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CN108271144B - Bluetooth device and system for carrying out data bidirectional mutual transmission with terminal - Google Patents

Bluetooth device and system for carrying out data bidirectional mutual transmission with terminal Download PDF

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Publication number
CN108271144B
CN108271144B CN201810247393.4A CN201810247393A CN108271144B CN 108271144 B CN108271144 B CN 108271144B CN 201810247393 A CN201810247393 A CN 201810247393A CN 108271144 B CN108271144 B CN 108271144B
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bluetooth module
bluetooth
processor
management data
client
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CN108271144A (en
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杜宁
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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Abstract

The invention relates to a Bluetooth device and a Bluetooth system for carrying out data bidirectional mutual transmission with a terminal, comprising a first Bluetooth module and a first processor; the first Bluetooth module is in signal connection with the first processor; the first Bluetooth module is also respectively in communication connection with a second processor of the target terminal and a first client of the target terminal through a second Bluetooth module of the target terminal; the data acquired by the second processor are transmitted according to paths of the second Bluetooth module, the first processor, the first Bluetooth module, the second Bluetooth module and the first client; the data obtained by the first client is transmitted according to the paths of the second Bluetooth module, the first processor, the first Bluetooth module, the second Bluetooth module and the second processor, so that the limitation of crossing each platform is realized, call management data in the terminal are processed, and the flexibility of mobile voice call is improved.

Description

Bluetooth device and system for carrying out data bidirectional mutual transmission with terminal
Technical Field
The invention relates to the technical field of communication, in particular to a Bluetooth device and a Bluetooth system for carrying out data bidirectional mutual transmission with a terminal.
Background
Currently, various terminals with voice call functions, such as mobile phones and tablet computers, are limited by hardware architecture and operating systems, so that it is difficult for a user-installed Application (APP) to acquire and send voice data of the terminal during a call, and also difficult for related call management data, such as incoming call ringing, incoming call numbers, phonebooks, short messages, information prompts, and also difficult for implementing voice and call related operations, such as dialing, hang-up, number key selection, and the like.
This limitation ensures the security of the voice call to some extent, but loses the flexibility of the mobile voice call. For example, a user application program wants to implement the "call recording" function, which cannot be implemented in most terminals due to the difference of the respective operating system platforms and the limitation of the handset manufacturer.
Therefore, how to implement the limitation of crossing each platform, process the call management data in the terminal, and improve the flexibility of mobile voice call is a technical problem that needs to be solved by those skilled in the art.
Disclosure of Invention
The invention aims to provide a Bluetooth device and a Bluetooth system for carrying out data bidirectional interaction with a terminal, which realize the limitation of crossing each platform, process call management data in the terminal and improve the flexibility of mobile voice call.
In order to achieve the above object, the present invention provides a bluetooth device for bidirectional data transmission with a terminal, including a first bluetooth module and a first processor;
the first Bluetooth module is in signal connection with the first processor;
the first Bluetooth module is also in communication connection with a second processor of the target terminal and a first client of the target terminal respectively through a second Bluetooth module of the target terminal;
the second Bluetooth module sends first call management data obtained by processing the first original data acquired by the second processor to the first Bluetooth module;
the first Bluetooth module sends first conversion call management data obtained by processing the first call management data to the first processor;
the first processor sends first target call management data obtained after the first conversion call management data are processed to the second Bluetooth module through the first Bluetooth module;
the second Bluetooth module sends the first target call management data to the first client;
the first client processes the obtained second original data to obtain second session management data, and the second session management data is sent to the first Bluetooth module through the second Bluetooth module;
the first Bluetooth module sends the second session management data to the first processor;
the first processor processes the second call management data to obtain second conversion call management data and sends the second conversion call management data to the first Bluetooth module;
the first Bluetooth module sends third conversion call management data obtained after the second conversion call management data are processed to the second Bluetooth module;
and the second Bluetooth module processes the third conversion call management data to obtain second target call management data and sends the second target call management data to the second processor. Further, in the above bluetooth device, the first bluetooth module and the second bluetooth module are both provided with classical bluetooth channels.
Further, in the above bluetooth device, the first bluetooth module and the second bluetooth module are both further provided with a bluetooth low energy channel.
