Ironing equipment for probe seat

By designing a probe seat ironing equipment including a base, a ironing mechanism and a driving mechanism, the problems of low ironing efficiency and poor consistency of the protruding points of the probe seat shell in the prior art are solved, and a more efficient and consistent ironing effect is achieved, and assembly efficiency and quality are improved.

CN222858792UActive Publication Date: 2025-05-13STELIGHT INSTR CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421894599.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-05-13
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

In the prior art, the ironing efficiency of the convex points on the probe seat housing is low and the consistency is poor, resulting in low assembly efficiency and quality.

Method used

A probe base ironing device including a base, a ironing mechanism and a driving mechanism is designed, and the ironing mechanism can be moved vertically in a controlled manner to ensure precise contact and ironing with the protruding points of the probe base housing.

Benefits of technology

Improves ironing efficiency and consistency, ensures the flatness and reliability of the probe seat shell, and improves assembly efficiency and aesthetics.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222858792U_ABST
    Figure CN222858792U_ABST
Patent Text Reader

Abstract

The utility model provides ironing equipment for a probe seat, and relates to the technical field of probe seat installation. The ironing equipment comprises the base, the ironing mechanism and the driving mechanism, the driving mechanism can controllably drive the ironing mechanism to move in the vertical direction, the ironing mechanism moves to make contact with the protruding points on the top of the shell of the probe base and can iron the protruding points, and therefore assembling of the shell of the probe base is completed. Compared with the prior art that the salient points are sequentially ironed manually, all the salient points on the shell of the probe base can be ironed at a time through the technical scheme, the ironing efficiency is improved, the ironing flatness can be guaranteed, the ironing effect is improved, and the attractiveness is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of probe seat installation, in particular to an ironing device for a probe seat. Background Art

[0002] In the prior art, the test head used for wafer electrical performance testing usually includes a probe card and several probe seats (Pogosets). Each probe seat is provided with a certain number of probes. Any probe contacts the probe card to dock with the corresponding pad of the wafer for electrical performance testing. During the test head assembly process, each probe seat is assembled separately as an independent module and then assembled in combination according to the specification requirements of the test equipment.

[0003] Usually, the probe seat includes a metal shell and an insulating shell. The insulating shell is covered on the surface of the metal shell to improve the insulation performance of the probe seat, so as to improve the reliability of the probe seat. The insulating shell is usually made of ABS material. When the shell of the probe seat is assembled, the raised structure provided by the insulating shell passes through the metal shell and forms a convex point protruding from the surface of the metal shell. The connection and assembly of the metal shell and the insulating shell can be realized by ironing and melting, and the flatness of the surface of the probe seat can be achieved. Therefore, it is necessary to iron this part of the insulating convex point to complete the installation of the probe shell. At present, the convex points are mainly ironed by hand-held electric soldering irons, and the convex points need to be operated one by one. The above method is inefficient, and since the handheld device cannot guarantee the flatness of the ironing, poor consistency will occur. Utility Model Content

[0004] One purpose of the utility model is to provide an ironing device for a probe seat, so as to solve the technical problems of low ironing efficiency and poor consistency of convex points on the shell of the probe seat in the prior art.

[0005] Another object of the utility model is to improve the stability of the ironing plate along the vertical movement.

[0006] In particular, the utility model provides an ironing device for a probe seat, comprising:

[0007] A base having a mounting position for placing a probe seat, wherein the top of the housing of the probe seat has at least one raised convex point;

[0008] An ironing mechanism, located at the top of the installation position, and configured to move vertically in a controlled manner to contact with and iron the convex points, thereby completing the assembly of the housing of the probe seat;

[0009] The driving mechanism is located at the top of the ironing mechanism and is used to drive the ironing mechanism to move vertically.

[0010] Optionally, the ironing mechanism comprises:

[0011] An ironing plate, located at the top of the installation position and arranged to float vertically;

[0012] The heating component is located on the top of the ironing plate and is arranged to float vertically. The heating component is arranged to move downward under the downward pressure of the driving mechanism until it abuts against the ironing plate to heat the ironing plate and drive the ironing plate to descend to a position in contact with the protrusions.

