An electronic device accessory and an electronic device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-11
- Publication Date
- 2026-08-14
AI Technical Summary
现有的数据线可作为挂绳使用的电子设备其连接件通常需要设置镂空孔,且需要在充电插头上额外设置与镂空孔卡合的弹片,该弹片凸出于充电插头的外周面,在与镂空孔卡合的情况下,数据线作为挂绳使用时充电插头上的弹片和镂空孔之间的作用力过大,易造成充电插头和连接件的损坏
[0014]本实用新型提供一种电子设备配件,包括数据线和连接件。数据线的两端均设有充电插头;连接件形成有至少两个卡接槽,卡接槽与充电插头可拆卸地卡接。在数据线不为其他设备充电或传输数据的情况下,各充电插头分别卡接于一个卡接槽,此时,数据线位于两个卡接槽之间的部分形成为环形挂绳,以用于悬挂使用,携带方便。并且,各卡接槽在连接件沿第一方向的相对两侧分别形成有第一槽口和第二槽口,第二槽口构成为能够供充电插头穿入卡接槽内,在充电插头均卡接于各卡接槽的情况下,数据线经第一槽口延伸至卡接槽外,数据线经第一槽口延伸至卡接槽外的部分形成为挂绳,充电插头由第二槽口穿入卡接槽内与连接件卡接,充电插头无需额外设置卡合件(也为弹片)即可与连接件卡接,在数据线作为挂绳使用时,充电插头在卡接槽内受力均匀,减少因应力集中而造成的充电插头和连接件的损坏。另外,连接件具有连接部,连接部用于与电子设备的壳体连接,第二槽口相对于第一槽口更接近连接部,在充电插头均卡接于各卡接槽的情况下,数据线经第一槽口延伸至卡接槽外,由于连接部设于连接件远离第一槽口的位置处,因此,在由数据线形成的环形挂绳处于悬挂状态时,增加了环形挂绳远离第一槽口的最远处与电子设备的壳体之间的距离,使挂绳在使用时更灵活方便。
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Figure CN224637491U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic equipment technology, and in particular to an electronic equipment accessory and electronic equipment in which a data cable can be used as a lanyard. Background Technology
[0002] Electronic devices are widely used in people's daily lives. Existing data cables for electronic devices that can be used as lanyards typically require perforated holes in their connectors, and additional spring clips on the charging plug that engage with these perforated holes. These spring clips protrude from the outer circumference of the charging plug. When the data cable is used as a lanyard, the force between the spring clip and the perforated hole on the charging plug is too great, which can easily damage the charging plug and connectors. Utility Model Content
[0003] This invention provides an electronic device accessory and electronic device in which the data cable can be used as a lanyard, making the charging plug and connectors less prone to damage.
[0004] This utility model provides an electronic device accessory, including a data cable and a connector. Both ends of the data cable are provided with charging plugs; the connector has a connecting portion for connecting to the housing of the electronic device. The connector has at least two snap-fit slots, which are detachably snap-fitted to the charging plugs. Each snap-fit slot has a first opening and a second opening on opposite sides of the connector along a first direction. The second opening is closer to the connecting portion than the first opening. The second opening is configured to allow the charging plug to pass through the snap-fit slot. When the charging plug is snapped into the snap-fit slot, the data cable extends beyond the snap-fit slot through the first opening. When both charging plugs are snapped into the two snap-fit slots respectively, the portion of the data cable between the first openings of the two snap-fit slots forms a loop.
[0005] Furthermore, when the charging plug is engaged with the slot, the orthographic projection of the charging plug along the first direction falls entirely within the orthographic projection range of the second slot, and the orthographic projection of the charging plug along the first direction extends beyond the edge of the orthographic projection of the first slot.
