Mobile phone card tray PIN-separating blanking and collecting device

The design of the guide seat and the receiving box solves the problem of card trays splashing and mixing when falling into the receiving box, thus achieving precise PIN sorting and collection of card trays.

CN224128455UActive Publication Date: 2026-04-17TONGDA (SHISHI) PRECISION TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TONGDA (SHISHI) PRECISION TECH CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Card trays are prone to spilling and mixing when falling into the receiving box, and existing PIN sorting devices cannot effectively distinguish and collect card trays of different sizes.

Method used

A PIN-separated feeding and collection device for mobile phone SIM card trays was designed. It adopts a guide seat and a container structure. The guide seat is provided with an inclined guide channel that is aligned and connected with the container. The upper end of the guide seat is supported on the output end of the conveying pipe. The guide channel and the container correspond one-to-one. The guide channel is provided with a partition structure to prevent the SIM card tray from splashing out and mixing.

Benefits of technology

This ensures that the card tray accurately falls into the corresponding container, avoiding spillage and mixing, and improving the accuracy and quality of PIN sorting.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224128455U_ABST
    Figure CN224128455U_ABST
Patent Text Reader

Abstract

The utility model discloses a mobile phone card tray separate PIN blanking and collecting device, which comprises a base, a guide seat and a plurality of accommodating boxes, one side of the base is provided with a moving groove, the accommodating boxes can be transversely arranged in the moving groove and can horizontally move out of the base, the guide seat is positioned above the base, and the guide seat is positioned above the base. The guide seat is provided with a plurality of material guide channels which are provided with two open ends and inclined upwards, the upper ends of the material guide channels are connected with the conveying pipe in a bearing mode, the lower ends of the material guide channels are communicated with the containing boxes in a one-to-one alignment mode, and a separation structure extending into the space between the two containing boxes is formed in the position, between every two material guide channels, of the guide seat. The upper end of the guide seat is positioned outside the material guide channels and is provided with a connecting structure which is propped against the conveying pipes and enables the material guide channels to be communicated with the conveying pipes in a one-to-one alignment manner; compared with the prior art, the material guiding channel enables only the upper end of the guiding seat to be open and to be connected below the conveying pipe, so that the card supports are not easy to splash out from the outer side of the guiding seat when falling, and the card supports of different specifications can fall into the accommodating boxes in a one-to-one correspondence manner.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of mobile phone component manufacturing, and in particular to a mobile phone SIM card tray PIN feeding and collecting device. Background Technology

[0002] During the processing of card trays, the metal material is usually first cut into strips, and then the required card tray pin structure is punched out in a punch press. At this time, some excess material is left so that the card tray pins can be connected to each other, which is the card tray pin strip. Subsequent inspection of the card trays requires PIN sorting of the PIN material strip. Since the card trays may have different models or be defective, they are divided into four specifications: qualified PIN1, PIN2, PIN3, and unqualified NG. Traditionally, PIN sorting is done manually, but manual sorting of PIN1, PIN2, and PIN3 is prone to mixing due to small dimensional deviations during production, or the inability to distinguish defective products, severely impacting card tray quality. Therefore, the current PIN sorting method utilizes a PIN sorting device to automatically separate the processed card trays into four specifications: PIN1, PIN2, PIN3, and unqualified NG. The PIN sorting device has four conveyor channels at its output end, each connecting to an open-ended conveyor pipe. These four conveyor pipes are arranged horizontally in sequence, and each conveyor pipe's output end is connected to a receiving box into which the card trays of each specification fall. The receiving box is a hollow box with an open top. In application, the PIN sorting device automatically sorts the card trays into four specifications: PIN1, PIN2, PIN3, and NG (non-conforming) card trays, and outputs them from the conveying pipes, which then fall into the corresponding receiving boxes.

[0003] However, when the cartridge falls from the delivery pipe into the container, it is easy for it to splash out of the container; in addition, since the containers are placed close together, the cartridge may fall into the wrong container, resulting in mixing.

[0004] In view of this, the inventors of this case conducted in-depth research on the problem, which led to the creation of this case. Utility Model Content

[0005] The purpose of this invention is to provide a PIN-separated SIM card tray feeding and collection device to solve the problems of easy spillage and possible mixing of SIM card trays when they fall into the container.

