Chip transportation material box

By employing a hollow frame, baffle, and spring design in the chip transport box, the problem of baffle rotation due to vibration was solved, thus improving loading efficiency and reducing labor costs.

CN223521368UActive Publication Date: 2025-11-07WUXI RADAR ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423153734.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-07
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The vibration during the insertion of the existing chip substrate causes the stop bar to fall into the limiting groove, which hinders the subsequent loading work of the staff, reduces work efficiency and increases labor costs.

Method used

A chip transport box was designed, including a hollow frame, a stop bar, a spring, and a limiting groove. The rotation of the stop bar and the support of the spring ensure that the stop bar remains stable during loading, avoids the impact of vibration, and improves loading efficiency.

Benefits of technology

It effectively prevents the stop lever from rotating due to vibration, improves the efficiency of chip substrate loading, reduces manual intervention, and lowers labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The chip transportation material box comprises a hollow frame body, a stop lever, a spring and a limiting groove, before a chip substrate is loaded, the upper end of the stop lever is pressed, the lower end of the stop lever exceeds the limiting groove and is located below the first end of the limiting groove, the stop lever is pushed to a second position, and the lower end of the stop lever is separated from the first end of the limiting groove and is located below the second end of the limiting groove; due to the fact that the upper end of the stop lever is pressed, the spring deforms to generate elastic force, external force of pressing is released, and the spring resets to enable the spring to support the stop lever to ascend and be clamped in the second end of the limiting groove. And the lower end of the stop lever cannot return to the second end of the limiting groove due to vibration of the hollow frame body and the elastic force factor of the elastic piece on the stop lever, so that the stop lever blocks the opening, and the working efficiency of loading the chip substrate is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to chip transportation technical field especially relates to chip transportation material box. BACKGROUND

[0002] The material box for chip substrate loading and transportation has a plurality of layers of supporting plates and a rotationally connected stopper rod, the stopper rod is provided with elastic members, the stopper rod is manually pulled upward to make the stopper rod disengage from the limiting groove, the stopper rod is rotated to the direction of the side plate, the stopper rod abuts against the material box, and then the substrate is placed on the supporting plate, due to the abutment of the stopper rod and the material box, the vibration when the chip substrate is inserted causes the stopper rod to rotate to the feeding direction of the material box, the stopper rod falls into the limiting groove, the subsequent loading work of the staff is hindered, manual pulling of the stopper rod is needed again, and the work efficiency is low and the labor cost is increased.

[0003] It should be noted that the information disclosed in the above background section is only used to strengthen the understanding of the background of the present disclosure, and therefore can include information that does not constitute prior art known to those of ordinary skill in the art. SUMMARY

[0004] In view of the deficiencies of the prior art, the utility model discloses a chip transportation material box to solve the problem that the vibration when the chip substrate is inserted and the elastic force of the elastic members on the stopper rod cause the stopper rod to fall into the limiting groove, hindering the subsequent loading work of the staff.

[0005] The technical scheme adopted by the utility model is as follows:

[0006] The chip transportation material box comprises:

[0007] The hollow frame body has openings at the left and right ends;

[0008] The limiting groove is formed at the bottom of the hollow frame body, the first end of the groove is directed to the opening, and the second end of the groove is directed to the front end of the hollow frame body;

[0009] The stopper rod has two rods and is in a half-frame type, the upper end and the lower end of the stopper rod are rotatably connected to the upper end and the lower end of the hollow frame body respectively;

[0010] The spring is clamped on the inner side of the upper end of the hollow frame body, and the second end of the spring is connected to the inner side of the upper end of the stopper rod;

[0011] The stopper rod is in the first position, the lower end of the stopper rod is clamped into the limiting groove and located at the first end of the limiting groove, and the stopper rod does not block the opening; the upper end of the stopper rod is pressed down, the lower end of the stopper rod is disengaged from the limiting groove; the stopper rod is rotated to the second position, the stopper rod abuts against the opening, the spring supports the stopper rod to rise, the lower end of the stopper rod is clamped into the second end of the limiting groove, and the stopper rod blocks the opening.

