Highly integrated semi-ring double-signal jack channel device and instrument equipment
By designing a highly integrated half-ring dual-signal jack channel device, the secondary injection molding and anti-rotating structure are used to solve the problems of high manufacturing cost, complex production and poor waterproof performance of the multimeter meter erroneous insertion alarm function, and efficient assembly and excellent waterproof performance are achieved.
Patent Information
- Application Number
- CN202422368691.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing multimeter's phony erroneous insertion alarm function has problems such as high manufacturing cost, complex production process, difficult assembly, and poor waterproof performance. In particular, the photoelectric non-contact alarm cost is high, the mechanical contact alarm structure is complex and does not have waterproof function.
A highly integrated half-ring dual signal jack channel device is designed, including a housing base, an input jack sleeve and a half-ring input connection piece. The half-ring input connection piece is electrically locked and connected to the motherboard PCB through secondary injection molding. It adopts an anti-rotation structure and waterproof glue plug to improve sealing, realizing the judgment of erroneous insertion and waterproof function.
It reduces the risk of circuit breakers such as fake welding and welding drop, improves assembly efficiency and waterproof performance, simplifies production processes, and realizes a high-integrated phishing error insertion alarm function.
Smart Images

Figure CN223206502U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of measuring instruments, in particular to a highly integrated semi-ring dual-signal jack channel device and instrument equipment. Background Art
[0002] The instrument's misinsertion alarm function is to issue a clear warning such as a flashing light or a buzzer alarm when the function of the test lead inserted into the multimeter's input jack does not match the function of the selected measurement range, prompting the operator to make corrections in time to ensure the operator's safety and protect the multimeter's performance. Currently, the multimeter's misinsertion alarm function on the market is mainly implemented in two ways: photoelectric non-contact alarm and mechanical contact alarm:
[0003] First, the photoelectric non-contact alarm uses an infrared emitting diode and a photosensitive receiving diode in pairs, and makes special symmetrical openings on the signal receiving and transmitting paths of the input jack as optical signal channels. It detects in real time whether a test lead is inserted into the input jack to block the infrared signal to determine whether the test lead is inserted incorrectly. This method has more electrical components on the mainboard PCB, and the matching structure of the conductor of the input jack and the opening of the jack socket is relatively complex. In order to achieve the waterproof function, it is also necessary to use beer or ultrasonic welding on the transparent jack base that does not affect the transmission of the optical signal. Therefore, the manufacturing cost of this method is relatively high, and the parts processing and production process are relatively complicated.
[0004] Secondly, the mechanical contact alarm determines whether the test lead is inserted incorrectly by dividing the input jack into two semi-ring metal sheet structures and detecting the signal continuity between the two semi-ring metal sheets. One type of input jack structure of this type is a split assembly structure, that is, the semi-ring metal sheet (metal stamping) is first connected to the mainboard PCB and then assembled on the housing with the input jack. It has many welding limit and assembly limit structures, which makes production and assembly difficult and the production line efficiency low. At the same time, due to the assembly gap between the parts, the jack shakes during the insertion and removal of the test lead, resulting in this method not having a waterproof function. During use, external moisture can easily enter the instrument through the jack and cause defects such as component short circuits. The other type is a semi-integrated sleeve beer structure. After the two semi-ring metal sheets (machined into shape) are assembled with the plastic input jack, they are fixed to the housing through a sleeve beer injection molding process. The structural sealant is sealed to have a waterproof function, but it still requires additional structural parts such as the input connector to be connected to the mainboard PCB through screws, etc., and the integration level is relatively low. Utility Model Content
[0005] In order to overcome the above technical problems, the utility model discloses a highly integrated semi-ring dual-signal jack channel device and an instrument and equipment thereof.
[0006] The technical solution adopted by the present invention to achieve the above-mentioned purpose is:
[0007] A highly integrated semi-ring dual-signal jack channel device, comprising:
[0008] The housing base includes a channel structure and anti-rotation structures on both sides;
[0009] An input jack socket, which is inserted into the channel structure and includes a jack channel cavity formed by a hollow setting;
[0010] Two sets of semi-ring input connectors constitute a dual-signal jack channel, comprising an integrally formed semi-ring connector and an electrical connector, wherein the semi-ring connector is inserted into the jack channel cavity, and the electrical connector extends and is fixed in the anti-rotation structure;
[0011] The mainboard PCB is placed on the periphery of the channel structure and is electrically locked and connected to the electrical connection portion.
