Smart wearable device capable of accommodating earphones, and smart watch
By designing the headphone accommodating slot and magnetic suction structure in the smart wearable device, the problem of inconvenience of existing devices is solved, and the integration of headphone functions and wearable functions and the improvement of user experience is achieved.
Patent Information
- Application Number
- PCT/CN2024/091960
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-21
- Filing Date
- 2024-05-09
- Publication Date
- 2025-05-30
AI Technical Summary
Existing Bluetooth headsets and wearable devices usually need to be matched with a special headset box or charging box, resulting in inconvenience in the device and increasing user burden.
An intelligent wearable device that can accommodate headphones is designed, by setting a headphone accommodating slot on the main body of the device and fixing the headphones in the device using a magnetic suction structure, thus eliminating the need for an additional storage box.
It realizes the extremely portability of the device, ensures the integration of headphone functions and wearable functions, and improves user experience and practicality.
Smart Images

Figure CN2024091960_30052025_PF_FP_ABST
Abstract
Description
Smart wearable device and smart watch capable of storing earphones Technical Field
[0001] The present invention relates to the technical field of wearable devices, and further to a smart wearable device and a smart watch capable of accommodating headphones. Background Art
[0002] At present, Bluetooth headsets and wearable devices are mostly two independent entities, and users need to match them with special headset boxes or charging boxes when using Bluetooth headsets. However, headset boxes are generally not portable enough, and users need to put them in their pockets or bags, which easily increases the burden on users.
[0003] In summary, the existing technology needs to be improved.
[0004] Summary of the Invention
[0005] In response to the above technical problems, the purpose of the present invention is to provide a smart wearable device and a smart watch that can store headphones, which can store headphones in the wearable device, greatly improving the portability of the device. There is no need for a separate storage box for headphones, and the headphone function and wearable function are integrated into one, which has good practicality.
[0006] In order to achieve the above-mentioned object, the present invention provides a smart wearable device capable of accommodating earphones, comprising:
[0007] A device body, the device body including a main unit, the device body being provided with an earphone receiving slot for receiving corresponding earphones, the earphone receiving slot being formed partially around the circumference of the main unit;
[0008] The earphones each include an earpiece and a handle, and the contours of the earphone receiving slots are adapted to the earpiece and the handle.
[0009] The earpiece part and the handle part are provided with a first magnetic structure, and the side wall of the host close to the earphone receiving slot is provided with a second magnetic structure corresponding to the first magnetic structure, which is used for magnetic fixation between the earphone and the earphone receiving slot.
[0010] It is worth mentioning that the earpiece and handle of the headset have matching earphone receiving slots, which makes the headset very stable when stored; and the earphone receiving slot is designed along the circumference of the host, which expands the matching surface area between the headset and the host. The magnetic structure design of the two can effectively improve the fixing effect and the user's tactile experience when taking and placing the headset.
[0011] In some embodiments, the earpiece and the handle of the headset face the same direction, and are connected to the handle via a bent section, thereby forming a recessed cavity.
[0012] The first magnetic structure includes at least two earphone magnetic parts, one of which is fixed to the earpiece, and the other is fixed to the handle to avoid the bending section;
[0013] The second magnetic structure includes a host magnetic portion, which is arranged on the side wall of the host close to the earphone, and the host magnetic portion and the earphone magnetic portion are arranged correspondingly, and is used to magnetically fix the earphone through the host magnetic portion and the earphone magnetic portion.
[0014] In some embodiments, among the earphone magnetic attraction portions provided on the handle portion, the earphone magnetic attraction portion having the smallest relative distance to the bent section is configured as a first pressing portion;
[0015] The magnetic attraction portion of the host includes a second pressing portion, and the second pressing portion is located on the side wall of the host facing the handle portion;
[0016] When the earphone is accommodated in the earphone receiving slot, the first pressing portion and the second pressing portion have a preset spacing in the extension direction of the earphone receiving slot, so that the first pressing portion and the second pressing portion are misaligned, so that the second pressing portion attracts the first pressing portion and drives the earphone to move along the extension direction of the earphone receiving slot, so as to press the earphone against the bottom of the earphone receiving slot.
[0017] It should be noted that the first pressing part on the handle and the second pressing part on the host are staggered. When the earphones are in the stored state, the handle can still be subjected to a certain attraction, thereby achieving relative compression of the earphones, making the earphones more secure when stored and not easy to fall off; and when taking out the earphones, due to the attraction of this position, the user will feel a certain damping feeling, which feels better and is more conducive to grabbing the earphones.
[0018] In some embodiments, the contour of the handle portion is a conical surface with a monotonically decreasing cross-sectional area, and the contour of the earphone receiving groove corresponding to the handle portion matches the contour of the conical surface, so that the earphone is guided by the conical surface when received in the earphone receiving groove.
[0019] In some embodiments, the handle portion includes a handle body and an adjustable tail section, one end of the handle body is connected to the bending section, and the other end is rotatably connected to the adjustable tail section, and the adjustable tail section is fixedly provided with a magnetic portion of the earphone.
