Data transmission aid
By designing a data transmission aid, the problems of interface limitations and inconvenient setup in existing technologies are solved, enabling convenient and secure data transmission across multiple interfaces, supporting quick interface replacement, and meeting various data transmission needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- STATE OCEANIC ADMINISTRATION BEIHAI MARINE ENG SURVEY & RES INST (QINGDAO HUANHAI MARINE ENG SURVEY & RES INST)
- Filing Date
- 2022-11-28
- Publication Date
- 2026-05-08
AI Technical Summary
Existing serial port distributors and servers can only achieve limited data transmission between a few interfaces, and require special software to be opened on a computer for configuration, which can lead to data transmission failures or inconvenience.
A data transmission aid was designed, comprising a data transmission aid, a power cord, and a device power interface. It is equipped with multiple interfaces and indicator lights, uses an electromagnet to fix the interfaces, supports quick replacement and disassembly of irregularly shaped interfaces, and combines the data display characteristics of the display screen. It has hardware and software collaborative functions to realize multi-interface data transmission.
It enables data transmission between multiple interfaces, supports quick interface replacement and disassembly, improves the practicality and adaptability of data transmission, ensures security and convenience, and meets different data transmission needs.
Smart Images

Figure CN115840723B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a transmission aid, specifically a data transmission aid, and belongs to the field of data transmission technology. Background Technology
[0002] With the advent of the information age, people are becoming increasingly reliant on virtual data. Virtual data has advantages that traditional written physical data lacks, such as lightweight nature, efficient transmission, massive data integration, real-time dissemination, and convenient storage. However, virtual data also has problems such as storage distortion, equipment damage, and severe equipment dependence.
[0003] In particular, existing serial port distributors and servers can only achieve limited data transmission between a limited number of interfaces, and data transmission failures frequently occur in the field due to interface issues. Furthermore, the configuration of existing serial port distributors and servers requires opening specialized software on a computer, and data transmission is impossible without this software. Summary of the Invention
[0004] (a) Technical problems to be solved
[0005] The purpose of this invention is to provide a data transmission aid to solve the aforementioned problems. This addresses the issue that existing serial port distributors and servers can only achieve limited data interface connections, often resulting in data transmission failures in the field due to interface limitations. Furthermore, existing serial port distributors and servers require specialized software on a computer for configuration, making data transmission impossible without this software.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, the present invention provides the following technical solution: a data transmission auxiliary device, comprising a data auxiliary transmitter, a power cord, and a device power interface. Two USB ports and three Ethernet ports are installed on one side of the data auxiliary transmitter, and three male serial ports and three female serial ports are installed on the other side. Each USB port, Ethernet port, female serial port, and male serial port has an indicator light on its top. A display screen is fixedly connected to the top of the data auxiliary transmitter. A mounting slot is provided on one side of the data auxiliary transmitter, and two irregularly shaped interfaces are provided on the outer side of the data auxiliary transmitter, one of which... An adsorption plate, an electromagnet, a shaped interface connector, and an installation plug are provided between the irregularly shaped interface and the data auxiliary transmitter. An interface shell is fixedly fitted on the outside of the irregularly shaped interface. A limit plate, a push plate, a thin rod, and a rubber insulating block are provided between the interface shell and the data auxiliary transmitter. A thin-walled heat-conducting shell is provided at the bottom of the data auxiliary transmitter. An elastic rubber block and a sponge block are fixedly connected inside the thin-walled heat-conducting shell. Multiple placement slots are opened on the top of the elastic rubber block and the sponge block. A spare interface shell is placed inside one of the placement slots, and the irregularly shaped interface is placed inside the spare interface shell.
[0008] Preferably, the interface housing is disposed inside the mounting slot, and both irregularly shaped interfaces include irregularly shaped interface connectors. The mounting plug is disposed inside the irregularly shaped interface connector, and the irregularly shaped interface connector is fixedly connected to the irregularly shaped interface. The two irregularly shaped interface connectors respectively penetrate the interface housing and the spare interface housing. The mounting plug is electrically connected to the data auxiliary transmitter, and the indicator light is fixedly connected to the top of the data auxiliary transmitter. The irregularly shaped interface connector fixed to the irregularly shaped interface can be moved and sleeved onto the outside of the mounting plug. Subsequently, after the data auxiliary transmitter is powered on, the electromagnet fixed to the data auxiliary transmitter will operate, and the operating electromagnet will generate magnetic force to attract and fix it to the adsorption plate.