[0012] The above-mentioned highly integrated semi-ring dual-signal jack channel device, wherein the semi-ring input connecting piece further comprises a U-shaped connecting portion and an L-shaped connecting portion;
[0013] The two ends of the U-shaped connecting portion are respectively fixedly connected to the semi-ring connecting portion and the L-shaped connecting portion, so that the axis of the semi-ring connecting portion is parallel to the L-shaped connecting portion;
[0014] The L-shaped connecting portion is fixedly connected to the electrical connecting portion so that the electrical connecting portion is perpendicular to the axis of the semi-ring connecting portion.
[0015] The highly integrated semi-ring dual-signal jack channel device described above, wherein a first locking through hole is provided through the electrical connection portion;
[0016] A limiting convex edge is provided around the electrical connection portion, the electrical connection portion is adaptively installed in the anti-rotation structure through the limiting convex edge, and the electrical connection portion is electrically locked and connected to the mainboard PCB through the first locking through hole.
[0017] The above-mentioned highly integrated semi-ring dual-signal jack channel device, wherein the anti-rotation structure includes a limit assembly and several groups of limit ribs, and the several groups of limit ribs are connected end to end on the same horizontal plane in a polygonal arrangement to form a limit slot, the limit assembly is embedded in the limit slot, and the limit protrusion is adaptively installed in the limit slot.
[0018] The highly integrated semi-ring dual-signal jack channel device, wherein the input jack socket includes an inserting seat with an opening at one end, the jack channel cavity is arranged in the inserting seat and communicates with the opening, and is bent outward along the opening of the inserting seat to form a sealing ring platform, and the inserting seat and the sealing ring platform are both accommodated in the channel structure;
[0019] The inner wall surface of the insertion seat forms two groups of symmetrically arranged semi-annular grooves through two groups of isolation retaining walls. The semi-annular grooves are connected to the jack channel cavity, and the semi-annular connecting part is inserted into the semi-annular grooves.
[0020] The highly integrated semi-ring dual-signal jack channel device, wherein the channel structure includes a mounting seat having a mounting cavity, a sealing ridge is provided on the inner wall surface of the mounting seat surrounding the mounting cavity, the insertion seat is accommodated in the mounting cavity, and the sealing ridge abuts against the sealing ring.
[0021] The inner wall surface of the mounting seat is provided with a limiting rib for limiting and fixing the sealing ring platform;
[0022] A positioning avoidance groove for accommodating the U-shaped connecting part is provided on the mounting seat.
[0023] The highly integrated semi-ring dual-signal jack channel device further comprises a waterproof rubber plug detachably covering the channel structure;
[0024] A jack sealing boss and a rib limiting groove are provided at the bottom of the waterproof rubber plug, corresponding to the dual signal jack channels and the limiting rib respectively;
[0025] An L-shaped limiting groove for sealing and positioning the L-shaped connecting portion is provided at the bottom of the waterproof rubber plug.
[0026] The highly integrated semi-ring dual-signal jack channel device has a channel avoidance through-hole and a second locking through-hole respectively arranged through the mainboard PCB corresponding to the channel structure and the anti-rotation structure, and a connecting piece avoidance groove is respectively arranged on both sides of the channel avoidance through-hole corresponding to the semi-ring input connecting piece;
[0027] A copper-clad ring is provided around the second locking through hole, and the copper-clad ring is in close contact with the semi-ring input connecting piece;
[0028] The channel structure is placed in the channel avoidance through hole, and the anti-loosening screw passes through the second locking through hole and the first locking through hole and is locked with the limiting assembly part to electrically connect the mainboard PCB with the semi-ring input connecting piece.
[0029] The above-mentioned highly integrated semi-ring dual-signal jack channel device, wherein the mainboard PCB further includes an identification circuit and a measurement sampling circuit, and the identification circuit is electrically connected to the processor and the copper-plated ring respectively;
[0030] The identification circuit and the measurement sampling circuit are electrically connected to the two groups of semi-ring input connecting pieces respectively, so that the two groups of semi-ring input connecting pieces are short-circuited when the test leads are inserted.
