A vehicle-mounted intelligent interconnected data storage and transmission device
By designing an in-vehicle intelligent interconnected data storage and transmission device, the problems of weak and unstable signals are solved, and stable installation, convenient maintenance and function-rich in-vehicle intelligent interconnected equipment are achieved, which improves the convenience of operation and entertainment.
Patent Information
- Application Number
- CN202510830267.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-20
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2045-06-20
AI Technical Summary
The data transmission devices of traditional in-vehicle intelligent interconnected equipment have weak and unstable signal strength, making them difficult to operate, maintain and upgrade conveniently.
A vehicle-mounted intelligent interconnected data storage and transmission device is designed, including an intelligent interconnected body, a touch display body, a transmission body, a connection body, a mounting device, an antenna, and a positioning body. Heat is dissipated through a thermally conductive silicone sheet, and heat is dissipated using a thermal conductive plate and fins. Quick installation and maintenance are achieved through a plug and a pull rod.
It achieves stable installation and convenient maintenance of the transmission body, improves signal strength and stability, enriches the in-vehicle intelligent interconnection functions, and supports convenient physical connection methods for maintenance and upgrades.
Smart Images

Figure CN120358472B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of data transmission technology, and in particular to a vehicle-mounted intelligent interconnected data storage and transmission device. Background Art
[0002] In-vehicle intelligent interconnection is an intelligent control platform established between people, vehicles and background service systems. It integrates many humanized functions such as one-button navigation, off-vehicle navigation, road books, real-time traffic conditions, automatic help when airbags deploy, emergency call and rescue, WIFI hotspot, etc., which greatly improves the convenience and entertainment of driving control.
[0003] When the in-vehicle intelligent interconnection device is in use, because the car is directly controlled by the driver, the in-vehicle intelligent interconnection device needs to provide information to the driver. At this time, the in-vehicle intelligent interconnection device is usually directly set in the middle of the front side of the car. It is inconvenient for the driver to operate the in-vehicle intelligent interconnection during driving. At this time, it is usually operated by the co-pilot because the in-vehicle intelligent interconnection device is on the left side of the co-pilot, and most people are right-handed, which is also inconvenient to operate. At this time, a mobile phone needs to be connected to the in-vehicle intelligent interconnection device and controlled through the mobile phone. The data transmission device of the traditional in-vehicle intelligent interconnection device is directly set in the in-vehicle interconnection device, and its signal strength is relatively weak. In addition, the wireless transmission method is inconvenient to maintain and upgrade because of unstable signals. For this reason, we propose an in-vehicle intelligent interconnection data storage and transmission device to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a vehicle-mounted intelligent interconnected data storage and transmission device to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an in-vehicle intelligent interconnected data storage and transmission device, comprising an intelligent interconnected body, an installation device and a positioning body, wherein a touch display body is installed on the front side of the intelligent interconnected body, a connection body is fixedly connected to the left end of the rear side of the intelligent interconnected body, a slot is provided in the connection body, a mounting device is installed in the slot provided in the connection body, a positioning body is provided on the end of the installation device away from the connection body, a transmission body is installed in the connection body, and an antenna is installed on the rear side of the transmission body.
[0006] Preferably, the transmission body includes a heat-conducting shell, a main board, a memory chip, a control chip, an Internet of Things chip, a copper plate, a heat-conducting silicone sheet, a connecting block and a screw. The heat-conducting shell is fixedly connected to the main board, the front side of the main board is fixedly connected to the memory chips that are evenly distributed, the front side of the main board is fixedly connected to the control chip, the left front end of the main board is fixedly connected to the Internet of Things chip, a copper plate is provided in the front of the heat-conducting shell, the left and right ends of the copper plate are fixedly connected to the connecting blocks, the connecting block is penetrated by a screw threadedly connected to the heat-conducting shell, the rear side of the copper plate is fixedly connected to the heat-conducting silicone sheet, and the rear side of the heat-conducting silicone sheet is tightly fitted with the memory chip, the control chip and the Internet of Things chip.
