Wireless communication transmission device and transmission method thereof

By using a modular mounting bracket and protective structure, the heat dissipation problem of wireless communication devices during wear and the battery stability during drops are solved, achieving continuous heat dissipation and drop protection for the battery, and ensuring stable transmission of communication signals.

CN120915323BActive Publication Date: 2026-05-15CHANGZHOU QIANYI INTELLIGENT MFG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHANGZHOU QIANYI INTELLIGENT MFG TECH CO LTD
Filing Date
2025-08-12
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

When wireless communication devices are worn close to the body for extended periods, poor air circulation reduces battery heat dissipation, accelerates chemical reaction rates, and leads to severe self-discharge. Furthermore, the devices are prone to being dropped during activities, causing the battery fixing structure to loosen and resulting in poor contact.

Method used

A wireless communication transmission device was designed, which adopts a combined mounting bracket and protective structure, including a long positioning rod, a short positioning rod, a vibration frame and a protective frame with elastic connection. The rechargeable battery heat sink is driven to move up and down by a power mechanism, and the elastic reinforcement mechanism keeps the battery stable during a drop and prevents poor contact.

Benefits of technology

It effectively maintains battery heat dissipation, prevents the battery from becoming loose in the event of a drop, ensures continuous transmission of communication signals, and improves the lifespan and safety of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wireless communication transmission device and a transmission method thereof, and belongs to the technical field of wireless communication transmission, which comprises a communication transceiver and an antenna installed on the communication transceiver to receive signals, a microphone and a loudspeaker for transmitting voice signals are arranged on the communication transceiver, and a battery groove is formed on the back of the communication transceiver; two groups of long positioning rods and two groups of short positioning rods are symmetrically fixed on the two sides of the communication transceiver, the short positioning rods are arranged directly below the long positioning rods, the long positioning rods and the short positioning rods are externally sleeved with mounting racks, and elastic clamping blocks for clamping on the clothes of a user are fixed on the back of the mounting racks; the wireless communication device is convenient to wear and assemble, can keep the heat dissipation of the charging battery, and is externally provided with flexible damping strips and flexible damping angle blocks, which can enhance the protection performance of the communication device when falling to the ground during dispatching actions, can increase the stability of the assembly of the charging battery, and can avoid the interruption of communication signals.
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Description

Technical Field

[0001] This invention relates to the field of wireless communication transmission technology, specifically to a wireless communication transmission device and its transmission method. Background Technology

[0002] Wireless communication transmission equipment enables two-way voice calls via radio waves, requiring no external network support for instant communication. Based on radio communication technology, it features instant communication, one-to-many response, economy and practicality, and low operating costs. It also has functions such as group call broadcasting, system calling, and confidential calling. In handling emergencies and dispatching and commanding, its role is irreplaceable by other communication tools.

[0003] For example, patent CN222868920U discloses a wireless communication device for mining, including a wireless communication device body and a protective shell. The protective shell is installed on the surface of the wireless communication device body, and anti-collision posts are installed at the four corners of the protective shell. A speaker is installed on the top of one side of the wireless communication device body, and a battery module is installed at the bottom of the speaker. The battery module is located inside the speaker. A protective plate is slidably connected to one side of the protective shell and the top of the wireless communication device body. The protective shell and multiple sets of anti-collision posts can prevent the wireless communication device body from being bumped or collided, effectively improving the service life of the wireless communication device body. The layout design of the speaker and battery module and the protective plate can reduce the probability of damage to the battery module in the event of a bump, thereby improving the safety of the wireless communication device body.

[0004] For example, patent CN220629328U discloses a remote wireless broadcasting communication device, including a wireless broadcasting communication device body and an adjustment knob at the upper end of the wireless broadcasting communication device body; a retractable box is provided at the rear right side of the wireless broadcasting communication device body, the retractable box is connected to the wireless broadcasting communication device body by a plug-in method, a fastening knob is provided on the right side of the retractable box, an internal roller is provided inside the retractable box, an elastic band is wound on the internal roller, and a Velcro and a snap-fit ​​strip are provided at the end of the elastic band. A Velcro is provided at the right end of the wireless broadcasting communication device body. This wireless broadcasting communication device body is more convenient to carry and the elastic band can be hidden, thereby avoiding the phenomenon that the user's experience is affected by the exposed elastic band when using the wireless broadcasting communication device body.

