Auxiliary chip mounting device for single-chip microcomputer

By designing a microcontroller auxiliary chip assembly device including a movable table, a conveying table, a driving mechanism and a guide, the problem of inefficient chip assembly of the microcontroller is solved, and the automatic guide and efficient chip assembly of the microcontroller are realized.

CN222947697UActive Publication Date: 2025-06-06NANTONG OPEN UNIV (NANTONG ARCHITECTURE VOCATIONAL & TECH SCHOOL NANTONG COMMUNITY EDUCATION SERVICE GUIDANCE CENT)
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Patent Information

Application Number
CN202421756648.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-06-06
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

During the microcontroller processing, the chip loader faces the problem of increasing difficulty in installing the chip, mainly because the width of the slot needs to match the thickness of the microcontroller, resulting in inefficient chip loading.

Method used

A single-chip microcomputer auxiliary chip assembly device is designed, including a movable table, a conveying table, a driving mechanism and a guide. The movable table can slide linearly and is equipped with a rack. The driving mechanism meshes with the rack through the gear to push the movable table to move. The guide member has a guide groove that penetrates the upper and lower, and the side wall spacing is incremented from top to bottom, for automatic guidance of the microcontroller.

Benefits of technology

Through this device, the slots in the microcontroller turnover box can be automatically directed and inserted into the corresponding slots, significantly improving the microcontroller's chip installation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an auxiliary chip mounting device for a single-chip microcomputer, which comprises a movable table, a conveying table, a driving mechanism and a guide piece, and is characterized in that the movable table can be linearly and slidably mounted on the conveying table, and a rack arranged along the sliding direction of the movable table is arranged on the movable table; the driving mechanism comprises a power part and a gear driven by the power part to rotate, and the gear is meshed with the rack; the guiding part is located above the movable table and supported by the supporting frame, the guiding part is provided with a vertically-through guiding groove, the side walls of the guiding groove comprise the first side wall and the second side wall, the first side wall and the second side wall are oppositely arranged in the sliding direction of the movable table, and the distance between the first side wall and the second side wall is sequentially increased from top to bottom. According to the utility model, the chip mounting efficiency of the single-chip microcomputer can be effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of single-chip microcomputer processing, in particular to a single-chip microcomputer auxiliary chip loading device. Background Art

[0002] Single-chip microcomputer technology is an integrated circuit chip, also known as a single-chip microcontroller. It is an integrated circuit chip that uses ultra-large-scale integrated circuit technology to integrate a central processing unit (CPU), read-only memory (ROM) and random access memory (RAM) with data processing capabilities to form a small and complete microcomputer system. The single-chip microcomputer is small in size, light in weight and cheap in price, which provides convenient conditions for application and development.

[0003] During the processing of the single-chip microcomputer, it is necessary to use a turnover box for temporary storage. The turnover box has several slots for the single-chip microcomputer to be inserted. In order to ensure that the single-chip microcomputer can remain stable in the slot after being inserted into the slot, the width of the slot is often matched according to the thickness of the single-chip microcomputer. This increases the difficulty of loading the chips for the loaders. Utility Model Content

[0004] In order to solve the technical problems existing in the background technology, the utility model proposes a single chip microcomputer auxiliary chip loading device.

[0005] The utility model provides a single chip microcomputer auxiliary loading device, comprising: a movable table, a conveying table, a driving mechanism and a guide member, wherein:

[0006] The movable table can be linearly slidably installed on the conveying table, and a rack is provided on the movable table along its sliding direction;

[0007] The driving mechanism includes a power component and a gear driven to rotate by the power component, and the gear is meshed with the rack;

[0008] The guide member is located above the movable table and supported by the support frame. The guide member has a guide groove that passes through from top to bottom. The side walls of the guide groove include a first side wall and a second side wall. The first side wall and the second side wall are arranged opposite to each other along the sliding direction of the movable table, and the distance between the two increases from top to bottom.

[0009] 14. The swiftly and minutely adjusting device for a wood-planer working table as claimed in claim 13, wherein the first and second adjusting plates are pivotally connected to each other with a bolt, and the bolt has a round shank to contact with the second adjusting plate.

[0010] Preferably, the first upper adjusting rod and the first lower adjusting rod, and the second upper adjusting rod and the second lower adjusting rod are all threaded rods, and are threadedly assembled on the guide cylinder.

