GIS additional module installation assembly
By designing GIS add-on module installation components, the problems of inconvenient disassembly and assembly and increased heat in existing technologies have been solved, achieving convenient disassembly and assembly and efficient heat dissipation, thereby enhancing structural protection and stability.
Patent Information
- Application Number
- CN202422893258.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-26
AI Technical Summary
The existing GIS add-on modules are directly soldered to the surface of the circuit board, resulting in a lack of structural protection, increased heat conduction, inconvenient disassembly and assembly, and affecting maintenance operations.
A GIS add-on module installation assembly was designed, including a GIS add-on module, a base assembly, and an outer frame assembly. It adopts an anti-static coating, a heat dissipation shell, connecting pins, and thermally conductive materials to achieve modular installation and quick disassembly, and provides effective heat dissipation protection through heat dissipation fins and heat-conducting plates.
It enables convenient disassembly, assembly, and maintenance of GIS add-on modules, reduces heat load, improves structural stability and heat dissipation efficiency, and avoids electromagnetic and electrostatic interference.
Smart Images

Figure CN223553642U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of Eagle Eye equipment technology, specifically a GIS add-on module installation component. Background Technology
[0002] Eagle Eye is a monitoring system that integrates multiple high-tech functions and is widely used in various fields, such as unmanned reconnaissance aircraft systems, AR panoramic monitoring systems, individual soldier video monitoring equipment, panoramic cameras, and the Eagle Eye system in tennis matches.
[0003] The Eagle Eye device contains GIS add-on modules, which are a series of extended modules and add-ons provided by ArcGIS software. These modules and add-ons can enhance the functionality of ArcGIS, making it more powerful and flexible in data processing, spatial analysis, and 3D visualization.
[0004] Conventional GIS add-on modules are directly soldered to the surface of the circuit board. This results in a lack of structural protection during operation, and the heat generated during operation is directly conducted to the surface of the circuit board, increasing the heat load on the circuit board. In addition, the disassembly and assembly of the GIS add-on module itself and the circuit board is relatively inconvenient, which has a certain impact on maintenance operations.
[0005] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed a GIS add-on module installation component. Utility Model Content
[0006] The purpose of this invention is to provide a GIS add-on module installation component to solve the problems mentioned in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a GIS add-on module installation component, comprising a GIS add-on module component and a base component. The base component is fitted to the bottom of the GIS add-on module component, and an outer frame component is provided around the outside of the GIS add-on module component. Both the base component and the outer frame component are coated with an anti-static coating. The GIS add-on module component includes a GIS add-on module body, a heat sink, a plug ring, a connecting pin, and an anti-interference coating. The heat sink is installed on the outside of the GIS add-on module body, and a plug ring is connected to the bottom surface of the heat sink. A connecting pin is provided on the side of the plug ring near the vertical central axis of the heat sink. The surface of the heat sink is coated with an anti-interference coating.
[0008] Furthermore, the insertion ring and the heat sink are integrated into one structure, and the connecting pins are vertically installed at the four opposite corners of the bottom of the heat sink, and the connecting pins are electrically connected to the main body of the GIS add-on module.
[0009] Furthermore, the base assembly includes a fixed seat, a welding piece, a docking post, a mounting groove, a connecting groove, and a docking hole. The bottom surface of the fixed seat is equipped with a welding piece, and the left and right ends of the fixed seat are symmetrically provided with docking posts. The top surface of the fixed seat is provided with a mounting groove, and the bottom surface inside the mounting groove is provided with a connecting groove. At the same time, the connecting groove is provided with a docking hole on the side near the vertical central axis of the fixed seat.
[0010] Furthermore, the docking pile and the fixing seat are integrated into one structure, and the fixing seat is made of a material with high thermal conductivity.
[0011] Furthermore, the inner surface structure of the mounting groove matches the bottom surface structure of the heat sink, and the inner surface structures of the connecting groove and the mating hole match the outer surface structures of the insert ring and the connecting pin, respectively.
