A novel gateway component structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-28
- Publication Date
- 2026-08-14
AI Technical Summary
[0002]现有专利(公告号:CN220775851U)提出了一种具有防尘结构的通信网关,包括网关壳体和通讯器,所述通讯器安装在网关壳体的内部,通讯器前端连接有对接口且位于网关壳体前端的外部,然而此装置“侧板的表面开设有散热孔”仅侧板开设有散热孔,使此装置的散热范围受限,影响此装置的总体散热效果
[0007]有益效果:1.本实用新型网关组件结构进行散热作业时,散热电机启动,使气流由主倾斜入气槽、侧倾斜入气孔处进入至过渡散热台、上散热台内部并且向侧散热防护板的方向流动,直至由侧镂空散热孔处排出,气流流动过程中可主动带走网关主体顶部与侧面的热量,使此装置的散热范围更广,散热效果更好。
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Figure CN224638069U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of gateway components, and in particular to a novel gateway component structure. Background Technology
[0002] An existing patent (publication number: CN220775851U) proposes a communication gateway with a dustproof structure, including a gateway housing and a communicator. The communicator is installed inside the gateway housing, and the front end of the communicator is connected to a docking interface located outside the front end of the gateway housing. However, this device has "heat dissipation holes on the surface of the side plate", meaning that only the side plate has heat dissipation holes, which limits the heat dissipation range of the device and affects the overall heat dissipation effect of the device. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a new gateway component structure in which, during heat dissipation, a heat dissipation motor is activated, causing airflow to enter the transition heat dissipation platform and the upper heat dissipation platform through the main inclined air inlet groove and the side inclined air inlet hole, and then flow towards the side heat dissipation protection plate until it is discharged through the side hollow heat dissipation hole. During the airflow process, the heat can be actively carried away from the top and sides of the gateway body, making the heat dissipation range of this device wider and the heat dissipation effect better.
[0004] The objective of this utility model is achieved through the following technical solution: A novel gateway component structure includes a main protective frame, a gateway body, side heat dissipation protective plates, a motor support block, and a heat dissipation motor. The main protective frame is adapted to the gateway body and connected to it. The gateway body is inserted into the main protective frame. The main protective frame has side protective plate connecting slots on both sides, which are adapted to the side heat dissipation protective plates. The side heat dissipation protective plates are inserted into the side protective plate connecting slots. The surface of the side heat dissipation protective plates has side-hole heat dissipation holes. The top of the main protective frame has a motor block mounting platform, a transition heat dissipation platform, and an upper heat dissipation platform. The motor block mounting platform is located in the center, the transition heat dissipation platforms are distributed on both sides of the motor block mounting platform, and the upper heat dissipation platform is located on the side of the transition heat dissipation platform. The internal spaces of the main protective frame, the motor block mounting platform, the transition heat dissipation platform, and the upper heat dissipation platform are interconnected.
[0005] The top of the upper heat sink has a side-inclined air inlet, which is inclined toward the motor block mounting platform. The transition heat sink has main inclined air inlets on both sides, which are inclined toward the motor block mounting platform. The motor block mounting platform has a motor block support groove inside, which is adapted to the motor block support block. The motor block support groove is connected to the motor block support block, and the motor block support block is inserted into the motor block support groove. The top of the motor block support block has an upper operating handle.
[0006] The motor support block has side motor connection slots on both sides. The cooling motor is inserted into the side motor connection slot and fixed. The cooling motor has a drive shaft that is fixedly connected to the cooling fan. The cooling fan is located inside the transition cooling platform. The motor support slot has a positioning button connection slot on one side.
[0007] Beneficial effects: 1. When the gateway component structure of this utility model is performing heat dissipation operation, the heat dissipation motor is started, so that the airflow enters the transition heat dissipation platform and the upper heat dissipation platform from the main inclined air inlet groove and the side inclined air inlet hole and flows towards the side heat dissipation protection plate until it is discharged from the side hollow heat dissipation hole. During the airflow process, it can actively carry away the heat from the top and sides of the gateway body, making the heat dissipation range of this device wider and the heat dissipation effect better.
[0008] 2. The side-inclined air inlet and the main-inclined air inlet groove of this utility model are both inclined towards the motor block mounting platform, making it easier for external airflow to enter the transition heat dissipation platform and the interior of the upper heat dissipation platform, and making it less likely for internal airflow to be discharged from the side-inclined air inlet and the main-inclined air inlet groove, thus improving the efficiency and stability of the heat dissipation process.