[0005] For example, patent CN207099065U discloses a handheld communication device, including a communication body and an information storage device. The left side of the communication body is provided with a speaker and a heat dissipation hole, with the heat dissipation hole embedded in the communication body. The speaker is bonded to the communication body with strong adhesive. An indicator light is provided on the side of the speaker and is embedded in the communication body. Using a light sensor, manual hands-free switching can be performed without waiting for the screen to light up, saving operation time and facilitating communication between users and third parties. It avoids accidental operation and delays in call time. Users can set the automatic hands-free switching function to be turned on and off using the light sensor in the call settings. At the same time, the adjustment knob and stable signal reception of the infrared wireless receiver avoid disturbance when the user is not available to operate, and can give full play to the intelligence of the device.

[0006] Wireless communication devices require high power for extended periods of operation. Removable and replaceable batteries can extend the working time of wireless communication devices and maintain uninterrupted communication. Wearing wireless communication devices close to the body for extended periods can reduce air circulation between the device and the body, thus reducing the battery's heat dissipation. In high-temperature environments, the internal chemical reaction rate of the battery accelerates, and self-discharge becomes more pronounced, leading to rapid power consumption. In addition, when using wireless communication devices during tasks, especially during periods of high activity, the devices are prone to drops and impacts. Removable batteries are usually secured to wireless communication devices using slots or clips. Drops can cause significant impacts, potentially deforming the battery slots or loosening the clips, resulting in poor contact between the battery and the internal circuitry of the wireless communication device.

[0007] To address the aforementioned issues, there is an urgent need for innovative designs based on existing wireless communication transmission equipment. Summary of the Invention

[0008] The purpose of this invention is to provide a wireless communication transmission device and its transmission method to solve the problems mentioned in the background art, such as the poor air circulation between the device and the body when worn for a long time, which reduces the heat dissipation of the battery, the accelerated internal chemical reaction rate of the battery in high temperature environment, and the more obvious self-discharge phenomenon, resulting in excessive power consumption. In addition, when using wireless communication devices during tasks, the devices are prone to being dropped and bumped when the activity is high. Removable batteries are usually fixed to wireless communication devices by means of slots, buckles, etc. When dropped, they are subjected to great impact force, which may cause the battery slots to deform and the buckles to loosen, resulting in poor contact between the battery and the internal circuit of the wireless communication device.

[0009] To achieve the above objectives, the present invention provides the following technical solution: a wireless communication transmission device and its transmission method, comprising a communication transceiver and an antenna mounted on the communication transceiver for receiving signals. The communication transceiver is equipped with a microphone and a speaker for transmitting voice signals. A battery slot is provided on the back of the communication transceiver, in which a rechargeable battery is embedded. A heat sink is provided on the back of the rechargeable battery to accelerate heat dissipation. Two sets of long positioning rods and two sets of short positioning rods are symmetrically fixed on both sides of the communication transceiver. The short positioning rods are positioned directly below the long positioning rods, and a mounting frame is fitted around the long and short positioning rods. An elastic clip that snaps onto the user's clothing is fixed on the back of the mounting frame. A distance is provided between the mounting frame and the communication transceiver to facilitate heat dissipation from the rechargeable battery. The mounting frame is equipped with a power mechanism that uses walking power to drive the communication transceiver to move up and down. The power mechanism drives the heat sink on the rechargeable battery to move back and forth, slapping the surrounding air and forming vortices and turbulence locally, thus accelerating gas flow.

[0010] Preferably, the power mechanism includes a vibration frame that is engaged and slidably connected to the mounting frame, and a collar is fixed to one end of the vibration frame near the long positioning rod; a transmission rod is fixedly connected to the lower end face of the long positioning rod, the transmission rod passes through the collar, and the collar is supported on the lower end face of the long positioning rod.

[0011] Preferably, a cylindrical rod is longitudinally fixedly connected to the mounting frame, and the vibration frame is slidably sleeved on the outside of the cylindrical rod; a vibration spring is elastically connected between the vibration frame and the mounting frame, and the vibration spring is sleeved on the outside of the cylindrical rod.

