An electric soldering iron stand
Patent Information
- Application Number
- CN202521630060.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-08-01
AI Technical Summary
[0003]目前,已经有部分厂家在电烙铁支架上设置供烙铁头插入的插孔,以收纳烙铁头,但用户在更换不同规格形状的烙铁头并进行收纳时,烙铁头的拆卸、暂存以及收纳需要分步完成,用户需要多次调整手持姿势和操作位置,辅助拆卸与收纳动线不连贯,这不仅延长作业时间,更影响焊接工作的连续性,尤其在高密度焊接场景下严重降低效率
[0017]依据本实用新型实施例公开的电烙铁支架,包括基座,基座包括电烙铁卡槽、插拔槽和烙铁头收纳槽,其中,电烙铁卡槽倾斜设置在基座上并具有放置通道,插拔槽位于电烙铁卡槽的至少一侧并具有预设长度的插拔通道,并且插拔槽的第二槽口朝向与电烙铁卡槽的第一槽口朝向相同且插拔槽的第二槽口形状为V型以辅助电烙铁的手柄与烙铁头之间的拆卸,烙铁头收纳槽则与插拔通道连通,以便于用户借助插拔通道从电烙铁的手柄上拆下烙铁头后,能够直接通过与插拔通道连通的烙铁头收纳槽对拆下来的烙铁头进行收纳,用户无需再从插拔通道内取出烙铁头再进行收纳,提高了烙铁头拆卸与收纳的操作流畅度和便捷度,改善用户体验。
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Figure CN224688108U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic welding equipment, specifically to a soldering iron stand. Background Technology
[0002] As a core tool for electronic soldering, soldering irons are usually stored using soldering iron stands. Traditional soldering iron stands typically only provide simple placement functions, such as grooves or clips on the base to fix the soldering iron handle. However, different soldering iron tips of different shapes are often required in different scenarios. Since the soldering iron tips are not large, they also need to be stored together.
[0003] Currently, some manufacturers have set up sockets on soldering iron stands for inserting soldering iron tips to store them. However, when users change to different sizes and shapes of soldering iron tips and store them, the disassembly, temporary storage, and storage of the soldering iron tips need to be done in steps. Users need to adjust their hand position and operating position multiple times, which makes the disassembly and storage process discontinuous. This not only prolongs the operation time but also affects the continuity of the soldering work, especially in high-density soldering scenarios, which seriously reduces efficiency.
[0004] Therefore, providing a soldering iron stand that integrates soldering iron placement, soldering tip disassembly assistance, and integrated storage functions while improving user fluency and convenience has become an urgent technical problem to be solved. Utility Model Content
[0005] Based on the above situation, the main purpose of this utility model is to provide a soldering iron stand that integrates the functions of soldering iron placement, soldering tip disassembly assistance and integrated storage, while improving the user's smoothness and convenience.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows: In a first aspect, this utility model discloses a soldering iron stand, including a base, the base comprising: The soldering iron slot is inclinedly set on the base and has a placement channel of a preset length; A plug-in slot is located on at least one side of the soldering iron slot and has a plug-in channel of a preset length. The second opening of the plug-in slot faces the same direction as the first opening of the soldering iron slot. The second opening is V-shaped to assist in the disassembly of the soldering iron handle and the soldering iron tip. The soldering iron tip storage slot is connected to the plug-in / plug-out channel.
[0007] Optionally, one end of the soldering tip storage slot is located on the central axis of the insertion / removal channel.
[0008] Optionally, the base further includes: The insertion hole is located on the same plane as the second slot of the insertion slot, and the shape of the insertion hole is adapted to the shape of the tip of the soldering iron to assist the soldering iron handle in connecting with the soldering iron tip.
[0009] Optionally, the base further includes a cleaning section, which includes a cleaning component and a cleaning window, wherein: The cleaning component is fixedly installed inside the base; The cleaning window at least partially covers the cleaning component, and the orientation of the cleaning window is the same as the orientation of the first slot of the soldering iron slot.