[0012] Further technical solutions are that the chip transport box further comprises:

[0013] The first notch is provided with two first notches on the two sides of the front end of the hollow frame body, the lower end of the first notch is communicated with the first end of the limiting groove, the stop rod is in the first position, the stop rod is clamped in the first notch, and the stop rod does not block the opening.

[0014] The second notch is provided with two second notches on the left and right sides of the hollow frame body, the lower end of the second notch is communicated with the second end of the limiting groove, the stop rod is in the second position, the stop rod is clamped in the second notch, and the stop rod blocks the opening.

[0015] Further technical solutions are that the upper end of the left and right sides of the hollow frame body is respectively provided with two third notches, the spring is arranged in the third notch, the lower end of the spring is connected with the groove bottom of the third notch, and the upper end of the spring is connected with the inner side of the upper end of the stop rod.

[0016] Further technical solutions are that the stop rod comprises a pressing portion, a limiting portion and a connecting rod, the upper end of the side surface of the connecting rod is connected with the pressing portion, and the lower end of the side surface of the connecting rod is connected with the limiting portion.

[0017] Further technical solutions are that the stop rod further comprises a fixed pin, the upper end and the lower end of the two sides of the hollow frame body are respectively provided with four first holes, the third notch is located above the first hole on the two sides of the upper end of the hollow frame body, the fixed pin is arranged at one end of the pressing portion and the limiting portion close to the hollow frame body and extends into the first hole, and the fixed pin on the side of the pressing portion sequentially penetrates through the third notch and the first hole.

[0018] Further technical solutions are that the left and right sides of the hollow frame body are symmetrically provided with a plurality of supporting plates along the height direction, and the supporting plates and the inner side of the hollow frame body form a supporting groove.

[0019] Further technical solutions are that the bottom end of the hollow frame body is provided with two positioning grooves.

[0020] Further technical solutions are that the hollow frame body is provided with a two-dimensional code business card on the side surface and the upper end.

[0021] Further technical solutions are that the hollow frame body is provided with a clamping portion on the upper end.

[0022] The beneficial effects of the embodiments of the utility model are as follows:

[0023] (1) the chip transport box includes a hollow frame, a stop lever, a spring and a limiting groove, before loading the chip substrate, the upper end of the stop lever is pressed, the lower end of the stop lever is separated from the limiting groove and is located below the first end of the limiting groove, the stop lever is pushed to the second position, the lower end of the stop lever is separated from the first end of the limiting groove and is located below the second end of the limiting groove, because the upper end of the stop lever is pressed, the spring is deformed to generate elastic force, the external force of pressing is released, the spring is reset to make the spring support the stop lever to rise and be clamped in the second end of the limiting groove, through the limiting groove, when the chip substrate is loaded, the stop lever will not rotate towards the opening due to the vibration of the hollow frame, the lower end of the stop lever returns to the second end of the limiting groove, so that the stop lever blocks the opening, and the working efficiency of loading the chip substrate is improved.

[0024] (2) further, the chip transport box further includes a first slot and a second slot, the first slot has two and is arranged on both sides of the front end of the hollow frame, the lower end of the first slot is communicated with the first end of the limiting groove, the stop lever is in the first position and is clamped in the first slot, the second slot has two and is arranged on both sides of the hollow frame, the lower end of the second slot is communicated with the second end of the limiting groove, the stop lever is in the second position and is clamped in the second slot, after the chip substrate is loaded into the hollow frame, the stop lever is pushed to the second position and is clamped in the second slot, the chip substrate is clamped, when there is no chip substrate in the hollow frame, the stop lever is in the first position and is clamped in the first slot, because the first slot and the second slot are arranged, the stop lever can be embedded in the first slot and the second slot, the influence of vibration on the stop lever is further reduced, the occupation of space by the stop lever is reduced, and the space utilization of the chip transport box is improved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is the isometric view of the hollow frame in the chip transport box of the utility model.

[0026] Figure 2 It is the right view structure schematic diagram of the hollow frame in the chip transport box of the utility model.

[0027] Figure 3 It is the left view structure schematic diagram of the hollow frame in the chip transport box of the utility model.

