Simple data line packaging structure
Patent Information
- Application Number
- CN202522168454.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-10-14
AI Technical Summary
[0002]随着消费电子行业的快速发展,数据线作为电子设备的核心配套配件,其市场需求量呈现爆发式增长,涵盖零售、赠品、电商分销等多场景应用,在数据线生产与流通环节中,包装不仅需实现对产品的基础防护,还需满足成本控制、环保合规及用户便捷使用的需求,因此包装结构的合理性成为影响数据线产品市场竞争力的关键因素之一,然而,现有的数据线包装盒采用了较多的材质,不够环保,占用空间较大,且拆装数据线的过程比较繁琐,使用不够灵活
[0017]1.通过设置有卡接板组件、左折板、右折板,通过多结构的配合,防止数据线缠绕与损坏,且防护性强,避免数据线接头在运输颠簸中易与外界硬物碰撞导致磨损,从而造成数据线损坏的情况;
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Figure CN224715562U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable packaging, and more specifically, to a simple packaging structure for data cables. Background Technology
[0002] With the rapid development of the consumer electronics industry, data cables, as core accessories for electronic devices, have seen explosive growth in market demand, covering multiple application scenarios such as retail, promotional gifts, and e-commerce distribution. In the production and distribution of data cables, packaging not only needs to provide basic protection for the product, but also needs to meet the requirements of cost control, environmental compliance, and user convenience. Therefore, the rationality of the packaging structure has become one of the key factors affecting the market competitiveness of data cable products. However, existing data cable packaging boxes use a lot of materials, are not environmentally friendly, take up a lot of space, and the process of disassembling and assembling data cables is relatively cumbersome and not flexible in use.
[0003] To address the aforementioned issues, existing data cable packaging boxes use a lot of materials, are not environmentally friendly, take up a lot of space, and are cumbersome to install and remove, lacking flexibility. After extensive research, a simplified data cable packaging structure with patent publication number CN220411458U was found. This device, belonging to the data cable packaging field, uses a non-vertical insertion mechanism with a base plate, left folded edge, right folded edge, connector piece, and connector slot to prevent the connector piece from detaching from the connector slot. This achieves packaging of the data cable with a relatively simple structure, saving materials and possessing both economic and environmental benefits.
[0004] However, the aforementioned simplified packaging structure for data cables still has some problems. For example, the protection for the data cable connectors in this device is weak, making them susceptible to wear and tear from collisions with hard objects during transportation, thus damaging the data cable. To address these issues, this utility model proposes a simplified packaging structure for data cables. Utility Model Content
[0005] The present invention aims to solve the technical problems mentioned in the background art and provide a simple packaging structure for data cables.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a simple packaging structure for a data cable, comprising a base plate, a fixing plate fixedly installed at its center, a first folding plate and a second folding plate provided by a slotting process, the first folding plate having at least two first slots for engaging the data cable body, the second folding plate having at least two second slots for engaging the data cable connector, a left folding plate and a right folding plate provided opposite to the fixing plate on the base plate, the left folding plate and the right folding plate being arranged left and right on the base plate, the first ends of the left folding plate and the right folding plate opposite to the base plate engaging with each other;
[0007] Two sets of snap-fit plate assemblies are disposed opposite each other at the upper and lower ends of the base plate along the fixed plate, and the snap-fit plate assemblies are configured to limit the data cable.
[0008] A further preferred embodiment: A connecting plate is fixedly installed on the end of the left folding plate away from the bottom plate. The connecting plate is provided with a first insertion piece by a slotting process. The end of the right folding plate away from the bottom plate is provided with a first insertion interface that engages with the first insertion piece. A lifting plate is fixedly installed on the first insertion piece.
[0009] A further preferred embodiment: the snap-fit plate assembly includes:
[0010] An upper folding plate is fixedly installed on the base plate, and a second insertion interface is provided through one end of the upper folding plate opposite to the base plate;
[0011] The lower folding plate is fixedly set on the base plate by a slotting process, and the lower folding plate is provided with a second plug-in piece that engages with the second plug-in interface by a slotting process.
