008U
CN210840008U CN201922343234.7U CN201922343234U CN210840008U CN 210840008 U CN210840008 U CN 210840008U CN 201922343234 U CN201922343234 U CN 201922343234U CN 210840008 U CN210840008 U CN 210840008U
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China
Prior art keywords
earphone
shell
bin
charging
liner
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CN201922343234.7U
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Chinese (zh)
Inventor
马丁梽
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Shenzhen Aodasen Technology Co ltd
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Shenzhen Aodasen Technology Co ltd
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Abstract

The utility model relates to a wireless bluetooth headset charging seat of hamburg shape hangers formula touch. The charging seat comprises a charging bin part and an earphone part, the earphone part comprises two earphone bodies, each earphone body comprises an earphone shell, an earphone battery and an earphone PCB, touch keys and earphone charging thimbles are welded on the earphone PCB, the earphone charging thimbles penetrate through the bottom of the earphone bottom shell and extend to the outside of the earphone bottom shell, and first through holes corresponding to the touch keys are formed in the earphone face shell; the whole disc-shaped structure that is of storehouse part charges, and the storehouse part that charges includes epitheca, epitheca inner bag, mesochite, inferior valve inner bag and inferior valve, and all be equipped with one and be used for placing the accepting recess of earphone body on epitheca inner bag and the one side that the inferior valve inner bag is carried on the back mutually, installs storehouse PCB board between epitheca inner bag and the inferior valve inner bag, and the welding has the storehouse thimble that charges on the storehouse PCB board, and the storehouse charges the thimble and contacts with this internal earphone of earphone charges the thimble. The application provides a bluetooth headset charging seat easy operation, nimble practicality.

Description

Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch
Technical Field
The utility model relates to an earphone technical field especially relates to a wireless bluetooth headset charging seat of hamburg shape hangers formula touch.
Background
With the continuous development of science and technology, earphones are widely applied to daily life of people. Generally, the earphone needs to be used in cooperation with the electronic device, however, the traditional earphone and the electronic device are connected in a wired mode, when the earphone is used, the earphone wire needs to be connected with the earphone and the electronic device respectively, the operation is troublesome, and the flexibility is not enough.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a wireless bluetooth headset charging seat of hamburg shape hangers formula touch of easy operation, nimble practicality.
For realizing the purpose of the utility model, the utility model adopts the following technical scheme:
a hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging seat comprises a charging chamber part and a headset part, wherein,
the earphone part comprises two earphone bodies, each earphone body comprises an earphone bottom shell, an earphone face shell and a silica gel ear hook, each silica gel ear hook is arc-shaped, each earphone face shell is installed above the earphone bottom shell, each earphone face shell and the corresponding earphone bottom shell form an earphone shell, a groove is formed in the side wall of each earphone shell, a connecting column matched with the groove is arranged at one end of each silica gel ear hook, and each connecting column is inserted into the corresponding groove and has freedom degree of free rotation around the corresponding groove; the lower end of the earphone bottom shell is provided with a sound transmission structure, the sound transmission structure comprises a sound transmission pipe and a loudspeaker shell, the sound transmission pipe is arranged at the bottom of the earphone bottom shell and extends downwards, the loudspeaker shell is buckled outside the sound transmission pipe, the loudspeaker shell comprises a loudspeaker upper cover and a loudspeaker lower cover which are connected in a pressing mode, and a loudspeaker is arranged in a cavity formed by the loudspeaker upper cover and the