Efficient coupler module convenient for heat dissipation
By introducing heat dissipation and protection devices into the coupler module, the problem of untimely heat dissipation during long-term use of the coupler is solved, achieving effective heat dissipation and protection of the connection holes, thus improving the practicality and reliability of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2026-04-07
AI Technical Summary
The heat generated by the coupler during long-term use cannot be dissipated in time, resulting in increased temperature, which affects performance and lifespan, and may lead to signal attenuation and increased bit error rate.
A high-efficiency coupler module with easy heat dissipation was designed, which includes a heat dissipation device and a protective device. The heat dissipation device dissipates heat through a heat sink and heat sink fins, while the protective device prevents dust and water vapor from entering the connection hole through a protective plate and an L-shaped block.
Effective heat dissipation reduces the coupler's temperature, extends its service life, and prevents contamination of the connection holes, ensuring the coupler's normal operation and stability.
Smart Images

Figure CN224096050U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of high-efficiency coupler technology, and in particular to a high-efficiency coupler module that facilitates heat dissipation. Background Technology
[0002] In the field of high-efficiency coupler technology, couplers, as core devices for realizing optical / electrical signal transmission, are widely used in communication, industrial control, data centers and other scenarios. With the increase in device integration and power density, couplers face severe heat dissipation challenges during long-term operation.
[0003] Traditional couplers rely on natural convection for heat dissipation, using only a simple metal casing for heat conduction. When the coupler generates a large amount of heat, the heat cannot be dissipated in time, causing the junction temperature of the device to rise rapidly. This not only reduces the performance and lifespan of the coupler itself, but also causes problems such as signal attenuation and increased bit error rate. In severe cases, it can cause the device to malfunction.
[0004] Regarding the above-mentioned and existing related technologies, the inventors believe that the following defects often exist: the coupler body generates a lot of heat during long-term use, and if the heat cannot be dissipated in time, the temperature of the coupler body will rise, resulting in a reduction in the performance and service life of the coupler body; therefore, to address the above problems, an efficient coupler module with convenient heat dissipation is proposed. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies where the heat generated by the coupler body during long-term use cannot be dissipated in a timely manner, leading to an increase in the temperature of the coupler body and a reduction in its performance and service life. The invention proposes a high-efficiency coupler module that facilitates heat dissipation.
[0006] To achieve the above objectives, this utility model adopts the following technical solution: a high-efficiency coupler module for easy heat dissipation, comprising a coupler body, a heat dissipation device on the surface of the coupler body, the heat dissipation device including a heat dissipation plate, the heat dissipation plate being slidably connected to the surface of the coupler body, a plurality of heat dissipation fins being fixedly connected to the surface of the heat dissipation plate, a handle being fixedly connected to the surface of the heat dissipation plate, four connecting rods being fixedly connected to the surface of the coupler body, a connecting plate being fixedly connected to one end of each connecting rod, a plug rod being slidably inserted into the connecting plate, and four slots being formed on the surface of the heat dissipation plate.
[0007] The effect achieved by the above components is as follows: by setting up a heat dissipation device, the heat dissipation of the coupler body is facilitated, which avoids the excessive heat generated by the coupler body during long-term use. If the heat cannot be dissipated in time, the temperature of the coupler body will rise, thereby reducing the performance and service life of the coupler body and improving the practicality of the equipment.
[0008] Preferably, one end of the insertion rod has a groove, and an operating block is fixedly connected to the surface of the groove.
[0009] The effect achieved by the above components is that the operating block makes it easier for the staff to pull the plug rod, and avoids the situation where the staff's hand slips when pulling the plug rod because the arc surface of the plug rod is too smooth.
[0010] Preferably, the arc surface of the connecting rod is rotatably connected to a blocking plate, the surface of the blocking plate is provided with a blocking groove, and four blocking blocks are fixedly connected to the surface of the coupler body.
[0011] The above-mentioned components achieve the following effect: the baffle plate can restrict the movement of the plug rod, which not only makes it easier for staff to disassemble the heat sink, but also prevents the plug rod from colliding with the heat sink and causing damage when staff do not pay attention to the position of the plug rod when putting the heat sink back in place.
