Probe panel socket
By setting a sealing component in the probe panel socket, the problem of poor sealing is solved, higher safety and service life are achieved, and the erosion of the probe by external moisture and short circuit leakage are avoided.
Patent Information
- Application Number
- CN202422661416.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-31
AI Technical Summary
The existing probe panel socket has poor sealing, which can easily lead to leakage, accidental contact and external contamination, affecting the accuracy of test data and service life.
A sealing assembly including a sealing ring and sealing oil is provided in the probe panel socket to isolate external moisture from contacting the probe, thereby forming double protection.
Effectively prevent external moisture intrusion, improve usage safety, extend socket life, avoid short circuit leakage, and improve test stability.
Smart Images

Figure CN223414349U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of electronic detection equipment, and specifically relates to a probe panel socket. Background Art
[0002] In the prior art, a probe panel socket is a device used for electronic testing and measurement, which allows a probe to be physically connected to a circuit or device in order to test parameters such as voltage, current, and resistance. The design and function of the probe panel socket may vary depending on different application scenarios and manufacturers. Existing electronic equipment generally needs to detect and measure multiple circuit signals. The probe panel socket, as an important interface for connecting probes and circuit equipment, undertakes important functions such as signal transmission, data acquisition, and circuit testing. However, existing probe panel sockets generally have the problem of poor sealing. On the one hand, it is easy to cause safety hazards such as leakage and false touch. On the other hand, it is also easily polluted by the external environment, affecting the stable connection between the probe and the circuit, and thus affecting the accuracy of the test data.
[0003] In the existing technology, the probe panel socket mostly adopts an open structure, and the probe consists of multiple wire assemblies passing through the socket panel to the internal connection terminal. This structure is prone to gaps and is difficult to truly achieve sealing. In addition, due to the characteristics of the probe material and the influence of external environmental factors, dust, oxides and other impurities are easily accumulated on the probe surface, reducing the connection stability. Therefore, improvements are urgently needed. Utility Model Content
[0004] In order to solve the technical problem in the prior art that most probe panel sockets are of open design, gaps are often left between the various components of the probe panel, the air tightness is low, and the protection for the probe is not strong, during actual use, after the probe is connected to the signal transmission wire, the probe will still be in contact with the outside world through the gaps between the various components, and the external water vapor will come into contact with the probe, which will cause safety problems such as line short circuit and leakage on the one hand, and will accelerate the rust of the probe on the other hand, reducing the service life of the probe panel socket. A probe panel socket is proposed.
[0005] The present application adopts the following scheme: a probe panel socket, including a socket body, a probe arranged on the socket body, and a sealing component arranged between the socket body and the probe. When the probe is arranged on the socket body, the sealing component is used to seal the probe to isolate it from external moisture.
[0006] In one embodiment, the socket body includes an upper connecting part and a lower connecting part arranged below the upper connecting part, the probe is simultaneously passed through the upper connecting part and the lower connecting part, and the sealing assembly is arranged between the upper connecting part and the lower connecting part to isolate external moisture from contacting the probe.
[0007] In one embodiment, the sealing assembly includes a mounting groove provided between the upper connecting portion and the lower connecting portion, and a sealing ring matched with the mounting groove. When the probe is simultaneously passed through the upper connecting portion and the lower connecting portion, the sealing ring is used to isolate external moisture from contacting the probe.
[0008] In one embodiment, the sealing ring is made of any one of silicone, chloroprene rubber and polyurethane resin.
[0009] In one embodiment, the sealing assembly further includes an airtight cavity provided on the lower connecting part, and sealing oil filled in the airtight cavity. When the probe is simultaneously passed through the upper connecting part and the lower connecting part, the probe is immersed in the sealing oil to isolate external moisture from contacting the probe.
[0010] In one embodiment, the outer periphery of the lower connecting portion is provided with an external thread, and the external thread is used for detachable connection.
[0011] In one embodiment, the upper connecting portion and the lower connecting portion are both matched with mounting holes, and the probe is matched and penetrated into the upper connecting portion and the lower connecting portion through the mounting holes to achieve detachable connection between the upper connecting portion and the lower connecting portion.
[0012] In one embodiment, the cross-sections of the upper connecting portion and the lower connecting portion are both circular, and the ratio of the cross-sectional area of the upper connecting portion to the cross-sectional area of the lower connecting portion is 3:2.
