Plugging test mechanism
By designing a plug-in/plug-out testing mechanism, and utilizing driving and buffer components, efficient plug-in/plug-out testing of the Type-C interface is achieved. This solves the problems of low testing efficiency and high manual labor intensity in existing technologies, improves testing efficiency, and reduces socket damage.
Patent Information
- Application Number
- CN202422924928.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Existing technologies for plugging and unplugging Type-C interfaces are inefficient and involve high labor intensity for manual operations.
Design an insertion and removal test mechanism, including a base, an insertion assembly, a plug assembly, a drive assembly, and a buffer assembly. The drive assembly drives the plug to insert into or remove from the socket, and the buffer assembly provides cushioning to reduce impact force, enabling simultaneous testing of multiple sockets.
It improves testing efficiency, reduces the labor intensity of workers, reduces the risk of damage to the socket, and makes the plug connection tighter.
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Figure CN223742624U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to plug -in test equipment technical field, specifically, relate to a kind of plug -in test mechanism. BACKGROUND
[0002] With the development of industrialization, various interfaces begin to be unified, and more and more devices use Type-C interfaces. The interface is not only used for charging, but also for data transmission. Since the interface is frequently plugged in and out, the Type-C interface needs to be controlled in the production process to ensure quality, that is, the function of the Type-C interface needs to be tested to ensure that it is complete and qualified before being delivered to the customer.
[0003] In the prior art, manual operation is usually used to test the Type-C interface, which has low test efficiency and high labor intensity. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of plug -in test mechanism to solve the technical problems of low test efficiency and high labor intensity of manual operation in the prior art.
[0005] The utility model provides a kind of plug -in test mechanism, including base and plug -in component, the base has the load position for placing the product to be tested;The plug -in component includes plug assembly, drive assembly and buffer assembly, the plug assembly includes plug;The buffer assembly is located between the plug assembly and the drive assembly, the drive assembly is installed on the base, for driving the plug to be inserted or pulled out in the first direction The jack of the product to be tested.
[0006] Optionally, the plug assembly includes a fixed seat, and the plug has a plurality of plugs and is fixedly arranged in parallel and spaced apart in the fixed seat.
[0007] The power output end of the drive assembly has a moving seat.
[0008] The buffer assembly is arranged between the fixed seat and the moving seat.
[0009] Optionally, the buffer assembly includes a guide column and a spring, one of the fixed seat and the moving seat has a guide hole, the guide column is slidingly connected to the guide hole, and the end of the guide column is fixedly arranged in the other; The spring is arranged between the fixed seat and the moving seat.
[0010] Optionally, the spring is sleeved on the guide column, or at least one of the fixed seat and the moving seat is provided with a spring containing groove, and the spring is arranged in the spring containing groove.
[0011] And / or, one of the fixed seat and the moving seat is provided with a linear bearing seat, and an inner hole of the linear bearing seat forms the guide hole;
[0012] And / or, the buffer assembly further comprises a first guide rail, the first guide rail is installed on the moving seat, and the fixed seat is slidingly connected to the first guide rail.
[0013] Optionally, the plug has a plug part and a mounting part, the plug part is fixedly arranged on the mounting part, the plug part can be inserted into the plug hole, the fixed seat is fixedly arranged with a first clamping seat, and the mounting part is fixedly arranged on the first clamping seat.
[0014] And / or, the driving assembly comprises a driving component and a second guide rail, and the driving component and the second guide rail are both installed on the base, and the driving component is used for driving the moving seat to slide along the second guide rail.
[0015] Optionally, the plug has a wire part, the wire part is connected to the plug part and fixedly arranged on the mounting part, the fixed seat is fixedly arranged with a second clamping seat, the second clamping seat and the first clamping seat are respectively located on two sides of the fixed seat, and the wire part passes through the fixed seat and is fixedly arranged on the second clamping seat.
[0016] And / or, the first clamping seat has a first clamping hole, and the mounting part is sleeved with a flexible sleeve, and the flexible sleeve is fitted into the first clamping hole.
[0017] Optionally, the bearing position is provided with a limiting assembly, the limiting assembly can abut against opposite side wall surfaces of the product to be tested, and is used for limiting the movement of the product to be tested in the first direction.
[0018] And / or, the plug has a plug part, the plug part can be inserted into the plug hole, and the plug part is sleeved with a flexible layer.
