Terminal assembly mounting apparatus and terminal assembly mounting method for 5g base station control module
By designing a 5G base station control module installation device that includes a conveying channel, a insert device, and an adjustment device, the problem of inconvenient spring contact installation was solved, enabling rapid and accurate installation of the push button and spring contact, thus improving installation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- DONGGUAN ZHENLIANG PRECISION TECH CO LTD
- Filing Date
- 2023-03-08
- Publication Date
- 2026-04-14
AI Technical Summary
In related technologies, during the installation of 5G base station control modules, the operator has difficulty accurately and quickly installing the press button and spring contact due to the influence of the spring's own elasticity, resulting in extended installation time and reduced installation efficiency.
A terminal assembly installation device for a 5G base station control module includes a combination of a conveying channel, a first insert insertion device, a pressing key insertion device, an adjustment device, and a second insert insertion device. Through the coordinated operation of these devices, accurate and quick installation of the upper terminal insert, the pressing key, and the lower terminal insert can be achieved.
This device and method enable the rapid and accurate installation of push-buttons and spring contacts, improving the installation efficiency of 5G base station control modules.
Smart Images

Figure CN116315974B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of 5G base station control module installation technology, and in particular to a terminal component installation device and a terminal component installation method for a 5G base station control module. Background Technology
[0002] With the rapid development of 5G signals, their applications have become integrated into all aspects of life. A 5G base station, or public mobile communication base station, refers to a radio transceiver station that transmits information between a mobile communication switching center and a mobile phone terminal within a defined radio coverage area. The control module is a crucial component of a 5G base station.
[0003] The control module mainly consists of a housing, upper terminal inserts, lower terminal inserts, a push button, and a spring contact. The upper and lower terminal inserts are arranged side-by-side in the housing, and the spring contact is installed between them. The push button is movably mounted on the housing. In the initial state, the contact portion of the spring contact is in constant contact with the upper terminal insert. By pressing the push button, the contact portion of the spring contact moves downward, allowing it to contact the lower terminal insert.
[0004] In related technologies, the general procedure is to first install the upper and lower terminal inserts into the housing, and then install the push button and spring contact into the housing. During this installation step, the push button needs to be pressed against the spring contact, and the positions of the push button and spring contact need to be adjusted so that the contact portion of the spring contact is in constant contact with the upper terminal insert. However, due to the inherent elasticity of the spring contact, it is difficult for the operator to accurately and quickly install the push button and spring contact into place, thus prolonging the installation time and reducing installation efficiency.
[0005] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this disclosure, and therefore may include information that does not constitute prior art known to those skilled in the art. Summary of the Invention
[0006] In view of at least one of the above-mentioned technical problems, this application provides a terminal assembly installation device and a terminal assembly installation method for a base station control module. This solves the problem that in related technologies, the common practice is to first install the upper and lower terminal inserts into the housing, and then install the push button and spring contact into the housing. In this installation step, the push button needs to be pressed against the spring contact, and then the positions of the push button and the spring contact need to be adjusted so that the contact portion of the spring contact is in constant contact with the upper terminal insert. However, due to the influence of the spring contact's own elasticity, the operator finds it difficult to accurately and quickly install the push button and spring contact into place, thus prolonging the installation time and reducing installation efficiency.
[0007] An embodiment of the first aspect of this application provides a terminal assembly mounting device for a 5G base station control module, comprising:
[0008] A conveyor channel for conveying workpieces consisting of a housing and spring sheets; and sequentially arranged on the same side of the conveyor channel:
[0009] The first insert device is used to insert the upper terminal insert into the housing;
[0010] The push button insertion device is used to insert the push button into the housing so that the push button abuts against the spring contact. At this time, the push button and the spring contact are in an adjustment state.
[0011] The adjustment device is used to move the spring contact, press the key, and change the spring contact from the unadjusted state to the correct assembly state, so that the spring contact contacts the upper terminal insert.