[0009] Preferably, the two adsorption plates are fixedly connected to both sides of the interface housing, the two interface housings are respectively disposed on one side of the two electromagnets, the two electromagnets are respectively disposed on both sides inside the mounting groove and fixedly connected to the data auxiliary transmitter, a rubber sealing plate is fixedly connected between one side of the electromagnet and the data auxiliary transmitter, and multiple USB ports and multiple circular ports are installed on one side of the data auxiliary transmitter. After the limiting plate aligns with the movable groove, it pushes the interface housing so that the interface housing is completely inserted into the mounting groove. At this time, the adsorption plates fixed to the interface housing are aligned with the electromagnets, and the irregular interface connectors fixed to the irregular interface will move and be sleeved on the outside of the mounting plug.
[0010] Preferably, the top of the mounting slot is provided with a movable slot, which is located on the top of one side of the data auxiliary transmitter. The limiting plate is fixedly connected to the top of the interface housing. Both the limiting plate and the push plate are located inside the movable slot. The rubber insulating block is located on the top of the data auxiliary transmitter. The top of the data auxiliary transmitter has a square slot. The thin rod is located inside the square slot and is fixedly connected between the rubber insulating block and the push plate. Pushing the rubber insulating block causes the thin rod fixed to the rubber insulating block to move while being limited by the square slot. The moving thin rod drives the push plate to move inside the movable slot. The moving push plate pushes the limiting plate, causing the interface housing fixed at the bottom of the limiting plate to move the irregular interface, so that the interface housing moves out of the mounting slot by a portion.
[0011] Preferably, a heat dissipation mesh plate is fixedly connected to the bottom of the data auxiliary transmitter. Fixed threaded grooves are provided on both sides of the thin-walled heat-conducting shell and on both sides of the data auxiliary transmitter. Fixing bolts are installed inside the two fixed threaded grooves of the thin-walled heat-conducting shell. One end of each fixing bolt extends into the thin-walled heat-conducting shell and is threadedly connected to it. The bottom of the data auxiliary transmitter extends into the thin-walled heat-conducting shell and is located on top of the two fixing bolts, with one end extending into the shell. This allows the fixing bolts to support the data auxiliary transmitter, which extends into the shell. The heat dissipation mesh plate fixed to the bottom of the data auxiliary transmitter discharges hot air into the thin-walled heat-conducting shell, where it is guided out by the shell, which is made of a material with excellent thermal conductivity. This ensures that the heat dissipation mesh plate is sealed during heat dissipation inside the data auxiliary transmitter.
[0012] Preferably, multiple limiting plates are fixedly connected inside the thin-walled heat-conducting shell. The elastic rubber block and the sponge block are both fixedly connected inside the thin-walled heat-conducting shell and are disposed at the bottom of the multiple limiting plates. The sponge block is fixedly connected to the top of the elastic rubber block. When the thin-walled heat-conducting shell moves a certain distance outside the data auxiliary transmitter, the limiting plates contact the data auxiliary transmitter to limit the thin-walled heat-conducting shell. At this time, the fixing threaded groove opened on the thin-walled heat-conducting shell is aligned with the fixing threaded groove opened on the data auxiliary transmitter.
[0013] Preferably, a spare limiting plate is fixedly connected to one side of the spare interface shell. The spare limiting plate is disposed inside the placement groove and is adapted to the movable groove. The placement groove is configured as a convex shape. Multiple irregularly shaped interfaces of different models are placed inside the thin-walled heat-conducting shell, and a spare interface shell with the same model and structure as the interface shell is sleeved on the outside of the irregularly shaped interfaces.
[0014] Preferably, the data auxiliary transmitter has a take-up groove on the other side, and a rubber block is provided inside the take-up groove. The rubber block is fixedly connected to the data auxiliary transmitter. The power cord is placed inside the take-up groove. Two vertical rubber plates are sleeved on the outside of the power cord. The vertical rubber plates are fixedly connected to the rubber block. After the power cord is pressed into the vertical rubber plates, the vertical rubber plates, which elastically deform and return to their original shape, apply friction to the power cord, thereby limiting and fixing the position of the power cord.
[0015] Preferably, one end of the power cord is fixedly connected to a power plug, and the power plug has elastic clamps at its top and bottom. The elastic clamps are fixedly connected to a rubber block. The other end of the power cord is fixedly connected to a power plug, and a threaded sleeve is fitted on the outside of the power plug. An insulating tube is fixedly connected to one side of the threaded sleeve and is fixedly fitted on the outside of the power cord. A deflecting rod is provided between the power cord and the rubber block. After holding the insulating tube, the power plug is aligned with the power socket, and the threaded sleeve is rotated and inserted into the power socket, so that the power plug is inserted into the power socket, thus completing the connection between the power cord and the spare power plug.