[0010] Optionally, the base further includes: A placement platform is located at the bottom of the base, and a cleaning sponge is placed inside the placement platform.
[0011] Optionally, the base is provided with a first receiving cavity and a second receiving cavity that are separated, wherein: The first receiving cavity is provided with a drive circuit board for driving the cleaning component to rotate; the cleaning component is disposed in the second receiving cavity and is electrically connected to the drive circuit board.
[0012] Optionally, the cleaning unit further includes: A sensor for sensing the soldering iron is electrically connected to the drive circuit board. The sensor is disposed in the second receiving cavity, between the entrance end face of the cleaning window and the outer tangential face of the cleaning component.
[0013] Optionally, the base further includes: A collection box is disposed within the second receiving cavity and is detachably connected to the housing of the base.
[0014] Optionally, the base is provided with a power interface for supplying power to the sensor.
[0015] Optionally, the base is further provided with a connecting hole for connecting a support rod, and the connecting hole and the insertion / removal channel are located on the same plane.
[0016] Beneficial effects:
[0017] The soldering iron holder disclosed in this utility model embodiment includes a base, which includes a soldering iron slot, a plug-in slot, and a soldering tip storage slot. The soldering iron slot is inclinedly disposed on the base and has a placement channel. The plug-in slot is located on at least one side of the soldering iron slot and has a plug-in channel of a preset length. The second opening of the plug-in slot faces the same direction as the first opening of the soldering iron slot, and the second opening of the plug-in slot is V-shaped to assist in the disassembly and reassembly of the soldering iron handle and the soldering tip. The soldering tip storage slot communicates with the plug-in channel, so that after the user removes the soldering tip from the soldering iron handle using the plug-in channel, the removed soldering tip can be directly stored in the soldering tip storage slot communicating with the plug-in channel. The user does not need to take the soldering tip out of the plug-in channel for storage, which improves the smoothness and convenience of soldering tip disassembly and storage, and enhances the user experience.
[0018] Other beneficial effects of this utility model will be explained in detail through the introduction of specific technical features and technical solutions in the specific embodiments. Those skilled in the art should be able to understand the beneficial technical effects brought about by the technical features and technical solutions through the introduction of these technical features and technical solutions. Attached Figure Description
[0019] The preferred embodiment of the soldering iron stand of this utility model will be described below with reference to the accompanying drawings. In the drawings: Figure 1 This is a schematic diagram of the structure of a soldering iron stand disclosed in this embodiment when a soldering iron is placed; Figure 2 This is a schematic diagram of the structure of a soldering iron holder disclosed in this embodiment when a soldering iron is placed, taken from another angle. Figure 3 This is a schematic diagram of the structure of a soldering iron stand disclosed in this embodiment; Figure 4 This is a schematic diagram of the structure of the soldering iron holder disclosed in this embodiment in the direction of the first surface; Figure 5 This is a cross-sectional structural diagram of the soldering iron stand disclosed in this embodiment; Figure 6 This is a schematic diagram of the soldering iron stand disclosed in this embodiment from another direction. Detailed Implementation
[0020] The present invention will now be described based on embodiments, but the present invention is not limited to these embodiments. In the following detailed description of the present invention, some specific details are described in detail, but well-known methods, processes, procedures, and elements are not described in detail in order to avoid obscuring the essence of the present invention.
[0021] Furthermore, those skilled in the art should understand that the accompanying drawings provided herein are for illustrative purposes only and are not necessarily drawn to scale.
[0022] Unless the context explicitly requires it, the words "comprising," "including," and similar terms throughout the specification and claims should be interpreted as encompassing rather than being exclusive or exhaustive; that is, meaning "including but not limited to."
