WIFI chip loading device

By using multiple blocking push plates inserted into the hopper slot to support the material tray in the WIFI chip feeding device, the wear problem of traditional devices is solved, the service life of the equipment and the material tray is improved, and maintenance costs are reduced.

CN116409621BActive Publication Date: 2025-11-07HIMIT (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202310602511.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-25
Publication Date
2025-11-07
Estimated Expiration
2043-05-25

AI Technical Summary

Technical Problem

In traditional WIFI chip feeding devices, the insertion of the first and second blocking blocks into the gap of the material tray causes wear, reducing the service life of the equipment and increasing maintenance costs.

Method used

The first and second blocking push plates are adopted, each including multiple blocking blocks. They support the material tray by inserting into the slots in the hopper, avoiding direct contact with the surface of the material tray and reducing friction.

Benefits of technology

This improved the lifespan of the WIFI chip feeding device and tray, and reduced the overall equipment usage and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a WIFI chip feeding device, which comprises a first blocking push plate, a second blocking push plate, a first driving mechanism, a second driving mechanism, a first supporting plate, a second supporting plate, a lifting mechanism, a conveying mechanism and a stock bin, wherein the first blocking push plate is connected with the first driving mechanism, the second blocking push plate is connected with the second driving mechanism, the first driving mechanism is connected with one side of the conveying mechanism through the first supporting plate, the second driving mechanism is connected with the other side of the conveying mechanism through the second supporting plate, the stock bin is fixedly connected with the conveying mechanism and is arranged at the top end of the conveying mechanism, and the lifting mechanism is arranged below the stock bin. The application solves the technical problem of how to reduce the friction degree between the WIFI chip feeding device and a material tray.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of chip automatic feeding. More particularly, the present application relates to a WIFI chip feeding device. BACKGROUND

[0002] The WIFI chip feeding device is used for sorting out a tray loaded with WIFI chips from a stock bin and conveying the tray to the next process.

[0003] The conventional WIFI chip feeding device comprises a first driving mechanism, a second driving mechanism, a first blocking block, a second blocking block, a first supporting plate, a second supporting plate, a lifting mechanism, a conveying mechanism and a stock bin. The stock bin is used for storing a plurality of stacked trays. The first tray placed at the bottom of the stock bin is a first tray, and the second tray placed at the bottom of the stock bin is a second tray. The second tray is stacked on the first tray. The stock bin is fixedly connected with the conveying mechanism and arranged at the top end of the conveying mechanism. The lifting mechanism is arranged below the stock bin. The first driving mechanism is connected with one side of the stock bin through the first supporting plate. The first driving mechanism is connected with the first blocking block to drive the first blocking block to move towards the tray. The second driving mechanism is connected with the other side of the stock bin through the second supporting plate. The second driving mechanism is connected with the second blocking block to drive the second blocking block to move towards the tray. After the first driving mechanism drives the first blocking block to insert into the gap between the first tray and the second tray, and the second driving mechanism drives the second blocking block to insert into the gap between the first tray and the second tray (herein, the gap refers to the gap between the upper surface of the first tray and the lower surface of the second tray), the first blocking block and the second blocking block can support the second tray and the trays stacked on the second tray to avoid the trays from falling down from the discharge port of the stock bin. The lifting mechanism can transport the first tray from the discharge port of the stock bin to the conveying mechanism, thereby completing the feeding operation of the WIFI chip tray. However, since the WIFI chip feeding device is achieved by inserting the first blocking block and the second blocking block into the gap between the first tray and the second tray, in the process of inserting the first blocking block and the second blocking block into the gap, the first blocking block, the first tray and the second tray will inevitably be abraded due to the small gap, and the second blocking block, the first tray and the second tray will also be abraded, which results in short service life of the first blocking block, the second blocking block, the first tray and the second tray, thereby increasing the use and maintenance cost of the overall equipment. SUMMARY

[0004] An object of embodiments of the present application is to at least solve the above problems and provide corresponding beneficial effects.

[0005] Another object of the embodiments of the present application is to provide a WIFI chip feeding device, which solves the technical problem of how to reduce the friction between the WIFI chip feeding device and the tray.

[0006] The embodiments of the present application provide a WIFI chip feeding device, which comprises:

[0007] The first blocking push plate, the second blocking push plate, the first driving mechanism, the second driving mechanism, the first supporting plate, the second supporting plate, the lifting mechanism, the conveying mechanism and the hopper, wherein,

[0008] The first blocking push plate comprises a first blocking block, a second blocking block and a third blocking block, one end of the first blocking block is a first insertion end, the other end is connected with one side of the second blocking block, the other side of the second blocking block is connected with one end of the third blocking block, the other end of the third blocking block is a second insertion end, and the first driving mechanism is connected with the second blocking block;

[0009] The second blocking push plate comprises a fourth blocking block, a fifth blocking block and a sixth blocking block, one end of the fourth blocking block is a third insertion end, the other end is connected with one side of the fifth blocking block, the other side of the fifth blocking block is connected with one end of the sixth blocking block, the other end of the sixth blocking block is a fourth insertion end, and the second driving mechanism is connected with the fifth blocking block;

[0010] The first driving mechanism is connected with one side of the conveying mechanism through the first supporting plate, and the second driving mechanism is connected with the other side of the conveying mechanism through the second supporting plate;

[0011] The hopper is fixedly connected with the conveying mechanism and is arranged at the top end of the conveying mechanism;

[0012] The lifting mechanism is arranged below the hopper;

[0013] When the WIFI chip feeding device is started, the lifting mechanism moves towards the discharge opening of the hopper until the lifting mechanism is connected with the first tray in the hopper;

[0014] When the lifting mechanism is connected with the first tray, the first driving mechanism drives the first blocking push plate to move towards the hopper, the second driving mechanism drives the second blocking push plate to move towards the hopper, until the first insertion end is inserted into the first clamping opening of the second tray in the hopper, the second insertion end is inserted into the second clamping opening of the second tray in the hopper, the third insertion end is inserted into the third clamping opening of the second tray in the hopper, and the fourth insertion end is inserted into the fourth clamping opening of the second tray in the hopper;

[0015] When each insertion end is inserted into the corresponding card slot, the lifting mechanism drives the first tray to move to the conveying mechanism.

[0016] In some embodiments, the first blocking push plate further comprises a seventh blocking block and an eighth blocking block, one end of the seventh blocking block is connected with the first insertion end, and the other end is a fifth insertion end, one end of the eighth blocking block is connected with the second insertion end, and the other end is a sixth insertion end.

[0017] The second blocking push plate further comprises a ninth blocking block and a tenth blocking block, one end of the ninth blocking block is connected with the third insertion end, and the other end is a seventh insertion end, one end of the tenth blocking block is connected with the fourth insertion end, and the other end is an eighth insertion end.