[0016] Preferably, the rubber block has multiple bottom grooves on one side, and each of the multiple bottom grooves is equipped with a spare power plug. Each spare power plug has a power socket on one side, and the power socket is compatible with the power plug. After selecting the appropriate spare power plug from the multiple models of spare power plugs in the multiple bottom grooves, the appropriate spare power plug can be quickly selected and connected to the power cord, ensuring quick power connection for the data auxiliary transmitter. This ensures the ease of use of the data transmission auxiliary device composed of the data auxiliary transmitter, display screen, USB interface, network port, female serial port, male serial port, indicator lights, and other components.
[0017] This invention provides a data transmission aid, which has the following beneficial effects:
[0018] 1. This data transmission aid, through the cooperation of its internal hardware and display software, realizes functions such as serial port distributor, serial port server, software allocation, data characteristic display, and data transmission between different interfaces. It enables the data transmission aid and display to be equipped with the most commonly used and universal data transmission interfaces, ensuring the practicality and adaptability of the data transmission aid composed of the data transmission aid, display, multiple USB ports, multiple network ports, multiple female serial ports, and male serial ports. It meets the needs of most data transmissions and allows for the installation and removal of non-standard interfaces and spare interface shells of different models within the mounting slot. This ensures that the data transmission aid can accommodate less commonly used spare interface shells, thus guaranteeing its applicability.
[0019] 2. This data transmission aid allows the interface housing to move partially out of the mounting slot. At this point, the limiting plate leaves the movable slot, allowing workers to directly remove the portion of the interface housing that has moved out of the mounting slot. This enables quick disassembly of irregularly shaped interfaces and their housings from the mounting slot, ensuring efficient replacement and disassembly of such interfaces. It also allows for the rapid installation of different types of irregularly shaped interfaces on one side of the data transmission aid. This enables the data transmission aid, composed of components such as the data transmission aid, display screen, multiple USB ports, multiple network ports, multiple female serial ports, and multiple male serial ports, to meet the needs of less frequently used data transmission interfaces, thus improving the practicality of the data transmission aid.
[0020] 3. This data transmission aid ensures that the heat dissipation mesh is sealed during internal heat dissipation, preventing dust, impurities, or moisture from entering the data transmission aid through the heat dissipation mesh. This ensures the safety of the electrically driven data transmission aid and the data transmission aid composed of the data transmission aid, display screen, multiple USB interfaces, multiple network ports, multiple female serial ports, and multiple male serial ports. Simply rotate the fixing bolts into the corresponding fixing threaded grooves to secure the data transmission aid and the thin-walled heat-conducting shell. This ensures that the display screen is protected by the thin-walled heat-conducting shell during the movement of the data transmission aid, guaranteeing a sealed operation during movement and ensuring the safety of the data transmission aid, display screen, USB interfaces, network ports, female serial ports, male serial ports, indicator lights, and other components during movement, thus reducing economic losses.
[0021] 4. This data transmission aid features multiple spare power plugs of various models located within its various bottom slots. By selecting the appropriate spare power plug and inserting the threaded sleeve into the device's power interface, the power cord is connected to the data transmission aid and the power supply. This allows for quick selection of the appropriate spare power plug and connection to the power cord, ensuring a rapid power connection for the data transmission aid. This ensures the ease of use of the data transmission aid, which comprises components such as the data transmission aid, display screen, USB interface, network port, female serial port, male serial port, and indicator lights. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0023] Figure 2 This is a schematic diagram of the thin-walled heat-conducting shell of the present invention;
[0024] Figure 3 This is a schematic diagram of the structure of the limiting plate of the present invention;
[0025] Figure 4 This is a schematic diagram of the data-assisted transmitter of the present invention;
[0026] Figure 5 This is a schematic diagram of the structure of the heat dissipation mesh plate of the present invention;
[0027] Figure 6 This is a schematic diagram of the structure of the push plate of the present invention;
[0028] Figure 7 This is a schematic diagram of the structure of the sponge block of the present invention;
[0029] Figure 8 This is a partial structural schematic diagram of the sponge block of the present invention;
[0030] Figure 9 This is a schematic diagram of the threaded sleeve of the present invention;
[0031] Figure 10 This is a schematic diagram of the structure of the rubber block of the present invention;
[0032] Figure 11 This is a schematic diagram of the vertical rubber sheet structure of the present invention;
[0033] Figure 12 This is a schematic diagram of the backup power plug of the present invention.