[0012] Preferably, the arc surface of the insertion rod is fitted with a spring, and the two ends of the spring are fixedly connected to the connecting plate and the operating block, respectively.
[0013] The effect achieved by the above components is that the spring's rebound force automatically inserts the plug rod, while also restricting the movement of the plug rod and improving the stability of the plug rod when it is fixed.
[0014] Preferably, the surface of the coupler body is provided with a protective device, the protective device including two square rods, both of which are fixedly connected to the surface of the coupler body, and a rotating rod is rotatably connected to the side of the two square rods that are close to each other. A protective plate is fixedly connected to the arc surface of the rotating rod, and a handle is fixedly connected to the surface of the protective plate.
[0015] The effect achieved by the above-mentioned components is as follows: by setting up the protective device, the connection hole of the coupler body can be protected, which avoids the adhering of dust, water vapor and other impurities in the air to the surface of the connection hole of the coupler body when the coupler body is not in use, which would lead to poor contact of the connection hole of the coupler body and cause the coupler body to malfunction, thus improving the practicality of the equipment.
[0016] Preferably, the surface of the coupler body has two grooves, and L-shaped blocks are slidably connected to the surfaces of the two grooves of the coupler body.
[0017] The above-mentioned components achieve the following effect: the L-shaped block can restrict the rotation of the protective plate, thereby facilitating the use of the connection holes of the coupler body by the staff.
[0018] Preferably, the arc surface of the rotating rod is fitted with two torsion springs, and the two ends of the torsion springs are fixedly connected to the square rod and the protective plate, respectively.
[0019] The effect achieved by the above components is that the torsion spring's torque automatically rotates the protective plate to the surface of the coupler body's connection hole, while preventing the protective plate from rotating, thus improving the protective effect of the protective plate.
[0020] In summary, the beneficial effects of this utility model are as follows:
[0021] 1. In this utility model, by setting up a heat dissipation device, the heat dissipation effect of the coupler body is achieved, which avoids the problem that the coupler body generates too much heat during long-term use. If the heat cannot be dissipated in time, the temperature of the coupler body will rise, thereby reducing the performance and service life of the coupler body and improving the practicality of the equipment.
[0022] 2. In this utility model, by setting a protective device, the connection hole of the coupler body can be protected, which avoids the situation where dust, water vapor and other impurities in the air adhere to the surface of the connection hole of the coupler body when the coupler body is not in use, resulting in poor contact of the connection hole of the coupler body and causing the coupler body to malfunction, thus improving the practicality of the equipment. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0024] Figure 2 This is a schematic diagram of the heat dissipation device in this utility model;
[0025] Figure 3 In this utility model Figure 2 Enlarged view of point A;
[0026] Figure 4 This is a schematic diagram of the protective device in this utility model;
[0027] Figure 5 This is a partial structural diagram of the protective device in this utility model.
[0028] Legend: 1. Coupler body; 2. Heat dissipation device; 3. Protective device; 201. Heat dissipation plate; 202. Heat dissipation fins; 203. Handle; 204. Connecting rod; 205. Connecting plate; 206. Insert rod; 207. Operating block; 208. Blocking plate; 209. Blocking block; 210. Spring; 31. Square rod; 32. Rotating rod; 33. Protective plate; 34. Handle; 35. L-shaped block; 36. Torsion spring. Detailed Implementation
[0029] Reference Figure 1 As shown, this utility model provides a technical solution: a high-efficiency coupler module that facilitates heat dissipation, including a coupler body 1. The surface of the coupler body 1 is provided with a heat dissipation device 2. By setting the heat dissipation device 2, the heat dissipation effect of the coupler body 1 is achieved, avoiding the excessive heat generated by the coupler body 1 during long-term use. If the heat cannot be dissipated in time, the temperature of the coupler body 1 will rise, thereby reducing the performance and service life of the coupler body 1, thus improving the practicality of the equipment. The surface of the coupler body 1 is provided with a protective device 3. By setting the protective device 3, the connection hole of the coupler body 1 can be protected, avoiding the adhering of dust, water vapor and other impurities in the air to the surface of the connection hole of the coupler body 1 when the coupler body 1 is not in use, which would lead to poor contact of the connection hole of the coupler body 1 and cause the coupler body 1 to malfunction, thus improving the practicality of the equipment.