[0007] Preferably, the mounting device includes a fixed shell, a first heat conducting plate, a heat conducting silicone strip, a heat conducting rod, heat conducting fins, a heat dissipating fin, a mounting body and a plug, a transmission body is installed in the fixed shell, a first heat conducting plate is provided on both left and right sides of the transmission body, a heat conducting silicone strip is fixedly connected to the front side of the first heat conducting plate, heat conducting fins that are evenly distributed are fixedly connected to the rear side of the first heat conducting plate, a heat conducting rod is fixedly connected to the heat conducting fins, the heat conducting rod is S-shaped, both ends of the heat conducting rod are fixedly connected to the fixed shell, both ends of the heat conducting rod arranged on the outside of the fixed shell are fixedly connected to heat dissipating fins that are evenly distributed, a plug is fixedly connected to the left end of the fixed shell, the plug is installed in a slot opened in the connecting body, and the mounting body is installed on the front side of the fixed shell.
[0008] Preferably, the installation body includes a fixing plate, a thermally conductive silicone plate, a thermally conductive strip, a second thermally conductive plate, a rubber ball and a pull rod. The rear side of the fixing plate is fixedly connected to a thermally conductive silicone plate, a thermally conductive strip that is arranged horizontally and evenly distributed longitudinally is fixedly connected inside the thermally conductive silicone plate, the rear side of the thermally conductive strip is fixedly connected to a second thermally conductive plate that is arranged longitudinally and evenly distributed laterally, the rear side of the second thermally conductive plate is tightly fitted with the thermally conductive silicone strip, the upper and lower sides of the fixing plate are fixedly connected to evenly distributed rubber balls, and a positioning body is provided on the outer side of the right end of the fixed shell.
[0009] Preferably, evenly distributed positioning grooves are provided on the upper and lower sides of the fixed shell, the rubber balls are arranged in the positioning grooves of the fixed shell, vertical grooves are provided on the left and right sides of the front side of the fixed shell, and vertically arranged pull rods are fixedly connected to the grooves of the fixed shell.
[0010] Preferably, the front side of the fixing plate is tightly fitted with the smart interconnection body, the rear side of the thermally conductive silicone plate is tightly fitted with the transmission body, and both left and right ends of the rear side of the thermally conductive silicone plate are tightly fitted with the thermally conductive silicone strip.
[0011] Preferably, the positioning body includes a positioning shell, a rubber block, a sliding rod, a limit block, a return spring, a limit body, a mounting plate and a clamping plate, a limit body is provided on the outside of the positioning shell, the limit body is L-shaped, the front end of the limit body is fixedly connected to the smart interconnection body, the right end of the limit body is fixedly connected to the sliding rod, the left end of the sliding rod is fixedly connected to the limit block, a return spring is provided on the outside of the slide rod, the limit block is arranged in the positioning shell, the rear side of the limit block is fixedly connected to the limit body, the end of the fixed shell away from the connecting body is arranged in the positioning shell, a rubber block is arranged in the positioning shell, the left end of the rubber block is tightly fitted with the fixed shell, the front side of the positioning shell is fitted with the smart interconnection body, and the two limit blocks are respectively arranged on the upper and lower sides of the rubber block.
[0012] The top end face of said sliding panel also is provided with an interlock plate, and the interlock plate is fixedly provided with a backing pin of said sliding panel and a backing pin of said sliding panel.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. Through the intelligent interconnection body, touch display body, transmission body, connection body, slot, installation device, antenna and positioning body, the installation device can quickly install the transmission body on the connection body to achieve the installation of the transmission body. At the same time, the positioning body can position the installation device to make the installation of the transmission body more stable.
[0015] 2. Through the provided fixed shell, mainboard, memory chip, control chip, IoT chip, copper plate, thermal conductive silicone sheet, connecting block and screws, the memory chip can store data, system and audio files, etc., making the extraction of locally stored data more stable, making the use of this in-vehicle intelligent interconnection device more stable. Through the IoT chip, it can be connected to the mobile phone and the Internet, making the in-vehicle intelligent interconnection function more abundant. At the same time, the heat generated by the memory chip, control chip and IoT chip can be exported to the installation device under the action of the thermal conductive silicone sheet, and the heat is dissipated through the installation device;
[0016] 3. Through the provision of a fixed shell, a first heat-conducting plate, a heat-conducting silicone strip, a heat-conducting rod, a heat-conducting fin, a heat-dissipating fin, a fixed plate, a heat-conducting silicone plate, a heat-conducting strip, a second heat-conducting plate, a rubber ball, a groove, a pull rod, a positioning slot and a plug, the transmission body can be directly installed in the fixed shell to protect the transmission body. During use, the transmission body caches and stores data through a built-in storage chip. A large amount of heat is generated when data is written and read. The transmission body sends the heat to the heat-conducting silicone plate. At this time, the heat-conducting silicone plate sends the heat to the heat-conducting silicone strip through the heat-conducting strip and the second heat-conducting plate. Then the heat is sent to the heat-dissipating fin through the first heat-conducting plate, the heat-conducting fin and the heat-conducting rod, and finally through the heat-dissipating fin. Dissipate heat to achieve heat dissipation of the transmission body, making the transmission body more stable when in use. When the transmission body needs to be maintained, the fixing plate is directly pulled by the pull rod to remove the fixing plate from the fixing shell. At this time, data can be written into the transmission body by physical connection, and the transmission body can be maintained and upgraded, making the maintenance and upgrade of the transmission body more stable and will not affect the use of the vehicle. After the maintenance is completed, the fixing plate is installed in the fixing shell. At this time, the rubber ball is inserted into the positioning groove opened in the fixing shell to position the fixing plate. After the plug is inserted into the slot opened in the connection body, the fixing plate can be fitted with the smart interconnection body, so that the second heat conducting plate and the heat conducting silicone strip are closely fitted, making the heat transmission more stable.