[0034] In the diagram: 1. Data auxiliary transmitter; 2. Display screen; 3. USB interface; 4. Ethernet port; 5. Female serial port; 6. Male serial port; 7. Indicator light; 8. Irregularly shaped interface; 9. Interface housing; 10. Adsorption plate; 11. Limiting plate; 12. Mounting slot; 13. Movable slot; 14. Rubber sealing plate; 15. Electromagnet; 16. Irregularly shaped interface connector; 17. Push plate; 18. Thin rod; 19. Rubber insulating block; 20. Square slot; 21. USB port; 22. Round port; 23. Heat dissipation mesh plate; 24. Thin 25. Heat-conducting shell; 26. Sponge block; 27. Elastic rubber block; 28. Placement groove; 29. Limiting plate; 30. Spare interface shell; 31. Spare limiting plate; 32. Fixing bolt; 33. Fixing threaded groove; 34. Cable take-up groove; 35. Rubber block; 36. Vertical rubber plate; 37. Power cord; 38. Power installation plug; 39. Threaded sleeve; 40. Power plug; 41. Bottom groove; 42. Spare power plug; 43. Power socket; 45. Equipment power interface; 46. Elastic clamp; 47. Installation plug. Detailed Implementation
[0035] This invention provides a data transmission aid.
[0036] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12The device includes a data auxiliary transmitter 1, a power cord 37, and a device power interface 45. Two USB ports 3 and three Ethernet ports 4 are installed on one side of the data auxiliary transmitter 1, and three male serial ports 6 and three female serial ports 5 are installed on the other side. Each USB port 3, Ethernet port 4, female serial port 5, and male serial port 6 has an indicator light 7 on its top. A display screen 2 is fixedly connected to the top of the data auxiliary transmitter 1. A mounting slot 12 is provided on one side of the data auxiliary transmitter 1. Two irregularly shaped interfaces 8 are provided on the outside of the data auxiliary transmitter 1. An adsorption plate 10 and an electromagnetic... The device includes an iron plate 15, a non-circular interface connector 16, and an installation plug 47. A non-circular interface 8 is fixedly fitted with an interface housing 9. A limit plate 11, a push plate 17, a thin rod 18, and a rubber insulating block 19 are provided between the interface housing 9 and the data auxiliary transmitter 1. A thin-walled heat-conducting shell 24 is provided at the bottom of the data auxiliary transmitter 1. An elastic rubber block 26 and a sponge block 25 are fixedly connected inside the thin-walled heat-conducting shell 24. Multiple placement slots 27 are opened on the top of the elastic rubber block 26 and the sponge block 25. A spare interface housing 29 is provided inside one of the placement slots 27, and another non-circular interface 8 is provided inside the spare interface housing 29.
[0037] Specifically, a display screen 2 is fixedly connected to the top of the data auxiliary transmitter 1. Through the cooperation of the internal hardware of the data auxiliary transmitter 1 and the internal software of the display screen 2, functions such as serial port distributor, serial port server, software allocation, data characteristic display, and data transmission between different interfaces are achieved. Multiple USB ports 3, multiple network ports 4, multiple female serial ports 5, and multiple male serial ports 6 are provided on both sides of the data auxiliary transmitter 1. Indicator lights 7 indicate whether the USB ports 3, network ports 4, female serial ports 5, and male serial ports 6 are working properly. This ensures that the data auxiliary transmitter 1 and the display screen 2 are equipped with the most commonly used and universal data transmission interfaces, guaranteeing data transmission between the data auxiliary transmitter 1, the display screen 2, the multiple USB ports 3, the multiple network ports 4, the multiple female serial ports 5, and the multiple male serial ports 6. The auxiliary device's practicality and adaptability meet the needs of most data transmissions. A mounting slot 12 on one side of the data auxiliary transmitter 1 houses a custom-shaped interface 8 that can be quickly installed and disassembled. Multiple spare interface shells 29, identical in structure to the outer shell of the custom-shaped interface 8 but of different models, are prepared inside the thin-walled heat-conducting shell 24. This allows for the installation and disassembly of the custom-shaped interface 8 and different models of spare interface shells 29 within the mounting slot 12, ensuring that the data auxiliary transmitter 1 can meet the needs of some less frequently used spare interface shells 29. Thus, the data transmission auxiliary device, composed of the data auxiliary transmitter 1, display screen 2, multiple USB interfaces 3, multiple network ports 4, multiple female serial ports 5, and male serial ports 6, can meet the needs of some less frequently used data transmission interfaces, ensuring its applicability.
