Array type high-frequency transformer
By designing a moving and locking mechanism for array-type high-frequency transformers, the problem of inconvenient transformer installation was solved, enabling convenient movement and stable installation, improving installation efficiency, and enhancing installation flexibility and stability through suspension and heat dissipation design.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-05-15
AI Technical Summary
Existing high-frequency transformers require moving to a suitable location during installation and use, but this is inconvenient, leading to difficulties in handling, increased labor costs, and reduced installation efficiency.
An array-type high-frequency transformer was designed, which includes a moving mechanism and a locking mechanism. The moving mechanism enables convenient movement through insert plates, locking slots, locking blocks, slots, mounting slots, mounting blocks, and moving wheels. The locking mechanism enables stable installation through clamps, bolts, and nuts.
It enables convenient movement and stable installation of transformers, reduces labor, improves installation efficiency, and enhances installation flexibility and stability through suspension and heat dissipation hole design.
Smart Images

Figure CN224248397U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of transformer technology, and in particular to an array-type high-frequency transformer. Background Technology
[0002] A high-frequency transformer is a type of transformer used in high-frequency circuits. It typically operates in the frequency range of tens of kilohertz to several megahertz. Compared with traditional low-frequency transformers, high-frequency transformers are characterized by their small size, light weight, and high efficiency. They are widely used in switching power supplies, communication equipment, radio frequency circuits, and other fields.
[0003] A search revealed that patent CN215527417U proposes a power transformer with an array of heat dissipation tubes. This technical solution has the following problems:
[0004] Currently, when installing and using a transformer, it is necessary to move the transformer to a suitable location first. However, the transformer is not convenient to move according to usage requirements, which makes the transportation and movement of the transformer quite difficult. This not only increases labor costs but also reduces installation efficiency.
[0005] To address the aforementioned problems, this utility model document proposes an array-type high-frequency transformer. Utility Model Content
[0006] This invention provides an array-type high-frequency transformer, which solves the problems of existing technology where the transformer needs to be moved to a suitable location before installation and use, and the transformer is not convenient to move according to usage requirements, making the transportation and movement of the transformer difficult, which not only increases labor but also reduces installation efficiency.
[0007] This utility model provides the following technical solution:
[0008] An array-type high-frequency transformer includes:
[0009] The transformer body has two support blocks fixedly installed on its bottom side, and each support block has three fixing holes on one side.
[0010] The moving mechanism is mounted on the support block and is used to support and move the transformer body.
[0011] The locking mechanism is installed on the support block and is used to lock the transformer body in place.
[0012] In one possible design, the moving mechanism includes a plate, a locking groove, a locking block, a slot, a mounting groove, a mounting block, and a moving wheel. Each of the support blocks has two holes on one side, and the four holes are divided into two groups. Each plate is inserted into the interior of each group of holes.
[0013] In one possible design, each of the slots is formed on the top side of the support block for insertion of the locking block, and each locking groove is formed on the top of the insert plate for insertion and locking of the locking block.
[0014] In one possible design, each of the mounting slots is formed on the bottom side of the insert plate, the mounting block is inserted into the inside of the mounting slot, the movable wheel is fixedly installed on the bottom side of the mounting block, the top side of the insert plate is internally threaded with a fixing nut corresponding to the mounting block, and the top side of the mounting block is provided with a threaded hole for the fixing nut to be threadedly connected.
[0015] In one possible design, the locking mechanism includes a clamping block, a bolt, and a nut. The clamping block is located at the bottom of the support block and is adapted to the support block. Each clamping block and the support block have through holes on their bottom sides. Each bolt passes through the interior of two through holes. The nut is threaded onto the outer wall of the bolt and is used to adjust and fix the clamping block and the support block.
[0016] In one possible design, hanging blocks are fixedly installed on both sides of the transformer body, and each hanging block has a hanging hole on one side.
[0017] In one possible design, the top side of the transformer body has multiple heat dissipation holes arranged in an array, and each heat dissipation hole is equipped with a heat dissipation pipe.
[0018] In this application, during use, the transformer body is the core component, responsible for the conversion and transmission of high-frequency electrical energy. The support block is fixed to the bottom side of the transformer body to provide stable support for the transformer. The moving mechanism and locking mechanism are respectively installed on the support block to realize convenient movement and stable installation of the transformer. When it is necessary to move the transformer body, the insert plate is first inserted into the insert hole. The locking block passes through the slot and is inserted into the locking groove to ensure the fixation of the insert plate. Then, the mounting block is inserted into the mounting groove and connected to the inside of the insert plate by the fixing nut threadedly, which helps to lock and fix the mounting block, thereby ensuring the stability of the moving wheels. This makes it easy to move the transformer body to the designated installation position and achieves the effect of easy installation and disassembly of the moving wheels. It is convenient to use according to the usage requirements and avoids the difficulty of moving the transformer body. It not only reduces labor but also improves installation efficiency.