[0031] An instrument device comprises the above-mentioned highly integrated semi-ring dual-signal jack channel device.
[0032] The beneficial effects of the present invention include the following:
[0033] (1) Based on the anti-rotation structure and the two groups of semi-ring input connecting pieces integrated on the shell base through secondary injection molding, the mainboard PCB does not need to be plugged in and welded anymore. The mainboard PCB and the two groups of semi-ring input connecting pieces can be electrically locked and connected only by the anti-loosening screws, so that the two groups of semi-ring input connecting pieces are electrically connected to the identification circuit and the measurement sampling circuit. The online assembly process is simpler and the assembly efficiency is higher. In addition, the traditional mainboard PCB and input connecting piece welding process is replaced, reducing the risk of circuit breakage such as false welding and falling welding.
[0034] (2) The structure of the housing base is optimized to be divided into the channel structure and the anti-rotation structure, and the input jack socket is installed in the channel structure. The structure of the semi-ring input connecting piece is innovatively designed to be the semi-ring connecting portion and the electrical connecting portion. On the one hand, the semi-ring connecting portion is inserted into the jack channel cavity to form the dual-signal jack channel. On the other hand, the electrical connecting portion is locked in the anti-rotation structure to achieve electrical connection with the mainboard PCB, meeting the requirements of a highly integrated assembly structure to realize the function of determining if the test lead is mis-inserted.
[0035] (3) The mainboard PCB is electrically connected to the semi-ring input connector through the copper ring, thereby improving the electrical conductivity and anti-interference performance of the two. The identification circuit determines whether the two groups of semi-ring input connectors have realized signal on-off due to the insertion of the test leads, thereby realizing the function of the dual signal jack channel to determine whether the test leads are incorrectly inserted;
[0036] (4) The waterproof rubber plug is used to improve the internal sealing of the device, thereby achieving excellent waterproof performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0038] Figure 1 It is a schematic diagram of the structure of the utility model;
[0039] Figure 2 This is a schematic diagram of the explosion structure of the utility model;
[0040] Figure 3 It is a three-dimensional schematic diagram of the housing base in the utility model;
[0041] Figure 4 It is a three-dimensional schematic diagram of the input jack socket in the utility model;
[0042] Figure 5 This is a three-dimensional schematic diagram of the half-ring input connecting piece in the utility model;
[0043] Figure 6 This is a three-dimensional schematic diagram of the mainboard PCB in the present utility model;
[0044] Figure 7 This is a schematic diagram of the circuit principle of the mainboard PCB in this utility model;
[0045] Figure 8 It is a three-dimensional schematic diagram of the waterproof rubber plug in the utility model. DETAILED DESCRIPTION
[0046] The present invention will be further described below through specific embodiments to make the technical solution of the present invention easier to understand and grasp, rather than to limit the present invention.
[0047] Example: See Figures 1 to 8 This embodiment provides a highly integrated semi-ring dual-signal jack channel device, the device comprising:
[0048] The housing base 1 includes a channel structure 11 and anti-rotation structures 12 on both sides;
[0049] An input jack socket 2 is inserted into the channel structure 11 and includes a jack channel cavity formed by a hollow setting;
[0050] Two sets of semi-ring input connectors 3 constitute a dual-signal jack channel, which includes an integrally formed semi-ring connecting portion 31 and an electrical connecting portion 32. The semi-ring connecting portion 31 is inserted into the jack channel cavity, and the electrical connecting portion 32 extends and is fixed in the anti-rotation structure 12;
[0051] The mainboard PCB 4 is placed around the outer periphery of the channel structure 11 and is electrically locked and connected to the electrical connection portion 32 .