[0020] In the first wearing state, the adjustable tail section and the handle body are arranged in a straight line, so that the headset is worn in a normal wearing manner;
[0021] In the second wearing state, the adjustable tail section rotates toward the handle body, so that the earphone magnetic attraction portion on the adjustable tail section and the earphone magnetic attraction portion on the earpiece portion are correspondingly adsorbed, so that the earphone is worn in an ear-clip style.
[0022] It is understandable that the magnets on the handle and earpiece of the headset are used rationally, so that the adjustable tail section can achieve different wearing styles through a certain rotation, which can adapt to people with different wearing habits and improve the user experience.
[0023] In some embodiments, a spring piece is provided on a side wall of the main unit close to the handle portion, and the spring piece extends away from the main unit to form a protrusion;
[0024] The tail section of the handle has a groove. When the earphone is inserted into the earphone receiving slot for fixation, the tail section of the handle passes over the raised portion so that the raised portion abuts against the groove to fix and limit the handle.
[0025] It should be noted that the raised part of the shrapnel can play a role in locking and limiting the handle, which greatly reduces the possibility of the earphones falling off when stored in the earphone receiving slot. In addition, due to the elastic characteristics of the shrapnel, the user will have a certain resistance when pulling out the earphones, which also prevents the earphones from sliding out or falling out of the hand due to excessive force of the user, thereby causing damage to the earphones.
[0026] In some embodiments, the raised portion has a first mating surface and a second mating surface, a side wall of the main unit close to the handle portion is a base surface, and an inclination angle of the first mating surface relative to the base surface is smaller than an inclination angle of the second mating surface relative to the base surface;
[0027] Thereby, when the earphone is installed into the earphone receiving slot, the tail section of the handle portion contacts the first mating surface and the second mating surface in sequence. The first mating surface is suitable for providing a low resistance mode to guide the installation process of the earphone, and the second mating surface is suitable for providing a high resistance mode to prevent the earphone from falling off.
[0028] It can be understood that the first mating surface and the second mating surface of the raised portion have different inclination angles, so that when the user inserts the earphone into the earphone receiving slot, the handle portion contacts the first mating surface first, and the small resistance makes it easy to insert the earphone. When the handle portion contacts the second mating surface, it can also form a partial engagement with it to prevent the earphone from accidentally falling off, thereby improving the practicality and operability of the device.
[0029] In some embodiments, the earphone is provided with a charging contact, the charging contact is located in the bending section, and the host is provided with a charging probe corresponding to the charging contact. When the earphone is inserted into the earphone receiving slot, the charging contact and the charging probe are connected, so that the earphone can be charged through the host.
[0030] In some embodiments, the earphone receiving slot is divided into a first receiving slot and a second receiving slot by the outline of the earpiece portion and the outline of the handle portion;
[0031] The host protrudes from the connected portion of the first accommodating groove and the second accommodating groove to form a limiting edge, so that when the earphone is accommodated in the earphone accommodating groove, the recessed cavity on the earphone abuts against the limiting edge on the host, which is suitable for relative limitation of the earphone and the host.
[0032] Here, the limiting edge extending from the host abuts against the recessed cavity on the earphone, forming a snap-on structure between the host and the earphone, so that the earphone can be locked in place through the snap-on structure when being stored, preventing the earphone from sliding along the receiving groove, and also allowing the host to provide certain support to the earphone, making the storage of the earphone more stable.
[0033] In some embodiments, the number of the earphone receiving slots is two, so that the two earphone receiving slots can correspondingly accommodate two earphones;
[0034] The two earphone receiving slots are symmetrically distributed relative to the length direction of the main unit, so that the two earphones partially surround the main unit when they are stored in the earphone receiving slots.
[0035] In some embodiments, the device body is provided with a wrapping band relative to the periphery of the host;
[0036] There is a preset gap between the wrapping belt and the host to form part of the earphone receiving slot. When the earphone is stored in the earphone receiving slot, the handle part is limited between the corresponding wrapping belt and the host.
[0037] It can be understood that the partial earphone receiving groove formed by the wrapping belt is more conducive to production and processing, and can be adjusted in time according to the different materials, sizes and other factors of the handle part. There is no need to groove the main body of the equipment, which will not cause waste of materials and has better operability.
[0038] In some embodiments, the length of the preset gap is no greater than the length of the handle portion;
[0039] When the earphone is accommodated in the earphone receiving slot, at least a portion of the bent section is protruding relative to the earphone receiving slot, so that the bent section is used as a hand-holding position, thereby allowing the earphone to be pulled out of the earphone receiving slot through the hand-holding position.
[0040] It is worth mentioning that a hand-holding position is formed here by partially bending the section, which makes it easier for users to take out the earphones. While ensuring that the earphones are securely stored, improvements and optimizations have been made to the taking and placing of the earphones, thereby improving the user experience.
[0041] In some embodiments, the handle portion is configured as a wear-resistant round head at one end away from the earpiece portion, and the friction end surface of the wear-resistant round head faces the main unit;
[0042] And / or, a wear-resistant strip is provided on a side of the wrapping belt close to the handle portion to avoid friction between the handle portion and the wrapping belt.
