Cable and data line
By incorporating a combination of light-shielding and light-guiding components into the wire structure, the problem of the internal structure being exposed when the wire emits light is solved, resulting in a cleaner and more consistent lighting effect and improved user experience.
Patent Information
- Application Number
- CN202423153770.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-18
AI Technical Summary
When existing wire structures emit light through light guide structures, their internal structures are exposed, affecting the user experience.
The design of the shielding component has light-blocking properties. It shields the wire assembly and combines it with the cylindrical structure of the light guide to ensure that the light guide emits light uniformly in a 360-degree circumferential area. The shielding component can be a light-blocking material, a reflective material, or have a concave-convex structure to enhance the light-blocking effect.
Improve the neatness and appearance consistency of cables, increase the light-emitting area, and enhance the user experience.
Smart Images

Figure CN223757303U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of wire, in particular to a cable and a data line. BACKGROUND
[0002] At present, the wire structure is often used in electronic devices. In the related art, part of the wire structure is provided with a light guide structure, and the wire structure can emit light through the light guide structure. However, when the wire structure emits light through the light guide structure, the wire structure looks messy, which affects the user experience. CONTENT OF THE UTILITY MODEL
[0003] Therefore, the embodiments of the present application aim to provide a cable and a data line.
[0004] To achieve the above-mentioned purpose, the technical scheme of the present application is as follows:
[0005] The embodiments of the present application provide a cable, comprising:
[0006] a wire assembly;
[0007] a light guide member, which is in a cylindrical shape and is sleeved outside the wire assembly along the length direction;
[0008] a shielding member, which is clamped between the wire assembly and the light guide member, and has light shielding property to shield the wire assembly.
[0009] In some optional implementation manners, the light guide member is in a revealed state; and / or, the shielding member is in a cylindrical shape.
[0010] In some optional implementation manners, at least part of the material of the shielding member is light shielding material; or,
[0011] at least part of the surface of the shielding member has a concave-convex structure, so that the shielding member has light shielding property; or,
[0012] at least part of the material of the shielding member is light reflecting material; or,
[0013] at least part of the surface of the shielding member is light reflecting.
[0014] In some optional implementation manners, the material of the shielding member is light shielding material; or,
[0015] the shielding member has a shielding layer, and the shielding layer has light shielding property.
[0016] In some optional implementation manners, the shielding layer of the shielding member has one of white color, gray color, light blue color and light green color.
[0017] In some optional implementation manners, the shielding member is an insulating structure.
[0018] In some optional implementations, the shielding member is in contact with the light guide member, and the shielding member is arranged adjacent to the wire assembly.
[0019] The data line also includes the cable, the first seat assembly, and the first light emitting member.
[0020] The first light emitting member is arranged on the seat assembly, the first end of the cable is connected to the first seat assembly, and light of the first light emitting member is used to be transmitted to the light guide member of the cable.
[0021] In some optional implementations, the data line further includes:
[0022] The key assembly is arranged on the seat assembly, and the key assembly is used to switch a first light emitting mode of the first light emitting member.
[0023] The first light emitting mode includes at least one of a light emitting color, a light emitting flux, a continuous light emitting time, and a light emitting interval time.
[0024] In some optional implementations, the data line further includes:
[0025] A second seat assembly is connected to a second end of the cable.
[0026] A second light emitting member is arranged on the second seat assembly.
[0027] Light of the second light emitting member is used to be transmitted to the light guide member of the cable.
[0028] In some optional implementations, the key assembly is also used to switch a second light emitting mode of the second light emitting member.
[0029] The second light emitting mode includes at least one of a light emitting color, a light emitting flux, a continuous light emitting time, and a light emitting interval time.
[0030] In some optional implementations, the data line includes at least two modes of a first mode, a second mode, a third mode, a fourth mode, and a fifth mode.
[0031] In the first mode, the second light emitting mode is the same as the first light emitting mode.
[0032] In the second mode, the second light emitting mode is different from the first light emitting mode.
[0033] In the third mode, the second light emitting member and the first light emitting member do not emit light.
[0034] In the fourth mode, the second light emitting member emits light, and the first light emitting member does not emit light.
[0035] In the fifth mode, the first light-emitting element emits light, while the second light-emitting element does not emit light.
[0036] In some optional implementations, in the first mode, the second light-emitting element includes at least two first sub-light-emitting modes; in the at least two first sub-light-emitting modes, at least one of the emission color, luminous flux, continuous emission time, and emission interval time of the second light-emitting element is different;
[0037] The button assembly is used to switch between at least two first sub-lighting modes.