[0012] Furthermore, the outer frame assembly includes a protective frame, a first heat dissipation hole, a second heat dissipation hole, heat dissipation fins, a heat-conducting plate, and fixing buckles. The top surface and the front and rear side surfaces of the protective frame are respectively provided with the first heat dissipation hole and the second heat dissipation hole. Heat dissipation fins are installed at the lower ends of the front and rear sides of the protective frame, and the bottom of the heat dissipation fins is connected to the heat-conducting plate. Fixing buckles are installed at both ends of the heat-conducting plate.
[0013] Furthermore, the heat dissipation fins are fixedly connected to the protective frame, and the heat conduction plate and the heat dissipation fins are made of the same material. Moreover, the inner surface structure of the heat conduction plate matches the outer surface structure of the heat dissipation shell.
[0014] Furthermore, the docking pile has a slot structure inside that matches the lower surface structure of the fixing buckle, and the fixing buckle is fixedly connected to the heat-conducting plate.
[0015] This utility model provides a GIS add-on module installation component, which has the following beneficial effects:
[0016] 1. This utility model, by installing connecting pins at the bottom of the heat sink housing and electrically connecting them to the internal GIS add-on module body, and cooperating with the mating holes on the top surface of the fixing base, allows for quick docking simply by aligning the connecting pins vertically with the mating holes. This also allows for the insertion of the ring and connecting groove structure on the bottom surface of the heat sink housing. Using this structure, on the one hand, modularization of the GIS add-on module component and the base component can be achieved, facilitating convenient assembly and disassembly and ensuring structural flexibility. On the other hand, by soldering the base component to the circuit board, the connection flexibility between the base component and the circuit board can be ensured, facilitating maintenance of the GIS add-on module component. Furthermore, with the heat sink housing embedded in the mounting groove at the bottom, and the fixing base made of high thermal conductivity material, effective heat conduction can be provided for the GIS add-on module component, playing a role in heat dissipation.
[0017] 2. This utility model features an outer frame assembly. The outer frame is secured to the base by fasteners at both ends of a heat-conducting plate at the bottom of the protective frame, which are vertically aligned with the anchor piles at the left and right ends of the base. This fastener structure allows for quick connection and disassembly of the outer frame assembly and base assembly while ensuring structural stability. This provides a degree of structural protection for the GIS add-on module assembly. Furthermore, the first and second heat dissipation holes on the top surface and front and rear sides of the protective frame effectively provide heat dissipation space for the internal GIS add-on module assembly, preventing heat blockage. Additionally, by attaching the heat-conducting plate to the edge of the top surface of the base and using heat dissipation fins, the entire outer frame assembly provides structural protection for the GIS add-on module assembly while also effectively dissipating heat, preventing the GIS add-on module assembly from operating normally due to high temperatures. Attached Figure Description
[0018] Figure 1 This is an exploded structural diagram of the main body of a GIS add-on module installation component according to the present invention;
[0019] Figure 2 This is a schematic diagram of the GIS add-on module component structure of the present invention.
[0020] Figure 3 This is a three-dimensional structural diagram of the base component of a GIS add-on module installation component according to the present invention;
[0021] Figure 4 This is a three-dimensional structural diagram of the outer frame component of a GIS add-on module installation component according to this utility model.