[0013] Optionally, it also includes:

[0014] At least one guide shaft is mounted on the base, the guide shaft extends from the base toward the top of the base and passes through the heating component to allow the heating component to move along the guide shaft;

[0015] At least one first elastic member is sleeved on the corresponding guide shaft, and the heating component is configured to move downward and compress the first elastic member when subjected to the downward pressure of the driving mechanism; and to move upward and reset through the resilience of the first elastic member when the downward pressure of the driving mechanism is removed.

[0016] Optionally, the heating component comprises:

[0017] Heating plate;

[0018] at least one heating rod installed inside the heating plate and used to heat the heating plate;

[0019] The temperature sensor is installed inside the heating plate and is used to detect the actual temperature of the heating plate.

[0020] Optionally, the bottom of the heating plate has a limiting groove for limiting the ironing plate, and the heating plate is configured to engage the limiting groove with the ironing plate when moving downward, and drive the ironing plate to move downward.

[0021] Optionally, the driving mechanism includes a connecting rod extending vertically, and the ironing mechanism further includes:

[0022] The lifting assembly comprises a lifting plate located on the top of the heating assembly, the two ends of the lifting plate are respectively connected to the ironing plate, and the lifting plate comprises a through hole for passing the connecting rod, and the lifting plate is configured to drive the ironing plate to move vertically when the connecting rod moves vertically in a controlled manner.

[0023] Optionally, the connecting rod has a connecting section passing through the lifting plate, and a first limiting portion is provided at the bottom of the connecting section. The connecting rod is configured to drive the lifting plate to move upward when it moves upward until the lifting plate abuts against the first limiting portion, thereby driving the ironing plate to move upward.

[0024] Optionally, the driving mechanism further comprises:

[0025] A pressing plate is connected to the bottom of the connecting rod, and the pressing plate is configured to abut against the heating assembly after being moved downward in a controlled manner.

[0026] Optionally, the ironing mechanism further includes:

[0027] A pair of reset components are respectively arranged on both sides of the installation position, and the reset components include a first bracket, the first bracket has a pair of guide grooves extending vertically, and the ironing plate has a pair of guide rods respectively protruding into the corresponding guide grooves, and the guide rods can slide along the corresponding guide grooves.

[0028] Optionally, the reset component further includes:

[0029] A pair of second elastic members, arranged in a vertical direction, one end of the second elastic member is connected to the corresponding guide rod, and the other end is connected to the first bracket;

[0030] A support member is installed on the first bracket and is located below the ironing plate, and is used to support and limit the ironing plate.

[0031] Optionally, a cooling channel is provided inside the base, and the cooling channel is connected to an external cooling device for cooling the base after the outer shell of the probe seat is assembled.

[0032] Optionally, the ironing mechanism further includes a connecting piece connected to the ironing plate, and the connecting piece extends from the ironing plate toward below the base; the ironing device further includes:

[0033] A box body, located below the base;

[0034] A travel switch is installed inside the box, and the travel switch has an abutment portion;

[0035] A time relay is installed inside the box and connected to the travel switch;

[0036] A buzzer is installed inside the box and connected to the time relay;

[0037] The time relay is configured to start timing after the ironing plate moves downward until the connecting member presses the abutting portion of the travel switch downward by a preset distance;

[0038] The buzzer is configured to turn on after the time relay completes timing.

[0039] Optionally, the driving mechanism further comprises:

[0040] A toggle clamp is connected to the top of the connecting rod, and the toggle clamp is configured to drive the connecting rod to move downward when subjected to a downward force, and to drive the connecting rod to move upward when subjected to an upward force.

[0041] The ironing device in the utility model includes a base, an ironing mechanism and a driving mechanism. The driving mechanism can controllably drive the ironing mechanism to move vertically. The ironing mechanism moves to contact with the convex points on the top of the shell of the probe seat and can iron the convex points, thereby completing the assembly of the shell of the probe seat. Equivalent to the method of manually ironing the convex points in sequence in the prior art, the above technical solution can iron all the convex points on the shell of the probe seat at one time, improve the ironing efficiency, and can ensure the flatness of the ironing, improve the ironing effect and improve the aesthetics.

