CN219740429U - Voice service data transmission device - Google Patents

Voice service data transmission device Download PDF

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Publication number
CN219740429U
CN219740429U CN202321399889.6U CN202321399889U CN219740429U CN 219740429 U CN219740429 U CN 219740429U CN 202321399889 U CN202321399889 U CN 202321399889U CN 219740429 U CN219740429 U CN 219740429U
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China
Prior art keywords
sound
voice
shell
service data
data transmission
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CN202321399889.6U
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Chinese (zh)
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赵静
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92020 Unit Of Chinese Pla
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92020 Unit Of Chinese Pla
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Abstract

The utility model provides a voice service data transmission device, which comprises a voice transmission assembly, wherein the voice transmission assembly comprises a radio barrel, a noise reduction layer, a current equalizing plate, a sound pickup, a filter, a current equalizing hole, a shell, a through hole, two clamping grooves, a net cover, two clamping grooves, two buckles, a data transfer device and a transmitting antenna; the through hole is formed in the front surface of the shell. According to the utility model, noise in sound can be reduced through the noise reduction layer, the sound can be led into the pickup through the flow equalizing holes, so that the pickup can better pick up the sound, the pickup can send voice data to the data forwarding device through the filter after picking up the sound, then the voice data signal is sent out through the sending antenna, so that real-time voice communication of the intercom terminal is realized, the overall practicability is enhanced, the net cover can play a dustproof role, and the net cover can be taken down through the buckling grooves, so that dust adhered on the surface of the net cover can be cleaned.