loudspeaker lower cover; a first magnet is arranged on the inner wall of the bottom of the earphone bottom shell far away from the sound transmission tube, an earphone PCB and an earphone battery are arranged in the earphone shell above the sound transmission tube, the earphone PCB is arranged above the earphone battery, and the earphone PCB is electrically connected with the loudspeaker and the earphone battery respectively; an earphone charging thimble and a touch key are welded on the earphone PCB, the earphone charging thimble penetrates through the earphone bottom shell and is far away from the bottom of the sound transmission tube and extends to the outside of the earphone bottom shell, and a first through hole corresponding to the touch key is formed in the earphone face shell;
the charging bin part is integrally of a disc-shaped structure and comprises an upper shell, an upper shell liner, a middle shell, a lower shell liner and a lower shell, wherein the upper shell and the upper shell liner and the lower shell liner are connected through rotating structures, the upper shell liner and the lower shell liner are arranged in the middle shell in a pressing mode, and one surfaces of the upper shell liner and the lower shell liner, which are opposite to each other, are provided with accommodating grooves for accommodating the earphone bodies; a second magnet, a first bin key, a bin PCB, a bin battery, a second bin key and a third magnet are arranged in a cavity formed by the upper shell liner and the lower shell liner facing each other, the second magnet and the first bin key are attached to the outer wall of the upper shell liner, the second magnet and the first magnet in the earphone body placed on the upper shell liner are positioned on the same vertical line, and a second through hole corresponding to the first bin key is formed in the surface, provided with the accommodating groove, of the upper shell liner; the third magnet and the second bin keys are attached to the outer wall of the lower shell liner, the third magnet and the first magnet in the earphone body placed on the lower shell liner are positioned on the same vertical line, and a third through hole corresponding to the second bin keys is formed in the surface, provided with the accommodating groove, of the lower shell liner; the bin PCB is arranged between the first bin key and the second bin key and is electrically connected with the first bin key, the second bin key and the bin battery respectively; and two bin charging thimbles are welded on the bin PCB, one of the bin charging thimbles penetrates through the upper shell liner and is contacted with an earphone charging thimble arranged on an earphone body on the upper shell liner, and the other bin charging thimble penetrates through the lower shell liner and is contacted with an earphone charging thimble arranged on an earphone body on the lower shell liner.
Compared with the traditional wired Bluetooth headset, the hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging seat provided by the embodiment does not need to charge the headset through the headset line, and is simple in charging operation, flexible and practical; meanwhile, the earphone body in the charging seat can be wirelessly connected with the Bluetooth communication terminal, and has the functions of playing, Bluetooth and answering and dialing, complete functions and wide application range.
In one embodiment, a bluetooth antenna, a microphone, a first indicator light and a bluetooth chip of an MCU program controller are further disposed on the PCB, and the bluetooth chip of the MCU program controller is electrically connected to the speaker, the battery of the headset, the touch button, the charging pin of the headset, the bluetooth antenna, the microphone, and the first indicator light, respectively.
In one embodiment, the bluetooth antenna is a bluetooth ceramic antenna.
In one embodiment, the earphone battery and the bin battery are rechargeable lithium batteries, a rechargeable bin program control chip, a TYPE-C charging seat and a second indicator lamp are arranged on the bin PCB, the rechargeable bin program control chip is respectively electrically connected with the bin battery, the first bin key, the second bin key, the bin charging thimble, the TYPE-C charging seat and the second indicator lamp, and a fourth through hole corresponding to the TYPE-C charging seat is further arranged on the front surface of the middle shell.