[0006] Furthermore, at least two of the latching slots include a first latching slot and a second latching slot arranged along a second direction intersecting the first direction. The first latching slot and the second latching slot each form a third slot on opposite sides of each other. The third slots are connected to the first slot and the second slot. In the third direction, the minimum size of the third slot is greater than the minimum size of the data cable. The third direction intersects both the first direction and the second direction.
[0007] Furthermore, a partition wall separates the first slot and the second slot, and the connecting part is located on the partition wall at a position closer to the second slot than the first slot.
[0008] Furthermore, at least two of the snap-fit slots include a first snap-fit slot and a second snap-fit slot arranged along a second direction intersecting the first direction, wherein the first snap-fit slot and the second snap-fit slot are connected to form a through slot that penetrates the connector along the first direction.
[0009] Furthermore, the channel wall has a closed section, which is perpendicular to the first direction.
[0010] Furthermore, the channel wall includes two first sidewalls opposite each other along the second direction, and the ends of the two first sidewalls near the second channel opening are respectively formed with flanges that bend toward each other, and the connecting portion is disposed on one of the flanges.
[0011] Furthermore, the electronic device accessory also includes a connecting cord, one end of which is used to connect to the housing, and the other end is connected to the connecting part.
[0012] Furthermore, the connecting part includes a hook part, and the connecting rope includes a first section and a second section. One end of the first section and one end of the second section are connected and used to connect the housing. The other end of the first section and the other end of the second section are connected to form a bend, and the bend passes around the hook part.
[0013] Furthermore, this utility model embodiment provides an electronic device, including a housing and a battery assembly, the battery assembly being disposed within the housing; the connecting portion of the electronic device accessory is connected to the housing.
[0014] This utility model provides an electronic device accessory, including a data cable and a connector. Both ends of the data cable have charging plugs; the connector has at least two snap-fit slots, which are detachably snapped into the charging plugs. When the data cable is not charging or transmitting data to other devices, each charging plug is snapped into one snap-fit slot. In this case, the portion of the data cable between the two snap-fit slots forms a loop for hanging and convenient carrying. Furthermore, each snap-fit slot has a first slot and a second slot formed on opposite sides of the connector along the first direction. The second slot is configured to allow the charging plug to pass through the snap-fit slot. When the charging plug is snapped into each snap-fit slot, the data cable extends out of the snap-fit slot through the first slot. The part of the data cable extending out of the snap-fit slot through the first slot forms a lanyard. The charging plug passes through the second slot into the snap-fit slot and snaps into the connector. The charging plug can snap into the connector without the need for additional snap-fit parts (also spring clips). When the data cable is used as a lanyard, the charging plug is subjected to uniform force in the snap-fit slot, reducing damage to the charging plug and connector caused by stress concentration. In addition, the connector has a connecting part for connecting with the housing of the electronic device. The second slot is closer to the connecting part than the first slot. When the charging plug is engaged in each slot, the data cable extends through the first slot to the outside of the slot. Since the connecting part is located at a position away from the first slot, when the loop lanyard formed by the data cable is in a hanging state, the distance between the furthest point of the loop lanyard away from the first slot and the housing of the electronic device is increased, making the lanyard more flexible and convenient to use. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a first structure of an electronic device provided in some embodiments of this application;
[0016] Figure 2 A schematic diagram of the first structure of an electronic device provided in some embodiments of this application, with data lines hidden;
[0017] Figure 3 A schematic diagram of the structure of a connector for a first structure of an electronic device provided in some embodiments of this application;
[0018] Figure 4 This is a schematic diagram of a second structure of an electronic device provided in some embodiments of this application;
[0019] Figure 5 A schematic diagram of the second structure of an electronic device provided in some embodiments of this application, with the housing removed;
[0020] Figure 6 A schematic diagram of the structure of a connector for a second structure of an electronic device provided in some embodiments of this application;
[0021] Figure 7 A schematic diagram of a connector with a connecting rope for a second structure of an electronic device provided in some embodiments of this application.