[0052] Preferably, the semi-ring input connecting piece 3 is a metal conductor connecting piece, and the semi-ring input connecting piece 3 further includes a U-shaped connecting portion 33 and an L-shaped connecting portion 34;
[0053] The two ends of the U-shaped connecting portion 33 are respectively fixedly connected to the semi-ring connecting portion 31 and the L-shaped connecting portion 34, so that the axis of the semi-ring connecting portion 31 is parallel to the L-shaped connecting portion 34. Specifically, the U-shaped connecting portion 33 is used to connect the semi-ring connecting portion 31 and the L-shaped connecting portion 34, so that the semi-ring connecting portion 31 and the L-shaped connecting portion 34 are respectively installed in the channel structure 11 and the anti-rotation structure 12, effectively reducing the space occupied by the dual-signal jack channel and the electrical locking connection with the mainboard PCB 4, thereby improving the integration of the device.
[0054] The L-shaped connecting portion 34 is fixedly connected to the electrical connecting portion 32 so that the electrical connecting portion 32 is perpendicular to the axis of the semi-ring connecting portion 31 , further improving the verticality of the insertion of the test lead and the locking reliability and stability of the mainboard PCB 4.
[0055] Furthermore, a first locking through hole 35 is provided through the electrical connection portion 32;
[0056] A limiting protrusion 36 is provided around the electrical connection portion 32, and the electrical connection portion 32 is adaptively installed in the anti-rotation structure 12 through the limiting protrusion 36, and the electrical connection portion 32 is electrically locked and connected to the main board PCB4 through the first locking through hole 35; specifically, the limiting protrusion 36 can be designed as a polygonal protrusion according to actual usage.
[0057] Preferably, the anti-rotation structure 12 includes a limiting assembly 121 and several groups of limiting ribs, and the several groups of limiting ribs are connected end to end on the same horizontal plane in a polygonal arrangement to form a limiting slot 122, and the limiting assembly 121 is embedded in the limiting slot 122, and the limiting protrusion 36 is adaptively installed in the limiting slot 122; specifically, the limiting ribs can be set in number according to actual usage to form corresponding polygonal limiting slots 122; in this embodiment, the limiting assembly 121 is a hexagonal nut, and the limiting slot 122 and the limiting protrusion 36 are both designed to be hexagonal, wherein the hexagonal nut is cooperated with the anti-loosening screw to effectively realize the electrical locking connection between the semi-ring input connecting piece 3 and the main board PCB4, thereby optimizing the limiting locking effect of the semi-ring input connecting piece 3.
[0058] Preferably, the input jack socket 2 includes an insertion seat 21 with an opening at one end, the jack channel cavity is arranged in the insertion seat 21 and communicates with the opening thereof, and a sealing ring 22 is formed by bending outward along the opening of the insertion seat 21. The insertion seat 21 and the sealing ring 22 are both accommodated in the channel structure 11; preferably, the opening of the insertion seat 21 is provided with a guide angle, which facilitates the guiding insertion and installation of the semi-ring connecting portion 31 in the semi-annular groove 24;
[0059] The inner wall surface of the insertion seat 21 forms two groups of symmetrically arranged semi-annular grooves 24 through two groups of isolation retaining walls 23. The semi-annular grooves 24 are connected to the jack channel cavity, and the semi-annular connecting part 31 is inserted into the semi-annular grooves 24; specifically, the input jack sleeve 2 is a plastic body, which is injection-molded into the channel structure 11 of the shell base 1 by one-time injection molding, and because it is an independent structure, the color can be changed according to actual usage to distinguish the jack function type; the semi-annular connecting part 31 is inserted into the semi-annular grooves 24, and the isolation retaining wall 23 effectively and completely isolates the two groups of the semi-annular connecting parts 31, so that the two groups of the semi-annular input connecting pieces 3 do not contact each other, thereby improving the anti-interference function.
[0060] Preferably, the channel structure 11 includes a mounting seat 111 having a mounting cavity, and a sealing ridge 112 is provided on the inner wall surface of the mounting seat 111 around the mounting cavity. The insertion seat 21 is accommodated in the mounting cavity, and the sealing ridge 112 abuts against the sealing ring 22. The use of the sealing ridge 112 and the sealing ring 22 helps to improve the internal sealing and waterproof performance.
[0061] A limiting rib 113 is provided on the inner wall surface of the mounting base 111 for limiting and fixing the sealing ring 22; the limiting rib 113 effectively limits and fixes the input jack socket 2;
[0062] The mounting base 111 is provided with a positioning avoidance groove 114 for accommodating the U-shaped connection portion 33 ; the positioning avoidance groove 114 effectively improves the assembly reliability of the U-shaped connection portion 33 .
