Plug-in device and 5G optoelectronic device installation equipment
The terminals of 5G optoelectronic devices are cut, clamped and plugged in through the plug-in device, which solves the problems of complex assembly process and low efficiency, and realizes efficient terminal insertion and meets the needs of large-scale production.
Patent Information
- Application Number
- CN202410303742.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-18
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2044-03-18
AI Technical Summary
The assembly process of 5G optoelectronic devices is complicated and the terminal plugging efficiency is low, making it difficult to meet the needs of large-scale production.
A plug-in device is provided, including a plug-in cylinder, a slide table, a terminal cutting and clamping assembly and a terminal feeding device, which cuts and clamps the carrier tape of the terminal through a cutting and clamping unit to form a single terminal, and inserts the terminal into the housing through the plug-in assembly.
The assembly process is simplified, the plug-in efficiency is improved, and the efficient terminal plug-in is realized, meeting the needs of mass production.
Smart Images

Figure CN118099895B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of 5G optoelectronic device production, and in particular to an insertion device and 5G optoelectronic device installation equipment. Background Art
[0002] 5G optoelectronic devices are key components for achieving optical-to-electrical conversion in 5G communication systems. They primarily include optical transmitters, optical receivers, and related optical waveguides. These devices play a crucial role in 5G networks, converting electrical signals into optical signals and, at the receiving end, converting optical signals back into electrical signals, thereby enabling high-speed data transmission.
[0003] The optical transmitter consists of a housing and two terminals. The two terminals have identical structures and need to be inserted vertically into the housing. The terminals are connected via a carrier tape. During assembly, the carrier tape must first be cut twice to obtain two separate terminals with connecting tabs. These two terminals are then clamped and inserted into the housing. This assembly process involves numerous steps, a complex assembly structure, and low terminal insertion efficiency, making it difficult to meet the needs of large-scale production.
[0004] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present disclosure, and therefore may include information that does not constitute prior art known to ordinary technicians in this field. Summary of the Invention
[0005] In view of at least one of the above technical problems, the present application provides an insertion device and a 5G optoelectronic device installation device.
[0006] According to a first aspect of an embodiment of the present application, an insertion device is provided, comprising:
[0007] seat body;
[0008] The plug-in assembly includes a plug-in cylinder and a slide. The plug-in cylinder is arranged on the base body. The slide is linked to the output end of the plug-in cylinder and can move relative to the base body.
[0009] A terminal cutting and clamping assembly includes a left cutting block, a right cutting block, a left clamping block, an insertion block, and a right clamping block. The left cutting block and the right cutting block are movably arranged on a slide. A first channel is provided on the left cutting block along a third direction. A second channel is provided on the right cutting block along the third direction. The insertion block is located on the same side of the left cutting block and the right cutting block. The left clamping block and the right clamping block are respectively located on opposite sides of the insertion block. A first clamping space communicating with the first channel is formed between the left clamping block and the insertion block. A second clamping space communicating with the second channel is formed between the right clamping block and the insertion block.
[0010] The terminal cutting and clamping assembly also includes a driving cylinder and a matching unit. The driving cylinder is arranged on the slide. The matching unit is linked with the output end of the driving cylinder. The matching unit is respectively slidably connected with the left cutting block, the right cutting block, the left clamping block, and the right clamping block.
[0011] When driven, the mating unit slides and cooperates with the left cutting block and the right cutting block respectively, so that the first channel is staggered with the first clamping space, and the second channel is staggered with the second clamping space, thereby cutting out two separate terminals; at the same time, the mating unit slides and cooperates with the left clamping block and the right clamping block, so that the two terminals are clamped in the first clamping space and the second clamping space; the insertion cylinder drives the slide to move, and drives the terminal cutting and clamping assembly to move, so that the terminal is inserted into the housing.
[0012] Compared to existing technologies, this insertion device uses a terminal cutting and clamping unit to cut the terminal carrier tape, forming individual terminals and clamping them. The insertion assembly then drives the terminal cutting and clamping unit toward the housing, inserting the terminals into the housing. This makes the entire insertion process simple and efficient, with high insertion efficiency, a compact assembly structure, and a high degree of fit.