[0022] Explanation of reference numerals in the attached figures
[0023] 1. Data cable; 2. Connector; 3. Connecting rope; 4. Battery assembly; 5. Charging interface; 11. Charging plug; 12. Cable body; 20. Connecting part; 31. First section; 32. Second section; 34. Bending part; 100. Housing; 200. Connecting hole; 201. Hook part; 21. Snap-fit groove; 210. Through groove; 211. First snap-fit groove; 212. Second snap-fit groove; 221. First slot; 222. Second slot; 223. Third slot; 224. Partition wall; 225. First side wall; 226. Limiting surface; 227. Second side wall; X, First direction; Y, Second direction; Z, Third direction. Detailed Implementation
[0024] The embodiments of the technical solution of this application will now be described in detail with reference to the accompanying drawings. These embodiments are only used to more clearly illustrate the technical solution of this application and are therefore merely examples, and should not be used to limit the scope of protection of this application.
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.
[0026] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0027] In the description of the embodiments of this application, the technical terms "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "circumferential," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed, operated, or used in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application.
[0028] In the description of the embodiments of this application, unless otherwise expressly specified and limited, technical terms such as "installation," "connection," "joining," and "fixing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.
[0029] Electronic devices are widely used in people's daily lives. Existing data cables for electronic devices that can be used as lanyards usually require perforated holes in their connectors, and additional spring clips on the charging plug that engage with these perforated holes. These spring clips protrude from the outer circumference of the charging plug. When the data cable is used as a lanyard, the force between the spring clip and the perforated hole on the charging plug is too great, which can easily damage the charging plug and connectors.
[0030] Therefore, this application provides an electronic device accessory and an electronic device that are not easily damaged.
[0031] It should be noted that this electronic device accessory can be used in, but is not limited to, electronic devices such as power banks, cameras, and gaming devices.
[0032] Below, refer to Figures 1 to 7 Some embodiments of this application will be described in detail.
[0033] Figure 1 This is a schematic diagram of the structure of a first structure of an electronic device provided in some embodiments of this application; Figure 2 A schematic diagram of the first structure of an electronic device provided in some embodiments of this application, with data lines hidden;
[0034] Figure 3 A schematic diagram of the structure of a connector for a first structure of an electronic device provided in some embodiments of this application;
[0035] Figure 4 This is a schematic diagram of a second structure of an electronic device provided in some embodiments of this application; Figure 5 A schematic diagram of the second structure of an electronic device provided in some embodiments of this application, with the housing removed; Figure 6 A schematic diagram of the structure of a connector for a second structure of an electronic device provided in some embodiments of this application; Figure 7 A schematic diagram of a connector with a connecting rope for a second structure of an electronic device provided in some embodiments of this application.
[0036] In some embodiments of this application, for ease of explanation, a first direction, a second direction, and a third direction are defined. These three directions intersect each other; here, intersecting each other includes perpendicularly intersecting each other. For ease of understanding of the embodiments of this application, in... Figures 2 to 4 , Figure 6 In the illustrated embodiments, the first direction, the second direction, and the third direction are given as examples where they intersect each other perpendicularly. However, those skilled in the art should understand that the embodiments of this application are not limited to the case where these three directions intersect each other perpendicularly. For ease of explanation, as follows... Figures 2 to 4 , Figure 6 As shown by the arrows in the diagram, the direction of arrow X is the first direction, the direction of arrow Y is the second direction, and the direction of arrow Z is the third direction.