[0019] Optionally, the limiting assembly comprises a plurality of limiting pins which are arranged at intervals, and the limiting pins can abut against the side wall surfaces of the product to be tested.
[0020] And / or, the limiting assembly comprises a plurality of limiting blocks which are arranged at intervals, and the limiting blocks can abut against the side wall surfaces of the product to be tested.
[0021] And / or, the bearing position is provided with a bearing plate, and the limiting assembly is fixedly arranged on the bearing plate.
[0022] And / or, the product to be tested comprises a product body to be tested and a supporting plate, the supporting plate is fixedly arranged at the bottom end of the product to be tested, and the limiting assembly can abut against opposite side wall surfaces of the supporting plate to limit the movement of the supporting plate in the first direction.
[0023] Optionally, one of the supporting plate and the fixing seat has a positioning groove, and the other has a positioning part which is capable of being fitted into the positioning groove.
[0024] Optionally, the bearing plate has a sensing groove in which a sensor is arranged, and the sensor is used to detect whether the product to be tested is placed on the bearing plate.
[0025] Optionally, the fixing seat is fixedly provided with a positioning block at one end close to the product to be tested, and the positioning part is arranged in the positioning block.
[0026] The plug-in test mechanism has at least the following beneficial technical effects:
[0027] The plug-in test mechanism can simultaneously perform plug-in test on multiple jacks, improves the test efficiency, and reduces the labor intensity of workers. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 An assembly schematic view of the plug-in test mechanism is provided for the embodiments of the utility model;
[0029] Figure 2 A top view structural schematic view of the plug-in test mechanism is provided for the embodiments of the utility model;
[0030] Figure 3 A Figure 2 An enlarged structural schematic view of B in the middle;
[0031] Figure 4 A Figure 3 A C-C cross-sectional structural schematic view in the middle; Figure 5 A structural schematic view of the plug-in assembly in the plug-in test mechanism is provided for the embodiments of the utility model;
[0032] Figure 6 A top view structural schematic view of the plug-in assembly in the plug-in test mechanism is provided for the embodiments of the utility model;
[0033] Figure 7 A Figure 6 An A-A cross-sectional structural schematic view in the middle;
[0034] Figure 8 Part assembly structure schematic view of plug-in test mechanism is provided for the embodiment of the utility model.
[0035] Mark explanation:
[0036] 10, base;
[0037] 20, bearing plate; 201, limit pin; 202, induction groove;
[0038] 30, product to be tested; 310, product to be tested body; 311, jack; 320, supporting plate; 321, positioning groove;
[0039] 40, plug-in assembly; 410, plug assembly; 411, plug; 4111, plug-in part; 4112, mounting part; 4113, wire part; 4114, flexible layer; 4115, flexible sleeve; 412, fixed seat; 413, first clamping seat; 414, second clamping seat; 415, positioning block; 416, positioning part; 430, plug-in driving assembly; 431, driving part; 432, second guide rail; 433, second sliding block; 434, moving seat; 440, buffer assembly; 441, first guide rail; 442, first sliding block; 443, linear bearing seat; 444, guide hole; 445, guide column; 446, spring. DETAILED DESCRIPTION
[0040] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the following will combine with the attached Figure 1 Detailed description of the specific embodiment of the utility model.
[0041] In the utility model, the terms "connection", "connection" and other terms should be understood in a broad sense, for example, it can be fixed connection, can also be detachable connection or integral structure.
[0042] In the utility model, the terms "inner", "outer", "upper", "lower" and other indicating directions or position relations are based on the directions or position relations shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the indicated device or element must have a particular direction, structure and operation, therefore, it cannot be understood as the limitation of the utility model.
[0043] Referring to the attached Figure 2 X direction is the first direction, Y direction is the second direction, and the first direction is perpendicular to the second direction.
[0044] The utility model embodiment provides a kind of plug-in test mechanism, referring to the attached Figure 1The plug-pull test mechanism comprises a base 10 and a plug-in assembly 40, the base 10 has a bearing position for placing a product to be tested 30; the plug-in assembly 40 comprises a plug assembly 410, a driving assembly 430 and a buffer assembly 440, the plug assembly 410 comprises a plug 411; the buffer assembly 440 is arranged between the plug assembly 410 and the driving assembly 430, and the driving assembly 430 is installed on the base 10 and used for driving the plug 411 to be inserted into or pulled out of the jack 311 of the product to be tested 30 in a first direction.