[0043] Another aspect of the present invention also provides a smart watch, comprising a watch body and a wireless headset, wherein the wireless headset is detachably connected to the watch body;
[0044] The above-mentioned smart wearable device that can accommodate headphones is the smart watch, wherein the host is configured as the watch body, and the headphones are configured as wireless headphones, so that the wireless headphones can be fixedly stored relative to the watch body.
[0045] Compared with the prior art, the smart wearable device and smart watch capable of storing headphones provided by the present invention have the following beneficial effects:
[0046] 1. The present invention provides a smart wearable device capable of storing headphones. The earpiece and handle of the headphones are provided with matching headphone receiving slots, so that the headphones are very stable when stored. Moreover, when there are two headphone receiving slots, the headphone receiving slots can be semi-enclosed relative to the host, thereby expanding the matching surface area between the headphones and the host. Furthermore, through the magnetic attraction structure design of the two, the fixing effect can be effectively improved, as well as the user's tactile experience when taking and placing the headphones.
[0047] 2. The present invention provides a smart wearable device that can store earphones. The earphone magnetic attraction portion on the handle and the corresponding host magnetic attraction portion are staggered. When the earphones are in the stored state, the handle can still be subjected to a certain attraction, thereby achieving relative compression of the earphones, making the earphones more secure when stored and not easy to fall off; and when taking out the earphones, due to the attraction of this position, the user will feel a certain damping feeling, which makes the hand feel better and is more conducive to grabbing the earphones.
[0048] 3. The present invention provides a smart wearable device capable of storing earphones. The raised portion of the shrapnel can play a role in locking and limiting the handle portion, thereby greatly reducing the possibility of the earphones falling off when stored in the earphone receiving slot. In addition, due to the elastic properties of the shrapnel, the user will have a certain resistance when pulling out the earphones, which also prevents the earphones from sliding out or falling out of the hand due to excessive force applied by the user, thereby preventing the earphones from being damaged.
[0049] 4. The present invention provides a smart wearable device that can store earphones. A hand-holding position is formed by partially bending the section, making it easier for users to extract the earphones. While ensuring that the earphones are securely stored, the process of taking and placing the earphones is improved and optimized, thereby enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0050] The preferred embodiments will be described below in a clear and understandable manner with reference to the accompanying drawings to further illustrate the above-mentioned characteristics, technical features, advantages and implementation methods of the present invention.
[0051] FIG1 is a schematic cross-sectional view of an embodiment of the present invention;
[0052] FIG2 is a cross-sectional schematic diagram of another state of an embodiment of the present invention;
[0053] FIG3 is a cross-sectional schematic diagram of one state of an embodiment of the present invention;
[0054] FIG4 is a schematic structural diagram of an embodiment of the present invention;
[0055] FIG5 is a schematic structural diagram of another state of an embodiment of the present invention;
[0056] FIG6 is a partial structural diagram of an embodiment of the present invention;
[0057] FIG7 is a schematic structural diagram of an earphone according to an embodiment of the present invention;
[0058] FIG8 is a schematic structural diagram of an earphone in another state according to an embodiment of the present invention;
[0059] FIG9 is a partial cross-sectional view of an embodiment of the present invention;
[0060] FIG10 is a schematic structural diagram of one embodiment of the present invention;
[0061] FIG11 is a schematic diagram of the overall structure of a smart watch in one embodiment of the present invention.
[0062] Explanation of the accompanying reference numerals: earpiece portion 11; bending section 12; handle portion 13; handle body 131; adjustable tail section 132; wear-resistant round head 133; charging contact 14; earphone receiving slot 20; first receiving slot 201; second receiving slot 202; main unit 21; limiting edge 211; charging probe 22; magnet No. 1 31; magnet No. 2 32; magnet No. 3 33; magnet No. 4 34; magnet No. 5 35; magnet No. 6 36; spring piece 7; first mating surface 71; second mating surface 72; wrapping strap 8; wear-resistant strip 81; watch strap 9. DETAILED DESCRIPTION
[0063] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific embodiments of the present invention will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings and other embodiments can be obtained based on these drawings without inventive work.
[0064] To simplify the drawings, only portions relevant to the invention are schematically depicted in each figure; they do not represent the actual structure of the product. Furthermore, to simplify the drawings and facilitate understanding, in some figures, only one component with the same structure or function is schematically depicted or labeled. In this document, "one" not only means "only one" but also "more than one."
[0065] It should be further understood that the term "and / or" used in this specification and the appended claims refers to and includes any and all possible combinations of one or more of the associated listed items.
[0066] It should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they can refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in the present invention based on specific circumstances.
[0067] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.
[0068] In addition, in the description of the present application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0069] In one embodiment, referring to Figures 1 to 3 of the specification, a smart wearable device capable of accommodating earphones provided by the present invention is described. The smart wearable device capable of accommodating earphones provided by the present invention can accommodate the earphones into the wearable device, thereby greatly improving the portability of the device. There is no need for a separate storage box for the earphones, and the earphone function and the wearable function are integrated into one.