Further, in the above bluetooth device, the first call management data includes at least one of bluetooth audio encoded voice data, control information, and character information.
Further, in the bluetooth device, the second session management data includes at least one of custom-encoded voice data, control information, and character information.
Further, the bluetooth device further includes a control key;
the control key is in signal connection with the first processor;
further, the bluetooth device further comprises a power supply and a power management chip;
the power supply and the prompt mechanism are respectively connected with the power management chip through signals, and the power management chip is respectively connected with the first Bluetooth module and the first processor through electricity.
Further, the bluetooth device further comprises an indicator light;
the indicator light is in signal connection with the first processor.
The invention also provides a system for carrying out data bidirectional mutual transmission with the terminal, which comprises the target terminal and the Bluetooth device;
the Bluetooth device comprises a first Bluetooth module and a first processor;
the target terminal includes a second bluetooth module, a second processor, and a first client.
Further, the system further comprises an auxiliary terminal and a server;
the target terminal further comprises a first communication mechanism;
the auxiliary terminal is a terminal except the target terminal, and comprises a second client and a second communication mechanism;
the first client is in communication connection with the server through the first communication mechanism;
the second client is in communication connection with the server through the second communication mechanism;
and the first client and the second client realize data synchronization through the server so as to realize data interaction between the second client and the target terminal.
According to the Bluetooth device and the system for carrying out data bidirectional inter-transmission with the terminal, the first Bluetooth module is used for receiving the first original data or the second original data sent by the second Bluetooth module in the target terminal, and the first processor is used for returning the first target call management data corresponding to the obtained first original data to the first client, or returning the second target call management data corresponding to the obtained second original data to the second processor, so that the limitation of crossing each platform is realized, the call management data in the terminal is processed, and the flexibility of mobile voice call is improved.
Drawings
Fig. 1 is a schematic structural diagram of a bluetooth device according to a first embodiment of the present invention for bidirectional data transmission with a terminal;
fig. 2 is a schematic structural diagram of a second embodiment of a bluetooth device for bidirectional data transmission with a terminal according to the present invention;
FIG. 3 is a schematic diagram of a system for bidirectional data transmission with a terminal according to a first embodiment of the present invention;
fig. 4 is a schematic structural diagram of a second embodiment of a system for bidirectional data transmission with a terminal according to the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the technical solutions of the present embodiment will be clearly and completely described below in conjunction with specific embodiments of the present invention and corresponding drawings. It should be apparent that the described embodiments are only some, but not all, of the present embodiments. All other embodiments, which can be made by those skilled in the art without making any inventive effort, are intended to be within the scope of the present embodiments.
The terms first, second and the like in the description and in the claims and in the above-described figures, if any, are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used may be interchanged where appropriate such that the embodiments of the present application described herein may be implemented in other sequences than those illustrated herein.
The following examples are illustrative of the invention and are not intended to limit the scope of the invention.
Example 1
Fig. 1 is a schematic structural diagram of a first embodiment of a bluetooth device for bidirectional data transmission with a terminal according to the present invention, as shown in fig. 1, the bluetooth device for bidirectional data transmission with a terminal in this embodiment includes a first bluetooth module 11 and a first processor 12. The first bluetooth module 11 is in signal connection with the first processor 12, and the first bluetooth module 11 is also in communication connection with the second processor of the target terminal and the first client of the target terminal through the second bluetooth module of the target terminal.
For example, the first bluetooth module 11 and the second bluetooth module, and the first bluetooth module 11 and the first client may establish a secure and reliable communication connection by bluetooth pairing, key confirmation, bluetooth binding, password authentication, identity authentication, code scanning, and other manners. The first bluetooth module 11 and the second bluetooth module may perform data interaction according to one or more of the following protocols or specifications, such as a bluetooth hands-free protocol, a bluetooth phone book access protocol, a bluetooth information access protocol, an apple notification center service protocol, a bluetooth low energy related protocol, etc.