[0063] Preferably, the device further comprises a waterproof rubber plug 5 detachably covering the channel structure 11; the waterproof rubber plug 5 is a plastic rubber plug, which can not only fix the semi-ring input connecting piece 3, but also effectively improve the internal sealing of the device;
[0064] At the bottom of the waterproof rubber plug 5, there are provided a jack sealing boss 51 and a rib limiting groove 52 corresponding to the dual signal jack channel and the limiting rib 113, further improving the internal sealing and waterproof performance;
[0065] An L-shaped limiting groove 53 is provided at the bottom of the waterproof rubber plug 5 for sealing and positioning the L-shaped connecting portion 34, thereby further improving the internal sealing and waterproof performance.
[0066] Preferably, a channel avoidance through-hole 41 and a second locking through-hole 42 are respectively provided through the mainboard PCB4 corresponding to the channel structure 11 and the anti-rotation structure 12, and a connecting piece avoidance groove 43 is respectively provided on both sides of the channel avoidance through-hole 41 corresponding to the semi-ring input connecting piece 3;
[0067] A copper-clad ring 44 is provided around the second locking through hole 42 , and the copper-clad ring 44 is in close contact with the semi-ring input connecting piece 3 ;
[0068] The channel structure 11 is placed in the channel avoidance through hole 41, and the anti-loosening screw passes through the second locking through hole 42 and the first locking through hole 35 and is locked with the limiting assembly 121 to electrically connect the main board PCB4 with the semi-ring input connecting piece 3; specifically, the loosening screw is preferably a screw with a flat washer and a spring washer, and the thread of the screw is covered with a thread fastening adhesive layer.
[0069] Preferably, the mainboard PCB 4 further includes an identification circuit 45 and a measurement sampling circuit 46, and the identification circuit 45 is electrically connected to the processor 47 and the copper-plated ring 44 respectively;
[0070] The identification circuit 45 and the measurement sampling circuit 46 are electrically connected to the two groups of the semi-ring input connection pieces 3 respectively, so that the two groups of the semi-ring input connection pieces 3 are short-circuited when the test leads are inserted;
[0071] Specifically, when no test lead is inserted into the dual-signal jack channel, the two groups of the semi-ring input connectors 3 remain in an open-circuit state, and the upper resistor of the identification circuit 45 defaults to a high level; when a test lead is inserted into the dual-signal jack channel, the two groups of the semi-ring input connectors 3 are in a short-circuit state under the action of the conductor of the test lead. Since the impedance of the measurement sampling circuit 46 is very low, the upper resistor of the identification circuit 45 and the impedance of the sampling circuit are divided into a low level; when the non-current detection gear is selected, if the test lead is inserted into the dual-signal jack channel, the identification circuit 45 will recognize a low level, so the processor 47 receives a low-level signal and will determine that the test lead is incorrectly inserted. The processor 47 will trigger an alarm, emit a buzzer warning sound or light up an alarm light.
[0072] The assembly method of the highly integrated semi-ring dual-signal jack channel device of the utility model comprises the following steps:
[0073] (1) The input jack socket 2 is inserted into the channel structure 11 of the housing base 1 by one-time injection molding. At this time, the insertion seat 21 is accommodated in the installation seat 111, the sealing ring 22 is in contact with the sealing convex edge 112, and the limiting rib 113 limits and fixes the sealing ring 22;
[0074] (2) Assemble the limiting assembly part 121 in the limiting slot 122, and then install the semi-ring input connecting piece 3 in the shell base 1. At this time, the semi-ring connecting part 31 is installed in the semi-annular slot 24 to form a dual signal insertion channel, the U-shaped connecting part 33 is limited in the positioning avoidance groove 114, and the electrical connecting part 32 is installed in the limiting slot 122;
[0075] (3) placing the assembly of step (2) in a secondary beer injection mold and forming the waterproof rubber plug 5 by injection molding using molten rubber, so that the inside and outside of the dual signal jack channel are completely sealed and isolated;
[0076] (4) Assemble the main board PCB4 on the assembly of step (3), at this time, the channel structure 11 is inserted into the channel avoidance through hole 41, and the anti-loosening screw is used to pass through the second locking through hole 42 and the first locking through hole 35 and lock with the limiting assembly part 121, so that the copper-plated ring 44 of the main board PCB4 forms a close contact connection with the semi-ring input connecting piece 3, thereby realizing the electrical connection between the two groups of the semi-ring input connecting pieces 3 and the identification circuit 45 and the measurement sampling circuit 46 respectively.