[0028] Figure 4 It is the bottom view structure schematic diagram of the hollow frame in the chip transport box of the utility model.

[0029] Figure 5 It is the top view structure schematic diagram of the hollow frame in the chip transport box of the utility model.

[0030] Figure 6 It is the isometric view of the stop lever in the chip transport box of the utility model.

[0031] Figure 7The utility model discloses a chip transport material box's side section structure schematic diagram.

[0032] Figure 8 The utility model discloses a chip transport material box's side section structure schematic diagram.

[0033] Figure 9 The utility model discloses a chip transport material box's side section structure schematic diagram.

[0034] In the drawing,

[0035] 1, hollow frame body;11, opening;12, first hole;13, positioning groove;2, limit groove;3, stop lever;31, fixed pin;32, pressing part;33, limiting part;34, connecting rod;4, spring;5, first notch;6, second notch;7, third notch;8, supporting plate;81, supporting groove;9, clamping part;91, clamping opening;92, positioning hole;10, two-dimensional code business card. DETAILED DESCRIPTION

[0036] The specific implementation of the utility model will be described below in combination with the drawings.

[0037] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the device proposed by the utility model is further described in detail below in combination with the drawings and specific implementation. According to the following description, the advantages and features of the utility model will be more clear. It should be noted that the drawings are very simplified and all use non-precise proportions, only to facilitate and clearly assist the purpose of explaining the implementation of the utility model. In order to make the purpose, features and advantages of the utility model more obvious and easy to understand, please refer to the drawings. It is known that the structure, proportion, size and the like shown in the drawings attached to the specification are only used to cooperate with the content disclosed in the specification, so that people familiar with this technology can understand and read, and not to limit the implementation of the utility model, so it does not have the technical essence, any modification of structure, change of proportion relationship or adjustment of size, as long as it does not affect the effect and purpose of the utility model, it should still fall within the scope of the technology disclosed by the utility model.

[0038] Embodiment

[0039] As Figures 1-9As shown, the chip transport box includes a hollow frame 1, a limiting groove 2, a stop bar 3, and a spring 4. The hollow frame 1 has openings 11 at both ends. The limiting groove 2 is located on both sides of the bottom of the hollow frame 1, with the first end of the limiting groove 2 facing the opening 11 and the second end facing the front end of the hollow frame 1. There are two stop bars 3, which are semi-frame shaped. The first and second ends of the stop bars 3 are rotatably connected to the upper and lower ends of the hollow frame 1, respectively. For example, the stop bar 3 includes a pressing part 32, a limiting part 33, and a connecting rod 34. The upper side of the connecting rod 34 is connected to the pressing part 32, and the lower side of the connecting rod 34 is connected to the limiting part 33.

[0040] like Figures 8-9 As shown, the stop lever 3 is in the first position, the second end of the stop lever 3 is inserted into the limiting groove 2 and is located at the first end of the limiting groove 2, the stop lever 3 does not block the opening 11, the upper end of the stop lever 3 is pressed down, the second end of the stop lever 3 is disengaged from the limiting groove 2, the stop lever 3 is rotated to the second position, the stop lever 3 abuts against the opening 11, the spring 4 supports the stop lever 3 to rise, the lower end of the stop lever 3 is inserted into the second end of the limiting groove 2, the stop lever 3 blocks the opening 11.

[0041] like Figures 4-5 As shown, the chip transport box further includes a first slot 5 and a second slot 6. There are two first slots 5, located on the front sides of the hollow frame 1. The lower end of the first slot 5 connects to the first end of the limiting groove 2, and the stop rod 3 is in the first position, engaging with the first slot 5. There are two second slots 6, located on the left and right sides of the hollow frame 1. The lower end of the second slot 6 connects to the second end of the limiting groove 2, and the stop rod 3 is in the second position, engaging with the second slot 6. Because of the first slot 5 and the second slot 6, the stop rod 3 can be embedded in both slots, further reducing the impact of vibration on the stop rod 3 and reducing its space occupation, thus improving the space utilization rate of the chip transport box.

