Glasses and glasses system
By integrating a light-emitting module and controller into the glasses to regulate melatonin secretion, sleep problems caused by insomnia are solved, and sleep quality is improved. The glasses have a convenient structural design and are easy to charge.
Patent Information
- Application Number
- CN202110484916.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-04-30
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2041-04-30
AI Technical Summary
Insomnia leads to a deterioration of physical and mental health, and current technology lacks effective light therapy devices to regulate melatonin secretion and improve sleep quality.
Design a pair of glasses with a light-emitting module inside the frame that stimulates the retina by emitting light of different wavelengths to regulate melatonin secretion. The module includes blue, green and red LEDs. A controller emits light in a predetermined sequence. The temples are foldable and detachable and are equipped with a charging base for charging.
It regulates melatonin secretion through phototherapy, improves sleep quality and efficiency, and features a convenient and flexible structural design with easy charging.
Smart Images

Figure CN113069662B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of glasses, and in particular to glasses and a glasses system. Background Art
[0002] People often suffer from insomnia due to physiological or psychological factors, which can further lead to the deterioration of people's physical and mental state. Therefore, in order to ensure a good state, it is necessary to maintain good sleep quality.
[0003] Research has found that light devices generate light of varying wavelengths and intensities, stimulating the retina through visual signals. These light receptors act on non-cone and non-rod cells, regulating pineal gland function through the non-sensory pathways of the optic nerve. This triggers rhythmic melatonin secretion, which is quiescent during the day and increases production at night. Melatonin acts on the suprachiasmatic nucleus and other areas to induce sleep. Therefore, light devices can be used to regulate melatonin secretion and, in turn, sleepiness. Summary of the Invention
[0004] The present application provides a pair of glasses and a pair of glasses system that can improve the user's sleep quality.
[0005] The glasses provided in the first aspect of the present application include:
[0006] The frame comprises a first surface and a second surface disposed opposite to each other, and a light-emitting side surface disposed between the first surface and the second surface. A light-emitting module is disposed within the frame, and a light beam emitted by the light-emitting module is illuminated to the user's eyes through the light-emitting side surface.
[0007] The temples are arranged at the ends of the frames.
[0008] The second aspect of the present application provides a glasses system comprising:
[0009] The glasses as described in the first aspect above, and the charging base;
[0010] The charging base is provided with a receiving slot and a charging assembly. The receiving slot is used to receive the glasses, and the charging assembly is used to charge the glasses received in the receiving slot.
[0011] The present application has at least the following beneficial effects: the glasses and glasses system provided by the present application emit a light beam through a light-emitting module arranged inside the frame, and the light beam passes through the light-emitting side and then illuminates the human eye, which can improve the user's sleep. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0013] Figure 1 It is a structural diagram of glasses;
[0014] Figure 2 yes Figure 1 Schematic diagram of the structure of the glasses from another perspective;
[0015] Figure 3 yes Figure 1 The schematic diagram of the structure of the glasses at another viewing angle;
[0016] Figure 4 yes Figure 1 Schematic diagram of the structural breakdown of the glasses;
[0017] Figure 5 yes Figure 1 Schematic diagram of the charging port on the middle frame;
[0018] Figure 6 yes Figure 1 A structural diagram of the nose pad;
[0019] Figure 7 yes Figure 1 A cross-sectional view of the nose pad in FIG.
[0020] Figure 8 yes Figure 1 Schematic diagram of the matching relationship between the middle charging port and the nose pad;
[0021] Figure 9 yes Figure 1 Schematic diagram of the arrangement of the magnetic parts of the glasses;
[0022] Figure 10 yes Figure 1 Schematic diagram of the glasses in the folded state;
[0023] Figure 11 yes Figure 1 A schematic structural diagram of a frame of glasses;
[0024] Figure 12 yes Figure 1 Another structural diagram of the frame of the glasses;
[0025] Figure 13 It is a structural diagram of the charging base of the glasses system. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0027] The terms "first," "second," and "third" in this application are used only for descriptive purposes and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first," "second," or "third" may explicitly or implicitly include at least one of such features. In the description of this application, "multiple" means at least two, for example, two, three, etc., unless otherwise specifically defined. All directional indications in the embodiments of this application (such as up, down, left, right, front, back...) are only used to explain the relative positional relationship, movement, etc. between the components under a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications also change accordingly. In addition, the terms "including" and "having," as well as any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units that are not listed, or may optionally include other steps or units that are inherent to these processes, methods, products, or devices.
[0028] The present application provides a pair of glasses 10. In some embodiments, the glasses 10 may be sleep glasses with a light-emitting function, which can regulate human sleep and improve human sleep quality through the light-emitting function.
[0029] See also Figure 1-Figure 3 , Figure 1 is a structural diagram of the glasses 10, Figure 2 yes Figure 1 The structural diagram of the glasses 10 at another viewing angle is shown in FIG. Figure 3 yes Figure 1 Schematic diagram of the structure of the glasses 10 at another viewing angle.