[0038] Please refer to it again. Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 The interface housing 9 is located inside the mounting slot 12. Both irregularly shaped interfaces 8 include irregularly shaped interface connectors 16. The mounting plug 47 is located inside the irregularly shaped interface connector 16. The irregularly shaped interface connector 16 is fixedly connected to the irregularly shaped interface 8. The two irregularly shaped interface connectors 16 pass through the interface housing 9 and the spare interface housing 29 respectively. The mounting plug 47 is electrically connected to the data auxiliary transmitter 1. The indicator light 7 is fixedly connected to the top of the data auxiliary transmitter 1. The two adsorption plates 10 are fixedly connected to both sides of the interface housing 9 respectively. The two interface housings 9 are located on one side of the two electromagnets 15 respectively. The two electromagnets 15 are located on both sides inside the mounting slot 12 and are fixedly connected to the data auxiliary transmitter 1. A rubber sealing plate 14 is fixedly connected between one side of the electromagnet 15 and the data auxiliary transmitter 1. Multiple USB ports 21 and multiple round ports 22 are installed on one side of the data auxiliary transmitter 1. The top of the mounting slot 12 is provided with a movable slot 13, which is located on the top of one side of the data auxiliary transmitter 1. The limiting plate 11 is fixedly connected to the top of the interface housing 9. The limiting plate 11 and the push plate 17 are both located inside the movable slot 13. The rubber insulating block 19 is located on the top of the data auxiliary transmitter 1. The top of the data auxiliary transmitter 1 is provided with a square slot 20. The thin rod 18 is located inside the square slot 20 and is fixedly connected between the rubber insulating block 19 and the push plate 17.
[0039] Specifically, when the data auxiliary transmitter 1 is powered off, the rubber insulating block 19 is pushed, causing the thin rod 18 fixed to the rubber insulating block 19 to move under the limitation of the square groove 20. The moving thin rod 18 drives the push plate 17 to move inside the movable groove 13. The moving push plate 17 pushes the limiting plate 11, causing the interface shell 9 fixed at the bottom of the limiting plate 11 to move the irregular interface 8. The interface shell 9 moves out of the mounting groove 12 by a part. At this time, the limiting plate 11 leaves the movable groove 13. The staff can directly take out the interface shell 9 that has left the mounting groove 12 by a part. The irregular interface 8 and the interface shell 9 can be quickly disassembled from the mounting groove 12, ensuring the efficiency of replacing and disassembling the irregular interface 8.
[0040] It is possible Figure 7As shown, multiple irregularly shaped interfaces 8 of different models are placed inside the thin-walled heat-conducting shell 24, and a spare interface shell 29 with the same model structure as the interface shell 9 is fitted on the outside of the irregularly shaped interface 8. When the irregularly shaped interface 8 is removed from the mounting slot 12, the spare interface shell 29 with the same outer structure as the interface shell 9 can be installed into the mounting slot 12, so that the irregularly shaped interface 8 inside the spare interface shell 29 can be installed into the mounting slot 12, completing the installation and replacement of the irregularly shaped interface 8 on one side of the data auxiliary transmitter 1. Different models of irregularly shaped interfaces 8 can be quickly installed on one side of the data auxiliary transmitter 1, so that the data transmission auxiliary device composed of the data auxiliary transmitter 1, display screen 2, multiple USB interfaces 3, multiple network ports 4, multiple female serial ports 5, multiple male serial ports 6 and other parts can meet the needs of some uncommon data transmission interfaces, improving the practicality of the data transmission auxiliary device.
[0041] Because the outer structure of the spare interface housing 29 is the same as that of the interface housing 9, the installation method of the spare interface housing 29 into the mounting slot 12 is the same as that of the interface housing 9 into the mounting slot 12. When it is necessary to install the irregularly shaped interface 8 into the mounting slot 12, align the limiting plate 11 fixed to the interface housing 9 with the movable slot 13 and push the interface housing 9 so that the interface housing 9 is completely inserted into the mounting slot 12. At this time, the adsorption plate 10 fixed to the interface housing 9 is aligned with the electromagnet 15, and the irregularly shaped interface connector 16 fixed to the irregularly shaped interface 8 will move and fit onto the outside of the mounting plug 47. Subsequently, after the power is turned on to the data auxiliary transmitter 1, the electromagnet 15 fixed to the data auxiliary transmitter 1 will work. The working electromagnet 15 generates magnetic force and is attracted and fixed to the adsorption plate 10, thus fixing the irregularly shaped interface 8 inside the interface housing 9, completing the installation of the irregularly shaped interface 8. When the data auxiliary transmitter 1 is de-energized, the electromagnet 15 stops working. At this time, the interface housing 9 is no longer fixed, and the irregular interface 8 can be disassembled. A rubber sealing plate 14 is fixedly connected between the electromagnet 15 and the data auxiliary transmitter 1 to ensure safety when installing and disassembling the irregular interface 8.