[0037] The first aspect of this application provides an electronic device accessory, such as... Figures 1 to 7 As shown, the electronic device accessory includes a data cable 1 and a connector 2. The data cable 1 has charging plugs 11 at both ends. The connector 2 has a connecting portion 20 for connecting to the housing 100 of the electronic device. The connector 2 has at least two snap-fit slots 21, which are detachably snap-fitted to the charging plugs 11. Each snap-fit slot 21 has a first slot 221 and a second slot 222 formed on opposite sides of the connector 2 along the first direction X. The second slot 222 is closer to the connecting portion 20 than the first slot 221. The second slot 222 is configured to allow the charging plug 11 to pass through the snap-fit slot 21. When the charging plug 11 is snapped into the snap-fit slot 21, the data cable 1 extends beyond the snap-fit slot 21 through the first slot 221. When both charging plugs 11 are snapped into the two snap-fit slots 21 respectively, the portion of the data cable 1 between the first slots 221 of the two snap-fit slots 21 forms a loop.
[0038] When the data cable 1 is not charging or transmitting data to other devices, each charging plug 11 is snapped into a snap-in slot 21. At this time, the part of the data cable 1 located between the two snap-in slots 21 forms a loop for hanging and convenient carrying. Furthermore, each snap-fit slot 21 has a first slot 221 and a second slot 222 formed on opposite sides of the connector 2 along the first direction X. The second slot 222 is configured to allow the charging plug 11 to pass into the snap-fit slot 21. When the charging plug 11 is snapped into each snap-fit slot 21, the data cable 1 extends out of the snap-fit slot 21 through the first slot 221. The part of the data cable 1 extending out of the snap-fit slot 21 through the first slot 221 forms a lanyard. The charging plug 11 passes into the snap-fit slot 21 through the second slot 222 and snaps into the snap-fit slot 21. The charging plug 11 can snap into the connector 2 without the need for additional snap-fit parts (also spring clips). When the data cable 1 is used as a lanyard, the charging plug 11 is subjected to uniform force in the snap-fit slot 21, reducing damage to the charging plug 11 and the connector 2 caused by stress concentration. In addition, the connector 2 has a connecting part 20 for connecting to the housing 100 of the electronic device. The second slot 222 is closer to the connecting part 20 than the first slot 221. When the charging plug 11 is engaged in each slot 21, the data cable 1 extends through the first slot 221 to the outside of the slot 21. Since the connecting part 20 is located in the connector 2 away from the first slot 221, when the loop lanyard formed by the data cable 1 is in a hanging state, the distance between the furthest point of the loop lanyard away from the first slot 221 and the housing 100 of the electronic device is increased, making the lanyard more flexible and convenient to use.
[0039] In some embodiments of this application, such as Figures 1 to 7 As shown, when the charging plug 11 is snapped into the slot 21, the orthographic projection of the charging plug 11 along the first direction X falls entirely within the orthographic projection range of the second slot 222, and the orthographic projection of the charging plug 11 along the first direction X extends beyond the edge of the orthographic projection of the first slot 221.
[0040] Understandably, the entire orthographic projection of the charging plug 11 along the first direction X falls within the orthographic projection range of the second slot 222, allowing the charging plug 11 to pass through the second slot 222 and enter the latching slot 21 along the first direction X. Furthermore, the orthographic projection of the charging plug 11 along the first direction X extends beyond the edge of the orthographic projection of the first slot 221; that is, a portion of the orthographic projection of the charging plug 11 along the first direction X coincides with the orthographic projection of the first slot 221, while the remaining portion extends beyond the edge of the orthographic projection of the first slot 221. Thus, the charging plug 11 cannot pass through the first slot 221 along the first direction X and is stopped within the latching slot 21.
[0041] For example, the area of the second slot 222 is larger than the area of the first slot 221. An arc-shaped limiting surface 226, facing the second slot 222 and surrounding the first slot 221, is formed in the latching groove 21 near the first slot 221. After the charging plug 11 enters the latching groove 21 from the second slot 222, it abuts against the limiting surface 226, thereby achieving latching between the charging plug 11 and the latching groove 21. The abutment between the limiting surface 226 and the charging plug 11 prevents the charging plug 11 from dislodging from the first latching groove 211 or the second latching groove 212, improving the reliability of the latching. In some embodiments of this application, such as... Figures 1 to 3 As shown, at least two slots 21 include a first slot 211 and a second slot 212 arranged along a second direction Y that intersects the first direction X. The first slot 211 and the second slot 212 each form a third slot 223 on opposite sides. The third slot 223 is connected to the first slot 221 and the second slot 222. In the third direction Z, the minimum size of the third slot 223 is greater than the minimum size of the data line 1. The third direction Z intersects both the first direction X and the second direction Y.