[0030] Specifically, the glasses 10 include a frame 11 , temples 12 and a nose pad 13 , wherein the temples 12 are respectively disposed at both side ends of the frame 11 .
[0031] The frame 11 has a first surface M1 and a second surface M2 disposed opposite to each other, and a light-emitting side surface M3 disposed between the first surface M1 and the second surface M2. A light-emitting module is disposed within the frame 11, and a light beam emitted by the light-emitting module is illuminated to the user's eyes through the light-emitting side surface M3.
[0032] It should be understood that the light-emitting side M3 is a transparent side, and the light-emitting module emits a light beam at a preset frequency. The light beam passes through the light-emitting side M3 and illuminates the user's eyes, thereby regulating the synthesis of the user's melatonin and improving the user's sleep quality.
[0033] In some specific embodiments, the first surface M1 is parallel to the second surface M2, the width of the first surface M1 is greater than the width of the second surface M2, one side of the first surface M1 is connected to the side of the second surface M2 through the light-emitting side M3, and the angle between the light-emitting side M3 and the first surface M1 is less than 90°.
[0034] It should be understood that the angle between the luminous side surface M3 and the first surface M1 is less than 90°. At this time, the luminous side surface M3 is not perpendicular to the first surface M1. The luminous side surface M3 will be directed towards the eyes and slightly below the eyes, which can achieve full illumination of the user's eyes and achieve better lighting effects, thereby improving the effect of improving the user's sleep quality.
[0035] In some specific embodiments, the light-emitting module includes multiple LED lamps, each of which can emit light beams and form a light-emitting surface. This light-emitting surface can be parallel to the light-emitting side surface M3. By arranging the light-emitting surface of the LED lamps to be parallel to the light-emitting side surface M3, reflection of the light beams emitted by the LED lamps on the light-emitting side surface M3 can be reduced, thereby increasing the light beam emission rate and thereby improving the user's sleep quality.
[0036] Specifically, the LED lamp can include a blue LED lamp and / or a green LED lamp, and the controller can control multiple lamp beads to emit light simultaneously or alternately according to a predetermined timing. Of course, the LED lamp can also include LED lamps of other colors, such as red LED lamps, which are not exhaustively listed here.
[0037] More specifically, the wavelength of the blue LED lamp can be 470nm-490nm, and the wavelength of the green LED lamp can be 490nm-510nm. Using blue light or green light of this wavelength as the main irradiation light is harmless to the human eye and can largely inhibit the body's production of melatonin. Blue LED lamps and green LED lamps can better inhibit the secretion of melatonin, thereby increasing cortical excitability and improving cognitive ability. In this way, users can secrete more melatonin during nighttime sleep to promote sleep. The wavelength range of the red LED lamp can be 620nm-700nm. Among them, the auxiliary light emitted by the red LED lamp is used to stimulate human nerve cells from a saturated state to an excited state, thereby enhancing the effect of blue light or green light, and further strengthening the effect of the glasses 10 on improving sleep quality.
[0038] It should be understood that the glasses 10 of the present application are mainly used during the day when they are sleeping glasses. During the day, they can inhibit the secretion of melatonin in the user's body, so that the melatonin content in the user's body increases at night, which can help the user fall asleep better and improve sleep quality.
[0039] In some specific embodiments, the second surface M2 of the frame 11 is further provided with a switch component, which is used to control the working state of the light-emitting module.
[0040] It should be understood that the switch assembly is disposed on the second surface M2, which means that part of the switch assembly is disposed on the second surface M2, and the remaining structure is disposed inside the frame 11. Figure 3 As shown, a partial structure A of the switch assembly is disposed on the second surface M2 , and the partial structure A may be a switch button of the switch assembly.
[0041] In some embodiments, the temples 12 may include a first temple 121 and a second temple 122. The first temple 121 is disposed at one end S1 of the frame 11, and the second temple 122 is disposed at the other end S2 of the frame 11. The first temple 121 and the second temple 122 may be integrally formed with the frame 11 to ensure structural stability, or they may be detachably connected to the frame 11 to ensure structural flexibility. The structure and material of the first temple 121 may be the same as those of the second temple 122 to ensure structural symmetry and ease of processing.
[0042] In combination with the above content, the glasses 10 can be a magnetic type of glasses 10. In the folded state, the temples 12 are kept in the folded state by magnetism.
[0043] Please continue reading Figure 2 In some embodiments, the first temple 121 includes a first elastic portion P1 and a first main portion P2. One end of the first elastic portion P1 is connected to the first end S1 of the frame 11, and the first main portion P2 is provided with a first magnetic member. The second temple 122 includes a second elastic portion P3 and a second main portion P4. One end of the second elastic portion P3 is connected to the second end S2 of the frame 11, and the second main portion P4 is provided with a second magnetic member.
[0044] The first elastic portion P1 and the first main portion P2 can be integrally formed to ensure structural stability, or detachably connected to ensure structural flexibility. Correspondingly, the second elastic portion P3 and the second main portion P4 can be integrally formed or detachably connected.
[0045] When the glasses are in the folded state, the first magnetic member and the second magnetic member are attracted to each other, thereby achieving mutual fixation between the first temple 121 and the second temple 122.