[0038] In some alternative implementations, in the second mode, the second light-emitting element and the first light-emitting element include at least two second sub-light-emitting modes;
[0039] In at least two second sub-light emission modes, the second light emission element and the first light emission element differ in at least one of the following: emission color, luminous flux, continuous emission time, and emission interval time.
[0040] The button assembly is used to switch between at least two second sub-lighting modes.
[0041] Some alternative implementations also include:
[0042] A first interface component is disposed on the first base assembly and is electrically connected to the first light-emitting element and the wire assembly respectively;
[0043] The second interface component is disposed on the second base assembly and is electrically connected to the second light-emitting element and the wire assembly respectively;
[0044] At least one of the first interface component and the second interface component is used to power the first light-emitting element and the second light-emitting element through a power source other than the data line.
[0045] In some alternative implementations, the button component is used to switch the mode of the data cable; or,
[0046] When both the first interface component and the second interface component are connected to different electronic devices, the data line is in one of the first, second, third, fourth, and fifth modes. When one of the first and second interface components is connected to an electronic device, the data line is in another of the first, second, third, fourth, and fifth modes.
[0047] The cable of this application includes a shielding member that has light-blocking properties to shield the conductor assembly. When the light guide emits light, the shielding member can shield the conductor assembly, preventing it from being exposed, thereby making the cable look neater and greatly improving the user experience of the cable of this application. Attached Figure Description
[0048] Figure 1 This is a schematic diagram of an optional cable structure in an embodiment of this application;
[0049] Figure 2 This is a schematic diagram of another optional structure of the cable in the embodiments of this application;
[0050] Figure 3 This is a schematic diagram of another optional structure of the cable in the embodiments of this application;
[0051] Figure 4 This is a schematic diagram of another optional structure of the cable in the embodiments of this application;
[0052] Figure 5 This is a schematic diagram of an optional structure of the data line in an embodiment of this application;
[0053] Figure 6 for Figure 5 A sectional view;
[0054] Figure 7 for Figure 5 Another perspective illustration;
[0055] Figure 8 for Figure 5 Exploded view;
[0056] Figure 9 This is a schematic diagram of another optional structure of the data line in the embodiments of this application.
[0057] Reference numerals: 100, cable; 110, conductor assembly; 120, shielding component; 121, shielding layer; 130, light guide component; 200, first base assembly; 210, outer shell; 220, upper cover; 230, lower cover; 240, cylindrical component; 300, first light-emitting component; 400, button assembly; 410, operating component; 420, switch key; 430, elastic component; 500, first interface assembly; 510, first interface component; 520, first circuit board; 600, second base assembly; 700, second interface assembly; 710, second interface component. Detailed Implementation
[0058] The technical solution of this application will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0059] In the embodiments of the present application, it should be noted that unless otherwise specified and limited, the term "connection" should be understood in a broad sense, for example, it can be an electrical connection, or a connection between two elements, it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above-mentioned term can be understood according to the specific circumstances.
[0060] It should be noted that the terms "first", "second", "third" involved in the embodiments of the present application are only to distinguish similar objects, and do not represent a specific order of the objects. Understandably, "first", "second", "third" can be interchanged in a specific order or sequence as allowed. It should be understood that the objects distinguished by "first", "second", "third" can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein.
[0061] The following will be described in detail Figures 1 to 9 The cable 100 and the data line described in the embodiments of the present application will be described in detail.
[0062] The cable 100 described in the embodiments of the present application comprises a wire assembly 110, a light guide 130 and a shielding member 120. The light guide 130 is in a cylindrical shape and is sleeved outside the wire assembly 110 along the length direction; the shielding member 120 is clamped between the wire assembly 110 and the light guide 130; the shielding member 120 has light shielding property to shield the wire assembly 110.
[0063] In the related art, some wire structures are provided with light guide structures, and the wire structures can emit light through the light guide structures. However, when the wire structure emits light through the light guide structure, the internal structure of the wire structure, such as the core wire of the wire structure, will also be exposed, making the wire structure look messy and affecting the user experience. The cable 100 of the present application comprises a shielding member 120, which has light shielding property to shield the wire assembly 110. When the light guide 130 emits light, the shielding member 120 can shield the wire assembly 110 and prevent the wire assembly 110 from being exposed, so that the cable 100 looks cleaner, thereby greatly improving the user experience of the cable 100 of the present application. At the same time, since the light guide 130 is in a cylindrical shape, the light guide 130 can emit light in all areas in the circumferential direction, that is, the light guide 130 can emit light in a 360-degree area in the circumferential direction, so that the entire circumference of the cable 100 emits light. Compared with the wire structure that emits light only in a partial area in the circumferential direction, the cable 100 of the present application can greatly increase the area of the light emitting area of the cable 100 and improve the consistency of the overall appearance of the cable 100, thereby greatly improving the user experience of the cable 100.