[0070] In this embodiment, the present invention provides a smart wearable device capable of accommodating headphones, including a device body, on which a headphone receiving groove 20 is provided for accommodating headphones, and the device body includes a host 21, and the headphone receiving groove 20 partially surrounds the outer periphery of the host 21.
[0071] In addition, the earphone includes an earphone portion 11 and a handle portion 13, so that the contour of the earphone receiving slot 20 corresponds to the earphone portion 11 and the handle portion 13. Through this design, the earphone can be targeted when stored in the earphone receiving slot 20, and the degree of matching between the two is higher.
[0072] A first magnetic structure is provided on the earpiece part 11 and the handle part 13, and a second magnetic structure corresponding to the first magnetic structure is arranged on the side wall of the host 21 close to the earphone receiving slot 20, which is used for magnetic fixation between the earphone and the earphone receiving slot 20.
[0073] It should be noted that the attached drawings only show a schematic diagram of a double-slot (two headphone accommodating slots) structure, and do not show a schematic diagram of a single-slot structure. However, it is easy to understand that the single-slot structure can also accommodate a single headphone, which is conducive to the miniaturization of the device body. Therefore, whether the device body has a single-slot or double-slot structure can be adjusted and modified according to specific production needs, and such modifications should also be included in the scope of protection of the present invention.
[0074] In the subsequent description of the embodiments, unless otherwise specified, the corresponding structures, devices, components and other features in the embodiments can be applied to the above-mentioned single-slot or double-slot structure.
[0075] 4 to 6 of the specification, the present invention provides a smart wearable device capable of accommodating earphones, including a device body, on which two earphone receiving slots 20 are provided for accommodating corresponding earphones.
[0076] Moreover, the two earphone receiving slots 20 are symmetrically distributed relative to the length direction of the host 21, so that the earphone receiving slots 20 have a certain wrapping feeling on the host 21, expanding the matching surface area between the earphones and the host 21. Through the magnetic structure design of the two, the fixing effect can be effectively improved, as well as the user's tactile experience when taking and placing the earphones.
[0077] In one embodiment, as shown in FIG. 5 , the earpiece 11 and the handle 13 face the same direction and are connected to each other via a bent section 12 , thereby forming a recessed cavity.
[0078] The first magnetic structure includes at least two earphone magnetic parts, one of which is fixed to the earpiece part 11 , and the other earphone magnetic parts avoid the bent section 12 and are fixed to the handle part 13 .
[0079] The second magnetic structure includes a host magnetic part, which is arranged on the side wall of the host 21 close to the earphone, and the host magnetic part and the earphone magnetic part are arranged correspondingly, and are used to magnetically fix the earphone through the host magnetic part and the earphone magnetic part.
[0080] It should be noted that there can be many specific configurations of the earphone magnetic part and the host magnetic part. For example, the earphone magnetic part and the host magnetic part can be configured as a one-to-one corresponding magnet group with different magnetic poles, or the earphone magnetic part is a magnet, and the host magnetic part is a metal sheet or metal block that cooperates with the magnet to attract each other. Similarly, the earphone magnetic part can be configured as a metal sheet and the host magnetic part can be configured as a magnet.
[0081] Furthermore, if the earphone receiving slot 20 is a dual-slot structure, the principle of attraction and repulsion between magnetic poles can be utilized to prevent the two earphones from being installed incorrectly. If the earphones are installed in the wrong position, the earphone magnetic attraction portion on the earphone and the magnetic attraction portion of the main unit in the same position will repel each other, preventing the earphones from being inserted into the earphone receiving slot, thus providing a warning to the user and preventing damage to the earphones or the device due to misoperation.
[0082] As shown in the figure, for ease of understanding and simplified explanation, the earphone magnetic attraction part and the host magnetic attraction part are understood as magnets by default, and the magnets are named No. 1 magnet 31, No. 2 magnet 32, etc. For details, please refer to the figure numbers and Figures 1 to 3. The above-mentioned first magnetic attraction structure includes No. 1 magnet 31, No. 3 magnet 33 and No. 5 magnet 35, and the second magnetic attraction structure includes No. 2 magnet 32, No. 4 magnet 34, and No. 6 magnet 36.
[0083] Among them, magnet No. 1 31 and magnet No. 2 32 form a group, magnet No. 33 and magnet No. 4 34 form a group, and magnet No. 5 35 and magnet No. 6 36 form a group. The magnets are respectively distributed on the earpiece part 11 and the handle part 13, which can ensure the adsorption force to the greatest extent and prevent the earphone from falling off due to uneven force. In some embodiments, magnet No. 5 35 and magnet No. 6 36 may not be set if the adsorption force is sufficient.
[0084] On the basis of the above embodiment, among the earphone magnetic attraction parts provided in the handle portion 13, the earphone magnetic attraction part closest to the bending section 12 is the first clamping part; specifically, referring to FIG1 and the above embodiment, the third magnet 33 is temporarily understood as the first clamping part.
[0085] The magnetic attraction portion of the host includes a second pressing portion, which is located on the side wall of the host 21 facing the handle portion 13. The second pressing portion here can refer to Figure 1 and is temporarily understood as the above-mentioned No. 4 magnet 34. When the earphones are stored, the first pressing portion and the second pressing portion have a distance to form a staggered distribution. The second pressing portion attracts the first pressing portion, causing the earphones to move in the storage direction, thereby achieving mutual compression between the earphones and the bottom of the earphone accommodating slot 20.