[0046] In some other embodiments, the first main body portion P2 is further provided with a third magnetic component, and the second main body portion P4 is further provided with a fourth magnetic component.
[0047] Please continue reading Figure 1-Figure 3 as well as Figure 9 as well as Figure 10 , Figure 9 is a schematic diagram of the arrangement of the magnetic components of the glasses 10, Figure 10 yes Figure 1 Schematic diagram of the glasses 10 in a folded state.
[0048] More specifically, the first magnetic member 1211 and the third magnetic member 1212 can be spaced apart on the first main portion P2, and the second magnetic member 1221 and the fourth magnetic member 1222 can be spaced apart on the second main portion P4. When the glasses 10 are in the folded state, the first magnetic member 1211 and the fourth magnetic member 1222 are attracted to each other, and the third magnetic member 1212 and the second magnetic member 1221 are attracted to each other.
[0049] Therefore, when the glasses 10 are in a folded state, the two magnetic parts of the first temple 121 and the two magnetic parts of the second temple 122 are adsorbed one by one, thereby achieving a good fixing effect between the first temple 121 and the second temple 122.
[0050] It is worth noting that the number of magnetic parts spaced apart on the first temple 121 and the second temple 122 may not be two, but the number of magnetic parts set on the first temple 121 and the second temple 122 is equal, so that the magnetic parts of the first temple 121 and the second temple 122 are adsorbed one by one to each other.
[0051] For example, the first temple 121 and the second temple 122 are both provided with three magnetic parts, and the three magnetic parts of the first temple 121 and the three magnetic parts of the second temple 122 are adsorbed one by one to achieve a good adsorption effect.
[0052] In some specific embodiments, the first main body portion P2 of the first temple 121 is provided with at least a first receiving groove and a second receiving groove, the first magnetic member 1211 is provided in the first receiving groove, and the third magnetic member 1212 is provided in the second receiving groove. The second main body portion P4 of the second temple 122 is provided with at least a third receiving groove and a fourth receiving groove, the second magnetic member 1221 is provided in the third receiving groove, and the fourth magnetic member 1222 is provided in the fourth receiving groove. The openings of the first receiving groove and the second receiving groove can be provided on the side of the first temple 121, and the openings of the third receiving groove and the fourth receiving groove can be provided on the side of the second temple 122. The side of the first temple 121 and the second temple 122 can be the side close to the nose pad 13. By providing the opening on the side of the first temple 121 or the second temple 122, the influence of the opening on the part of the temple 12 disposed on the human ear can be reduced.
[0053] Among them, the first temple 121 can also be provided with a first cover plate and a second cover plate, which are used to cover the openings of the first accommodating groove and the second accommodating groove respectively, and the second temple 122 can also be provided with a third cover plate and a fourth cover plate, which are used to cover the openings of the third accommodating groove and the fourth accommodating groove respectively.
[0054] In some specific embodiments, the first magnetic member 1211, the third magnetic member 1212, the second magnetic member 1221, and the fourth magnetic member 1222 are all of the same shape and material. The first magnetic member 1211, the third magnetic member 1212, the second magnetic member 1221, and the fourth magnetic member 1222 can all be bar-shaped magnetic members, for example, rectangular parallelepipeds, and the length of the bar-shaped magnetic member extends in the same direction as the length of the first temple 121 or the second temple 122. By configuring the magnetic members as bar-shaped magnetic members, the adsorption effect between the magnetic members can be enhanced, thereby strengthening the fixing effect between the first temple 121 and the second temple 122.
[0055] like Figure 9 as well as Figure 10 As shown, in some specific embodiments, the third magnetic member 1212 is arranged at one end of the first main body portion P2 of the first temple 121 away from the first elastic portion P1, and the fourth magnetic member 1222 is arranged at one end of the second main body portion P4 away from the second elastic portion P3.
[0056] In combination with the above, it can be seen that the third magnetic member 1212 located on the first main body P2 away from the first elastic portion P1 is attracted to the second magnetic member 1221, thereby achieving relative fixation of the second end of the first temple 121, and the fourth magnetic member 1222 located on the second main body P4 away from the second elastic portion P3 is attracted to the first magnetic member 1211, thereby achieving relative fixation of the second end of the second temple 122. Therefore, by arranging the third magnetic member 1212 at the second end of the first temple 121 and arranging the second end of the fourth magnetic member 1222 at the second end of the second temple 122, a good fixing effect can be achieved on the ends of the first temple 121 and the second temple 122.
[0057] In some specific embodiments, the first elastic portion P1 and the second elastic portion P3 are both arranged in an arc shape, and the inner sides of the arcs of the first elastic portion P1 and the second elastic portion P3 are respectively close to the frame 11, that is, the inner sides of the arcs of the first elastic portion P1 and the second elastic portion P3 are respectively close to the nose pad 13.
[0058] Specifically, the thickness of the first elastic portion P1 is smaller than the thickness of the first main body portion P2 , and the thickness of the second elastic portion P3 is smaller than the thickness of the second main body portion P4 .