[0018] When the lifting mechanism is connected with the first tray, the first driving mechanism drives the first blocking push plate to move towards the hopper, and the second driving mechanism drives the second blocking push plate to move towards the hopper, until the fifth insertion end is inserted into the first card slot of the second tray in the hopper, the sixth insertion end is inserted into the second card slot of the second tray in the hopper, the seventh insertion end is inserted into the third card slot of the second tray in the hopper, and the eighth insertion end is inserted into the fourth card slot of the second tray in the hopper.

[0019] In some embodiments, the height of the seventh blocking block is less than that of the first blocking block, the height of the eighth blocking block is less than that of the third blocking block, the height of the ninth blocking block is less than that of the fourth blocking block, and the height of the tenth blocking block is less than that of the sixth blocking block.

[0020] In some embodiments, the hopper is enclosed by a plurality of side plate assemblies.

[0021] The opening of the hopper close to the conveying mechanism is the discharge opening, and the opening away from the conveying mechanism is the feeding opening of the hopper.

[0022] In some embodiments, the lifting mechanism comprises a first connecting plate and a third driving mechanism, the first connecting plate is connected with the third driving mechanism.

[0023] When the lifting mechanism is connected with the first tray, one side of the first connecting plate is connected with the third driving mechanism, and the other side is connected with the first tray.

[0024] In some embodiments, the lifting mechanism is located between the two side walls of the conveying mechanism.

[0025] In some embodiments, the WIFI chip feeding device further comprises a workbench, the conveying mechanism is arranged on the workbench, the third driving mechanism is partially accommodated in the workbench, a plurality of first mounting holes are arranged on the workbench, and the third driving mechanism is connected with the first connecting plate through the first mounting holes.

[0026] In some embodiments, the WIFI chip feeding device further comprises a third blocking push plate, a fourth blocking push plate, a fourth driving mechanism, a fifth driving mechanism, a third supporting plate and a fourth supporting plate, the third blocking push plate is connected with the fourth driving mechanism, the fourth blocking push plate is connected with the fifth driving mechanism, the fourth driving mechanism is connected with the hopper through the third supporting plate, and the fifth driving mechanism is connected with the hopper through the fourth supporting plate.

[0027] The hopper further comprises a plurality of adjusting members, each adjusting member is hingedly connected with a corresponding side plate assembly.

[0028] The lifting mechanism further comprises a connecting assembly, one end of the connecting assembly is connected with the third driving mechanism, and the other end is engagedly connected with each adjusting member.

[0029] In some embodiments, the connecting assembly comprises a second connecting plate, a plurality of third connecting plates, a plurality of connecting members and a plurality of rotating members, the second connecting plate is connected with the third driving mechanism, one end of each third connecting plate is connected with the second connecting plate, the other end is provided with a tooth portion, one side of each connecting member is connected with a corresponding third connecting plate, the other side is connected with a corresponding rotating member, each rotating member is engagedly connected with a corresponding tooth portion, and each rotating member is engagedly connected with a corresponding adjusting member.

[0030] In some embodiments, the third blocking push plate comprises an eleventh blocking block, a twelfth blocking block and a thirteenth blocking block, one end of the eleventh blocking block is a ninth insertion end, the other end is connected with one side of the twelfth blocking block, the other side of the twelfth blocking block is connected with one end of the thirteenth blocking block, the other end of the thirteenth blocking block is a tenth insertion end, and the fourth driving mechanism is connected with the twelfth blocking block.

[0031] The fourth blocking push plate comprises a fourteenth blocking block, a fifteenth blocking block and a sixteenth blocking block, one end of the fourteenth blocking block is an eleventh insertion end, the other end is connected with one side of the fifteenth blocking block, the other side of the fifteenth blocking block is connected with one end of the sixteenth blocking block, the other end of the sixteenth blocking block is a twelfth insertion end, and the fifth driving mechanism is connected with the fifteenth blocking block.

[0032] The technical effects of the embodiments of the present application at least include:

[0033] The WIFI chip feeding device provided by the embodiment of the present application comprises a first blocking push plate, a second blocking push plate, a first driving mechanism, a second driving mechanism, a first supporting plate, a second supporting plate, a lifting mechanism, a conveying mechanism and a hopper, wherein the first driving mechanism is connected to one side of the conveying mechanism through the first supporting plate, the second driving mechanism is connected to the other side of the conveying mechanism through the second supporting plate, the hopper is fixedly connected with the conveying mechanism and is arranged at the top end of the conveying mechanism, and the lifting mechanism is arranged below the hopper. In the embodiment of the present application, the first blocking push plate is arranged to comprise a first blocking block, a second blocking block and a third blocking block, one end of the first blocking block is a first insertion end, the other end of the first blocking block is connected with one side of the second blocking block, the other side of the second blocking block is connected with one end of the third blocking block, and the other end of the third blocking block is a second insertion end. The first driving mechanism is connected with the second blocking block. The second blocking push plate is arranged to comprise a fourth blocking block, a fifth blocking block and a sixth blocking block, one end of the fourth blocking block is a third insertion end, the other end of the fourth blocking block is connected with one side of the fifth blocking block, the other side of the fifth blocking block is connected with one end of the sixth blocking block, and the other end of the sixth blocking block is a fourth insertion end. The second driving mechanism is connected with the fifth blocking block. Based on the structure design, when the lifting mechanism is connected with the first tray in the hopper, the first driving mechanism drives the first blocking push plate to move towards the hopper. At the same time, the second driving mechanism drives the second blocking push plate to move towards the hopper, until the first insertion end is inserted into the first clamping hole of the second tray in the hopper, the second insertion end is inserted into the second clamping hole of the second tray in the hopper, the third insertion end is inserted into the third clamping hole of the second tray in the hopper, and the fourth insertion end is inserted into the fourth clamping hole of the second tray in the hopper. Thus, the first blocking push plate and the second blocking push plate of the embodiment of the present application can support the second tray and other trays stacked on the second tray, block the second tray and other trays stacked on the second tray from falling out of the hopper to the outside of the hopper, so that the lifting mechanism can smoothly drive the first tray to move out to the conveying mechanism, and the feeding operation of the WIFI chip feeding device is completed. Compared with the prior art in which the first blocking block and the second blocking block are inserted into the gap between the first tray and the second tray, the first insertion end of the first blocking push plate is inserted into the first clamping hole of the second tray in the hopper, the second insertion end is inserted into the second clamping hole of the second tray in the hopper, the third insertion end is inserted into the third clamping hole of the second tray in the hopper, and the fourth insertion end is inserted into the fourth clamping hole of the second tray in the hopper. Thus, the upper surface of the first tray and the lower surface of the second tray can be avoided from being contacted, the friction degree between the WIFI chip feeding device and the tray is reduced, the service life of the WIFI chip feeding device and the tray is improved, and the use and maintenance cost of the overall equipment is reduced.

[0034] Other advantages, objects, and features of the application will be apparent from the following specification and appended claims, and from the attendant drawing. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0036] Figure 1 The structure schematic diagram of the WIFI chip feeding device in some embodiments of the present application is shown in the figure.