[0017] 4. Through the provided positioning shell, rubber block, slide bar, limit block, reset spring, positioning plate, card slot, connecting plate, push block, horizontal plate, vertical plate, placement slot, rubber column, first deformation slot, second deformation slot, mounting plate and card plate, the positioning shell can be pushed to be installed on the outside of the fixed shell under the action of the reset spring, so as to install and limit the fixed shell. At this time, the rubber block fits tightly with the fixed shell, making the installation of the fixed shell more stable. When maintaining the transmission body, push the positioning shell to the right, and the positioning shell slides on the outside of the slide bar until the card plate moves to the positioning When the locking plate is at the position of the card slot, the rubber block pushes the card plate to move into the card slot of the positioning plate through the mounting plate. The card plate pushes the push block to move. The push block drives the horizontal plate and the vertical plate to move through the connecting plate. The horizontal plate pushes the rubber column to deform under the action of the first deformation groove, thereby limiting the positioning shell and facilitating the disassembly and installation of the transmission body. After the maintenance of the transmission body is completed, the connecting plate is pushed, and the connecting plate pushes the card plate out of the card slot of the positioning plate through the push block, and then pushes the positioning shell to the outside of the fixed shell. At this time, the positioning shell is prevented from falling off by the limit block. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the present invention after overall assembly;
[0019] Figure 2It is a schematic diagram of the overall rear view structure of the present invention;
[0020] Figure 3 A schematic diagram of the structure of the mutual cooperation between the mounting device and the positioning body in the present invention;
[0021] Figure 4 This is a schematic diagram of the assembly structure of the fixed shell in the present invention;
[0022] Figure 5 Schematic diagram of the transmission main structure in the present invention;
[0023] Figure 6 Schematic diagram of the installation structure of the heat conducting rod in the present invention;
[0024] Figure 7 It is a structural diagram of the installation body in the present invention;
[0025] Figure 8 Schematic diagram of the matching structure of the heat conducting strip and the heat conducting rod in the present invention;
[0026] Figure 9 It is a structural schematic diagram of the positioning body in the present invention;
[0027] Figure 10 It is a side view structural diagram of the positioning body in the present invention;
[0028] Figure 11 This is a schematic diagram of the installation structure of the card board in the present invention;
[0029] Figure 12 Schematic diagram of the structure of the limiting body in the present invention;
[0030] Figure 13 This is a schematic diagram of the installation structure of the rubber column in the present invention.