[0042] Please refer to it again. Figure 5 , Figure 7 and Figure 8The bottom of the data auxiliary transmitter 1 is fixedly connected to a heat dissipation mesh plate 23. The thin-walled heat-conducting shell 24 and the data auxiliary transmitter 1 are provided with fixing threaded grooves 33 on both sides. The two fixing threaded grooves 33 of the thin-walled heat-conducting shell 24 are provided with fixing bolts 32. One end of the two fixing bolts 32 extends into the thin-walled heat-conducting shell 24 and is threadedly connected to the thin-walled heat-conducting shell 24. The bottom of the data auxiliary transmitter 1 extends into the thin-walled heat-conducting shell 24 and is located on the top of the two fixing bolts 32. Multiple limiting plates 28 are fixedly connected inside the thin-walled heat-conducting shell 24. A spare limiting plate 30 is fixedly connected to one side of the spare interface shell 29. The spare limiting plate 30 is located inside the placement groove 27 and is adapted to the movable groove 13. The placement groove 27 is convex in shape. The elastic rubber block 26 and the sponge block 25 are fixedly connected inside the thin-walled heat-conducting shell 24 and are located at the bottom of the multiple limiting plates 28. The sponge block 25 is fixedly connected to the top of the elastic rubber block 26.
[0043] Specifically, the spare limiting plate 30 fixed to the spare interface housing 29 is the same as the limiting plate 11 installed on the irregular interface 8, and the irregular interface connector 16 installed on the spare interface housing 29 is in the same position as the irregular interface connector 16 installed on the interface housing 9. This is an external manifestation of the same model structure between the interface housing 9 and the spare interface housing 29.
[0044] A sponge block 25 is fixedly connected inside the thin-walled heat-conducting shell 24. When taking out the spare interface shell 29 inside the placement slot 27, press the sponge block 25 around the spare interface shell 29 directly to make the sponge block 25, which can deform quickly, concave and deform. The spare interface shell 29 can be taken out of the placement slot 27 and the irregular interface 8 inside the spare interface shell 29 can be installed into the square slot 20.
[0045] A fixing bolt 32 is installed inside the fixing threaded groove 33 of the thin-walled heat-conducting shell 24. At this time, one end of the fixing bolt 32 extends into the thin-walled heat-conducting shell 24, so that the fixing bolt 32 supports the data auxiliary transmitter 1 that extends into the thin-walled heat-conducting shell 24. The heat dissipation mesh plate 23 fixed at the bottom of the data auxiliary transmitter 1 discharges hot air into the thin-walled heat-conducting shell 24. The heat is guided out by the thin-walled heat-conducting shell 24, which is made of a material with excellent thermal conductivity. This ensures that the heat dissipation mesh plate 23 is sealed when the data auxiliary transmitter 1 dissipates heat, preventing dust, impurities or moisture from entering the data auxiliary transmitter 1 through the heat dissipation mesh plate 23. This ensures the safety of the data transmission auxiliary device composed of the data auxiliary transmitter 1, display screen 2, multiple USB interfaces 3, multiple network ports 4, multiple female serial ports 5, and multiple male serial ports 6.
[0046] After flipping the thin-walled heat-conducting shell 24 over, it covers the top of the data auxiliary transmitter 1, allowing the shell to be fitted over the outside of the transmitter. A limiting plate 28 is fixedly connected inside the shell. When the shell moves a certain distance outside the transmitter, the limiting plate 28 contacts the transmitter, limiting the shell. At this point, the fixing threaded groove 33 on the shell 24 aligns with the fixing threaded groove 33 on the transmitter. The fixing bolt 32 is then rotated into the corresponding threaded groove 33, completing the installation of the data auxiliary transmitter. The fixing of the thin-walled heat-conducting shell 24 to the data auxiliary transmitter 1 protects the display screen 2 during movement. If there are concerns about the elasticity of the elastic rubber block 26 causing instability in the fixing of the spare interface shell 29, the display screen 2 can be flipped downwards during the movement of the data auxiliary transmitter 1, that is, the display screen 2 can be rotated so that it is located on top of the spare interface shell 29. This ensures the sealing of the data auxiliary transmitter 1 during movement and ensures the safety of the data transmission auxiliary device composed of the data auxiliary transmitter 1, display screen 2, USB interface 3, network port 4, female serial port 5, male serial port 6, indicator light 7, etc., during movement, thereby reducing economic losses.