[0012] Preferably, the communication transceiver is fixedly fitted with a protective frame at both the upper and lower ends, and four sets of flexible vibration damping corner blocks are fixed on the protective frame. The four sets of flexible vibration damping corner blocks are respectively engaged and protected at the four corners of the end face of the communication transceiver.

[0013] Preferably, the protective frame is fitted with flexible vibration damping strips on its outer side; the protective frame is provided with an elastic reinforcement mechanism to reinforce and protect the rechargeable battery.

[0014] Preferably, the elastic reinforcement mechanism includes an elastic pressure bar fixedly connected to the protective frame, and the elastic pressure bar is elastically pressed against the outside of the rechargeable battery.

[0015] Preferably, a column is fixedly connected to the elastic pressure rod, and an inclined groove is opened at one end of the column near the protective frame; a driving pressure rod is slidably connected longitudinally in the protective frame, and the driving pressure rod presses against the inclined groove of the column.

[0016] Preferably, the flexible damping strip has an embedded groove on the side near the protective frame, and multiple discs are arranged at equal intervals in the embedded groove. The discs are slidably mounted on the flexible damping strip, and the discs protrude from the outside of the flexible damping strip. A crossbar is fixedly connected between the multiple discs. Multiple guide posts are fixedly connected at equal intervals on the protective frame, and the crossbar is slidably sleeved on the outside of the guide posts.

[0017] Preferably, a push rod is rotatably connected to the crossbar, and the other end of the push rod is rotatably connected to the driving pressure rod; multiple arc-shaped elastic limiting plates are fixed on the crossbar, the elastic limiting plates are arranged between two sets of discs, and the two ends of the elastic limiting plates are elastically attached to the protective frame.

[0018] A transmission method for a wireless communication transmission device, applied to the aforementioned wireless communication transmission device, includes the following steps:

[0019] S1, Voice input: When the user speaks, the microphone converts the sound into an electrical signal.

[0020] S2. Signal modulation: Frequency modulation is used to associate the frequency of the output electrical signal with the modulating signal, which is suitable for radio transmission.

[0021] S3. Signal amplification and transmission: The modulated electrical signal is relatively weak. It is amplified by an audio amplifier and sent to a radio frequency transmitter. The signal is then converted into radio waves and transmitted into the air via an antenna.

[0022] S4. Signal reception and demodulation: The antenna of the receiving communication equipment captures radio waves and converts them into electrical signals. The demodulator restores the original voice signal and converts it into sound to enable communication.

[0023] Compared with the prior art, the beneficial effects of the present invention are: the wireless communication transmission device and its transmission method are provided with a combined mounting bracket and a communication transceiver, which maintains the heat dissipation effect of the rechargeable battery on the communication transceiver, and the communication transceiver is provided with a drop protection structure, which can automatically press the rechargeable battery during the process of the device being dropped, so as to avoid the battery connection becoming loose and maintain continuous communication function.

[0024] The communication transceiver is mounted on the mounting bracket through a long positioning rod and a short positioning rod. After installation, a suitable heat dissipation distance is maintained between the communication transceiver and the mounting bracket to prevent the communication transceiver from being worn directly against the user's body. The heat sink helps the rechargeable battery dissipate heat quickly, thereby preventing the power from being consumed too quickly.

[0025] The mounting frame is equipped with a power mechanism that uses walking power to drive the communication transceiver to move up and down. The vibration frame is elastically supported under the long positioning rod. During the user's activities, the communication transceiver will bounce up and down. Under the clamping action of the vibration spring and the vibration frame, the communication transceiver can move up and down within the range of wearing a safety belt. The up and down movement of the heat sink can accelerate the flow of surrounding air through the heat dissipation fins, further maintaining the heat dissipation effect of the rechargeable battery.

[0026] The external protection of the communication transceiver includes a protective frame, flexible vibration damping strips, and flexible vibration damping corner blocks. The flexible vibration damping corner blocks protect the various corners of the communication transceiver. In the event of the communication transceiver being dropped, this part of the structure can effectively protect the grounded communication transceiver.