[0064] As Figure 5 andFigure 6 As shown, the cable 100, the first seat body assembly 200 and the first light emitting piece 300 are included in the data line. The first light emitting piece 300 is arranged on the seat body assembly. The first end of the cable 100 is connected with the first seat body assembly 200. The light of the first light emitting piece 300 is used for transmission to the light guide piece 130 of the cable 100. Thus, the light guide piece 130 can emit light through the first light emitting piece 300. The cable 100 can emit light as a whole and prevent the wire assembly 110 from being exposed. Thus, the user experience of the data line can be greatly improved.
[0065] Of course, the cable 100 can also be used in other structures. For example, in some embodiments, the cable 100 can also be used as a charging line of an electronic device. For another example, in some other embodiments, the cable 100 can also be used as a connection line of an electronic device which is externally exposed.
[0066] In the embodiments of the present application, the data line can be used for charging and data transmission.
[0067] In the embodiments of the present application, the wire assembly 110 is used for electricity conduction. The wire assembly 110 can be used for data transmission and charging. The structure of the wire assembly 110 is not limited. For example, in some embodiments, the wire assembly 110 can include a core wire. As an example, as shown in FIG. 1 to FIG. 3, the wire assembly 110 can include one core wire. Figure 3 As shown, the wire assembly 110 can include four core wires. As another example, as shown in FIG. 4, the wire assembly 110 can include five core wires. Figure 4 As shown, the wire assembly 110 can include five core wires.
[0068] In the embodiments of the present application, the light guide piece 130 is used for light transmission. The material of the light guide piece 130 is not limited as long as it can guide light. For example, in some embodiments, the material of the light guide piece 130 can be a light guide fiber. For another example, in some other embodiments, the material of the light guide piece 130 can be a light guide high polymer material.
[0069] Here, the light guide piece 130 can have flexibility. As an example, the material of the light guide piece 130 can be an organic nano polymer, a light guide conductive high polymer material, a light guide thermoplastic high polymer material, etc.
[0070] In some embodiments, the light guide piece 130 can be in an exposed state, that is, the light guide piece 130 can be located at the outermost side of the cable 100 to improve the light emitting effect of the light guide piece 130. Of course, in other embodiments, the cable 100 can also include a protection piece which is sleeved outside the light guide piece 130. The protection piece has light transmission property so that the light of the light guide piece 130 can be displayed through the protection piece.
[0071] In the embodiments of the present application, the material of the shielding member 120 is not limited as long as the shielding member 120 has light shielding property and can shield the wire assembly 110. Here, the shielding member 120 can shield the whole wire assembly 110, and here, the wire assembly 110 is completely invisible from the outside. Of course, the shielding member 120 can shield part of the wire assembly 110, and here, the wire assembly 110 is not clearly visible from the outside, but some outlines can be seen, which does not affect the overall appearance of the cable 100.
[0072] Here, the shielding member 120 can be in contact with the wire assembly 110 or not. As an example, as shown in Figs. 1 and 2, the shielding member 120 can tightly wrap outside the wire assembly 110, and here, the shielding member 120 and the wire assembly 110 can be formed together by injection molding. Figure 1 and Figure 4 As another example, as shown in Figs. 3 and 4, the shielding member 120 can be in a cylindrical shape to facilitate the wire assembly 110 to be arranged inside the cylindrical shielding member 120. Figure 2 and Figure 3 Here, the shielding member 120 can be in contact with the wire assembly 110 or not. As an example, as shown in Figs. 1 and 2, the shielding member 120 can tightly wrap outside the wire assembly 110, and here, the shielding member 120 and the wire assembly 110 can be formed together by injection molding.
[0073] Here, the shielding member 120 can be arranged adjacent to the wire assembly 110, that is, there is no other structural member between the shielding member 120 and the wire assembly 110, and here, the shielding member 120 can be in contact with the wire assembly 110 or not.
[0074] In some embodiments, the shielding member 120 can be in contact with the light guide member 130, that is, there is no other structural member between the shielding member 120 and the light guide member 130. Of course, in other embodiments, other structural members can be arranged between the shielding member 120 and the light guide member 130.
[0075] The way in which the shielding member 120 has light shielding property is not limited.
[0076] For example, at least part of the material of the shielding member 120 can be light shielding material. Here, the shielding member 120 can be entirely light shielding material or partially light shielding material. As an example, at least part of the material of the shielding member 120 can be dark plastic or dark rubber.
[0077] For another example, at least part of the surface of the shielding member 120 can have a concave-convex structure to make the shielding member 120 have light shielding property.