[0045] The plug-pull test mechanism provided by the embodiment of the utility model, compared with manually testing the plug-pull of the jack of the product to be tested, can simultaneously test the plug-pull of multiple jacks 311, improves the test efficiency and reduces the labor intensity of workers; secondly, by arranging the buffer assembly 440 between the power output end of the plug assembly 410 and the driving assembly 430, the buffer assembly 440 can provide buffering when the plug 411 is inserted into the jack 311, reduces the impact force between the plug 411 and the jack 311, and reduces or even avoids the damage of the jack 311 caused by collision during the test; in addition, the compressed buffer assembly 440 can also exert an elastic force on the plug 411, so that the plug 411 is tightly inserted into the jack 311.
[0046] In the embodiment of the utility model, the jack 411 is a USB interface, and the type of the USB interface can be Type-A, Type-B or Type-C, etc.
[0047] Referring to the accompanying drawings Figure 1 and Figure 5 In the embodiment of the utility model, the plug assembly 410 comprises a fixing seat 412, the plug 411 has multiple plugs and is fixedly arranged in parallel and at intervals on the fixing seat 412; the power output end of the driving assembly 430 has a moving seat 434; and the buffer assembly 440 is arranged between the fixing seat 412 and the moving seat 434. In this way, the buffer assembly 440 is shared, and buffering is realized when multiple plugs 411 are inserted into the jacks 311 for test; compared with arranging the buffer assembly 440 for each plug 411, the structure is simple and the cost is low.
[0048] Referring to the accompanying drawings Figure 1 、 Figure 3 - Figure 8The utility model embodiment, buffer assembly 440 includes guide column 445 and spring 446, one of fixed base 412 and mobile seat 434 has guide hole 444, guide column 445 is connected in sliding in guide hole 444, and the end of guide column 445 is fixed in the other party;Spring 446 is located between fixed base 412 and mobile seat 434.It needs to be explained that if plug 411 is inserted into the socket 311 to the place, spring 446 is compressed, and spring 446 has the movement tendency of driving plug 411 along the first direction of socket 311 at this time.Such setting, guide column 445 provides the movement of fixed base 412 with direction, and spring 446 provides the buffer when plug 411 is inserted into socket 311 and is inserted and tested, avoids the hard contact of plug 411 and socket 311, reduces even avoids the damage of socket 311 when being impacted and tested.
[0049] The utility model embodiment, the setting position of spring 446 is not limited, and specifically as follows:
[0050] Referring to the accompanying drawings Figure 4 In one embodiment, spring 446 is sleeved on guide column 445.Such setting, guide column 445 provides support for spring 446, prevents spring 446 from lateral deviation during the working process.
[0051] In another embodiment, at least one of fixed base 412 and mobile seat 434 is provided with spring accommodating groove, and spring 446 is arranged in spring accommodating groove.Such setting, spring accommodating groove limits the movement of spring 446 along the plug-in direction, prevents spring 446 from lateral deviation during the working process.
[0052] Referring to the accompanying drawings Figure 4 The utility model embodiment, one of fixed base 412 and mobile seat 434 is fixed with linear bearing seat 443, and the inner hole of linear bearing seat 443 forms guide hole 444.Such setting, the movement of guide column 445 is provided with good direction, improves the stability of the movement of guide column 445.
[0053] Referring to the accompanying drawings Figure 8 The utility model embodiment, buffer assembly 440 further includes first guide rail 441, and first guide rail 441 is installed in mobile seat 434, and fixed base 412 is connected in sliding in first guide rail 441.Such setting, first guide rail 441 provides support and direction for the movement of fixed base 412.
[0054] Referring to the accompanying drawings Figure 8 The utility model embodiment, first guide rail 441 is connected in sliding with first sliding block 442, and fixed base 412 is fixed in first sliding block 442.
[0055] In the embodiment of the utility model, the fixed seat 412 is L-shaped fixed seat, including vertical plate and horizontal plate that connect with each other, the plug 411 is fixedly arranged on the vertical plate, and the horizontal plate is fixedly arranged on the first sliding block 442.