[0027] The protective frame is equipped with an elastic reinforcement mechanism to reinforce and protect the rechargeable battery. When the back of the communication transceiver lands on the ground, the disc is subjected to the pressure of the ground. Under the transmission action of the crossbar and push rod, it can control the drive rod to move towards the rechargeable battery. The drive rod moves and presses against the inclined groove of the column. The inclined groove of the column is subjected to pressure, which drives the elastic rod to press tightly against the outside of the rechargeable battery. This can keep the rechargeable battery tightly installed on the communication transceiver, avoid the rechargeable battery and communication transceiver from being misaligned when the ground is dropped, and prevent poor contact caused by the rechargeable battery and communication transceiver, thus maintaining the continuous transmission of communication signals. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the communication transceiver structure of the present invention.

[0029] Figure 2 This is a schematic diagram of the mounting bracket and communication transceiver combination of the present invention.

[0030] Figure 3 This is a schematic diagram of the mounting bracket structure of the present invention.

[0031] Figure 4 This is a schematic diagram of the long positioning rod structure of the present invention.

[0032] Figure 5 This is a schematic diagram of the transmission rod structure of the present invention.

[0033] Figure 6 This is a schematic diagram of the vibration spring structure of the present invention.

[0034] Figure 7 This is a schematic diagram of the heat sink structure of the present invention.

[0035] Figure 8 This is a schematic diagram of the rechargeable battery structure of the present invention.

[0036] Figure 9 This is a schematic diagram of the protective frame structure of the present invention.

[0037] Figure 10 This is a schematic diagram of the elastic pressure bar structure of the present invention.

[0038] Figure 11 This is a schematic diagram of the driving pressure bar structure of the present invention.

[0039] Figure 12 This is a schematic diagram of the push rod structure of the present invention.

[0040] In the diagram: 1. Communication transceiver; 2. Antenna; 31. Microphone; 32. Speaker; 4. Battery slot; 5. Rechargeable battery; 6. Heat sink; 7. Long positioning rod; 8. Short positioning rod; 9. Mounting bracket; 91. Elastic locking block; 10. Vibration frame; 101. Cylindrical rod; 102. Vibration spring; 11. Collar; 12. Transmission rod; 13. Protective frame; 14. Flexible vibration damping strip; 15. Flexible vibration damping corner block; 16. Elastic pressure rod; 17. Column; 171. Drive pressure rod; 172. Embedded groove; 173. Disc; 174. Crossbar; 175. Guide post; 176. Push rod; 177. Elastic limiting piece; 18. Inclined groove. Detailed Implementation

[0041] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0042] Example 1: Please refer to Figures 1-3 The present invention provides the following technical solution: a wireless communication transmission device and its transmission method, comprising a communication transceiver 1 and an antenna 2 installed on the communication transceiver 1 to receive signals. The communication transceiver 1 is provided with a microphone 31 for transmitting voice signals and a speaker 32. A battery slot 4 is provided on the back of the communication transceiver 1, and a rechargeable battery 5 is embedded in the battery slot 4. A heat sink 6 for accelerating heat dissipation is provided on the back of the rechargeable battery 5. Two sets of long positioning rods 7 and two sets of short positioning rods 8 are symmetrically fixed on both sides of the communication transceiver 1. The short positioning rods 8 are located directly below the long positioning rods 7, and a mounting frame 9 is sleeved on the outside of the long positioning rods 7 and the short positioning rods 8. An elastic clip 91 that snaps onto the user's clothing is fixed on the back of the mounting frame 9. A distance is provided between the mounting frame 9 and the communication transceiver 1 to facilitate heat dissipation of the rechargeable battery 5. The mounting frame 9 is provided with a power mechanism that uses walking power to drive the communication transceiver 1 to move up and down. The power mechanism drives the heat sink 6 on the rechargeable battery 5 to move back and forth, patting the surrounding air, forming vortices and turbulence locally, and accelerating gas flow.

[0043] Please see Figures 2-7The power mechanism includes a vibration frame 10 that is slidably connected to the mounting frame 9. A collar 11 is fixed to one end of the vibration frame 10 near the long positioning rod 7. A transmission rod 12 is fixedly connected to the lower end face of the long positioning rod 7. The transmission rod 12 passes through the collar 11, and the collar 11 is supported on the lower end face of the long positioning rod 7. A cylindrical rod 101 is longitudinally fixedly connected to the mounting frame 9. The vibration frame 10 is slidably sleeved on the outside of the cylindrical rod 101. A vibration spring 102 is elastically connected between the vibration frame 10 and the mounting frame 9. The vibration spring 102 is sleeved on the outside of the cylindrical rod 101.