[0012] The second insert device is used to insert the lower terminal insert into the housing.
[0013] The present application has the following technical effects: The installation equipment of the present application, through the cooperation of the first insert device, the press button insert device, the adjustment device and the second insert device, realizes the installation sequence of the upper terminal insert, the press button and the lower terminal insert, which facilitates the installation process of the 5G base station control module, and can accurately and quickly install the press button and the spring contact into place, effectively improving the installation efficiency.
[0014] In one implementation, the adjustment device includes a sliding guide seat, a driving component, and a toggle component. The sliding guide seat has a groove extending in a second direction. A portion of the driving component is slidably disposed in the groove, and the toggle component is disposed in the groove. A portion of the driving component is connected to the toggle component. Driven by the driving component, the toggle component actuates the spring sheet, causing the pressing button and the spring sheet to change from the state to be adjusted to the correct assembly state, so that the spring sheet contacts the upper terminal insert.
[0015] In one implementation, the drive component includes a mating member movable along a second direction, the mating member having an abutment block facing the actuating component, the lower edge of the end of the abutment block having a rounded corner structure;
[0016] The actuating assembly includes a rotating member, a wheel, and an actuating plate, all of which can move along a second direction. The rotating member is rotatably disposed above the sliding guide seat. The rotating member has a wheel at one end near the mating member and an actuating plate at one end near the conveying channel.
[0017] When the actuating piece is below the spring sheet, the mating parts move toward the rotating wheel and gradually approach it. The lower edge of the abutment block contacts the rotating wheel, and the end of the rotating part near the abutment block rotates downward. The other end of the rotating part near the conveyor channel is lifted, causing the actuating piece to push the spring sheet upward, thereby changing the pressing button and spring sheet from the state to the correct assembly state.
[0018] In one implementation, the drive assembly includes a toggle cylinder, a first movable seat, and a connector. The first movable seat is movably disposed in a slide groove, one end of the connector is connected to the first movable seat, and the toggle cylinder is located on one side of the sliding guide seat. The cylinder shaft of the toggle cylinder is connected to the first movable seat.
[0019] The actuating assembly includes a second fixed seat, which is disposed in a slide groove, and the other end of the connector is connected to the second fixed seat.
[0020] In one implementation, a first movable seat is provided with a first transverse groove extending along a first direction, and a second fixed seat is provided with a second transverse groove extending along the first direction, wherein the width of the second transverse groove is greater than the width of the first transverse groove.
[0021] The connector has a first protrusion and a second protrusion at its two opposite ends. The first protrusion is located in the first transverse groove and the second protrusion is located in the second transverse groove.
[0022] In one implementation, the first insert device includes a first swing block, a first guide seat, a second guide seat, and a first insert assembly. The first guide seat and the second guide seat are arranged side by side on one side of the conveying channel, and there is a first swing space between the first guide seat and the second guide seat. The first swing block is swingably arranged on one side of the first guide seat and the second guide seat, and the first insert assembly is arranged on one side of the second guide seat.
[0023] When the first swing block drives the first insert terminal to a horizontal state, the first swing block is placed in the first swing space, and the first insert assembly passes through the second guide seat, the first swing block and the first guide seat in sequence, and inserts the first insert terminal into the workpiece to be processed.
[0024] In one implementation, the first swing block has a first storage slot, the first guide seat has a first guide slot, and the second guide seat has a second guide slot.
[0025] When the first swing block is in a horizontal state, the first guide groove, the first placement groove and the second guide groove are located on the same horizontal plane.
[0026] In one implementation, the push button insertion device includes a first linear motion component, a second linear motion component, a rotating component, and a clamping component. The first linear motion component is disposed on one side of the conveying channel along a second direction, the second linear motion component is disposed on the first linear motion component along a third direction, the rotating component is connected to the first linear motion component, and the clamping component is connected to the rotating component. The first linear motion component and the second linear motion component drive the clamping component to move along the second direction and the third direction, respectively, and the rotating component drives the clamping component to rotate, so that the clamping component clamps the push button and inserts it into the housing.
