Electron tube anode

By introducing an anode assembly and mating plate into the electron tube anode, the misalignment and tilting problems during anode docking are solved, enabling rapid and stable installation and efficient heat dissipation, thereby improving the overall stability and conductivity of the equipment.

CN223501801UActive Publication Date: 2025-10-31CHANGSHA HENGYANG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202423040470.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-10-31
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing electron tube anodes are prone to misalignment and tilting during docking, affecting the stability of the equipment.

Method used

The design employs an anode assembly and mating plate. The anode assembly includes an anode sheet, a bonding end, a mating end, and a heat dissipation end. It achieves rapid and stable installation through the cooperation of extrusion plates and mating grooves, and utilizes graphene material in one-piece stamping to improve conductivity stability and heat dissipation.

Benefits of technology

This enables rapid and stable installation of the anode, improves the conductivity and heat dissipation of the equipment, and ensures the efficient operation of the electron tube.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electron tube anode, which belongs to the field of electron tubes, and comprises a matching plate and two groups of anode assemblies, the anode assemblies are anode main bodies, the number of the anode assemblies is two, and the matching plate for assisting butt joint is arranged between the two groups of anode assemblies. The anode assembly is integrally formed by integrally stamping a graphene material, so that the electric conduction stability and the heat dissipation effect of the equipment can be effectively improved, the heat dissipation end is matched to assist components in heat dissipation, and the stability of the equipment is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of electron tubes, and specifically relates to an electron tube anode. Background Technology

[0002] A vacuum tube is one of the earliest electrical signal amplification devices. The cathode electron emitting part, control grid, accelerating grid, and anode leads are sealed in a glass container and soldered to the tube base. An electric field is used to inject electrons into the control grid in the vacuum to modulate the signal, and different parameter signal data after signal amplification or feedback oscillation are obtained at the anode. The anode is a very important and indispensable component in a vacuum tube.

[0003] Chinese utility model patent CN208675452U discloses an anode for an audio tube. The anode is a hollow structure with a cross-shaped cross section, formed by two identical molybdenum-coated half-anodes arranged opposite each other. Each half-anode includes an arched part and fixing plates symmetrically arranged on both sides of the arched part. Each fixing plate has a groove on its inner side, and several fixing holes are provided on one side of the groove near the outer edge of each fixing plate. Three fastening square holes are provided on the other side of the groove of each fixing plate, and fastening pieces are provided on the two opposite sides of each fastening square hole. The fastening pieces on both half-anodes are bent to one side for fixation.

[0004] The above design, through its design of the anode's own structure, can assist in the anode docking and ensure the stability of the anode during use. However, there are certain problems in actual use. Specifically, when the anode is docked, there is no auxiliary support in the middle, which makes it easy for the anode to misalign or tilt during use, affecting the stability of the equipment itself. Utility Model Content

[0005] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the present invention.

[0006] To address the problems mentioned in the background section, the present invention adopts the following technical solution.

[0007] An electron tube anode includes a mating plate and an anode assembly, wherein the anode assembly is the anode body, and two sets of anode assemblies are provided, with a mating plate for auxiliary docking installed between the two sets of anode assemblies.

[0008] As a preferred technical solution of this utility model, the mating plate includes a receiving plate, a docking groove and an extrusion plate. The receiving plate is disposed between two sets of anode components. The inner wall of the receiving plate is provided with docking grooves at equal intervals, and the extrusion plates are symmetrically installed at the side openings of the docking grooves.

[0009] As a preferred technical solution of this utility model, the extrusion sheet is in the shape of a twistable strip.

[0010] As a preferred technical solution of this utility model, the anode assembly includes an anode sheet and a mating end. The anode sheet is disposed on the side of the mating plate, and the mating end is symmetrically installed at the end of the anode sheet. A mating groove is provided on the side of the mating end near the mating groove.

[0011] As a preferred embodiment of the present invention, the anode assembly further includes a mating end, which is symmetrically fixedly installed on the surface of the mating end and is disposed on the side of the mating groove.