[0031] In the figure: 1. Smart interconnection body; 2. Touch display body; 3. Transmission body; 31. Heat-conducting shell; 32. Main board; 33. Storage chip; 34. Control chip; 35. Internet of Things chip; 36. Copper plate; 37. Heat-conducting silicone sheet; 38. Connecting block; 39. Screw; 4. Connecting body; 5. Slot; 6. Mounting device; 61. Fixed shell; 62. First heat-conducting plate; 63. Heat-conducting silicone strip; 64. Heat-conducting rod; 65. Heat-conducting fin; 66. Heat dissipation fin; 67. Mounting body; 671. Fixed plate; 672. Heat-conducting silicone sheet; 673. Heat-conducting Strip; 674, second heat conduction plate; 675, rubber ball; 676, groove; 677, pull rod; 68, positioning groove; 69, plug; 7, antenna; 8, positioning body; 81, positioning shell; 82, rubber block; 83, slide bar; 84, limit block; 85, reset spring; 86, limit body; 861, positioning plate; 862, card slot; 863, connecting plate; 864, push block; 865, horizontal plate; 866, vertical plate; 867, placement slot; 868, rubber column; 869, first deformation slot; 87, second deformation slot; 88, mounting plate; 89, card plate. DETAILED DESCRIPTION
[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0033] See also Figures 1 to 13 In an embodiment of the present invention, an in-vehicle intelligent interconnected data storage and transmission device includes an intelligent interconnected main body 1, an installation device 6 and a positioning main body 8. A touch display main body 2 is installed on the front side of the intelligent interconnected main body 1, and a connecting main body 4 is fixedly connected to the left end of the rear side of the intelligent interconnected main body 1. A slot 5 is opened in the connecting main body 4, and an installation device 6 is installed in the slot 5 opened in the connecting main body 4. A positioning main body 8 is provided at the end of the installation device 6 away from the connecting main body 4. A transmission main body 3 is installed in the connecting main body 4, and an antenna 7 is installed on the rear side of the transmission main body 3. Through this arrangement, the installation device 6 can quickly install the transmission main body 3 on the connecting main body 4 to realize the installation of the transmission main body 3. At the same time, the positioning main body 8 can position the installation device 6, so that the installation of the transmission main body 3 is more stable.
[0034] As a further embodiment of the above invention: the transmission body 3 includes a heat-conducting shell 31, a main board 32, a memory chip 33, a control chip 34, an Internet of Things chip 35, a copper plate 36, a heat-conducting silicone sheet 37, a connecting block 38 and a screw 39. The heat-conducting shell 31 is fixedly connected to the main board 32. The front side of the main board 32 is fixedly connected to the memory chips 33 that are evenly distributed. The front side of the main board 32 is fixedly connected to the control chip 34. The Internet of Things chip 35 is fixedly connected to the left end of the front side of the main board 32, and a copper plate 36 is provided in the front of the heat-conducting shell 31. The left and right ends of the copper plate 36 are fixedly connected to the connecting blocks 38. Screws 39 threadedly connected to the heat-conducting shell 31 are provided through the connecting blocks 38. A thermally conductive silicone sheet 37 is fixedly connected to the rear side of the copper plate 36. The rear side of the thermally conductive silicone sheet 37 is tightly fitted with the storage chip 33, the control chip 34 and the Internet of Things chip 35. Through this setting, the storage chip 33 can store data, system and audio files, etc., and the extraction of locally stored data is more stable, making the use of this in-vehicle intelligent interconnected device more stable. Through the Internet of Things chip 35, it can be connected to a mobile phone and can be connected to the Internet, making the functions of the in-vehicle intelligent interconnection richer. At the same time, under the action of the thermally conductive silicone sheet 37, the heat generated by the storage chip 33, the control chip 34 and the Internet of Things chip 35 can be exported to the installation device 6, and the heat is dissipated through the installation device 6.
[0035] As a further embodiment of the above invention: the installation device 6 includes a fixed shell 61, a first heat conducting plate 62, a heat conducting silicone strip 63, a heat conducting rod 64, heat conducting fins 65, heat dissipation fins 66, a mounting body 67 and a plug 69, a transmission body 3 is installed in the fixed shell 61, and a first heat conducting plate 62 is provided on both sides of the transmission body 3. The front side of the first heat conducting plate 62 is fixedly connected to the heat conducting silicone strip 63, and the rear side of the first heat conducting plate 62 is fixedly connected to the heat conducting fins 65 that are evenly distributed. The heat conducting rod 64 is fixedly connected to the heat conducting fins 65, and the heat conducting rod 64 is arranged in an S shape. Both ends of the heat conducting rod 64 are fixedly connected to the fixed shell 61, and both ends of the heat conducting rod 64 arranged on the outside of the fixed shell 61 are fixedly connected to the heat dissipation fins 66 that are evenly distributed. 