Drawings
Fig. 1 is a schematic diagram of the overall mechanical structure of a wireless bluetooth headset charger with a castellated ear-hook type touch in one embodiment;
FIG. 2 is a schematic diagram showing an exploded rear view of the wireless Bluetooth headset charger of the hamburger-shaped ear-hook type touch in FIG. 1;
FIG. 3 is a schematic diagram of a structure of a bin PCB board in an embodiment;
FIG. 4 is a schematic diagram of a front side structure of an embodiment of a PCB of the headset;
FIG. 5 is a schematic diagram of a back side structure of the PCB board of the earphone of FIG. 4;
fig. 6 is a schematic circuit diagram of a wireless bluetooth headset charger with a castellated ear-hook type touch in one embodiment.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise. In the description of the present invention, "a plurality" means at least one, e.g., one, two, etc., unless specifically limited otherwise.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the methods or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1 to 6, the present embodiment provides a hamburger-shaped ear-hanging type touch wireless bluetooth headset charging stand, which includes a charging chamber portion and a headset portion, wherein,
the earphone part comprises a left earphone body and a right earphone body, the earphone bodies comprise an earphone bottom shell 18, an earphone face shell 13 and a silica gel ear-hang 12, the silica gel ear-hang 12 is arc-shaped, the earphone face shell 13 is installed above the earphone bottom shell 18, the earphone face shell 13 and the earphone bottom shell 18 form an earphone shell, a groove 28 is formed in the side wall of the earphone shell, a connecting column 27 matched with the groove 28 is arranged at one end of the silica gel ear-hang 12, and the connecting column 27 is inserted into the groove 28 and has freedom degree of free rotation around the groove 28; the lower end of the earphone bottom shell 18 is provided with a sound transmission structure, the sound transmission structure comprises a sound transmission pipe 24 which is arranged at the bottom of the earphone bottom shell 18 and extends downwards and a loudspeaker shell which is buckled outside the sound transmission pipe 24, the loudspeaker shell comprises a loudspeaker upper cover 19 and a loudspeaker lower cover 21 which are connected in a pressing mode, and a loudspeaker 20 is arranged in a cavity formed by the loudspeaker upper cover 19 and the loudspeaker lower cover 21; a first magnet 17 is arranged on the inner wall of the bottom of the earphone bottom shell 18 far away from the sound transmission tube 24, an earphone PCB 15 and an earphone battery 16 are arranged in the earphone shell above the sound transmission tube 24, the earphone PCB 15 is arranged above the earphone battery 16, and the earphone PCB 15 is electrically connected with the loudspeaker 20 and the earphone battery 16 respectively; an earphone charging thimble 39 and a touch key 41 are welded on the earphone PCB 15, the earphone charging thimble 39 passes through the earphone bottom shell 18 and is far away from the bottom of the sound transmission tube 24 and extends to the outside of the earphone bottom shell 18, and a first through hole 14 corresponding to the touch key 41 is arranged on the earphone face shell 13;
the whole charging bin part is of a disc-shaped structure (similar to a hamburger-shaped structure), the charging bin part comprises an upper shell 1, an upper shell liner 2, a middle shell 7, a lower shell liner 10 and a lower shell 11, the upper shell 1 and the upper shell liner 2 as well as the lower shell 11 and the lower shell liner 10 are connected through rotating structures, the upper shell liner 2 and the lower shell liner 10 are installed in the middle shell 7 in a pressing mode, and one face, opposite to the lower shell liner 10, of the upper shell liner 2 is provided with a containing groove 22 for containing an earphone body; a second magnet 3, a first bin button 4, a bin PCB 5, a bin battery 6, a second bin button 8 and a third magnet 9 are arranged in a cavity formed by the upper shell liner 2 and the lower shell liner 10 facing each other, the second magnet 3 and the first bin button 4 are attached to the outer wall of the upper shell liner 2, the second magnet 3 and the first magnet in the earphone body arranged on the upper shell liner 2 are positioned on the same vertical line, and a second through hole 23 corresponding to the first bin button 4 is arranged on the surface of the upper shell liner 2 provided with a containing groove; the third magnet 9 and the second bin key 8 are attached to the outer wall of the lower shell liner 10, the third magnet 9 and the first magnet in the earphone body placed on the lower shell liner 10 are positioned on the same vertical line, and a third through hole 26 corresponding to the second bin key 8 is formed in the surface, provided with the accommodating groove, of the lower shell liner 10; the bin PCB 5 is arranged between the first bin key 4 and the second bin key 8, and the bin PCB 5 is electrically connected with the first bin key 4, the second bin key 8 and the bin battery 6 respectively; and two bin charging thimbles 33 are welded on the bin PCB 5, one of the bin charging thimbles passes through the upper shell liner 2 to be contacted with an earphone charging thimble on an earphone body arranged on the upper shell liner 2, and the other bin charging thimble passes through the lower shell liner 10 to be contacted with an earphone charging thimble on an earphone body arranged on the lower shell liner 10. Specifically, the rotation structure may be a rotation post respectively provided at the bottom of the rear sides of the upper case 1 and the lower case 11 and a rotation groove respectively provided on the inner wall of the rear side of the upper case liner 2 and the inner wall of the rear side of the lower case liner 10, the rotation post on the upper case 1 is installed in the rotation groove on the upper case liner 2, and the rotation post on the lower case 11 is installed in the rotation groove on the lower case liner 10.