[0023] In the description of this utility model, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0024] To improve user experience and convenience while integrating soldering iron placement, soldering tip removal assistance, and integrated storage functions, this embodiment discloses a soldering iron stand. Please refer to [reference needed]. Figure 1 , Figure 1 This is a schematic diagram of the structure of a soldering iron holder disclosed in this embodiment when a soldering iron is placed.
[0025] like Figure 1 As shown, the soldering iron 20 is placed on a soldering iron stand, which includes a base 10. To facilitate understanding of the positional relationship between the components on the base 10, as shown... Figure 1 As shown, the base 10 includes a first surface 101, a second surface 102 and a third surface 103. The first surface 101 and the second surface 102 have a certain angle of inclination, and the second surface 102 and the third surface 103 also have a certain angle of inclination. The positional relationship between the components on the base 10 will be described in detail below in conjunction with the three surfaces of the base 10.
[0026] Please see Figure 2 and Figure 3 , Figure 2 This is a schematic diagram of the structure of a soldering iron holder disclosed in this embodiment, viewed from another angle when the soldering iron is placed. Figure 3 This is a schematic diagram of the structure of a soldering iron stand disclosed in this embodiment.
[0027] like Figure 2 and Figure 3As shown, the base 10 includes a soldering iron slot 11 for placing a soldering iron 20. The soldering iron slot 11 is inclinedly disposed on the base 10 and extends a predetermined length toward the rear of the base 10 to form a placement channel 111. When the user places the soldering iron 20 into the soldering iron slot 11, the second slot 122 of the soldering iron slot 11 engages the handle 21 of the soldering iron 20, and the soldering tip 22 of the soldering iron 20 is located within the placement channel 111. Furthermore, the length of the placement channel 111 should be such that when the soldering iron 20 is placed in the soldering iron slot 11, the soldering tip 22 of the soldering iron 20 does not contact the other end of the placement channel 111.
[0028] In practical implementation, the soldering iron slot 11 is an open slot, meaning that at least part of the soldering iron slot 11 is connected to the external environment, thereby facilitating heat dissipation of the soldering tip 22 of the soldering iron 20. It can be understood that the soldering iron slot 11 can be entirely open or partially open. Preferably, the soldering iron slot 11 can be designed as an entirely open slot.
[0029] like Figure 2 and Figure 3 As shown, the base 10 also includes a plug-in slot 12, which assists the user in removing the soldering tip 22 from the handle 21 of the soldering iron 20. The plug-in slot 12 is located on one side of the soldering iron slot 11 and also has a plug-in channel 121 of a preset length. When the user removes the soldering tip 22 using the plug-in slot 12, the soldering tip 22 is at least partially located within the plug-in channel 121. Furthermore, the second opening 122 of the plug-in slot 12 faces the same direction as the first opening 112 of the soldering iron slot 11. That is, the second opening 122 of the plug-in slot 12 is located on the first plane 101 of the base 10, the first opening 112 of the soldering iron slot 11 is also located on the first plane 101 of the base 10, and the plug-in channel 121 can be located on the second plane 102 of the base 10. In actual use, users can directly remove the soldering iron 20 from the soldering iron slot 11. With just a slight movement, the soldering iron tip 22 can be disassembled and replaced in the same direction, thereby improving the user's convenience and smoothness of operation.
[0030] The second slot 122 of the plug-in slot 12 is V-shaped. This V-shape, wider at the top and narrower at the bottom, allows the plug-in slot 12 to hold soldering iron tips of different sizes when pulled out, providing leverage at the V-shaped second slot 122 to facilitate user removal of the soldering iron tip 22. In practical use, the user inserts the soldering iron tip 22 of the soldering iron 20 into the plug-in slot 12, using the V-shaped second slot 122 to hold the tip, thus removing the tip 22 from the handle 21. In implementation, the number of plug-in slots 12 can be one, two, or more. Preferably, there are two plug-in slots 12, symmetrically arranged on both sides of the soldering iron holder 11.