[0078] Here, the whole surface of the shielding member 120 can have a concave-convex structure. Of course, part of the surface of the shielding member 120 can have a concave-convex structure.
[0079] Here, the form of the uneven structure is not limited, as long as it can increase the light-blocking performance of the shielding member 120. For example, the uneven structure can be similar to a frosted surface. Another example is a brushed surface. Yet another example is a matte surface.
[0080] For example, at least a portion of the material of the shielding member 120 is a reflective material. Here, the shielding member 120 may be entirely or partially reflective. As an example, at least a portion of the material of the shielding member 120 may be reflective leather, reflective heat-bonded film, reflective inkjet fabric, etc.
[0081] For example, at least a portion of the surface of the shield 120 is reflective, so that the shield 120 has a light-blocking property.
[0082] Here, the entire surface of the shielding member 120 can be reflective. Of course, the surface of the shielding member 120 can also be partially reflective.
[0083] Here, the form of surface reflection is not limited, as long as it increases the light-blocking property of the shielding member 120. For example, at least a portion of the surface of the shielding member 120 can be similar to a mirror. As another example, at least a portion of the surface of the shielding member 120 can be a light-colored surface, which is reflective. As an example, at least a portion of the surface of the shielding member 120 is white, light gray, etc.
[0084] In some embodiments, such as Figure 2 As shown, the material of the shielding member 120 can be a light-blocking material; here, the shielding member 120 as a whole has light-blocking properties. Of course, as... Figure 3 As shown, the shielding member 120 may have a shielding layer 121, which has light-blocking properties. Here, the way the shielding layer 121 has light-blocking properties is similar to the way the shielding member 120 has light-blocking properties, and will not be described again here. As an example, at least a portion of the material of the shielding layer 121 is a light-blocking material. As another example, at least a portion of the surface of the shielding layer 121 has an uneven structure to make the shielding member 120 have light-blocking properties. As yet another example, at least a portion of the material of the shielding layer 121 is a reflective material. As yet another example, at least a portion of the surface of the shielding layer 121 is reflective.
[0085] In one application, the shielding member 120 may have a shielding layer 121, the color of which is one of white, gray, light blue and light green, so that the shielding layer 121 can both block light through the light-colored shielding layer 121 and reflect light through the light-colored shielding layer 121, thereby improving the light guiding effect of the light guide member 130.
[0086] In some embodiments, the shielding member 120 can be an insulating structure, where the shielding member 120 not only prevents the wire assembly 110 from being disturbed, but also prevents the wire assembly 110 from being exposed to light, thereby greatly improving the adaptability of the cable 100.
[0087] In the embodiments of the present application, the structure of the first light emitting member 300 is not limited. For example, the first light emitting member 300 can be an incandescent lamp, an LED lamp, a fluorescent lamp, an RGB lamp, etc.
[0088] The manner in which the light of the first light emitting member 300 is transmitted to the light guide member 130 of the cable 100 is not limited. For example, the first light emitting member 300 can be in contact with the light guide member 130 of the cable 100, or can be spaced apart from the light guide member 130, where the light of the first light emitting member 300 can be directly transmitted to the light guide member 130. Of course, the first light emitting member 300 and the light guide member 130 of the cable 100 can also be connected through light guide glue or a light guide structure to transmit light through the light guide glue or the light guide structure.
[0089] In the embodiments of the present application, the first seat body assembly 200 is used to fix the first light emitting member 300, and the structure of the first seat body assembly 200 is not limited. For example, the first seat body assembly 200 can be a block structure. For another example, the first seat body assembly 200 can be a columnar structure.
[0090] In some optional implementations of the embodiments of the present application, as shown in Figure 5 and Figure 6 the data line further includes a first interface assembly 500, which is arranged in the first seat body assembly 200 and is electrically connected with the first light emitting member 300 and the wire assembly 110, respectively, so that the data line can be electrically connected with an external electronic device through the first interface assembly 500, and the first light emitting member 300 can be powered by the external electronic device.
[0091] In the implementations, the structure of the first interface assembly 500 is not limited. For example, as shown in Figure 6 and 8 the first interface assembly 500 can include a first interface member 510 and a first circuit board 520, the first circuit board 520 can be arranged in the first seat body assembly 200 and electrically connected with the first light emitting member 300 and the wire assembly 110, respectively, one end of the first interface member 510 can be electrically connected with the first circuit board 520 in the first seat body assembly 200, and the other end of the first interface member 510 can extend out of the first seat body assembly 200 to be electrically connected with an interface part of an external electronic device, so that the wire assembly 110 can be electrically connected with the electronic device through the first interface member 510 and the first circuit board 520.