[0030] The specific setup and function of its heat dissipation device 2 and protection device 3 will be explained below.
[0031] Reference Figure 2 and Figure 3As shown in this embodiment: the heat dissipation device 2 includes a heat dissipation plate 201, which is slidably connected to the surface of the coupler body 1. Several heat dissipation fins 202 are fixedly connected to the surface of the heat dissipation plate 201. A handle 203 is fixedly connected to the surface of the heat dissipation plate 201. Four connecting rods 204 are fixedly connected to the surface of the coupler body 1. A connecting plate 205 is fixedly connected to one end of each connecting rod 204. A plug rod 206 is slidably inserted into the connecting plate 205. Four slots are formed on the surface of the heat dissipation plate 201. A groove is formed at one end of each plug rod 206. An operating block 207 is fixedly connected to the surface of the groove of the plug rod 206. During prolonged use, the coupler body 1 generates a significant amount of heat, which is dissipated through the heat dissipation plate 201. The heat is transferred to the surface of the heat sink 202 and then dissipated through the heat sink 202, thereby reducing the temperature of the coupler body 1. When the heat dissipation effect of the heat sink 202 decreases, the operator can remove the heat sink 202 for inspection. Moving the operating block 207 moves the insertion rod 206. When the insertion rod 206 is completely disengaged from the surface of the heat sink 201 slot, the insertion rod 206 releases its fixation to the heat sink 201. Moving the handle 203 causes the heat sink 201 to slide on the surface of the coupler body 1. The heat sink 201 moves the heat sink 202. When the heat sink 201 is completely disengaged from the surface of the coupler body 1, the heat sink 201 is removed, and the operator can then inspect the heat sink 202. 2. After maintenance, return the heat sink 201 to its original position and push the operating block 207 to move the insertion rod 206 until it is inserted into the surface of the slot in the heat sink 201. At this point, the insertion rod 206 can fix the heat sink 201. The operating block 207 facilitates the operation of the insertion rod 206, preventing the rod from slipping due to its smooth surface. The connecting rod 204 is rotatably connected to a blocking plate 208, which has a blocking groove on its surface. Four blocking blocks 209 are fixedly connected to the surface of the coupler body 1. When the operator needs to disassemble the heat sink 201, they pull the operating block 207 to move the insertion rod 206 until it is completely disassembled. When the heat sink 201 is in its slot, the insertion rod 206 releases its fixation to the heat sink 201. The blocking plate 208 is rotated until it reaches the appropriate position, at which point the insertion rod 206 is directly in front of the blocking groove of the blocking plate 208. The operating block 207 is then pushed to move the insertion rod 206 until it is inserted into the surface of the blocking groove of the blocking plate 208. The blocking plate 208 then restricts the movement of the insertion rod 206. At this point, the operator can remove the heat sink 201. After the heat sink 201 is returned to its original position, the operating block 207 is moved to move the insertion rod 206. When the insertion rod 206 is completely disengaged from the surface of the blocking groove of the blocking plate 208, the operator can rotate the blocking plate 208 until its surface contacts the blocking block 209.At this point, the worker can insert the plug rod 206 into the surface of the slot in the heat sink 201. The blocking plate 208 effectively restricts the movement of the plug rod 206, making it convenient for the worker to disassemble the heat sink 201. It also prevents the plug rod 206 from colliding with the heat sink 201 and causing damage when the worker returns the heat sink 201 to its original position. A spring 210 is fitted onto the arc-shaped surface of the plug rod 206. The two ends of the spring 210 are fixedly connected to the connecting plate 205 and the operating block 207, respectively. When the worker pulls the operating block 207, the spring... When spring 210 is stretched, operating block 207 moves insert rod 206. When insert rod 206 is completely disengaged from the surface of the heat sink 201 slot, the operator can remove the heat sink 201. After the operator puts the heat sink 201 back in place, they release operating block 207. The return force of spring 210 moves operating block 207, which in turn moves insert rod 206 until it is inserted into the surface of the heat sink 201 slot. The return force of spring 210 achieves the effect of automatically inserting insert rod 206 while simultaneously limiting its movement, thus improving the stability of insert rod 206 when fixed.