[0012] A further preferred embodiment: Two sets of reinforcing plate assemblies are fixedly connected to the first folding plate and the second folding plate on the fixing plate. When the left folding plate and the right folding plate are engaged, they abut against the two sets of reinforcing plate assemblies, and a space for placing a data cable is formed between the left folding plate, the right folding plate and the two sets of reinforcing plate assemblies.
[0013] A further preferred embodiment: a space for placing a data cable is formed between the upper folding plate, the lower folding plate, and the bottom plate.
[0014] A further preferred embodiment: the reinforcing plate assembly includes a second plate integrally formed with the fixing plate and a first plate fixedly connected to the second plate, wherein the second plate is movably connected to the fixing plate at the connection point.
[0015] A further preferred embodiment: the fixing plate and the base plate are fixedly connected by adhesive bonding.
[0016] Beneficial effects:
[0017] 1. By incorporating a snap-fit plate assembly, a left folding plate, and a right folding plate, the combination of multiple structures prevents data cables from becoming tangled and damaged. It also provides strong protection, preventing data cable connectors from being easily damaged by collisions with hard objects during transportation.
[0018] 2. By setting a first plug-in piece, a first plug-in interface, and a lifting plate, the left and right folding plates are fixed by inserting the first plug-in piece on the connecting plate into the first plug-in interface of the right folding plate through "plug-in engagement", forming a stable lateral enclosure; when disassembling, simply pull out the first plug-in piece through the lifting plate to open the left and right folding plates. The overall snap-fit structure has strong stability, avoids loosening during transportation, and is easy to unpack and can be reused.
[0019] 3. By incorporating a reinforcing plate assembly, the overall structural strength of the packaging is enhanced, improving its resistance to deformation. At the same time, the space for placing the data cable is optimized to prevent damage from compression. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0021] Figure 2 This is a front view of the present invention.
[0022] Figure 3 This is a schematic diagram of the structure of the fixing plate of this utility model.
[0023] Figure 4 This utility model Figure 3 A structural diagram from another perspective.
[0024] Figure 5 This is a schematic diagram of the structure of the first and second folding plates of this utility model.
[0025] Figure 6 This is a structural schematic diagram of the reinforcing plate assembly of this utility model.
[0026] Figure 7 This is a schematic diagram of the structure of the first and second bayonet of this utility model.
[0027] Figure 8 This utility model Figure 7 A structural diagram from another perspective.
[0028] Figure 1-8In the middle: 1. Base plate; 2. Left folding plate; 3. Right folding plate; 4. Fixing plate; 5. Clip-on plate assembly; 51. Upper folding plate; 52. Lower folding plate; 53. Second insertion piece; 54. Second insertion interface; 6. Connecting plate; 7. Lifting plate; 8. First insertion interface; 9. First insertion piece; 10. Reinforcing plate assembly; 101. First plate body; 102. Second plate body; 11. First folding plate; 12. Second folding plate; 13. First latch; 14. Second latch. Detailed Implementation
[0029] The following will refer to the appendix in the embodiments of this utility model. Figures 1-8 The technical solutions in the embodiments of this utility model will be clearly and completely described.
[0030] Please see Figure 1-8 According to this embodiment of the utility model, a simple packaging structure for a data cable includes a base plate 1, with a fixing plate 4 fixedly installed at its center. The fixing plate 4 has a first folding plate 11 and a second folding plate 12 provided by a slotting process. The first folding plate 11 has at least two first slots 13 for snapping the data cable body, and the second folding plate 12 has at least two second slots 14 for snapping the data cable connector. A left folding plate 2 and a right folding plate 3 are provided on the base plate 1 opposite to each other along the fixing plate 4. The left folding plate 2 and the right folding plate 3 are arranged left and right on the base plate 1 and snapped together at the first end opposite to the base plate 1. Two sets of snapping plate assemblies 5 are arranged opposite to each other at the upper and lower ends of the base plate 1 along the fixing plate. The snapping plate assemblies 5 are configured to limit the data cable.