[0042] For example, both the first slot 211 and the second slot 212 have an arc-shaped limiting surface 226 that surrounds the first slot 221 and faces the second slot 222 at a position close to the first slot 221.
[0043] For example, the data cable 1 includes a cable body 12 and two charging plugs 11 electrically connected to both ends of the cable body 12. The dimension of the cable body 12 in any direction perpendicular to its extension direction is smaller than the dimension of the charging plugs 11 in the corresponding direction. Therefore, the dimension of the cable body 12 in the third direction Z is the minimum dimension of the data cable 1 in the third direction Z. The minimum dimension of the third slot 223 in the third direction Z is set to be greater than the minimum dimension of the data cable 1, so that the cable body 12 of the data cable 1 can enter the slot 21 through the third slot 223. That is, the two parts of the cable body 12 of the data cable 1 can enter the first slot 211 and the second slot 212 respectively through the third slot 223 of the first slot 211 and the second slot 212. Therefore, during the process of storing the data cable 1, the cable body 12 of the data cable 1 is bent and passed over the connector 2. One charging plug 11 of the data cable 1 is inserted into the first card slot 211 through the second slot 222, and the other charging plug 11 of the data cable 1 is inserted into the second card slot 212 through the second slot 222. At the same time, the two parts of the cable body 12 are respectively passed through the third slots of the first card slot 211 and the second card slot 212. The opening 223 enters the first slot 211 and the second slot 212 respectively, so that the cable 12 is placed in the first slot 221. Then, the position of the charging plug 11 in the first slot 211 and the second slot 212 is adjusted so that the charging plug 11 abuts against the limiting surface 226 of the first slot 211 and the second slot 212. At this time, the part of the cable 12 located between the first slot 221 of the first slot 211 and the second slot 212 forms a ring-shaped hanging rope.
[0044] With this design, the charging plug 11 can be easily inserted into the first slot 211 or the second slot 212 through the second slot 222, improving the convenience of storage.
[0045] For example, the two charging plugs 11 have the same structure. For instance, both charging plugs 11 are Type-C interfaces or both charging plugs 11 are Type-A interfaces.
[0046] For example, the two charging plugs 11 have different structures, such as one charging plug 11 having a Type-C interface and the other charging plug 11 having a Type-A interface.
[0047] For example, the inner surface of the first card slot 211 is formed as a contoured surface that matches the outline of the charging plug 11. For instance, the inner surface of the first card slot 211 is formed as a contoured surface that matches the outline of the charging plug 11 with a Type-C interface, or the inner surface of the first card slot 211 is formed as a contoured surface that matches the outline of the charging plug 11 with a Type-A interface, thereby damping and fixing the charging plug 11.
[0048] For example, the inner surface of the second card slot 212 is formed as a contoured surface that matches the outline of the charging plug 11. For instance, the inner surface of the second card slot 212 is formed as a contoured surface that matches the outline of the charging plug 11 with a Type-C interface, or the inner surface of the second card slot 212 is formed as a contoured surface that matches the outline of the charging plug 11 with a Type-A interface, thereby damping and fixing the charging plug 11.
[0049] In some embodiments of this application, such as Figure 2 and Figure 3 As shown, a partition wall 224 separates the first slot 211 and the second slot 212, and the connecting part 20 is located on the partition wall 224 at a position closer to the second slot 222 than the first slot 221.