[0044] The communication transceiver 1 transmits audio through the microphone 31 and speaker 32, and the antenna 2 can transmit communication signals remotely, which is convenient for handling emergency events and dispatching. Some dispatching and command operations have long durations and high power requirements. The use of a removable rechargeable battery 5 can maintain continuous power supply. The heat dissipation performance and assembly stability of the removable rechargeable battery 5 have a significant impact on the stability of the communication signal transmission of the wireless communication equipment.

[0045] The mounting bracket 9 is attached to the user's clothing using the elastic clip 91. When assembling the communication transceiver 1 and the mounting bracket 9, the long positioning rod 7 and the short positioning rod 8 are respectively inserted and connected to the upper and lower parts of the mounting bracket 9. The transmission rod 12 below the long positioning rod 7 passes through the collar 11. Under the action of gravity, the communication transceiver 1 is quickly assembled on the mounting bracket 9. The rechargeable battery 5 is placed on the side close to the mounting bracket 9. After installation, there is a reasonable heat dissipation distance between the communication transceiver 1 and the mounting bracket 9 so that the rechargeable battery 5 can dissipate heat outward through the heat sink 6, avoiding the situation where heat cannot circulate when worn close to the body.

[0046] When a user wears the transceiver 1 while walking, the transceiver 1 moves up and down due to the bumps and jolts of walking. The collar 11 is supported below the long positioning rod 7 and is fixedly mounted on the vibration frame 10. When the transceiver 1 moves up and down, it generates a shaking force on the collar 11. The vibration frame 10 is fitted outside the cylindrical rod 101 and moves up and down. With the cooperation of the vibration spring 102, the force of this shaking is amplified, thus keeping the transceiver 1 within a safe range of assembly with the mounting frame 9 during the user's walking. The rechargeable battery 5 on the transceiver 1 moves up and down synchronously. The fins of the heat sink 6 on the back of the rechargeable battery 5 fan the surrounding air up and down, increasing air flow and thus improving the heat dissipation effect of the rechargeable battery 5 during long-term standby use, reducing its operating energy consumption.

[0047] Example 2: Please refer to Figures 7-9Based on Embodiment 1, an elastic reinforcement mechanism is also disclosed, the specific structure of which is as follows: A protective frame 13 is fixedly fitted onto both the upper and lower ends of the communication transceiver 1. Four sets of flexible vibration damping corner blocks 15 are fixed on the protective frame 13, and the four sets of flexible vibration damping corner blocks 15 are respectively engaged and protected at the four corners of the end face of the communication transceiver 1. Flexible vibration damping strips 14 are nested and installed on the outside of the protective frame 13; an elastic reinforcement mechanism for reinforcing and protecting the rechargeable battery 5 is provided on the protective frame 13. The elastic reinforcement mechanism includes an elastic pressure rod 16 fixedly connected to the protective frame 13, and the elastic pressure rod 16 elastically presses against the outside of the rechargeable battery 5.

[0048] Please see Figures 9-12 A column 17 is fixedly connected to the elastic pressure rod 16, and a slanted groove 18 is provided at one end of the column 17 near the protective frame 13. A driving pressure rod 171 is slidably connected longitudinally in the protective frame 13, and the driving pressure rod 171 is pressed into the slanted groove 18 of the column 17. An embedded groove 172 is provided on one side of the flexible damping strip 14 near the protective frame 13, and multiple discs 173 are evenly spaced in the embedded groove 172. The discs 173 are slidably mounted on the flexible damping strip 14, and the discs 173 protrude from the outside of the flexible damping strip 14. A crossbar 174 is fixedly connected between the multiple discs 173. Multiple guide posts 175 are fixedly connected at equal intervals on the protective frame 13, and the crossbar 174 is slidably sleeved on the outside of the guide posts 175. A push rod 176 is rotatably connected to the crossbar 174, and the other end of the push rod 176 is rotatably connected to the drive pressure rod 171. Multiple arc-shaped elastic limiting pieces 177 are fixed on the crossbar 174. The elastic limiting pieces 177 are arranged between two sets of discs 173, and the two ends of the elastic limiting pieces 177 are elastically attached to the protective frame 13.