[0042] Furthermore, the ironing mechanism in the utility model further includes a pair of reset components respectively arranged on both sides of the installation position, the reset components including a first bracket, the first bracket having a pair of guide grooves extending vertically, the ironing plate having a pair of guide rods respectively protruding into the corresponding guide grooves, the guide rods being able to slide along the corresponding guide grooves. The above technical solution guides the ironing plate by setting the guide grooves and the guide rods, thereby improving the stability of the ironing plate in vertical movement.

[0043] Based on the detailed description of the specific embodiments of the present invention in combination with the accompanying drawings below, those skilled in the art will become more aware of the above and other purposes, advantages and features of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Hereinafter, some specific embodiments of the present invention will be described in detail in an exemplary and non-limiting manner with reference to the accompanying drawings. The same reference numerals in the accompanying drawings indicate the same or similar components or parts. It should be understood by those skilled in the art that these drawings are not necessarily drawn to scale. In the accompanying drawings:

[0045] Figure 1 is a schematic structural diagram of an ironing device according to an embodiment of the utility model at one angle;

[0046] Figure 2 is a schematic structural diagram of a probe seat installed on a base according to an embodiment of the utility model;

[0047] Figure 3 yes Figure 1 A schematic enlarged view of part A of the ironing device shown;

[0048] Figure 4 yes Figure 1 A schematic cross-sectional view of the ironing device shown;

[0049] Figure 5 yes Figure 1 A schematic structural diagram of a heating component in the ironing device shown;

[0050] Figure 6 is a schematic structural diagram of an ironing device according to an embodiment of the utility model from another angle;

[0051] Figure 7 It is a schematic circuit diagram of an ironing device according to an embodiment of the utility model.

[0052] Reference numerals:

[0053] 100-ironing equipment, 200-probe seat, 10-base, 20-ironing mechanism, 30-driving mechanism, 40-box, 50-travel switch, 51-abutment part, 60-time relay, 70-buzzer, 80-second bracket, 90-temperature controller, 11-installation position, 21-ironing plate, 22-heating component, 23-lifting component, 231-lifting plate, 232-mounting plate, 233-through hole, 31-connecting rod, 32-elbow clamp, 33-pressing plate, 311-connecting section, 312- The first limiting part, 313-the second limiting part, 210-the protrusion, 220-the upper shell, 230-the lower shell, 211-the guide rod, 24-the reset assembly, 241-the first bracket, 242-the guide groove, 243-the support member, 244-the second elastic member, 221-the heating plate, 222-the temperature sensor, 223-the heating rod, 224-the limiting groove, 12-the guide shaft, 13-the cooling channel, 14-the compressed air connector, 15-the first elastic member, 234-the connecting member, 91-thermistor, 92-the solid-state relay. DETAILED DESCRIPTION

[0054] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention.

[0055] In the description of the present invention, it is necessary to understand that the terms "upper" and "lower" etc. indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0056] The terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features, that is, include one or more of the features. In the description of the present utility model, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined. When a feature "includes or contains" one or some of the features it covers, unless otherwise specifically described, this indicates that other features are not excluded and may further include other features.

[0057] Unless otherwise clearly specified and limited, the terms "connection", "installation" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. A person skilled in the art should be able to understand the specific meanings of the above terms in the present utility model according to the specific circumstances.

[0058] Unless otherwise defined, all terms (including technical terms and scientific terms) used in the description of this embodiment have the same meanings as commonly understood by ordinary technicians in the technical field to which this application belongs.