[0037] Figure 2 The structure schematic diagram of the first blocking push plate, the first driving mechanism and the first supporting plate in some embodiments of the present application is shown in the figure.

[0038] Figure 3 The structure schematic diagram of the second blocking push plate, the second driving mechanism and the second supporting plate in some embodiments of the present application is shown in the figure.

[0039] Figure 4 The structure schematic diagram of the WIFI chip feeding device in some other embodiments of the present application is shown in the figure.

[0040] Figure 5 The structure schematic diagram of the first supporting plate in some embodiments of the present application is shown in the figure.

[0041] Figure 6 The structure schematic diagram of the conveying mechanism in some embodiments of the present application is shown in the figure.

[0042] Figure 7 The structure schematic diagram of the tray in some embodiments of the present application is shown in the figure.

[0043] Figure 8 The structure schematic diagram of the tray in some other embodiments of the present application is shown in the figure.

[0044] Figure 9 The structure schematic diagram of the lifting mechanism in some embodiments of the present application is shown in the figure.

[0045] Figure 10 The structure schematic diagram of the WIFI chip feeding device in some other embodiments of the present application is shown in the figure.

[0046] Figure 11 The structure schematic diagram of the first connecting plate, the third driving mechanism and the second connecting plate in some embodiments of the present application is shown in the figure.

[0047] Figure 12 Structure diagram of the third connecting plate, connecting piece, rotating member and adjusting piece in some embodiments of the present application;

[0048] Figure 13 Structure diagram of the second side plate member in some embodiments of the present application;

[0049] Explanation of reference signs:

[0050] 1, WIFI chip loading device;

[0051] 10, first blocking push plate; 11, first blocking block; 111, first insertion end; 12, second blocking block; 13, third blocking block; 131, second insertion end; 14, seventh blocking block; 141, fifth insertion end; 15, eighth blocking block; 151, sixth insertion end;

[0052] 20, second blocking push plate; 21, fourth blocking block; 211, third insertion end; 22, fifth blocking block; 23, sixth blocking block; 231, fourth insertion end; 24, ninth blocking block; 241, seventh insertion end; 25, tenth blocking block; 251, eighth insertion end;

[0053] 30, first driving mechanism; 31, first driving member; 32, first connecting member; 33, first sliding rail; 34, first sliding block; 35, second sliding rail; 36, second sliding block;

[0054] 40, second driving mechanism;

[0055] 50, first support plate; 51, first support part; 52, second support part; 53, third support part;

[0056] 60, second support plate;

[0057] 70, lifting mechanism; 71, first connecting plate; 72, third driving mechanism; 73, second connecting plate; 74, third connecting plate; 741, tooth part; 75, connecting piece; 76, rotating member;

[0058] 80, conveying mechanism; 81, first conveying belt; 82, second conveying belt; 83, first driving assembly; 84, second driving assembly; 85, first side wall; 86, second side wall;

[0059] 90, hopper; 91, first side plate assembly; 911, first side plate member; 912, second side plate member; 9121, first limiting part; 92, second side plate assembly; 93, third side plate assembly; 94, fourth side plate assembly; 95, adjusting piece;

[0060] 100, workbench;

[0061] 101, third blocking push plate;

[0062] 102, fourth blocking push plate;

[0063] 103, fourth driving mechanism;

[0064] 104, fifth driving mechanism;

[0065] 105, third support plate;

[0066] 106, fourth support plate;

[0067] A, tray; A1, first clamping hole; A2, second clamping hole; A3, third clamping hole; A4, fourth clamping hole. DETAILED DESCRIPTION

[0068] In order to make the objectives, technical solutions and advantages of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0069] The terms “first” and “second” and the like in the specification of the embodiments of the present application are used to distinguish different objects, rather than to describe a specific order of the objects. For example, the first blocking push plate, the second blocking push plate and the third blocking push plate are used to distinguish different blocking push plates, rather than to describe a specific order of the blocking push plates.

[0070] In the embodiments of the present application, the words “exemplary” or “for example” are used to mean serving as an example, instance, or illustration, in any non-limiting and non-exhaustive sense. Any embodiment or design scheme described as “exemplary” or “for example” in the embodiments of the present application should not be interpreted as being more preferred or advantageous than other embodiments or design schemes. Rather, use of the words “exemplary” or “for example” is intended to present related concepts in a concrete manner.

[0071] It should be noted that, in this document, the terms “comprising”, “containing”, or any other variant thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product, or device containing a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products, or devices.

[0072] The specific embodiments of the present application are described in detail below with reference to the accompanying drawings.

[0073] As Figures 1-3As shown, the embodiment of the present application provides a WIFI chip feeding device 1, comprising:

[0074] The first blocking push plate 10, the second blocking push plate 20, the first driving mechanism 30, the second driving mechanism 40, the first supporting plate 50, the second supporting plate 60, the lifting mechanism 70, the conveying mechanism 80 and the hopper 90, wherein,

[0075] The first blocking push plate 10 comprises a first blocking block 11, a second blocking block 12 and a third blocking block 13, one end of the first blocking block 11 is a first insertion end 111, the other end is connected with one side of the second blocking block 12, the other side of the second blocking block 12 is connected with one end of the third blocking block 13, the other end of the third blocking block 13 is a second insertion end 131, and the first driving mechanism 30 is connected with the second blocking block 12;

[0076] The second blocking push plate 20 comprises a fourth blocking block 21, a fifth blocking block 22 and a sixth blocking block 23, one end of the fourth blocking block 21 is a third insertion end 211, the other end is connected with one side of the fifth blocking block 22, the other side of the fifth blocking block 22 is connected with one end of the sixth blocking block 23, the other end of the sixth blocking block 23 is a fourth insertion end 231, and the second driving mechanism 40 is connected with the fifth blocking block 22;

[0077] The first driving mechanism 30 is connected with one side of the conveying mechanism 80 through the first supporting plate 50, and the second driving mechanism 40 is connected with the other side of the conveying mechanism 80 through the second supporting plate 60;

[0078] The hopper 90 is fixedly connected with the conveying mechanism 80 and is arranged at the top end of the conveying mechanism 80;

[0079] The lifting mechanism 70 is arranged below the hopper 90;

[0080] When the WIFI chip feeding device 1 is started, the lifting mechanism 70 moves to the direction of the discharge port of the hopper 90 until the lifting mechanism 70 is connected with the first tray in the hopper 90;

[0081] When the lifting mechanism 70 is connected with the first tray, the first driving mechanism 30 drives the first blocking push plate 10 to move towards the hopper 90, and the second driving mechanism 40 drives the second blocking push plate 20 to move towards the hopper 90, until the first insertion end 111 is inserted into the first clamping opening A1 of the second tray in the hopper 90, the second insertion end 131 is inserted into the second clamping opening A2 of the second tray in the hopper 90, the third insertion end 211 is inserted into the third clamping opening A3 of the second tray in the hopper 90, and the fourth insertion end 231 is inserted into the fourth clamping opening A4 of the second tray in the hopper 90.