Description

Voice service data transmission device
Technical Field
The utility model relates to a device, in particular to a voice service data transmission device, and belongs to the technical field of voice transmission.
Background
The voice transmission technology is a communication technology developed based on the Internet and a mobile communication network, can realize real-time communication in voice and other modes, and is popular among many users. In the instant messaging technology, the voice intercom function is an important voice communication mode. Based on the voice communication mode, the user can perform real-time voice chat, so that the real-time communication requirement of the user is effectively met, and the voice communication method is widely applied to instant communication of the intercom terminal.
The known China public authorized utility model (publication number: CN 213990702U) discloses a voice transmission device based on Bluetooth chip control, which is characterized in that voice is sent to a transmission device body, the transmission device body processes and recognizes the transmitted voice through a processor through a fixedly installed signal receiver, and the voice is sent to a data terminal or a room through a wireless transceiver and a loudspeaker;
although it realizes the receiving, playing and transferring of voice data, it does not have the function of receiving and transmitting voice to other terminals in real time, but the current intercom terminals all need to realize the real-time communication of voice, so the practicability of the voice transmission device is not strong, and for this reason, a voice service data transmission device is proposed.
Disclosure of Invention
In view of the foregoing, the present utility model provides a voice service data transmission device to solve or alleviate the technical problems existing in the prior art, and at least provide an advantageous choice.
The technical scheme of the embodiment of the utility model is realized as follows: the voice service data transmission device comprises a voice transmission assembly, wherein the voice transmission assembly comprises a sound receiving barrel, a noise reduction layer, a flow equalization plate, a sound pickup, a filter, a flow equalization hole, a shell, a through hole, two clamping grooves, a net cover, two buckling grooves, two buckles, a data transfer device and a transmitting antenna;
the through hole is formed in the front surface of the shell, the front surface of the sound receiving barrel is fixedly connected with the inner front wall of the shell, the noise reduction layer and the flow equalizing plate are fixedly connected to the inner side wall of the sound receiving barrel, the flow equalizing holes are formed in the inner part of the flow equalizing plate at equal intervals, the pickup is mounted on the inner rear wall of the sound receiving barrel, the filter is mounted on the rear surface of the sound receiving barrel, the data transfer device is mounted on the inner top wall of the shell, the transmitting antenna is mounted on the upper surface of the shell, the two clamping grooves are symmetrically formed in the front surface of the shell, the two clamping grooves are symmetrically and fixedly connected to the rear surface of the mesh enclosure, and the two clamping grooves are symmetrically formed in the front surface of the mesh enclosure.
Further preferably, the positions of the radio receiver and the mesh enclosure correspond to the positions of the through holes, and the buckle is clamped on the inner side wall of the clamping groove.
Further preferably, the front part of the sound receiving barrel is conical, and the flow equalizing plate is positioned at the rear part of the noise reduction layer.
Further preferably, a sound receiving assembly is arranged on the inner front wall of the shell, and comprises an indicator lamp, a touch screen, a sound hole, a heat radiation port, four ear plates, a storage battery, a loudspeaker and a receiving antenna;
the speaker is mounted to an inner front wall of the housing.
Further preferably, the sound holes are uniformly formed in the front surface of the shell, and the positions of the speakers correspond to the positions of the sound holes.
Further preferably, the indicator light and the touch screen are both mounted on the front surface of the housing.
Further preferably, the four ear plates are symmetrically and fixedly connected to two sides of the shell, and the heat dissipation openings are symmetrically formed in two sides of the shell.
Further preferably, the storage battery is mounted to an inner bottom wall of the case, and the receiving antenna is mounted to an upper surface of the case.
By adopting the technical scheme, the embodiment of the utility model has the following advantages: according to the utility model, the sound is received through the sound receiving barrel, the noise in the sound can be reduced through the noise reduction layer after the external voice enters the sound receiving barrel, the sound can be guided to the pickup through the flow equalizing holes and the flow equalizing plate, so that the pickup can better receive the sound, the pickup sends voice data into the data transfer device through the filter after receiving the sound, then the voice data signal is sent out through the sending antenna, further real-time voice communication of the intercom terminal is realized, the overall practicability is enhanced, the dustproof effect can be achieved through the mesh cover, and the mesh cover can be removed through the buckling grooves, so that dust adhered to the surface of the mesh cover can be cleaned.
The foregoing summary is for the purpose of the specification only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the present utility model will become apparent by reference to the drawings and the following detailed description.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that 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 the present utility model;
FIG. 2 is a block diagram of a housing of the present utility model;
FIG. 3 is a schematic diagram of a voice transmitting assembly and a sound receiving assembly according to the present utility model;
FIG. 4 is a diagram of a screen structure of the present utility model;
FIG. 5 is a block diagram of a radio receiver according to the present utility model.
Reference numerals: 101. a voice transmission component; 11. a radio tube; 12. a noise reduction layer; 13. a flow equalizing plate; 14. a sound pickup; 15. a filter; 16. flow equalizing holes; 17. a housing; 18. a through hole; 19. a clamping groove; 20. a mesh enclosure; 21. a buckling groove; 22. a buckle; 23. a data transfer device; 24. a transmitting antenna; 301. a radio assembly; 31. an indicator light; 32. a touch screen; 33. an acoustic aperture; 34. a heat radiation port; 35. ear plates; 36. a storage battery; 37. a speaker; 38. and a receiving antenna.
Detailed Description