[0059] Taking the first temple 121 as an example, Figure 2 The thickness d1 of the first elastic portion P1 is less than the thickness d2 of the first main portion P2, and the same is true for the second temple 122. The thickness of the first elastic portion P1 is uniform throughout, except for the end connected to the first main portion P2, and the same is true for the second elastic portion P3. The thickness of the first main portion P2 is uniform throughout, except for the ends, and the same is true for the second main portion P4. The thickness of the end of the first elastic portion P1 connected to the first main portion P2 gradually increases along the direction of the first main portion P2, and the same is true for the second elastic portion P3. The thickness of the ends of the first main portion P2 gradually decreases toward the ends, and the same is true for the second main portion P4.
[0060] Specifically, the first elastic portion P1 and the second elastic portion P3 are both formed of elastic material, so that the first elastic portion P1 and the second elastic portion P3 can both undergo elastic deformation.
[0061] By configuring both the first elastic portion P1 and the second elastic portion P3 to be arc-shaped, good elasticity of the first elastic portion P1 and the second elastic portion P3 can be ensured. Furthermore, in the initial state, the first elastic portion P1 and the second elastic portion P3 are arc-shaped, which enables the temples 12 of the eyeglasses 10 to better adapt to heads of different sizes. For example, if the user has a large head, the first elastic portion P1 and the second elastic portion P3 will undergo a larger deformation, while if the user has a smaller head, they will undergo a smaller deformation, thereby achieving adaptability to different head sizes.
[0062] The thickness of the first elastic portion P1 is smaller than that of the first main portion P2, and the thickness of the second elastic portion P3 is smaller than that of the second main portion P4. This arrangement ensures the lightness of the eyeglasses 10 while also achieving good elasticity of the first elastic portion P1 and the second elastic portion P3.
[0063] See also Figure 3 In some specific embodiments, the frame 11 includes a first connecting portion 112, which is disposed at the first end S1 of the frame 11, a first temple 121 connected to the first connecting portion 112, and a first elastic cavity T1 disposed in the first connecting portion 112. A second connecting portion 113 is disposed at the second end S2 of the frame 11, a second temple 122 connected to the second connecting portion 113, and a second elastic cavity T2 disposed in the second connecting portion 113.
[0064] Specifically, the first elastic cavity T1 and the second elastic cavity T2 are respectively provided on the frame 11
[0065] The first connecting portion 112 and the second connecting portion 113 each form a receiving space, with the first elastic cavity T1 disposed in the main portion of the first connecting portion 112, and the second elastic cavity T2 disposed in the main portion of the second connecting portion 113. Both the first elastic cavity T1 and the second elastic cavity T2 have openings disposed on the second side surface M2 of the frame 11. The frame 11 also includes elastic cavity covers, which cover the first elastic cavity T1 and the second elastic cavity T2, respectively.
[0066] Of course, in some embodiments, the first elastic cavity T1 and the second elastic cavity T2 can respectively pass through the first side surface M1 and the second side surface M2 of the frame 11, that is, in this case, the first elastic cavity T1 and the second elastic cavity T2 are respectively through holes set in the first connecting portion 112 and the second connecting portion 113.
[0067] It can be understood that by setting the first elastic cavity T1 and the second elastic cavity T2, on the one hand, the elasticity of the first connecting portion 112 and the second connecting portion 113 can be increased, on the other hand, the material of the glasses 10 can be reduced and the cost can be reduced, and on the other hand, objects can be accommodated in the first elastic cavity T1 and the second elastic cavity T2, thereby increasing the functionality of the glasses 10.
[0068] In some specific embodiments, the first connecting portion 112 is arcuate, with the inner side of the arc of the first connecting portion 112 close to the second end S2 of the frame 11, that is, close to the nose pad 13. The thickness of the first connecting portion 112 gradually decreases from the end away from the first main portion P2 to the other end of the first connecting portion 112 (that is, the end connected to the first connecting portion 112). The thickness of the end of the first connecting portion 112 away from the first main portion P2 is equal to the thickness of the middle portion of the frame 11.
[0069] The second connecting portion 113 is arc-shaped, with the inner side of the arc near the first end of the frame 11, that is, near the nose pad 13. The thickness of the second connecting portion 113 gradually decreases from the end away from the second main body portion P4 to the other end of the second connecting portion 113. The thickness of the end away from the second main body portion P4 and the middle portion of the frame 11 are equal.
[0070] It is understood that the gradual reduction in thickness of the first connecting portion 112 and the second connecting portion 113 creates a smooth transition between the frame 11 and the first and second elastic portions P1 and P3, thereby enhancing the structure of the glasses 10. Furthermore, this arrangement provides a certain degree of elasticity at the ends of the first and second connecting portions 112 and 113 that are distal to the main body of the frame 11, thereby enhancing the overall elasticity of the temples 12.
[0071] The glasses 10 may be glasses 10 with detachable nose pads. Figure 4 , Figure 4 yes Figure 1 Schematic diagram of the structural disassembly of the glasses 10.