[0082] When each insertion end is inserted into the corresponding clamping opening, the lifting mechanism 70 drives the first tray to move to the conveying mechanism 80.

[0083] It should be noted that the first blocking push plate 10 has a whole shape of a "N" character.

[0084] The first blocking block 11 is fixedly connected with the second blocking block 12. In other embodiments, the first blocking block 11 and the second blocking block 12 can be integrally formed.

[0085] The third blocking block 13 is fixedly connected with the second blocking block 12. In other embodiments, the third blocking block 13 and the second blocking block 12 can be integrally formed.

[0086] The first driving mechanism 30 comprises a first driving member 31, a first connecting member 32, a first sliding rail 33, a first sliding block 34, a second sliding rail 35 and a second sliding block 36, as shown in the drawings. Figure 4 One side of the first connecting member 32 is connected with the first driving member 31, and the other side is fixedly connected with the second blocking block 12. The first sliding rail 33 and the second sliding rail 35 are respectively arranged on both sides of the first supporting plate 50. One side of the first sliding block 34 is slidably connected with the first sliding rail 33, and the other side is fixedly connected with the second blocking block 12. One side of the second sliding block 36 is slidably connected with the second sliding rail 35, and the other side is fixedly connected with the second blocking block 12. The first driving member 31 is fixedly connected with the first supporting plate 50. The first driving member 31 is a pneumatic cylinder. The first connecting member 32 has a shape of an L character.

[0087] The second blocking push plate 20 has a whole shape of a "N" character.

[0088] The fourth blocking block 21 is fixedly connected with the fifth blocking block 22. In other embodiments, the fourth blocking block 21 and the fifth blocking block 22 can be integrally formed.

[0089] The sixth blocking block 23 is fixedly connected with the fifth blocking block 22. In other embodiments, the sixth blocking block 23 and the fifth blocking block 22 can be integrally formed.

[0090] The second driving mechanism 40 comprises a second driving member, a second connecting member, a third sliding rail, a third sliding block, a fourth sliding rail and a fourth sliding block. One side of the second connecting member is connected with the second driving member, and the other side is fixedly connected with the fifth blocking block 22. The third sliding rail and the fourth sliding rail are respectively arranged on the two sides of the second support plate 60. One side of the third sliding block is slidably connected with the third sliding rail, and the other side is fixedly connected with the fifth blocking block 22. One side of the fourth sliding block is slidably connected with the fourth sliding rail, and the other side is fixedly connected with the fifth blocking block 22. The second driving member is fixedly connected with the second support plate 60. The second driving member is a gas cylinder. The second connecting member is in the shape of an L letter. The second driving member has the same structure as the first driving member 31, and can be referred to Figure 4 .

[0091] The first support plate 50 comprises a first support part 51, a second support part 52 and a third support part 53, as shown in the drawings. One end of the second support part 52 is integrally formed with the first support part 51, and the other end is integrally formed with the third support part 53. The first driving member 31 is fixedly connected with the first support part 51, the first sliding rail 33 and the second sliding rail 35 are fixedly connected with the second support part 52, and the third support part 53 is fixedly connected with the transportation mechanism 80. Figure 5

[0092] The second support plate 60 comprises a fourth support part, a fifth support part and a sixth support part. One end of the fifth support part is integrally formed with the fourth support part, and the other end is integrally formed with the sixth support part. The second driving member is fixedly connected with the fourth support part, the third sliding rail and the fourth sliding rail are fixedly connected with the fifth support part, and the sixth support part is fixedly connected with the transportation mechanism 80. The structure of the second support plate 60 is the same as that of the first support plate 50, and can be referred to Figure 5 .

[0093] The transportation mechanism 80 comprises a first conveying belt 81, a second conveying belt 82, a first driving assembly 83, a second driving assembly 84, a first side wall 85 and a second side wall 86, as shown in the drawings. Figure 6 ​As shown, the first conveyor belt 81 is connected with the first driving assembly 83, the first driving assembly 83 is connected with the first side wall 85, the second conveyor belt 82 is connected with the second driving assembly 84, and the second driving assembly 84 is connected with the second side wall 86. The first driving assembly 83 comprises a motor and a plurality of rotating wheels. The second driving assembly 84 comprises a motor and a plurality of rotating wheels. The first conveyor belt 81 and the second conveyor belt 82 constitute a transportation track. The lifting mechanism 70 is arranged between the first conveyor belt 81 and the second conveyor belt 82, so that the lifting mechanism 70 can move the first hopper 90 to the transportation track.

[0094] As shown, each tray A is provided with four sockets, i.e. the first socket A1, the second socket A2, the third socket A3 and the fourth socket A4. As shown in Figure 7 and Figure 8 As shown, the first socket A1 and the second socket A2 are arranged on one side of the tray A, and the third socket A3 and the fourth socket A4 are arranged on the other side of the tray A. The shape of each socket is matched with the shape of the corresponding insertion end.

[0095] The connection between the lifting mechanism 70 and the first tray in the hopper 90 means that the bottom surface of the first tray is connected with the lifting mechanism 70, or the first tray is placed on the lifting mechanism 70.

