Digital information transmission device for communication and method of using the same

CN122801970APending Publication Date: 2026-09-22MAINTENANCE COMPANY OF STATE GRID XINJIANG ELECTRIC POWER COMPANY
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Patent Information

Application Number
CN202610936641.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-26
Publication Date
2026-09-22

AI Technical Summary

Technical Problem

[0003]但是现有技术中,现有数字信息传输设备实际规格和结构各异且固定,进而需要固定结构规格存储设备进行存储放置,而固定结构的现有数字信息传输设备存储设备无法适配不同规格现有数字信息传输设备的使用,导致进行现有数字信息传输设备维护替换时往往需要重新进行现有数字信息传输设备存储设备的同步替换,容易造成使用资源的浪费,同时现有数字信息传输设备存储设备实际散热结构固定,容易导致不同位置现有数字信息传输设备实际运行环境温度各异,容易造成不同位置现有数字信息传输设备运行效果各异,导致现有数字信息传输设备存储设备实际使用效果欠佳

Benefits of technology

[0020](1)本发明中,使用时,若传输设备本体规格较大,进而将存储箱水平放置,使载板底部能够充分与存储箱内壁贴合,使载板能够平稳进行较大规格传输设备本体的承载,同时通过卡框的位置限制下,使载板能够在延伸管的支撑下能够平稳垂直设置于存储箱内部,此时通过第一限位槽和第二限位槽能够配合现有螺栓使传输设备本体与载板稳固连接,同时通过抵栓能够便捷将抵块插设于第一限位槽和第二限位槽内部,且根据传输设备本体实际规格可增减抵块的使用数量,进而通过将抵块挤压贴合,再通过旋转固位螺帽,使固位螺帽能够挤压载框外表面,进而配合抵栓进行抵块的位置固定,使抵块能够为传输设备本体提供稳固的位置支撑,继而使设备能够同时进行不同规格传输设备本体的存储放置,若传输设备本体规格较小,则将存储箱竖直放置,此时调节管一端通过排风口能够被排风框平稳支撑,同时在卡框的支撑下,使载板和延伸管能够平稳设置于存储箱内部,使传输设备本体能够平稳放置于载板顶部,同时通过连接架和连接孔能够将不同放置方向以及相同放置方向的存储箱进行堆叠拼接使用,提高传输设备本体使用数量,使设备能够高效进行应有功能的实现。

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Abstract

The application relates to the technical field of information transmission equipment, in particular to a digital information transmission device for communication and a use method thereof, which is composed of a transmission equipment body, a storage box, an exhaust frame, a storage mechanism, a carrier plate and a placing mechanism. When used, if the transmission equipment body is large in specification, the storage box is horizontally placed, the bottom of the carrier plate can be fully attached to the inner wall of the storage box, the carrier plate can stably carry the large-specification transmission equipment body, the carrier plate can be stably and vertically arranged in the storage box under the support of the extension pipe through the position limitation of the clamping frame, the transmission equipment body and the carrier plate can be stably connected through the first limiting groove and the second limiting groove and the existing bolts, the resisting block can be conveniently inserted into the first limiting groove and the second limiting groove through the resisting bolt, and the number of the resisting blocks can be increased or reduced according to the actual specification of the transmission equipment body, and the resisting blocks are pressed and attached.
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Description

Technical Field

[0001] This invention belongs to the field of information transmission equipment technology, specifically a digital information transmission device for communication and its usage method. Background Technology

[0002] A communication system is a general term for technical systems used to complete the information transmission process. Modern communication systems mainly rely on the propagation of electromagnetic waves in free space or the transmission mechanism in a guiding medium. The former is called a wireless communication system, and the latter is called a wired communication system. A system is usually an organic whole composed of several units with specific functions that interact and depend on each other to achieve a unified goal. The simplest communication system allows users at two points to send and receive information from each other. In a general communication system, users can communicate with other users in the system through information transmission devices.