[0047] Please refer to it again. Figure 2 , Figure 9 , Figure 10 , Figure 11 and Figure 12 On the other side of the data auxiliary transmitter 1, a cable take-up groove 34 is provided. A rubber block 35 is installed inside the cable take-up groove 34 and is fixedly connected to the data auxiliary transmitter 1. The power cord 37 is located inside the cable take-up groove 34. Two vertical rubber plates 36 are sleeved on the outside of the power cord 37 and are fixedly connected to the rubber block 35. A power installation plug 38 is fixedly connected to one end of the power cord 37. The power installation plug 38 has elastic clamps 46 at the top and bottom, and the elastic clamps 46 are fixedly connected to the rubber block 35. The power cord 37 is fixedly connected to a power plug 40 at the other end. A threaded sleeve 39 is fitted on the outside of the power plug 40. An insulating tube is fixedly connected to one side of the threaded sleeve 39. The insulating tube is fixedly fitted on the outside of the power cord 37. A deflecting rod is provided between the power cord 37 and the rubber block 35. Multiple bottom grooves 41 are opened on one side of the rubber block 35. A spare power plug 42 is provided inside each of the multiple bottom grooves 41. A power socket 43 is provided on one side of the spare power plug 42. The power socket 43 is compatible with the power plug 40.
[0048] Specifically, the power cord 37 is pressed sequentially into the vertical rubber plate 36, so that the power cord 37 is supported by the vertical rubber plate 36. Figure 10As shown, the power cord 37 can be stored inside the cable tray 34. After the power cord 37 is pressed into the vertical rubber plate 36, the vertical rubber plate 36, which has elastically deformed and returned to its original shape, applies friction to the power cord 37 to limit and fix its position.
[0049] After pulling the power cord 37 and power plug 38 out of the cable tray 34, select the appropriate spare power plug 42 from the multiple spare power plugs 42 of various models set in the multiple bottom trays 41. Hold the insulating tube and align the power plug 40 with the power socket 43. Rotate the threaded sleeve 39 into the power socket 43 to insert the power plug 40 into the power socket 43, completing the connection between the power cord 37 and the spare power plug 42. Then, insert the threaded sleeve 39 into the device power interface 45 to complete the connection between the power cord 37 and the data auxiliary transmitter 1 and the power supply. This allows for quick selection of the appropriate spare power plug 42 to connect to the power cord 37, ensuring a quick power connection for the data auxiliary transmitter 1. This also ensures the ease of use of the data transmission auxiliary device composed of the data auxiliary transmitter 1, display screen 2, USB interface 3, network port 4, female serial port 5, male serial port 6, indicator light 7, and other components.
Claims
1. A data transmission aid, comprising a data transmission aid (1), a power cord (37), and a device power interface (45), characterized in that: The data auxiliary transmitter (1) has two USB ports (3) and three network ports (4) installed on one side, and three male serial ports (6) and three female serial ports (5) installed on the other side. Each of the USB ports (3), network ports (4), female serial ports (5) and male serial ports (6) is equipped with an indicator light (7) on its top. A display screen (2) is fixedly connected to the top of the data auxiliary transmitter (1). A mounting slot (12) is opened on one side of the data auxiliary transmitter (1). Two irregularly shaped interfaces (8) are provided on the outside of the data auxiliary transmitter (1). An adsorption plate (10), an electromagnet (15), and a mounting plug are provided between one of the irregularly shaped interfaces (8) and the data auxiliary transmitter (1). (47) An interface shell (9) is fixedly fitted on the outside of the irregular interface (8). A limit plate (11), a push plate (17), a thin rod (18) and a rubber insulating block (19) are provided between the interface shell (9) and the data auxiliary transmitter (1). A thin-walled heat-conducting shell (24) is provided at the bottom of the data auxiliary transmitter (1). An elastic rubber block (26) and a sponge block (25) are fixedly connected inside the thin-walled heat-conducting shell (24). Multiple placement slots (27) are opened on the top of the elastic rubber block (26) and the sponge block (25). A spare interface shell (29) is provided inside one of the placement slots (27), and the other irregular interface (8) is fixedly connected inside the spare interface shell (29).