[0092] In the implementations, as shown in Figure 6And Figure 8 As shown in FIG. 2, the first seat assembly 200 can include a housing 210, an upper cover 220, a lower cover 230, and a cylindrical member 240. The first end of the cable 100 and part of the first circuit board 520 can be clamped between the upper cover 220 and the lower cover 230 and electrically connected, and the first light emitting member 300 can also be located between the upper cover 220 and the lower cover 230 and correspond to the position of the light guide member 130 of the first end of the cable 100; the upper cover 220 and the lower cover 230 can be connected by an adhesive structure, a buckle structure, a threaded structure, etc. Part of the upper cover 220 and the lower cover 230, and all of the first circuit board 520 are located in the space defined by the housing 210, and the other end of the first interface member 510 extends out of the housing 210; another part of the upper cover 220 and the lower cover 230, and part of the cable 100 are located in the cavity of the cylindrical member 240, and the cylindrical member 240 and the housing 210 can be arranged adjacent in the length direction and in the exposed state.
[0093] Here, the housing 210, the upper cover 220, and the lower cover 230 can be plastic structures with a certain rigidity to protect the first interface assembly 500 and the first light emitting member 300.
[0094] Here, the cylindrical member 240 can be a flexible structure so that the cylindrical member 240 can not only protect the other part of the upper cover 220 and the lower cover 230, and part of the cable 100, but also deform with the cable 100, thereby improving the adaptability of the data line. As an example, the cylindrical member 240 can be a rubber structure
[0095] In some optional implementations of the embodiments of the present application, as shown in Figure 6 And Figure 7 As shown in FIG. 2, the data line can further include a key assembly 400 arranged in the seat assembly; the key assembly 400 is used to switch the first light emitting mode of the first light emitting member 300; the first light emitting mode can include at least one of light emitting color, light emitting flux, continuous light emitting time, and light emitting interval time; by switching the first light emitting mode of the first light emitting member 300 through the key assembly 400, the light guide member 130 of the cable 100 can have different light emitting modes, thereby greatly improving the display effect of the cable 100.
[0096] In the present implementation, the structure of the key assembly 400 is not limited. For example, as shown in Figure 6 And Figure 8As shown, the key assembly 400 can include an operating member 410, a switch key 420 and an elastic member 430. The switch key 420 can be fixed to the first circuit board 520, the first circuit board 520 is electrically connected with the first light emitting member 300, the switch key 420 can switch the first light emitting mode of the first light emitting member 300 through the first circuit board 520. Part of the operating member 410 can pass through the first seat body assembly 200 and be in a state of exposure, part of the operating member 410 can be in contact with the switch key 420, thereby facilitating the user to operate the operating member 410 from the outside to control the switch key 420 to switch. The elastic member 430 can be arranged between the first circuit board 520 and the operating member 410, to provide a force to the operating member 410 to move away from the side of the switch key 420, so that after the user presses the operating member 410 to make the switch key 420 switch, the elastic member 430 makes the operating member 410 return to the original position. Of course, the elastic member 430 can also be arranged between the first seat body assembly 200 and the operating member 410.
[0097] The structure of the operating member 410 is not limited. For example, the operating member 410 can be a plastic structure. The structure of the elastic member 430 is not limited. For example, the elastic member 430 can be a rubber structure, or a spring.
[0098] The implementation mode of the switch key 420 switching the first light emitting mode of the first light emitting member 300 through the first circuit board 520 is not limited. For example, a controller or a control circuit can be arranged on the first circuit board 520, the switch key 420 can switch the first light emitting mode of the first light emitting member 300 through the controller and the control circuit.
[0099] The first light-emitting mode can include at least one of a light-emitting color, a light-emitting flux, a light-emitting duration, and a light-emitting interval. The light-emitting color is not limited. For example, the light-emitting color can be red, yellow, blue, green, white, or the like. The light-emitting flux is not limited in size. For example, the light-emitting flux can be 100 lumens per watt, 120 lumens per watt, 150 lumens per watt, or the like. The light-emitting duration is not limited in length. For example, the light-emitting duration can be 2 minutes, 5 minutes, 10 minutes, 15 minutes, or the like. The light-emitting interval is not limited in length. For example, the light-emitting interval can be 30 seconds, 1 minute, 2 minutes, 3 minutes, or the like. As an example, the first light-emitting mode can include a light-emitting color of red, a light-emitting duration of 2 minutes, and a light-emitting interval of 30 seconds, that is, the first light-emitting piece 300 emits red light for 2 minutes, then does not emit light for 30 seconds, then emits red light for 2 minutes again, then does not emit light for 30 seconds again, and so on. As another example, the first light-emitting mode can include a light-emitting color of red and yellow, a light-emitting duration of 5 minutes, and a light-emitting interval of 30 seconds, that is, the first light-emitting piece 300 emits red light for 5 minutes, then does not emit light for 30 seconds, then emits yellow light for 2 minutes, then does not emit light for 30 seconds, then emits red light for 5 minutes again, and so on.