[0086] It should be noted that if the magnetic structure is a magnet and a metal sheet or other magnetic components, it can also be named as magnet No. n, metal sheet No. n. In this embodiment, they will not be described one by one. The magnet components in the above embodiment are only used as examples, and no specific restrictions are made on the material or selection of the magnetic part.
[0087] In combination with the above embodiments and premises, during the insertion process of the earphone, first refer to Figure 2 of the specification, the No. 5 magnet 35 on the handle part 13 first meets the No. 4 magnet 34 on the host 21, and the attraction between the magnets here prompts the earphone to quickly extend into the opening of the receiving slot; then refer to Figure 3 of the specification, when the handle part 13 continues to move inward, the No. 3 magnet 33, the No. 4 magnet 34 and the No. 5 magnet 35, the No. 6 magnet 36 are both staggered, and can still promote the storage of the handle part 13, until the handle part 13 is completely stored in the earphone receiving slot 20, that is, the state of Figure 1, the No. 3 magnet 33 and the No. 4 magnet 34 are staggered, that is, the magnetic attraction makes the earphone tend to move in the storage direction, so as to achieve the compression of the earphone.
[0088] In addition, when taking out the earphones, due to the attraction of this position, the user will feel a certain damping, which feels better and is more conducive to grabbing the earphones.
[0089] Of course, in other embodiments, the fifth magnet 35 and the sixth magnet 36 may also be misplaced when the handle portion 13 is completely received in the earphone receiving slot 20. In this embodiment, the two magnets are aligned and adsorbed only for the sake of the firmness of the magnetic attraction. In actual applications, their positions can be improved or adjusted. It is even possible not to set these two magnets, and the earphones can be tightened only by the third magnet 33 and the fourth magnet 34.
[0090] In one embodiment, as shown in FIG6 , the earphone receiving slot 20 is divided into a first receiving slot 201 and a second receiving slot 202 by the outlines of the corresponding earpiece portion 11 and the handle portion 13 .
[0091] The main unit 21 protrudes from the connecting portion of the first accommodating groove 201 and the second accommodating groove 202 to form a limiting edge 211, so that when the earphone is stored in the earphone accommodating groove 20, the recessed cavity on the earphone abuts against the limiting edge 211 on the main unit 21, which is suitable for the relative limitation of the earphone and the main unit 21.
[0092] As shown in Figures 2 and 6, the limiting edge 211 extending from the main unit 21 abuts against the recessed cavity on the earphone, forming a snap-fit structure between the main unit 21 and the earphone, so that the earphone can be locked in place by the snap-fit structure when being stored, preventing the earphone from sliding along the receiving groove, and also enabling the main unit 21 to provide certain support to the earphone, making the storage of the earphone more stable.
[0093] In another embodiment, referring to Figure 10 of the specification, the contour of the handle portion 13 is a conical surface with a monotonically decreasing cross-sectional area, and the contour of the earphone receiving groove 20 corresponding to the handle portion 13 matches the contour of the conical surface, so that the earphone is guided by the conical surface when it is received in the earphone receiving groove 20.
[0094] It can be understood that the above-mentioned conical surface design can provide certain conveniences for the removal and storage process of the earphones. For example, when storing, due to the conical surface design, the opening of the earphone receiving slot 20 is wider and the handle portion 13 of the earphone is narrower, so the user can easily align it, avoiding the situation where the entrance to the earphone receiving slot 20 cannot be found at night or in dimly lit places. Similarly, the opening becomes larger and larger during the removal process, which makes it easier to remove the earphones and less likely to be scratched.
[0095] In one embodiment, as shown in Figures 7 and 8, the handle portion 13 includes a handle body 131 and an adjustable tail section 132. One end of the handle body 131 is connected to the bending section 12, and the other end is rotatably connected to the adjustable tail section 132. An earphone magnetic portion is fixedly provided on the adjustable tail section 132.
[0096] In the first wearing state, the adjustable tail section 132 and the handle body 131 are arranged in a straight line, so that the earphones can be worn in a normal wearing manner;
[0097] In the second wearing state, the earphone magnetic attraction portion on the adjustable tail section 132 and the earphone magnetic attraction portion on the earpiece portion 11 are correspondingly attracted to each other, so that the earphone is worn in an ear-clip wearing manner.
[0098] It can be understood that the magnets on the handle portion 13 and the earpiece portion 11 of the headset are reasonably used so that the adjustable tail section 132 can achieve different wearing styles through a certain rotation, which can adapt to people with different wearing habits and improve the user experience.
[0099] In addition, by adjusting the setting of the magnetic poles of the two earpiece parts 11, the two earphones can be attracted to each other. When the user just wants to take off the earphones and does not want to put the earphones back into the device, the two earphones can be attracted together and placed on a desk or held in the hand, etc., which can prevent the two earphones from falling apart.
[0100] In one embodiment, a spring piece 7 is provided on a side wall of the main body 21 close to the handle portion 13 , and the spring piece 7 extends toward the handle portion 13 to form a protrusion.