In a specific implementation process, the second processor may acquire first original data related to the call function of the terminal, and send the first original data to the second bluetooth module, where the second bluetooth module may process the first original data according to a corresponding bluetooth protocol, for example, encode and package the first original data according to the related bluetooth protocol, to obtain processed data, which may be referred to as first call management data in this embodiment. Because bluetooth connection is established between the first bluetooth module 11 and the second bluetooth module, the second bluetooth module may send the first call management data to the first bluetooth module 11, the first bluetooth module 11 then decodes the received first call management data according to the relevant bluetooth protocol, sends the converted call management data obtained after processing the received first call management data to the first processor 12, the first processor 12 processes the converted call management data to obtain the first target call management data, and after relevant processing and transmission by the first bluetooth module 11 and the second bluetooth module, finally sends the first target call management data to the first client, and the first client processes the first target.
The first call management data in this embodiment may include at least one of voice data, control information, and character information of bluetooth audio coding. For example, when performing a call, receiving information, or the like with the target terminal, the second processor may acquire the related data as the first original data. The technical scheme of the invention is described by taking the voice information heard by the target terminal when the target terminal answers the call as an uncoded voice data source. The target terminal obtains the first original data through the call data obtained by the mobile communication network, the first original data is obtained after being processed by the second processor 22 and is sent to the second Bluetooth module, the second Bluetooth module obtains the voice information of Bluetooth audio codes after processing and is transmitted to the first Bluetooth module 11, the first Bluetooth module 11 obtains the decoded voice information after decoding and is sent to the first processor 12, the first processor 12 recodes the voice data to obtain the custom-encoded voice data and is transmitted to the first client after processing and transmitting the custom-encoded voice data through the first Bluetooth module 11 and the second Bluetooth module, thus the first client can obtain call voice after decoding, and call recording is carried out on the target terminal, so that a user can inquire, process, transmit and the like call recording subsequently.
For another example, the second processor may use the address book in the target terminal as the first source of the original data, and send the address book to the first client according to the record of the related processing procedure, so that the first client can obtain the address book of the target terminal.
In this embodiment, since the systems of the terminals are all bluetooth supporting devices such as bluetooth headsets, vehicle bluetooth hands-free devices, etc. Therefore, after the bluetooth device of this embodiment establishes a trusted communication connection with the target terminal, it may intercept data such as incoming call, outgoing call, voice during a call, etc., and may use these data as first original data, and obtain first call management data after processing by the second bluetooth module, and send the first call management data to the first bluetooth module 11 of the bluetooth device of this embodiment in a bluetooth transmission manner, where the first bluetooth module 11 decodes and processes the received first call management data according to a relevant bluetooth protocol, and obtains voice data, control information, and character information, and sends the voice data to the first processor 12, and the first processor 12 performs custom encoding on the voice data to meet the bandwidth requirement of bluetooth data transmission. Further, the first processor 12 performs formatting processing on the control information, the character information or the custom-encoded voice data, so as to obtain first target call management data, and transmits the first target call management data to a specific first client installed on the target terminal through transmission of a bluetooth data channel, so that the first client can obtain the first target call management data, and finally obtain the first original data obtained by the second processor, thereby achieving the capability of bypassing the system to limit the acquisition of the first call management data. The bluetooth data channel in this embodiment may include a classical bluetooth serial port, and may also include a bluetooth low energy transmission channel.
In a specific implementation process, the first client may also acquire or generate second original data related to the call function of the terminal, and format the second original data to obtain processed data, which may be referred to as second call management data in this embodiment. Because bluetooth connection is established between the first bluetooth module 11 and the second bluetooth module, the second bluetooth module may send the second call management data to the first bluetooth module 11 through a bluetooth data channel, the first bluetooth module 11 sends the received second call management data to the first processor 12, the first processor 12 processes the second call management data to obtain second converted call management data, and sends the second converted call management data to the first bluetooth module 11, the first bluetooth module 11 sends the third converted call management data obtained after processing the second converted call management data to the second bluetooth module, the second bluetooth module sends the second target call management data obtained after processing the third converted call management data to the second processor, and the second processor 12 processes and executes the second target call management data.
The second session management data in this embodiment may include at least one of custom encoded voice data, control information, and character information. For example, when the first client is used for making a call and controlling the target terminal, the first client can acquire related data as second original data, and the technical scheme of the invention is described by taking a control instruction for controlling the target terminal to make a call as control information. When a call is placed by the target terminal, the first client 23 receives a dialing command, but due to the limitation of the platform, the dialing control command cannot be recognized and executed by the second processor 22, at this time, the first client sends the dialing control command to the first processor 12 through the processing and transmission of the first bluetooth module 11 and the second bluetooth module, the first processor 12 processes the dialing control command to obtain a processed control command, processes and transmits the processed control command to the second processor through the first bluetooth module 11 and the second bluetooth module, and the second processor controls the target terminal to dial the call according to the processed control command, thereby achieving the capability of bypassing the system to obtain the first call management data in a limited manner.