[0077] The method for using the highly integrated semi-ring dual-signal jack channel device of the utility model comprises the following steps:
[0078] (1) When no test lead is inserted into the dual-signal jack, the two sets of semi-ring input connectors 3 remain in an open circuit state, and the upper resistor of the identification circuit 45 defaults to a high level;
[0079] (2) When a test lead is inserted into the dual-signal jack, the two sets of the semi-ring input connectors 3 are in a short-circuit state under the action of the conductor of the test lead. Since the impedance of the measurement sampling circuit 46 is very low, the upper resistor of the identification circuit 45 and the impedance of the sampling circuit are divided into a low level;
[0080] (3) When the non-current detection gear is selected, if the test lead is inserted into the dual-signal jack, the identification circuit 45 will identify a low level, so the processor 47 receives a low-level signal and determines that the test lead is incorrectly inserted. The processor 47 will trigger an alarm and emit a buzzer warning sound or light up an alarm light.
[0081] The highly integrated semi-ring dual-signal jack channel device of the utility model has the following advantages:
[0082] (1) Based on the anti-rotation structure and the two groups of semi-ring input connecting pieces integrated on the shell base through secondary injection molding, the mainboard PCB does not need to be plugged in and welded anymore. The mainboard PCB and the two groups of semi-ring input connecting pieces can be electrically locked and connected only by the anti-loosening screws, so that the two groups of semi-ring input connecting pieces are electrically connected to the identification circuit and the measurement sampling circuit. The online assembly process is simpler and the assembly efficiency is higher. In addition, the traditional mainboard PCB and input connecting piece welding process is replaced, reducing the risk of circuit breakage such as false welding and falling welding.
[0083] (2) The structure of the housing base is optimized to be divided into the channel structure and the anti-rotation structure, and the input jack socket is installed in the channel structure. The structure of the semi-ring input connecting piece is innovatively designed to be the semi-ring connecting portion and the electrical connecting portion. On the one hand, the semi-ring connecting portion is inserted into the jack channel cavity to form the dual-signal jack channel. On the other hand, the electrical connecting portion is locked in the anti-rotation structure to achieve electrical connection with the mainboard PCB, meeting the requirements of a highly integrated assembly structure to realize the function of determining if the test lead is mis-inserted.
[0084] (3) The mainboard PCB is electrically connected to the semi-ring input connector through the copper ring, thereby improving the electrical conductivity and anti-interference performance of the two. The identification circuit determines whether the two groups of semi-ring input connectors have realized signal on-off due to the insertion of the test leads, thereby realizing the function of the dual signal jack channel to determine whether the test leads are incorrectly inserted;
[0085] (4) The waterproof rubber plug is used to improve the internal sealing of the device, thereby achieving excellent waterproof performance.
[0086] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation on the present invention. Any person skilled in the art can, without departing from the scope of the present invention, utilize the above-disclosed technical means and technical content to make many possible variations and modifications to the present invention, or modify it into equivalent embodiments with equivalent variations. Therefore, all equivalent variations based on the shape, structure, and principle of the present invention that do not depart from the content of the present invention's technical solution should be included in the scope of protection of the present invention.
Claims
1. A highly integrated semi-ring dual-signal jack channel device, characterized in that: The device comprises: The housing base includes a channel structure and anti-rotation structures on both sides; An input jack socket, which is inserted into the channel structure and includes a jack channel cavity formed by a hollow setting; Two sets of semi-ring input connectors constitute a dual-signal jack channel, comprising an integrally formed semi-ring connector and an electrical connector, wherein the semi-ring connector is inserted into the jack channel cavity, and the electrical connector extends and is fixed in the anti-rotation structure; The mainboard PCB is placed on the periphery of the channel structure and is electrically locked and connected to the electrical connection portion.