Hereinafter, only certain exemplary embodiments are briefly described. As will be recognized by those of skill in the pertinent art, the described embodiments may be modified in various different ways without departing from the spirit or scope of the present utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive.
Embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1-5, the embodiment of the present utility model provides a voice service data transmission device, which includes a voice transmission assembly 101, where the voice transmission assembly 101 includes a sound receiving barrel 11, a noise reduction layer 12, a current equalizing plate 13, a sound pickup 14, a filter 15, a current equalizing hole 16, a housing 17, a through hole 18, two clamping grooves 19, a mesh enclosure 20, two buckling grooves 21, two buckles 22, a data forwarding device 23 and a transmitting antenna 24;
the through hole 18 is formed in the front surface of the shell 17, the front surface of the sound receiving barrel 11 is fixedly connected to the inner front wall of the shell 17, the noise reduction layer 12 and the flow equalizing plate 13 are fixedly connected to the inner side wall of the sound receiving barrel 11, the flow equalizing holes 16 are formed in the flow equalizing plate 13 at equal intervals, the pickup 14 is mounted on the inner rear wall of the sound receiving barrel 11, the filter 15 is mounted on the rear surface of the sound receiving barrel 11, the data transfer device 23 is mounted on the inner top wall of the shell 17, the transmitting antenna 24 is mounted on the upper surface of the shell 17, the two clamping grooves 19 are symmetrically formed in the front surface of the shell 17, the two clamping buckles 22 are symmetrically and fixedly connected to the rear surface of the net cover 20, and the two clamping grooves 21 are symmetrically formed in the front surface of the net cover 20.
In an embodiment, the positions of the sound receiving barrel 11 and the mesh enclosure 20 correspond to the positions of the through holes 18, the buckle 22 is clamped on the inner side wall of the clamping groove 19, the mesh enclosure 20 can be clamped on the front surface of the shell 17 through the cooperation of the buckle 22 and the clamping groove 19, the through holes 18 can be shielded through the mesh enclosure 20, and external dust is prevented from entering the sound receiving barrel 11.
In one embodiment, the front part of the sound receiving barrel 11 is conical, the flow equalizing plate 13 is located at the rear of the noise reducing layer 12, the sound receiving range can be increased through the conical structure of the sound receiving barrel 11, when sound is received, the noise in the sound source can be reduced through the noise reducing layer 12, and the sound can be guided into the sound pickup 14 through the flow equalizing hole 16 and the flow equalizing plate 13, so that the sound pickup 14 can receive sound better.
In one embodiment, the inner front wall of the housing 17 is provided with a sound receiving assembly 301, and the sound receiving assembly 301 comprises an indicator light 31, a touch screen 32, a sound hole 33, a heat radiation port 34, four ear plates 35, a storage battery 36, a loudspeaker 37 and a receiving antenna 38;
the loudspeaker 37 is arranged on the inner front wall of the shell 17, the sound holes 33 are uniformly formed in the front surface of the shell 17, the positions of the loudspeaker 37 correspond to the positions of the sound holes 33, received voice data can be played through the loudspeaker 37, and sound can be better transmitted through the sound holes 33.
In one embodiment, the indicator light 31 and the touch screen 32 are both mounted on the front surface of the housing 17, and the working state of the device at this time can be displayed by the indicator light 31, and the device can be controlled by the touch screen 32.
In one embodiment, four ear plates 35 are symmetrically and fixedly connected to two sides of the housing 17, the heat dissipation openings 34 are symmetrically formed in two sides of the housing 17, the receiving antenna 38 is mounted on the upper surface of the housing 17, the housing 17 can be mounted at a designated position through the ear plates 35, heat dissipation is facilitated through the heat dissipation openings 34, and voice data is received through the receiving antenna 38.
In one embodiment, the battery 36 is mounted on the inner bottom wall of the housing 17, the electrical output end of the battery 36 is electrically connected to the electrical input end of the touch screen 32, the electrical output end of the touch screen 32 is electrically connected to the electrical input ends of the pickup 14, the filter 15, the data transmitter 23, the transmitting antenna 24, the indicator 31, the touch screen 32, the speaker 37 and the receiving antenna 38 through relays, the signal transmitting end of the pickup 14 is communicated with the signal input end of the data transmitter 23 through the filter 15, the signal transmitting end of the data transmitter 23 is communicated with the signal receiving end of the transmitting antenna 24, and the signal transmitting end of the receiving antenna 38 is communicated with the signal receiving end of the speaker 37 through the data transmitter 23.
The utility model works when in work: the shell 17 can be installed at a specified position through the ear plate 35, the receiving antenna 38 is controlled to work through the touch screen 32, voice signals can be received in real time through the receiving antenna 38, the received voice data are decoded through the data transfer device 23 and then sent to the loudspeaker 37, the voice data can be played through the loudspeaker 37, further, the voice data are received and played, when the voice data are required to be sent, the sound pick-up 14 is controlled to work through the touch screen 32, at the moment, external voice enters the sound pick-up barrel 11, noise in the sound can be reduced through the noise reduction layer 12, the sound can be guided into the sound pick-up 14 through the flow equalization hole 16 and the flow equalization plate 13, so that the sound pick-up 14 can receive the sound better, the sound pick-up 14 can send the voice signals to the data transfer device 23 through the filter 15 after receiving the sound, then send the voice signals through the sending antenna 24, further real-time voice communication of the speaking terminal can be realized, and the sound pick-up 20 can be taken down through the buckling groove 21, so that dust adhered to the surface of the net cover 20 can be cleaned.
The foregoing is merely illustrative of the present utility model, and the present utility model is not limited thereto, and any person skilled in the art will readily recognize that various changes and substitutions are possible within the scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the protection scope of the claims.