It should be noted that, in this embodiment, the first bluetooth module 11 and the second bluetooth module are both provided with a classical bluetooth channel, and processing, transmission, etc. between each data may be completed through the classical bluetooth channel, but because the security of a part of terminal systems such as the apple iOS system is higher, the restrictions thereof are also more, and the function of the serial port channel of the classical bluetooth may be limited when the serial port channel is used as a bluetooth data channel, in this embodiment, the first bluetooth module 11 and the second bluetooth module may also be provided with a bluetooth low energy channel. The processing and transmission of data in part or all of the Bluetooth data channels can be completed by the low-power Bluetooth channels. In addition, in order to ensure the stability and reliability of data transmission of the bluetooth device of the present embodiment, which performs data bidirectional interaction with the terminal, it is preferable that both the first bluetooth module 11 and the second bluetooth module simultaneously set a classical bluetooth channel and a bluetooth low energy channel. The customized codec process performed by the first processor 12 on the voice data may fully meet the bandwidth requirements of the bluetooth data channel during transmission.
According to the Bluetooth device and the system for carrying out data bidirectional inter-transmission with the terminal, the first Bluetooth module 11 is used for receiving the first original data or the second original data sent by the second Bluetooth module in the target terminal, and the first processor 12 is used for returning the first target call management data corresponding to the obtained first original data to the first client, or returning the second target call management data corresponding to the obtained second original data to the second processor, so that the limitation of crossing each platform is realized, the call management data in the terminal is processed, and the flexibility of mobile voice call is improved.
Example 2
Fig. 2 is a schematic structural diagram of a second embodiment of a bluetooth device for bidirectional data transmission with a terminal according to the present invention, as shown in fig. 2, where the bluetooth device for bidirectional data transmission with a terminal according to the present embodiment further includes a control key 13 based on the embodiment shown in fig. 1, and the control key 13 is in signal connection 12 with a second communication mechanism 12. In this embodiment, the control key 13 may be used to perform operations such as function confirmation, function selection, device reset, connection or disconnection of the first bluetooth module 11 and the second bluetooth module.
As shown in fig. 2, the bluetooth device of the present embodiment for bidirectional data transmission with a terminal further includes a power supply 14, a power management chip 15, and an indicator lamp 16. The power supply 14 and the prompt mechanism are respectively connected with a power management chip 15 in a signal mode, the power management chip 15 is respectively connected with the first Bluetooth module 11 and the second communication mechanism 12 in an electric mode, and the indicator lamp 16 is connected with the second communication mechanism 12 in a signal mode.
For example, the power supply 14 in this embodiment includes an external power supply and an internal power supply, and the internal power supply includes a disposable battery and a rechargeable battery. In a specific implementation process, the power management chip 15 performs voltage regulation, voltage stabilization, and other processes according to the voltage of the power supply 14, so that the power supply 14 can meet the working voltages of the second communication mechanism 12 and the first bluetooth module 11, so that the bluetooth device can operate normally.
In this embodiment, the indicator lamp 16 may perform functions such as an operation state indication, a state indication of the power supply 14, and the like. For example, when the bluetooth device of the present embodiment is used, after the bluetooth device is turned on by using the control key 13, the second communication mechanism 12 may generate a corresponding indication signal, which is indicated by the indication lamp 16, for example, normally on, and emits light in the first color; when the Bluetooth device is connected with the target terminal normally, the Bluetooth device emits light in a second color. For another example, the power management chip 15 may also monitor the remaining power of the internal power supply, and when the remaining power is smaller than the first threshold, generate a first alarm signal and send the first alarm signal to the indicator lamp 16 to alarm, for example, if the lighting color of the indicator lamp 16 changes to a third color, in addition, if the internal power supply is a rechargeable battery, during the charging process, the power management chip 15 detects that the power of the rechargeable battery is greater than the second threshold, generate a second alarm signal and send the second alarm signal to the indicator lamp 16, for example, if the lighting color of the indicator lamp 16 changes to a fourth color, which is not illustrated in the embodiment.