2. The highly integrated semi-ring dual-signal jack channel device according to claim 1, characterized in that: The semi-ring input connecting piece further comprises a U-shaped connecting portion and an L-shaped connecting portion; The two ends of the U-shaped connecting portion are respectively fixedly connected to the semi-ring connecting portion and the L-shaped connecting portion, so that the axis of the semi-ring connecting portion is parallel to the L-shaped connecting portion; The L-shaped connecting portion is fixedly connected to the electrical connecting portion so that the electrical connecting portion is perpendicular to the axis of the semi-ring connecting portion.
3. The highly integrated semi-ring dual-signal jack channel device according to claim 2, characterized in that: A first locking through hole is provided through the electrical connection portion; A limiting convex edge is provided around the electrical connection portion, the electrical connection portion is adaptively installed in the anti-rotation structure through the limiting convex edge, and the electrical connection portion is electrically locked and connected to the mainboard PCB through the first locking through hole.
4. The highly integrated semi-ring dual-signal jack channel device according to claim 3, characterized in that: The anti-rotation structure includes a limiting assembly and several groups of limiting ribs. The several groups of limiting ribs are connected end to end on the same horizontal plane in a polygonal arrangement to form a limiting slot. The limiting assembly is embedded in the limiting slot, and the limiting protrusion is adaptively installed in the limiting slot.
5. The highly integrated semi-ring dual-signal jack channel device according to claim 4, characterized in that: The input jack socket includes an insert seat with an opening at one end, the jack channel cavity is arranged in the insert seat and communicates with the opening, and is bent outward along the opening of the insert seat to form a sealing ring, and the insert seat and the sealing ring are both accommodated in the channel structure; The inner wall surface of the insertion seat forms two groups of symmetrically arranged semi-annular grooves through two groups of isolation retaining walls. The semi-annular grooves are connected to the jack channel cavity, and the semi-annular connecting part is inserted into the semi-annular grooves.
6. The highly integrated semi-ring dual-signal jack channel device according to claim 5, characterized in that: The channel structure includes a mounting seat having a mounting cavity, a sealing convex edge is provided on the inner wall surface of the mounting seat surrounding the mounting cavity, the insertion seat is accommodated in the mounting cavity, and the sealing convex edge abuts against the sealing ring platform; The inner wall surface of the mounting seat is provided with a limiting rib for limiting and fixing the sealing ring platform; A positioning avoidance groove for accommodating the U-shaped connecting part is provided on the mounting seat.
7. The highly integrated semi-ring dual-signal jack channel device according to claim 6, characterized in that: The device also includes a waterproof rubber plug detachably covering the channel structure; A jack sealing boss and a rib limiting groove are provided at the bottom of the waterproof rubber plug, corresponding to the dual signal jack channels and the limiting rib respectively; An L-shaped limiting groove for sealing and positioning the L-shaped connecting portion is provided at the bottom of the waterproof rubber plug.
8. The highly integrated semi-ring dual-signal jack channel device according to claim 7, characterized in that: A channel avoidance through-hole and a second locking through-hole are respectively provided through the mainboard PCB corresponding to the channel structure and the anti-rotation structure, and a connecting piece avoidance groove is respectively provided on both sides of the channel avoidance through-hole corresponding to the semi-ring input connecting piece; A copper-clad ring is provided around the second locking through hole, and the copper-clad ring is in close contact with the semi-ring input connecting piece; The channel structure is placed in the channel avoidance through hole, and the anti-loosening screw passes through the second locking through hole and the first locking through hole and is locked with the limiting assembly part to electrically connect the mainboard PCB with the semi-ring input connecting piece.
9. The highly integrated semi-ring dual-signal jack channel device according to claim 8, characterized in that: The mainboard PCB further includes an identification circuit and a measurement sampling circuit, wherein the identification circuit is electrically connected to the processor and the copper-plated ring respectively; The identification circuit and the measurement sampling circuit are electrically connected to the two groups of semi-ring input connecting pieces respectively, so that the two groups of semi-ring input connecting pieces are short-circuited when the test leads are inserted.
10. An instrument, characterized in that: The device includes the highly integrated semi-ring dual-signal jack channel device according to any one of claims 1 to 9.