CN213783576U - Low-power consumption wireless communication head-wearing wireless earphone - Google Patents
Low-power consumption wireless communication head-wearing wireless earphone Download PDFInfo
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- CN213783576U CN213783576U CN202120124406.6U CN202120124406U CN213783576U CN 213783576 U CN213783576 U CN 213783576U CN 202120124406 U CN202120124406 U CN 202120124406U CN 213783576 U CN213783576 U CN 213783576U
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Abstract
The utility model relates to a wireless earphone technical field, specific low-power consumption wireless communication wear-type wireless earphone that says so, include: the solar cell comprises a shell assembly, a solar cell panel and a connecting strip plate, wherein the shell assembly comprises an annular strip plate, the upper end of the annular strip plate is fixedly provided with the solar cell panel, and the lower end of the annular strip plate is movably connected with the connecting strip plate; the PCB assembly comprises a PCB body, and the upper end of the PCB body is fixedly connected with a SOT23-6 chip. The utility model is controlled by the SOT23-6 chip, so that the converted electric quantity of the solar panel enters through the solar input terminal; the storage battery is connected with the electronics to output, charges the storage battery, and in the same way, when the storage battery electric quantity is sufficient, and the standby battery electric quantity is not enough, the SOT23-6 chip is used for controlling, so that the standby battery can be charged by light energy, and compared with the head-wearing wireless earphone with the same power consumption, the cruising ability is increased, the low power consumption in the other meaning is completed, and the environment is more protected.
Description
Technical Field
The utility model relates to a wireless headset technical field particularly, relates to low-power consumption wireless communication head-mounted wireless headset.
Background
Headphones, as the name implies, are worn on the head, not inserted into the ear canal, as distinguished from the type of in-ear earplugs. It consists of two parts, a signal transmitter and an earphone (usually of moving coil type) with a signal receiving and amplifying device; the emitter is connected with a signal source, and a front stage or an earphone amplifier can be connected in front of the emitter to improve the tone quality and adjust the tone color; the Bluetooth earphone applies the Bluetooth technology to the hands-free earphone, so that users can avoid annoying wiring stumbling and can easily talk in various ways. Since the advent of Bluetooth headsets, Bluetooth headsets have been a good tool for improving efficiency of mobile commerce families;
however, the above solution has the following disadvantages in use: the traditional wireless headset has large power consumption and short endurance time, and can be used continuously, so that the electric quantity of the traditional wireless headset can be exhausted in one day, and frequent charging is needed.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides low-power consumption wireless communication head-mounted wireless earphone, can effectively solve the problem among the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a low power wireless communication headset comprising: the solar energy earphone comprises a shell assembly, a solar cell panel and a connecting strip plate, wherein the shell assembly comprises an annular strip plate, the upper end of the annular strip plate is fixedly provided with the solar cell panel, the lower end of the annular strip plate is movably connected with the connecting strip plate, the inner side of the connecting strip plate is fixedly connected with an earphone shell, the inner side of the earphone shell is fixedly connected with a loudspeaker shell, and the outer part of the loudspeaker shell is movably connected with an ear pad;
the PCB assembly comprises a PCB body, wherein the upper end of the PCB body is fixedly connected with a SOT23-6 chip, and the upper end of the PCB body is fixedly connected with a solar input terminal.
Preferably, the lower extreme fixedly connected with of annular slat left and right sides connects female, it has the public head of connection to connect female lower extreme swing joint, it has the screw to connect the outside swing joint of female, the screw passes and connects female end swing joint with annular slat.
Preferably, the inner part of the lower side of the connecting female head is movably connected with a rotating rod, the rotating rod penetrates through the outer part of the connecting female head and is movably connected with a connecting male head, and the lower end of the connecting male head is fixedly connected with a connecting ribbon board.
Preferably, the left side is fixedly connected with a storage battery in the earphone shell, and the right side is fixedly connected with a standby battery in the earphone shell.
Preferably, the earphone shell is fixedly connected with a charging interface on the right side, a function key group is fixedly mounted on the outer portion of the earphone shell on the right side, and an earphone hole is fixedly mounted on the earphone shell on the right side.
Preferably, the PCB body is fixedly provided with a power output terminal, the upper end of the PCB body is fixedly provided with a storage battery connecting terminal, and the upper end of the PCB body is fixedly provided with a spare battery connecting terminal.
Compared with the prior art, the utility model discloses following beneficial effect has:
the utility model can convert solar energy into electric energy to generate light energy through the solar cell panel, the utility model can program through the SOT23-6 chip, control the electric energy converted by the solar cell panel to charge light energy, the utility model can supply power when the earphone is normally used through the storage battery, when the storage battery is used up, the earphone is supplied with power through the standby battery, the storage battery and the standby battery can be supplied with power through the charging interface, operations such as pause of song switching can be carried out through the function key group, 3.5 audio wires can be inserted through the earphone holes to carry out wired connection, so that the utility model can carry out wireless connection and wired connection to adapt to the requirements of different users, and finally, when the electric quantity of the storage battery is insufficient and the electric quantity of the standby battery is sufficient, the solar cell panel can be controlled through the SOT23-6 chip, the converted electric quantity of the solar panel enters through the solar input terminal; the storage battery is connected with the electronics to output, charges the storage battery, and in the same way, when the storage battery electric quantity is sufficient, and the standby battery electric quantity is not enough, the SOT23-6 chip is used for controlling, so that the standby battery can be charged by light energy, and compared with the head-wearing wireless earphone with the same power consumption, the cruising ability is increased, the low power consumption in the other meaning is completed, and the environment is more protected.
