External data transmission structure of 5G module

By externalizing the 5G module and using a conversion module to convert the signal, the problem of inconvenient antenna installation in 5G communication equipment is solved, enabling convenient installation and flexible adjustment of the antenna position to improve signal quality.

CN223528090UActive Publication Date: 2025-11-07SHANGHAI COGENT TECH CO LTD
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Patent Information

Application Number
CN202423110296.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-07
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

In existing 5G communication equipment, the installation and deployment of antennas for multiple 5G modules are inconvenient and their location affects data transmission performance, resulting in installation difficulties and poor signal.

Method used

The 5G module is placed outside the communication device, and the internal first conversion module converts the USB signal output by the CPU into an Ethernet signal, which is then transmitted to the external second conversion module via a cable. The signal is then converted back into a USB signal for use by the 5G module, and the antenna is connected via a cable to achieve data transmission.

Benefits of technology

It enables convenient installation and position adjustment of 5G antennas, improving the flexibility and performance of signal location.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a data transmission structure with an external 5G module, which is characterized in that the 5G module is arranged outside a communication device, a USB signal output by a CPU of the communication device is converted into an Ethernet signal through a first conversion module, the Ethernet signal is transmitted to a second conversion module through a cable, the Ethernet signal is converted into the USB signal through the second conversion module, and the USB signal is transmitted to the 5G module. According to the scheme, the 5G module transmits data to the outside through the antenna, so that the 5G antenna does not need to be mounted on an interface of communication equipment in the prior art, the 5G antenna is very convenient to mount and deploy, and the position of the 5G antenna can be randomly adjusted to reach the optimal signal position.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to 5G communication technical field especially relates to a data transmission structure of 5G module external. BACKGROUND

[0002] In prior art, as shown in Figure, Figure 2 5G communication equipment receives network data through wired or wireless mode, then network data is converted into USB signal by internal CPU1, and is transmitted to 5G module 2, 5G module 2 is connected with SMA interface 3 through IPEX conversion SMA interface line, and network data is sent outward through antenna 4 on SMA interface 3. Wherein, single 5G module needs to be matched with 4 antennas to work normally with high performance, when 5G communication equipment has multiple 5G modules, multiple groups of 5G antennas need to be installed, but due to the small installation gap between antenna interfaces, the number is large, which leads to the great inconvenience of 5G antenna installation and deployment, in addition, since the antenna installation position also affects the performance of data transmission, in order to achieve the best signal position, it will lead to the more inconvenient installation and deployment of 5G antenna. SUMMARY

[0003] Therefore, aiming at the above technical problems, a data transmission structure of 5G module external is provided.

[0004] The technical scheme adopted by the utility model is as follows:

[0005] A data transmission structure of 5G module external, comprising 5G module connected with CPU of communication equipment and antenna connected with 5G module, characterized by further comprising first conversion module for converting USB signal output by CPU into Ethernet signal and second conversion module for converting Ethernet signal output by first conversion module into USB signal, first conversion module is placed in communication equipment, second conversion module and 5G module are placed outside communication equipment, CPU is connected with first conversion module, first conversion module is connected with second conversion module through cable, and second conversion module is connected with 5G module.

[0006] The utility model places 5G module outside communication equipment, converts USB signal output by CPU of communication equipment into Ethernet signal through first conversion module, and provides second conversion module through cable, converts Ethernet signal into USB signal for 5G module through second conversion module, and then sends data outward through antenna by 5G module, in this way, 5G antenna does not need to be installed on the interface of communication equipment as in prior art, and the installation and deployment of 5G antenna are very convenient, and the position of 5G antenna can be adjusted at will to achieve the best signal position. BRIEF DESCRIPTION OF DRAWINGS

[0007] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments:

[0008] Figure 1 A schematic diagram of an external data transmission structure for a 5G module provided in an embodiment of this utility model;

[0009] Figure 2 This is a schematic diagram of the data transmission structure of existing 5G communication equipment. Detailed Implementation

[0010] The embodiments of the present invention will be described below with reference to the accompanying drawings. It should be noted that the embodiments described in this specification are not exhaustive and do not represent the only embodiments of the present invention. The corresponding embodiments below are only for clearly illustrating the inventive content of this patent and are not intended to limit its implementation. For those skilled in the art, different variations and modifications can be made based on the embodiments described. Any variations or modifications that fall within the technical concept and inventive content of this invention and are obvious are also within the protection scope of this invention.

[0011] like Figure 1 As shown in the figure, this specification provides an external data transmission structure for a 5G module, including a CPU 110, a first conversion module 120, a first power supply circuit 130, a second conversion module 140, a 5G module 150, an antenna 160, a second power supply circuit 170, and a cable 180.

[0012] CPU110, first conversion module 120 and first power supply circuit 130 are all located within communication device 2.

[0013] like Figure 1 As shown, the first conversion module 120 includes a first conversion chip 121 and a first interface 122. The first conversion chip 121 is connected to the CPU 110 and the first interface 122. The CPU 110 receives network data via wired or wireless means and then converts the network data into a USB signal. The first conversion chip 121 converts the USB signal output by the CPU 110 into an Ethernet signal. The first interface 122 is plugged into one end of a cable 180 and transmits the Ethernet signal outward through the cable 180.