[0011] Preferably, a positioning and clamping mechanism is provided on the movable table, and the positioning and clamping mechanism includes a fixed block fixed on the movable table, a movable block arranged opposite to the fixed block, and a driving component connected to the movable block to drive the movable block to move toward the fixed block.

[0012] Preferably, stoppers are provided at both ends of the fixed block on a side close to the movable block.

[0013] Preferably, the conveying platform includes a first side plate and a second side plate that are arranged opposite to each other, and the opposite sides of the first side plate and the second side plate are provided with a linearly extending slide groove; the movable platform is located between the first side plate and the second side plate, and a first slider is provided on the side close to the first side plate, and the first slider is slidably assembled in the slide groove of the first side plate; the movable platform is provided with a second slider on the side close to the second side plate, and the second slider is slidably assembled in the slide groove of the second side plate.

[0014] Preferably, the rack is located below the movable platform and is arranged along the extending direction of the slide groove.

[0015] In the utility model, the movable platform can be linearly slidably installed on the conveying platform, and a rack arranged along the sliding direction of the movable platform is provided; the driving mechanism includes a power component and a gear driven to rotate by the power component, and the gear is meshed with the rack; the guide member is located above the movable platform and supported by the support frame, and the guide member has a guide groove penetrating from top to bottom, and the side wall of the guide groove includes a first side wall and a second side wall, and the first side wall and the second side wall are arranged opposite to each other along the sliding direction of the movable platform, and the distance between the two increases from top to bottom. During operation, the microcontroller turnover box is placed on the movable table, and the slot at the front end is directly below the guide groove. As the gear rotates, the movable table is pushed to move, and then the microcontroller turnover box on the movable table is driven to move, so that the slots in the microcontroller turnover box pass through the guide groove in turn, and then the loading personnel insert the microcontroller into each slot in turn through the guide groove. Since the spacing between the first side wall and the second side wall in the guide groove increases from bottom to top, the mouth of the guide groove is wider and the lower part is narrower to match the width of the slot, and then the microcontroller can be automatically guided during the process of passing through the guide groove, and finally fall into the slot from the lower end of the guide groove. The device can effectively improve the loading efficiency of the microcontroller. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a structural schematic diagram of a single-chip microcomputer auxiliary chip loading device proposed by the utility model;

[0017] Figure 2 The utility model is a schematic structural diagram of the movable table in the single-chip microcomputer auxiliary chip loading device. DETAILED DESCRIPTION

[0018] Reference Figure 1 The utility model provides a single chip microcomputer auxiliary loading device, comprising: a movable table 1, a conveying table 2, a driving mechanism and a guide member 3, wherein:

[0019] The movable table 1 can be linearly slidably mounted on the conveying table 2, and a rack 4 is arranged on the movable table 1 along its sliding direction. The driving mechanism includes a power component and a gear 5 driven to rotate by the power component, and the gear 5 is meshed with the rack 4. Each rotation of the gear 5 can push the movable table 1 to move one unit along its sliding direction. The specific unit movement is set according to the slot width of the microcontroller turnover box to be loaded.

[0020] The guide member 3 is located above the movable table 1 and supported by the support frame 6. The guide member 3 has a guide groove that passes through from top to bottom. The side walls of the guide groove include a first side wall and a second side wall. The first side wall and the second side wall are arranged opposite to each other along the sliding direction of the movable table 1, and the distance between the two increases from top to bottom, so that the first side wall and the second side wall form a "V" structure that is wide at the top and narrow at the bottom.

[0021] When loading the MCU into the MCU turnover box, the MCU turnover box is placed on the movable table 1 in advance, and the slot at the front end is directly below the guide groove. The loader inserts the MCU into the guide groove, and the MCU is guided into the slot after passing through the guide groove. Then, the gear 5 rotates, pushing the movable table 1 forward one unit, so that the next slot enters directly below the guide groove, and then the MCU is loaded into the slot through the guide groove, and so on, until the slots in the MCU turnover box are filled.

[0022] As can be seen from the above, when the utility model is used, the microcontroller turnover box is placed on the movable table 1, and the slot at the front end is directly below the guide groove. As the gear 5 rotates, the movable table 1 is pushed to move, and then the microcontroller turnover box on the movable table 1 is driven to move, so that the slots in the microcontroller turnover box pass through the bottom of the guide groove in turn, and then the loading personnel insert the microcontroller into each slot in turn through the guide groove. Since the spacing between the first side wall and the second side wall in the guide groove increases from bottom to top, the mouth of the guide groove is wider and narrower at the bottom to match the width of the slot, and then the microcontroller can be automatically guided during the process of passing through the guide groove, and finally fall into the slot from the lower end of the guide groove. The assembly can effectively improve the loading efficiency of the microcontroller.