[0013] In an optional implementation, the terminal cutting and clamping assembly also includes an intermediate block, which is arranged on the slide and located between the left cutting block and the right cutting block. A first spring is provided between the left cutting block and the intermediate block, and a second spring is provided between the right cutting block and the intermediate block.
[0014] In an optional implementation, a third spring is provided between the left clamping block and the insertion hole, and a fourth spring is provided between the right clamping block and the insertion block.
[0015] In an optional implementation, the distance between the two opposite side surfaces of the first channel gradually decreases from the upper end to the lower end of the left cutting block; and the distance between the two opposite side surfaces of the second channel gradually decreases from the upper end to the lower end of the right cutting block.
[0016] In an optional implementation, the left clamping block includes a left mating portion having a first inclined surface that is slidably engaged with the mating unit, and the right clamping block includes a right mating portion having a second inclined surface that is slidably engaged with the mating unit.
[0017] The left clamping block includes a first extension portion having a third inclined surface slidably matched with the matching unit, and the right clamping block includes a second extension portion having a fourth inclined surface slidably matched with the matching unit.
[0018] In an optional implementation, the mating unit includes a connecting body, a first connecting column, a second connecting column, a third connecting column and a fourth connecting column. The connecting body is connected to the driving cylinder, and the first connecting column, the second connecting column, the third connecting column and the fourth connecting column are respectively connected to the connecting body. The first connecting column slides with the first inclined surface, the second connecting column slides with the second inclined surface, the third connecting column slides with the third inclined surface, and the fourth connecting column slides with the fourth inclined surface.
[0019] In an optional implementation, the first connecting pillar, the second connecting pillar, the third connecting pillar, and the fourth connecting pillar have the same length.
[0020] In an optional implementation, the insertion device also includes a terminal loading device, which includes a base, a first loading component and a second loading component. The base is arranged on the base body, and the opposite ends of the base have loading spaces, which are respectively connected to the first channel and the second channel. The corresponding loading spaces of the first loading component and the second loading component are respectively arranged on the opposite sides of the base.
[0021] In an optional implementation, the first loading assembly includes a first loading cylinder and a first pushing block, the first loading cylinder is provided on the base body, the first pushing block is connected to the output end of the first loading cylinder, and is provided in a loading space;
[0022] The second feeding assembly includes a second feeding cylinder and a second pushing block. The second feeding cylinder is arranged on the base body. The second pushing block is connected to the output end of the second feeding cylinder and is passed through another feeding space.
[0023] According to a second aspect of an embodiment of the present application, a 5G optoelectronic device installation device is provided, including an insertion device.
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0026] Figure 1 is a structural diagram of the insertion device shown in an embodiment of the present application;
[0027] Figure 2 yes Figure 1 A front view of the terminal cutting and clamping assembly is shown;
[0028] Figure 3yes Figure 1 The structural diagram of the matching unit shown;
[0029] Figure 4 yes Figure 1 The structural diagram of the first connecting plate and the first pushing block shown;
[0030] Wherein, the accompanying drawings are marked as follows:
[0031] 100. Base body;
[0032] 200, plug-in assembly; 210, plug-in cylinder; 220, slide;
[0033] 300, terminal cutting and clamping assembly; 310, left cutting block; 320, right cutting block; 330, left clamping block; 340, insertion block; 350, right clamping block;
[0034] 360, driving cylinder; 370, matching unit;
[0035] 311, first channel; 321, second channel;
[0036] 371, connecting body; 372, first connecting column; 373, second connecting column; 374, third connecting column; 375, fourth connecting column;
[0037] 400, terminal loading device; 410, base; 420, first loading assembly; 430, second loading assembly;
[0038] 411, feeding space; 421, first feeding cylinder; 422, first pushing block; 423, first connecting plate; 431, second feeding cylinder; 432, second pushing block; DETAILED DESCRIPTION
[0039] To make the above-mentioned objects, features, and advantages of the present application more clearly understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings. The following description sets forth many specific details to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways than those described herein, and those skilled in the art can make similar improvements without violating the scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.
[0040] In the description of this application, it should be understood that the terms "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and 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, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0041] 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 understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this application, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.