In this embodiment, the welding has the earphone thimble 39 that charges on the earphone PCB board 15, the welding has the storehouse thimble 33 that charges on the storehouse PCB board 5, when this internal earphone battery 16 electric quantity of earphone is not enough or when not having the electricity, the user can place two earphone body correspondences in the accommodating groove on epitheca inner bag 2 and inferior valve inner bag 10, because this internal first magnet 17 that still is equipped with of earphone, the correspondence is equipped with second magnet 3 and third magnet 9 on the outer wall of epitheca inner bag 2 and inferior valve inner bag 10 in the storehouse, and this internal first magnet of earphone with placing on epitheca inner bag 2 of second magnet 3 is in same vertical line, third magnet 9 is in same vertical line with the this internal first magnet of earphone of placing on inferior valve inner bag 10. Therefore, when two earphone bodies are correspondingly placed in the accommodating grooves in the upper shell liner 2 and the lower shell liner 10, under the action of magnetic force, the earphone body part and the charging bin part can be attached more closely, so that the earphone charging thimble on the earphone PCB 15 in the earphone body is in contact with the bin charging thimble 33 on the bin PCB 5 to be conductive, and the earphone body is charged through the bin charging thimble 33.
In one embodiment, the headset PCB 15 is further provided with a bluetooth antenna 36, a microphone 37, a first indicator light 38 and a MCU program controller bluetooth chip 40, and the MCU program controller bluetooth chip 40 is electrically connected to the speaker 20, the headset battery 16, the touch button 41, the headset charging pin 39, the bluetooth antenna 36, the microphone 37 and the first indicator light 38, respectively. Specifically, the bluetooth antenna 36 is a bluetooth ceramic antenna.
The MCU program controller bluetooth chip 40 provided in this embodiment includes: touch control, bluetooth decoding, instruction, audio acquisition, audio left and right channel output, and the like.
The bluetooth antenna 36 is used for performing wireless communication with a bluetooth communication device, and specifically, the bluetooth communication device may be a mobile phone; the loudspeaker 20 is used for outputting an audio signal which is sent by a decoding mobile phone or other Bluetooth communication equipment through the MCU program controller Bluetooth chip 40; the microphone 37 is used for converting the audio signal of the user into a current wave signal, and the MCU program controller Bluetooth chip 40 is used for decoding the current wave signal, converting the current wave signal into an audio signal, and wirelessly transmitting the audio signal to the opposite mobile phone through the Bluetooth antenna 36; the first indicator light 38 may be a multi-color LED light, and the MCU controller bluetooth chip 40 may control the LED light to emit different colors according to the power of the battery 16 of the headset to remind the user of the current power of the battery 16 of the headset in the headset body.
Specifically, after the user takes out two left and right earphone bodies from the charging bin part, the two left and right earphone bodies can be automatically paired, after the pairing is completed, the user can open the Bluetooth setting in the mobile phone to find the current earphone Bluetooth name, and the pairing connection with the earphone body is established. After the pairing connection is successful, the program setting can be carried out, when a call comes in, the single touch button 41 can be communicated with the opposite side through the microphone 37, and the double touch button 41 is pressed to call back the contact number which is communicated last time; when the mobile phone is in a music playing state, the one-touch key 41 pauses playing, the volume is increased by double-clicking the touch key on the earphone body of the right ear, and the long-time pressing of the touch key 41 is to play down a piece of music, specifically, the long-time pressing can be set to be 2 seconds; double-clicking the touch key on the left ear earphone body reduces the volume, long-time pressing of the touch key for more than 2 seconds is to play down a piece of music, and triple clicking the touch key is to dial back the phone.