[0027] In one implementation, the second insert insertion device includes a second swing block, a third guide seat, a fourth guide seat, and a second insert assembly. The third guide seat and the fourth guide seat are arranged side by side on one side of the conveying channel. A second swing space is provided between the third guide seat and the fourth guide seat. The second swing block is swingably arranged between the third guide seat and the fourth guide seat. The second insert assembly is arranged on one side of the fourth guide seat.
[0028] When the second swing block drives the second insert terminal to a horizontal state, the second swing block is placed in the second swing space, and the second insert assembly passes through the fourth guide seat, the second swing block and the third guide seat in sequence, and inserts the second insert terminal into the workpiece to be processed.
[0029] An embodiment of the second aspect of this application provides a terminal assembly mounting method implemented by the terminal assembly mounting device of the 5G base station control module provided in the embodiment of the first aspect of this application, including:
[0030] The conveyor channel transports the workpiece to be processed, which consists of a shell and spring sheets;
[0031] The first insert device inserts the upper terminal insert into the housing;
[0032] The button insertion device inserts the button into the housing, causing the button to contact the spring contact, thus placing the button and spring contact in an adjustment state.
[0033] The adjustment device moves the spring contact, causing the pressing button and the spring contact to change from the state to the correct assembly state, so that the spring contact contacts the upper terminal insert.
[0034] The second insert device inserts the lower terminal insert into the housing.
[0035] The present invention will be further described below with reference to the accompanying drawings and embodiments. Attached Figure Description
[0036] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0037] Figure 1 This is a structural diagram of the terminal assembly mounting device in the embodiments of this application;
[0038] Figure 2 This is a structural diagram of the first insert device in the embodiments of this application;
[0039] Figure 3 This is a structural diagram of the push-button insertion device in the embodiments of this application;
[0040] Figure 4 This is a structural diagram of the adjustment device in the embodiments of this application;
[0041] Figure 5 This is a partial structural diagram of the adjustment device in the embodiments of this application;
[0042] Figure 6 This is a structural diagram of the second insert device in the embodiments of this application;
[0043] Figure 7 This is a schematic diagram of the tossing operation of the spring contact in the embodiments of this application; Detailed Implementation
[0044] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0045] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0046] In the description of this application, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0047] In the embodiments of this application, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.
[0048] In the embodiments of this application, the first direction represents the X-axis direction of the spatial coordinate axis (which also corresponds to the left and right directions described in the text), the second direction represents the Y-axis direction of the spatial coordinate axis (which also corresponds to the front and back directions described in the text), and the third direction represents the Z-axis direction of the spatial coordinate axis (which also corresponds to the up and down directions described in the text).
[0049] The control module mainly consists of a housing 1a, an upper terminal insert 1b, a lower terminal insert, a push button 1c, and a spring contact 1d. The upper and lower terminal inserts are arranged side-by-side within the housing 1a. The spring contact 1d is installed between the upper and lower terminal inserts. The push button 1c is movably mounted on the housing 1a. In the initial state, the contact portion of the spring contact 1d is in constant contact with the upper terminal insert 1b. By pressing the push button 1c, the contact portion of the spring contact 1d moves downward, allowing it to contact the lower terminal insert.
[0050] In related technologies, the general procedure is to first install the upper terminal insert 1b and the lower terminal insert into the housing 1a, and then install the push button 1c and the spring contact 1d into the housing 1a. During this installation step, the push button 1c needs to be pressed against the spring contact 1d, and then the positions of the push button 1c and the spring contact 1d need to be adjusted so that the contact portion of the spring contact 1d is in constant contact with the upper terminal insert 1b. However, due to the inherent elasticity of the spring contact 1d, it is difficult for the operator to accurately and quickly install the push button 1c and the spring contact 1d into place, thus prolonging the installation time and reducing installation efficiency.