[0059] Figure 1 is a schematic structural diagram of an ironing device 100 according to an embodiment of the utility model at one angle. Figure 2 FIG. 2 is a schematic structural diagram of a probe seat 200 installed on a base 10 according to an embodiment of the present invention. Figure 1 and Figure 2As shown, in a specific embodiment, the ironing device 100 of the probe seat 200 includes a base 10, an ironing mechanism 20 and a driving mechanism 30. The base 10 has a mounting position 11 for placing the probe seat 200, and the top of the outer shell of the probe seat 200 has at least one protruding convex point 210. The ironing mechanism 20 is located at the top of the mounting position 11, and the ironing mechanism 20 is configured to move vertically in a controlled manner to contact with the convex point 210 and press down the ironing convex point 210, thereby completing the assembly of the outer shell of the probe seat 200. The driving mechanism 30 is located at the top of the ironing mechanism 20, and is used to drive the ironing mechanism 20 to move vertically. Here, the outer shell of the probe seat 200 includes an upper shell 220 and a lower shell 230, and the lower shell 230 has at least one convex point 210 that can pass through the upper shell 220 and protrude from the upper shell 220, wherein the upper shell 220 is a metal shell, and the lower shell 230 is an insulating shell (such as ABS material). After the bumps 210 are ironed, that is, after the shape of the bumps 210 is changed, the upper shell 220 is connected to the lower shell 230, thereby completing the assembly of the probe seat 200 housing. When there are multiple bumps 210, the ironing mechanism 20 can contact all the bumps 210 at one time and iron all the bumps 210 at the same time, thereby improving the ironing efficiency. The function of ironing is not only to make the bumps 210 flat, but also to achieve the bonding and fixing of the bumps 210 with the upper shell 220 (metal shell) after being flattened, thereby achieving the connection between the upper shell 220 (metal shell) and the lower shell 230 (insulating shell).

[0060] This embodiment is equivalent to the prior art method of manually ironing the bumps 210 one by one, and can iron all the bumps 210 on the outer shell of the probe seat 200 at one time, thereby improving the ironing efficiency, ensuring the flatness of the ironing, improving the ironing effect and improving the aesthetics.

[0061] In some embodiments, the ironing mechanism 20 includes an ironing plate 21 and a heating assembly 22. The ironing plate 21 is located at the top of the installation position 11 and is configured to float vertically. The heating assembly 22 is located at the top of the ironing plate 21 and is configured to float vertically. The heating assembly 22 is configured to move downward under the downward pressure of the driving mechanism 30 until it abuts against the ironing plate 21 to heat the ironing plate 21 and drive the ironing plate 21 to descend to a position in contact with the protrusion 210, so that the protrusion 210 is melted and flattened on the surface of the upper shell 220 (metal shell) under the action of the ironing plate 21, thereby achieving bonding and fixing of the upper shell 220 (metal shell) and the lower shell 230 (insulating shell). It can be understood that in the non-pressing state, the heating component 22 is not in contact with the ironing plate 21. The heating component 22 moves downward under the pressing action of the driving mechanism 30 and abuts against the ironing plate 21, thereby heating the ironing plate 21. During or after the heating, the driving mechanism 30 continues to drive the heating component 22 to move downward, thereby driving the ironing plate 21 to move downward until it contacts the bumps 210, so that the heated ironing plate 21 flattens the bumps 210. Here, the ironing plate 21 can be made of copper material, which has good thermal conductivity. In other embodiments, the ironing plate 21 can also be made of other materials.

[0062] In this embodiment, the ironing device 100 further includes at least one guide shaft 12 and at least one first elastic member 15. The guide shaft 12 is mounted on the base 10. The guide shaft 12 extends from the base 10 toward the top of the base 10 and penetrates the heating assembly 22 to allow the heating assembly 22 to move along the guide shaft 12. The first elastic member 15 is sleeved on the corresponding guide shaft 12. The heating assembly 22 is configured to move downward when subjected to the downward pressure of the driving mechanism 30 and compress the first elastic member 15; when the downward pressure of the driving mechanism 30 is removed, the heating assembly 22 moves upward and resets through the resilience of the first elastic member 15. Here, the number of the first elastic members 15 is consistent with the number of the guide shafts 12, and each first elastic member 15 is sleeved on one guide shaft 12. Here, the first elastic member 15 can be a spring.

[0063] In this embodiment, there are four guide shafts 12, and the four guide shafts 12 are respectively arranged at four corners of the installation position 11. In other embodiments, the number of guide shafts 12 can also be set according to specific design requirements.