[0042] like Figure 7 As shown, furthermore, two third slots 7 are respectively opened at the upper ends of the left and right sides of the hollow frame 1. The spring 4 is installed in the third slot 7, and the lower end of the spring 4 is connected to the bottom of the third slot 7. The upper end of the spring 4 is connected to the inner side of the upper end of the stop rod 3. For example, the stop rod 3 also includes a fixing pin 31. Four first holes 12 are respectively opened at the upper and lower ends of both sides of the hollow frame 1. The third slot 7 is located above the first holes 12 on both sides of the upper end of the hollow frame 1. The fixing pin 31 is respectively set at the end of the pressing part 32 and the limiting part 33 near the hollow frame 1 and extends into the first hole 12. The fixing pin 31 located on the side of the pressing part 32 passes through the third slot 7 and the first hole 12 in sequence.

[0043] like Figure 1As shown, further, the hollow frame body 1 is provided with a plurality of supporting plates 8 on the left and right sides inside, the two supporting plates 8 are symmetrically arranged, the upper and lower supporting plates 8 are arranged at intervals, and the two upper and lower supporting plates 8 and the inner side of the hollow frame body 1 form a supporting groove 81. The chip substrate is inserted into the hollow frame body 1 through the supporting groove 81, and the supporting plate 8 supports the chip substrate.

[0044] As shown in Figure 1 Further, two positioning grooves 13 are formed at the bottom end of the hollow frame body 1, and the laser sequentially passes through the two positioning grooves 13 to detect whether the hollow frame body is placed upside down on the production line.

[0045] As shown in Figure 3 and Figure 5 Further, the hollow frame body 1 is provided with a two-dimensional code card 10 on the side and the upper end, and the automatic mechanical arm recognizes the chip model loaded in the hollow frame body by scanning the two-dimensional code card 10 to determine the subsequent transportation position.

[0046] As shown in Figure 1 Further, the hollow frame body 1 is provided with a clamping part 9 at the upper end, the clamping part 9 and the hollow frame body 1 form a clamping opening 91, and the clamping part 9 is provided with a positioning hole 92 at the upper end. The automatic mechanical arm is positioned through the positioning hole 92 to grab the hollow frame body 1 through the clamping opening 91.

[0047] When the embodiment works:

[0048] Before loading the chip substrate, the stop rod 3 is in the second position, the pressing part 32 of the stop rod 3 is pressed, the limiting part 33 of the stop rod 3 is separated from the second end of the limiting groove 2, the stop rod 3 is rotated to the first position, the connecting rod 34 is clamped into the first slot 5, the pressing part 32 is released, the spring 4 supports the stop rod 3 to rise, the limiting part 33 is clamped into the first end of the limiting groove 2, the connecting rod 34 is clamped into the first slot 5, the opening 11 is opened, and the loading of the chip substrate is started. The chip substrate is inserted into the supporting groove 81 from the opening 11, the supporting plate 8 supports the chip substrate, after the loading is completed, the pressing part 32 of the stop rod 3 is pressed, the limiting part 33 is separated from the first end of the limiting groove 2, the stop rod 3 is rotated to the second position, the connecting rod 34 is clamped into the second slot 6, the spring 4 supports the stop rod 3 to rise, the limiting part 33 is clamped into the second end of the limiting groove 2, and the opening 11 is closed and the two connecting rods 34 clamp the chip substrate.

[0049] In this embodiment, the upper end of the blocking rod 3 is pressed, the lower end of the blocking rod 3 is disengaged from the limiting groove 2 and is located below the first end of the limiting groove 2, the blocking rod 3 is pushed to the second position, the lower end of the blocking rod 3 is disengaged from the first end of the limiting groove 2 and is located below the second end of the limiting groove 2, and because the upper end of the blocking rod 3 is pressed, the spring 4 is deformed to generate elastic force, the external force of pressing is released, the spring 4 is reset to make the spring 4 support the blocking rod 3 to rise and be clamped in the second end of the limiting groove 2, and because the limiting groove 2 is arranged, when the chip substrate is loaded, the blocking rod 3 will not rotate towards the opening 11 due to vibration of the hollow frame body 1, the lower end of the blocking rod 3 returns to the second end of the limiting groove 2, the blocking rod 3 blocks the opening 11, and the working efficiency of loading the chip substrate is improved.