[0022] In the diagram: 1. GIS add-on module component; 101. GIS add-on module body; 102. Heat sink; 103. Insert ring; 104. Connecting pin; 105. Anti-interference coating; 2. Base assembly; 201. Fixing base; 202. Welding piece; 203. Connecting post; 204. Mounting groove; 205. Connecting groove; 206. Connecting hole; 3. Outer frame assembly; 301. Protective frame; 302. First heat dissipation hole; 303. Second heat dissipation hole; 304. Heat dissipation fins; 305. Heat conduction plate; 306. Fixing buckle; 4. Anti-static coating. Detailed Implementation
[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0024] like Figures 1 to 4 As shown, a GIS add-on module mounting assembly includes a GIS add-on module assembly 1 and a base assembly 2. The base assembly 2 is attached to the bottom of the GIS add-on module assembly 1, and an outer frame assembly 3 is provided around the outside of the GIS add-on module assembly 1. Both the base assembly 2 and the outer frame assembly 3 are coated with an antistatic coating 4. The GIS add-on module assembly 1 includes a GIS add-on module body 101, a heat sink 102, a plug ring 103, a connecting pin 104, and an anti-interference coating 105. The heat sink 102 is mounted on the outside of the GIS add-on module body 101, and the plug ring 103 is connected to the bottom surface of the heat sink 102. The connecting pin 104 is provided on the side of the plug ring 103 near the vertical central axis of the heat sink 102, and the surface of the heat sink 102 is coated with an anti-interference coating 105. The plug ring 103 and the heat sink 102 are integrally formed, and the connecting pin 104 is vertically mounted. The base assembly 2 includes a fixed base 201, a welding piece 202, a docking post 203, a mounting groove 204, a connecting groove 205, and a docking hole 206. The welding piece 202 is installed on the bottom surface of the fixed base 201, and the docking post 203 is symmetrically arranged at the left and right ends of the fixed base 201. The mounting groove 204 is opened on the top surface of the fixed base 201, and the connecting groove 205 is opened on the inner bottom surface of the mounting groove 204. At the same time, the docking hole 206 is opened on the side of the connecting groove 205 near the vertical central axis of the fixed base 201. The connection pin 104 can be quickly connected by aligning it with the docking hole 206 in the vertical direction. This also allows the insertion ring 103 on the bottom surface of the heat sink 102 to be inserted into the connecting groove 205.
[0025] like Figures 1 to 4As shown, the docking pile 203 and the fixing seat 201 are integrally structured. The fixing seat 201 is made of a high thermal conductivity material. The inner surface structure of the mounting groove 204 matches the bottom surface structure of the heat sink 102. The inner surface structures of the connecting groove 205 and the docking hole 206 match the outer surface structures of the insert ring 103 and the connecting pin 104, respectively. The outer frame assembly 3 includes a protective frame 301, a first heat dissipation hole 302, a second heat dissipation hole 303, heat dissipation fins 304, a heat-conducting plate 305, and a fixing buckle 306. The top surface and the front and rear side surfaces of the protective frame 301 are respectively provided with the first heat dissipation hole 302 and the second heat dissipation hole 303. Heat dissipation fins 304 are installed at the lower ends of the front and rear sides of the protective frame 301. The bottom of the heat dissipation fins 304 is connected to the heat-conducting plate 305. Both ends of 305 are equipped with fixing buckles 306, and the heat dissipation fins 304 are fixedly connected to the protective frame 301. The heat conduction plate 305 and the heat dissipation fins 304 are made of the same material. Moreover, the inner surface structure of the heat conduction plate 305 matches the outer surface structure of the heat dissipation shell 102. The inside of the docking post 203 is provided with a slot structure that matches the lower surface structure of the fixing buckle 306. The fixing buckle 306 is fixedly connected to the heat conduction plate 305. By using the fixing buckles 306 at both ends of the heat conduction plate 305 at the bottom of the protective frame 301, the structure of the docking posts 203 at both ends of the fixing base 201 is inserted in the vertical direction. By using the buckle structure between the two, the outer frame assembly 3 can be quickly connected or disassembled with the base assembly 2, while ensuring the stability of the structure after connection.
[0026] In summary, as Figures 1 to 4 As shown, when using the GIS add-on module installation assembly, firstly, the entire base assembly 2 is soldered to the circuit board using the welding piece 202 on the bottom surface of the fixing seat 201. Then, the entire GIS add-on module assembly 1 is inserted and connected to the connecting groove 205 and the docking hole 206 in the vertical direction using the insertion ring 103 and connecting pin 104 at the bottom of the heat sink 102. Finally, the heat sink 102, which houses the GIS add-on module body 101, is embedded into the installation groove 204 opened on the top surface of the fixing seat 201.