[0100] In the present implementation, as shown in FIG. 6, the data line can further include a second seat assembly 600 and a second light-emitting piece. Figure 9 The second seat assembly 600 is connected to the second end of the cable 100, and the second light-emitting piece is arranged on the second seat assembly 600. Light rays of the second light-emitting piece are used to be transmitted to the light guide piece 130 of the cable 100.
[0101] The structure of the second light-emitting piece is not limited. For example, the second light-emitting piece can be an incandescent lamp, an LED lamp, a fluorescent lamp, an RGB lamp, or the like.
[0102] The way in which the light rays of the second light-emitting piece are transmitted to the light guide piece 130 of the cable 100 is not limited. For example, the second light-emitting piece can be in contact with the light guide piece 130 of the cable 100, or can be arranged at intervals. Of course, the second light-emitting piece and the light guide piece 130 of the cable 100 can also be connected through light guide glue or a light guide structure.
[0103] Here, the second light-emitting piece and the first light-emitting piece 300 can both make the light guide piece 130 emit light. The second light-emitting piece and the first light-emitting piece 300 can make the light guide piece 130 emit light at the same time, or can make the light guide piece 130 emit light at different times.
[0104] The second seat assembly 600 is used to fix the second light-emitting piece, and the structure of the second seat assembly 600 is not limited. For example, the second seat assembly 600 can have a block structure. As another example, the second seat assembly 600 can have a columnar structure.
[0105] The key assembly 400 can also be used to switch a second light-emitting mode of the second light-emitting member; wherein the second light-emitting mode comprises at least one of a light-emitting color, a light-emitting flux, a continuous light-emitting time, and a light-emitting interval time.
[0106] Here, the second light-emitting member can be electrically connected with the key assembly 400 through the wire assembly 110.
[0107] Here, the second light-emitting mode is similar to the first light-emitting mode described above, and will not be described again here. The light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time have been described above and will not be described again here.
[0108] The second light-emitting mode can be the same as or different from the first light-emitting mode.
[0109] In some embodiments, the data line can comprise at least two modes of the first mode, the second mode, the third mode, the fourth mode, and the fifth mode; that is, the data line can have different modes.
[0110] In the first mode, the second light-emitting mode is the same as the first light-emitting mode; here, the light-emitting parameters of the first light-emitting member 300 and the second light-emitting member are the same. As an example, the light-emitting parameters such as the light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time of the first light-emitting member 300 and the second light-emitting member are all the same. The light-emitting effect of the light guide member 130 is determined by the first light-emitting member 300 and the second light-emitting member together, thereby greatly improving the light-emitting effect of the light guide member 130.
[0111] In the second mode, the second light-emitting mode is different from the first light-emitting mode; here, the light-emitting parameters of the first light-emitting member 300 and the second light-emitting member are different. As an example, at least one of the light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time of the first light-emitting member 300 and the second light-emitting member is different. The light-emitting effect of the light guide member 130 is determined by the first light-emitting member 300 and the second light-emitting member together. In an application, the light-emitting colors of the first light-emitting member 300 and the second light-emitting member are different, thereby making the light guide member 130 form a color-changing effect.
[0112] In the third mode, the second light-emitting member and the first light-emitting member 300 do not emit light, that is, the light guide member 130 does not emit light.
[0113] In the fourth mode, the second light-emitting member emits light, and the first light-emitting member 300 does not emit light; that is, the light guide member 130 emits light based on the second light-emitting member, and the light-emitting effect of the light guide member 130 is determined by the second light-emitting member.
[0114] In the fifth mode, the first light-emitting piece 300 emits light, and the second light-emitting piece does not emit light; that is, the light guide piece 130 emits light based on the first light-emitting piece 300, and the light-emitting effect of the light guide piece 130 is determined by the first light-emitting piece 300.
[0115] The data line can have the above-mentioned five modes, the above-mentioned four modes, the above-mentioned three modes, or the above-mentioned two modes.
[0116] As an example, in the first mode, the second light-emitting piece includes at least two first sub-light-emitting modes; in the at least two first sub-light-emitting modes, at least one of the light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time of the second light-emitting piece is different; and the key assembly 400 is used to switch the at least two first sub-light-emitting modes, so that the light guide piece 130 has different display effects. Since the second light-emitting mode is the same as the first light-emitting mode in the first mode, the light-emitting parameters such as the light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time of the first light-emitting piece 300 are the same as those of the first light-emitting piece 300, so that the light guide piece 130 has a more distinct display effect. At the same time, since the at least two first sub-light-emitting modes are different, the light guide piece 130 can be switched between different more distinct display effects, thereby greatly improving the display effect of the data line.