[0096] The WIFI chip feeding device 1 provided by the embodiment of the application comprises a first blocking push plate 10, a second blocking push plate 20, a first driving mechanism 30, a second driving mechanism 40, a first supporting plate 50, a second supporting plate 60, a lifting mechanism 70, a conveying mechanism 80 and a hopper 90, wherein the first driving mechanism 30 is connected to one side of the conveying mechanism 80 through the first supporting plate 50, the second driving mechanism 40 is connected to the other side of the conveying mechanism 80 through the second supporting plate 60, the hopper 90 is fixedly connected with the conveying mechanism 80 and is arranged at the top end of the conveying mechanism 80, and the lifting mechanism 70 is arranged below the hopper 90. The first blocking push plate 10 comprises a first blocking block 11, a second blocking block 12 and a third blocking block 13, one end of the first blocking block 11 is a first insertion end 111, the other end is connected with one side of the second blocking block 12, the other side of the second blocking block 12 is connected with one end of the third blocking block 13, and the other end of the third blocking block 13 is a second insertion end 131. The second blocking push plate 20 comprises a fourth blocking block 21, a fifth blocking block 22 and a sixth blocking block 23, one end of the fourth blocking block 21 is a third insertion end 211, the other end is connected with one side of the fifth blocking block 22, the other side of the fifth blocking block 22 is connected with one end of the sixth blocking block 23, and the other end of the sixth blocking block 23 is a fourth insertion end 231. The second driving mechanism 40 is connected with the fifth blocking block 22. Based on the structure, when the lifting mechanism 70 is connected with the first tray in the hopper 90, the first driving mechanism 30 drives the first blocking push plate 10 to move towards the hopper 90, at the same time, the second driving mechanism 40 drives the second blocking push plate 20 to move towards the hopper 90, until the first insertion end 111 is inserted into the first clamping hole A1 of the second tray in the hopper 90, the second insertion end 131 is inserted into the second clamping hole A2 of the second tray in the hopper 90, the third insertion end 211 is inserted into the third clamping hole A3 of the second tray in the hopper 90, and the fourth insertion end 231 is inserted into the fourth clamping hole A4 of the second tray in the hopper 90. Therefore, the first blocking push plate 10 and the second blocking push plate 20 can support the second tray and other trays A stacked on the second tray, block the second tray and other trays A stacked on the second tray from falling out of the hopper 90 to the outside of the hopper 90, so that the lifting mechanism 70 can smoothly drive the first tray to move out to the conveying mechanism 80, and the feeding operation of the WIFI chip feeding device 1 is completed.Compared with the prior art that the first blocking block 11 and the second blocking block 12 are inserted into the gap between the first tray and the second tray, the first insertion end 111 of the first blocking push plate 10 is inserted into the first clamping hole A1 of the second tray in the hopper 90, the second insertion end 131 is inserted into the second clamping hole A2 of the second tray in the hopper 90, the third insertion end 211 is inserted into the third clamping hole A3 of the second tray in the hopper 90, and the fourth insertion end 231 is inserted into the fourth clamping hole A4 of the second tray in the hopper 90, so that the upper surface of the first tray and the lower surface of the second tray can be avoided to be contacted, the friction degree between the WIFI chip feeding device 1 and the tray A is reduced, the service life of the WIFI chip feeding device 1 and the tray A is improved, and the use and maintenance cost of the whole equipment is reduced.

[0097] It should be understood that the feeding operation described in the embodiments of the present application is that the lifting mechanism 70 can only drive one tray A to move out of the hopper 90 to the conveying mechanism 80 at a time.

[0098] In some embodiments, as shown in Figs. 3 and 4, the first blocking push plate 10 further comprises a seventh blocking block 14 and an eighth blocking block 15, one end of the seventh blocking block 14 is connected with the first insertion end 111, and the other end is a fifth insertion end 141, one end of the eighth blocking block 15 is connected with the second insertion end 131, and the other end is a sixth insertion end 151. Figure 1 2 The second blocking push plate 20 further comprises a ninth blocking block 24 and a tenth blocking block 25, one end of the ninth blocking block 24 is connected with the third insertion end 211, and the other end is a seventh insertion end 241, one end of the tenth blocking block 25 is connected with the fourth insertion end 231, and the other end is an eighth insertion end 251.

[0099] When the lifting mechanism 70 is connected with the first tray, the first driving mechanism 30 drives the first blocking push plate 10 to move towards the hopper 90, and the second driving mechanism 40 drives the second blocking push plate 20 to move towards the hopper 90, until the fifth insertion end 141 is inserted into the first clamping hole A1 of the second tray in the hopper 90, the sixth insertion end 151 is inserted into the second clamping hole A2 of the second tray in the hopper 90, the seventh insertion end 241 is inserted into the third clamping hole A3 of the second tray in the hopper 90, and the eighth insertion end 251 is inserted into the fourth clamping hole A4 of the second tray in the hopper 90.

[0100] When the lifting mechanism 70 is connected with the first tray, the first driving mechanism 30 drives the first blocking push plate 10 to move towards the hopper 90, and the second driving mechanism 40 drives the second blocking push plate 20 to move towards the hopper 90, until the fifth insertion end 141 is inserted into the first clamping hole A1 of the second tray in the hopper 90, the sixth insertion end 151 is inserted into the second clamping hole A2 of the second tray in the hopper 90, the seventh insertion end 241 is inserted into the third clamping hole A3 of the second tray in the hopper 90, and the eighth insertion end 251 is inserted into the fourth clamping hole A4 of the second tray in the hopper 90.

[0101] ​The height of the seventh blocking block 14 is less than that of the first blocking block 11; the height of the eighth blocking block 15 is less than that of the third blocking block 13; the height of the ninth blocking block 24 is less than that of the fourth blocking block 21; and the height of the tenth blocking block 25 is less than that of the sixth blocking block 23.

[0102] The shapes of the fifth insertion end 141, the sixth insertion end 151, the seventh insertion end 241 and the eighth insertion end 251 are adapted to the first clamping opening A1, the second clamping opening A2, the third clamping opening A3 and the fourth clamping opening A4. In this embodiment, the heights of the first insertion end 111, the second insertion end 131, the third insertion end 211 and the fourth insertion end 231 are all greater than the heights of the first clamping opening A1, the second clamping opening A2, the third clamping opening A3 and the fourth clamping opening A4.

[0103] The seventh blocking block 14, the eighth blocking block 15, the ninth blocking block 24 and the tenth blocking block 25 are arranged to improve the load-bearing capacity of the first blocking push plate 10 and the second blocking push plate 20, and to improve the adaptability of the first blocking push plate 10 and the second blocking push plate 20 to the tray A.

[0104] In some embodiments, as shown in Figure 4 The hopper 90 is enclosed by a plurality of side plate assemblies; the opening close to the conveying mechanism 80 in the hopper 90 is the discharge opening, and the opening away from the conveying mechanism 80 is the feeding opening of the hopper 90.

[0105] The plurality of side plate assemblies include a first side plate assembly 91, a second side plate assembly 92, a third side plate assembly 93 and a fourth side plate assembly 94; the first side plate assembly 91 and the second side plate assembly 92 are fixedly connected to one side wall of the conveying mechanism 80, and the third side plate assembly 93 and the fourth side plate assembly 94 are fixedly connected to the other side wall of the conveying mechanism 80; the opening close to the conveying mechanism 80 in the hopper 90 is the discharge opening, and the opening away from the conveying mechanism 80 is the feeding opening of the hopper 90.

[0106] The first side plate assembly 91 includes a first side plate member 911 and a second side plate member 912; the first side plate member 911 and the second side plate member 912 are fixedly connected, and the second side plate member 912 is provided with a first limiting portion 9121, as shown in Figure 13 The first side wall 85 of the conveying mechanism 80 is partially accommodated in the first limiting portion 9121. The first side plate member 911 abuts against the first side wall 85 of the conveying mechanism 80.

[0107] The second side plate assembly 92 comprises a third side plate member and a fourth side plate member, the third side plate member and the fourth side plate member are fixedly connected, a second limiting portion is arranged on the third side plate member, and the first side wall 85 of the conveying mechanism 80 is partially accommodated in the second limiting portion. The fourth side plate member is in abutting contact with the first side wall 85 of the conveying mechanism 80. The structure of the third side plate member is the same as that of the second side plate member 912, and the structure of the fourth side plate member is the same as that of the first side plate member 911.