[0056] Referring to the accompanying drawings Figure 6 And Figure 7 In the embodiment of the utility model, the plug 411 has a plug-in part 4111 and a mounting part 4112, the plug-in part 4111 is fixedly arranged on the mounting part 4112, the plug-in part 4111 can be inserted into the jack 311, the fixed seat 412 is fixedly provided with a first clamping seat 413, and the mounting part 4112 is fixedly arranged on the first clamping seat 413. By so arranging, the plug 411 is clamped.
[0057] Referring to the accompanying drawings Figure 5 In the embodiment of the utility model, specifically, the first clamping seat 413 includes a first clamping plate and a second clamping plate connected with each other, at least one of the first clamping plate and the second clamping plate is fixedly arranged on the fixed seat 411, the first clamping plate and the second clamping plate are both provided with a first recess, the first recess forms a first clamping hole, and the first clamping hole is used for clamping the mounting part 4112. By so arranging, the structure is simple and easy to manufacture.
[0058] Referring to the accompanying drawings Figure 5 And Figure 7 In the embodiment of the utility model, the first clamping seat 413 has a first clamping hole, the mounting part 4112 is sleeved with a flexible sleeve 4114, and the flexible sleeve 4114 is matched in the first clamping hole. By so arranging, the mounting part 4112 is protected, the surface of the mounting part 4112 is prevented from being scratched by the first clamping seat 413, and the service life of the plug assembly 410 is prolonged.
[0059] Referring to the accompanying drawings Figure 8 In the embodiment of the utility model, the driving assembly 430 includes a driving component 431 and a second guide rail 432, the driving component 431 and the second guide rail 432 are both installed on the base 10, and the driving component 431 is used for driving the moving seat 434 to slide along the second guide rail 432. By so arranging, power and guidance are provided for the movement of the plug assembly 410.
[0060] Referring to the accompanying drawings Figure 8 In the embodiment of the utility model, the second guide rail 432 is slidably connected with a second sliding block 433, and the moving seat 434 is fixedly arranged on the second sliding block 433.
[0061] In the embodiment of the utility model, the driving component 431 can be a linear driving component, specifically a pneumatic cylinder or an electric push rod; the driving component 431 can also be a motor and a linear module, or a motor and a belt drive.
[0062] Referring to the accompanying drawings Figure 7The utility model embodiment, the plug 411 has the wire portion 4113, the wire portion 4113 is connected in the plug portion 4111 and is fixed in the installation portion 4112, the fixed seat 412 is fixed with the second clamping seat 414, and the second clamping seat 414 and the first clamping seat 413 are located at the both sides of the fixed seat 412 respectively, and the wire portion 4113 passes through the fixed seat 412 and is fixed in the second clamping seat 414, so setting realizes the clamping of the guide portion 4113.
[0063] Refer to the accompanying drawings Figure 5 And Figure 7 The utility model embodiment, specifically, the second clamping seat 413 includes the third clamping plate and the fourth clamping plate that are connected with each other, at least one of the third clamping plate and the fourth clamping plate is fixed in the fixed seat 411, the third clamping plate and the fourth clamping plate are both equipped with the second recess, and the second recess forms the second clamping hole, and the second clamping hole is used for clamping the guide portion 4113.
[0064] The utility model embodiment, the bearing position is equipped with the limiting assembly, and the limiting assembly can abut on the opposite side wall surface of the product to be measured 30 and is used for limiting the movement of the product to be measured 30 along the first direction, so setting realizes the limiting of the product to be measured 30, guarantees that the position of the product to be measured 30 is determined every time plug-in test is carried out and guarantees the smooth progress of plug-in test.
[0065] The utility model embodiment, the limiting assembly can be the limiting pin 201, can also be the limiting block, and can also be the combination of limiting pin and limiting block, and specifically as follows: for example, referring to the accompanying drawings Figure 1 And Figure 8 The limiting assembly includes the limiting pin 201, the limiting pin 201 has multiple and is spaced apart, and the limiting pin 201 can abut on the side wall surface of the product to be measured 30, for another example, the limiting assembly includes the limiting block, and the limiting block has multiple and is spaced apart, and the limiting block can abut on the side wall surface of the product to be measured 30, for another example, the limiting assembly includes the limiting pin 201 and the limiting block, and the limiting pin and the limiting block have multiple and are spaced apart respectively, and the limiting pin and the limiting block can abut on the side wall surface of the product to be measured 30.