[0051] The installation device of this application uses a first insert device, a press button insert device, an adjustment device, and a second insert device to cooperate with each other to realize the installation sequence of the upper terminal insert 1b, the press button 1c, and the lower terminal insert. This facilitates the installation process of the 5G base station control module and can accurately and quickly install the press button 1c and the spring contact 1d into place, effectively improving installation efficiency.
[0052] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 ,in, Figure 1 This is a structural diagram of the terminal assembly mounting device in the embodiments of this application; Figure 2 This is a structural diagram of the first insert device in the embodiments of this application; Figure 3 This is a structural diagram of the push-button insertion device in the embodiments of this application; Figure 4 This is a structural diagram of the adjustment device in the embodiments of this application; Figure 5 This is a partial structural diagram of the adjustment device in the embodiments of this application; Figure 6 This is a structural diagram of the second insert device in the embodiments of this application; Figure 7 This is a schematic diagram of the toggle operation of the spring contact in the embodiment of this application; the first aspect of this application provides a terminal component installation device for a 5G base station control module, including a conveying channel 100, a first insert insertion device 200, a press key insertion device 300, an adjustment device 400 and a second insert insertion device 500.
[0053] Conveying channel 100 is used to convey the workpiece to be processed, which consists of a housing 1a and a spring sheet 1d; and sequentially arranged on the same side of the conveying channel 100 are:
[0054] The first insert insertion device 200 is used to insert the upper terminal insert 1b into the housing 1a;
[0055] The push button insertion device 300 is used to insert the push button 1c into the housing 1a, so that the push button 1c abuts against the spring contact 1d. At this time, the push button 1c and the spring contact 1d are in an adjustment state.
[0056] Adjustment device 400 is used to move spring spring 1d and press key 1c to change spring spring 1d from the state to be adjusted to the correct assembly state, so that spring spring 1d contacts the upper terminal insert 1b.
[0057] The second insert insertion device 500 is used to insert the lower terminal insert into the housing 1a.
[0058] In some examples, the first insert insertion device 200 includes a first swing block 210, a first guide seat 220, a second guide seat 230, and a first insert assembly 240. The first guide seat 220 and the second guide seat 230 are arranged side by side on one side of the conveying channel 100, and a first swing space 250 is provided between the first guide seat 220 and the second guide seat 230. The first swing block 210 is swingably disposed on one side of the first guide seat 220 and the second guide seat 230, and the first insert assembly 240 is disposed on one side of the second guide seat 230.
[0059] When the first swing block 210 drives the first insert terminal to a horizontal state, the first swing block 210 is placed in the first swing space 250, and the first insert assembly 240 passes through the second guide seat 230, the first swing block 210 and the first guide seat 220 in sequence, and inserts the first insert terminal into the workpiece to be processed.
[0060] like Figures 1 to 2 As shown, the first swing block 210 is driven by a motor to achieve a 90° swing, thereby allowing the first swing block 210 to swing between a vertical state and a horizontal state. When the first swing block 210 is in a vertical state, the upper terminal insert 1b is fed into the first storage slot of the first swing block 210 (mentioned below). When the first swing block 210 is in a horizontal state, the first insert assembly 240 performs an insert operation on the upper terminal insert 1b.
[0061] like Figure 2 As shown, the first insert assembly 240 may include a first insert cylinder 241, a first intermediate moving seat 242, and a first insert member 243. The first insert cylinder 241 is arranged along a second direction, and its cylinder shaft is connected to the first intermediate moving seat 242, driving the first intermediate moving seat 242 to reciprocate along the second direction. The first insert member 243 is disposed on the first intermediate moving seat 242. The first insert member 243 can be controlled to pass sequentially through the second guide seat 230, the first swing block 210, and the first guide seat 220. When the first insert member 243 passes the first swing block 210, it contacts the upper terminal insert 1b, thereby pushing the upper terminal insert 1b into the workpiece to be processed. In this way, by setting the first insert assembly 240, the precise and rapid insertion operation of the upper terminal insert 1b is achieved, improving the insertion efficiency.