2. The data transmission aid according to claim 1, characterized in that: The interface housing (9) is located inside the mounting slot (12). Both of the irregular interfaces (8) include irregular interface connectors (16). The mounting plug (47) is located inside the irregular interface connector (16). The irregular interface connector (16) is fixedly connected to the irregular interface (8). The two irregular interface connectors (16) pass through the interface housing (9) and the spare interface housing (29) respectively. The mounting plug (47) is electrically connected to the data auxiliary transmitter (1). The indicator light (7) is fixedly connected to the top of the data auxiliary transmitter (1).
3. The data transmission aid according to claim 1, characterized in that: Two adsorption plates (10) are fixedly connected to both sides of the interface housing (9). The two interface housings (9) are respectively set on one side of the two electromagnets (15). The two electromagnets (15) are respectively set on both sides inside the mounting groove (12) and fixedly connected to the data auxiliary transmitter (1). A rubber sealing plate (14) is fixedly connected between one side of the electromagnet (15) and the data auxiliary transmitter (1). Multiple USB ports (21) and multiple circular ports (22) are installed on one side of the data auxiliary transmitter (1).
4. The data transmission aid according to claim 1, characterized in that: The top of the mounting slot (12) is provided with a movable slot (13), which is located on the top of one side of the data auxiliary transmitter (1). The limiting plate (11) is fixedly connected to the top of the interface housing (9). The limiting plate (11) and the push plate (17) are both located inside the movable slot (13). The rubber insulating block (19) is located on the top of the data auxiliary transmitter (1). The top of the data auxiliary transmitter (1) is provided with a square slot (20). The thin rod (18) is located inside the square slot (20). The thin rod (18) is fixedly connected between the rubber insulating block (19) and the push plate (17).
5. The data transmission aid according to claim 1, characterized in that: The bottom of the data auxiliary transmitter (1) is fixedly connected to a heat dissipation mesh plate (23). The thin-walled heat-conducting shell (24) and the data auxiliary transmitter (1) are provided with fixing thread grooves (33). The two fixing thread grooves (33) of the thin-walled heat-conducting shell (24) are provided with fixing bolts (32). One end of the two fixing bolts (32) extends into the thin-walled heat-conducting shell (24) and is threadedly connected to the thin-walled heat-conducting shell (24). The bottom of the data auxiliary transmitter (1) extends into the thin-walled heat-conducting shell (24) and is located on the top of the two fixing bolts (32).
6. The data transmission aid according to claim 1, characterized in that: The thin-walled heat-conducting shell (24) has multiple limiting plates (28) fixedly connected inside. The elastic rubber block (26) and the sponge block (25) are both fixedly connected inside the thin-walled heat-conducting shell (24) and set at the bottom of the multiple limiting plates (28). The sponge block (25) is fixedly connected to the top of the elastic rubber block (26).
7. The data transmission aid according to claim 1, characterized in that: A spare limiting plate (30) is fixedly connected to one side of the spare interface housing (29). The spare limiting plate (30) is set inside the placement groove (27). The spare limiting plate (30) is adapted to the movable groove (13). The placement groove (27) is set in a convex shape.
8. The data transmission aid according to claim 1, characterized in that: The data auxiliary transmitter (1) has a take-up groove (34) on the other side. A rubber block (35) is provided inside the take-up groove (34). The rubber block (35) is fixedly connected to the data auxiliary transmitter (1). The power cord (37) is located inside the take-up groove (34). Two vertical rubber plates (36) are sleeved on the outside of the power cord (37). The vertical rubber plates (36) are fixedly connected to the rubber block (35).
9. The data transmission aid according to claim 8, characterized in that: One end of the power cord (37) is fixedly connected to a power installation plug (38). The power installation plug (38) is provided with elastic clamps (46) at the top and bottom. The elastic clamps (46) are fixedly connected to the rubber block (35). The other end of the power cord (37) is fixedly connected to a power plug (40). The power plug (40) is fitted with a threaded sleeve (39) on the outside. An insulating tube is fixedly connected to one side of the threaded sleeve (39). The insulating tube is fixedly fitted on the outside of the power cord (37). A deflecting rod is provided between the power cord (37) and the rubber block (35).
10. The data transmission aid according to claim 9, characterized in that: The rubber block (35) has multiple bottom grooves (41) on one side, and each of the multiple bottom grooves (41) is equipped with a spare power plug (42). The spare power plug (42) has a power socket (43) on one side, and the power socket (43) is compatible with the power plug (40).
Citation Information
Patent Citations
Universal type function extension supporting base device of intelligent mobile phone
CN103442147A
Portable multifunctional data transmission assist device
CN210742930U