[0072] In some embodiments, the frame 11 is provided with a charging port 111, and the first end D1 of the nose pad 13 is provided with a plug-in connector A, which is pluggable and connected to the charging port 111. The charging port 111 is provided on the second surface M2 of the frame 11, that is, the nose pad 13 is also provided on the second surface M2 of the frame 11. The charging port 111 can be used to charge the internal components of the glasses 10, such as the light-emitting module.
[0073] The charging port 111 can be used for both charging and connection. For example, when charging the glasses 10, the nose pads 13 can be removed from the charging port 111 and then connected to the charging port 111 using an external charging device to charge the glasses. When charging is no longer required, the nose pads 13 can be inserted into the charging port 111 to install the glasses.
[0074] Among them, the charging interface of the embodiment of the present application can adopt a charging interface used on the market, such as a Micro USB interface; a USB Type C interface; a Lightning interface, etc.
[0075] Since the charging port 111 of the glasses 10 of the present application can realize the function of charging on the one hand and the function of installing the nose pads 13 on the other hand, there is no need to set up an additional mounting structure for installing the nose pads 13, thereby simplifying the structure of the glasses 10.
[0076] It should be understood that when the glasses 10 are worn on the user's face, the first temple 121 and the second temple 122 are fixed to the user's left ear and the user's right ear respectively, and the nose pad 13 is fixed to the user's nose, thereby achieving fixation of the frame 11 relative to the user through the temple 12 and the nose pad 13.
[0077] See also Figure 5 , Figure 5 yes Figure 1 Schematic diagram of the structure of the charging interface 111 on the frame 11.
[0078] In one embodiment, the second side surface M2 of the frame 11 is provided with a third raised portion 112, that is, the third raised portion 112 is provided to protrude relative to the first side surface M1, and the charging port 111 is provided on the third raised portion 112. The distance between the third raised portion 112 and one opposite end S1 of the frame 11 is equal to the distance between the third raised portion 112 and the other opposite end S2 of the frame 11. Therefore, the third raised portion 112 is provided in the middle of the frame 11, which also means that the charging port 111 and the nose pad 13 are provided in the middle of the frame 11.
[0079] Specifically, the charging interface 111 includes a first receiving slot 1111 and a first protrusion 1112. The first protrusion 1112 is disposed within the first receiving slot 1111 and is provided with a charging contact Q. The first protrusion 1112 is fixedly disposed in the middle of the first receiving slot 1111 and forms a space with the surrounding wall of the first receiving slot 1111. The first protrusion 1112 can be connected to a circuit component such as a circuit board disposed within the frame 11. The charging contact Q is connected to the connection line of an external charging device to transmit current.
[0080] See also Figure 6 、 Figure 7 as well as Figure 8 , Figure 6 yes Figure 1 A structural diagram of the nose pad 13 in FIG. Figure 7 yes Figure 1 A cross-sectional view of the nose pad 13 in FIG. Figure 8 yes Figure 1 Schematic diagram of the matching relationship between the charging port 111 and the nose pad 13.
[0081] Specifically, the plug A includes a second protrusion 131, which is disposed at the first end D1 of the nose pad 13 and is provided with a second receiving groove 132. The first end D1 of the nose pad 13 is formed with a stepped surface W1, and the second protrusion 131 can be disposed perpendicular to the stepped surface W1.
[0082] When the plug-in component A is disposed on the charging interface 111 , the first receiving groove 1111 is used to receive the second protrusion 131 , and the second receiving groove 132 is used to receive the first protrusion 1112 .
[0083] Specifically, the outer diameter of the first receiving groove 1111 is greater than the outer diameter of the second protrusion 131, so that the first receiving groove 1111 can accommodate the second protrusion 131. The depth of the first receiving groove 1111 is greater than the length of the first protrusion 1112. This allows the nose pad 13 to be placed on the charging port 111, and the end surface of the charging port 111 contacts the stepped surface W1 of the nose pad 13, thereby securing the nose pad 13 relative to the charging port 111. Accordingly, the length of the first protrusion 1112 can be less than the depth of the second receiving groove 132, so that the first protrusion 1112 can be completely accommodated in the second receiving groove 132.
[0084] It should be noted that when the charging port 111 is positioned on the third raised portion 112, the end surface of the charging port 111 is flush with the end surface of the third raised portion 112, that is, the upper end surface of the first receiving groove 1111 is flush with the upper end surface of the third raised portion 112. When the plug A is positioned on the charging port 111, the stepped surface W1 of the nose pad 13 contacts the end surface of the third raised portion 112.
[0085] In some specific embodiments, the charging port 111 and the plug-in component A may be detachably connected by interference fit.
[0086] More specifically, the first receiving groove 1111 and the second protrusion 131 are detachably connected by an interference fit. In this case, the outer diameter of the first receiving groove 1111 can be set slightly larger than the outer diameter of the second protrusion 131 to achieve the interference fit. Correspondingly, the first protrusion 1112 and the second receiving groove 132 are detachably connected by an interference fit. In this case, the outer diameter of the second receiving groove 132 can be set slightly larger than the outer diameter of the first protrusion 1112 to achieve the interference fit.