[0013] In one embodiment, a clearance opening is provided on one end of the probe close to the lower connecting portion, and the clearance opening is used for the probe to be plugged in.
[0014] Compared with the prior art, this application has the following beneficial effects:
[0015] The present application provides a probe panel socket, which includes a socket body, a probe arranged on the socket body, and a sealing component arranged between the socket body and the probe. When the probe is installed on the plug-in board body, the sealing component is arranged between the socket body and the probe, so that the probe can be isolated from external moisture and will not be affected by the gap between the various components of the socket body, thereby effectively preventing the probe from being corroded by external moisture. During the operation of the socket, it can also prevent external moisture from entering the socket and causing the socket to short-circuit and leak. It can effectively improve the safety of the socket and extend the service life of the socket. It has the advantages of simple structure, low mass production cost, strong adaptability, and easy promotion and implementation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1This is a schematic structural diagram of a probe panel socket of the present application;
[0017] Figure 2 This is a structural diagram of a probe panel socket of the present application from another perspective;
[0018] Figure 3 This is a partial cross-sectional view of a probe panel socket of the present application. DETAILED DESCRIPTION
[0019] Combined with attachment Figure 1-3 , further illustrating the technical solution provided by the present application, a probe panel socket, comprising a socket body 1, a probe 2 arranged on the socket body 1, and a sealing component 3 arranged between the socket body 1 and the probe 2. When the probe 2 is arranged on the socket body 1, the sealing component 3 is used to seal the probe 2 to isolate it from external moisture.
[0020] The present application provides a probe panel socket, which includes a socket body, a probe arranged on the socket body, and a sealing component arranged between the socket body and the probe. When the probe is installed on the plug-in board body, the sealing component is arranged between the socket body and the probe, so that the probe can be isolated from external moisture and will not be affected by the gap between the various components of the socket body, thereby effectively preventing the probe from being corroded by external moisture. During the operation of the socket, it can also prevent external moisture from entering the socket and causing the socket to short-circuit and leak. It can effectively improve the safety of the socket and extend the service life of the socket. It has the advantages of simple structure, low mass production cost, strong adaptability, and easy promotion and implementation.
[0021] During the implementation of this embodiment, the socket body 1 includes an upper connecting part 10 and a lower connecting part 11 arranged below the upper connecting part 10, the probe 2 is simultaneously passed through the upper connecting part 10 and the lower connecting part 11, and the sealing component 3 is arranged between the upper connecting part 10 and the lower connecting part 11 to isolate external moisture from contacting the probe 2.
[0022] During actual implementation, this probe panel socket can effectively prevent external moisture from invading the probe and play a sealing role in isolating moisture. The socket body is divided into an upper connecting part and a lower connecting part. The probe is inserted between the upper and lower connecting parts, and the sealing component is located between the two connecting parts, forming a complete physical barrier, which strictly isolates the probe from contact with external moisture, thereby protecting the probe from damage by humid air and external moisture.
[0023] In actual implementation, in order to further improve the airtightness of the socket body, the upper connecting portion and the lower connecting portion are integrally formed.
[0024] During the implementation of this embodiment, the sealing assembly 3 includes a mounting groove 30 provided between the upper connecting part 10 and the lower connecting part 11, and a sealing ring 31 matched with the mounting groove 30. When the probe 2 is simultaneously passed through the upper connecting part 10 and the lower connecting part 11, the sealing ring 31 is used to isolate external moisture from contacting the probe 2.
[0025] During the implementation of this embodiment, the sealing ring 31 is made of any one of silicone, chloroprene rubber and polyurethane resin.
[0026] During the implementation of this embodiment, the sealing assembly 3 also includes an airtight cavity 32 provided on the lower connecting part 11, and sealing oil filled in the airtight cavity 32. When the probe 2 is simultaneously passed through the upper connecting part 10 and the lower connecting part 11, the probe 2 is immersed in the sealing oil to isolate external moisture from contacting the probe 2.
[0027] In practice, the present invention utilizes a sealing assembly to effectively prevent external moisture from intruding into the probe, ensuring the proper operation and service life of the probe. The sealing assembly utilizes a mounting groove and a sealing ring to create a waterproof seal at the probe connection. Furthermore, a sealing oil cavity designed into the lower connection is filled with sealing oil, further immersing the probe in a sealed environment. This provides dual protection, significantly extending the socket's service life and enhancing the user experience.