[0031] Specifically, in the initial state, the packaging is unfolded into a flat state, with the bottom plate 1 at the bottom and the fixing plate 4 at the center placed horizontally. Then, the first fold plate 11 and the second fold plate 12 are folded along the creases formed by the slotting process on the fixing plate 4, so that the first fold plate 11 and the second fold plate 12 are folded upwards, making them perpendicular to the bottom plate 1 or at a predetermined angle. The cable portion is wound around the bottom plate 1 along a predetermined path and limited by the snap-fit plate assembly 5. Then, the cable portion connecting to the connector is snapped into the first snap-fit slot 13 to prevent tangling or loosening. At the same time, the two connectors of the data cable (such as USB-C connector and Lightning connector) are snapped into the second snap-fit slot 14 on the second fold plate 12 to fix the connectors. For fixing and protection (the size of the second latch 14 can be processed according to the actual situation), the left folding plate 2 and the right folding plate 3 on both sides of the base plate 1 are folded up towards the fixing plate 4, and the ends of the left folding plate 2 and the right folding plate 3 away from the base plate 1 are snapped together to form a top enclosure, which wraps around the data cable on the fixing plate 4. At this time, the data cable is completely constrained in the closed space formed by the left folding plate 2, the right folding plate 3, the upper and lower snapping plate assembly 5 and the fixing plate 4, achieving stable protection and storage. The overall packaging structure has simple operation steps, good fixing effect, prevents data cable from getting tangled and damaged, has a simple structure and strong protection, and avoids the data cable connector from being easily worn by collision with external hard objects during transportation, thus preventing data cable damage.
[0032] It should be noted that, in this embodiment, after the left folding plate 2 and the right folding plate 3 are snapped together, they can shield the data cable connector and cable on the fixing plate 4, forming a protective barrier and preventing the data cable connector from being damaged by friction with the external structure. Furthermore, the base plate 1, the left folding plate 2, and the right folding plate 3 are integrally formed and are all made of cardboard. The left folding plate 2 and the right folding plate 3 are bent to form a protective structure for the data cable on the fixing plate 4. Meanwhile, the fixing plate 4 is made of cardboard. Secondly, the shape and size of the first latch 13 and the second latch 14 can be processed according to the actual situation, which will not be described here.
[0033] In this embodiment of the utility model, such as Figure 1 Of Figure 5 As shown, a connecting plate 6 is fixedly installed at the end of the left folding plate 2 away from the bottom plate 1. The connecting plate 6 has a first insert piece 9 provided by a slotting process. The end of the right folding plate 3 away from the bottom plate 1 has a first insertion interface 8 that engages with the first insert piece 9. A lifting plate 7 is fixedly installed on the first insert piece 9. Specifically, when the left folding plate 2 and the right folding plate 3 are folded toward the fixing plate 4 to be perpendicular to the bottom plate 1, the first insert piece 9 on the connecting plate 6 is inserted into the first insertion interface 8 of the right folding plate 3. The left and right folding plates 3 are fixed by the "insertion fit" to form a stable lateral enclosure. When disassembling, the left and right folding plates 3 can be opened by simply pulling out the first insert piece 9 through the lifting plate 7. The overall snap-fit structure has strong stability, avoids loosening during transportation, and is easy to unpack and reuse.