[0003] However, in the existing technology, the actual specifications and structures of existing digital information transmission equipment vary and are fixed, thus requiring storage devices with fixed structural specifications for storage. However, the storage devices of existing digital information transmission equipment with fixed structures cannot be adapted to the use of existing digital information transmission equipment with different specifications. As a result, when maintaining or replacing existing digital information transmission equipment, it is often necessary to replace the storage devices of existing digital information transmission equipment again, which can easily lead to a waste of resources. At the same time, the actual heat dissipation structure of existing digital information transmission equipment storage devices is fixed, which can easily lead to different actual operating temperatures of existing digital information transmission equipment in different locations, resulting in different operating effects of existing digital information transmission equipment storage devices in different locations, and thus poor actual use effect of existing digital information transmission equipment storage devices. Summary of the Invention

[0004] The purpose of this invention is to provide a communication digital information transmission device and its usage method that can adjust its own structure according to the transmission device body to meet the storage needs of transmission device bodies of different specifications, while maintaining the operating environment temperature of transmission devices in different locations and preventing excessively high operating environment temperature from affecting the normal operation of the transmission device.

[0005] The technical solution adopted in this invention is as follows: A digital information transmission device for communication includes: a transmission equipment body, and further includes: a storage box and an exhaust frame. The storage box provides an effective storage environment for the transmission equipment body through a storage mechanism. The exhaust frame extends through the top of the storage box, and multiple exhaust ports are equidistantly opened on one outer surface of the exhaust frame.

[0006] The carrier board is disposed inside the storage box, and the carrier board provides an efficient storage environment for the transmission equipment body through the placement mechanism and the storage mechanism;

[0007] The transmission device body is mounted on a carrier plate.

[0008] The storage box has multiple mounting ports equidistantly spaced on one side of its outer surface, and an adjustment port on the other side of its outer surface.

[0009] The storage mechanism includes a card frame, a connecting pipe, a first air guide frame, a second air guide frame, and two fans. The card frame is slidably inserted into the corresponding mounting port and is fixedly connected to the outer surface of one side of the storage box by bolts. The connecting pipe is connected to the top of the exhaust frame. The first and second air guide frames are both fixedly connected to the top of the storage box. The two fans are respectively fixedly connected inside the first and second air guide frames.

[0010] The first air guide frame is fixedly connected to one end of the connecting pipe, and the inside of the first air guide frame is connected to the inside of the connecting pipe.

[0011] The second air guide frame is fixedly connected to one side of the outer surface of the first air guide frame, and the interior of the second air guide frame is connected to the interior of the first air guide frame.

[0012] The storage box has a set of connection holes at the bottom and top, and a set of connection holes on both sides of the outer surface. A connecting bracket is inserted into the bottom of the storage box through the connection holes, and a protective plate is fixedly connected to the outer surface of the storage box by bolts.

[0013] The placement mechanism includes an extension tube, an adjustment tube, an impeller, and a drive motor. The extension tube is fixedly connected to one end of the carrier plate. The adjustment tube is slidably inserted into one end of the extension tube, and one end of the adjustment tube extends into the corresponding exhaust port. The interior of the adjustment tube and the interior of the extension tube are connected. The impeller is rotatably connected to the interior of the extension tube. The drive motor is fixedly connected to the interior of the extension tube, and the output end of the drive motor is fixedly connected to one end of the impeller.

[0014] The extension tube has a first air guide opening at its bottom, and the adjustment tube has a second air guide opening at its bottom. The interior of the second air guide opening is connected to the interior of the first air guide opening.

[0015] The adjustment tube is fixedly connected to an adjustment block at its top. A positioning bolt is slidably inserted into the outer surface of one side of the adjustment block. The positioning bolt is threadedly connected to the top of the extension tube. Multiple first limiting grooves are equidistantly opened on the bottom surface of the inner side of the carrier plate. Two abutments are slidably inserted into one of the first limiting grooves. A stop block is fixedly connected to the top of each abutment. A retaining nut is threadedly connected to the outer surface of each abutment. Multiple second limiting grooves are equidistantly opened on the outer surface of one side of the carrier plate. The other end of the carrier plate is snapped into one end of the card frame.