Claims (8)

1. Voice service data transmission device comprising a voice transmission component (101), characterized in that: the voice transmission assembly (101) comprises a sound receiving barrel (11), a noise reduction layer (12), a flow equalization plate (13), a sound pickup (14), a filter (15), a flow equalization hole (16), a shell (17), a through hole (18), two clamping grooves (19), a mesh enclosure (20), two buckling grooves (21), two buckles (22), a data transfer device (23) and a transmitting antenna (24):
the utility model discloses a sound pickup device, including casing (17), sound pickup device, filter (15), data transfer ware (23) install in the back surface of sound pickup device (11), data transfer ware (23) install in the inner roof of casing (17), send antenna (24) install in the upper surface of casing (17), two draw-in groove (19) symmetry set up in the front surface of casing (17), two buckle (22) symmetry fixed connection in the back surface of screen panel (20), two buckle groove (21) symmetry set up in the back surface of screen panel (20).
2. The voice service data transmission device according to claim 1, wherein: the positions of the radio barrel (11) and the net cover (20) correspond to the positions of the through holes (18), and the buckles (22) are clamped on the inner side walls of the clamping grooves (19).
3. The voice service data transmission apparatus according to claim 2, wherein: the front part of the sound receiving barrel (11) is conical, and the flow equalizing plate (13) is positioned behind the noise reduction layer (12).
4. The voice service data transmission device according to claim 1, wherein: the sound receiving assembly (301) is mounted on the inner front wall of the shell (17), and the sound receiving assembly (301) comprises an indicator lamp (31), a touch screen (32), sound holes (33), a heat dissipation port (34), four ear plates (35), a storage battery (36), a loudspeaker (37) and a receiving antenna (38);
the speaker (37) is mounted to an inner front wall of the housing (17).
5. The voice service data transmission apparatus according to claim 4, wherein: the sound holes (33) are uniformly formed in the front surface of the shell (17), and the positions of the speakers (37) correspond to the positions of the sound holes (33).
6. The voice service data transmission apparatus according to claim 4, wherein: the indicator lamp (31) and the touch screen (32) are both arranged on the front surface of the shell (17).
7. The voice service data transmission apparatus according to claim 4, wherein: the four lug plates (35) are symmetrically and fixedly connected to two sides of the shell (17), and the heat dissipation openings (34) are symmetrically formed in two sides of the shell (17).
8. The voice service data transmission apparatus according to claim 4, wherein: the storage battery (36) is mounted on the inner bottom wall of the housing (17), and the receiving antenna (38) is mounted on the upper surface of the housing (17).
CN202321399889.6U 2023-06-02 2023-06-02 Voice service data transmission device Active CN219740429U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321399889.6U CN219740429U (en) 2023-06-02 2023-06-02 Voice service data transmission device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321399889.6U CN219740429U (en) 2023-06-02 2023-06-02 Voice service data transmission device

Publications (1)

Publication Number Publication Date
CN219740429U true CN219740429U (en) 2023-09-22

Family

ID=88031802

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321399889.6U Active CN219740429U (en) 2023-06-02 2023-06-02 Voice service data transmission device

Country Status (1)

Country Link
CN (1) CN219740429U (en)

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