1 is fixedly connected to the left end with a plug 69, which is installed in the slot 5 provided in the connecting body 4. The front side of the fixed shell 61 is installed with a mounting body 67, which includes a fixing plate 671, a heat-conducting silicone plate 672, a heat-conducting strip 673, a second heat-conducting plate 674, a rubber ball 675 and a pull rod 677. The rear side of the fixing plate 671 is fixedly connected to the heat-conducting silicone plate 672, and the heat-conducting strip 673 arranged horizontally and evenly distributed in the longitudinal direction is fixedly connected to the heat-conducting silicone plate 672. The rear side of the heat-conducting strip 673 is fixedly connected to the second heat-conducting plate 674 arranged vertically and evenly distributed in the transverse direction. The rear side of the second heat-conducting plate 674 is tightly fitted with the heat-conducting silicone strip 63. The upper and lower sides of the fixing plate 671 are fixedly connected to the rubber balls 675 evenly distributed. The fixing shell A positioning body 8 is provided on the outside of the right end of 61, and positioning grooves 68 are evenly distributed on the upper and lower sides of the fixed shell 61. The rubber ball 675 is set in the positioning groove 68 opened in the fixed shell 61. Vertical grooves 676 are opened on the left and right sides of the front side of the fixed shell 61. A vertical pull rod 677 is fixedly connected in the groove 676 opened in the fixed shell 61. The front side of the fixed plate 671 is tightly fitted with the smart interconnection main body 1, and the rear side of the thermal conductive silicone plate 672 is tightly fitted with the transmission main body 3. The left and right ends of the rear side of the thermal conductive silicone plate 672 are tightly fitted with the thermal conductive silicone strip 63. Through this arrangement, the transmission main body 3 can be directly installed in the fixed shell 61 to protect the transmission main body 3. During use, the transmission main body 3 sends heat to the thermal conductive silicone plate 672. Silicone plate 672, at this time, the heat-conducting silicone plate 672 sends heat to the heat-conducting silicone strip 63 through the heat-conducting strip 673 and the second heat-conducting plate 674, and then the heat is sent to the heat dissipation fins 66 through the first heat-conducting plate 62, the heat-conducting fins 65 and the heat-conducting rod 64, and finally dissipated through the heat dissipation fins 66, thereby realizing the heat dissipation of the transmission body 3, making the transmission body 3 more stable when in use. When the transmission body 3 needs to be maintained, the fixing plate 671 is directly pulled by the pull rod 677 to remove the fixing plate 671 from the fixed shell 61. At this time, the transmission body 3 can be maintained. After the maintenance is completed, the fixing plate 671 is installed in the fixed shell 61. At this time, the rubber ball 675 is stuck in the positioning groove 68 opened in the fixed shell 61 to position the fixing plate 671.After the plug 69 is inserted into the slot 5 provided in the connecting body 4, the fixing plate 671 can fit with the intelligent interconnection body 1, so that the second heat conducting plate 674 fits tightly with the heat conducting silicone strip 63, making the heat transfer more stable.
[0036] As a further implementation scheme of the above invention: the positioning body 8 includes a positioning shell 81, a rubber block 82, a slide bar 83, a limit block 84, a return spring 85, a limit body 86, a mounting plate 88 and a card plate 89. A limit body 86 is provided on the outside of the positioning shell 81. The limit body 86 is L-shaped. The front end of the limit body 86 is fixedly connected to the smart interconnection body 1. The right end of the limit body 86 is fixedly connected to the slide bar 83. The left end of the slide bar 83 is fixedly connected to the limit block 84. A return spring 85 is provided on the outside of the slide bar 83. The limit block 84 is arranged in the positioning shell 81. The rear side of the limit block 84 is fixedly connected to the limit body 86. The end of the fixed shell 61 away from the connecting body 4 is arranged in the positioning shell 81. The rubber block 82 is arranged in the positioning shell 81. The rubber block 8 2 The left end is tightly fitted with the fixed shell 61, the front side of the positioning shell 81 is fitted with the smart interconnection main body 1, two limit blocks 84 are respectively arranged on the upper and lower sides of the rubber block 82, the limit body 86 includes a positioning plate 861, a connecting plate 863, a push block 864, a horizontal plate 865, a vertical plate 866 and a rubber column 868, a card slot 862 is opened in the positioning plate 861, a push block 864 is set in the card slot 862 opened in the positioning plate 861, the rear side of the push block 864 is fixedly connected to the connecting plate 863, the connecting plate 863 is set in the positioning plate 861, a horizontal plate 865 is set on one side of the push block 864, the front end of the horizontal plate 865 is fixedly connected to the vertical plate 866, the rear side of the horizontal plate 865 is fixedly connected to the connecting plate 863, the card slot 862 opened in the positioning plate 861 is positioned The upper and lower sides of the rubber column 868 are provided with placement grooves 867, and the first deformation grooves 869 arranged horizontally and evenly distributed are provided in the rubber column 868. The horizontal plate 865, the vertical plate 866 and the rubber column 868 are all arranged in the placement groove 867 provided in the positioning plate 861. The front side of the rubber block 82 is provided with a second deformation groove 87 arranged horizontally and evenly distributed. The rear side of the rubber block 82 is fixedly connected to a vertically arranged mounting plate 88, and the rear side of the mounting plate 88 is fixedly connected to a clamping plate 89. The side of the clamping plate 89 away from the mounting plate 88 is provided in the positioning shell 81, and the clamping grooves 862 provided in the clamping plate 89 and the positioning plate 861 are arranged corresponding to each other. Through this arrangement, the positioning