[0034] In this embodiment of the utility model, such as Figures 1 to 5 As shown, the snap-fit plate assembly 5 includes an upper folding plate 51, which is fixedly installed on the base plate 1. A second insertion interface 54 is provided through the end of the upper folding plate 51 facing away from the base plate 1. A lower folding plate 52 is fixedly set on the base plate 1 by a slotting process. A second insertion piece 53 that snaps into the second insertion interface 54 is provided on the lower folding plate 52 by a slotting process. Specifically, when it is necessary to limit the vertical movement of the data cable, the upper folding plate 51 and the lower folding plate 52 are folded relative to each other, and the second insertion piece 53 of the lower folding plate 52 is inserted into the second insertion interface 54 of the upper folding plate 51. The upper and lower folding plates 52 are fixed by the insertion and engagement. At this time, a closed space is formed between the upper folding plate 51, the lower folding plate 52 and the base plate 1. The data cable is constrained in this space and cannot protrude from the top or bottom. The snap-fit plate assembly 5 can form vertical protection for the data cable, which is suitable for transportation in multiple scenarios and has high compression resistance.
[0035] In this embodiment of the utility model, such as Figures 1 to 8 As shown, two sets of reinforcing plate assemblies 10 are fixedly connected to the first folding plate 11 and the second folding plate 12 on the fixed plate 4. When the left folding plate 2 and the right folding plate 3 are engaged, they abut against the two sets of reinforcing plate assemblies 10, and a space for placing a data cable is formed between the left folding plate 2, the right folding plate 3 and the two sets of reinforcing plate assemblies 10. The reinforcing plate assembly 10 includes a second plate body 102 integrally formed with the fixed plate 4 and a first plate body 101 fixedly connected to the second plate body 102. The second plate body 102 is movably connected to the fixed plate 4. Specifically, when the left and right folding plates 3 are folded toward the fixed plate 4 and fixed by insertion, the left folding plate... The inner wall of plate 2 abuts against the left reinforcing plate assembly 10, and the inner wall of the right folding plate 3 abuts against the right reinforcing plate assembly 10. The reinforcing plate assembly 10 provides "reverse support force" from both sides of the fixing plate 4 to prevent the left and right folding plates 3 from deforming inward due to external pressure. At the same time, a closed space is formed between the left folding plate 2, the right folding plate 3, and the two sets of reinforcing plate assemblies 10, and the data cable is constrained within this space, further strengthening the fixation, thereby improving the overall structural strength of the packaging, enhancing its resistance to deformation, and optimizing the placement space of the data cable to avoid crushing damage. It should be noted that the reinforcing plate assembly 10 and the fixing plate 4 are made of the same material. Figure 7 and Figure 8 As shown, the connection between the second plate 102 and the fixing plate 4 can form a certain elastic support force through its own toughness, so that the fixing component can abut against the left folding plate 2 and the right folding plate 3. The first plate 101 and the second plate 102 are fixedly connected by adhesive.
[0036] In this embodiment of the utility model, such as Figures 1 to 5 As shown, a space for placing a data cable is formed between the upper folding plate 51, the lower folding plate 52 and the base plate 1, and the fixing plate 4 is fixedly connected to the base plate 1 by adhesive bonding.
[0037] Working principle: In the initial state, external force causes the movable connection between the second plate 102 and the fixed plate 4 to fold upward, making the reinforcing plate assembly 10 perpendicular to the surface of the fixed plate 4, forming a "support barrier" to reserve a stable positioning foundation for subsequent side sealing. First, it is confirmed that the basic components of the entire packaging structure are completely formed by the slotting process without cracks, deformation, or other problems. The data cable is placed on the base plate 1 and wound along the circumference of the base plate 1 to form a ring structure. Then, the second insertion piece 53 on the lower folding plate 52 of the two sets of snap-fit plate assemblies 5 is aligned and inserted into the second insertion interface 54 of the upper folding plate 51 to complete the snap-fit fixation of the upper and lower folding plates 52. At this time, the upper folding plate 51, the lower folding plate 52, and the base plate 1 wrap around the outer wall of the data cable, forming a constraint on the data cable. Subsequently, the cable part at the connector is inserted segment by segment into the first slot 13 of the first folding plate 11 (the first slot 13). The diameter of the inlet is smaller than that of the data cable. The clamping force of the bayonet is used to fix the cable body to prevent the cable body from shifting or tangling inside the packaging. Then, the two ends of the data cable connector (such as USB-A and Type-C connectors) are inserted into at least two second bayonet slots 14 of the second folding plate 12 to achieve double fixation of the cable body and connectors, preventing the connectors from being damaged by squeezing or collision. Then, the left folding plate 2 and right folding plate 3 on the bottom plate 1 are folded towards the fixing plate 4 until the inner sidewalls of the left and right folding plates 3 abut against the top of the two sets of reinforcing plate assemblies 10. The first plug-in piece 9 on the connecting plate 6 at the end of the left folding plate 2 is inserted into the first plug-in interface 8 at the end of the right folding plate 3 to complete the snap-fit fixation of the left and right folding plates 3, achieving a seal in the left and right directions of the packaging and preventing the cable body from coming out from the side. At this time, the packaging of the data cable is completed. The overall packaging structure has simple operation steps and avoids the data cable connector from being easily worn by collisions with external hard objects during transportation, thus preventing damage to the data cable.