[0062] The first guide seat 220 and the second guide seat 230 guide the stroke of the first insert 243, ensuring that the first insert 243 accurately inserts the upper terminal insert 1b.
[0063] The first swing block 210 changes the upper terminal insert 1b from a vertical state to a horizontal state, facilitating subsequent insert operations.
[0064] In some examples, the first swing block 210 has a first storage slot (not shown), the first guide seat 220 has a first guide slot (not shown), and the second guide seat 230 has a second guide slot (not shown).
[0065] When the first swing block 210 is in a horizontal state, the first guide groove, the first placement groove, and the second guide groove are on the same horizontal plane. In this way, the first insert 243 can smoothly enter the second guide groove, the first placement groove, and the first guide groove, so that the first insert can smoothly insert the upper terminal insert 1b into the workpiece to be processed.
[0066] In some examples, the key insertion device 300 includes a first linear motion assembly (not shown), a second linear motion assembly 310, a rotating assembly 320, and a clamping assembly 330. The first linear motion assembly is disposed on one side of the conveying channel 100 along a second direction, the second linear motion assembly 310 is disposed on the first linear motion assembly along a third direction, the rotating assembly 320 is connected to the first linear motion assembly, and the clamping assembly 330 is connected to the rotating assembly 320. The first linear motion assembly and the second linear motion assembly 310 drive the clamping assembly 330 to move along the second direction and the third direction, respectively, and the rotating assembly 320 drives the clamping assembly 330 to rotate, so that the clamping assembly 330 clamps the key 1c and inserts it into the housing 1a.
[0067] like Figure 3 As shown, the first linear motion component can be a cylinder drive mechanism, a linear motor, or a lead screw drive mechanism, and no specific limitation is made here.
[0068] The second linear motion component 310 can be a cylinder drive mechanism, a linear motor, or a lead screw drive mechanism; no specific limitation is made here.
[0069] The rotating assembly 320 may include a rotating shaft coaxially connected to the output of the motor.
[0070] The gripping assembly 330 may include a pneumatic gripper with a gripper block attached thereon.
[0071] For example, the first linear motion component and the second linear motion component 310 drive the clamping component 330 to move along the second direction and the third direction, respectively, to achieve planar movement of the clamping component 330. The rotation component 320 drives the clamping component 330 to rotate, so that the clamping component 330 has a vertical state and a horizontal state. Through the joint cooperation of the first linear motion component, the second linear motion component 310, and the rotation component 320, the clamping component 330 can remove the press button 1c and insert the press button 1c into the workpiece to be processed.
[0072] When the clamping assembly 330 is in a vertical position, it can controllably remove the press button 1c. When the clamping assembly 330 is in a horizontal position, it can controllably insert the press button 1c into the workpiece to be processed in the conveying channel 100.
[0073] In some examples, the adjustment device 400 includes a sliding guide seat 410, a drive assembly 420, and a toggle assembly 430. The sliding guide seat 410 is provided with a groove 411 extending in a second direction. A portion of the drive assembly 420 is slidably disposed in the groove 411. The toggle assembly 430 is disposed in the groove 411. A portion of the drive assembly 420 is connected to the toggle assembly 430. Driven by the drive assembly 420, the toggle assembly 430 toggle the spring 1d, so that the pressing button 1c and the spring 1d change from the state to the correct assembly state, and so that the spring 1d contacts the upper terminal insert 1b.
[0074] like Figure 4 As shown, the drive assembly 420 drives the toggle assembly 430 to toggle the spring spring 1d, so that the press button 1c and the spring spring 1d quickly change from the state to the correct assembly state, thereby allowing the spring spring 1d to contact the upper terminal insert 1b.