[0009] 3. The side heat dissipation protection plate and the main protective frame of this utility model are designed separately, and the motor bearing block and the main protective frame are designed separately, which makes it easier for operators to perform maintenance work on the side heat dissipation protection plate, heat dissipation motor and other structures, and increases the ease of maintenance of this device. Attached Figure Description
[0010] Figure 1 This is a schematic diagram of the structure of a novel gateway component according to the present invention.
[0011] Figure 2 This is an internal structural diagram of a novel gateway component according to the present invention.
[0012] Figure 3 This is a front cross-sectional view of a novel gateway component structure according to the present invention.
[0013] Figure 4 The present utility model Figure 3 Enlarged view of a specific area.
[0014] Figure 5 This is an exploded view of the structure of a novel gateway component according to the present invention.
[0015] Figure 6 This is a schematic diagram of the main protective frame structure described in this utility model.
[0016] Figure 7 This is a bottom view of the main protective frame of this utility model. Detailed Implementation
[0017] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A novel gateway component structure includes a main protective frame 1, a gateway body 2, side heat dissipation protective plates 4, a motor support block 12, and a heat dissipation motor 15. The main protective frame 1 is adapted to the gateway body 2 and is connected to the gateway body 2. The gateway body 2 is inserted into the main protective frame 1. The main protective frame 1 has side protective plate connecting grooves 3 on both sides, which are adapted to the side heat dissipation protective plates 4. The side heat dissipation protective plates 4 are inserted into the side protective plate connecting grooves 3. The surface of the side heat dissipation protective plates 4 has side hollow heat dissipation holes 6. The main protective frame 1 and the motor support block 12 are designed separately, which makes it easier for operators to perform maintenance work on the side heat dissipation protection plate 4, heat dissipation motor 15 and other structures, thus increasing the ease of maintenance of this device. The top of the main protective frame 1 has a motor block mounting platform 9, a transition heat dissipation platform 5 and an upper heat dissipation platform 7. The motor block mounting platform 9 is located in the center, the transition heat dissipation platform 5 is distributed on both sides of the motor block mounting platform 9, and the upper heat dissipation platform 7 is located on the side of the transition heat dissipation platform 5. The internal spaces of the main protective frame 1, the motor block mounting platform 9, the transition heat dissipation platform 5 and the upper heat dissipation platform 7 are connected.
[0018] Example 2: The upper heat dissipation platform 7 of this utility model has a side-inclined air inlet 8 on its top. Both the side-inclined air inlet 8 and the main inclined air inlet groove 10 are inclined toward the motor block mounting platform 9, making it easier for external airflow to enter the transition heat dissipation platform 5 and the interior of the upper heat dissipation platform 7. The internal airflow is less likely to be discharged from the side-inclined air inlet 8 and the main inclined air inlet groove 10, which improves the efficiency and stability of the heat dissipation process. The side-inclined air inlet 8 is inclined toward the motor block mounting platform 9. The transition heat dissipation platform 5 has main inclined air inlet grooves 10 on both sides, which are inclined toward the motor block mounting platform 9. The motor block mounting platform 9 has a motor block support groove 11 inside. The motor block support groove 11 is adapted to the motor support block 12. The motor block support groove 11 is connected to the motor support block 12. The motor support block 12 is inserted into the motor block support groove 11. The top of the motor support block 12 has an upper operating handle 13.
[0019] Example 3: The motor support block 12 of this utility model has side motor connection slots 14 on both sides. The heat dissipation motor 15 is inserted into the side motor connection slots 14 and fixed. When the gateway component structure is performing heat dissipation, the heat dissipation motor 15 is started, so that the airflow enters the transition heat dissipation platform 5 and the upper heat dissipation platform 7 from the main inclined air inlet slot 10 and the side inclined air inlet hole 8 and flows towards the side heat dissipation protection plate 4 until it is discharged from the side hollow heat dissipation hole 6. During the airflow process, it can actively carry away the heat from the top and sides of the gateway body 2, so that the heat dissipation range of this device is wider and the heat dissipation effect is better. The heat dissipation motor 15 has a drive shaft that is fixedly connected to the heat dissipation fan 16. The heat dissipation fan 16 is located inside the transition heat dissipation platform 5. The motor block support slot 11 has a positioning button connection slot 17 on one side.