Claims
1. A simple packaging structure for a data cable, characterized in that, include: A base plate (1) has a fixed plate (4) fixedly installed at its center. The fixed plate (4) has a first folding plate (11) and a second folding plate (12) provided by a grooving process. The first folding plate (11) has at least two first slots (13) for snapping the data cable body. The second folding plate (12) has at least two second slots (14) for snapping the data cable connector. The base plate (1) has a left folding plate (2) and a right folding plate (3) opposite to each other along the fixed plate (4). The left folding plate (2) and the right folding plate (3) are arranged left and right on the base plate (1). The left folding plate (2) and the right folding plate (3) are snapped together at the first end away from the base plate (1). Two sets of snap-fit plate assemblies (5) are arranged opposite each other at the upper and lower ends of the base plate (1) along the fixed plate, and the snap-fit plate assemblies (5) are configured to limit the data cable.
2. The simplified packaging structure for a data cable according to claim 1, characterized in that: A connecting plate (6) is fixedly installed on the end of the left folding plate (2) away from the bottom plate (1). A first plug-in piece (9) is provided on the connecting plate (6) by a slotting process. A first plug-in interface (8) is provided through the end of the right folding plate (3) away from the bottom plate (1) and engages with the first plug-in piece (9). A lifting plate (7) is fixedly installed on the first plug-in piece (9).
3. The simplified packaging structure for a data cable according to claim 2, characterized in that: The snap-fit plate assembly (5) includes: An upper folding plate (51) is fixedly installed on the base plate (1), and a second insertion interface (54) is provided through one end of the upper folding plate (51) away from the base plate (1). The lower folding plate (52) is fixed on the base plate (1) by a slotting process. The lower folding plate (52) is provided with a second plug-in piece (53) that is engaged with the second plug-in interface (54) by a slotting process.
4. The simplified packaging structure for a data cable according to claim 2, characterized in that: Two sets of reinforcing plate assemblies (10) are fixedly connected to the fixed plate (4) along the first folding plate (11) and the second folding plate (12). When the left folding plate (2) and the right folding plate (3) are engaged, they abut against the two sets of reinforcing plate assemblies (10), and a space for placing data cables is formed between the left folding plate (2), the right folding plate (3) and the two sets of reinforcing plate assemblies (10).
5. The simplified packaging structure for a data cable according to claim 3, characterized in that: A space for placing a data cable is formed between the upper folding plate (51), the lower folding plate (52), and the bottom plate (1).
6. The simplified packaging structure for a data cable according to claim 4, characterized in that: The reinforcing plate assembly (10) includes a second plate (102) integrally formed with the fixing plate (4) and a first plate (101) fixedly connected to the second plate (102), wherein the second plate (102) is movably connected to the fixing plate (4).
7. The simplified packaging structure for a data cable according to claim 1, characterized in that: The fixing plate (4) and the base plate (1) are fixedly connected by adhesive bonding.
Citation Information
Patent Citations
Simple data line packaging structure
CN220411458U