Drawings
Fig. 1 is a schematic view of the overall structure of the low power consumption wireless communication headset of the present invention;
fig. 2 is a schematic view of the front view internal structure of the low power consumption wireless communication headset of the present invention;
fig. 3 is a schematic view of the overlooking internal structure of the low power consumption wireless communication headset of the present invention;
fig. 4 is a schematic structural view of the PCB board assembly of the low power consumption wireless communication headset of the present invention;
fig. 5 is a flow chart of the low power consumption wireless communication headset of the present invention.
In the figure: 1. a housing assembly; 101. an annular slat; 102. a solar panel; 103. a screw; 104. a rotating rod; 105. connecting a male head; 106. connecting the ribbon boards; 107. an earphone housing; 108. a speaker housing; 109. an ear pad; 110. a storage battery; 111. a backup battery; 112. a charging interface; 113. a function key group; 114. an earphone hole; 115. connecting the female head; 2. a PCB board assembly; 201. a PCB body; 202. a power supply output terminal; 203. a battery connection terminal; 204. a backup battery connection terminal; 205. a solar energy input terminal; 206. SOT23-6 chip.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Examples
As shown in fig. 1 to 5, a low power wireless communication headset includes: the shell assembly 1 comprises an annular slat 101, a solar panel 102 is fixedly mounted at the upper end of the annular slat 101, a connecting slat 106 is movably connected at the lower end of the annular slat 101, an earphone shell 107 is fixedly connected to the inner side of the connecting slat 106, a loudspeaker shell 108 is fixedly connected to the inner side of the earphone shell 107, and an ear pad 109 is movably connected to the outer part of the loudspeaker shell 108;
Can play the effect of support through annular slat 101, and install solar cell panel 102 on annular slat 101, can carry out the electric energy conversion, convert solar energy into electric energy and carry out the light energy electricity generation, can be connected with annular sky half through connecting slat 106, angle of adjustment, then be connected with earphone shell 107 and speaker shell 108, make can adjust angle between them, can increase the comfort level of wearing etc. through ear pad 109, can carry out the procedure through SOT23-6 chip 206 and burn, the electric energy of control solar cell panel 102 conversion carries out the light energy and charges.
In this embodiment, the lower ends of the left and right sides of the annular slat 101 are fixedly connected with a linking female head, the lower end of the linking female head 115 is movably connected with a linking male head 105, the outside of the linking female head 115 is movably connected with a screw 103, the screw 103 passes through the end of the linking female head 115 and is movably connected with the annular slat 101, the inside of the lower side of the linking female head 115 is movably connected with a rotating rod 104, the rotating rod 104 passes through the outside of the linking female head 115 and is movably connected with the linking male head 105, and the lower end of the linking male head 105 is fixedly connected with a linking slat 106. Can carry out fixed connection with connecting female 115 and annular slat 101 through screw 103, can let through bull stick 104 and connect public head 105 and move about connecting female 115 is inside for the angle of earphone can carry out angle of adjustment according to user's head form, the more user of adaptation.
In this embodiment, a battery 110 is fixedly connected to the inside of the left earphone case 107, and a backup battery 111 is fixedly connected to the inside of the right earphone case 107. The earphone can be powered by the storage battery 110 when the earphone is normally used, and when the storage battery 110 is used up, the earphone is powered by the spare battery 111.
In this embodiment, the charging interface 112 is fixedly connected to the outside of the right earphone housing 107, the function key set 113 is fixedly mounted to the outside of the right earphone housing 107, and the earphone hole 114 is fixedly mounted to the right earphone housing 107.
In this embodiment, a power output terminal 202 is fixedly mounted on the PCB board 201, a battery connecting terminal 203 is fixedly mounted on the upper end of the PCB board 201, and a backup battery connecting terminal 204 is fixedly mounted on the upper end of the PCB board 201. When the storage battery 110 is low in charge and the backup battery 111 is high in charge, the SOT23-6 chip 206 controls the storage battery to enable the converted electricity of the solar panel 102 to enter through the solar input terminal 205; the storage battery 110 is connected with the electronics for outputting, the storage battery 110 is charged, similarly, when the storage battery 110 is fully charged and the standby battery 111 is not fully charged, the SOT23-6 chip 206 is used for controlling the standby battery 111 to be charged with light energy, so that compared with the headset with the same power consumption, the battery has the advantages that the cruising ability is increased, the low power consumption in another meaning is achieved, and the environment is protected.