[0006] To achieve its purpose, this utility model adopts the following technical solution:

[0007] A SIM card tray PIN-separated feeding and collecting device includes several accommodating boxes and an mounting box. The mounting box has a base and a guide seat. One side of the base has a moving groove for the accommodating boxes to be arranged horizontally inside and to move horizontally out of the base. The direction of the horizontal arrangement of the accommodating boxes is perpendicular to the direction of their horizontal movement. The guide seat is located above the base and has several open-ended guide channels. The guide channels are inclined upwards and their upper ends are connected to a conveying pipe. The lower ends of each guide channel are aligned and connected to each accommodating box. A partition structure is formed between two guide channels on the guide seat, extending into the space between two accommodating boxes. The upper end of the guide seat, outside the guide channels, has a connecting structure that supports the output end of the conveying pipe and connects each guide channel to each conveying pipe.

[0008] With the horizontal arrangement of each accommodating box as the front-back direction, there are four accommodating boxes and four corresponding material guide channels. The base is a strip-shaped seat that is open on the right side and extends in the front-back direction. The guide seat is connected to the right end of the top surface of the base and is inclined upward from right to left.

[0009] The base has an upper sealing plate, connecting rods, and a lower base plate. Both the lower base plate and the upper sealing plate are rectangular structures extending in the front-back direction. The upper sealing plate is suspended above the left end of the lower base plate, and the left end of the upper sealing plate and the left end of the lower base plate are connected by connecting rods. Several connecting rods are provided, and each connecting rod is spaced apart in the front-back direction of the lower base plate. The right side of the lower base plate is recessed with four sliding grooves for the accommodating box to slide within. The four sliding grooves extend in the left-right direction and are spaced apart in the front-back direction. The sliding grooves are located outside the right side of the connecting rods. The upper sealing plate is stacked above the left end of the accommodating box. The hollow space formed by the upper sealing plate, connecting rods, and lower base plate is the aforementioned sliding groove.

[0010] The guide seat has a lower guide plate, an upper cover plate, and an inclined guide plate. The lower guide plate is inclined upward from right to left, and its lower end is connected to the right end of the upper cover plate. Five inclined guide plates are provided on the lower guide plate, which are inclined upward from right to left. The five inclined guide plates are spaced apart in the front-back direction, and the two inclined guide plates at the front and back are side uprights. The bottom surface of the side uprights is flush with the top surface of the upper cover plate. The bottom surfaces of the two side uprights are respectively provided with side vertical plates that are erected on the front and rear sides of the right end top surface of the lower base plate. Each sliding groove is located between the two side vertical plates. The upper cover plate is placed on top of each inclined guide plate and is parallel to the lower guide plate. The hollow cavity formed between two adjacent inclined guide plates and between the lower guide plate and the upper cover plate is the material guiding channel. The opposite side of the two opposing inclined guide plates is recessed with an insertion groove for the upper end of the accommodating box to be embedded in.

[0011] The top cover is a transparent cover.

[0012] A partition strip is formed between each pair of adjacent sliding grooves. The bottom surface of the inclined guide plate, excluding the two side uprights, is provided with partition blocks that extend into each pair of adjacent receiving boxes and are positioned opposite to the partition strip. The partition blocks are the partition structure described above.

[0013] The accommodating box includes a first side plate, a second side plate, and a bottom plate. There are two first side plates and two second side plates. The two first side plates are arranged opposite each other and spaced apart. The first side plate on the right side abuts against the bottom right end of the top cover plate and is transparent. The two second side plates are arranged opposite each other and spaced apart. The two first side plates and the two second side plates form a square space that runs vertically through the box. The two first side plates and the two second side plates are erected on the top surface of the bottom plate and the bottom plate blocks the lower opening of the square space. The bottom plate is located in a sliding groove. The top surface of the second side plate has a protruding block that extends into the extension groove and is embedded in the extension groove.

[0014] The left end of the inclined guide plate has a connecting block that protrudes to the left and extends in the left-right direction. The left end of the connecting block has a top-holding groove that runs through the top and bottom and supports the conveying pipe. The top-holding groove and the connecting block constitute the above-mentioned connecting structure.

[0015] This novel SIM card tray PIN-separated feeding and collecting device utilizes a connecting structure to hold the upper end of the guide seat against the output end of the conveying pipe, ensuring that each guide channel is aligned with the output end of the conveying pipe. SIM card trays of various specifications can be guided through the guide channels to their corresponding receiving boxes. Compared to existing technologies, the guide channels allow only the upper end of the guide seat to be open and supported below the conveying pipe, preventing the SIM card trays from splashing out from the outside of the guide seat during descent. This ensures that SIM card trays of different specifications can fall into their corresponding receiving boxes. Furthermore, the separating structure between adjacent receiving boxes prevents falling SIM card trays from falling into other receiving boxes, thus avoiding material mixing. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model.