[0075] In some examples, the drive assembly 420 includes a toggle cylinder 421, a first movable seat 422, a connector 423, and a mating member 424. The first movable seat 422 is movably disposed in a slide groove 411. The mating member 424 is disposed on the first movable seat 422. The mating member 424 has an abutment block 4241 facing the toggle assembly 430. The lower edge of the end of the abutment block 4241 is rounded. One end of the connector 423 is connected to the first movable seat 422. The toggle cylinder 421 is located on one side of the sliding guide seat 410. The cylinder shaft of the toggle cylinder 421 is connected to the first movable seat 422.
[0076] The actuating assembly 430 includes a second fixed base 431, a rotating member 432, a rotating wheel 433, and an actuating piece 434. The second fixed base 431 is disposed in the slide groove 411. The other end of the connecting member 423 is connected to the second fixed base 431. The rotating member 432 is rotatably disposed on the second fixed base 431. The rotating member 432 is provided with a rotating wheel 433 at one end near the mating member 424, and the rotating member 432 is provided with an actuating piece 434 at one end near the conveying channel 100.
[0077] For example, the actuating cylinder 421 drives the first movable seat 422 to reciprocate along the second direction. With the connection of the connecting piece 423, the first movable seat 422 gradually approaches the second fixed seat 431. Specifically, when the actuating piece 434 is below the spring sheet 1d, the mating piece 424 moves toward the rotating wheel 433 and gradually approaches it. The lower edge of the abutment block 4241 contacts the rotating wheel 433. The rotating piece 432 rotates downward at one end near the abutment block 4241 and lifts up at the other end near the conveying channel 100, so that the actuating piece 434 pushes the spring sheet 1d upward, thereby changing the pressing button 1c and the spring sheet 1d from the state to be adjusted to the correct assembly state.
[0078] For example, when the abutment block 4241 contacts the rotating wheel 433, the rounded corner structure of the lower edge of the abutment block 4241 is tangent to the surface of the rotating wheel 433. When the abutment block 4241 continues to move along the second direction, the abutment block 4241 provides a downward force on the surface of the rotating wheel 433, thereby causing the rotating member 432 to rotate relative to the second fixed seat 431, causing one end of the actuating piece 434 of the rotating member 432 to be lifted upward, thereby pushing the spring piece 1d upward.
[0079] For example, a stop block 435 is provided on the second fixed seat 431, which is used to abut against the workpiece to be processed, so that the workpiece to be processed is more stable when the tossing operation is performed.
[0080] In some examples, the first movable seat 422 is provided with a first transverse groove 4221 extending in a first direction, and the second fixed seat 431 is provided with a second transverse groove 4311 extending in the first direction. The width of the second transverse groove 4311 is greater than the width of the first transverse groove 4221.
[0081] The connector 423 has a first protrusion 4231 and a second protrusion 4232 at opposite ends. The first protrusion 4231 is located in the first transverse groove 4221, and the second protrusion 4232 is located in the second transverse groove 4311.
[0082] like Figure 5 As shown, the first movable seat 422 and the connecting member 423 move together. When the first movable seat 422 moves toward the second fixed seat 431, the connecting member 423 moves relative to the second fixed seat 431 until the second protrusion 4232 of the connecting member 423 abuts against the side wall of the second transverse groove 4311, so that the abutting block 435 abuts against the workpiece to be processed, making the workpiece to be processed more stable. At the same time, the actuating piece 434 pushes the spring 1d upward, changing the pressing button 1c and the spring 1d from the state to be adjusted to the correct assembly state.
[0083] In some examples, the second insert insertion device 500 includes a second swing block, a third guide seat, a fourth guide seat, and a second insert assembly. The third guide seat and the fourth guide seat are arranged side by side on one side of the conveying channel 100. A second swing space is provided between the third guide seat and the fourth guide seat. The second swing block is swingably arranged between the third guide seat and the fourth guide seat. The second insert assembly is arranged on one side of the fourth guide seat.
[0084] When the second swing block drives the second insert terminal to a horizontal state, the second swing block is placed in the second swing space, and the second insert assembly passes through the fourth guide seat, the second swing block and the third guide seat in sequence, and inserts the second insert terminal into the workpiece to be processed.