[0019] When the transformer body needs to be installed in a fixed position, the clamping block is first placed at the bottom of the support block and matched accordingly. The bolt passes through the through holes on the clamping block and the support block. Then, the nut is threaded onto the outer wall of the bolt. By rotating the nut, the clamping force of the clamping block on the support block can be adjusted to achieve the function of clamping and fixing, which is conducive to fixing the position of the transformer body and thus achieving a stable installation of the transformer body. The length of the bolt can be selected according to different installation environments, and bolts of different lengths can be used to enhance applicability. The design of the hanging block and hanging hole allows the transformer body to be installed by suspension, increasing the flexibility of installation. If the transformer body is further matched with the fixing hole opened on one side of the support block and the fixing bolt passing through the fixing hole, the installation stability of the transformer body can be further enhanced. The heat dissipation system is formed by the array of heat dissipation holes on the top side of the transformer body and the internal heat dissipation pipes. The heat dissipation holes allow air circulation, while the heat dissipation pipes transfer the heat generated inside the transformer body to the external environment through heat conduction, thereby ensuring the normal operation of the transformer body and extending its service life.
[0020] In this utility model, the array-type high-frequency transformer, through the moving mechanism, can ensure the stability of the moving wheels, thereby facilitating the movement of the transformer body to the designated installation position, and achieving the effect of convenient installation and disassembly of the moving wheels, making it convenient to use according to usage requirements;
[0021] In this utility model, the array-type high-frequency transformer can adjust the clamping force of the clamping block on the support block through the locking mechanism to achieve the clamping and fixing effect, which is conducive to fixing the position of the transformer body and thus realizing the stable installation of the transformer body.
[0022] In this invention, the moving wheels ensure stability during transformer installation and use, facilitating the movement of the transformer body to the designated installation location. The moving wheels also facilitate easy installation and disassembly, allowing for convenient use according to requirements and avoiding strenuous handling of the transformer body. This not only reduces labor but also improves installation efficiency. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the main structure of an array-type high-frequency transformer provided in an embodiment of the present invention;
[0024] Figure 2 A schematic diagram of the hidden moving mechanism state structure of an array-type high-frequency transformer provided in an embodiment of this utility model;
[0025] Figure 3 A schematic diagram of a locking mechanism for an array-type high-frequency transformer provided in an embodiment of this utility model;
[0026] Figure 4 This is a schematic diagram of the moving mechanism of an array-type high-frequency transformer provided in an embodiment of the present invention.
[0027] Figure label:
[0028] 1. Transformer body; 2. Heat dissipation pipe; 3. Hanging block; 4. Hanging hole; 5. Support block; 6. Clamping block; 7. Bolt; 8. Nut; 9. Insertion hole; 10. Insertion plate; 11. Locking groove; 12. Locking block; 13. Slot; 14. Mounting groove; 15. Mounting block; 16. Moving wheel; 17. Fixing nut; 18. Threaded hole; 19. Fixing hole. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0030] Example 1
[0031] Please refer to Figures 1-4 A transformer, comprising:
[0032] The transformer body 1 has two support blocks 5 fixedly installed on its bottom side. The transformer body 1 is the core component, responsible for the conversion and transmission of high-frequency electrical energy. The support blocks 5 are fixed on the bottom side of the transformer body 1 to provide stable support for the transformer. Each support block 5 has three fixing holes 19 on one side. After the transformer body 1 is suspended and positioned, it can be further coordinated with the fixing holes 19 on one side of the support blocks 5 and the fixing bolts that pass through the fixing holes 19 to further enhance the installation stability of the transformer body 1.
[0033] A moving mechanism, mounted on support blocks 5, is used to support and move the transformer body 1. The moving mechanism includes insert plates 10, locking slots 11, locking blocks 12, slots 13, mounting slots 14, mounting blocks 15, and moving wheels 16. Each support block 5 has two insertion holes 9 on one side, divided into two groups. Each insert plate 10 is inserted into the interior of each group of insertion holes 9. Each slot 13 is located on the top side of the support block 5 for the locking block 12 to be inserted into. Each locking slot 11 is located on the top of the insert plate 10 for the locking block 12 to be inserted and locked. Inserting the insert plate 10 into the insertion hole 9 and using the locking block 12 to pass through the slot 13 and insert into the locking slot 11 ensures the fixation of the insert plate 10.
[0034] Each mounting slot 14 is formed on the bottom side of the insert plate 10. The mounting block 15 is inserted into the inside of the mounting slot 14 for limiting. The movable wheel 16 is fixedly installed on the bottom side of the mounting block 15. The top side of the insert plate 10 is threaded with a fixing nut 17 corresponding to the mounting block 15. The top side of the mounting block 15 is provided with a threaded hole 18 for the fixing nut 17 to be threadedly connected. Inserting the mounting block 15 into the mounting slot 14 and connecting it to the inside of the insert plate 10 through the fixing nut 17 helps to lock and fix the mounting block 15, thereby ensuring the stability of the movable wheel 16. This makes it easy to move the transformer body 1 to the designated installation position and achieves the effect of easy installation and disassembly of the movable wheel 16, making it convenient to use according to the usage requirements.