[0016] A method of using a digital information transmission device for communication includes the following steps:

[0017] S1. Structural Adjustment: If the transmission equipment body is large, the storage box is placed horizontally so that the bottom of the carrier plate can fully fit against the inner wall of the storage box. This allows the carrier plate to stably support the large-sized transmission equipment body. Simultaneously, the position of the clamping frame ensures that the carrier plate, supported by the extension tube, can be stably and vertically positioned inside the storage box. The first and second limiting slots, along with existing bolts, securely connect the transmission equipment body to the carrier plate. The abutments can be easily inserted into the first and second limiting slots. The number of abutments can be increased or decreased depending on the actual size of the transmission equipment body. The abutments are then pressed together, and the fixing nut is rotated to secure them. The retaining nut can press against the outer surface of the frame, thereby fixing the position of the abutment block in conjunction with the bolt. The abutment block can provide stable position support for the transmission equipment body, allowing the equipment to store and place transmission equipment bodies of different specifications simultaneously. If the transmission equipment body is small, the storage box is placed vertically. At this time, one end of the regulating pipe can be stably supported by the exhaust frame through the exhaust port. At the same time, under the support of the clamping frame, the carrier plate and extension pipe can be stably set inside the storage box, and the transmission equipment body can be stably placed on the top of the carrier plate. Meanwhile, through the connecting frame and connecting holes, storage boxes with different placement directions and the same placement direction can be stacked and spliced ​​for use, increasing the number of transmission equipment bodies that can be used.

[0018] S2. Operation and Maintenance: By controlling the start of the fan, the fan can inject outside air into the exhaust frame through the first air guide frame, the second air guide frame, and the connecting pipe. The air injected into the exhaust frame can then be injected into the corresponding regulating pipe through the exhaust port. Subsequently, the air can be injected into the extension pipe through the regulating pipe. The air injected into the extension pipe and the regulating pipe can then be discharged through the first air guide port and the second air guide port. The high-speed discharged air can accelerate the air flow at the bottom of the carrier plate, allowing the excess heat generated by the operation of the transmission equipment to be discharged from the storage box along with the air flow. At the same time, driven by the drive motor, the impeller can rotate at high speed, which can accelerate the discharge of air inside the extension frame through the first air guide port. Simultaneously, the air inside the exhaust frame can be drawn into the extension frame more quickly through the regulating pipe, allowing the air to flow more rapidly through the bottom of the carrier plate, thereby efficiently dissipating the excess heat generated by the operation of the transmission equipment.

[0019] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0020] (1) In this invention, when the transmission equipment body is large, the storage box is placed horizontally so that the bottom of the carrier plate can fully fit against the inner wall of the storage box, allowing the carrier plate to stably support the large-sized transmission equipment body. At the same time, the position of the clip frame restricts the carrier plate so that it can be stably and vertically set inside the storage box with the support of the extension tube. At this time, the first and second limiting grooves can be used with existing bolts to make the transmission equipment body and the carrier plate firmly connected. At the same time, the abutment can be conveniently inserted into the first and second limiting grooves through the abutment. The number of abutment can be increased or decreased according to the actual size of the transmission equipment body. Then, by pressing the abutment together, and then by rotating the fixing nut, the fixing nut can be... The outer surface of the frame is squeezed, and then the position of the block is fixed in conjunction with the bolt, so that the block can provide stable position support for the transmission equipment body. This allows the equipment to store and place transmission equipment bodies of different specifications at the same time. If the transmission equipment body is small, the storage box is placed vertically. At this time, one end of the regulating pipe can be stably supported by the exhaust frame through the exhaust port. At the same time, with the support of the frame, the carrier plate and the extension pipe can be stably set inside the storage box, and the transmission equipment body can be stably placed on the top of the carrier plate. At the same time, the storage boxes with different placement directions and the same placement direction can be stacked and spliced ​​through the connecting frame and connecting holes, increasing the number of transmission equipment bodies that can be used and enabling the equipment to perform its intended functions efficiently.