[0020] Example 4: The positioning button connecting groove 17 of this utility model has handle clearance grooves 18 on both sides, and the motor bearing block 12 has a positioning button mounting post 19 on the side facing the positioning button connecting groove 17. The positioning button mounting post 19 is rotatably connected to the positioning button 20, and the positioning button connecting groove 17 is adapted to the positioning button 20.
[0021] Example 5: The positioning button connecting groove 17 of this utility model connects to the positioning button 20. The positioning button 20 rotates inside the positioning button connecting groove 17. The side of the positioning button 20 has a positioning button operation handle 21, which is pressed against the side of the motor block mounting platform 9.
[0022] Example 6: The installation steps of this utility model are as follows: Insert the side heat dissipation protective plate 4 into the side protective plate connecting groove 3 of the main protective frame 1; insert the gateway body 2 into the main protective frame 1; insert the heat dissipation motor 15 into the side motor connecting groove 14 of the motor support block 12; fix the transmission shaft of the heat dissipation motor 15 to the heat dissipation fan 16; rotatably connect the positioning button 20 to the positioning button mounting post 19 of the motor support block 12; insert the motor support block 12 into the motor block support groove 11 of the main protective frame 1; and press the positioning button operation handle 21 of the positioning button 20 against the side of the motor block mounting platform 9 of the main protective frame 1. The installation of this device is now complete.
[0023] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A novel gateway component structure, characterized in that: The system includes a main protective frame (1), a gateway body (2), side heat dissipation protective plates (4), a motor support block (12), and a heat dissipation motor (15). The main protective frame (1) is adapted to the gateway body (2) and is connected to the gateway body (2). The gateway body (2) is inserted into the main protective frame (1). The main protective frame (1) has side protective plate connecting slots (3) on both sides. The side protective plate connecting slots (3) are adapted to the side heat dissipation protective plates (4) and are connected to the side heat dissipation protective plates (4). 4) Insert into the side protection plate connecting groove (3). The side heat dissipation protection plate (4) has side hollow heat dissipation holes (6) on its surface. The main protection frame (1) has a motor block mounting platform (9), a transition heat dissipation platform (5), and an upper heat dissipation platform (7) on its top. The motor block mounting platform (9) is in the center position. The transition heat dissipation platform (5) is distributed on both sides of the motor block mounting platform (9). The upper heat dissipation platform (7) is located on the side of the transition heat dissipation platform (5). The internal spaces of the main protection frame (1), the motor block mounting platform (9), the transition heat dissipation platform (5), and the upper heat dissipation platform (7) are connected.
2. The novel gateway component structure according to claim 1, characterized in that: The upper heat dissipation platform (7) has a side-inclined air inlet (8) at the top, which is inclined toward the motor block mounting platform (9). The transition heat dissipation platform (5) has a main inclined air inlet groove (10) on both sides, which is inclined toward the motor block mounting platform (9). The motor block mounting platform (9) has a motor block bearing groove (11) inside, which is adapted to the motor bearing block (12). The motor block bearing groove (11) is connected to the motor bearing block (12), and the motor bearing block (12) is inserted into the motor block bearing groove (11). The top of the motor bearing block (12) has an upper operating handle (13).
3. The novel gateway component structure according to claim 2, characterized in that: The motor support block (12) has side motor connection slots (14) on both sides. The heat dissipation motor (15) is inserted into the side motor connection slot (14) and fixed. The heat dissipation motor (15) has a transmission shaft that is fixedly connected to the heat dissipation fan (16). The heat dissipation fan (16) is located inside the transition heat dissipation platform (5). The motor block support slot (11) has a positioning button connection slot (17) on one side.
4. The novel gateway component structure according to claim 3, characterized in that: The positioning button connecting groove (17) has handle clearance grooves (18) on both sides. The motor bearing block (12) has a positioning button mounting post (19) on the side facing the positioning button connecting groove (17). The positioning button mounting post (19) is rotatably connected to the positioning button (20). The positioning button connecting groove (17) is adapted to the positioning button (20).
5. A novel gateway component structure according to claim 3, characterized in that: The positioning button connecting groove (17) connects to the positioning button (20). The positioning button (20) rotates inside the positioning button connecting groove (17). The side of the positioning button (20) has a positioning button operating handle (21). The positioning button operating handle (21) is pressed against the side of the motor block mounting platform (9).
Citation Information
Patent Citations
Communication gateway with dustproof structure
CN220775851U