[0064] Figure 3 yes Figure 1 The schematic enlarged view of part A of the ironing device 100 is shown. Figure 3 As shown, and see Figure 1 and Figure 2The driving mechanism 30 includes a connecting rod 31 extending vertically, and the ironing mechanism 20 also includes a lifting assembly 23. The lifting assembly 23 has a lifting plate 231 located on the top of the heating assembly 22. The two ends of the lifting plate 231 are respectively connected to the ironing plate 21, and have a through hole 233 for passing the connecting rod 31. The lifting plate 231 is configured to drive the ironing plate 21 to move vertically when the connecting rod 31 moves vertically in a controlled manner.

[0065] In some embodiments, the lifting assembly 23 further includes two mounting plates 232, which are respectively connected to both ends of the lifting plate 231, the top of the mounting plates 232 is connected to the lifting plate 231, and the bottom is connected to the ironing plate 21. In this embodiment, a stable connection structure is formed by two mounting plates 232 and one lifting plate 231, so that the ironing plate 21 can be stably lifted.

[0066] In this embodiment, the driving mechanism 30 further includes a pressing plate 33, which is connected to the bottom of the connecting rod 31. The pressing plate 33 is configured to abut against the heating assembly 22 after being moved downward in a controlled manner. In a preferred embodiment, the middle portion of the pressing plate 33 is configured to be arched upward, and only the two ends of the pressing plate 33 are in contact with the heating assembly 22, thereby reducing the contact area between the pressing plate 33 and the heating assembly 22, and preventing the heating assembly 22 from transferring heat to the pressing plate 33.

[0067] Figure 4 yes Figure 1 Schematic cross-sectional view of the ironing device 100 shown. Figure 4 As shown, and see Figure 1 The connecting rod 31 has a connecting section 311 passing through the lifting plate 231, and a first stopper 312 is provided at the bottom of the connecting section 311. The connecting rod 31 is configured to drive the lifting plate 231 to move upward when the lifting plate 231 is moved upward to abut against the first stopper 312, thereby driving the ironing plate 21 to move upward. It can be understood that, since the lifting plate 231 is sleeved on the connecting section 311 of the connecting rod 31 through the through hole 233, the connecting rod 31 will not drive the lifting plate 231 to move in the early stage when it moves vertically, and will not drive the lifting plate 231 to move until the connecting rod 31 moves upward to abut against the first stopper 312.

[0068] In this embodiment, a second limiting portion 313 is further provided on the top of the connecting section 311, and the distance between the first limiting portion 312 and the second limiting portion 313 can be designed according to specific design requirements, and the lifting plate 231 can move between the first limiting portion 312 and the second limiting portion 313. Here, the first limiting portion 312 and the second limiting portion 313 are both nuts, and in other embodiments, the structures of the first limiting portion 312 and the second limiting portion 313 can also be designed according to specific design requirements.

[0069] Figure 5 yes Figure 1 The schematic structural diagram of the heating component 22 in the ironing device 100 is shown. Figure 5 As shown, and see Figures 1 to 4 In some embodiments, the ironing mechanism 20 further includes a pair of reset components 24, which are respectively arranged on both sides of the installation position 11, and the reset components 24 include a first bracket 241, and the first bracket 241 has a pair of guide grooves 242 extending in the vertical direction. The ironing plate 21 has a pair of guide rods 211 protruding into the corresponding guide grooves 242, and the guide rods 211 can slide along the corresponding guide grooves 242. It can be understood that the pair of reset components 24 are respectively arranged at both ends of the ironing plate 21, and are used to guide the ironing plate 21, thereby improving the stability of the ironing plate 21 in the vertical movement. Here, the extension length of the guide groove 242 is designed according to the moving stroke of the ironing plate 21. The longer the moving stroke of the ironing plate 21 is, the longer the extension length of the guide groove 242 is, and the shorter the moving stroke of the ironing plate 21 is, the shorter the extension length of the guide groove 242 is.

[0070] In some embodiments, a protrusion is provided at the end of the guide rod 211 to prevent the guide rod 211 from falling out of the guide groove 242 .