[0101] Furthermore, as shown in FIG2 , the tail section of the handle portion 13 has a groove. When the earphone is inserted into the earphone receiving slot 20 for fixation, the tail section of the handle portion 13 passes over the raised portion, so that the raised portion abuts against the groove to fix and limit the handle portion 13.
[0102] It should be noted that the raised portion of the shrapnel 7 can play a role in locking and limiting the handle portion 13, greatly reducing the possibility of the earphone falling off when stored in the earphone receiving slot 20. In addition, due to the elastic properties of the shrapnel 7, the user will have a certain resistance when pulling out the earphone, which also prevents the earphone from sliding out or falling out of the hand due to excessive force of the user, thereby causing damage to the earphone.
[0103] In one embodiment, based on the above embodiment, the protrusion has a first mating surface 71 and a second mating surface 72, and the inclination angle of the first mating surface 71 relative to the adjacent side wall of the host 21 is smaller than the inclination angle of the second mating surface 72 relative to the adjacent side wall of the host 21.
[0104] Through the above-mentioned arrangement, when the earphone is installed into the earphone receiving slot 20, the tail section of the handle portion 13 contacts the first mating surface 71 and the second mating surface 72 in sequence. The first mating surface 71 can generate low resistance, thereby guiding the installation process of the earphone, and the second mating surface 72 can generate high resistance, thereby preventing the earphone from falling off.
[0105] As shown in Figure 9, the first mating surface 71 and the second mating surface 72 of the raised portion have different inclination angles, which results in the handle portion 13 first contacting the first mating surface 71 when the user inserts the earphone into the earphone receiving slot 20. Here, the inclination angle of the first mating surface 71 is small, and the resistance is small, so that the earphone can be easily inserted, and the handle portion 13 can easily pass this position; when the handle portion 13 and the second mating surface 72 contact, the inclination angle of the second mating surface 72 is large, and the resistance is also large. The handle portion 13 and the second mating surface 72 form a partial snap connection to prevent the earphone from accidentally falling off, thereby improving the practicality and operability of the device.
[0106] Furthermore, as shown in FIG. 7 , the end of the handle portion 13 away from the earpiece portion 11 is configured as a wear-resistant round head 133 , and the friction end surface of the wear-resistant round head 133 faces the main unit 21 .
[0107] The wear-resistant round head 133 prevents the handle portion 13 from excessively wearing during long-term use due to the interaction with the raised portion, thereby affecting the subsequent normal use of the handle portion 13, such as failing to engage normally, or affecting the surface roughness due to wear, causing the user to feel discomfort behind the ear when using it as an ear clip.
[0108] The material of the friction end surface of the wear-resistant round head 133 can be wear-resistant self-lubricating plastic POM, or silicone, etc. Since there are many wear-resistant materials on the market, they will not be described here one by one.
[0109] In another embodiment, referring to Figures 6 and 7, the earphone is provided with a charging contact 14, which is located in the bending section 12, and the host 21 is provided with a charging probe 22 corresponding to the charging contact 14. When the earphone is inserted into the earphone receiving slot 20, the charging contact 14 and the charging probe 22 are connected, so that the earphone can be charged through the host 21.
[0110] This embodiment can also be combined with the above embodiment. Since the charging contact 14 is located in the bending section 12, and from the above embodiment we can know that the bending section 12 is not provided with a magnet, magnets are provided on both sides of the bending section 12, that is, the earpiece part 11 and the handle part 13. In this way, both sides of the bending section 12 are pressed tightly by the adsorption force of the magnet, so that during charging, the charging probe 22 and the charging contact 14 are in stable and reliable contact, ensuring the charging efficiency.
[0111] It should be noted that if the charging part is not set on the bending section 12, the bending section 12 can actually be equipped with a magnetic structure to ensure that all parts of the earphone are fully adsorbed. The specific location of the magnet can be at any point on the bending section 12, which will not be repeated here.
[0112] In one embodiment, a wrapping tape 8 is provided on the outer periphery of the device body relative to the host 21 .
[0113] As shown in Figures 4 to 6, two wrapping straps 8 are arranged on opposite sides of the host 21, and there is a preset gap between the host 21 to form a partial earphone receiving slot 20. When the earphone is stored in the earphone receiving slot 20, the handle portion 13 is limited between the corresponding wrapping strap 8 and the host 21.
[0114] The attached drawings show the configuration of the wrapping belt 8 in the case of a double-slot structure. Similarly, if it is a single-slot structure, only one side of the wrapping belt 8 is required. This improvement is conceivable to those skilled in the art and will not be described or explained here.
[0115] It can be understood that the partial earphone receiving groove 20 formed by the wrapping belt 8 is more conducive to production and processing, and can be adjusted in time according to factors such as the different materials and sizes of the handle part 13. There is no need to perform grooving processing on the main body of the device, which will not cause waste of materials and has better operability.
[0116] The wrapping belt 8 in this embodiment can be made of plastic, silicone, metal, etc., just to play a certain supporting role for the handle part 13. The specific design can be changed according to the characteristics of the host 21.