[0087] In other embodiments, the charging port 111 and the plug-in component A may be detachably connected in other ways.
[0088] For example, the charging port 111 and the plug-in component A can be detachably connected by magnetic attraction. Specifically, the second protrusion 131 can be configured to have a first magnetic property, and the interior of the first receiving groove 1111 of the charging port 111 can be configured to have a second magnetic property. The first magnetic property and the second magnetic property have a positive polarity and a negative polarity, respectively, to achieve mutual attraction.
[0089] In some other embodiments, the charging port 111 and the plug-in component A can be detachably connected by snapping, which will not be discussed in detail here.
[0090] Please continue reading Figure 6 The second end D2 of the nose pad 13 forms a U-shaped fixing portion, which includes a first sub-fixing portion 133 and a second sub-fixing portion 134. The first sub-fixing portion 133 and the second sub-fixing portion 134 are arranged at intervals, and the first sub-fixing portion 133 and the second sub-fixing portion 134 are arranged at a preset angle, which can be 60°.
[0091] Specifically, the first sub-fixing portion 133 and the second sub-fixing portion 134 can be integrally formed to ensure the stability of the nose pad 13 structure. The U-shaped fixing portion formed by the two matches the shape of the nose, so that the U-shaped fixing portion is fixed to the nose part of the human body to support the frame 11.
[0092] Please combine Figure 11 as well as Figure 12 , Figure 11 yes Figure 1 A schematic structural diagram of the frame 11 of the glasses 10, Figure 12 yes Figure 1 Another structural schematic diagram of the frame 11 of the glasses 10.
[0093] In some specific embodiments, the frame 11 includes a fifth receiving groove N1 and a light-emitting module 114. The fifth receiving groove N1 extends along the length direction of the frame 11, that is, it is arranged along the middle end of the frame 11 toward the temple 12. The light-emitting module 114 is arranged in the fifth receiving groove N1. The light-emitting module 114 is used to emit light of different wavelengths, such as blue light or green light of different wavelengths, to regulate the secretion of melatonin in the human body, thereby achieving the regulation of human sleep.
[0094] Specifically, the light-emitting module 114 is fixedly mounted within the fifth receiving slot N1. The light-emitting module 114 includes a circuit board (not shown) and multiple LEDs, or LED beads, connected to the circuit board. The circuit board provides power to the LEDs, causing them to emit light. The circuit board also houses a controller (not shown) that controls the LEDs' illumination according to a predetermined timing sequence.
[0095] More specifically, the light-emitting module 114 is provided with a sixth receiving groove N2, which is arranged along the length of the light-emitting module 114 and can communicate with the fifth receiving groove N1. The sixth receiving groove N2 is used to accommodate the LED lamp of the light-emitting module 114. It should be understood that the controller of the light-emitting module 114 is disposed in the fifth receiving groove N1, and the LED lamp of the light-emitting module 114 is disposed in the sixth receiving groove N2 formed by the light-emitting module 114 itself.
[0096] In some specific embodiments, the switch device is electrically connected to the controller and is used to control the controller. A portion of the switch device can be accommodated in the fifth receiving slot N1. The frame 11 defines a through hole that connects the fifth receiving slot N1 to the outside world. The other portion of the switch device passes through the through hole and is exposed on the second surface M2 of the frame 11.
[0097] It should be understood that the switch device of the glasses 10 of the present application is arranged on the frame 11 rather than on the temples 12, which ensures the simplicity of the structure of the temples 12 and the good elasticity of the temples 12.
[0098] The present application also provides a glasses system, which includes the glasses 10 described in the above embodiment and a charging base 20. Figure 13 , Figure 13 2 is a schematic structural diagram of the charging base 20 of the eyewear system of the present application.
[0099] The charging base 20 is provided with a receiving slot K and a charging assembly (not shown). The receiving slot K is used to receive the glasses 10, and the charging assembly is used to charge the glasses 10 received in the receiving slot K. Specifically, the receiving slot K can be used to receive the glasses 10 in a folded state, and the charging assembly is used to charge the glasses 10 in the folded state.
[0100] Specifically, the charging base 20 includes a base 21 and a cover 22 . The base 21 is provided with a receiving groove K and a charging component. The cover 22 is covered on the base 21 to protect the glasses 10 received in the receiving groove K.
[0101] Specifically, the accommodating groove K includes a first accommodating groove K1 and a second accommodating groove K2. The first accommodating groove K1 is annularly arranged around the periphery of the base 21 and is used to accommodate the frame 11 and temples 12 of the glasses 10 in a folded state. The second accommodating groove K2 is arranged in the area of the base 21 surrounding the first accommodating groove K1 and is used to accommodate the nose pads 13. When the frame 11 of the glasses 10 is accommodated in the first accommodating groove K1, the second surface M2 of the frame 11 is close to the bottom of the first accommodating groove K1.