[0031] like Figure 2 and Figure 3 As shown, the base 10 also includes a soldering tip storage slot 13, which is used to store soldering tips 22. Temporarily unused soldering tips 22 can be stored on the soldering iron stand for easy replacement. The soldering tip storage slot 13 is connected to the plug-in channel 121. When the user removes the soldering tip 22 using the plug-in slot 12, the soldering tip 22 is at least partially located within the plug-in channel 121. At this time, only a slight movement is needed to easily insert the removed soldering tip 22 into the soldering tip storage slot 13 connected to the plug-in channel 121, without requiring the user to remove the removed soldering tip 22 from the plug-in channel 121 and place it elsewhere, thereby improving the smoothness and convenience of the soldering tip removal and storage operation.
[0032] In an optional embodiment, one end of the soldering tip storage slot 13 is located on the central axis of the plug-in channel 121. Since the soldering tip is approximately located on the central axis of the plug-in channel 121 when the user removes the soldering tip using the plug-in slot 12, passing one end of the soldering tip storage slot 13 through the central axis of the plug-in channel 121 allows the soldering tip 22 to be directly placed from the plug-in channel 121 into the soldering tip storage slot 13 when the user removes the soldering tip using the plug-in slot 12. The user can adjust the position of the soldering tip 22 in the soldering tip storage slot 13 so that the soldering tip 22 is stably stored in the soldering tip storage slot 13, further improving the smoothness and convenience of the soldering tip 22 removal and storage operation.
[0033] In practice, the number of soldering tip storage slots 13 can be one, two, or more. Preferably, each insertion / removal channel 121 is connected to two soldering tip storage slots 13, and the two soldering tip storage slots 13 are arranged one above the other.
[0034] In optional embodiments, such as Figure 2 and Figure 3As shown, the base 10 also includes a insertion hole 14, which is disposed on the surface of the base 10. Specifically, the insertion hole 14 is located on the same plane as the first slot 112 of the soldering iron slot 11 and the second slot 122 of the insertion / removal slot 12. It should be noted that the same plane here does not refer to the same plane in a spatial coordinate system, but rather that they are all disposed on the same plane of the base 10, for example, on the first surface 101 of the base 10. By disposing the insertion hole 14, the first slot 112 of the soldering iron slot 11, and the second slot 122 of the insertion / removal slot 12 on the same plane, the user only needs to operate in one direction (e.g., on the first surface 101 of the base 10), thereby improving the convenience of user operation and enhancing the user experience.
[0035] Furthermore, the shape of the connector 14 is adapted to the shape of the tip of the soldering iron 22, thereby facilitating the connection between the handle 21 of the soldering iron 20 and the soldering iron tip 22. It is understood that the shape of the connector 14 is considered compatible as long as it can fit any position on the tip of the soldering iron 22; a perfect fit is not required. In actual use, the user can directly insert the handle 21 of the soldering iron 20 into the soldering iron tip 22 located in the soldering iron tip storage slot 13 to achieve an initial connection between the soldering iron tip 22 and the handle 21. Then, the user can insert the soldering iron tip 22 into the connector 14, push the handle 21 in firmly, and use the connector 14 to hold the soldering iron tip 22, thereby facilitating a secure connection between the handle 21 and the soldering iron tip 22.
[0036] In an optional embodiment, please refer to Figure 4 , Figure 4 This is a schematic diagram of the soldering iron holder disclosed in this embodiment in the direction of the first surface. Figure 2 and Figure 4 As shown, the base 10 also includes a cleaning section 15, which includes a cleaning element 151 and a cleaning window 152. The cleaning element 151 is fixedly disposed inside the base 10, and the cleaning window 152 at least partially covers the cleaning element 151. That is, the cleaning element 151 can be at least partially exposed through the cleaning window 152, so that the user can insert the soldering iron tip 22 into the cleaning window 152 and clean the soldering iron tip 22 using the internal cleaning element 151. Furthermore, the orientation of the cleaning window 151 is the same as the orientation of the first slot 112 of the soldering iron slot 11, the second slot 122 of the plug-in slot 12, and the plug-in hole 14. For example, they can all face the front of the base 10, so that the user only needs to operate in one direction (e.g., on the first surface 101 of the base 10), thereby improving the convenience and smoothness of user operation and enhancing the user experience.