[0085] The specific structure and working process of the second swing block are the same as those of the first swing block 210, the specific structure of the third guide seat is the same as that of the first guide seat 220, the specific structure of the fourth guide seat is the same as that of the second guide seat 230, and the specific structure and working process of the second insert assembly are the same as those of the first insert assembly 240, which will not be described again here.
[0086] An embodiment of the second aspect of this application provides a terminal assembly mounting method implemented by the terminal assembly mounting device of the 5G base station control module provided in the embodiment of the first aspect of this application, including:
[0087] The conveyor channel 100 conveys the workpiece to be processed, which consists of a housing 1a and a spring sheet 1d.
[0088] The first insert insertion device 200 inserts the upper terminal insert 1b into the housing 1a;
[0089] The push button insertion device 300 inserts the push button 1c into the outer casing 1a, so that the push button 1c abuts against the spring contact 1d, and so that the push button 1c and the spring contact 1d are in an adjustment state.
[0090] The adjusting device 400 moves the spring 1d to change the pressing button 1c and the spring 1d from the state to be adjusted to the correct assembly state, so that the spring 1d contacts the upper terminal insert 1b.
[0091] The second insert insertion device 500 inserts the lower terminal insert into the housing 1a.
[0092] For details on the specific beneficial effects of the terminal assembly installation method provided in the embodiments of the second aspect of this application, please refer to the specific beneficial effects of the terminal assembly installation device for the 5G base station control module provided in the embodiments of the first aspect of this application above, which will not be repeated here.
[0093] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0094] The above are merely preferred embodiments of this application and do not constitute any limitation on this application. Any person skilled in the art can make many possible variations and modifications to the technical solution of this application, or modify it into equivalent embodiments, without departing from the scope of the technical solution of this application. Therefore, all equivalent changes made based on the shape, structure, and principle of this application without departing from the content of the technical solution of this application should be covered within the protection scope of this application.
Claims
1. A terminal assembly installation device for a 5G base station control module, characterized in that, include: A conveyor channel for conveying a workpiece consisting of a housing and spring sheets; and sequentially arranged on the same side of the conveyor channel: The first insert device is used to insert the upper terminal insert into the housing; The push button insertion device is used to insert the push button into the housing so that the push button abuts against the spring contact. At this time, the push button and the spring contact are in an adjustment state. The adjustment device is used to move the spring contact, press the key, and change the spring contact from the unadjusted state to the correct assembly state, so that the spring contact contacts the upper terminal insert. The second insert device is used to insert the lower terminal insert into the housing; The adjustment device includes a sliding guide seat, a driving assembly, and a toggle assembly. The sliding guide seat is provided with a groove extending in a second direction. A portion of the driving assembly is slidably disposed in the groove. The toggle assembly is disposed in the groove. A portion of the driving assembly is connected to the toggle assembly. Under the drive of the driving assembly, the toggle assembly actuates the spring contact, causing the pressing button and the spring contact to change from the state to the correct assembly state, so that the spring contact contacts the upper terminal insert. The driving assembly includes a mating member movable along a second direction, and the mating member has an abutment block facing the actuating assembly; the actuating assembly includes a rotating member, a rotating wheel, and an actuating plate, all of which can be movable along the second direction, the rotating member being rotatably disposed above the sliding guide seat, the rotating wheel being disposed at one end of the rotating member near the mating member, and the actuating plate being disposed at one end of the rotating member near the conveying channel; When the actuating piece is located below the spring sheet, the mating component moves toward the rotating wheel and gradually approaches it. The lower edge of the abutting block contacts the rotating wheel. The end of the rotating component near the abutting block rotates downward, and the other end of the rotating component near the conveying channel is lifted, so that the actuating piece pushes the spring sheet upward, thereby changing the pressing button and the spring sheet from the state to the correct assembly state.