[0108] The third side plate assembly 93 comprises a fifth side plate member and a sixth side plate member, the fifth side plate member and the sixth side plate member are fixedly connected, a third limiting portion is arranged on the fifth side plate member, and the second side wall 86 of the conveying mechanism 80 is partially accommodated in the third limiting portion. The sixth side plate member is in abutting contact with the second side wall 86 of the conveying mechanism 80. The structure of the fifth side plate member is the same as that of the second side plate member 912, and the structure of the sixth side plate member is the same as that of the first side plate member 911.

[0109] The fourth side plate assembly 94 comprises a seventh side plate member and an eighth side plate member, the seventh side plate member and the eighth side plate member are fixedly connected, a fourth limiting portion is arranged on the seventh side plate member, and the second side wall 86 of the conveying mechanism 80 is partially accommodated in the fourth limiting portion. The eighth side plate member is in abutting contact with the second side wall 86 of the conveying mechanism 80. The structure of the seventh side plate member is the same as that of the second side plate member 912, and the structure of the eighth side plate member is the same as that of the first side plate member 911.

[0110] The design of the hopper 90 can save the manufacturing cost of the WIFI chip feeding device 1, reduce the contact area of the hopper 90 and the tray A, and avoid wear of the tray A in the tray A.

[0111] In some embodiments, as shown in Figure 9 The lifting mechanism 70 comprises a first connecting plate 71 and a third driving mechanism 72, the first connecting plate 71 is connected with the third driving mechanism 72;

[0112] When the lifting mechanism 70 is connected with the first tray, one side of the first connecting plate 71 is connected with the third driving mechanism 72, and the other side is connected with the first tray.

[0113] The third driving mechanism 72 is a pneumatic cylinder.

[0114] In some embodiments, the lifting mechanism 70 is located between the two side walls of the conveying mechanism 80.

[0115] In some embodiments, as shown in Figure 4 The WIFI chip feeding device 1 further comprises a workbench 100, the conveying mechanism 80 is arranged on the workbench 100, the third driving mechanism 72 is partially accommodated in the workbench 100, a plurality of first mounting holes are arranged on the workbench 100, and the third driving mechanism 72 is connected with the first connecting plate 71 through the first mounting holes.

[0116] In some embodiments, as shown in Figure 10 The WIFI chip feeding device 1 further comprises a third blocking push plate 101, a fourth blocking push plate 102, a fourth driving mechanism 103, a fifth driving mechanism 104, a third supporting plate 105 and a fourth supporting plate 106, the third blocking push plate 101 is connected with the fourth driving mechanism 103, the fourth blocking push plate 102 is connected with the fifth driving mechanism 104, the fourth driving mechanism 103 is connected with the hopper 90 through the third supporting plate 105, and the fifth driving mechanism 104 is connected with the hopper 90 through the fourth supporting plate 106; the hopper 90 further comprises a plurality of adjusting pieces 95, each adjusting piece 95 is hingedly connected with a corresponding side plate assembly; and the lifting mechanism 70 further comprises a connecting assembly, one end of the connecting assembly is connected with the third driving mechanism 72, and the other end is engagedly connected with each adjusting piece 95.

[0117] Each adjusting piece 95 is installed at a position of a corresponding side plate assembly, which can be seen from a position of a dashed oval in Figure 10 , that is, a region marked as B.

[0118] It should be noted that the third blocking push plate 101 and the fourth blocking push plate 102 are both in the shape of a "N" character.

[0119] The third blocking push plate 101 comprises an eleventh blocking block, a twelfth blocking block and a thirteenth blocking block, one end of the eleventh blocking block is a ninth insertion end, the other end is fixedly connected with one side of the twelfth blocking block, the other side of the twelfth blocking block is fixedly connected with one end of the thirteenth blocking block, the other end of the thirteenth blocking block is a tenth insertion end, and the fourth driving mechanism 103 is connected with the twelfth blocking block. The structure of the third blocking push plate 101 is the same as that of the first blocking push plate 10, and thus, the structure of the third blocking push plate 101 can be referred to Figure 2 .

[0120] The fourth driving mechanism 103 comprises a third driving member, a third connecting member, a fifth sliding rail, a fifth sliding block, a sixth sliding rail and a sixth sliding block. One side of the third connecting member is connected with the third driving member, and the other side is fixedly connected with the twelfth blocking block. The fifth sliding rail and the sixth sliding rail are arranged on the two sides of the third supporting plate 105 respectively. One side of the fifth sliding block is in sliding connection with the fifth sliding rail, and the other side is fixedly connected with the twelfth blocking block. One side of the sixth sliding block is in sliding connection with the sixth sliding rail, and the other side is fixedly connected with the twelfth blocking block. The third driving member is fixedly connected with the third supporting plate 105. The third driving member is a cylinder. The third connecting member is in the shape of an L letter. The structure of the fourth driving mechanism 103 is the same as that of the first driving mechanism 30, and therefore, the structure of the fourth driving mechanism 103 can be referred to Figure 4 as shown in the drawings.

[0121] The fourth blocking push plate 102 comprises a fourteenth blocking block, a fifteenth blocking block and a sixteenth blocking block. One end of the fourteenth blocking block is an eleventh insertion end, and the other end is connected with one side of the fifteenth blocking block. The other side of the fifteenth blocking block is connected with one end of the sixteenth blocking block. The other end of the sixteenth blocking block is a twelfth insertion end. The fifth driving mechanism 104 is connected with the fifteenth blocking block. The structure of the fourth blocking push plate 102 is the same as that of the first blocking push plate 10, and therefore, the structure of the fourth blocking push plate 102 can be referred to Figure 2 as shown in the drawings.

[0122] The fifth driving mechanism 104 comprises a fourth driving member, a fourth connecting member, a seventh sliding rail, a seventh sliding block, an eighth sliding rail and an eighth sliding block. One side of the fourth connecting member is connected with the fourth driving member, and the other side is fixedly connected with the fifteenth blocking block. The seventh sliding rail and the eighth sliding rail are arranged on the two sides of the fourth supporting plate 106 respectively. One side of the seventh sliding block is in sliding connection with the seventh sliding rail, and the other side is fixedly connected with the fifteenth blocking block. One side of the eighth sliding block is in sliding connection with the eighth sliding rail, and the other side is fixedly connected with the fifteenth blocking block. The fourth driving member is fixedly connected with the fourth supporting plate 106. The fourth driving member is a cylinder. The fourth connecting member is in the shape of an L letter. The structure of the fifth driving mechanism 104 is the same as that of the first driving mechanism 30, and therefore, the structure of the fifth driving mechanism 104 can be referred to Figure 4 as shown in the drawings.

[0123] The third support plate 105 comprises a seventh support part, an eighth support part and a ninth support part, one end of the eighth support part is integrally formed with the seventh support part, and the other end is integrally formed with the ninth support part. The third driving member is fixedly connected with the seventh support part, the fifth sliding rail and the sixth sliding rail are fixedly connected with the eighth support part, and the ninth support part is fixedly connected with the hopper 90. The structure of the third support plate 105 is the same as that of the first support plate 50, and therefore, the structure of the third support plate 105 can be referred to as shown in Figure 5 .