[0037] In an optional embodiment, the cleaning component 151 may be a metal scouring pad, which is used to scrape off solder and other materials adhering to the soldering iron tip 22.
[0038] In another alternative embodiment, please refer to Figure 5 , Figure 5 This is a schematic cross-sectional view of the soldering iron stand disclosed in this embodiment. Figure 5 As shown, the base 10 has a separated first receiving cavity 104 and a second receiving cavity 105, meaning that the first receiving cavity 104 and the second receiving cavity 105 are not connected. The first receiving cavity 104 contains a drive circuit board for driving the cleaning component 151 to rotate. The drive circuit board is electrically connected to the cleaning component 151 and drives the cleaning component 151 to rotate, thereby cleaning the soldering tip 22 of the soldering iron 20. In a specific implementation, the cleaning component 151 can be a cleaning brush, specifically a copper brush.
[0039] The cleaning component 151 is disposed in the second receiving cavity 105. When the cleaning component 151 cleans the soldering tip 22 of the soldering iron 20, cleaning waste will be generated. Therefore, separating the first receiving cavity 104 and the second receiving cavity 105 can, on the one hand, collect the cleaning waste in the second receiving cavity 105 for easy cleaning; on the other hand, it can prevent the cleaning waste from entering the first receiving cavity 104 and also prevent the cleaning waste from affecting the drive circuit board located in the first receiving cavity 104.
[0040] In an optional embodiment, the cleaning unit 15 further includes a sensor (not shown) for sensing the soldering iron 20. The sensor is electrically connected to the drive circuit board to send a sensing signal to the drive circuit board, causing the drive circuit board to control the rotation of the cleaning component 151. The sensor is disposed within the second receiving cavity 105, between the entrance end face of the cleaning window 152 and the outer tangential surface of the cleaning component 151.
[0041] In this embodiment, the sensor can be an induction coil used to identify metal. When the sensor detects that the component entering the cleaning window 152 is a metal component, it sends a sensing signal to the drive circuit board, causing the drive circuit board to control the rotation of the cleaning component 151; when the sensor detects that the component entering the cleaning window 152 is not a metal component, it does not send a sensing signal, and the cleaning component 151 will not rotate.
[0042] To more accurately control the rotation of the cleaning component 151, the position of the soldering tip 22 of the inductive soldering iron 20 can be controlled by a sensor located inside the second receiving cavity 105. In specific implementation, the sensor can be located on the inner wall of the second receiving cavity 105. Furthermore, the sensor is specifically located between the entrance end face of the cleaning window 152 and the outer tangential surface of the cleaning component 151. The outer tangential surface of the cleaning component 151 is the outer tangential surface of the cleaning component 151 closest to the entrance of the cleaning window 152. Preferably, the outer tangential surface of the cleaning component 151 can be the outer tangential surface of the point on the circumference of the cleaning component 151 closest to the entrance of the cleaning window 152 during rotation. Since the cleaning component 151 may pick up cleaning waste, including metal materials, when cleaning the soldering tip 22 of the soldering iron 20, placing the sensor between the entrance end face of the cleaning window 152 and the outer tangential surface of the cleaning component 151 can prevent the sensor from sensing the cleaning waste residue on the cleaning component 151 and generating erroneous sensing signals, thereby improving the accuracy of controlling the cleaning component 151.