[0050] The partition wall 224 separates the first latching slot 211 and the second latching slot 212, allowing each charging plug 11 to be latched into the first latching slot 211 and the second latching slot 212 respectively. Thus, the portion of the cable 12 located between the first opening 221 of the first latching slot 211 and the second latching slot 212 forms a loop for hanging, making it convenient to carry. Separating the first latching slot 211 and the second latching slot 212 by the partition wall 224 reduces mutual friction between the charging plugs 11, making them less prone to damage and extending their service life. The connecting part 20 is located in the partition wall 224, eliminating the need for additional space occupied by the connector 2, simplifying the structure and facilitating the miniaturization of electronic components. Furthermore, it positions the connecting part 20 essentially in the middle of the connector 2 in the second direction Y, improving suspension stability. The connecting part 20 is located in the partition wall 224 closer to the second opening 222 than the first opening 221; that is, the connecting part 20 is located at the end of the connector 2 furthest from the loop. Therefore, when the loop lanyard formed by the data cable 1 is in a suspended state, the distance between the furthest point of the loop lanyard away from the first slot 221 and the housing 100 of the electronic device is increased, making the lanyard more flexible and convenient to use.
[0051] For example, the connecting part 20 is provided at the part of the partition wall 224 that is closer to the second slot 222 than the first slot 221, and the connecting part 20 is provided at the middle part of the partition wall 224 along the third direction Z.
[0052] In some embodiments of this application, such as Figures 4 to 7 As shown, at least two snap-fit slots 21 include a first snap-fit slot 211 and a second snap-fit slot 212 arranged along a second direction Y that intersects the first direction X. The first snap-fit slot 211 and the second snap-fit slot 212 are connected to form a through slot 210 that passes through the connector 2 along the first direction X.
[0053] It is understandable that "the first slot 211 and the second slot 212 are connected to form a through slot 210 that runs through the connector 2 in the first direction X" means that there is no partition between the first slot 211 and the second slot 212, and the two form a slot (through slot 210). That is, a part of the through slot 210 is the first slot 211 for attaching one charging plug 11, and the remaining part of the through slot 210 is the second slot 212 for attaching another charging plug 11. After both charging plugs 11 are attached into the through slot 210, the two charging plugs 11 can abut against each other. The first slot 221 of the first card slot 211 is connected to the first slot 221 of the second card slot 212 to form a slot for extending both ends of the data cable 1 (one of the two slots opposite each other in the first direction X of the through slot 210). The second slot 222 of the first card slot 211 is connected to the second slot 222 of the second card slot 212 to form another slot for inserting the two charging plugs 11 (the other of the two slots opposite each other in the first direction X of the through slot 210).
[0054] For example, such as Figure 6 As shown, an arc-shaped limiting surface 226 is formed in the through groove 210 near the first slot 221, facing the second slot 222 and surrounding the first slot 221. After the two charging plugs 11 enter the through groove 210 from the second slot 222, they will abut against the limiting surface 226, thereby realizing the engagement of the charging plugs 11 with the through groove 210.
[0055] For example, during the process of storing the data cable 1, the cable body 12 of the data cable 1 is folded from the middle position. The bent area formed by the fold at the middle position is then inserted into the through slot 210 through a larger slot formed by the two second slots 222. After the bent area emerges from the other end of the through slot 210, it is pulled along the first direction X until the two charging plugs 11 are inserted and engaged in the through slot 210. This completes the insertion of the data cable 1 and the connector 2. This causes the portion of the data cable 1 extending from the slot formed by the two first slots 221 to form a loop lanyard.
[0056] When the charging plug 11 is placed in the through slot 210, the through slot 210 can protect the charging plug 11 and reduce damage to the charging plug 11 caused by external force or foreign objects entering. The through slot 210 can reduce the amount of material used and lighten the overall weight of the connector 2, which is conducive to the lightweighting of electronic device accessories and has good economic benefits.
[0057] In some embodiments of this application, such as Figures 4 to 7 As shown, the wall of the through groove 210 has a closed section, which is perpendicular to the first direction X.