[0028] During the implementation of this embodiment, an external thread 4 is provided on the outer periphery of the lower connecting portion 11 , and the external thread 4 is used for detachable connection.
[0029] During the implementation of this embodiment, the upper connecting part 10 and the lower connecting part 11 are both matched with mounting holes, and the probe 2 is matched and penetrated into the upper connecting part 10 and the lower connecting part 11 through the mounting holes to achieve a detachable connection between the upper connecting part 10 and the lower connecting part 11.
[0030] During the implementation of this embodiment, the cross-sections of the upper connecting portion 10 and the lower connecting portion 11 are both circular, and the ratio of the cross-sectional area of the upper connecting portion 10 to the cross-sectional area of the lower connecting portion 11 is 3:2.
[0031] During the implementation of this embodiment, a clearance opening 5 is provided on one end of the probe 2 close to the lower connecting portion 11 , and the clearance opening 5 is used for the probe 2 to be plugged in.
[0032] In actual implementation, the socket body is made of insulating material. Furthermore, the socket is made of PEI, and the outer surface of the socket body is plated with polytetrafluoroethylene.
[0033] The present application provides a probe panel socket, which includes a socket body, a probe arranged on the socket body, and a sealing component arranged between the socket body and the probe. When the probe is installed on the plug-in board body, the sealing component is arranged between the socket body and the probe, so that the probe can be isolated from external moisture and will not be affected by the gap between the various components of the socket body, thereby effectively preventing the probe from being corroded by external moisture. During the operation of the socket, it can also prevent external moisture from entering the socket and causing the socket to short-circuit and leak. It can effectively improve the safety of the socket and extend the service life of the socket. It has the advantages of simple structure, low mass production cost, strong adaptability, and easy promotion and implementation.
[0034] The above are merely embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.
Claims
1. A probe panel socket, characterized in that: The invention comprises a socket body (1), a probe (2) arranged on the socket body (1), and a sealing component (3) arranged between the socket body (1) and the probe (2). When the probe (2) is arranged on the socket body (1), the sealing component (3) is used to seal the probe (2) to isolate it from external moisture.
2. The probe panel socket according to claim 1, wherein: The socket body (1) comprises an upper connecting portion (10) and a lower connecting portion (11) arranged below the upper connecting portion (10); the probe (2) is simultaneously passed through the upper connecting portion (10) and the lower connecting portion (11); and the sealing component (3) is arranged between the upper connecting portion (10) and the lower connecting portion (11) to isolate external moisture from contacting the probe (2).
3. The probe panel socket according to claim 2, wherein: The sealing assembly (3) comprises a mounting groove (30) provided between the upper connecting portion (10) and the lower connecting portion (11), and a sealing ring (31) matched with the mounting groove (30). When the probe (2) is simultaneously inserted into the upper connecting portion (10) and the lower connecting portion (11), the sealing ring (31) is used to isolate external moisture from contacting the probe (2).
4. The probe panel socket according to claim 3, wherein: The material of the sealing ring (31) is any one of silicone, chloroprene rubber and polyurethane resin.
5. The probe panel socket according to claim 2, wherein: The sealing assembly (3) further comprises an airtight cavity (32) provided on the lower connecting portion (11), and sealing oil filled in the airtight cavity (32).
6. The probe panel socket according to claim 2, wherein: The outer periphery of the lower connecting portion (11) is provided with an external thread (4), and the external thread (4) is used for detachable connection.
7. The probe panel socket according to claim 2, wherein: The upper connecting portion (10) and the lower connecting portion (11) are both matched with mounting holes, and the probe (2) is matched and inserted into the upper connecting portion (10) and the lower connecting portion (11) through the mounting holes to achieve a detachable connection between the upper connecting portion (10) and the lower connecting portion (11).
8. The probe panel socket according to claim 2, wherein: The cross-sections of the upper connecting portion (10) and the lower connecting portion (11) are both circular, and the ratio of the cross-sectional area of the upper connecting portion (10) to the cross-sectional area of the lower connecting portion (11) is 3:
2.
9. The probe panel socket according to claim 2, wherein: A clearance opening (5) is provided on one end of the probe (2) close to the lower connecting portion (11), and the clearance opening (5) is used for the probe (2) to be plugged in.