[0017] Figure 2 This is a schematic diagram of the structure of the base of this utility model.

[0018] Figure 3 This is a schematic diagram of the structure of the guide seat of this utility model.

[0019] Figure 4 This is a schematic diagram of the structure of this utility model, omitting the guide seat. Detailed Implementation

[0020] To further explain the technical solution of this utility model, a detailed description is provided below in conjunction with the accompanying drawings.

[0021] A SIM card tray PIN dispensing and collection device, such as Figures 1-4 As shown, the device includes a mounting box and several accommodating boxes 1. The mounting box has a base 2 and a guide seat 3. One side of the base 2 has a moving groove 100 for each accommodating box 1 to be arranged laterally inside and to be able to move horizontally out of the base 2. The direction of the lateral arrangement of each accommodating box 1 is perpendicular to the direction of horizontal movement of the accommodating box 1. Specifically, with the lateral arrangement of each accommodating box 1 as the front-back direction, there are four accommodating boxes 1. The base 2 is a strip-shaped seat that is open on the right side and extends in the front-back direction. The base 2 has an upper sealing plate 21, a connecting rod 22, and a lower base plate 23. The lower base plate 23 and the upper sealing plate 21 are both rectangular structures that extend in the front-back direction. The upper sealing plate 21 is suspended above the left end of the lower base plate 23, that is, the right side of the upper sealing plate 21. There is an installation gap between the side and the right side of the lower base plate 23. The left end of the upper sealing plate 21 and the left end of the lower base plate 23 are connected by connecting rods 22. There are three connecting rods 22, which are vertically arranged and spaced apart along the front-back direction of the lower base plate 23. The right side of the lower base plate 23 is recessed with four sliding grooves 200 for the housing 1 to slide in. The four sliding grooves 200 extend in the left-right direction and are spaced apart in the front-back direction. The sliding grooves 200 are located outside the right side of the connecting rods 22 and are within the range of the moving groove 100. The upper sealing plate 21 is stacked on top of the left end of the housing 1. The hollow space formed by the upper sealing plate 21, the connecting rods 22 and the lower base plate 23 is the moving groove 100. In use, the four housing 1 are placed in the moving groove 100 and fall into the four sliding grooves 200 one by one.

[0022] The guide seat 3 is located above the base 2. The guide seat 3 has several open-ended material guide channels. These channels are inclined upwards, and their upper ends connect to the conveying pipe. The lower ends of each material guide channel are aligned and connected to each receiving box 1. Specifically, there are four material guide channels. The guide seat 3 is connected to the right end of the top surface of the base 2, and it is inclined upwards from right to left. The guide seat 3 has a lower guide plate 31, an upper cover plate 32, and an inclined guide plate 33. The lower guide plate 31 is inclined upwards from right to left, and its lower end connects to the right end of the upper sealing plate 21. The lower guide plate 31 has five inclined guide channels from right to left. The inclined guide plates 33 are arranged at an angle, with five inclined guide plates 33 spaced apart in the front-to-back direction. The foremost and rearmost inclined guide plates 33 are side uprights, with the bottom surface of the side uprights flush with the top surface of the upper sealing plate 21. The bottom surfaces of the two side uprights are provided with side vertical plates 331, which are respectively erected on the front and rear sides of the right end top surface of the lower bottom plate 23. Each sliding groove 200 is located between the two side vertical plates 331. The upper cover plate 32 is placed above each inclined guide plate 33 and is arranged parallel to the lower guide plate 31. The upper cover plate 32 is a transparent cover plate. The hollow cavity formed between two adjacent inclined guide plates 33 and between the lower guide plate 31 and the upper cover plate 32 is the material guiding channel. In application, the device is divided into four guide channels by five inclined guide plates, allowing card trays of various specifications to fall one by one from each guide channel. Moreover, the lower guide plate 31 guides the card trays, enabling them to slide into the corresponding receiving box 1. The upper cover 32 prevents the card trays from splashing out of the receiving box 1 when they fall into it. Furthermore, the upper cover 32 is a transparent cover, allowing for better observation of the card trays inside the receiving box 1.