[0021] (2) In this invention, by controlling the start of the fan, the fan can inject outside air into the exhaust frame through the first air guide frame, the second air guide frame and the connecting pipe, and then the flowing air injected into the exhaust frame can be injected into the corresponding regulating pipe through the exhaust port. Then, through the regulating pipe, the flowing air can be injected into the extension pipe, and the flowing air injected into the extension pipe and the regulating pipe can be discharged through the first air guide port and the second air guide port. The high-speed discharged flowing air can accelerate the flow of air at the bottom of the carrier plate, so that the excess heat generated by the operation of the transmission equipment body can be discharged from the storage box with the flowing air. At the same time, under the drive of the drive motor, the impeller can rotate at high speed, which can accelerate the discharge of air inside the extension frame through the first air guide port. At the same time, the flowing air inside the exhaust frame can be drawn into the extension frame more quickly through the regulating pipe, so that the flowing air can flow through the bottom of the carrier plate more quickly, thereby efficiently dissipating the excess heat generated by the operation of the transmission equipment body, ensuring the actual operating temperature of the transmission equipment body, and enabling the equipment to efficiently perform its intended functions. Attached Figure Description

[0022] Figure 1 This is a partially unfolded perspective view of the present invention in use;

[0023] Figure 2 This is a first-view perspective view of the present invention.

[0024] Figure 3 This is a second perspective view of the invention.

[0025] Figure 4 This is a first-view sectional perspective view of the present invention.

[0026] Figure 5 A first-view perspective view of the storage mechanism of the present invention;

[0027] Figure 6 This is a second-view perspective view of the storage mechanism of the present invention.

[0028] Figure 7 This is a first-view perspective perspective view of the placement mechanism of the present invention;

[0029] Figure 8 For the present invention Figure 7 Enlarged view of point A in the middle;

[0030] Figure 9 This is a first-view sectional perspective view of the placement mechanism of the present invention.

[0031] Figure 10 This is a second-view perspective perspective view of the placement mechanism of the present invention.

[0032] The diagram shows the following markings: 1. Storage mechanism; 101. Storage box; 102. Mounting port; 103. Frame; 104. Connection hole; 105. Connecting frame; 106. Protective plate; 107. Exhaust frame; 108. Connecting pipe; 109. First air guide frame; 110. Second air guide frame; 111. Adjustment port; 112. Fan; 2. Placement mechanism; 201. Extension pipe; 202. Carrier plate; 203. Abutment block; 204. Adjustment pipe; 205. Second air guide port; 206. Impeller; 207. Drive motor; 208. First air guide port; 3. Transmission equipment body. Detailed Implementation

[0033] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0034] For examples, please refer to [link / reference]. Figures 1-4 A digital information transmission device for communication comprises a transmission device body 3, a storage box 101, an exhaust frame 107, a storage mechanism 1, a carrier plate 202, and a placement mechanism 2, wherein the transmission device body 3 is disposed on the carrier plate 202.

[0035] The details are as follows:

[0036] Please see Figure 5and Figure 6 The storage box 101 provides an effective storage environment for the transmission equipment body 3 through the storage mechanism 1. An exhaust frame 107 extends through the top of the storage box 101. Multiple exhaust vents are equidistantly spaced on one side of the outer surface of the exhaust frame 107. Multiple mounting ports 102 are equidistantly spaced on one side of the outer surface of the storage box 101. An adjustment port 111 is located on the other side of the outer surface of the storage box 101. The storage mechanism 1 includes a frame 103, a connecting pipe 108, a first air guide frame 109, a second air guide frame 110, and two fans 112. The frame 103 is slidably inserted into the corresponding mounting port 102, and the frame 103 is fixedly connected to one side of the outer surface of the storage box 101 by bolts. The connecting pipe 108... The exhaust frame 107 is connected to the top of the storage box 101. The first air guide frame 109 and the second air guide frame 110 are both fixedly connected to the top of the storage box 101. Two fans 112 are respectively fixedly connected inside the first air guide frame 109 and the second air guide frame 110. One end of the first air guide frame 109 is fixedly connected to one end of the connecting pipe 108, and the interior of the first air guide frame 109 communicates with the interior of the connecting pipe 108. One end of the second air guide frame 110 is fixedly connected to one outer surface of the first air guide frame 109, and the interior of the second air guide frame 110 communicates with the interior of the first air guide frame 109. A set of connecting holes 104 are provided at the bottom and top of the storage box 101, and connecting holes 104 are also provided on the outer surfaces of both sides of the storage box 101. A set of connection holes 104 are provided. A connecting bracket 105 is inserted into the bottom of the storage box 101 through the connection holes 104. A protective plate 106 is fixedly connected to the outer surface of the storage box 101 by bolts. By controlling the start of the fan 112, the fan 112 can inject outside air into the exhaust frame 107 through the first air guide frame 109, the second air guide frame 110 and the connecting pipe 108. Then, the flowing air injected into the exhaust frame 107 can be injected into the corresponding regulating pipe 204 through the exhaust port. Subsequently, the flowing air can be injected into the extension pipe 201 through the regulating pipe 204. The flowing air injected into the extension pipe 201 and the regulating pipe 204 can be injected into the first air guide frame 107 through the first air guide frame 104. The air is discharged through the first air vent 208 and the second air guide vent 205. The high-speed airflow can accelerate the airflow at the bottom of the carrier plate 202, so that the excess heat generated by the operation of the transmission equipment body 3 can be discharged from the storage box 101 along with the airflow. At the same time, under the drive of the drive motor 207, the impeller 206 can rotate at high speed, which can accelerate the air inside the extension frame to be discharged through the first air guide vent 208. At the same time, the airflow inside the exhaust frame 107 can be drawn into the extension frame more quickly through the regulating pipe 204, so that the airflow can flow through the bottom of the carrier plate 202 more quickly, thereby efficiently dissipating the excess heat generated by the operation of the transmission equipment body 3.

[0037] Please see Figures 7-10The carrier plate 202 is disposed inside the storage box 101. The carrier plate 202 provides an efficient storage environment for the transmission equipment body 3 through the placement mechanism 2 and the storage mechanism 1. The placement mechanism 2 includes an extension tube 201, an adjusting tube 204, an impeller 206, and a drive motor 207. The extension tube 201 is fixedly connected to one end of the carrier plate 202. The adjusting tube 204 is slidably inserted into one end of the extension tube 201, and one end of the adjusting tube 204 extends into the corresponding exhaust port. The interior of the adjusting tube 204 is connected to the interior of the extension tube 201. The impeller 206 is rotatably connected to the interior of the extension tube 201. The drive motor 207 is fixedly connected to the interior of the extension tube 201, and the output end of the drive motor 207 is fixedly connected to one end of the impeller 206. An opening is provided at the bottom of the extension tube 201. There is a first air vent 208, and a second air vent 205 is opened at the bottom of the regulating pipe 204. The interior of the second air vent 205 is connected to the interior of the first air vent 208. An regulating block is fixedly connected to the top of the regulating pipe 204. A positioning bolt is slidably inserted into the outer surface of one side of the regulating block. The positioning bolt is threadedly connected to the top of the extension pipe 201. Multiple first limiting grooves are equidistantly opened on the bottom surface of the inner side of the carrier plate 202. Two abutments are slidably inserted into one of the first limiting grooves. A stop block 203 is fixedly connected to the top of each abutment. A retaining nut is threadedly connected to the outer surface of each abutment. Multiple second limiting grooves are equidistantly opened on the outer surface of one side of the carrier plate 202. The other end of the carrier plate 202 is snapped into one end of the frame 103. If the size of the transmission equipment body 3 is large, the storage box 101 will be further... The horizontal placement allows the bottom of the carrier plate 202 to fully conform to the inner wall of the storage box 101, enabling the carrier plate 202 to stably support the large-scale transmission equipment body 3. Simultaneously, the positional constraint of the clamp frame 103 ensures that the carrier plate 202, supported by the extension tube 201, can be stably and vertically positioned inside the storage box 101. The first and second limiting slots, along with existing bolts, securely connect the transmission equipment body 3 to the carrier plate 202. The abutment blocks 203 can be easily inserted into the first and second limiting slots using bolts. The number of abutment blocks 203 can be increased or decreased depending on the actual specifications of the transmission equipment body 3. By pressing the abutment blocks 203 together and then rotating the retaining nut, the retaining nut can compress the carrier plate 202. The outer surface of the frame is then used to fix the position of the abutment block 203 with the abutment bolt, so that the abutment block 203 can provide a stable position support for the transmission equipment body 3, thereby enabling the equipment to store and place transmission equipment bodies 3 of different specifications at the same time. If the transmission equipment body 3 is small, the storage box 101 is placed vertically. At this time, one end of the adjusting tube 204 can be stably supported by the exhaust frame 107 through the exhaust port. At the same time, under the support of the card frame 103, the carrier plate 202 and the extension tube 201 can be stably set inside the storage box 101, so that the transmission equipment body 3 can be stably placed on the top of the carrier plate 202. At the same time, the storage boxes 101 with different placement directions and the same placement direction can be stacked and spliced ​​for use through the connecting frame 105 and the connecting hole 104.