[0071] In some embodiments, the reset assembly 24 further includes a pair of second elastic members 244 and a support member 243, the second elastic member 244 is arranged vertically, one end of the second elastic member 244 is connected to the corresponding guide rod 211, and the other end is connected to the first bracket 241. The support member 243 is mounted on the first bracket 241 and is located below the ironing plate 21, and is used to support and limit the ironing plate 21. It can be understood that each guide rod 211 is equipped with a second elastic member 244, which is used to improve the stability of the ironing plate 21 moving vertically, and the second elastic member 244 will be stretched after the connecting rod 31 drives the ironing plate 21 to move upward. Here, the second elastic member 244 can be a spring, or other structures with the same performance as the spring can be used. The support member 243 can support the ironing plate 21 on the one hand, and can also limit the ironing plate 21 on the other hand to prevent the ironing plate 21 from being over-pressed and crushing the shell of the probe seat 200.

[0072] See also Figure 4 and Figure 5In some embodiments, the heating assembly 22 includes a heating plate 221, at least one heating rod 223 and a temperature sensor 222. The heating rod 223 is installed inside the heating plate 221 to heat the heating plate 221. The temperature sensor 222 is installed inside the heating plate 221 to detect the actual temperature of the heating plate 221. Here, the number of heating rods 223 can be selected according to actual needs, and they need to be evenly arranged inside the heating plate 221 to achieve uniform heating of the heating plate 221. In this embodiment, the number of heating rods 223 is two, and the two heating rods 223 are respectively arranged on both sides of the temperature sensor 222. The connecting rod 31 will abut against the heating plate 221 after moving downward.

[0073] In this embodiment, the ironing device 100 further includes a temperature controller 90 , which is connected to the heating rod 223 and the temperature sensor 222 , respectively, and is used to control the heating temperature of the heating rod 223 according to the temperature detected by the temperature sensor 222 .

[0074] In some embodiments, the bottom of the heating plate 221 has a limiting groove 224 for limiting the ironing plate 21. The heating plate 221 is configured to make the limiting groove 224 engage with the ironing plate 21 when moving downward, and drive the ironing plate 21 to move downward, see Figure 4 The embodiment is designed with the limiting groove 224, which is equivalent to limiting the ironing plate 21, improving the stability of the ironing plate 21 during the downward movement. After the ironing of the bumps 210 of the probe seat 200 shell is completed, the connecting rod 31 moves upward, cancels the pressure on the heating plate 221, and moves upward and resets under the rebound force of the first elastic member 15. After moving upward for a distance, the connecting rod 31 will drive the ironing plate 21 to move upward. At this time, the heating plate 221 and the ironing plate 21 are in a separated state.

[0075] See also Figure 4 , a cooling channel 13 is provided inside the base 10, and the cooling channel 13 is connected to an external cooling device, and is used to cool the base 10 after the outer shell of the probe seat 200 is assembled. After the ironing of the outer shell of the probe seat 200 is completed, the external cooling device is turned on to deliver compressed air into the base 10, thereby cooling the probe seat 200. Here, at least one compressed air connector 14 is connected to the cooling channel 13, and is connected to the external cooling device through the compressed air connector 14. The number of cooling channels 13 can be designed according to the size of the base 10, and needs to be evenly arranged inside the base 10, so as to achieve uniform heat dissipation of the base 10.

[0076] Figure 6 FIG. 2 is a schematic structural diagram of an ironing device according to an embodiment of the present invention from another angle. Figure 6 As shown, and see Figures 1 to 5In some embodiments, the ironing mechanism 20 further includes a connecting piece 234 connected to the ironing plate 21, and the connecting piece 234 extends from the ironing plate 21 toward the bottom of the base 10. The ironing device 100 further includes a box 40, a travel switch 50, a time relay 60, and a buzzer 70. The box 40 is located below the base 10, and the travel switch 50 is installed inside the box 40, and the travel switch 50 has an abutment portion 51. The time relay 60 is installed inside the box 40 and connected to the travel switch 50. The buzzer 70 is installed inside the box 40 and connected to the time relay 60. The time relay 60 is configured to start timing after the ironing plate 21 moves downward until the connecting piece 234 presses the abutment portion 51 of the travel switch 50 downward by a preset distance. The buzzer 70 is configured to turn on after the time relay 60 completes timing. After the buzzer 70 is turned on, the external cooling device is turned on to cool down the probe seat 200.