[0042] In the embodiments of the present application, unless otherwise expressly specified or limited, the terms "installed," "connected," "connected," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integration; mechanical connections, electrical connections; direct connections, or indirect connections through an intermediate medium; and can refer to internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the embodiments of the present application based on specific circumstances.
[0043] 5G optoelectronic devices are key components for achieving optoelectronic conversion in 5G communication systems. They primarily include optical transmitters, optical receivers, and related optical waveguides. These devices play a crucial role in 5G networks, converting electrical signals into optical signals and, at the receiving end, converting optical signals back into electrical signals, thereby enabling high-speed data transmission. The optical transmitter comprises a housing and two identical terminals that must be inserted vertically into the housing. The terminals are connected via a carrier tape. During assembly, the carrier tape must first be cut twice to produce two separate terminals with connecting tabs. These terminals are then clamped and inserted into the housing. This assembly process involves numerous steps and a complex assembly structure, resulting in low terminal insertion efficiency and difficulty meeting the needs of high-volume production. Compared to existing technologies, this insertion device uses a terminal cutting and clamping unit to cut the terminal carrier tape, forming and clamping individual terminals. The insertion assembly then drives the terminal cutting and clamping unit toward the housing, inserting the terminals into the housing. The overall insertion process is simple and efficient, with high insertion efficiency, a compact assembly structure, and a high degree of fit.
[0044] The present invention provides an insertion device that can be used in 5G optoelectronic device installation equipment or used alone. The insertion device includes a base 100, an insertion assembly 200, a terminal cutting and clamping assembly 300, and a terminal loading device 400.
[0045] like Figures 1 to 4 As shown, the base 100; the plug-in assembly 200, including the plug-in cylinder 210 and the slide 220, the plug-in cylinder 210 is provided on the base 100, the slide 220 is linked with the output end of the plug-in cylinder 210, and the slide 220 can move relative to the base 100; the terminal cutting and clamping assembly 300, including the left cutting block 310, the right cutting block 320, the left clamping block 330, the plug-in block 340 and the right clamping block 350, the left cutting block 310 and the right cutting block 320 are movably provided on the slide 220, the left cutting block 310 is provided with a first channel 311 along the third direction, the right cutting block 320 is provided with a second channel 321 along the third direction, the plug-in block 340 is located at the left cutting block 310, On the same side of the right cutting block 320, the left clamping block 330 and the right clamping block 350 are respectively located on opposite sides of the insertion block 340, and a first clamping space connected to the first channel 311 is formed between the left clamping block 330 and the insertion block 340, and a second clamping space connected to the second channel 321 is formed between the right clamping block 350 and the insertion block 340; the terminal cutting and clamping assembly 300 also includes a driving cylinder 360 and a mating unit 370, the driving cylinder 360 is arranged on the slide 220, and the mating unit 370 is linked to the output end of the driving cylinder 360, and the mating unit 370 is slidably connected to the left cutting block 310, the right cutting block 320, the left clamping block 330, and the right clamping block 350 respectively.
[0046] In the terminal cutting and clamping assembly 300, the mating unit 370 is in constant contact with the left cutting block 310, the right cutting block 320, the left clamping block 330, and the right clamping block 350, respectively. When the mating unit 370 moves, it slides into contact with the left cutting block 310, the right cutting block 320, the left clamping block 330, and the right clamping block 350, respectively. During cutting, the left cutting block 310 moves in a first direction relative to the left clamping block 330, and the right cutting block 320 moves in a first direction relative to the right clamping block 350. Consequently, the left cutting block 310 moves farther than the left clamping block 330, and the right cutting block 320 moves farther than the right clamping block 350. This results in the first channel 311 being misaligned with the first clamping space, and the second channel 321 being misaligned with the second clamping space. This allows for the terminals to be clamped and the carrier tape to be cut, resulting in high cutting efficiency and precision.
[0047] It is worth noting that the first, second, and third directions are perpendicular to each other. The first direction is the spatial coordinate axis X, which corresponds to the left and right directions. The second direction is the spatial coordinate axis Y, which corresponds to the front and back directions. The third direction is the spatial coordinate axis Z, which corresponds to the up and down directions.