shell 81 can be pushed to be installed on the outside of the fixed shell 61 under the action of the reset spring 85, so as to fix The fixed shell 61 is installed and limited. At this time, the rubber block 82 fits tightly with the fixed shell 61, making the installation of the fixed shell 61 more stable. When maintaining the transmission body 3, the positioning shell 81 is pushed to the right, and the positioning shell 81 slides on the outside of the slide rod 83 until the card plate 89 moves to the position of the card slot 862 opened by the positioning plate 861. At this time, the rubber block 82 pushes the card plate 89 to move into the card slot 862 opened by the positioning plate 861 through the installation plate 88. The card plate 89 pushes the push block 864 to move. The push block 864 drives the horizontal plate 865 and the vertical plate 866 to move through the connecting plate 863. The horizontal plate 865 pushes the rubber column 868 to deform under the action of the first deformation groove 869, thereby limiting the positioning shell 81 and facilitating the disassembly and installation of the transmission body 3.After the maintenance of the transmission body 3 is completed, the connecting plate 863 is pushed. The connecting plate 863 pushes the card plate 89 out of the card slot 862 opened by the positioning plate 861 through the push block 864, and then pushes the positioning shell 81 to move to the outside of the fixed shell 61. At this time, the positioning shell 81 is prevented from falling off by the limit block 84.
[0037] During specific implementation: When using this vehicle-mounted intelligent interconnected data storage and transmission device, first install the intelligent interconnected main body 1 on the car through the external base, and then connect the intelligent interconnected main body 1 to the car's power supply and audio equipment through wires. At this time, the current and data are transmitted to the main board 32 through the slot 5, plug 69 and fixed shell 61 provided by the connecting main body 4. The Internet of Things chip 35 provided on the main board 32 can receive or send signals through wires and antenna 7. At this time, the mobile phone is connected to the intelligent interconnected main body 1, and then the mobile phone can input information into the intelligent interconnected main body 1 through wireless transmission. During the data transmission process of the storage chip 33 in the main board 32, a large amount of data is frequently exchanged, which will cause the storage chip 33, the control chip 34 and A large amount of heat is generated in the Internet of Things chip 35. At this time, the heat is transferred to the copper plate 36 through the thermally conductive silicone sheet 37, and the heat on the left and right sides of the heat-conducting shell 31 is transferred to the first heat-conducting plate 62 and the heat-conducting fins 65 through the air. At the same time, the heat on the front side of the copper plate 36 is introduced into the heat-conducting bar 673 through the thermally conductive silicone plate 672. Then, the heat-conducting bar 673 is introduced into the first heat-conducting plate 62 through the second heat-conducting plate 674 and the thermally conductive silicone strip 63. The heat is sent to the heat-conducting fins 65 through the first heat-conducting plate 62. Then, the heat-conducting fins 65 send the heat to the heat-conducting rod 64. The heat-conducting rod 64 sends the heat to the heat dissipation fins 66. The heat dissipation fins 66 diffuse the heat into the air, thereby dissipating the heat of the transmission body 3 and making the transmission body 3 more stable to use. When the transmission body 3 needs maintenance, the positioning shell 81 is pushed to the right, and the positioning shell 81 slides on the outside of the slide rod 83. At this time, the return spring 85 is compressed until the card plate 89 corresponds to the card slot 862 opened in the positioning plate 861. Then, the rubber block 82 pushes the card plate 89 into the card slot 862 opened in the positioning plate 861 through the mounting plate 88 under the action of its own elasticity. At this time, the pushing block 864 pushes the connecting plate 863 to move backward, and the connecting plate 863 drives the vertical plate 866 through the horizontal plate 865. The vertical plate 866 pushes the rubber block 82 to deform under the action of the first deformation groove 869. At this time, the card plate 89 is set in the card slot 862 opened in the positioning plate 861, thereby limiting the positioning shell 81. Then, the fixed shell 61 is pushed to the right to fix it. The shell 61 drives the plug 69 to leave the slot 5 opened in the connecting body 4, and then drives the fixing plate 671 to move through the pull rod 677, and the fixing plate 671 drives the rubber ball 675 to leave the positioning groove 68 opened in the fixing shell 61, and then the transmission body 3 can be maintained. After the maintenance is completed, the fixing plate 671 is put back into the fixing shell 61. At this time, the rubber ball 675 is stuck in the positioning groove 68 opened in the fixing shell 61 to position the fixing plate 671. Then, the plug 69 is inserted into the slot 5 opened in the connecting body 4 and the connecting plate 863 is pushed. The connecting plate 863 pushes the card plate 89 out of the card slot 862 opened in the positioning plate 861 through the push block 864. At this time, the positioning shell 81 is pushed to the left, and the elastic force of the reset spring 85 assists the positioning shell 81 to reset.Until the rubber block 82 contacts the fixed shell 61, the elastic force of the return spring 85 pushes the rubber block 82 in the positioning shell 81 to fit tightly with the fixed shell 61, making the installation of the fixed shell 61 and the transmission body 3 more stable.