[0117] As another example, in the second mode, the second light-emitting piece and the first light-emitting piece 300 include at least two second sub-light-emitting modes; in the at least two second sub-light-emitting modes, at least one of the light-emitting color, the light-emitting flux, the continuous light-emitting time, and the light-emitting interval time of the second light-emitting piece and the first light-emitting piece 300 is different; and the key assembly 400 is used to switch the at least two second sub-light-emitting modes; here, since the light-emitting effects of the second light-emitting piece and the first light-emitting piece 300 are different, different regions of the light guide piece 130 can have different display effects, and since the light of the second light-emitting piece and the first light-emitting piece 300 is displayed through the light guide piece 130, the light guide piece 130 can also display the mixed effect of the light of the second light-emitting piece and the light of the first light-emitting piece 300, thereby greatly improving the display effect of the data line.
[0118] In use, the first light-emitting piece 300 can make the light guide piece 130 on the first end side of the cable 100 have a display effect corresponding to the first light-emitting piece 300, the second light-emitting piece can make the light guide piece 130 on the second end side of the cable 100 have a display effect corresponding to the second light-emitting piece, and the first light-emitting piece 300 and the second light-emitting piece can make the light guide piece 130 on the middle part of the cable 100 have a mixed display effect.
[0119] In some embodiments, the data cable may further include a second interface component 700, which is disposed on the second base component 600 and electrically connected to the second light-emitting element and the wire component 110, respectively. The data cable can be electrically connected to an external electronic device through the second interface component 700.
[0120] At least one of the first interface component 500 and the second interface component 700 can be used to power the first light-emitting element 300 and the second light-emitting element through a power source other than the data cable.
[0121] Here, the first interface component 500 can be used to power the first light-emitting element 300 and the second light-emitting element through a power source other than the data cable, the second interface component 700 can be used to power the first light-emitting element 300 and the second light-emitting element through a power source other than the data cable, the first interface component 500 can be used to power the first light-emitting element 300 through a power source other than the data cable, and the second interface component 700 can be used to power the second light-emitting element through a power source other than the data cable.
[0122] The power source outside the data cable can be a separate power supply structure or a power supply structure within the electronic device.
[0123] The structure of the second interface component 700 is not limited. For example, as Figure 9 As shown, the second interface assembly 700 may include a second interface component 710 and a second circuit board. The second circuit board may be disposed within the second base assembly 600 and electrically connected to the second light-emitting component and the wire assembly 110, respectively. One end of the second interface component 710 may be electrically connected to the second circuit board within the second base assembly 600, and the other end of the second interface component 710 may extend outside the second base assembly 600 to be electrically connected to the interface of an external electronic device, thereby realizing the electrical connection between the wire assembly 110 and the electronic device through the second interface component 710 and the second circuit board.
[0124] The structure of the second seat assembly 600 is similar to that of the first seat assembly 200 described above, and will not be repeated here.
[0125] In this implementation, the button component 400 can be used to switch the data cable mode. During use, the user can press the button component 400 to switch the data cable mode. Of course, the data cable mode can also be switched in other ways.
[0126] As an example, when the first interface assembly 500 and the second interface assembly 700 are connected with different electronic devices, the data line is in one of the first mode, the second mode, the third mode, the fourth mode and the fifth mode, and when one of the first interface assembly 500 and the second interface assembly 700 is connected with an electronic device, the data line is in another of the first mode, the second mode, the third mode, the fourth mode and the fifth mode.
[0127] The structure of the electronic device is not limited. The electronic device can be a device providing power, a device needing power supply, or a device needing communication. For example, the electronic device can be a mobile phone, a computer, a power supply device, a charging device, etc.
[0128] Here, the different electronic devices can transmit data or charge.
[0129] Here, when the first interface assembly 500 and the second interface assembly 700 are connected with different electronic devices, the different electronic devices can supply power to the first light emitting member 300 and the second light emitting member, or two of the different electronic devices can supply power to the first light emitting member 300 and the second light emitting member, respectively.
[0130] Here, when one of the first interface assembly 500 and the second interface assembly 700 is connected with an electronic device, the electronic device can supply power to at least one of the first light emitting member 300 and the second light emitting member.
[0131] In an application, when the first interface assembly 500 and the second interface assembly 700 are connected with different electronic devices, the data line is in the second mode; and when one of the first interface assembly 500 and the second interface assembly 700 is connected with an electronic device, the data line is in the fourth mode or the fifth mode, so that the light emitting effect of the light guide member 130 can remind the user of the current connection state of the data line, thereby greatly improving the adaptability of the data line.