[0077] In this embodiment, the driving mechanism 30 also includes a toggle clamp 32, which is connected to the top of the connecting rod 31. The toggle clamp 32 is configured to be moved to the first position when subjected to a downward pressure force, and at the same time drive the connecting rod 31 to move downward until the ironing mechanism 20 contacts the probe seat 200 and presses all the protrusions 210 downward to iron; and the toggle clamp 32 is configured to be moved to the second position when subjected to an upward force, and at the same time drive the connecting rod 31 to move upward, and drive the connecting rod 31 to move upward until the upper surface of the probe seat 200 is disengaged from the ironing mechanism 20, in which state the probe seat 200 can be taken out or put in. It can be understood that this embodiment is to manually drive the connecting rod 31 to move vertically. In other implementations, the connecting rod 31 can also be driven vertically by an automatic drive method, which can be specifically set according to design requirements.

[0078] In this embodiment, the ironing device 100 further includes a second bracket 80 , which is mounted on the base 10 and arranged vertically, and the toggle clamp 32 is mounted on the top of the second bracket 80 .

[0079] In this embodiment, the ironing process is as follows: first, the toggle clamp 32 is located at the second position, the probe seat 200 is placed on the installation position 11, and then the toggle clamp 32 is manually pressed down to the first position. During the process, the connecting rod 31 is synchronously driven to move downward to abut against the heating component 22, and the heating component 22 is driven to move downward. After the heating component 22 is engaged with the ironing plate 21, the heating component 22 and the ironing plate 21 are driven to move downward together until the ironing plate 21 contacts the protrusion 210 of the probe seat 100. Here, the heating component 22 is always in a heating state, so the heat can be transferred to the ironing plate 21 more quickly. During the downward movement of the ironing plate 21, the connecting member 234 will also move downward, and after pressing the contact part 51 of the travel switch 50 downward by a preset distance, the time relay 60 starts timing, and after the timing is completed, the buzzer 70 starts to sound, reminding the operator that the probe seat 200 has completed the ironing work, and the operator lifts the toggle clamp 32 upward to the second position. After the connecting rod 31 moves upward for a distance, the first limit part 312 of the connecting rod 31 abuts against the ironing plate 21, thereby driving the ironing plate 21 to move upward. While the connecting rod 31 moves upward, the heating component 22 moves upward and resets under the rebound force of the first elastic member 15, thereby completing the reset of the ironing mechanism 20. In addition, while the buzzer 70 sounds, the external cooling device delivers compressed gas to the cooling channel 13, thereby cooling the base 10. This embodiment uses an ironing plate 21 to iron the bumps 210, and can complete the ironing of multiple bumps 210 at one time, with good flatness, and can control the ironing time to achieve consistent ironing time, thereby preventing the operator from damaging the outer shell of the probe seat 200 due to negligence at work. While improving the assembly efficiency of the probe seat 200, the quality of the probe seat 200 is also improved.

[0080] Figure 7 FIG. 1 is a schematic circuit diagram of an ironing device 100 according to an embodiment of the present invention. Figure 7 As shown, in this embodiment, the circuit diagram of the ironing device 100 includes a temperature controller 90, a buzzer 70, a time relay 60 and a temperature sensor 222. The temperature controller 90 includes a thermistor 91 and a solid-state relay 92, and the thermistor 91 is used to achieve overcurrent protection. The solid-state relay 92 is used to control the heating rod 223 to heat. After the time relay 60 is triggered for a preset time, the buzzer 70 will alarm to prevent the probe seat 200 from being damaged by ironing for too long.

[0081] At this point, those skilled in the art should recognize that, although multiple exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications that conform to the principles of the present invention can still be directly determined or derived from the contents disclosed in the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all such other variations or modifications.

Claims

1. A probe seat ironing device, characterized in that: include: A base having a mounting position for placing a probe seat, wherein the top of the housing of the probe seat has at least one raised convex point; An ironing mechanism, located at the top of the installation position, and configured to move vertically in a controlled manner to contact with and iron the convex points, thereby completing the assembly of the housing of the probe seat; The driving mechanism is located at the top of the ironing mechanism and is used to drive the ironing mechanism to move vertically.