[0027] Then, the entire outer frame assembly 3 is inserted vertically into the docking post 203 at one end of the fixing base 201 using the fixing buckles 306 at both ends of the heat conduction plate 305. The buckle structure between them connects and fixes the outer frame assembly 3 and the base assembly 2. As the GIS add-on module assembly 1 operates, the anti-interference coating 105 sprayed on the surface of the heat sink 102 can effectively avoid external electromagnetic interference. The anti-static coating 4 sprayed on the outer surfaces of the base assembly 2 and the outer frame assembly 3 can minimize the conduction of external static electricity to avoid static damage. The first heat dissipation hole 302 and the second heat dissipation hole 303 opened on the surface of the protective frame 301 can provide good ventilation and heat dissipation for the internal GIS add-on module assembly 1. Together with the heat dissipation fins 304 and the heat conduction plate 305 attached to the surface of the fixing base 201, they can also play a role in real-time heat conduction and heat dissipation.
[0028] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A GIS add-on module installation component, comprising a GIS add-on module component (1) and a base component (2), characterized in that: The bottom of the GIS add-on module component (1) is fitted with a base component (2), and an outer frame component (3) is provided around the outside of the GIS add-on module component (1). The surfaces of the base component (2) and the outer frame component (3) are coated with an antistatic coating (4). The GIS add-on module component (1) includes a GIS add-on module body (101), a heat sink (102), a plug ring (103), a connecting pin (104), and an anti-interference coating (105). The outside of the GIS add-on module body (101) is fitted with a heat sink (102), and a plug ring (103) is connected to the bottom surface of the heat sink (102). A connecting pin (104) is provided on the side of the plug ring (103) near the vertical central axis of the heat sink (102). The surface of the heat sink (102) is coated with an anti-interference coating (105).
2. The GIS add-on module installation component according to claim 1, characterized in that, The insertion ring (103) and the heat sink (102) are integrated into one structure, and the connecting pins (104) are vertically installed at the four opposite corners of the bottom of the heat sink (102), and the connecting pins (104) are electrically connected to the GIS add-on module body (101).
3. The GIS add-on module installation component according to claim 1, characterized in that, The base assembly (2) includes a fixed base (201), a welding piece (202), a docking post (203), a mounting groove (204), a connecting groove (205), and a docking hole (206). The bottom surface of the fixed base (201) is equipped with a welding piece (202), and the left and right ends of the fixed base (201) are symmetrically provided with docking posts (203). The top surface of the fixed base (201) is provided with a mounting groove (204), and the bottom surface inside the mounting groove (204) is provided with a connecting groove (205). At the same time, the connecting groove (205) is provided with a docking hole (206) on the side of the connecting groove (205) near the vertical central axis of the fixed base (201).
4. A GIS add-on module installation component according to claim 3, characterized in that, The connecting pile (203) and the fixing seat (201) are integrated into one structure, and the fixing seat (201) is made of a high thermal conductivity material.
5. A GIS add-on module installation component according to claim 3, characterized in that, The inner surface structure of the mounting groove (204) matches the bottom surface structure of the heat sink shell (102), and the inner surface structures of the connecting groove (205) and the mating hole (206) match the outer surface structures of the insert ring (103) and the connecting pin (104), respectively.
6. A GIS add-on module installation component according to claim 3, characterized in that, The outer frame assembly (3) includes a protective frame (301), a first heat dissipation hole (302), a second heat dissipation hole (303), heat dissipation fins (304), a heat-conducting plate (305), and a fixing buckle (306). The top surface and the front and rear side surfaces of the protective frame (301) are respectively provided with a first heat dissipation hole (302) and a second heat dissipation hole (303). Heat dissipation fins (304) are installed at the lower ends of the front and rear sides of the protective frame (301). The bottom of the heat dissipation fins (304) is connected to the heat-conducting plate (305). Fixing buckles (306) are installed at both the left and right ends of the heat-conducting plate (305).
7. A GIS add-on module installation component according to claim 6, characterized in that, The heat dissipation fins (304) are fixedly connected to the protective frame (301), and the heat conduction plate (305) and the heat dissipation fins (304) are made of the same material. Moreover, the inner surface structure of the heat conduction plate (305) matches the outer surface structure of the heat dissipation shell (102).
8. A GIS add-on module installation component according to claim 6, characterized in that, The docking pile (203) has a slot structure inside that matches the lower surface structure of the fixing buckle (306), and the fixing buckle (306) is fixedly connected to the heat-conducting plate (305).