In one embodiment, the earphone battery 16 and the bin battery 6 are rechargeable lithium batteries, the bin PCB 5 is provided with a charging bin program control chip 35, a TYPE-C charging seat 32 and a second indicator light 34, the charging bin program control chip 35 is electrically connected with the bin battery 6, the first bin key 4, the second bin key 8, the bin charging thimble 33, the TYPE-C charging seat 32 and the second indicator light 34, respectively, and the front surface of the middle shell 7 is further provided with a fourth through hole 25 corresponding to the TYPE-C charging seat 32.
In this embodiment, the earphone battery 16 and the bin battery 6 are rechargeable lithium batteries, the bin PCB board 5 is provided with a charging bin program control chip 35, a TYPE-C charging seat 32 and a second indicator light 34, and when the earphone battery 16 is fully charged, the earphone battery 16 can supply power to the MCU program controller bluetooth chip 40; when the earphone battery 16 is insufficient or exhausted and the bin battery 6 is sufficient in electricity, the two earphone bodies can be correspondingly placed in the accommodating grooves on the upper shell liner 2 and the lower shell liner 10, under the action of magnetic force, the earphone charging thimble 39 on the earphone PCB 15 is in contact with the bin charging thimble 33 on the bin PCB 5, so that 5V voltage is output to the bin charging thimble 33 through the charging bin program control chip 35 on the bin PCB 5, and then the power supply to the earphone battery 16 is realized through the earphone charging thimble 39 on the earphone PCB 15 in contact with the bin charging thimble 33; when the earphone battery 16 and the cabin battery 6 are insufficient or exhausted, the cabin battery 6 can be supplied with power by connecting the TYPE-C charging base 32 with an external power supply and controlling the 5V voltage input from the TYPE-C charging base 32 through the charging cabin program control chip 35. The user can also correspondingly cut off the charging of the charging bin program control chip 35 to the left and the right earphone bodies through the first bin key 4 on the upper shell liner 2 and the second bin key 8 on the lower shell liner 10. Specifically, the second indicator light 34 may be a multi-color LED light, and the second indicator light 34 is used for emitting lights with different colors according to the power of the indication cabin battery 6 to remind the user of the power condition of the current cabin battery 6.
Compared with the traditional wired Bluetooth headset, the hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging seat provided by the embodiment does not need to charge the headset through the headset line, and is simple in charging operation, flexible and practical; meanwhile, the earphone body in the charging seat can be wirelessly connected with the Bluetooth communication terminal, and has the functions of playing, Bluetooth and answering and dialing, complete functions and wide application range.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (4)

1. A hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging seat is characterized by comprising a charging chamber part and a headset part, wherein,
the earphone part comprises two earphone bodies, each earphone body comprises an earphone bottom shell, an earphone face shell and a silica gel ear hook, each silica gel ear hook is arc-shaped, each earphone face shell is installed above the earphone bottom shell, each earphone face shell and the corresponding earphone bottom shell form an earphone shell, a groove is formed in the side wall of each earphone shell, a connecting column matched with the groove is arranged at one end of each silica gel ear hook, and each connecting column is inserted into the corresponding groove and has freedom degree of free rotation around the corresponding groove; the lower end of the earphone bottom shell is provided with a sound transmission structure, the sound transmission structure comprises a sound transmission pipe and a loudspeaker shell, the sound transmission pipe is arranged at the bottom of the earphone bottom shell and extends downwards, the loudspeaker shell is buckled outside the sound transmission pipe, the loudspeaker shell comprises a loudspeaker upper cover and a loudspeaker lower cover which are connected in a pressing mode, and a loudspeaker is arranged in a cavity formed by the loudspeaker upper cover and the loudspeaker lower cover; a first magnet is arranged on the inner wall of the bottom of the earphone bottom shell far away from the sound transmission tube, an earphone PCB and an earphone battery are arranged in the earphone shell above the sound transmission tube, the earphone PCB is arranged above the earphone battery, and the earphone PCB is electrically connected with the loudspeaker and the earphone battery respectively; an earphone charging thimble and a touch key are welded on the earphone PCB, the earphone charging thimble penetrates through the earphone bottom shell and is far away from the bottom of the sound transmission tube and extends to the outside of the earphone bottom shell, and a first through hole corresponding to the touch key is formed in the earphone face shell;