[0023] In addition, in the present embodiment, the guide member 3 comprises a guide cylinder 31, a first adjustment plate 32, a second adjustment plate 33, a first upper adjustment rod 34, a first lower adjustment rod 35, a second upper adjustment rod 36 and a second lower adjustment rod 37, wherein: the guide cylinder 31 is a rectangular cylinder and is vertically arranged, the first adjustment plate 32 and the second adjustment plate 33 are both located in the guide cylinder 31 and are arranged relative to each other in the sliding direction of the movable table 1, so that the plate surface of the first adjustment plate 32 close to the side of the second adjustment plate 33 constitutes a first side wall, and the plate surface of the second adjustment plate 33 close to the side of the first adjustment plate 32 constitutes a second side wall; the first upper adjustment rod 34 and the first lower adjustment rod 35, as well as the second upper adjustment rod 36 and The second lower adjusting rod 37 can be axially movably assembled on the guide cylinder 31, and the first upper adjusting rod 34 and the first lower adjusting rod 35 are located on the side of the first adjusting plate 32 away from the second adjusting plate 33, the first upper adjusting rod 34 and the first lower adjusting rod 35 are set at an upper and lower interval, and one end of the first upper adjusting rod 34 and the first lower adjusting rod 35 are respectively movably connected to the first adjusting plate 32; the second upper adjusting rod 36 and the second lower adjusting rod 37 are located on the side of the second adjusting plate 33 away from the first adjusting plate 32, the second upper adjusting rod 36 and the second lower adjusting rod 37 are set at an upper and lower interval, and one end of the second upper adjusting rod 36 and the second lower adjusting rod 37 are respectively movably connected to the second adjusting plate 33. This structural setting makes it possible for the first upper adjusting rod 34 and the first lower adjusting rod 35 to change the inclination angle of the first adjusting plate 32 when they move axially, and for the second upper adjusting rod 36 and the second lower adjusting rod 37 to change the inclination angle of the second adjusting plate 33 when they move axially. Then, the distance between the first side wall and the second side wall of the guide groove can be adjusted to match different types of single-chip microcomputer turnover boxes, thereby meeting the assembly requirements of different models of single-chip microcomputers.

[0024] Furthermore, the first upper adjusting rod 34 and the first lower adjusting rod 35, as well as the second upper adjusting rod 36 and the second lower adjusting rod 37 are all threaded rods and are threadedly assembled on the guide cylinder 31. However, when it is necessary to axially move the first upper adjusting rod 34, the first lower adjusting rod 35, the second upper adjusting rod 36, and the second lower adjusting rod 37, it is only necessary to rotate the corresponding adjusting rod.

[0025] Reference Figure 2 The movable table 1 is provided with a positioning clamping mechanism, which includes a fixed block 7 fixed on the movable table 1, a movable block 8 arranged opposite to the fixed block 7, and a driving component 9 connected to the movable block 8 to drive the movable block 8 to move toward the fixed block 7. When loading, the microcontroller turnover box is placed between the fixed block 7 and the movable block 8 to be clamped by the two to ensure that the position of the microcontroller turnover box will not move during the moving process, and then ensure that the corresponding slot can be aligned with the guide groove every time the movable table 1 moves one unit.

[0026] Furthermore, both ends of the fixed block 7 close to the movable block 8 are respectively provided with stoppers 10. When placing the microcontroller turnover box, the microcontroller turnover box is placed between the fixed block 7 and the stoppers 10 at both ends, so that the placement position of the microcontroller turnover box can be quickly positioned.

[0027] In addition, the conveying platform 2 of the present embodiment includes a first side plate and a second side plate that are arranged opposite to each other, and the opposite sides of the first side plate and the second side plate are provided with a linearly extending slide groove; the movable platform 1 is located between the first side plate and the second side plate, and a first slider is provided on the side close to the first side plate, and the first slider is slidably assembled in the slide groove of the first side plate, and a second slider is provided on the side close to the second side plate of the movable platform 1, and the second slider is slidably assembled in the slide groove of the second side plate, thereby realizing the linear sliding assembly of the movable platform 1 on the conveying platform 2.