[0066] The utility model embodiment, the upper end of the limiting pin 201 has a chamfer, so setting plays the guiding effect and is convenient for the product to be measured 30 to be placed between multiple limiting pins 201.
[0067] The utility model embodiment, the difference between the distance of the limiting pin 201 along the first direction and the size of the product to be measured 30 along the first direction is the preset gap, and specifically, the preset gap is between 0-0.6mm, preferably, the preset gap is 0.3mm, so setting is convenient for the taking and placing of the product to be measured 30.
[0068] Refer to the accompanying drawings Figure 8The utility model embodiment, the product to be measured 30 includes product to be measured body 310 and the supporting plate 320, the supporting plate 320 is fixed at the bottom end of the product to be measured 30, and the limiting assembly can abut opposite side wall surfaces of the supporting plate 320, for limiting the movement of the supporting plate 320 along the first direction. By setting in this way, the limiting assembly does not directly contact the outer wall surface of the product to be measured body 310 but contacts the outer wall surface of the supporting plate 320, avoiding scratching the outer wall surface of the product to be measured 310.
[0069] Referring to the accompanying drawings Figure 8 In the utility model embodiment, one of the supporting plate 320 and the fixed seat 412 has a positioning groove 321, and the other has a positioning portion 416, the positioning portion 416 can be fitted into the positioning groove 321, for limiting the movement of the supporting plate 320 along the second direction, wherein the second direction is perpendicular to the first direction, and both the first direction and the second direction are in the horizontal plane. It should be noted that the distance between the end of the positioning portion 416 and the positioning groove 321 close to each other is less than the distance between the end of the plug 411 and the insertion hole 311 close to each other. By setting in this way, before the plug 411 is inserted into the insertion hole 311, the positioning portion 416 and the positioning groove 321 are first contacted and fitted, playing a role in correcting the deviation of the product to be measured 30, providing a prerequisite for the plug 411 to perform the plug-in and plug-out test on the insertion hole 311.
[0070] Referring to the accompanying drawings Figure 8 In the utility model embodiment, specifically, the supporting plate 320 is provided with the positioning groove 321, and the fixed seat 412 is provided with the positioning portion 416, and the positioning portion 416 can be fitted into the positioning groove 321, wherein the positioning portion 416 is closer to the product to be measured 30 than the plug 411. By setting in this way, before the plug 411 is inserted into the insertion hole 311, the positioning portion 416 is first inserted into the positioning groove 321, playing a role in correcting the deviation of the product to be measured 30, providing a prerequisite for the plug 411 to perform the plug-in and plug-out test on the insertion hole 311.
[0071] Referring to the accompanying drawings Figure 8 In the utility model embodiment, the positioning groove 321 is a strip-shaped groove, and the positioning portion 416 is a positioning strip, and the side wall surface of the positioning strip is fitted with the side wall surface of the strip-shaped groove.
[0072] In the utility model embodiment, the end of the positioning portion 416 is provided with a chamfer, which can be a circular arc chamfer or an inclined chamfer. By setting in this way, guidance is provided, which is conducive to the insertion of the positioning portion 416 into the positioning groove 321.
[0073] In the utility model embodiment, the positioning portion 416 is provided with an elastic sleeve. By setting in this way, in the plug-in and plug-out process, the elastic sleeve can play a role in buffering and correcting the deviation of the product to be measured 30.
[0074] Referring to the accompanying drawings Figure 8The utility model embodiment, the fixed seat 412 is close to the one end of the product to be measured 30 and is fixed with the locating block 415, and the locating portion 416 is arranged in the locating block 415.
[0075] Referring to the accompanying drawings Figure 8 The utility model embodiment, the bearing position is equipped with the bearing plate 20, and the limiting assembly is fixedly arranged on the bearing plate 20.
[0076] The utility model embodiment, the bearing position is further equipped with a stand column, and the bearing plate 20 is fixedly arranged on the upper end of the stand column.
[0077] The utility model embodiment, the plug 411 has the splicing portion 4111, the splicing portion 4111 can be inserted into the jack 311, and the splicing portion 4111 is sleeved with the flexible layer 4115.Such setting can avoid scratching the inner wall surface of the jack 311.