[0132] In the specific embodiments, each specific technical feature described can be combined in any suitable manner without contradiction, for example, different embodiments and technical solutions can be formed by combining different specific technical features. In order to avoid unnecessary repetition, various possible combinations of each specific technical feature in the utility model are not described again.
[0133] The above is merely a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A cable, characterized by The data line comprises: a wire assembly; a light guide member in a cylindrical shape and sleeved on the wire assembly along a length direction; a shielding member arranged between the wire assembly and the light guide member, the shielding member having light shielding property to shield the wire assembly.
2. The cable of claim 1, wherein, The light guide member is in an exposed state; and / or the shielding member is in a cylindrical shape.
3. The cable of claim 1, wherein, At least part of the material of the shielding member is light shielding material; or At least part of the surface of the shielding member has a concave-convex structure to make the shielding member have light shielding property; or At least part of the material of the shielding member is light reflecting material. Or At least part of the surface of the shielding member is light reflecting.
4. The cable of claim 1, wherein, The material of the shielding member is light shielding material; or The shielding member has a shielding layer having light shielding property.
5. The cable of claim 1, wherein, The shielding layer of the shielding member has one of white color, gray color, light blue color and light green color.
6. The cable according to any one of claims 1 to 5, characterized in that, The shielding member is in an insulating structure.
7. The cable of claim 6, wherein, The shielding member is in contact with the light guide member, and the shielding member is arranged adjacent to the wire assembly.
8. A data line comprising the cable according to any one of claims 1 to 7, a first seat assembly and a first light emitting member; The first light emitting member is arranged on the seat assembly, a first end of the cable is connected to the first seat assembly, and light of the first light emitting member is used to be transmitted to the light guide member of the cable.
9. The data line of claim 8, wherein, Further comprising: a key assembly arranged on the seat assembly; The key assembly is used to switch a first light emitting mode of the first light emitting member; The first light emitting mode comprises at least one of light emitting color, light emitting flux, continuous light emitting time and light emitting interval time.
10. The data line of claim 9, wherein, Further comprising: a second seat assembly connected to a second end of the cable; a second light emitting member arranged on the second seat assembly; Light of the second light emitting member is used to be transmitted to the light guide member of the cable.
11. The data line of claim 10, wherein, The key assembly is further used to switch a second light emitting mode of the second light emitting member; The second light emitting mode comprises at least one of light emitting color, light emitting flux, continuous light emitting time and light emitting interval time.
12. The data line of claim 11, wherein, The data line comprises at least two modes of a first mode, a second mode, a third mode, a fourth mode and a fifth mode; In the first mode, the second light emitting mode is the same as the first light emitting mode; In the second mode, the second light emitting mode is different from the first light emitting mode; In the third mode, the second light emitting member and the first light emitting member do not emit light; In the fourth mode, the second light emitting member emits light, and the first light emitting member does not emit light; In the fifth mode, the first light emitting member emits light, and the second light emitting member does not emit light.
13. The data line of claim 12, wherein, In the first mode, the second light emitting member comprises at least two first sub light emitting modes; in the at least two first sub light emitting modes, at least one of light emitting color, light emitting flux, continuous light emitting time and light emitting interval time of the second light emitting member is different; The key assembly is used to switch the at least two first sub light emitting modes.
14. The data line of claim 12, wherein, In the second mode, the second light emitting member and the first light emitting member comprise at least two second sub light emitting modes; In at least two second sub-light-emitting modes, at least one of the light-emitting color, the light-emitting flux, the continuous light-emitting time and the light-emitting interval time of the second light-emitting member and the first light-emitting member is different; The key assembly is used for switching at least two second sub-light-emitting modes.
15. The data line of any of claims 12 to 14, wherein, Further comprising: A first interface assembly arranged in the first seat body assembly and electrically connected with the first light-emitting member and the wire assembly respectively; A second interface assembly arranged in the second seat body assembly and electrically connected with the second light-emitting member and the wire assembly respectively; At least one of the first interface assembly and the second interface assembly is used for supplying power to the first light-emitting member and the second light-emitting member through a power supply other than the data line.
16. The data line of claim 15, wherein, The key assembly is used for switching the mode of the data line; or, When the first interface assembly and the second interface assembly are connected with different electronic devices, the data line is in one mode of the first mode, the second mode, the third mode, the fourth mode and the fifth mode, and when one of the first interface assembly and the second interface assembly is connected with an electronic device, the data line is in another mode of the first mode, the second mode, the third mode, the fourth mode and the fifth mode.