[0048] When driven, the mating unit 370 slides with the left cutting block 310 and the right cutting block 320, respectively, so that the first channel 311 is offset from the first clamping space, and the second channel 321 is offset from the second clamping space, thereby cutting out two separate terminals; at the same time, the mating unit 370 slides with the left clamping block 330 and the right clamping block 350, so that the two terminals are clamped in the first clamping space and the second clamping space; the insertion cylinder 210 drives the slide 220 to move, and drives the terminal cutting and clamping assembly 300 to move, so that the terminal is inserted into the housing.
[0049] like Figures 1 to 4 As shown, in some examples, the terminal cutting and clamping assembly 300 further includes an intermediate block, which is disposed on the slide 220 and is located between the left cutting block 310 and the right cutting block 320. A first spring is provided between the left cutting block 310 and the intermediate block, and a second spring is provided between the right cutting block 320 and the intermediate block.
[0050] The middle block is located above the insertion block 340. The first spring and the second spring are arranged along the first direction. Thus, the first spring applies a force along the first direction to the left cutting block 310, causing the left cutting block 310 to abut against the mating unit 370. The second spring applies a force along the first direction to the right cutting block 320, causing it to abut against the mating unit 370.
[0051] like Figures 1 to 4 As shown, in some examples, a third spring is provided between the left clamping block 330 and the insertion block, and a fourth spring is provided between the right clamping block 350 and the insertion block 340 .
[0052] The third spring and the fourth spring are arranged along the first direction, so that the third spring applies a force along the first direction to the left clamping block 330, causing the left clamping block 330 to abut against the mating unit 370. The fourth spring applies a force along the first direction to the right clamping block 350, causing the right clamping block 350 to abut against the mating unit 370.
[0053] like Figures 1 to 4 As shown, in some examples, the distance between the two opposite sides of the first channel 311 gradually decreases in the direction from the upper end to the lower end of the left cutting block 310; and the distance between the two opposite sides of the second channel 321 gradually decreases in the direction from the upper end to the lower end of the right cutting block 320.
[0054] The lower end of the left cutting block 310 is close to the left clamping block 330, and the distance between the two opposite sides of the first channel 311 is gradually reduced. In this way, the terminal carrier tape can easily enter the first channel 311. At the same time, at one end of the first channel 311 close to the left clamping block 330, the space of the terminal carrier tape in the first channel 311 is limited, so that the terminal carrier tape can be stable in the first channel 311.
[0055] The lower end of the right cutting block 320 is close to the right clamping block 350, and the distance between the two opposite sides of the second channel 321 is gradually reduced. In this way, the terminal carrier tape can easily enter the second channel 321. At the same time, at one end of the second channel 321 close to the right clamping block 350, the space of the terminal carrier tape in the second channel 321 is limited, so that the terminal carrier tape can be stable in the second channel 321.
[0056] like Figures 1 to 4 As shown, in some examples, the left clamping block 330 includes a left mating portion having a first inclined surface that slides with the mating unit 370, and the right clamping block 350 includes a right mating portion having a second inclined surface that slides with the mating unit 370.
[0057] The left clamping block 330 includes a first extension portion having a third inclined surface that slides with the matching unit 370 . The right clamping block 350 includes a second extension portion having a fourth inclined surface that slides with the matching unit 370 .
[0058] The mating unit 370 includes a connecting body 371, a first connecting column 372, a second connecting column 373, a third connecting column 374 and a fourth connecting column 375. The connecting body 371 is connected to the driving cylinder 360, and the first connecting column 372, the second connecting column 373, the third connecting column 374 and the fourth connecting column 375 are respectively connected to the connecting body 371. The first connecting column 372 slides with the first inclined surface, the second connecting column 373 slides with the second inclined surface, the third connecting column 374 slides with the third inclined surface, and the fourth connecting column 375 slides with the fourth inclined surface.
[0059] The first connecting post 372 , the second connecting post 373 , the third connecting post 374 and the fourth connecting post 375 have the same length.