[0124] The fourth support plate 106 comprises a tenth support part, an eleventh support part and a twelfth support part, one end of the eleventh support part is integrally formed with the tenth support part, and the other end is integrally formed with the twelfth support part. The fourth driving member is fixedly connected with the eleventh support part, the seventh sliding rail and the eighth sliding rail are fixedly connected with the eleventh support part, and the twelfth support part is fixedly connected with the hopper 90. The structure of the fourth support plate 106 is the same as that of the first support plate 50, and therefore, the structure of the fourth support plate 106 can be referred to as shown in Figure 5 .

[0125] In the embodiments of the present application, the WIFI chip feeding device 1 is additionally provided with a third blocking push plate 101, a fourth blocking push plate 102, a fourth driving mechanism 103, a fifth driving mechanism 104, a third support plate 105 and a fourth support plate 106, so that the hopper 90 of the present application can be divided into two layers of storage space, that is, the first layer of storage space is supported by the first blocking push plate 10 and the second blocking push plate 20, and the second layer of storage space is supported by the third blocking push plate 101 and the fourth blocking push plate 102. The specific structure can be referred to as shown in Figure 10 . The purpose of dividing the hopper 90 into two layers of storage space is to reduce the weight burden of the first blocking push plate 10 and the second blocking push plate 20. If there are too many trays A in the hopper 90, the weight will be relatively heavy, and the first blocking push plate 10 and the second blocking push plate 20 cannot bear such weight, which will cause the first blocking push plate 10 and the second blocking push plate 20 to be folded by the trays A, so that the hopper 90 cannot store the trays A, and the feeding operation of the device cannot continue.

[0126] In some embodiments, as Figure 11 and Figure 12As shown, the connecting assembly comprises a second connecting plate 73, a plurality of third connecting plates 74, a plurality of connecting pieces 75 and a plurality of rotating members 76, the second connecting plate 73 is connected with the third driving mechanism 72, one end of each of the third connecting plates 74 is connected with the second connecting plate 73, and the other end is provided with a tooth portion 741, one side of each of the connecting pieces 75 is connected with the corresponding third connecting plate 74, and the other side is connected with the corresponding rotating member 76, each of the rotating members 76 is engagedly connected with the corresponding tooth portion 741, and each of the rotating members 76 is engagedly connected with the corresponding adjusting piece 95.

[0127] The second connecting plate 73 is parallel to the first connecting plate 71 and located below the first connecting plate 71. The second connecting plate 73 is in the shape of a cuboid.

[0128] The number of the third connecting plates 74 is four, which are arranged at four corner regions of the second connecting plate 73.

[0129] The number of the connecting pieces 75 is the same as that of the third connecting plates 74.

[0130] The number of the rotating members 76 is the same as that of the third connecting plates 74. The rotating members 76 are gears. One side of each of the rotating members 76 is engagedly connected with the corresponding tooth portion 741, and the other side is engagedly connected with the corresponding adjusting piece 95.

[0131] In actual application, the operation of the WIFI chip feeding device 1 can be realized as follows:

[0132] Before the WIFI chip feeding device 1 is started, the first blocking push plate 10 and the second blocking push plate 20 support the first tray of the first layer storage space (the lowest tray A in the first layer storage space) in the material bin 90, and the third blocking push plate 101 and the fourth blocking push plate 102 support the first tray of the second layer storage space (the lowest tray A in the second layer storage space) in the material bin 90. Each of the adjusting pieces 95 is parallel to the corresponding side plate assembly and located outside the first layer storage space.

[0133] When the WIFI chip feeding device 1 is started, the third driving mechanism 72 drives the first connecting plate 71 to move towards the discharge port of the hopper 90 until the first connecting plate 71 is connected with the first tray in the first layer of storage space; at the same time, the third driving mechanism 72 drives the second connecting plate 73 to move towards the feeding port of the hopper 90, and the second connecting plate 73 drives all the third connecting plates 74 to move towards the feeding port of the hopper 90, so that each third connecting plate 74 drives the corresponding rotating member 76 to rotate, and each rotating member 76 drives the corresponding adjusting piece 95 to rotate towards the feeding port, when the first connecting plate 71 is connected with the first tray in the first layer of storage space, each adjusting piece 95 is connected with the first tray in the second layer of storage space, at this time, all the adjusting pieces 95 are combined for use, which can prevent all the trays A in the second layer of storage space from sliding down to the first layer of storage space.

[0134] Then, the lifting mechanism 70 stops moving, the first driving mechanism 30 drives the first blocking push plate 10 to move away from the first tray of the first layer of storage space, the second driving mechanism 40 drives the second blocking push plate 20 to move away from the first tray of the first layer of storage space, the fourth driving mechanism 103 drives the third blocking push plate 101 to move away from the first tray of the second layer of storage space, and the fifth driving mechanism 104 drives the fourth blocking push plate 102 to move away from the first tray of the second layer of storage space, until the first blocking push plate 10 and the second blocking push plate 20 exit the first layer of storage space, and the third blocking push plate 101 and the fourth blocking push plate 102 exit the second layer of storage space.

[0135] Then, the third driving mechanism 72 drives the first connecting plate 71 to move downwards (the orientation please refer to Figure 4 ), and the moving distance is the same as the height of one tray A; at the same time, the third driving mechanism 72 drives the second connecting plate 73 to move downwards (the orientation please refer to Figure 10 ), and the second connecting plate 73 drives all the third connecting plates 74 to move downwards, so that each third connecting plate 74 drives the corresponding rotating member 76 to rotate, and each rotating member 76 drives the corresponding adjusting piece 95 to rotate downwards, so that all the adjusting pieces 95 can support all the trays A in the second layer of storage space to move downwards by the height of one tray A.

[0136] Then, the lifting mechanism 70 stops moving, the first driving mechanism 30 drives the first blocking push plate 10 to insert into the first and second notches A1 and A2 of the second tray in the first layer storage space, the second driving mechanism 40 drives the second blocking push plate 20 to insert into the third and fourth notches A3 and A4 of the second tray in the first layer storage space, the fourth driving mechanism 103 drives the third blocking push plate 101 to insert into the first and second notches A1 and A2 of the second tray in the second layer storage space, and the fifth driving mechanism 104 drives the fourth blocking push plate 102 to insert into the third and fourth notches A3 and A4 of the second tray in the second layer storage space. At this time, the first connecting plate 71 only supports the first tray in the first layer storage space, and all the adjusting members 95 jointly only support the first tray in the second layer storage space.