[0023] The guide seat 3 has a partition structure extending between the two receiving boxes 1, located between the two material guide channels. Specifically, a partition strip 4 is formed between two adjacent sliding grooves 200, and the bottom surface of the three inclined guide plates 33 in the middle is provided with partition blocks 5 that extend between the two adjacent receiving boxes 1 and are positioned opposite to the partition strip 4. The partition blocks 5 are the aforementioned partition structure. In application, the two adjacent receiving boxes 1 are separated by the partition blocks 5, so that when the card tray falls into the corresponding receiving box 1, it will not splash out into its adjacent receiving box 1, allowing card trays of different sizes to fall into their corresponding receiving boxes 1.

[0024] The upper end of the guide seat 3, located outside the material guide channel, is equipped with a connecting structure that supports the output end of the conveying pipe and connects each material guide channel with each conveying pipe in a one-to-one correspondence. Specifically, the left end of the inclined guide plate 33 has a connecting block extending in the left-right direction protruding to the left. The left end of the connecting block has a top-holding groove that runs vertically through and supports the conveying pipe. The top-holding groove and the connecting block constitute the aforementioned connecting structure. The top-holding groove on the three inclined guide plates 33 in the middle is a vertically through groove that is open on the left side. The top-holding grooves on the two side uprights are vertically through grooves that are open on the left side and open on the side opposite to the material guide channel. In application, the four conveying pipes are arranged horizontally in sequence, so that the opposite sides of two adjacent conveying pipes are close together. The bottom of the groove supports the end faces of two adjacent conveying pipes, and the inner wall of the groove fits against the inner side wall of the two conveying pipes at the very end. The connection structure allows each material guide channel to correspond to the bottom of each conveying pipe, which is beneficial for accurate material feeding.

[0025] This novel SIM card tray PIN-separated feeding and collecting device utilizes a connecting structure to hold the upper end of the guide seat 3 against the output end of the conveying pipe. This ensures that each guide channel is aligned with the output end of the conveying pipe, allowing SIM card trays of various sizes to be guided into their corresponding receiving boxes. Compared to existing technologies, the guide channel design allows only the upper end of the guide seat to be open and supported below the conveying pipe, preventing SIM card trays from splashing out from the outside of the guide seat during descent. This ensures that SIM card trays of different sizes fall into their corresponding receiving boxes. Furthermore, the partitions between adjacent receiving boxes prevent SIM card trays from falling into other boxes, thus avoiding material mixing.

[0026] In this invention, preferably, the accommodating box 1 includes a first side plate 11, a second side plate 12, and a bottom plate 13. Two first side plates 11 and two second side plates 12 are provided. The two first side plates 11 are arranged alternately on the left and right sides. The top surface of the first side plate 11 on the right side abuts against the bottom surface of the right end of the upper cover plate 32, and the first side plate 11 on the right side is a transparent side plate. The two second side plates 12 are arranged alternately on the front and back sides, forming a vertically penetrating square space. The two first side plates 11 and two second side plates 12 are vertically mounted on the bottom plate 13. On the top surface, and with the bottom plate 13 sealing the lower opening of the square space, the bottom plate 13 is located within the sliding groove 200. Two opposing inclined guide plates 33 have recessed insertion grooves 300 on their opposite sides for the upper end of the accommodating box 1 to be embedded within. The insertion groove 300 on the three inclined guide plates in the middle extends to the bottom surface of the partition block 5, and the insertion grooves 300 on the two inclined blocks on the front and rear sides extend to the bottom surface of the two side vertical plates 331. The top surface of the second side plate 12 has a protruding insertion block 121 that extends into and is embedded within the insertion groove 300. In application, the transparent side plate allows observation of the state of the accommodating box 1 from the side. Furthermore, the insertion block 121 and the insertion groove 300 ensure that the accommodating box 1 can be completely locked in its corresponding position, preventing displacement.

[0027] The product form of this utility model is not limited to the illustrations and embodiments in this case. Any appropriate changes or modifications made to it based on similar ideas should be considered as not departing from the patent scope of this utility model.