[0117] Moreover, in the present embodiment, the wrapping band 8 only surrounds the circumference of the handle portion 13, and does not restrict the two ends of the handle portion 13. Therefore, when the user takes out the earphones, he can gently push the handle portion 13 away from one end of the earphone portion 11, thereby making the taking process simpler and more natural; in other embodiments, the side of the wrapping band 8 away from the earphone portion 11 can also be directly set to a sealing structure to prevent dust and water from entering through this opening.
[0118] Based on the above embodiment, the length of the preset gap is not greater than the length of the handle portion 13 .
[0119] As shown in FIG4 , when the earphone is accommodated in the earphone receiving slot 20 , at least a portion of the bent section 12 is protruding relative to the earphone receiving slot 20 , so that the bent section 12 is used as a hand-locking position, thereby allowing the earphone to be pulled out of the earphone receiving slot 20 through the hand-locking position.
[0120] It can be understood that in this embodiment, a hand-grip position is formed by partially bending the section 12, so that the user can easily extract the earphones. While ensuring that the earphones are securely stored, the process of taking and placing the earphones is improved and optimized, thereby enhancing the user experience.
[0121] Optionally, a wear-resistant strip 81 is provided on the side of the wrapping strap 8 close to the handle portion 13 to avoid friction between the handle portion 13 and the wrapping strap 8, which can effectively improve the life of the earphones and the overall appearance, and is not prone to excessive wear of the earphones due to long-term use; in addition, by selecting a suitable wear-resistant strip 81, a damping feeling can also be provided, which helps to improve the feel when taking and placing the earphones.
[0122] In one embodiment, referring to Figure 11 of the specification, according to another aspect of the present invention, the present invention further provides a smart watch, including a watch body and wireless headphones, the wireless headphones are detachably connected to the watch body, and the above-mentioned smart wearable device that can accommodate headphones is a smart watch.
[0123] The host 21 is configured as a watch body, and the earphone is configured as a wireless earphone, so that the wireless earphone can be fixedly stored relative to the watch body.
[0124] As shown in FIG11 , the watch body is also provided with a watch strap 9, which extends in a direction that avoids the direction of accessing the earphones. When the user wears the watch body, their arm naturally hangs down, and the opening of the earphone receiving slot 20 is away from the ground, thus completely preventing the earphones from falling. Of course, the opening direction of the earphone receiving slot 20 can be adjusted depending on whether the watch is worn on the left or right hand. When the user needs to swing their arm, the magnetic attraction mechanism can also effectively secure the earphones.
[0125] In addition, it can be seen in the figure that the watch strap 9 is set on the wrapping belt 8, that is, the wrapping belt 8 can also serve as a support for the watch strap 9 and the watch body in some embodiments. Moreover, in the specific configuration, the watch strap 9 and the wrapping belt 8 can be configured as a detachable structure, for example, the wrapping belt 8 and the watch strap 9 are detachable, or the wrapping belt 8 and the watch body are detachable, so that the user can replace them by pulling them out, making the watch more adaptable and reaching a wider audience.
[0126] It should be noted that the above embodiments can be freely combined as needed. The above are only preferred embodiments of the present invention. It should be noted that those skilled in the art can make several improvements and modifications without departing from the principles of the present invention, and such improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A smart wearable device capable of storing headphones, characterized in that: include: A device body, the device body comprising a main unit, the device body being provided with an earphone receiving groove for receiving corresponding earphones, the earphone receiving groove forming a partial surround along the circumference of the main unit; The earphones all include an earphone portion and a handle portion, and the contour of the earphone receiving slot is adapted to the earphone portion and the handle portion; The earpiece part and the handle part are provided with a first magnetic structure, and the side wall of the host close to the earphone receiving slot is provided with a second magnetic structure corresponding to the first magnetic structure, which is used for magnetic fixation between the earphone and the earphone receiving slot.
2. The smart wearable device capable of storing headphones according to claim 1, characterized in that: The earpiece part and the handle part of the earphone are oriented in the same direction, and the earpiece part and the handle part are connected via a bent section, so that a concave cavity is formed by the earpiece part and the bent section; The first magnetic attraction structure includes at least two earphone magnetic attraction parts, one of which is fixed to the earphone part, and the other earphone magnetic attraction parts avoid the bending section and are fixed to the handle part; The second magnetic attraction structure includes a host magnetic attraction portion, which is arranged on the side wall of the host close to the earphone, and the host magnetic attraction portion and the earphone magnetic attraction portion are arranged correspondingly, and is used to magnetically fix the earphone through the host magnetic attraction portion and the earphone magnetic attraction portion.
3. The smart wearable device capable of storing headphones according to claim 2, characterized in that: Among the earphone magnetic attraction portions provided on the handle portion, the earphone magnetic attraction portion having the smallest relative distance to the bending section is configured as a first pressing portion; The host magnetic attraction portion includes a second pressing portion, and the second pressing portion is located in the direction of the host. a side wall on one side of the handle portion; When the earphone is received in the earphone receiving groove, the first pressing portion and the second pressing portion have a preset spacing in the extension direction of the earphone receiving groove, so that the first pressing portion and the second pressing portion are misaligned, so that the second pressing portion attracts the first pressing portion and drives the earphone to move along the extension direction of the earphone receiving groove, so as to press the earphone against the bottom of the earphone receiving groove.