[0012] As a preferred embodiment of the present invention, the anode assembly further includes a heat dissipation end, which is fixedly installed at equal intervals on the outside of the anode plate.

[0013] As a preferred embodiment of this utility model, the anode sheet, bonding end, mating end, and heat dissipation end are integrally stamped.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0015] In this invention, by setting up an anode assembly and a mating plate, the anode can be installed and connected quickly and stably. The anode assembly is made of graphene material in one piece by stamping, which can effectively improve the conductivity and heat dissipation of the equipment itself. With the heat dissipation end, it can assist the components in heat dissipation and improve the stability of the equipment itself. Attached Figure Description

[0016] Figure 1 This is a perspective view of the overall structure of this utility model.

[0017] Figure 2 This is a perspective view of the structure of the mating plate and anode assembly of this utility model.

[0018] Figure 3 This is a top view of the anode assembly structure of this utility model.

[0019] Figure 4 This is a side view of the structure of the anode assembly in this utility model.

[0020] The correspondence between the labels and component names in the attached figures is as follows:

[0021] 1. Mating plate; 11. Receiving plate; 12. Butt groove; 13. Extrusion sheet; 2. Anode assembly; 21. Anode sheet; 22. Fitting end; 23. Mating end; 24. Heat dissipation end. Detailed Implementation

[0022] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0023] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0024] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that excludes other embodiments. The present invention provides the following embodiments.

[0025] Depend on Figure 1 As shown, it is a structural schematic diagram of the electron tube anode in this embodiment, including a mating plate 1 and an anode assembly 2. The anode assembly 2 is the anode body, and there are two sets of anode assemblies 2. A mating plate 1 for auxiliary docking is installed between the two sets of anode assemblies 2.

[0026] In use, by setting two sets of anode components 2 on both sides of the mating plate 1, and then attaching the anode components 2 to the side of the mating plate 1, the mating plate 1 and the anode components 2 are quickly connected and installed by utilizing the structure of the mating plate 1 itself and the mating plate 1. This forms a complete electron tube anode, ensuring the stability of the equipment during use.

[0027] From the appendix Figure 2 As shown, it is a structural schematic diagram of the mating plate 1 in this embodiment. The mating plate 1 includes a receiving plate 11, a docking groove 12 and an extrusion plate 13. The receiving plate 11 is disposed between two sets of anode components 2. The inner wall of the receiving plate 11 is provided with docking grooves 12 at equal intervals. The extrusion plates 13 are symmetrically installed at the side openings of the docking grooves 12.

[0028] In use, the anode assembly 2 is attached to the side of the receiving plate 11, ensuring that the internal groove of the anode assembly 2 is aligned with the docking groove 12. Then, the extrusion plate 13 is passed through the inside of the anode assembly 2, and the structure of the extrusion plate 13 is pressed to change its structure and shape. By utilizing the change in the structure of the extrusion plate 13, the anode assembly 2 is extruded, allowing the anode assembly 2 to be stably attached to both sides of the receiving plate 11, thus completing the assembly of the electron tube anode. The receiving plate 11 has grooves inside, which facilitates the subsequent docking and cooperation of internal components of the electron tube, and helps the equipment to operate stably.

[0029] From the appendix Figure 2 As shown, it is a structural schematic diagram of the mating plate 1 in this embodiment. The extrusion plate 13 is generally in the shape of a twistable strip. In use, by extruding the extrusion plate 13, the angle of the extrusion plate 13 is changed, so that the extrusion plate 13 can extrude and limit the anode assembly 2, thereby completing the installation of the anode assembly 2.

[0030] From the appendix Figure 3 As shown, it is a structural schematic diagram of the anode assembly 2 in this embodiment. The anode assembly 2 includes an anode sheet 21 and a mating end 22. The anode sheet 21 is disposed on the side of the mating plate 1, and the mating end 22 is symmetrically installed at the end of the anode sheet 21. A mating groove is provided on the side of the mating end 22 near the mating groove 12.