Claims

1. A mobile phone card holder PIN cutting and collecting device, comprising a plurality of containing boxes, characterized in that: It also includes an installation box, which has a base and a guide seat. One side of the base has a moving groove for the accommodating boxes to be arranged horizontally inside and can move horizontally out of the base. The direction of the horizontal arrangement of the accommodating boxes is perpendicular to the direction of the horizontal movement of the accommodating boxes. The guide seat is located above the base and has several open material guide channels on the guide seat. The material guide channels are inclined upward and the upper end of the material guide channels is connected to the conveying pipe. The lower end of each material guide channel is connected to each accommodating box in a one-to-one correspondence. A partition structure is formed between two material guide channels on the guide seat, extending into the space between two accommodating boxes. The upper end of the guide seat is located outside the material guide channels and has a connecting structure that supports the output end of the conveying pipe and connects each material guide channel to each conveying pipe in a one-to-one correspondence.

2. The mobile card holder PIN cutting and collecting device according to claim 1, characterized in that: With the horizontal arrangement of each accommodating box as the front-back direction, there are four accommodating boxes and four corresponding material guide channels. The base is a strip-shaped seat that is open on the right side and extends in the front-back direction. The guide seat is connected to the right end of the top surface of the base and is inclined upward from right to left.

3. The mobile card holder PIN cutting and collecting device according to claim 2, characterized in that: The base has an upper sealing plate, connecting rods, and a lower base plate. Both the lower base plate and the upper sealing plate are rectangular structures extending in the front-back direction. The upper sealing plate is suspended above the left end of the lower base plate, and the left end of the upper sealing plate and the left end of the lower base plate are connected by connecting rods. Several connecting rods are provided, and each connecting rod is spaced apart in the front-back direction of the lower base plate. The right side of the lower base plate is recessed with four sliding grooves for the accommodating box to slide within. The four sliding grooves extend in the left-right direction and are spaced apart in the front-back direction. The sliding grooves are located outside the right side of the connecting rods. The upper sealing plate is stacked above the left end of the accommodating box. The hollow space formed by the upper sealing plate, connecting rods, and lower base plate is the aforementioned sliding groove.

4. The mobile card holder PIN cutting and collecting device according to claim 3, characterized in that: The guide seat has a lower guide plate, an upper cover plate, and an inclined guide plate. The lower guide plate is inclined upward from right to left, and its lower end is connected to the right end of the upper cover plate. Five inclined guide plates are provided on the lower guide plate, which are inclined upward from right to left. The five inclined guide plates are spaced apart in the front-back direction, and the two inclined guide plates at the front and back are side uprights. The bottom surface of the side uprights is flush with the top surface of the upper cover plate. The bottom surfaces of the two side uprights are respectively provided with side vertical plates that are erected on the front and rear sides of the right end top surface of the lower base plate. Each sliding groove is located between the two side vertical plates. The upper cover plate is placed on top of each inclined guide plate and is parallel to the lower guide plate. The hollow cavity formed between two adjacent inclined guide plates and between the lower guide plate and the upper cover plate is the material guiding channel. The opposite side of the two opposing inclined guide plates is recessed with an insertion groove for the upper end of the accommodating box to be embedded in.

5. The mobile card holder PIN cutting and collecting device according to claim 4, characterized in that: The top cover is a transparent cover.

6. The mobile card holder PIN cutting and collecting device according to claim 4, characterized in that: A partition strip is formed between each pair of adjacent sliding grooves. The bottom surface of the inclined guide plate, excluding the two side uprights, is provided with partition blocks that extend into each pair of adjacent receiving boxes and are positioned opposite to the partition strip. The partition blocks are the partition structure described above.

7. The mobile card holder PIN cutting and collecting device according to claim 6, characterized in that: The accommodating box includes a first side plate, a second side plate, and a bottom plate. There are two first side plates and two second side plates. The two first side plates are arranged opposite each other and spaced apart. The first side plate on the right side abuts against the bottom right end of the top cover plate and is transparent. The two second side plates are arranged opposite each other and spaced apart. The two first side plates and the two second side plates form a square space that runs vertically through the box. The two first side plates and the two second side plates are erected on the top surface of the bottom plate and the bottom plate blocks the lower opening of the square space. The bottom plate is located in a sliding groove. The top surface of the second side plate has a protruding block that extends into the extension groove and is embedded in the extension groove.

8. The mobile card holder PIN cutting and collecting device according to claim 4, characterized in that: The left end of the inclined guide plate has a connecting block that protrudes to the left and extends in the left-right direction. The left end of the connecting block has a top-holding groove that runs through the top and bottom and supports the conveying pipe. The top-holding groove and the connecting block constitute the above-mentioned connecting structure.