[0028] Furthermore, the rack 4 is located below the movable platform 1 and is arranged along the extending direction of the slide groove.

[0029] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A single-chip microcomputer auxiliary chip loading device, characterized in that: include: A movable platform (1), a conveying platform (2), a driving mechanism and a guide member (3), wherein: The movable platform (1) can be linearly slidably mounted on the conveying platform (2), and a rack (4) is provided on the movable platform (1) along its sliding direction; The driving mechanism comprises a power component and a gear (5) driven to rotate by the power component, and the gear (5) is meshed with a rack (4); The guide member (3) is located above the movable platform (1) and supported by a support frame (6). The guide member (3) has a guide groove that passes through from top to bottom. The side wall of the guide groove includes a first side wall and a second side wall. The first side wall and the second side wall are arranged opposite to each other along the sliding direction of the movable platform (1), and the distance between the two increases from top to bottom.

2. The single chip microcomputer auxiliary chip loading device according to claim 1, characterized in that: The guide member (3) comprises a guide cylinder (31), a first adjustment plate (32), a second adjustment plate (33), a first upper adjustment rod (34), a first lower adjustment rod (35), a second upper adjustment rod (36) and a second lower adjustment rod (37), wherein: the guide cylinder (31) is a rectangular cylinder and is vertically arranged; the first adjustment plate (32) and the second adjustment plate (33) are both located in the guide cylinder (31) and are arranged relative to each other in the sliding direction of the movable platform (1), so that the plate surface of the first adjustment plate (32) close to the second adjustment plate (33) constitutes a first side wall, and the plate surface of the second adjustment plate (33) close to the first adjustment plate (32) constitutes a second side wall; the first upper adjustment rod (34) and the first lower adjustment rod (35), and the second upper adjustment rod (36) and the second lower adjustment rod (37) are connected to each other. The rods (37) are axially movably assembled on the guide cylinder (31), and the first upper adjusting rod (34) and the first lower adjusting rod (35) are located on a side of the first adjusting plate (32) away from the second adjusting plate (33), the first upper adjusting rod (34) and the first lower adjusting rod (35) are arranged at an upper and lower spacing, and one end of the first upper adjusting rod (34) and the first lower adjusting rod (35) are respectively movably connected to the first adjusting plate (32); the second upper adjusting rod (36) and the second lower adjusting rod (37) are located on a side of the second adjusting plate (33) away from the first adjusting plate (32), the second upper adjusting rod (36) and the second lower adjusting rod (37) are arranged at an upper and lower spacing, and one end of the second upper adjusting rod (36) and the second lower adjusting rod (37) are respectively movably connected to the second adjusting plate (33).

3. The single chip microcomputer auxiliary chip loading device according to claim 2, characterized in that: The first upper adjustment rod (34) and the first lower adjustment rod (35), as well as the second upper adjustment rod (36) and the second lower adjustment rod (37) are all threaded rods and are threadedly assembled on the guide cylinder (31).

4. The single chip microcomputer auxiliary chip loading device according to claim 1, characterized in that: A positioning clamping mechanism is provided on the movable platform (1), the positioning clamping mechanism comprising a fixed block (7) fixed on the movable platform (1), a movable block (8) arranged opposite to the fixed block (7), and a driving component (9) connected to the movable block (8) to drive the movable block (8) to move in the direction of the fixed block (7).

5. The single chip microcomputer auxiliary chip loading device according to claim 4, characterized in that: Stop blocks (10) are respectively provided at both ends of the fixed block (7) on a side close to the movable block (8).

6. The single chip microcomputer auxiliary chip loading device according to any one of claims 1 to 5, characterized in that: The conveying platform (2) comprises a first side plate and a second side plate which are arranged opposite to each other, and a linearly extending slide groove is provided on the opposite sides of the first side plate and the second side plate; the movable platform (1) is located between the first side plate and the second side plate, and a first slider is provided on the side close to the first side plate, and the first slider is slidably assembled in the slide groove of the first side plate; the movable platform (1) is provided with a second slider on the side close to the second side plate, and the second slider is slidably assembled in the slide groove of the second side plate.

7. The single chip microcomputer auxiliary chip loading device according to claim 6, characterized in that: The rack (4) is located below the movable platform (1) and is arranged along the extension direction of the slide groove.