[0078] The utility model embodiment, the bearing plate 20 has the induction groove 202, the sensor is arranged in the induction groove 202, and the sensor is used for detecting whether the product to be measured 30 is placed on the bearing plate 20.Specifically, the sensor is a photoelectric sensor or an ultrasonic sensor.
[0079] The utility model embodiment, the plug -pull test mechanism includes the controller, and the drive part 431 and the sensor are electrically connected with the controller, and the controller is configured as: if the sensor detects that the product to be measured 30 is placed in the bearing plate 20, the controller controls the drive part 431 and drives the mobile seat 434 and drives the plug 411 and inserts into the jack 311.
[0080] The utility model embodiment provides a kind of working principle of plug -pull test mechanism:
[0081] The product to be measured 30 is placed between the limiting pin 201 of bearing plate 20;
[0082] If the sensor detects the product to be measured 30, the drive part 431 drives the mobile seat 431 and moves along the first direction, and the locating portion 416 is inserted into the locating groove 321 first;Then the drive part 431 drives the mobile seat 434 and drives the plug 411 and inserts into the jack 311;If the plug 411 is inserted into the jack 311 in place, spring 446 is compressed, and the plug 411 and the jack 311 are elastically contacted, and the jack 311 is tested by plugging and pulling;
[0083] After plug -pull test is completed, the drive part 431 moves along the opposite direction of the first direction, and the plug 411 is pulled out of the jack 311;
[0084] The product to be measured 30 is taken down, and the product to be measured 30 is placed again to carry out plug -pull test.
[0085] Although the utility model discloses as above, the utility model is not limited to this. Any person skilled in the art, without departing from the spirit and scope of the utility model, can make various changes and modifications, therefore the protection scope of the utility model should be limited to the range defined by the claims.
Claims
1. A plug-in test mechanism, characterized by, The utility model relates to a plug-in and pull-out device for product testing, comprising a base (10) and a plug-in and pull-out assembly (40), the base (10) has a bearing position for placing a product (30) to be tested, the plug-in and pull-out assembly (40) comprises a plug assembly (410), a driving assembly (430) and a buffer assembly (440), the plug assembly (410) comprises a plug (411), the buffer assembly (440) is arranged between the plug assembly (410) and the driving assembly (430), and the driving assembly (430) is mounted on the base (10) and used to drive the plug (411) to be inserted into or pulled out of a jack (311) of the product (30) to be tested in a first direction.
2. The poke test mechanism of claim 1, wherein, The plug assembly (410) comprises a fixing seat (412), and the plug (411) has a plurality of plug-in parts (4111) which are fixedly arranged in parallel and at intervals on the fixing seat (412); A power output end of the driving assembly (430) has a moving seat (434); The buffer assembly (440) is arranged between the fixing seat (412) and the moving seat (434).
3. The poke test mechanism of claim 2, wherein, The buffer assembly (440) comprises a guide column (445) and a spring (446), one of the fixing seat (412) and the moving seat (434) has a guide hole (444), the guide column (445) is slidably connected to the guide hole (444), and the end of the guide column (445) is fixedly arranged on the other one; the spring (446) is arranged between the fixing seat (412) and the moving seat (434).
4. The poke test mechanism of claim 3, wherein, The spring (446) is sleeved on the guide column (445); or at least one of the fixing seat (412) and the moving seat (434) is provided with a spring accommodating groove, and the spring (446) is arranged in the spring accommodating groove; And / or, one of the fixing seat (412) and the moving seat (434) is fixedly provided with a linear bearing seat (443), and an inner hole of the linear bearing seat (443) forms the guide hole (444); And / or, the buffer assembly (440) further comprises a first guide rail (441), the first guide rail (441) is mounted on the moving seat (434), and the fixing seat (412) is slidably connected to the first guide rail (441).
5. The poke test mechanism of claim 2, wherein, The plug (411) has a plug-in part (4111) and a mounting part (4112); the plug-in part (4111) is fixedly arranged on the mounting part (4112), the plug-in part (4111) can be inserted into the jack (311), the fixing seat (412) is fixedly provided with a first clamping seat (413), and the mounting part (4112) is fixedly arranged on the first clamping seat (413); And / or, the driving assembly (430) comprises a driving component (431) and a second guide rail (432), the driving component (431) and the second guide rail (432) are both mounted on the base (10), and the driving component (431) is used to drive the moving seat (434) to slide along the second guide rail (432).