[0014] The first power supply circuit 130 is used to supply power to the internal components of the communication equipment, such as... Figure 1As shown, it includes an AC-DC module 131, a first DC-DC module 132, and a second DC-DC module 133. The input terminal of the AC-DC module 131 is connected to an external 220V AC power supply, and its output terminal outputs 15V DC power, which is divided into two paths: one path is connected to the input terminal of the first DC-DC module 132, and the other path is connected to the first interface 122. The output terminal of the first DC-DC module 132 outputs 5V DC power, which is also divided into two paths: one path is connected to the CPU 110, and the other path is connected to the input terminal of the second DC-DC module 133. The output terminal of the second DC-DC module 133 outputs 3.3V DC power and is connected to the first conversion chip 121.

[0015] like Figure 1 As shown, the second conversion module 140, 5G module 150, antenna 160 and second power supply circuit 170 are all located outside the communication equipment, forming the 5G communication component 3.

[0016] The second conversion module 140 includes a second interface 141 and a second conversion chip 142. The second interface 141 is plugged into the other end of the cable 180. The second conversion chip 142 is connected to the second interface 141 and the 5G module 150. The 5G module 150 is connected to the antenna 160. The second interface 141 receives Ethernet signals from the cable 180. The second conversion chip 142 converts the Ethernet signals into USB signals and sends them to the 5G module 150. The 5G module 150 transmits network data to the outside world through the antenna 160.

[0017] The second power supply circuit 170 is used to power the 5G communication components. It includes a third DC-DC module 171, a fourth DC-DC module 172, and a fifth DC-DC module 173. The input terminal of the third DC-DC module 171 is connected to the second interface 141, and the output terminal outputs 5V DC power, which is divided into two paths. One path is connected to the input terminal of the fifth DC-DC module 173, and the output terminal of the fifth DC-DC module 173 outputs 3.3V DC power and is connected to the second conversion chip 142. The other path is connected to the input terminal of the fourth DC-DC module 172, and the output terminal of the fourth DC-DC module 172 outputs 3.8V DC power and is connected to the 5G module 150.

[0018] Cable 180 contains a network cable and a power cable for transmitting Ethernet signals and powering 5G communication components.

[0019] Both the first conversion chip 121 and the second conversion chip 142 use NS1021.

[0020] From above, the data transmission structure of the 5G module is outside provided by the embodiment of the utility model, the USB signal output by the CPU of the communication equipment is converted into the Ethernet signal through the first conversion module, and the cable is given to the second conversion module, the Ethernet signal is converted into the USB signal for the 5G module by the second conversion module, and the data is sent outward by the 5G module through the antenna, the mode does not need to install the 5G antenna on the interface of the communication equipment as in the prior art, the installation deployment of the 5G antenna is very convenient, and the position of the 5G antenna can be adjusted at will (the position is adjusted together as a whole with the 5G module and the antenna), to reach the best signal position.

[0021] However, those skilled in the art should recognize that the above embodiments are only used to illustrate the utility model, and are not used as a limitation on the utility model, as long as the changes and variations of the above described embodiments are within the spirit and principles of the utility model, they will fall within the scope of the claims of the utility model.

Claims

1. A data transmission structure of a 5G module outside, comprising a 5G module connected with a CPU of a communication device and an antenna connected with the 5G module, characterized in that, The application also comprises a first conversion module for converting the USB signal output by the CPU into an Ethernet signal and a second conversion module for converting the Ethernet signal output by the first conversion module into a USB signal, the first conversion module is arranged in the communication device, the second conversion module and the 5G module are arranged outside the communication device, the CPU is connected with the first conversion module, the first conversion module is connected with the second conversion module through a cable, and the second conversion module is connected with the 5G module.

2. The data transmission structure of claim 1, wherein, The second conversion module, the 5G module and the antenna constitute a 5G communication assembly arranged outside the communication device.

3. The data transmission structure of claim 2, wherein, The first conversion module comprises a first conversion chip and a first interface for plugging the cable, the first conversion chip is connected with the CPU and the first interface, the second conversion module comprises a second conversion chip and a second interface for plugging the cable, and the second conversion chip is connected with the second interface and the 5G module.

4. The data transmission structure of claim 3, wherein, The application also comprises a first power supply circuit for supplying power to the inside of the communication device and a second power supply circuit for supplying power to the 5G communication assembly, the first power supply circuit is connected with the CPU, the first conversion chip and the first interface, the cable has a network line and a power line, and the second power supply circuit is connected with the second interface, the second conversion chip and the 5G module.

5. The data transmission structure of claim 4, wherein, The first power supply circuit comprises an AC-DC module, a first DC-DC module and a second DC-DC module, the input end of the AC-DC module is connected with external alternating current, the output end of the AC-DC module is divided into two paths, one path is connected with the input end of the first DC-DC module, and the other path is connected with the first interface, the output end of the first DC-DC module is divided into two paths, one path is connected with the CPU, and the other path is connected with the input end of the second DC-DC module, and the output end of the second DC-DC module is connected with the first conversion chip.

6. The data transmission structure of claim 4, wherein, The second power supply circuit comprises a third DC-DC module, a fourth DC-DC module and a fifth DC-DC module, the input end of the third DC-DC module is connected with the second interface, the output end of the third DC-DC module is divided into two paths, one path is connected with the input end of the fifth DC-DC module, the output end of the fifth DC-DC module is connected with the second conversion chip, and the other path is connected with the input end of the fourth DC-DC module, and the output end of the fourth DC-DC module is connected with the 5G module.