[0102] Specifically, the first accommodating groove K1 is arranged in an annular shape and is spaced apart from the edge of the base 21. The annular first accommodating groove K1 divides the base 21 into a central region and an edge region. The central region is the area surrounded by the first accommodating groove K1, and the second accommodating groove K2 is arranged in the central region. The second accommodating groove K2 can be located in the middle of the central region, and both ends of the second accommodating groove K2 can be connected to the first accommodating groove K1.
[0103] It should be understood that after the glasses 10 are used, the nose pads 13 of the glasses 10 can be removed from the frame 11, and the removed nose pads 13 can be placed in the second receiving groove K2, and the frame 11 and the temples 12 in the folded state can be placed in the first receiving groove K1.
[0104] Specifically, the base 21 may be provided with a first magnetic member 211, and the cover 22 may be provided with a second magnetic member 221. When the cover 22 is placed on the base 21, the first magnetic member 211 and the second magnetic member 221 are attracted to each other, so that the cover 22 is attached to the base 21, thereby achieving a detachable connection. Of course, in addition to the first magnetic member 211 and the second magnetic member 221, the base 21 and the cover 22 may be further relatively fixed by a snap connection. Figure 13 The cover 22 may be provided with two snap-fitting portions 222 at its edge, with the two snap-fitting portions 222 spaced apart from each other. The base 21 may be provided with corresponding snap-fitting portions. When the cover 22 is placed over the base 21, one snap-fitting portion 222 and one snap-fitting portion are snap-fitted together to achieve relative fixation between the cover 22 and the base 21.
[0105] Among them, the first magnetic part 211 can be a plurality of magnetic parts arranged at intervals along the edge of the base 21, and the second magnetic part 221 can be a plurality of magnetic parts arranged at intervals along the edge of the cover body 22. When the cover body 22 is covered on the base 21, a first magnetic part 211 and a second magnetic part 221 are attracted to each other.
[0106] Specifically, the charging assembly may include a first charging contact, which is disposed within the accommodating groove K. In conjunction with the above, the first charging contact may be disposed within the first accommodating groove K1, and the charging interface 111 may be provided with a second charging contact. The second charging contact may be the charging contact Q described in the above embodiment, or another charging contact different from the charging contact Q. In this case, the second charging contact is disposed on the second surface M2 of the frame 11.
[0107] It should be understood that when the glasses 10 are accommodated in the accommodating groove K, the first charging contact contacts the second charging contact, so that the charging assembly charges the glasses 10. Therefore, the charging base 20 of the present application can not only accommodate the glasses 10, but also charge the accommodated glasses 10.
[0108] In other embodiments, the charging component may include a first wireless charging component, which is disposed in the accommodating groove K. The frame 11 is correspondingly provided with a second wireless charging component, and the charging base 20 charges the glasses 10 through the first wireless charging component and the second wireless charging component.
[0109] Specifically, the first wireless charging component may include a wireless charging transmitter coil, and the second wireless charging component may include a wireless charging receiver coil. When the glasses 10 are placed in the receiving slot K, the wireless charging transmitter coil and the wireless charging receiver coil align and cooperate, transferring electromagnetic energy through electromagnetic induction, thereby allowing the charging base 20 to charge the glasses 10.
[0110] It should be understood that the charging component can be provided with both a first charging contact and a first wireless charging component, and thus the glasses 10 can be charged by wired charging or wireless charging.
[0111] Optionally, the base 21 is provided with a communication component, which includes a first communication contact disposed within the receiving groove K, and a second communication contact disposed on the second surface of the frame 11. The first communication contact can be disposed on the bottom wall of the first receiving groove K1. When the frame 11 is received in the first receiving groove K1, the first communication contact contacts the second communication contact, establishing a communication connection. It should be understood that the communication connection enables data transmission between the base 21 and the glasses 10, allowing data from the glasses 10 to be transmitted to the base 21, or vice versa.
[0112] In some embodiments, the communication component and the glasses 10 can communicate via simplex communication or duplex communication.
[0113] Specifically, when the communication component performs simplex communication with the glasses 10, the number of the first communication contact can be one, and correspondingly, the number of the second communication contact can also be one. In this case, the communication component can send data signals based on the first communication contact, and the glasses 10 can receive data signals based on the second communication contact, or the communication component can receive data signals based on the first communication contact, and the glasses 10 can send data signals based on the second communication contact.
[0114] When duplex communication is performed between the communication component and the glasses 10, the number of first communication contacts can be two, one of which is used to receive data signals, and the other is used to transmit data signals; correspondingly, the number of second communication contacts can also be two, one of which is used to receive data signals, and the other is used to transmit data signals. At this time, the communication component and the glasses 10 achieve duplex communication.
[0115] When simplex communication is used, a single bus interface can be provided in the communication component. A single bus is a one-line bus that can transmit both clock and data, enabling bidirectional data transmission, thereby enabling simplex communication between the communication component and the glasses 10. This single bus also offers numerous advantages, including a simple resource structure, low cost, and ease of bus expansion and maintenance, further enhancing the performance of the glasses system.