2. The terminal assembly installation device for the 5G base station control module according to claim 1, characterized in that, The lower edge of the end of the abutment block is designed with rounded corners.
3. The terminal assembly installation device for the 5G base station control module according to claim 1, characterized in that, The drive assembly includes a toggle cylinder, a first movable seat, and a connector. The first movable seat is movably disposed in the slide groove. One end of the connector is connected to the first movable seat. The toggle cylinder is located on one side of the sliding guide seat, and the cylinder shaft of the toggle cylinder is connected to the first movable seat. The actuating assembly includes a second fixed seat, which is disposed in the slide groove, and the other end of the connector is connected to the second fixed seat.
4. The terminal assembly installation device for the 5G base station control module according to claim 3, characterized in that, The first movable seat is provided with a first transverse groove extending along a first direction, and the second fixed seat is provided with a second transverse groove extending along the first direction, the width of the second transverse groove being greater than the width of the first transverse groove. The connector has a first protrusion and a second protrusion at its opposite ends, the first protrusion being located in the first transverse groove and the second protrusion being located in the second transverse groove.
5. The terminal assembly installation device for the 5G base station control module according to claim 1, characterized in that, The first insert device includes a first swing block, a first guide seat, a second guide seat, and a first insert assembly. The first guide seat and the second guide seat are arranged side by side on one side of the conveying channel. There is a first swing space between the first guide seat and the second guide seat. The first swing block is swingably arranged on one side of the first guide seat and the second guide seat. The first insert assembly is arranged on one side of the second guide seat. When the first swing block drives the first insert terminal to a horizontal state, the first swing block is placed in the first swing space, and the first insert assembly passes through the second guide seat, the first swing block and the first guide seat in sequence, and inserts the first insert terminal into the workpiece to be processed.
6. The terminal assembly installation device for the 5G base station control module according to claim 5, characterized in that, The first swing block has a first storage slot, the first guide seat has a first guide groove, and the second guide seat has a second guide groove. When the first swing block is in a horizontal state, the first guide groove, the first placement groove and the second guide groove are located on the same horizontal plane.
7. The terminal assembly installation device for the 5G base station control module according to claim 1, characterized in that, The button insertion device includes a first linear moving component, a second linear moving component, a rotating component, and a clamping component. The first linear moving component is disposed on one side of the conveying channel along a second direction, the second linear moving component is disposed on the first linear moving component along a third direction, the rotating component is connected to the first linear moving component, and the clamping component is connected to the rotating component. The first linear moving component and the second linear moving component drive the clamping component to move along the second direction and the third direction, respectively, and the rotating component drives the clamping component to rotate, so that the clamping component clamps the button and inserts it into the housing.
8. The terminal assembly installation device for the 5G base station control module according to claim 1, characterized in that, The second insert device includes a second swing block, a third guide seat, a fourth guide seat, and a second insert assembly. The third guide seat and the fourth guide seat are arranged side by side on one side of the conveying channel. A second swing space is provided between the third guide seat and the fourth guide seat. The second swing block is swingably arranged between the third guide seat and the fourth guide seat. The second insert assembly is arranged on one side of the fourth guide seat. When the second swing block drives the second insert terminal to a horizontal state, the second swing block is placed in the second swing space, and the second insert assembly passes through the fourth guide seat, the second swing block and the third guide seat in sequence, and inserts the second insert terminal into the workpiece to be processed.
9. A terminal assembly installation method implemented by the terminal assembly installation equipment of the 5G base station control module according to claim 1, characterized in that, include: The conveyor channel transports the workpiece to be processed, which consists of a shell and spring sheets; The first insert device inserts the upper terminal insert into the housing; The button insertion device inserts the button into the housing, causing the button to contact the spring contact, thus placing the button and spring contact in an adjustment state. The adjustment device moves the spring contact, causing the pressing button and the spring contact to change from the state to the correct assembly state, so that the spring contact contacts the upper terminal insert. The second insert device inserts the lower terminal insert into the housing.
Citation Information
Patent Citations
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