6. The poke test mechanism of claim 5, wherein, The plug (411) has a wire part (4113) connected to the plug-in part (4111) and fixed to the mounting part (4112); the fixed seat (412) is fixed with a second clamping seat (414), and the first clamping seat (413) and the second clamping seat (414) are located on both sides of the fixed seat (412) respectively, and the wire part (4113) passes through the fixed seat (412) and is fixed to the second clamping seat (414); And / or, the first clamping seat (413) has a first clamping hole, and the mounting part (4112) is sleeved with a flexible sleeve (4114) fitted in the first clamping hole.
7. The plug-in test mechanism according to any one of claims 2-6, characterized in that, The bearing position is provided with a limiting assembly capable of abutting against opposite side wall surfaces of the product to be tested (30) for limiting the movement of the product to be tested (30) in the first direction; And / or, the plug (411) has a plug-in part (4111) capable of being inserted into the jack (311), and the plug-in part (4111) is sleeved with a flexible layer (4115).
8. The poke test mechanism of claim 7, wherein, The limiting assembly includes a plurality of limiting pins (201) spaced apart, which can abut against opposite side wall surfaces of the product to be tested (30); And / or, the limiting assembly includes a plurality of limiting blocks spaced apart, which can abut against opposite side wall surfaces of the product to be tested (30); And / or, the bearing position is provided with a bearing plate (20), and the limiting assembly is fixed to the bearing plate (20); And / or, the product to be tested (30) includes a product body (310) and a supporting plate (320), the supporting plate (320) is fixed to the bottom end of the product to be tested (30), and the limiting assembly can abut against opposite side wall surfaces of the supporting plate (320) for limiting the movement of the supporting plate (320) in the first direction.
9. The plug-in test mechanism of claim 8, wherein, One of the supporting plate (320) and the fixed seat (412) has a positioning groove (321), and the other has a positioning part (416), and the positioning part (416) can be fitted into the positioning groove (321); And / or, the bearing plate (20) has a sensing groove (202) provided with a sensor, and the sensor is used for detecting whether the product to be tested (30) is placed on the bearing plate (20).
10. The poke test mechanism of claim 9, wherein, The fixed seat (412) is fixed with a positioning block (415) close to one end of the product to be tested (30), and the positioning part (416) is arranged in the positioning block (415). The plug (411) has a wire part (4113) connected to the plug-in part (4111) and fixed to the mounting part (4112); the fixed seat (412) is fixed with a second clamping seat (414), and the first clamping seat (413) and the second clamping seat (414) are located on both sides of the fixed seat (412) respectively, and the wire part (4113) passes through the fixed seat (412) and is fixed to the second clamping seat (414); And / or, the first clamping seat (413) has a first clamping hole, and the mounting part (4112) is sleeved with a flexible sleeve (4114) fitted in the first clamping hole. The bearing position is provided with a limiting assembly capable of abutting against opposite side wall surfaces of the product to be tested (30) for limiting the movement of the product to be tested (30) in the first direction; And / or, the plug (411) has a plug-in part (4111) capable of being inserted into the jack (311), and the plug-in part (4111) is sleeved with a flexible layer (4115). The limiting assembly includes a plurality of limiting pins (201) spaced apart, which can abut against opposite side wall surfaces of the product to be tested (30); And / or, the limiting assembly includes a plurality of limiting blocks spaced apart, which can abut against opposite side wall surfaces of the product to be tested (30); And / or, the bearing position is provided with a bearing plate (20), and the limiting assembly is fixed to the bearing plate (20); And / or, the product to be tested (30) includes a product body (310) and a supporting plate (320), the supporting plate (320) is fixed to the bottom end of the product to be tested (30), and the limiting assembly can abut against opposite side wall surfaces of the supporting plate (320) for limiting the movement of the supporting plate (320) in the first direction. One of the supporting plate (320) and the fixed seat (412) has a positioning groove (321), and the other has a positioning part (416), and the positioning part (416) can be fitted into the positioning groove (321); And / or, the bearing plate (20) has a sensing groove (202) provided with a sensor, and the sensor is used for detecting whether the product to be tested (30) is placed on the bearing plate (20). The fixed seat (412) is fixed with a positioning block (415) close to one end of the product to be tested (30), and the positioning part (416) is arranged in the positioning block (415).