[0050] The technical features of the above-mentioned embodiments can be combined arbitrarily, and in order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, however, as long as the combination of the technical features does not exist contradictory, it should be considered that it is within the scope of the present application.

[0051] The above-mentioned embodiments only express several implementation manners of the present application, the description is more specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. Chip transport magazine, characterized in that The chip transport box comprises: A hollow frame (1) with openings (11) at both ends; A limiting groove (2) is opened at both sides of the bottom of the hollow frame (1), the first end of the groove is towards the opening (11), and the second end of the groove is towards the front end of the hollow frame (1); A stop lever (3) has two half-frame types, and the upper end and the lower end are respectively rotatably connected to the upper end and the lower end of the hollow frame (1); A spring (4) is clamped on the inside of the upper end of the hollow frame (1), and the upper end is connected to the inside of the upper end of the stop lever (3); The stop lever (3) is in the first position, the lower end of the stop lever (3) is clamped into the limiting groove (2) and located at the first end of the limiting groove (2), and the stop lever (3) does not block the opening (11); press the upper end of the stop lever (3), the lower end of the stop lever (3) is separated from the limiting groove (2); rotate the stop lever (3) to the second position, the stop lever (3) abuts the opening (11), the spring (4) supports the stop lever (3) to rise, the lower end of the stop lever (3) is clamped into the second end of the limiting groove (2), and the stop lever (3) blocks the opening (11).

2. The chip transport pod of claim 1, wherein: The chip transport box further comprises: Two first notches (5) are opened at both sides of the front end of the hollow frame (1), the lower end of the first notch (5) is connected to the first end of the limiting groove (2), the stop lever (3) is in the first position, the stop lever (3) is clamped in the first notch (5), and the stop lever (3) does not block the opening (11); Two second notches (6) are opened at both sides of the hollow frame (1), the lower end of the second notch (6) is connected to the second end of the limiting groove (2), the stop lever (3) is in the second position, the stop lever (3) is clamped in the second notch (6), and the stop lever (3) blocks the opening (11).

3. The chip transport boat of claim 1, wherein: Two third notches (7) are opened at the upper end of both sides of the hollow frame (1), the spring (4) is arranged in the third notch (7), the lower end of the spring (4) is connected to the groove bottom of the third notch (7), and the upper end of the spring (4) is connected to the inside of the upper end of the stop lever (3).

4. The chip transport boat according to claim 3, wherein: The stop lever (3) comprises a pressing part (32), a limiting part (33) and a connecting rod (34), the upper end of the side surface of the connecting rod (34) is connected to the pressing part (32), and the lower end of the side surface of the connecting rod (34) is connected to the limiting part (33).

5. The chip transport pod of claim 4, wherein: The stop lever (3) further comprises a fixed pin (31), four first holes (12) are respectively opened at the upper end and the lower end of both sides of the hollow frame (1), the third notch (7) is above the first hole (12) at both sides of the upper end of the hollow frame (1), the fixed pin (31) is arranged at one end of the pressing part (32) and the limiting part (33) close to the hollow frame (1) and extends into the first hole (12), and the fixed pin (31) on one side of the pressing part (32) penetrates the third notch (7) and the first hole (12) in sequence.

6. The chip transport pod of claim 1, wherein: A plurality of supporting plates (8) are symmetrically arranged along the height direction on the left and right sides inside the hollow frame body (1), and two adjacent supporting plates (8) and the inner side of the hollow frame body (1) form a supporting groove (81).

7. The chip transport boat of claim 1, wherein: Two positioning grooves (13) are formed on the bottom of the hollow frame body (1).

8. The chip transport boat of claim 1, wherein: The upper end of the hollow frame body (1) is provided with a clamping part (9).

9. The chip transport boat of claim 1, wherein: The upper end and the side surface of the hollow frame body (1) are provided with a two-dimensional code business card (10).