[0043] In an optional embodiment, please refer to Figure 6 , Figure 6 This is a schematic diagram of the soldering iron stand disclosed in this embodiment from another direction. Figure 6 As shown, the base 10 is also provided with a power interface 181 for powering the sensor. The power interface 181 can be located on the third surface 103 of the base 10. The user can operate the soldering iron 20 on the first surface 101 and the second surface 102 of the base 10, and connect the power supply to the power interface 181 on the third surface 103 to power the sensor. This allows the sensor to drive the cleaning component 151 to clean the soldering iron tip 22 when it senses that the soldering iron tip 22 has entered the cleaning window 152. The two functions of using the soldering iron and powering the soldering iron holder are separately located on different surfaces of the base 10. The two functions do not interfere with each other and will not affect each other even if there is a power harness.
[0044] In optional embodiments, such as Figure 4 and Figure 5 As shown, the base 10 also includes a collection box 17, which is disposed within the second receiving cavity 105 to collect waste material removed by the cleaning component 151 during the cleaning process. The collection box 17 is detachably connected to the housing of the base 10, allowing the cleaning waste in the collection box 17 to be emptied by disassembling it, thereby improving the convenience of cleaning the cleaning waste and thus improving the cleaning effect on the soldering iron tip 20. In specific implementations, the collection box 17 can be disposed at the bottom of the base 10, sharing a portion of the housing with the bottom of the base 10, or it can be disposed inside the base 10 and can be removed from the base 10 by means of pulling or other methods.
[0045] In optional embodiments, such as Figures 3 to 5 As shown, the base 10 also includes a placement platform 16, which is located at the bottom of the base 10. A damp cleaning sponge 161 is placed inside the placement platform 16. The placement platform 16 is positioned along the same extending direction as the first slot 112 of the soldering iron slot 11, the second slot 122 of the plug-in slot 12, and the plug-in hole 14. For example, they are all generally located on the first surface 101 of the base 10. However, it is not required that the placement platform 16 be completely on the same coordinate plane as the first slot 112 of the soldering iron slot 11, the second slot 122 of the plug-in slot 12, and the plug-in hole 14; they only need to be approximately along the direction of the first surface 101 of the base 10. In actual use, the cleaning, storage, disassembly, and assembly of the soldering iron 20 are all performed in the same direction, thereby further improving the convenience and smoothness of user operation and enhancing the user experience.
[0046] In the specific implementation process, the arrangement order of the components on the first surface 101 is as follows: the placement platform 16 is located at the bottom of the base 10, the cleaning section 15 is located above the placement platform 16, the soldering iron slot 11 is located above the cleaning section 15, and the plug-in slot 12 and the plug-in hole 14 are respectively located on both sides of the soldering iron slot 11. Arranging the components according to their functions not only facilitates storage, cleaning, and use, but also conforms to user habits, providing a better user experience.
[0047] In an optional embodiment, the base 10 is provided with a connection interface 182 for connecting external components. In a specific implementation, the connection interface 182 can be a USB interface, and the external component can be a fan for exhausting the fumes generated during the operation of the soldering iron tip 22. In a specific implementation, when the soldering iron 20 is removed from the base 10 and starts working, the fan is powered to exhaust the fumes; when the soldering iron 20 is placed on the base 10, the fan is powered off and enters sleep mode.
[0048] In an optional embodiment, the base 10 is also provided with a connection hole 183 for connecting a support rod. The connection hole 183 and the insertion channel 121 are located on the same plane, for example, both are located on the second surface 102 of the base 10. The connection hole 183 can be located below the insertion channel 121. The connection hole 183 can be fastened to the support rod by means of a thread or a snap-fit structure. The support rod can be used to place wire harnesses or other objects that need to be stored or hung.