[0038] The following provides a detailed description of the method of using a digital information transmission device for communication provided by an embodiment of the present invention, the method of using the device including the following steps:

[0039] Step 1, Structural Adjustment: If the transmission device body 3 is large, the storage box 101 is placed horizontally so that the bottom of the carrier plate 202 can fully fit against the inner wall of the storage box 101. This allows the carrier plate 202 to stably support the large-sized transmission device body 3. Simultaneously, the position of the clamping frame 103 restricts the carrier plate 202, ensuring it is stably and vertically positioned inside the storage box 101 with the support of the extension tube 201. The first and second limiting slots, along with existing bolts, securely connect the transmission device body 3 to the carrier plate 202. The abutment blocks 203 can be easily inserted into the first and second limiting slots using bolts. The number of abutment blocks 203 can be increased or decreased depending on the actual size of the transmission device body 3. By pressing the abutment blocks 203 together and rotating the retaining nut, the retaining nut can be pressed against the carrier plate. The outer surface of the frame is then used in conjunction with the bolts to fix the position of the block 203, so that the block 203 can provide a stable position support for the transmission equipment body 3, thereby enabling the equipment to store and place transmission equipment bodies 3 of different specifications at the same time. If the transmission equipment body 3 is small, the storage box 101 is placed vertically. At this time, one end of the adjusting pipe 204 can be stably supported by the exhaust frame 107 through the exhaust port. At the same time, under the support of the frame 103, the carrier plate 202 and the extension pipe 201 can be stably set inside the storage box 101, so that the transmission equipment body 3 can be stably placed on the top of the carrier plate 202. At the same time, the storage boxes 101 with different placement directions and the same placement direction can be stacked and spliced ​​through the connecting frame 105 and the connecting hole 104, increasing the number of transmission equipment bodies 3 used and enabling the equipment to efficiently realize its intended functions.