Example 3
Fig. 3 is a schematic structural diagram of a system for bidirectional data transmission with a terminal according to an embodiment of the present invention, and as shown in fig. 3, the system for bidirectional data transmission with a terminal according to the present embodiment may include a target terminal 2 and a bluetooth device 1 as shown in fig. 1 or fig. 2. As shown in fig. 3, this embodiment takes the bluetooth apparatus 1 of the embodiment shown in fig. 1 as an example, the bluetooth apparatus 1 includes a first bluetooth module 11 and a first processor 12, and the target terminal 2 includes a second bluetooth module 21, a second processor 22, and a first client 23. The first bluetooth module 11 is in signal connection 12 with the first processor 12, the first bluetooth module 11 is in communication connection with the second bluetooth module 21, and the second processor 22 and the first client 23 are in signal connection with the second bluetooth module 21, respectively.
The system for bidirectional data transmission with a terminal in this embodiment realizes the limitation of crossing each platform, and the implementation mechanism for processing call management data in the terminal is the same as the implementation mechanism in the embodiment shown in fig. 1, and detailed description thereof will be omitted herein.
In the system for bidirectional data interaction with a terminal of this embodiment, the first bluetooth module 11 receives the first call management data or the second call management data sent by the second bluetooth module 21 in the target terminal 2, and returns the obtained first target call management data corresponding to the first call management data to the first client 23, or returns the obtained second target call management data corresponding to the second call management data to the second processor 22, thereby realizing the restriction of crossing each platform, processing the call management data in the terminal, and improving the flexibility of mobile voice call.
Example 4
Fig. 4 is a schematic structural diagram of a second embodiment of a system for bidirectional data interaction with a terminal according to the present invention, as shown in fig. 4, the system for bidirectional data interaction with a terminal according to the present embodiment may further include an auxiliary terminal 3 and a server 4 on the basis of the embodiment shown in fig. 3, where the auxiliary terminal 3 is a terminal other than the target terminal 2. The target terminal 2 further comprises a first communication mechanism 24, the auxiliary terminal 3 comprises a second client 31 and a second communication mechanism 32, and the first client 23 is in communication connection with the server 4 through the first communication mechanism 24; the second client 31 is in communication connection with the server 4 through a second communication mechanism 32; the first client 23 and the second client 31 achieve data synchronization via the server 4 to achieve data interaction between the second client 31 and the target terminal 2.
In a specific implementation process, since the same user may have multiple terminals, taking two terminals as an example, one of the terminals is not often carried around, the embodiment may be referred to as the target terminal 2, the other terminal is often carried around, the embodiment may be referred to as the auxiliary terminal 3, in order to enable the user to utilize the auxiliary terminal 3 to operate the target terminal 2, the same client may be installed in both the target terminal 2 and the auxiliary terminal 3, in this embodiment, the client in the target terminal 2 may be referred to as the first client 23, and the client in the auxiliary terminal 3 may be referred to as the second client 31.
Note that, in the present embodiment, the auxiliary terminal 3 and the target terminal 2 are not limited to the above-mentioned case, for example, a mobile phone forgotten to be carried by the user may be the target terminal 2, an office computer may be the auxiliary terminal 3, and the like, which is not exemplified here.
In this embodiment, the server 4 may obtain relevant call management data from the first client 23 and send the call management data to the second client 31, so that data between the first client 23 and the second client 31 are synchronized, and further data interaction between the second client 31 and the target terminal 2 may be achieved.
For example, when the target terminal 2 receives an incoming call, the bluetooth device 1 of the present embodiment may be used to send information to the first client 23, the first client 23 uploads the incoming call information to the server 4, and the server 4 issues the incoming call to the second client 31, and at this time, the incoming call is transferred to the auxiliary terminal 3, the user may send an answer instruction by using the second client 31 and synchronize the answer instruction to the first client 23, and send the answer instruction to the target terminal 2 via the bluetooth device 1, so as to implement answering a call and complete a call.