[0038] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A vehicle-mounted intelligent interconnected data storage and transmission device, comprising an intelligent interconnected body (1), a mounting device (6) and a positioning body (8), characterized in that: The front side of the intelligent interconnection main body (1) is provided with a touch display main body (2), the left end of the rear side of the intelligent interconnection main body (1) is fixedly connected with a connection main body (4), a slot (5) is provided in the connection main body (4), a mounting device (6) is installed in the slot (5) provided in the connection main body (4), a positioning main body (8) is provided at one end of the mounting device (6) away from the connection main body (4), a transmission main body (3) is installed in the connection main body (4), and an antenna (7) is installed on the rear side of the transmission main body (3); The transmission body (3) comprises a heat-conducting shell (31), a mainboard (32), a memory chip (33), a control chip (34), an Internet of Things chip (35), a copper plate (36), a heat-conducting silicone sheet (37), a connecting block (38) and a screw (39); the heat-conducting shell (31) is fixedly connected to the mainboard (32); the front side of the mainboard (32) is fixedly connected to the memory chips (33) that are evenly distributed; the front side of the mainboard (32) is fixedly connected to the control chip (34); The left end of the front side of the mainboard (32) is fixedly connected to an Internet of Things chip (35); a copper plate (36) is provided in the front of the heat-conducting shell (31); both left and right ends of the copper plate (36) are fixedly connected to connecting blocks (38); screws (39) threadedly connected to the heat-conducting shell (31) are provided through the connecting blocks (38); a heat-conducting silicone sheet (37) is fixedly connected to the rear side of the copper plate (36); the rear side of the heat-conducting silicone sheet (37) is tightly fitted with the storage chip (33), the control chip (34) and the Internet of Things chip (35); The mounting device (6) comprises a fixed shell (61), a first heat conducting plate (62), a heat conducting silicone strip (63), a heat conducting rod (64), heat conducting fins (65), heat dissipating fins (66), a mounting body (67) and a plug (69); a transmission body (3) is mounted in the fixed shell (61); first heat conducting plates (62) are provided on both left and right sides of the transmission body (3); a heat conducting silicone strip (63) is fixedly connected to the front side of the first heat conducting plate (62); and heat conducting fins (65) are fixedly connected to the rear side of the first heat conducting plate (62) in a uniformly distributed manner. 65), a heat-conducting rod (64) is fixedly connected inside the heat-conducting fin (65), the heat-conducting rod (64) is arranged in an S-shape, and both ends of the heat-conducting rod (64) are fixedly connected to the fixed shell (61), and both ends of the heat-conducting rod (64) arranged on the outside of the fixed shell (61) are fixedly connected to heat-dissipating fins (66) that are evenly distributed, and a plug (69) is fixedly connected to the left end of the fixed shell (61), and the plug (69) is installed in the slot (5) opened by the connecting body (4), and the front side of the fixed shell (61) is installed with a mounting body (67); The positioning body (8) includes a positioning shell (81), a rubber block (82), a slide bar (83), a limit block (84), a return spring (85), a limit body (86), a mounting plate (88) and a clamping plate (89). A limit body (86) is provided on the outside of the positioning shell (81). The limit body (86) is L-shaped. The front end of the limit body (86) is fixedly connected to the intelligent interconnection body (1). The right end of the limit body (86) is fixedly connected to the slide bar (83). The left end of the slide bar (83) is fixedly connected to the limit block (84). The slide bar ( A return spring (85) is provided on the outside of the positioning shell (83), the limiting block (84) is arranged in the positioning shell (81), the rear side of the limiting block (84) is fixedly connected to the limiting body (86), the end of the fixed shell (61) away from the connecting body (4) is arranged in the positioning shell (81), a rubber block (82) is arranged in the positioning shell (81), the left end of the rubber block (82) is tightly fitted with the fixed shell (61), the front side of the positioning shell (81) is fitted with the intelligent interconnection body (1), and the two limiting blocks (84) are respectively arranged on the upper and lower sides of the rubber block (82).