[0032] Reference Figure 4 and Figure 5As shown, specifically, the protective device 3 includes two square rods 31, both of which are fixedly connected to the surface of the coupler body 1. A rotating rod 32 is rotatably connected to the side of the two square rods 31 closest to each other. A protective plate 33 is fixedly connected to the arc surface of the rotating rod 32. A handle 34 is fixedly connected to the surface of the protective plate 33. Two sliding grooves are formed on the surface of the coupler body 1, and L-shaped blocks 35 are slidably connected to the surfaces of the two sliding grooves. When the operator needs to use the connection hole of the coupler body 1, they can open the protective plate 33 and pull the handle 34. The handle 34 drives the protective plate 33 to rotate. When the protective plate 33 is fully opened, the L-shaped blocks 35 are moved. When the surface of the L-shaped blocks 35 contacts the protective plate 33, the L-shaped blocks 35 can fix the protective plate 33. At this time, the operator can use the connection hole of the coupler body 1. The L-shaped blocks 35 achieve the desired functionality. To limit the rotation of the protective plate 33, thus facilitating the use of the connection hole of the coupler body 1 by the operator, two torsion springs 36 are fitted on the arc surface of the rotating rod 32. The two ends of the torsion springs 36 are fixedly connected to the square rod 31 and the protective plate 33, respectively. When the operator is not using the connection hole of the coupler body 1, the L-shaped block 35 is moved and slides on the surface of the groove of the coupler body 1. When the L-shaped block 35 is completely detached from the surface of the protective plate 33, the L-shaped block 35 releases its fixation to the protective plate 33. The torque of the torsion springs 36 drives the protective plate 33 to rotate, and the protective plate 33 drives the rotating rod 32 to rotate until the protective plate 33 completely covers the surface of the connection hole of the coupler body 1. The torque of the torsion springs 36 achieves the effect of automatically rotating the protective plate 33 to the surface of the connection hole of the coupler body 1, while preventing the protective plate 33 from rotating and improving the protective effect of the protective plate 33.
[0033] Working principle: During prolonged use, the coupler body 1 generates significant heat. This heat is transferred from the heat sink 201 to the surface of the heat dissipation fins 202, where it is dissipated, thus reducing the temperature of the coupler body 1. When the heat dissipation effect of the heat dissipation fins 202 decreases, the heat sink fins 202 can be disassembled for inspection. Moving the operating block 207 stretches the spring 210, causing the operating block 207 to move the insertion rod 206. When the insertion rod 206 is completely disengaged from the heat sink... When the heat sink 201 is in the slot, the insert rod 206 releases its fixation to the heat sink 201. The blocking plate 208 is rotated. When the blocking plate 208 is rotated to the appropriate position, the insert rod 206 is directly in front of the blocking groove of the blocking plate 208. The operating block 207 is pushed to move the insert rod 206 until it is inserted into the surface of the blocking groove of the blocking plate 208. The blocking plate 208 restricts the movement of the insert rod 206. At this point, the operator can remove the heat sink 201 and move the handle 203. The handle 203 moves the heat sink 201 in the coupler. The surface of the coupler body 1 slides, and the heat sink 201 drives the heat sink fins 202 to move. When the heat sink 201 is completely detached from the surface of the coupler body 1, the heat sink 201 is disassembled. At this time, the operator can inspect the heat sink fins 202. After the inspection is completed, the heat sink 201 is put back in its original position. The operating block 207 moves the insertion rod 206. When the insertion rod 206 is completely detached from the surface of the blocking groove of the blocking plate 208, the operator can rotate the blocking plate 208 until the surface of the blocking plate 208 contacts the blocking block 209. The operating block 207 is released, and the spring force of the spring 210 moves the operating block 207. The operating block 207 moves the insertion rod 206 until the insertion rod 206 is inserted into the surface of the heat sink 201 slot. The insertion rod 206 can fix the heat sink 201. At this time, the heat sink 201 is effectively cooled, which avoids the coupler body 1 from generating too much heat during long-term use. If the heat cannot be dissipated in time, the temperature of the coupler body 1 will rise, which will reduce the performance and service life of the coupler body 1.