[0035] A locking mechanism is installed on the support block 5 to secure the transformer body 1. The locking mechanism includes a clamping block 6, bolts 7, and nuts 8. The clamping block 6 is located at the bottom of the support block 5 and is adapted to the support block 5. Each clamping block 6 and the support block 5 have through holes on their bottom sides. Each bolt 7 passes through the interior of two through holes. The nuts 8 are threaded to the outer wall of the bolts 7 and are used to adjust and fix the clamping block 6 and the support block 5. The clamping block 6 is placed at the bottom of the support block 5 and is adapted to the support block 5. The bolts 7 pass through the through holes on the clamping block 6 and the support block 5. Then the nuts 8 are threaded to the outer wall of the bolts 7. By rotating the nuts 8, the clamping force of the clamping block 6 on the support block 5 can be adjusted to achieve the function of clamping and fixing, which is conducive to fixing the position of the transformer body 1 and thus realizing the stable installation of the transformer body 1.
[0036] This application can be used in the field of transformers, or in other fields applicable to this application.
[0037] The transformer body 1 is the same as the transformer body 1 mentioned in Chinese Patent Authorization Announcement No. CN215527417U, and its structure and mechanism will not be described in detail here;
[0038] Example 2
[0039] refer to Figure 1 and Figure 2 An improvement based on Embodiment 1: an array-type high-frequency transformer, which is applied to the field of transformers;
[0040] Hanging blocks 3 are fixedly installed on both sides of the transformer body 1. Each hanging block 3 has a hanging hole 4 on one side. The design of the hanging blocks 3 and the hanging holes 4 allows the transformer body 1 to be installed by suspension, increasing the flexibility of installation.
[0041] The top side of the transformer body 1 has multiple heat dissipation holes arranged in an array. Each heat dissipation hole is equipped with a heat dissipation pipe 2. The heat dissipation holes arranged in an array on the top side of the transformer body 1 and the heat dissipation pipe 2 inside together constitute a heat dissipation system. The heat dissipation holes allow air to circulate, while the heat dissipation pipe 2 transfers the heat generated inside the transformer body 1 to the external environment through heat conduction, thereby ensuring the normal operation of the transformer body 1 and extending its service life.
[0042] However, as is well known to those skilled in the art, the working principle and wiring method of the transformer body 1 are commonplace, and are all conventional methods or common knowledge. They will not be described in detail here. Those skilled in the art can make any selections according to their needs or convenience.
[0043] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. In the absence of conflict, the embodiments and features in the embodiments of this utility model can be combined with each other. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. An array-type high-frequency transformer, characterized in that, include: The transformer body (1) has two support blocks (5) fixedly installed on its bottom side, and each support block (5) has three fixing holes (19) on one side. The moving mechanism is set on the support block (5) for supporting and moving the transformer body (1); The locking mechanism is set on the support block (5) for locking the transformer body (1).
2. An array-type high-frequency transformer according to claim 1, characterized in that, The moving mechanism includes a plug plate (10), a locking groove (11), a locking block (12), a slot (13), a mounting groove (14), a mounting block (15), and a moving wheel (16). Each of the support blocks (5) has two insertion holes (9) on one side. The four insertion holes (9) are divided into two groups, and each plug plate (10) is inserted into the interior of each group of insertion holes (9).
3. An array-type high-frequency transformer according to claim 2, characterized in that, Each of the slots (13) is provided on the top side of the support block (5) for the locking block (12) to be inserted into, and each locking groove (11) is provided on the top of the insert plate (10) for the locking block (12) to be inserted into and locked.
4. An array-type high-frequency transformer according to claim 3, characterized in that, Each of the mounting slots (14) is opened on the bottom side of the insert plate (10). The mounting block (15) is inserted into the inside of the mounting slot (14). The movable wheel (16) is fixedly installed on the bottom side of the mounting block (15). The top side of the insert plate (10) is threaded with a fixing nut (17) corresponding to the mounting block (15). The top side of the mounting block (15) is provided with a threaded hole (18) for the fixing nut (17) to be threadedly connected.
5. An array-type high-frequency transformer according to claim 1, characterized in that, The locking mechanism includes a clamping block (6), a bolt (7), and a nut (8). The clamping block (6) is located at the bottom of the support block (5) and is adapted to the support block (5). Each clamping block (6) and the support block (5) have through holes on their bottom sides. Each bolt (7) passes through the interior of two through holes. The nut (8) is threaded to the outer wall of the bolt (7) and is used to adjust and fix the clamping block (6) and the support block (5).
6. An array-type high-frequency transformer according to claim 1, characterized in that, The transformer body (1) is fixedly provided with hanging blocks (3) on both sides, and each hanging block (3) has a hanging hole (4) on one side.
7. An array-type high-frequency transformer according to claim 6, characterized in that, The transformer body (1) has multiple heat dissipation holes arranged in an array on the top side, and each heat dissipation hole is equipped with a heat dissipation pipe (2).