[0060] The end surface of the first connecting post 372 facing the left cutting block 310 is a first sliding surface. The first sliding surface slides with the first inclined surface, allowing the first connecting post 372 to fit more closely with the left cutting block 310. The end surface of the second connecting post 373 facing the right cutting block 320 is a second sliding surface. The second sliding surface slides with the second inclined surface, allowing the second connecting post 373 to fit more closely with the right cutting block 320. The end surface of the third connecting post 374 facing the left clamping block 330 is a third sliding surface. The third sliding surface slides with the third inclined surface, allowing the third connecting post 374 to fit more closely with the left clamping block 330. The end surface of the fourth connecting post 375 facing the right clamping block 350 is a fourth sliding surface. The fourth sliding surface slides with the fourth inclined surface, allowing the fourth connecting post 375 to fit more closely with the right clamping block 350.
[0061] like Figures 1 to 4 As shown, in some examples, the insertion device further includes a terminal loading device 400, which includes a base 410, a first loading assembly 420, and a second loading assembly 430. The base 410 is disposed on the base body 100. Loading spaces 411 are formed at opposite ends of the base 410. The loading spaces 411 are respectively connected to the first channel 311 and the second channel 321. The first loading assembly 420 and the second loading assembly 430 are respectively disposed on opposite sides of the base 410 corresponding to the loading spaces 411. The first loading assembly 420 and the second loading assembly 430 control the terminal carrier to move along the third direction toward the first channel 311 or the second channel 321, thereby achieving the purpose of moving the terminal.
[0062] like Figures 1 to 4 As shown, in some examples, the first loading assembly 420 includes a first loading cylinder 421 and a first pushing block 422. The first loading cylinder 421 is provided on the base 100. The first pushing block 422 is connected to the output end of the first loading cylinder 421 and is provided in a loading space 411.
[0063] The second loading assembly 430 includes a second loading cylinder 431 and a second pushing block 432 . The second loading cylinder 431 is disposed on the base 100 . The second pushing block 432 is connected to the output end of the second loading cylinder 431 and is disposed in another loading space 411 .
[0064] The first loading assembly 420 further includes a first connecting plate 423, the output end of the first loading cylinder 421 is connected to the first connecting plate 423, the first pusher block 422 is rotatably connected to the first connecting plate 423, the first pusher block 422 includes a first stop portion and a first penetration portion arranged opposite to each other, the first stop portion contacts the first connecting plate 423, and the first penetration portion penetrates the loading space 411. The second loading assembly 430 further includes a second connecting plate, the output end of the second loading cylinder 431 is connected to the second connecting plate, the second pusher block 432 is rotatably connected to the second connecting plate, the second pusher block 432 includes a second stop portion and a second penetration portion arranged opposite to each other, the second stop portion contacts the second connecting plate, and the second penetration portion penetrates the loading space 411.
[0065] Since the first loading assembly 420 and the second loading assembly 430 have the same structure, the first loading assembly 420 is used as an example. The first loading cylinder 421 drives the first connecting plate 423 downward, thereby driving the first pusher block 422 downward. At this time, the first penetration portion is inserted into the terminal carrier tape in the loading space 411. The first stop plate portion contacts the first connecting plate 423, limiting the rotation of the first pusher block 422. During the reset, the first loading cylinder 421 drives the first connecting plate 423 upward, thereby driving the first pusher plate upward. At this time, the inclined surface on the first penetration portion slides with the terminal carrier tape, and the first penetration portion is released from the hole in the terminal carrier tape, causing the first pusher block 422 to rotate. During this process, the first stop plate and the first connecting plate 423 do not contact each other.
[0066] The above are merely preferred embodiments of the present application and do not constitute any form of limitation to the present application. Any person skilled in the art can, without departing from the scope of the technical solution of the present application, use the methods and technical contents disclosed above to make many possible changes and modifications to the technical solution of the present application, or modify it into an equivalent embodiment with equivalent changes. Therefore, all equivalent changes made based on the shape, structure and principle of the present application without departing from the content of the technical solution of the present application should be included in the scope of protection of the present application.