[0034] When the operator needs to use the connection hole of the coupler body 1, they can open the protective plate 33 and pull the handle 34. The handle 34 will rotate the protective plate 33. After the protective plate 33 is fully opened, the L-shaped block 35 can be moved. When the surface of the L-shaped block 35 contacts the protective plate 33, the L-shaped block 35 can fix the protective plate 33. At this time, the operator can use the connection hole of the coupler body 1. When the operator does not use the connection hole of the coupler body 1, the L-shaped block 35 can be moved. The L-shaped block 35 slides on the surface of the slide groove of the coupler body 1. When the L-shaped block 35 is completely detached from the protective plate 33... When the protective plate 33 is on the surface, the L-shaped block 35 releases the fixation of the protective plate 33. The torque of the torsion spring 36 drives the protective plate 33 to rotate, and the protective plate 33 drives the rotating rod 32 to rotate until the protective plate 33 completely covers the surface of the connection hole of the coupler body 1. At this time, the connection hole of the coupler body 1 can be protected, avoiding the situation where dust, water vapor and other impurities in the air adhere to the surface of the connection hole of the coupler body 1 when the coupler body 1 is not in use, which would lead to poor contact of the connection hole of the coupler body 1 and cause the coupler body 1 to malfunction.
[0035] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
Claims
1. A high-efficiency coupler module with easy heat dissipation, comprising a coupler body (1), characterized in that: The surface of the coupler body (1) is provided with a heat dissipation device (2), the heat dissipation device (2) includes a heat dissipation plate (201), the heat dissipation plate (201) is slidably connected to the surface of the coupler body (1), a plurality of heat dissipation fins (202) are fixedly connected to the surface of the heat dissipation plate (201), a handle (203) is fixedly connected to the surface of the coupler body (1), four connecting rods (204) are fixedly connected to the surface of the coupler body (1), a connecting plate (205) is fixedly connected to one end of the connecting rod (204), a plug rod (206) is slidably inserted into the connecting plate (205), and four slots are opened on the surface of the heat dissipation plate (201).
2. The efficient coupler module with easy heat dissipation according to claim 1, characterized in that: One end of the insertion rod (206) is provided with a groove, and an operating block (207) is fixedly connected to the surface of the groove of the insertion rod (206).
3. The efficient coupler module with easy heat dissipation according to claim 1, characterized in that: The connecting rod (204) is rotatably connected to a blocking plate (208) on its arc surface. The surface of the blocking plate (208) is provided with a blocking groove. The surface of the coupler body (1) is fixedly connected with four blocking blocks (209).
4. The efficient coupler module with easy heat dissipation according to claim 1, characterized in that: The arc surface of the insertion rod (206) is fitted with a spring (210), and the two ends of the spring (210) are fixedly connected to the connecting plate (205) and the operating block (207) respectively.
5. The efficient coupler module with easy heat dissipation according to claim 1, characterized in that: The surface of the coupler body (1) is provided with a protective device (3). The protective device (3) includes two square rods (31). Both square rods (31) are fixedly connected to the surface of the coupler body (1). A rotating rod (32) is rotatably connected to the side of the two square rods (31) that are close to each other. A protective plate (33) is fixedly connected to the arc surface of the rotating rod (32). A handle (34) is fixedly connected to the surface of the protective plate (33).
6. The efficient coupler module with easy heat dissipation according to claim 1, characterized in that: Two grooves are formed on the surface of the coupler body (1), and L-shaped blocks (35) are slidably connected to the surfaces of the two grooves of the coupler body (1).
7. The efficient coupler module with easy heat dissipation according to claim 5, characterized in that: The rotating rod (32) has two torsion springs (36) on its arc surface. The two ends of the torsion springs (36) are fixedly connected to the square rod (31) and the protective plate (33) respectively.