Similarly, the implementation mechanisms for implementing hang-up, sending and receiving information, etc. in this embodiment are the same as the implementation mechanisms for implementing answering, and reference is made to the above related descriptions for details, which are not illustrated here.
In this embodiment, the functions of dialing, talking, hanging up, sending and receiving information and the like of the remote control target terminal 2 can be realized by using the internet, so that the user is prevented from carrying a plurality of terminals, and the convenience of mobile voice talking is improved.
In order to improve the security of remote control, the second client 31 needs to acquire current operator identity information and transmit the current operator identity information to the first client 23 through the server 4 so as to record the identity information of the current operator when the user controls the target terminal 2 using the auxiliary terminal 3.
In addition, in order to further improve the security of remote control, the user may acquire the identity information of the user by using the second processor 22 to store, so that when the auxiliary terminal 3 is used to control the target terminal 2, the identity information of the current operator needs to be compared with the identity information of the user, and when the two are matched, the auxiliary terminal 3 can be used to control the target terminal 2, otherwise, the auxiliary terminal 3 cannot be used to control the target terminal 2.
While the invention has been described in detail in the foregoing general description and specific examples, it will be apparent to those skilled in the art that modifications and improvements can be made thereto. Accordingly, such modifications or improvements may be made without departing from the spirit of the invention and are intended to be within the scope of the invention as claimed.

Claims (10)

1. The Bluetooth device for carrying out data bidirectional inter-transmission with the terminal is characterized by comprising a first Bluetooth module and a first processor;
the first Bluetooth module is in signal connection with the first processor;
the first Bluetooth module is also in communication connection with a second processor of the target terminal and a first client of the target terminal respectively through a second Bluetooth module of the target terminal;
the second Bluetooth module sends first call management data obtained by processing the first original data acquired by the second processor to the first Bluetooth module;
the first Bluetooth module sends first conversion call management data obtained by processing the first call management data to the first processor;
the first processor sends first target call management data obtained after the first conversion call management data are processed to the second Bluetooth module through the first Bluetooth module;
the second Bluetooth module sends the first target call management data to the first client;
the first client processes the obtained second original data to obtain second session management data, and the second session management data is sent to the first Bluetooth module through the second Bluetooth module;
the first Bluetooth module sends the second session management data to the first processor; the second session management data is unrecognizable to the second processor;
the first processor sends second conversion call management data obtained after the second call management data is processed to the first Bluetooth module;
the first Bluetooth module sends third conversion call management data obtained after the second conversion call management data are processed to the second Bluetooth module;
and the second Bluetooth module processes the third conversion call management data to obtain second target call management data and sends the second target call management data to the second processor.
2. The bluetooth device according to claim 1, wherein the first bluetooth module and the second bluetooth module are each provided with a classical bluetooth channel.
3. The bluetooth device according to claim 2, wherein the first bluetooth module and the second bluetooth module are each further provided with a bluetooth low energy channel.
4. The bluetooth device according to claim 1, wherein the first call management data includes at least one of bluetooth audio encoded voice data, control information, and character information.
5. The bluetooth device according to claim 1, wherein the second session management data includes at least one of custom encoded voice data, control information, and character information.
6. The bluetooth device according to any of claims 1-5, further comprising a control key;
the control key is in signal connection with the first processor.
7. The bluetooth device according to any of claims 1-5, further comprising a power supply and a power management chip;
the power supply is respectively connected with the power management chip through signals, and the power management chip is respectively and electrically connected with the first Bluetooth module and the first processor.
8. The bluetooth device according to claim 6, further comprising an indicator light;
the indicator light is in signal connection with the first processor.
9. A system for bidirectional inter-transmission of data with a terminal, comprising a target terminal and a bluetooth device according to any of claims 1-8;
the Bluetooth device comprises a first Bluetooth module and a first processor;
the target terminal includes a second bluetooth module, a second processor, and a first client.
10. The system of claim 9, further comprising an auxiliary terminal and a server;
the target terminal further comprises a first communication mechanism;
the auxiliary terminal is a terminal except the target terminal, and comprises a second client and a second communication mechanism;
the first client is in communication connection with the server through the first communication mechanism;
the second client is in communication connection with the server through the second communication mechanism;
and the first client and the second client realize data synchronization through the server so as to realize data interaction between the second client and the target terminal.
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