[0058] The groove wall of the through groove 210 has a closed cross section. When the charging plug 11 is placed into the through groove 210, the outer peripheral surface of the charging plug 11 in any direction perpendicular to the first direction X is surrounded by the groove wall of the through groove 210, which can protect the charging plug 11 and reduce damage to the charging plug 11 caused by external force or foreign objects. Moreover, it is not easy to come out from the direction perpendicular to the first direction X, which improves the reliability of the data cable 1 and the connector 2.
[0059] In some embodiments of this application, such as Figure 6 As shown, the groove wall of the through groove 210 includes two first side walls 225 that are opposite each other along the second direction Y. The ends of the two first side walls 225 near the second groove opening 222 are respectively formed with flanges that bend toward each other, and the connecting part 20 is provided in one of the flanges.
[0060] In some embodiments of this application, such as Figure 6 As shown, the channel wall of the through groove 210 also includes two second side walls 227 opposite each other along the third direction Z. The two opposite ends of the second side walls 227 along the second direction Y are respectively connected to the two first side walls 225, forming a roughly cubic through groove 210.
[0061] In some embodiments of this application, such as Figures 4 to 7 As shown, the electronic device accessories also include a connecting rope 3, one end of which is used to connect to the housing 100, and the other end is connected to the connecting part 20.
[0062] The connecting rope 3 connects the housing 100 and the connector 2 through the connecting part 20, connecting the connector 2 to the housing 100 of the electronic device, making the electronic device easy to carry. Moreover, the connection between the connector 2 and the housing 100 through the connecting rope 3 simplifies the connection structure. On the other hand, the connector 2 can move within a certain range relative to the housing 100, so that there is enough operating space around the connector 2, which facilitates the snap-fit operation of the data cable 1 to the connector 2.
[0063] In some embodiments of this application, such as Figures 1 to 7As shown, the connecting part 20 includes a hook part 201, and the connecting rope 3 includes a first section 31 and a second section 32. One end of the first section 31 and one end of the second section 32 are connected and used to connect the housing. The other end of the first section 31 and the other end of the second section 32 are connected to form a bend 34, which passes around the hook part 201.
[0064] The connecting rope 3 includes a first section 31 and a second section 32 for connecting the housing 100 of the electronic device and the connector 2. Compared with a single rope, the first section 31 and the second section 32 can increase the connecting force, making the connection between the housing 100 of the electronic device and the connector 2 more robust and reliable. The bent part 34 passes around the hook part 201 to connect the connecting rope 3 and the connector 2. The hook part 201 bears the tension of the connecting rope 3, making the connection between the connecting rope 3 and the connector 2 more reliable.
[0065] For example, such as Figures 1 to 3 As shown, the connecting portion 20 is located on the partition wall 224 closer to the second slot 222 than the first slot 221. The connecting portion 20 includes a connecting hole 200 and a hook portion 201 formed on the side of the connecting hole 200 away from the first slot 221. The connecting hole 200 is located on the partition wall 224 closer to the second slot 222 than the first slot 221, and is located at the middle position of the partition wall 224 along the third direction Z. The connecting rope 3 passes through the connecting hole 200 and hooks onto the hook portion 201, thereby connecting the connecting rope 3 to the connecting member 2.
[0066] For example, such as Figures 4 to 7 As shown, the connecting part 20 is located at the flange formed at one end of the first sidewall 225 near the second slot 222. The connecting part 20 includes two connecting holes 200, both of which extend along the first direction X. The two connecting holes 200 are spaced apart along the third direction Z. A hook part 201 is formed between the two connecting holes 200. The connecting rope 3 passes through one of the connecting holes 200, goes around the hook part 201, and then passes out through the other connecting hole 200. The connecting rope 3 is thus hooked on the hook part 201, so that the connecting rope 3 is connected to the connecting member 2.