[0031] During use, the mating end 22 is mated to the side of the receiving plate 11, at which point the mating groove and the docking groove 12 are aligned. Then, the extrusion piece 13 is passed through the mating groove to complete the initial positioning of the anode piece 21, which facilitates subsequent installation and reinforcement.

[0032] From the appendix Figure 2 As shown, the anode assembly 2 also includes a mating end 23, which is symmetrically fixedly installed on the surface of the mating end 22 and is located on the side of the mating groove. During use, through the installation and fixation of the mating end 23, when the shape of the extrusion sheet 13 is twisted, the extrusion sheet 13 will press against the mating end 23 to ensure the stability of the mating end 22 and the anode sheet 21 during use.

[0033] From the appendix Figure 4 As shown, it is a structural schematic diagram of the anode assembly 2 in this embodiment. The anode assembly 2 also includes a heat dissipation end 24, which is fixedly installed at equal intervals on the outside of the anode plate 21. During use, the heat dissipation end 24 effectively disperses and dissipates the heat generated by the electron tube during operation. In addition, the design of the anode plate 21 and the heat dissipation end 24 allows the electron flow to pass smoothly, ensuring the efficient operation of the electron tube.

[0034] From the appendix Figure 4As shown, the anode plate 21, the bonding end 22, the mating end 23, and the heat dissipation end 24 are integrally stamped. In use, the anode assembly 2 is made of graphene material through stamping. The graphene material has a stable molecular structure, high strength, strong conductivity, and high temperature resistance, which improves the overall stability of the anode assembly 2 during use. The anode assembly 2 can continuously and stably deliver current, allowing customers to hear an effect close to the original sound during subsequent use.

[0035] The above description, in conjunction with specific embodiments, provides a further detailed explanation of the present utility model. It should not be construed that the specific implementation of the present utility model is limited to these descriptions. For those skilled in the art, several simple deductions or substitutions can be made without departing from the concept of the present utility model, and all such deductions or substitutions should be considered to fall within the scope of protection defined by the claims submitted by the present utility model.

Claims

1. An electron tube anode, characterized in that, It includes a mating plate (1) and an anode assembly (2). The anode assembly (2) is the anode body, and there are two sets of anode assemblies (2). A mating plate (1) for auxiliary docking is installed between the two sets of anode assemblies (2).

2. The electron tube anode according to claim 1, characterized in that: The mating plate (1) includes a receiving plate (11), a docking groove (12), and an extrusion plate (13). The receiving plate (11) is disposed between two sets of anode components (2). The receiving plate (11) has docking grooves (12) equidistantly opened on the inner wall of the receiving plate (11). The extrusion plates (13) are symmetrically installed at the side openings of the docking grooves (12).

3. The electron tube anode according to claim 2, characterized in that: The extrusion sheet (13) is generally in the shape of a twistable strip.

4. The electron tube anode according to claim 2, characterized in that: The anode assembly (2) includes an anode plate (21) and a mating end (22). The anode plate (21) is disposed on the side of the mating plate (1), and the mating end (22) is symmetrically installed at the end of the anode plate (21). The mating end (22) has a mating groove on the side near the mating groove (12).

5. The electron tube anode according to claim 4, characterized in that: The anode assembly (2) also includes a mating end (23), which is symmetrically fixedly installed on the surface of the mating end (22) and is located on the side of the mating groove.

6. The electron tube anode according to claim 5, characterized in that: The anode assembly (2) also includes a heat dissipation end (24), which is fixedly installed at equal intervals on the outside of the anode plate (21).

7. The electron tube anode according to claim 6, characterized in that: The anode plate (21), the bonding end (22), the mating end (23), and the heat dissipation end (24) are integrally stamped.

Citation Information

Patent Citations

  • Positive pole of audio frequency electron tube

    CN208675452U