2. The vehicle-mounted intelligent interconnected data storage and transmission device according to claim 1, characterized in that: The installation body (67) includes a fixed plate (671), a heat-conducting silicone plate (672), a heat-conducting strip (673), a second heat-conducting plate (674), a rubber ball (675) and a pull rod (677). The rear side of the fixed plate (671) is fixedly connected to the heat-conducting silicone plate (672). The heat-conducting silicone plate (672) is fixedly connected to a heat-conducting strip (673) that is arranged transversely and evenly distributed longitudinally. The rear side of the heat-conducting strip (673) is fixedly connected to a second heat-conducting plate (674) that is arranged longitudinally and evenly distributed transversely. The rear side of the second heat-conducting plate (674) is tightly fitted with the heat-conducting silicone strip (63). The upper and lower sides of the fixed plate (671) are fixedly connected to rubber balls (675) that are evenly distributed. A positioning body (8) is provided on the outer side of the right end of the fixed shell (61).
3. The vehicle-mounted intelligent interconnected data storage and transmission device according to claim 2, characterized in that: The fixed shell (61) is provided with evenly distributed positioning grooves (68) on both upper and lower sides. The rubber ball (675) is arranged in the positioning groove (68) provided in the fixed shell (61). The fixed shell (61) is provided with vertically arranged grooves (676) on both left and right sides of the front side. A vertically arranged pull rod (677) is fixedly connected in the groove (676) provided in the fixed shell (61).
4. The vehicle-mounted intelligent interconnected data storage and transmission device according to claim 2, characterized in that: The front side of the fixing plate (671) is tightly fitted with the intelligent interconnection main body (1), the rear side of the thermal conductive silicone plate (672) is tightly fitted with the transmission main body (3), and both left and right ends of the rear side of the thermal conductive silicone plate (672) are tightly fitted with the thermal conductive silicone strip (63).
5. The vehicle-mounted intelligent interconnected data storage and transmission device according to claim 1, characterized in that: The limiting body (86) includes a positioning plate (861), a connecting plate (863), a push block (864), a horizontal plate (865), a vertical plate (866) and a rubber column (868). A slot (862) is provided in the positioning plate (861). A push block (864) is provided in the slot (862) provided in the positioning plate (861). The rear side of the push block (864) is fixedly connected to the connecting plate (863). The connecting plate (863) is provided in the positioning plate (861). A horizontal plate (865) is provided on one side of the push block (864). The front end of the horizontal plate (865) is fixedly connected to the vertical plate (866). The rear side of the horizontal plate (865) is fixedly connected to the connecting plate (863). The slot (862) provided in the positioning plate (861) is located at the position of the push block (864). Both the upper and lower sides are provided with placement grooves (867), the rubber column (868) is provided with a first deformation groove (869) which is arranged horizontally and evenly distributed, the horizontal plate (865), the vertical plate (866) and the rubber column (868) are all arranged in the placement groove (867) provided by the positioning plate (861), the front side of the rubber block (82) is provided with a second deformation groove (87) which is arranged horizontally and evenly distributed, the rear side of the rubber block (82) is fixedly connected with a vertically arranged mounting plate (88), the rear side of the mounting plate (88) is fixedly connected with a clamping plate (89), the side of the clamping plate (89) away from the mounting plate (88) is provided in the positioning shell (81), and the clamping plate (89) and the clamping groove (862) provided by the positioning plate (861) are arranged corresponding to each other.
Citation Information
Patent Citations
Suspension type automobile central control vehicle machine navigation equipment
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