[0067] The connecting rope 3 includes a first section 31 and a second section 32 for connecting the housing 100 of the electronic device and the connector 2. The first section 31 and the second section 32 can increase the connecting force compared to a single rope, making the connection between the housing 100 of the electronic device and the connector 2 more secure and reliable.
[0068] A second aspect of this application provides an electronic device, such as... Figures 1 to 7 As shown, the electronic device includes a housing 100 and a battery assembly 4. The battery assembly 4 is disposed inside the housing 100, and the connecting part 20 of the electronic device accessories is connected to the housing 100.
[0069] For example, the connecting part 20 is connected to the housing 100 via the connecting rope 3.
[0070] Since the electronic device includes the electronic device accessories provided in the first aspect, and the electronic device includes all the beneficial effects of the electronic device accessories, the charging plug 11 and connector 2 of the electronic device are not easily damaged.
[0071] For example, such as Figures 1 to 7 As shown, the housing 100 is provided with a charging interface 5, which can be, but is not limited to, a Type-C interface and a Type-A interface.
[0072] The above embodiments are merely illustrative of the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application, and they should all be covered within the scope of the claims and specification of this application. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any way. This application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. An electronic device accessory, characterized in that, include: A data cable, with charging plugs at both ends; A connector has a connecting portion for connecting to the housing of an electronic device. The connector has at least two snap-fit slots that detachably snap onto a charging plug. Each snap-fit slot has a first opening and a second opening on opposite sides of the connector along a first direction. The second opening is closer to the connecting portion than the first opening. The second opening is configured to allow the charging plug to pass through the snap-fit slot. When the charging plug is snapped into the snap-fit slot, the data cable extends through the first opening to the outside of the snap-fit slot. When the two charging plugs are respectively engaged with the two snap-fit slots, the portion of the data cable located between the first slot openings of the two snap-fit slots forms a loop lanyard. The electronic device accessory also includes a connecting rope, one end of which is used to connect to the housing, and the other end is connected to the connecting part. The connecting part includes a hook part. The connecting rope includes a first section and a second section. One end of the first section and one end of the second section are connected and used to connect to the housing. The other end of the first section and the other end of the second section are connected to form a bend, and the bend passes around the hook part.
2. The electronic device accessory according to claim 1, characterized in that, When the charging plug is engaged in the slot, the orthographic projection of the charging plug along the first direction falls entirely within the orthographic projection range of the second slot, and the orthographic projection of the charging plug along the first direction extends beyond the edge of the orthographic projection of the first slot.
3. The electronic device accessory of claim 1, wherein, At least two of the snap-fit slots include a first snap-fit slot and a second snap-fit slot arranged along a second direction intersecting the first direction. The first snap-fit slot and the second snap-fit slot each form a third slot on opposite sides of each other, and the third slots are connected to both the first slot and the second slot. In the third direction, the minimum size of the third slot is greater than the minimum size of the data line, and the third direction intersects both the first direction and the second direction.
4. The electronic device accessory of claim 3, wherein, A partition wall separates the first slot and the second slot, and the connecting part is located on the partition wall at a position closer to the second slot than the first slot.
5. The electronic device accessory of claim 1, wherein, At least two of the snap-fit slots include a first snap-fit slot and a second snap-fit slot arranged along a second direction intersecting the first direction, wherein the first snap-fit slot and the second snap-fit slot are connected to form a through slot that passes through the connector along the first direction.
6. The electronic device accessory of claim 5, wherein, The channel wall has a closed section, which is perpendicular to the first direction.
7. The electronic device accessory of claim 5, wherein, The channel wall includes two first sidewalls opposite each other along the second direction. The ends of the two first sidewalls near the second channel opening are respectively formed with flanges that bend toward each other, and the connecting part is provided in one of the flanges.
8. An electronic device, comprising: include: case; The battery assembly is disposed within the housing; According to any one of claims 1 to 7, the connecting portion of the electronic device accessory is connected to the housing.