The working principle of the low-power wireless communication head-wearing type wireless earphone is as follows:
when in use, firstly, the annular slat 101 can play a supporting role, the solar cell panel 102 is arranged on the annular slat 101, electric energy conversion can be carried out, solar energy is converted into electric energy to carry out light energy power generation, the solar cell panel can be connected with the annular sky through the connecting slat 106, the angle can be adjusted, then the solar cell panel 102 is connected with the earphone shell 107 and the loudspeaker shell 108, the angles of the earphone shell and the loudspeaker shell can be adjusted, the wearing comfort degree can be increased through the ear pad 109, program programming can be carried out through the SOT23-6 chip 206, the electric energy converted by the solar cell panel 102 is controlled to carry out light energy charging, the connecting female head 115 and the annular slat 101 can be fixedly connected through the screw 103, the connecting male head 105 can move inside the connecting female head 115 through the rotating rod 104, the angle of the earphone can be adjusted according to the head shape of a user, and more users can be adapted, the earphone can be powered through the storage battery 110 when the earphone is normally used, when the storage battery 110 is used up, the earphone is powered through the standby battery 111, the storage battery 110 and the standby battery 111 can be powered through the charging interface 112, song switching, pause and other operations can be performed through the function key set 113, and a 3.5 audio line can be inserted through the earphone hole 114 for wired connection, so that the utility model can be wirelessly connected and wired connected to adapt to the requirements of different users, and finally, when the storage battery 110 has insufficient electric quantity and the standby battery 111 has sufficient electric quantity, the SOT23-6 chip 206 is used for controlling, so that the converted electric quantity of the solar cell panel 102 enters through the solar input terminal 205; the storage battery connecting terminal 203 outputs to charge the storage battery 110, and similarly, when the storage battery 110 is fully charged and the standby battery 111 is not fully charged, the SOT23-6 chip 206 controls the standby battery 111 to be charged with light energy, so that compared with the headset with the same power consumption, the battery charger increases cruising ability, achieves the 'low power consumption' in another sense, and is more environment-friendly.
It should be noted that the specific model of the SOT23-6 chip 206 is EN8F202, and the specific model selection calculation method adopts the prior art in the field, so detailed description is omitted.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (6)
1. Low-power consumption wireless communication headset, its characterized in that includes:
the solar energy earphone comprises a shell assembly (1), wherein the shell assembly (1) comprises an annular slat (101), a solar cell panel (102) is fixedly mounted at the upper end of the annular slat (101), a connecting slat (106) is movably connected at the lower end of the annular slat (101), an earphone shell (107) is fixedly connected to the inner side of the connecting slat (106), a loudspeaker shell (108) is fixedly connected to the inner side of the earphone shell (107), and an ear pad (109) is movably connected to the outer side of the loudspeaker shell (108);
PCB board subassembly (2), PCB board subassembly (2) is including PCB body (201), PCB body (201) upper end fixedly connected with SOT23-6 chip (206), PCB body (201) upper end fixedly connected with solar energy input terminal (205).
2. A low power wireless communication headset according to claim 1, wherein: annular slat (101) left and right sides lower extreme fixedly connected with connects female (115), connect female (115) lower extreme swing joint and connect public head (105), connect female (115) outside swing joint and have screw (103), screw (103) pass and connect female (115) end swing joint and have annular slat (101).
3. A low power wireless communication headset according to claim 2, wherein: connect female head (115) downside inside swing joint and have bull stick (104), bull stick (104) pass and connect female head (115) outside swing joint and connect public head (105), connect public head (105) lower extreme fixedly connected with and connect slat (106).
4. A low power wireless communication headset according to claim 1, wherein: the left side earphone shell (107) inside fixedly connected with battery (110), the right side earphone shell (107) inside fixedly connected with spare battery (111).
5. The low power wireless communication headset of claim 4, wherein: the right side earphone shell (107) outside fixedly connected with interface (112) that charges, right side earphone shell (107) outside fixed mounting has function button group (113), right side earphone shell (107) fixed mounting has earphone hole (114).
6. A low power wireless communication headset according to claim 1, wherein: PCB board body (201) fixed mounting has power output terminal (202), PCB board body (201) upper end fixed mounting has battery connecting terminal (203), PCB board body (201) upper end fixed mounting has battery backup connecting terminal (204).
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CN202120124406.6U CN213783576U (en) | 2021-01-18 | 2021-01-18 | Low-power consumption wireless communication head-wearing wireless earphone |
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CN202120124406.6U CN213783576U (en) | 2021-01-18 | 2021-01-18 | Low-power consumption wireless communication head-wearing wireless earphone |
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CN202120124406.6U Active CN213783576U (en) | 2021-01-18 | 2021-01-18 | Low-power consumption wireless communication head-wearing wireless earphone |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
USD1010612S1 (en) | 2021-12-20 | 2024-01-09 | Raymond Gecawicz | Headset |
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2021
- 2021-01-18 CN CN202120124406.6U patent/CN213783576U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
USD1010612S1 (en) | 2021-12-20 | 2024-01-09 | Raymond Gecawicz | Headset |
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