the charging bin part is integrally of a disc-shaped structure and comprises an upper shell, an upper shell liner, a middle shell, a lower shell liner and a lower shell, wherein the upper shell and the upper shell liner and the lower shell liner are connected through rotating structures, the upper shell liner and the lower shell liner are arranged in the middle shell in a pressing mode, and one surfaces of the upper shell liner and the lower shell liner, which are opposite to each other, are provided with accommodating grooves for accommodating the earphone bodies; a second magnet, a first bin key, a bin PCB, a bin battery, a second bin key and a third magnet are arranged in a cavity formed by the upper shell liner and the lower shell liner facing each other, the second magnet and the first bin key are attached to the outer wall of the upper shell liner, the second magnet and the first magnet in the earphone body placed on the upper shell liner are positioned on the same vertical line, and a second through hole corresponding to the first bin key is formed in the surface, provided with the accommodating groove, of the upper shell liner; the third magnet and the second bin keys are attached to the outer wall of the lower shell liner, the third magnet and the first magnet in the earphone body placed on the lower shell liner are positioned on the same vertical line, and a third through hole corresponding to the second bin keys is formed in the surface, provided with the accommodating groove, of the lower shell liner; the bin PCB is arranged between the first bin key and the second bin key and is electrically connected with the first bin key, the second bin key and the bin battery respectively; and two bin charging thimbles are welded on the bin PCB, one of the bin charging thimbles penetrates through the upper shell liner and is contacted with an earphone charging thimble arranged on an earphone body on the upper shell liner, and the other bin charging thimble penetrates through the lower shell liner and is contacted with an earphone charging thimble arranged on an earphone body on the lower shell liner.
2. The hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging seat according to claim 1, wherein a Bluetooth antenna, a microphone, a first indicator light and an MCU program controller Bluetooth chip are further arranged on the headset PCB, and the MCU program controller Bluetooth chip is electrically connected with the loudspeaker, the headset battery, the touch key, the headset charging thimble, the Bluetooth antenna, the microphone and the first indicator light respectively.
3. The hamburger-shaped ear-hanging type touch wireless Bluetooth headset charging stand of claim 2, wherein the Bluetooth antenna is a Bluetooth ceramic antenna.
4. The wireless bluetooth headset charging seat of hamburg shape hangers formula touch of claim 2, characterized in that, earphone battery with the storehouse battery is rechargeable lithium cell, be equipped with rechargeable storehouse program control chip, TYPE-C charging seat and second pilot lamp on the storehouse PCB board, rechargeable storehouse program control chip respectively with the storehouse battery, first storehouse button, second storehouse button the storehouse thimble that charges, TYPE-C charging seat, second pilot lamp electricity link to each other, the front of well shell still be equipped with the corresponding fourth through-hole of TYPE-C charging seat.
CN201922343234.7U 2019-12-23 2019-12-23 Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch Active CN210840008U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922343234.7U CN210840008U (en) 2019-12-23 2019-12-23 Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch

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Application Number Priority Date Filing Date Title
CN201922343234.7U CN210840008U (en) 2019-12-23 2019-12-23 Wireless bluetooth headset charging seat of wireless of chinese fort shape hangers formula touch

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CN210840008U true CN210840008U (en) 2020-06-23

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111817371A (en) * 2020-06-28 2020-10-23 青岛歌尔智能传感器有限公司 Charging reminding method, charging box and computer readable storage medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111817371A (en) * 2020-06-28 2020-10-23 青岛歌尔智能传感器有限公司 Charging reminding method, charging box and computer readable storage medium
CN111817371B (en) * 2020-06-28 2022-05-17 青岛歌尔智能传感器有限公司 Charging reminding method, charging box and computer readable storage medium

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