[0049] When using the communication transceiver 1, in order to maintain the clarity of voice transmission, the communication transceiver 1 is usually removed from the mounting bracket 9 for communication. During the operation, the communication transceiver 1 is prone to slipping and falling to the ground. The external protection of the communication transceiver 1 is provided with a protective frame 13 and flexible vibration damping strips 14. In addition, flexible vibration damping corner blocks 15 are provided at the corners of the communication transceiver 1. These protrude from the outside of the communication transceiver 1 and can prevent the surface components of the communication transceiver 1 from directly touching the ground during the fall, thereby improving the protection of the communication transceiver 1. At the same time, the flexible vibration damping strips 14 and flexible vibration damping corner blocks 15 have a good elastic cushioning effect, which can reduce the vibration force when landing and further protect the communication transceiver 1.

[0050] When the back of the transceiver 1 lands, the assembled rechargeable battery 5 is prone to loosening under vibration. A disc 173 protrudes from the flexible damping strip 14 near the rechargeable battery 5. During the landing, the disc 173 contacts the ground first. Under the pressure of the ground, the disc 173 moves inward into the flexible damping strip 14. The crossbar 174, fixed to the disc 173, moves synchronously with it. At this time, the push rod 176, which connects the crossbar 174 and the drive pressure rod 171, rotates at both ends. The rotating push rod 176 can push the drive pressure rod 171 to move longitudinally towards the rechargeable battery 5. When the drive pressure rod 171 moves, it contacts and presses against the inclined groove 18 on the column 17, pushing the column 17 and the elastic pressure rod 16 to press firmly against the back of the rechargeable battery 5, maintaining the stable assembly of the rechargeable battery 5 and the transceiver 1, and preventing communication interruption due to loosening of the connection during the fall.

[0051] Furthermore, when the disk 173 is moved by the ground pressure, the crossbar 174 moves, and the crossbar 174 elastically presses against the elastic limiting piece 177. After the communication transceiver 1 is picked up, the disk 173 is no longer subjected to the ground pressure. At this time, under the elastic thrust of the elastic limiting piece 177, the disk 173 can be pushed to move again and protrude outside the flexible damping strip 14, so that it returns to its initial position, maintaining the ability of this part of the structure to continuously reinforce the rechargeable battery 5.

[0052] A transmission method for a wireless communication transmission device, applied to the aforementioned wireless communication transmission device, includes the following steps:

[0053] S1. Voice input: When the user speaks, the microphone 31 converts the sound into an electrical signal.

[0054] S2. Signal modulation: Frequency modulation is used to associate the frequency of the output electrical signal with the modulating signal, which is suitable for radio transmission.

[0055] S3, Signal Amplification and Transmission: The modulated electrical signal is relatively weak. It is amplified by an audio amplifier and sent to the radio frequency transmitter. The signal is converted into radio waves and transmitted into the air through antenna 2.

[0056] S4. Signal reception and demodulation: The antenna 2 of the receiving communication equipment captures radio waves and converts them into electrical signals. The demodulator restores the original voice signal and converts it into sound to enable communication.

[0057] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0058] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A wireless communication transmission device, comprising a communication transceiver (1) and an antenna (2) mounted on the communication transceiver (1) for receiving signals, wherein the communication transceiver (1) is provided with a microphone (31) for transmitting voice signals and a speaker (32), characterized in that: The side of the communication transceiver (1) that displays and controls is the front. A battery slot (4) is provided on the back of the communication transceiver (1). A rechargeable battery (5) is installed in the battery slot (4). After the rechargeable battery (5) is installed, the side opposite to the display and control side of the communication transceiver (1) is its back. A heat sink (6) is provided on the back of the rechargeable battery (5) to accelerate heat dissipation. Two sets of long positioning rods (7) and two sets of short positioning rods (8) are symmetrically fixed on both sides of the communication transceiver (1). The short positioning rods (8) are located directly below the long positioning rods (7). The long positioning rods (7) and the short positioning rods (8) are fitted with mounting brackets (9). After installation, the side of the mounting bracket (9) opposite to the display and control surface of the communication transceiver (1) is its back side. The back side of the mounting bracket (9) is fixed with an elastic clip (91) that is snapped onto the user's clothing. The mounting bracket (9) and the communication transceiver (1) are provided with a distance to facilitate the heat dissipation of the rechargeable battery (5). The mounting bracket (9) is provided with a power mechanism that uses walking power to drive the communication transceiver (1) to move up and down. The power mechanism drives the heat sink (6) on the rechargeable battery (5) to move back and forth and beat the surrounding air, forming vortices and turbulence in a local area and accelerating the gas flow.