[0040] Step 2, Operation and Maintenance: By controlling the start of the fan 112, the fan 112 can inject outside air into the exhaust frame 107 through the first air guide frame 109, the second air guide frame 110, and the connecting pipe 108. This airflow injected into the exhaust frame 107 can then be injected into the corresponding regulating pipe 204 through the exhaust port. Subsequently, the airflow through the regulating pipe 204 can be injected into the extension pipe 201. The airflow injected into the extension pipe 201 and the regulating pipe 204 can then be discharged through the first air guide port 208 and the second air guide port 205. The high-speed discharged airflow accelerates the airflow at the bottom of the carrier plate 202, thus... The excess heat generated by the operation of the transmission equipment body 3 can be discharged from the storage box 101 with the flowing air. At the same time, driven by the drive motor 207, the impeller 206 can rotate at high speed, thereby accelerating the discharge of air inside the extension frame through the first air guide 208. Simultaneously, the flowing air inside the exhaust frame 107 can be drawn into the extension frame more quickly through the regulating pipe 204, and then the flowing air can flow more quickly through the bottom of the carrier plate 202, thereby efficiently dissipating the excess heat generated by the operation of the transmission equipment body 3, ensuring the actual operating temperature of the transmission equipment body 3, and enabling the equipment to efficiently perform its intended functions.

[0041] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A digital information transmission device for communication, comprising: The transmission device body (3) is characterized in that it further includes: Storage box (101) and exhaust frame (107). The storage box (101) provides an effective storage environment for the transmission equipment body (3) through the storage mechanism (1). The exhaust frame (107) runs through the top of the storage box (101). Multiple exhaust ports are equidistantly opened on one side of the outer surface of the exhaust frame (107). Carrier plate (202), the carrier plate (202) is disposed inside the storage box (101), the carrier plate (202) provides a storage environment for the transmission equipment body (3) to operate efficiently through the placement mechanism (2) and the storage mechanism (1); The transmission device body (3) is mounted on the carrier plate (202).

2. The digital information transmission device for communication as described in claim 1, characterized in that: The storage box (101) has multiple mounting ports (102) equidistantly spaced on one side of its outer surface, and an adjustment port (111) is provided on the other side of its outer surface.

3. The digital information transmission device for communication as described in claim 2, characterized in that: The storage mechanism (1) includes a frame (103), a connecting pipe (108), a first air guide frame (109), a second air guide frame (110), and two fans (112). The frame (103) is slidably inserted into the corresponding mounting port (102), and the frame (103) is fixedly connected to the outer surface of one side of the storage box (101) by bolts. The connecting pipe (108) is connected to the top of the exhaust frame (107). The first air guide frame (109) and the second air guide frame (110) are both fixedly connected to the top of the storage box (101). The two fans (112) are respectively fixedly connected inside the first air guide frame (109) and the second air guide frame (110).

4. The digital information transmission device for communication as described in claim 3, characterized in that: One end of the first air guide frame (109) is fixedly connected to one end of the connecting pipe (108), and the interior of the first air guide frame (109) is connected to the interior of the connecting pipe (108).

5. A digital information transmission device for communication as described in claim 4, characterized in that: One end of the second air guide frame (110) is fixedly connected to the outer surface of one side of the first air guide frame (109), and the interior of the second air guide frame (110) is connected to the interior of the first air guide frame (109).

6. A digital information transmission device for communication as described in claim 5, characterized in that: The storage box (101) has a set of connection holes (104) at the bottom and top, and a set of connection holes (104) are also provided on the outer surfaces of both sides of the storage box (101). A connecting bracket (105) is inserted into the bottom of the storage box (101) through the connection holes (104), and a protective plate (106) is fixedly connected to the outer surface of the storage box (101) by bolts.

7. A digital information transmission device for communication as described in claim 6, characterized in that: The placement mechanism (2) includes an extension tube (201), an adjustment tube (204), an impeller (206), and a drive motor (207). The extension tube (201) is fixedly connected to one end of the carrier plate (202). The adjustment tube (204) is slidably inserted into one end of the extension tube (201), and one end of the adjustment tube (204) extends into the corresponding exhaust port. The interior of the adjustment tube (204) is connected to the interior of the extension tube (201). The impeller (206) is rotatably connected to the interior of the extension tube (201). The drive motor (207) is fixedly connected to the interior of the extension tube (201), and the output end of the drive motor (207) is fixedly connected to one end of the impeller (206).