2. The ironing device according to claim 1, characterized in that: The ironing mechanism comprises: An ironing plate, located at the top of the installation position and arranged to float vertically; The heating component is located on the top of the ironing plate and is arranged to float vertically. The heating component is arranged to move downward under the downward pressure of the driving mechanism until it abuts against the ironing plate to heat the ironing plate and drive the ironing plate to descend to a position in contact with the protrusions.

3. The ironing device according to claim 2, characterized in that: Also includes: At least one guide shaft is mounted on the base, the guide shaft extends from the base toward the top of the base and passes through the heating component to allow the heating component to move along the guide shaft; At least one first elastic member is sleeved on the corresponding guide shaft, and the heating component is configured to move downward and compress the first elastic member when subjected to the downward pressure of the driving mechanism; and to move upward and reset through the resilience of the first elastic member when the downward pressure of the driving mechanism is removed.

4. The ironing device according to claim 2, characterized in that: The heating assembly comprises: Heating plate; at least one heating rod installed inside the heating plate and used to heat the heating plate; The temperature sensor is installed inside the heating plate and is used to detect the actual temperature of the heating plate.

5. The ironing device according to claim 4, characterized in that: The bottom of the heating plate is provided with a limiting groove for limiting the ironing plate. The heating plate is configured such that when the heating plate moves downward, the limiting groove engages with the ironing plate and drives the ironing plate to move downward.

6. The ironing device according to claim 2, characterized in that: The driving mechanism includes a connecting rod extending vertically, and the ironing mechanism also includes: The lifting assembly comprises a lifting plate located on the top of the heating assembly, the two ends of the lifting plate are respectively connected to the ironing plate, and the lifting plate comprises a through hole for passing the connecting rod, and the lifting plate is configured to drive the ironing plate to move vertically when the connecting rod moves vertically in a controlled manner.

7. The ironing device according to claim 6, characterized in that: The connecting rod has a connecting section passing through the lifting plate, and a first limiting portion is provided at the bottom of the connecting section. The connecting rod is configured to drive the lifting plate to move upward when it moves upward until the lifting plate abuts against the first limiting portion, thereby driving the ironing plate to move upward.

8. The ironing device according to claim 6, characterized in that: The driving mechanism further comprises: A pressing plate is connected to the bottom of the connecting rod, and the pressing plate is configured to abut against the heating assembly after being moved downward in a controlled manner.

9. The ironing device according to claim 6, characterized in that: The ironing mechanism also includes: A pair of reset components are respectively arranged on both sides of the installation position, and the reset components include a first bracket, the first bracket has a pair of guide grooves extending vertically, and the ironing plate has a pair of guide rods respectively protruding into the corresponding guide grooves, and the guide rods can slide along the corresponding guide grooves.

10. The ironing device according to claim 9, characterized in that: The reset component also includes: A pair of second elastic members, arranged in a vertical direction, one end of the second elastic member is connected to the corresponding guide rod, and the other end is connected to the first bracket; A support member is installed on the first bracket and is located below the ironing plate, and is used to support and limit the ironing plate.

11. The ironing device according to any one of claims 1 to 10, characterized in that: A cooling channel is provided inside the base, and the cooling channel is connected to an external cooling device for cooling the base after the housing of the probe seat is assembled.

12. The ironing device according to any one of claims 2 to 10, characterized in that: The ironing mechanism further includes a connecting piece connected to the ironing plate, wherein the connecting piece extends from the ironing plate toward the bottom of the base; the ironing device further includes: A box body, located below the base; A travel switch is installed inside the box, and the travel switch has an abutment portion; A time relay is installed inside the box and connected to the travel switch; A buzzer is installed inside the box and connected to the time relay; The time relay is configured to start timing after the ironing plate moves downward until the connecting member presses the abutting portion of the travel switch downward by a preset distance; The buzzer is configured to turn on after the time relay completes timing.

13. The ironing device according to any one of claims 6 to 10, characterized in that: The driving mechanism further comprises: A toggle clamp is connected to the top of the connecting rod, and the toggle clamp is configured to move the connecting rod downward when subjected to a downward force, and to drive the connecting rod to move upward when subjected to an upward force.