2. The wireless communication transmission device according to claim 1, characterized in that: The power mechanism includes a vibrating frame (10) that is slidably connected to the mounting frame (9), and a collar (11) is fixed at one end of the vibrating frame (10) near the long positioning rod (7). A transmission rod (12) is fixedly connected to the lower end face of the long positioning rod (7). The transmission rod (12) is connected through the collar (11), and the collar (11) is supported on the lower end face of the long positioning rod (7).

3. The wireless communication transmission device according to claim 2, characterized in that: A cylindrical rod (101) is longitudinally fixedly connected to the mounting frame (9), and the vibration frame (10) is slidably sleeved on the outside of the cylindrical rod (101); A vibration spring (102) is elastically connected between the vibration frame (10) and the mounting frame (9), and the vibration spring (102) is sleeved on the outside of the cylindrical rod (101).

4. The wireless communication transmission device according to claim 1, characterized in that: The communication transceiver (1) is fixedly fitted with a protective frame (13) at both the upper and lower ends. Four sets of flexible vibration damping corner blocks (15) are fixed on the protective frame (13). The four sets of flexible vibration damping corner blocks (15) are respectively engaged and protected at the four corners of the end face of the communication transceiver (1).

5. A wireless communication transmission device according to claim 4, characterized in that: The protective frame (13) is fitted with a flexible damping strip (14) on its outside. The protective frame (13) is equipped with an elastic reinforcement mechanism to reinforce the rechargeable battery (5).

6. A wireless communication transmission device according to claim 5, characterized in that: The elastic reinforcement mechanism includes an elastic pressure bar (16) fixedly connected to the protective frame (13), and the elastic pressure bar (16) is elastically pressed against the outside of the rechargeable battery (5).

7. A wireless communication transmission device according to claim 6, characterized in that: A column (17) is fixedly connected to the elastic pressure bar (16), and a slanted groove (18) is opened at one end of the column (17) near the protective frame (13). The protective frame (13) is longitudinally slidably connected with a drive pressure rod (171), which presses against the inclined groove (18) of the column (17).

8. A wireless communication transmission device according to claim 7, characterized in that: The flexible damping strip (14) has an embedded groove (172) on the side near the protective frame (13), and multiple discs (173) are arranged at equal intervals in the embedded groove (172). The discs (173) are slidably mounted on the flexible damping strip (14), and the discs (173) protrude from the outside of the flexible damping strip (14). A crossbar (174) is fixedly connected between multiple disks (173); Multiple guide posts (175) are fixedly connected at equal intervals on the protective frame (13), and the crossbar (174) is slidably sleeved on the outside of the guide posts (175).

9. A wireless communication transmission device according to claim 8, characterized in that: A push rod (176) is rotatably connected to the crossbar (174), and the other end of the push rod (176) is rotatably connected to the drive pressure rod (171); Multiple arc-shaped elastic limiting plates (177) are fixed on the crossbar (174). The elastic limiting plates (177) are set between two sets of discs (173), and the two ends of the elastic limiting plates (177) are elastically attached to the protective frame (13).

10. A transmission method for a wireless communication transmission device, characterized in that, An application to a wireless communication transmission device as described in any one of claims 1-9 includes the following steps: S1, Voice input: When the user speaks, the microphone (31) converts the sound into an electrical signal; S2, Signal modulation, uses frequency modulation to correlate the frequency of the output electrical signal with the modulating signal, suitable for radio transmission; S3, Signal amplification and transmission: The modulated electrical signal is relatively weak. It is amplified by an audio amplifier and sent to the radio frequency transmitter. The signal is converted into radio waves and transmitted into the air through the antenna (2). S4. Signal reception and demodulation: The antenna (2) of the receiving communication device captures radio waves and converts them into electrical signals. The demodulator restores the original voice signal and converts it into sound to enable communication.