[0137] Then, the third driving mechanism 72 drives the first connecting plate 71 to move downward (for the orientation, please refer to Figure 4 ) to move the first tray in the first layer storage space to the conveying mechanism 80; at the same time, the third driving mechanism 72 drives the second connecting plate 73 to move downward (for the orientation, please refer to Figure 10 ), and the second connecting plate 73 drives all the third connecting plates 74 to move downward, so that each third connecting plate 74 drives the corresponding rotating member 76 to rotate, and each rotating member 76 drives the corresponding adjusting member 95 to rotate downward, so that the first tray in the second layer storage space can slowly slide into the first layer storage space along with the rotation of the adjusting member 95.

[0138] Although the embodiments of the present application have been disclosed as above, it is not limited to the application listed in the specification and the embodiments, and can be fully applied to various fields suitable for the present application, and other modifications can be easily realized by those skilled in the art, and therefore the present application is not limited to specific details and the figures shown and described herein, without departing from the general concept defined by the claims and the equivalent scope.

Claims

1. A WIFI chip loading device, characterized in that, The application relates to a WIFI chip feeding device. The first blocking push plate comprises a first blocking block, a second blocking block and a third blocking block, one end of the first blocking block is a first insertion end, the other end is connected with one side of the second blocking block, the other side of the second blocking block is connected with one end of the third blocking block, the other end of the third blocking block is a second insertion end, and the first driving mechanism is connected with the second blocking block. The second blocking push plate comprises a fourth blocking block, a fifth blocking block and a sixth blocking block, one end of the fourth blocking block is a third insertion end, the other end is connected with one side of the fifth blocking block, the other side of the fifth blocking block is connected with one end of the sixth blocking block, the other end of the sixth blocking block is a fourth insertion end, and the second driving mechanism is connected with the fifth blocking block. The first driving mechanism is connected with one side of the conveying mechanism through the first supporting plate, and the second driving mechanism is connected with the other side of the conveying mechanism through the second supporting plate. The material bin is fixedly connected with the conveying mechanism and is arranged at the top end of the conveying mechanism. The lifting mechanism is arranged below the material bin. When the WIFI chip feeding device is started, the lifting mechanism moves towards the discharge port of the material bin until the lifting mechanism is connected with the first tray in the material bin. When the lifting mechanism is connected with the first tray, the first driving mechanism drives the first blocking push plate to move towards the material bin, the second driving mechanism drives the second blocking push plate to move towards the material bin, until the first insertion end is inserted into the first clamping port of the second tray in the material bin, the second insertion end is inserted into the second clamping port of the second tray in the material bin, the third insertion end is inserted into the third clamping port of the second tray in the material bin, and the fourth insertion end is inserted into the fourth clamping port of the second tray in the material bin. When each insertion end is inserted into the corresponding clamping port, the lifting mechanism drives the first tray to move to the conveying mechanism. The material bin is surrounded by a plurality of side plate assemblies. The lifting mechanism comprises a first connecting plate and a third driving mechanism. The WIFI chip feeding device further comprises a third blocking push plate, a fourth blocking push plate, a fourth driving mechanism, a fifth driving mechanism, a third supporting plate and a fourth supporting plate, the third blocking push plate is connected with the fourth driving mechanism, the fourth blocking push plate is connected with the fifth driving mechanism, the fourth driving mechanism is connected with the material bin through the third supporting plate, and the fifth driving mechanism is connected with the material bin through the fourth supporting plate. The material bin further comprises a plurality of adjusting pieces, each adjusting piece is hingedly connected with a corresponding side plate assembly. The lifting mechanism further comprises a connecting assembly, one end of the connecting assembly is connected with the third driving mechanism, and the other end is engagedly connected with each adjusting piece. The connecting assembly comprises a second connecting plate, a plurality of third connecting plates, a plurality of connecting pieces and a plurality of rotating members. ​ The second connecting plate is connected with the third driving mechanism, one end of each of the third connecting plates is connected with the second connecting plate, and the other end is provided with a tooth portion, one side of each of the connecting pieces is connected with the corresponding third connecting plate, the other side is connected with the corresponding rotating member, each of the rotating members is in meshing connection with the corresponding tooth portion, and each of the rotating members is in meshing connection with the corresponding adjusting piece.

2. The on-chip loading device of claim 1, wherein, The first blocking push plate further comprises a seventh blocking block and an eighth blocking block, one end of the seventh blocking block is connected with the first insertion end, and the other end is a fifth insertion end, one end of the eighth blocking block is connected with the second insertion end, and the other end is a sixth insertion end; The second blocking push plate further comprises a ninth blocking block and a tenth blocking block, one end of the ninth blocking block is connected with the third insertion end, and the other end is a seventh insertion end, one end of the tenth blocking block is connected with the fourth insertion end, and the other end is an eighth insertion end; When the lifting mechanism is connected with the first tray, the first driving mechanism drives the first blocking push plate to move towards the stock bin, the second driving mechanism drives the second blocking push plate to move towards the stock bin, until the fifth insertion end is inserted into the first clamping opening of the second tray in the stock bin, the sixth insertion end is inserted into the second clamping opening of the second tray in the stock bin, the seventh insertion end is inserted into the third clamping opening of the second tray in the stock bin, and the eighth insertion end is inserted into the fourth clamping opening of the second tray in the stock bin.

3. The on-chip material loading device of claim 2, wherein, The height of the seventh blocking block is less than that of the first blocking block, the height of the eighth blocking block is less than that of the third blocking block, the height of the ninth blocking block is less than that of the fourth blocking block, and the height of the tenth blocking block is less than that of the sixth blocking block.

4. The on-chip material loading device of claim 3, wherein, The opening of the stock bin close to the conveying mechanism is the discharge opening, and the opening away from the conveying mechanism is the feeding opening of the stock bin.

5. The on-chip material loading device of claim 4, wherein, The first connecting plate is connected with the third driving mechanism; When the lifting mechanism is connected with the first tray, one side of the first connecting plate is connected with the third driving mechanism, and the other side is connected with the first tray.

6. The on-chip material loading device of claim 5, wherein, The lifting mechanism is located between the two side walls of the conveying mechanism.

7. The on-chip material loading device of claim 6, wherein, The WIFI chip feeding device further comprises a workbench, the conveying mechanism is arranged on the workbench, the third driving mechanism is partially accommodated in the workbench, a plurality of first mounting holes are arranged on the workbench, and the third driving mechanism passes through the first mounting holes and is connected with the first connecting plate.

8. The on-chip material loading device of claim 7, wherein, The third blocking push plate comprises an eleventh blocking block, a twelfth blocking block and a thirteenth blocking block, one end of the eleventh blocking block is a ninth insertion end, the other end is connected with one side of the twelfth blocking block, the other side of the twelfth blocking block is connected with one end of the thirteenth blocking block, the other end of the thirteenth blocking block is a tenth insertion end, and the fourth driving mechanism is connected with the twelfth blocking block; The fourth blocking push plate is provided with a fourteenth blocking block, a fifteenth blocking block and a sixteenth blocking block. The fourteenth blocking block has one end being an eleventh insertion end and the other end being connected with one side of the fifteenth blocking block.

Citation Information

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