[0049] The soldering iron holder disclosed in this utility model embodiment includes a base, which includes a soldering iron slot, a plug-in slot, and a soldering tip storage slot. The soldering iron slot is inclinedly disposed on the base and has a placement channel. The plug-in slot is located on at least one side of the soldering iron slot and has a plug-in channel of a preset length. The opening of the plug-in slot faces the same direction as the opening of the soldering iron slot, and the opening shape of the plug-in slot is V-shaped to assist in the disassembly and reassembly of the soldering iron handle and the soldering tip. The soldering tip storage slot communicates with the plug-in channel, so that after the user removes the soldering tip from the soldering iron handle using the plug-in channel, the removed soldering tip can be directly stored in the soldering tip storage slot communicating with the plug-in channel. The user does not need to take the soldering tip out of the plug-in channel for storage, which improves the smoothness and convenience of the soldering tip disassembly and storage operation and enhances the user experience.
[0050] Those skilled in the art will understand that, without conflict, the above-mentioned preferred solutions can be freely combined and superimposed.
[0051] It should be understood that the above-described embodiments are merely exemplary and not restrictive. Without departing from the basic principles of this utility model, any obvious or equivalent modifications or substitutions made by those skilled in the art regarding the above details will be included within the scope of the claims of this utility model.
Claims
1. A soldering iron stand, characterized in that, Includes a base (10), said base (10) comprising: The soldering iron slot (11) is inclinedly set on the base (10) and has a placement channel (111) of a preset length. A plug-in slot (12) is located on at least one side of the soldering iron slot (11) and has a plug-in channel (121) of a preset length. The second slot (122) of the plug-in slot (12) faces the same direction as the first slot (112) of the soldering iron slot (11). The second slot (122) is V-shaped to assist in the disassembly of the soldering iron handle and the soldering iron tip. The soldering tip storage slot (13) is connected to the plug-in channel (121).
2. The soldering iron stand according to claim 1, characterized in that, One end of the soldering iron tip storage slot (13) is located on the central axis of the insertion and removal channel (121).
3. The soldering iron stand according to claim 1, characterized in that, The base (10) also includes: The insertion hole (14) is located on the same plane as the second slot (122) of the insertion slot (12), and the shape of the insertion hole (14) is adapted to the shape of the tip of the soldering iron to assist the soldering iron handle in connecting with the soldering iron tip.
4. The soldering iron stand according to claim 1, characterized in that, The base (10) further includes a cleaning section (15), which includes a cleaning component (151) and a cleaning window (152), wherein: The cleaning component (151) is fixedly disposed inside the base (10); The cleaning window (152) at least partially covers the cleaning component (151), and the orientation of the cleaning window (152) is the same as the orientation of the first slot (112) of the soldering iron slot (11).
5. The soldering iron stand according to claim 1, characterized in that, The base (10) also includes: A placement platform (16) is provided at the bottom of the base (10), and a cleaning sponge (161) is placed inside the placement platform (16).
6. The soldering iron stand according to claim 4, characterized in that, The base (10) is provided with a first receiving cavity (104) and a second receiving cavity (105) that are separated, wherein: The first receiving cavity (104) is provided with a drive circuit board for driving the cleaning component (151) to rotate; the cleaning component (151) is provided in the second receiving cavity (105) and is electrically connected to the drive circuit board.
7. The soldering iron stand according to claim 6, characterized in that, The cleaning unit (15) also includes: The sensor for sensing the soldering iron is electrically connected to the drive circuit board. The sensor is disposed in the second receiving cavity (105) between the entrance end face of the cleaning window (152) and the outer tangent face of the cleaning component (151).
8. The soldering iron stand according to claim 6, characterized in that, The base (10) also includes: The collection box (17) is disposed in the second receiving cavity (105) and is detachably connected to the housing of the base (10).
9. The soldering iron stand according to claim 7, characterized in that, The base (10) is provided with a power interface (181) for supplying power to the sensor.
10. The soldering iron stand according to claim 1, characterized in that, The base (10) is also provided with a connection hole (183) for connecting the support rod, and the connection hole (183) and the plug-in channel (121) are located on the same plane.