Claims
1. An insertion device, characterized in that: include: seat body; The plug-in assembly includes a plug-in cylinder and a slide, wherein the plug-in cylinder is provided on the base body, the slide is linked to the output end of the plug-in cylinder, and the slide can move relative to the base body; A terminal cutting and clamping assembly, comprising a left cutting block, a right cutting block, a left clamping block, an insertion block, and a right clamping block, wherein the left cutting block and the right cutting block are movably arranged on the slide, a first channel is provided on the left cutting block along a third direction, and a second channel is provided on the right cutting block along the third direction, the insertion block is located on the same side of the left cutting block and the right cutting block, and the left clamping block and the right clamping block are respectively located on opposite sides of the insertion block, a first clamping space communicating with the first channel is formed between the left clamping block and the insertion block, and a second clamping space communicating with the second channel is formed between the right clamping block and the insertion block; The terminal cutting and clamping assembly further includes a driving cylinder and a matching unit, wherein the driving cylinder is provided on the slide, the matching unit is linked to the output end of the driving cylinder, and the matching unit is respectively slidably connected to the left cutting block, the right cutting block, the left clamping block, and the right clamping block; When driven, the mating unit slides and cooperates with the left cutting block and the right cutting block respectively, so that the first channel is staggered with the first clamping space, and the second channel is staggered with the second clamping space, thereby cutting out two separate terminals; at the same time, the mating unit slides and cooperates with the left clamping block and the right clamping block, so that the two terminals are clamped in the first clamping space and the second clamping space; the insertion cylinder drives the slide to move, and drives the terminal cutting and clamping assembly to move, so that the terminal is inserted into the housing.
2. The insertion device according to claim 1, characterized in that: The terminal cutting and clamping assembly also includes an intermediate block, which is arranged on the slide and located between the left cutting block and the right cutting block. A first spring is provided between the left cutting block and the intermediate block, and a second spring is provided between the right cutting block and the intermediate block.
3. The insertion device according to claim 1, characterized in that: A third spring is provided between the left clamping block and the insertion block, and a fourth spring is provided between the right clamping block and the insertion block.
4. The insertion device according to claim 1, characterized in that: The distance between the two opposite sides of the first channel gradually decreases from the upper end to the lower end of the left cutting block; the distance between the two opposite sides of the second channel gradually decreases from the upper end to the lower end of the right cutting block.
5. The insertion device according to claim 1, characterized in that: The left clamping block includes a left matching portion, the left matching portion has a first inclined surface that is slidably matched with the matching unit, and the right clamping block includes a right matching portion, the right matching portion has a second inclined surface that is slidably matched with the matching unit; The left clamping block includes a first extension portion having a third inclined surface that slides with the matching unit, and the right clamping block includes a second extension portion having a fourth inclined surface that slides with the matching unit.
6. The insertion device according to claim 5, characterized in that: The mating unit includes a connecting body, a first connecting column, a second connecting column, a third connecting column and a fourth connecting column. The connecting body is connected to the driving cylinder. The first connecting column, the second connecting column, the third connecting column and the fourth connecting column are respectively connected to the connecting body. The first connecting column slides in cooperation with the first inclined surface, the second connecting column slides in cooperation with the second inclined surface, the third connecting column slides in cooperation with the third inclined surface, and the fourth connecting column slides in cooperation with the fourth inclined surface.
7. The insertion device according to claim 6, characterized in that: The first connecting pillar, the second connecting pillar, the third connecting pillar and the fourth connecting pillar have the same length.
8. The insertion device according to claim 1, characterized in that: The insertion device also includes a terminal loading device, which includes a base, a first loading component and a second loading component. The base is arranged on the base body, and the opposite ends of the base have loading spaces, which are respectively connected to the first channel and the second channel. The first loading component and the second loading component are respectively arranged on opposite sides of the base corresponding to the loading spaces.
9. The insertion device according to claim 8, characterized in that: The first feeding assembly includes a first feeding cylinder and a first pushing block, wherein the first feeding cylinder is provided on the base body, and the first pushing block is connected to the output end of the first feeding cylinder and is provided in the feeding space; The second feeding assembly includes a second feeding cylinder and a second pushing block. The second feeding cylinder is arranged on the base body. The second pushing block is connected to the output end of the second feeding cylinder and is inserted into the other feeding space.
10. A 5G optoelectronic device installation device, characterized in that: include: The insertion device according to any one of claims 1 to 9.
Citation Information
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