4. The smart wearable device capable of storing headphones according to claim 3, characterized in that: The contour of the handle portion is a conical surface with a monotonically decreasing cross-sectional area, and the contour of the earphone receiving groove corresponding to the handle portion matches the contour of the conical surface, so that the earphone is guided by the conical surface when received in the earphone receiving groove.
5. The smart wearable device capable of storing headphones according to claim 3, characterized in that: The handle portion includes a handle body and an adjustable tail section, one end of the handle body is connected to the bending section, and the other end is rotatably connected to the adjustable tail section, and the adjustable tail section is fixedly provided with a headphone magnetic attraction portion. In the first wearing state, the adjustable tail section and the handle body are arranged in a straight line, so that the wearing mode of the headset is normal wearing; In the second wearing state, the adjustable tail section rotates toward the direction of the handle body, so that the earphone magnetic attraction part on the adjustable tail section and the earphone magnetic attraction part on the earpiece part are correspondingly adsorbed, so that the wearing method of the earphone is ear-clip wearing.
6. A smart wearable device capable of storing headphones according to any one of claims 1 to 5, characterized in that: The main body is provided with a spring sheet on the side wall close to the handle portion, and the spring sheet is arranged away from the main body. The convex portion is formed by extending in the direction of the machine; The tail section of the handle has a groove. When the earphone is inserted into the earphone receiving slot for fixation, the tail section of the handle goes over the raised portion so that the raised portion abuts against the groove to fix and limit the handle.
7. The smart wearable device capable of storing headphones according to claim 6, characterized in that: The protrusion has a first mating surface and a second mating surface, the side wall of the main machine close to the handle portion is a base surface, and the inclination angle of the first mating surface relative to the base surface is smaller than the inclination angle of the second mating surface relative to the base surface; Thereby, when the earphone is installed into the earphone receiving slot, the tail section of the handle portion contacts the first mating surface and the second mating surface in sequence, the first mating surface is suitable for providing a low resistance mode to guide the installation process of the earphone, and the second mating surface is suitable for providing a high resistance mode to prevent the earphone from falling off.
8. The smart wearable device capable of storing headphones according to claim 2, characterized in that: The earphone is provided with a charging contact, and the charging contact is located in the bending section. The host is provided with a charging probe corresponding to the charging contact. When the earphone is inserted into the earphone receiving slot, the charging contact and the charging probe are connected, so that the earphone can be charged through the host.
9. The smart wearable device capable of storing headphones according to claim 2, characterized in that: The earphone receiving slot is divided into a first receiving slot and a second receiving slot by the outline of the earpiece part and the outline of the handle part; The host protrudes toward the connecting portion of the first receiving groove and the second receiving groove to form a limiting edge, so that when the earphone is received in the earphone receiving groove, the The concave cavity abuts against the limiting edge on the host, which is suitable for the relative limiting of the earphone and the host.
10. The smart wearable device capable of storing headphones according to claim 1, characterized in that: The number of the earphone receiving slots is two, so that the two earphone receiving slots can be matched to accommodate two earphones; The two earphone receiving grooves are symmetrically distributed with respect to the length direction of the main unit, so that the two earphones partially surround the main unit when they are stored in the earphone receiving grooves.
11. A smart wearable device capable of storing headphones according to any one of claims 1-5 and 7-10, characterized in that: The device body is provided with a wrapping belt relative to the outer periphery of the host; A preset gap is provided between the wrapping belt and the host to form part of the earphone receiving slot. When the earphone is received in the earphone receiving slot, the handle portion is limited between the corresponding wrapping belt and the host.
12. The smart wearable device capable of storing headphones according to claim 11, characterized in that: The length of the preset gap is not greater than the length of the handle; When the earphone is received in the earphone receiving slot, at least a portion of the bent section is protruding relative to the earphone receiving slot, so that the bent section is used as a hand-holding position, thereby allowing the earphone to be pulled out of the earphone receiving slot through the hand-holding position.
13. The smart wearable device capable of storing headphones according to claim 11, characterized in that: The handle portion is configured as a wear-resistant round head at one end away from the earpiece portion, and the friction end surface of the wear-resistant round head faces the host; And / or, a wear-resistant strip is provided on one side of the wrapping belt close to the handle portion to avoid friction between the handle portion and the wrapping belt.
14. A smart watch, characterized in that: It comprises a watch body and a wireless headset, and the wireless headset is detachably connected to the watch body; The smart wearable device capable of accommodating earphones as described in any one of claims 1 to 13 is the smart watch, wherein the host is configured as the watch body, and the earphones are configured as the wireless earphones, so that the wireless earphones can be fixedly stored relative to the watch body.
Citation Information
Patent Citations
Wearable product
CN110134193A
Wearable device
CN110574393A
Earphone box and wireless earphone
CN113794962A
Earphone charging storage box
CN209151325U
Earphone and watch two-in-one device
CN212411024U