8. A digital information transmission device for communication as described in claim 7, characterized in that: The extension tube (201) has a first air guide (208) at its bottom, and the adjustment tube (204) has a second air guide (205) at its bottom. The interior of the second air guide (205) is connected to the interior of the first air guide (208).

9. A digital information transmission device for communication as described in claim 8, characterized in that: An adjusting block is fixedly connected to the top of the adjusting tube (204). A positioning bolt is slidably inserted into the outer surface of one side of the adjusting block. The positioning bolt is threadedly connected to the top of the extension tube (201). Multiple first limiting grooves are equidistantly opened on the bottom surface of the inner plate (202). Two abutments are slidably inserted into one of the first limiting grooves. A stop block (203) is fixedly connected to the top of each abutment. A retaining nut is threadedly connected to the outer surface of each abutment. Multiple second limiting grooves are equidistantly opened on the outer surface of one side of the plate (202). The other end of the plate (202) is snapped into one end of the frame (103).

10. A method of using a digital information transmission device for communication, characterized in that, When applied to a digital information transmission device for communication as described in claim 9, the method includes the following steps: S1. Structural Adjustment: If the transmission equipment body (3) is large, the storage box (101) is placed horizontally so that the bottom of the carrier plate (202) can fully fit against the inner wall of the storage box (101), so that the carrier plate (202) can stably support the large-sized transmission equipment body (3). At the same time, under the position restriction of the frame (103), the carrier plate (202) can be stably and vertically set inside the storage box (101) with the support of the extension tube (201). At this time, the first and second limiting grooves can be used with the existing bolts to make the transmission equipment body (3) and the carrier plate (202) firmly connected. At the same time, the abutment block (203) can be easily inserted into the first and second limiting grooves through the abutment bolt. The number of abutment blocks (203) can be increased or decreased according to the actual size of the transmission equipment body (3). Then, by pressing the abutment blocks (203) together, and then by rotating the fixing nut, the fixing screw can be fixed. The cap can squeeze the outer surface of the frame, and then cooperate with the bolt to fix the position of the block (203), so that the block (203) can provide a stable position support for the transmission equipment body (3), and then the equipment can store and place transmission equipment bodies (3) of different specifications at the same time. If the transmission equipment body (3) is small, the storage box (101) is placed vertically. At this time, one end of the regulating pipe (204) can be stably supported by the exhaust frame (107) through the exhaust port. At the same time, under the support of the card frame (103), the carrier plate (202) and the extension pipe (201) can be stably set inside the storage box (101), so that the transmission equipment body (3) can be stably placed on the top of the carrier plate (202). At the same time, through the connecting frame (105) and the connecting hole (104), storage boxes (101) with different placement directions and the same placement direction can be stacked and spliced ​​for use, increasing the number of transmission equipment bodies (3) used. S2, Operation and Maintenance: By controlling the start of the fan (112), the fan (112) can inject outside air into the exhaust frame (107) through the first guide frame (109), the second guide frame (110), and the connecting pipe (108). This allows the airflow injected into the exhaust frame (107) to be injected into the corresponding regulating pipe (204) through the exhaust port. Then, through the regulating pipe (204), the airflow is injected into the extension pipe (201). The airflow injected into the extension pipe (201) and the regulating pipe (204) is then discharged through the first guide port (208) and the second guide port (205). The high-speed exhaust airflow... Air can accelerate the flow of air at the bottom of the carrier plate (202), so that the excess heat generated by the operation of the transmission equipment body (3) can be discharged from the storage box (101) with the flow of air. At the same time, driven by the drive motor (207), the impeller (206) can rotate at high speed, thereby accelerating the discharge of air inside the extension frame through the first air guide (208). Meanwhile, the air flowing inside the exhaust frame (107) can be drawn into the extension frame more quickly through the regulating pipe (204), so that the air can flow more quickly through the bottom of the carrier plate (202), thereby efficiently dissipating the excess heat generated by the operation of the transmission equipment body (3).