[0116] Of course, in some other embodiments, the charging base 20 is provided with a first wireless communication component, and the glasses 10 are provided with a second wireless communication component, and the first and second wireless communication components communicate via a wireless connection. For example, communication is performed via near-field communication. It should be understood that when communication is performed via a wireless connection, neither the first nor the second communication component is provided with communication contacts.
[0117] Specifically, when the glasses 10 are placed in the accommodating groove K, the distance between the first wireless communication component and the second wireless communication component is within the threshold range, and a wireless communication connection can be achieved, thereby achieving wireless communication between the glasses 10 and the charging base 20.
[0118] Optionally, the glasses 10 may be provided with a Hall element, which is connected to a switch device of the glasses 10 and is used to control the switching of the switch device to control the switching of the glasses 10. The Hall element may be provided in the frame 11 of the glasses 10 and close to the second surface M2 of the frame 11.
[0119] Specifically, the charging base 20 is equipped with a magnetic block, specifically, the base 21 is mounted on the magnetic block, which provides a magnetic field for the base 21. When the glasses 10 are placed in the receiving slot K, the magnetic induction intensity applied to the Hall element is greater than or equal to a preset intensity, at which point the Hall element controls the switch device to turn off the glasses 10. When the glasses 10 are removed from the receiving slot K, the magnetic induction intensity applied to the Hall element is less than the preset intensity, at which point the Hall element controls the switch device to turn on the glasses 10.
[0120] It should be understood that when the user no longer needs to use the glasses 10 and places them in the receiving slot K, the glasses 10 are close to the magnetic block, and the magnetic field strength experienced by the Hall effect element in the glasses 10 increases, becoming greater than or equal to the preset magnetic field strength, causing the Hall effect element to control the glasses to turn off. When the user removes the glasses 10 from the receiving slot K, the magnetic field strength experienced by the Hall effect element in the glasses 10 decreases, becoming less than the preset magnetic field strength, causing the Hall effect element to control the glasses 10 to turn on.
[0121] Therefore, through the setting of the Hall element and the magnetic block, the glasses 10 can be automatically opened and closed, and meet the actual needs of the user, thereby improving the intelligence level of the glasses 10 and the user experience.
[0122] Reference herein to an "embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it refer to independent or alternative embodiments that are mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments unless there is a conflict.
[0123] The above description is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A pair of glasses, characterized in that: The glasses include: A frame having a first surface and a second surface disposed opposite to each other, and a light-emitting side surface disposed between the first surface and the second surface, wherein the first surface is parallel to the second surface, the width of the first surface is greater than the width of the second surface, a side edge of the first surface is connected to a side edge of the second surface via the light-emitting side surface, the angle between the light-emitting side surface and the first surface is less than 90°, and the second surface is close to the user's face; a light-emitting module is disposed within the frame, and a light beam emitted by the light-emitting surface of the light-emitting module is transmitted through the light-emitting side surface to illuminate the user's eyes; The temples are arranged at the ends of the frame.
2. The glasses according to claim 1, wherein The light-emitting module includes a plurality of LED lamps, and the light-emitting surfaces of the LED lamps are parallel to the light-emitting side surfaces.
3. The glasses according to claim 1, wherein A switch component is also provided on the second surface of the frame, and the switch component is used to control the working state of the light-emitting module.
4. The glasses according to claim 1, wherein The second surface of the frame is provided with a charging interface, and the charging interface is used to charge the light-emitting module.
5. The glasses according to claim 4, characterized in that The glasses further include a nose pad, one end of which is provided with a plug-in piece, and the nose pad is pluggably connected to the frame through the plug-in piece and the charging interface.
6. The glasses according to claim 1, wherein The temples include: A first temple, comprising a first elastic portion and a first main portion, wherein one end of the first elastic portion is connected to the first end of the frame, and the first main portion is provided with a first magnetic member; A second temple, comprising a second elastic portion and a second main body portion, wherein one end of the second elastic portion is connected to the second end of the frame, and the second main body portion is provided with a second magnetic member; Wherein, when the glasses are in a folded state, the first magnetic component and the second magnetic component are attracted to each other.
7. A glasses system, characterized in that: The eyeglass system comprises: The glasses according to any one of claims 1 to 6, and the charging base; The charging base is provided with a receiving slot and a charging component. The receiving slot is used to receive the glasses, and the charging component is used to charge the glasses received in the receiving slot.
8. The eyeglass system according to claim 7, wherein: The charging assembly includes a first charging contact, and the first charging contact is disposed in the accommodating groove; The second surface of the frame is provided with a charging interface, and the charging interface is provided with a second charging contact. When the glasses are accommodated in the accommodating groove, the first charging contact conflicts with the second charging contact, so that the charging component charges the glasses.
9. The eyeglass system according to claim 7, wherein: The charging component includes a first wireless charging component, which is arranged in the accommodating groove. The frame is correspondingly provided with a second wireless charging component. The charging base charges the glasses through the first wireless charging component and the second wireless charging component.
10. The eyeglass system according to claim 7, wherein: The charging base is provided with a communication component, the communication component includes a first communication contact, the first communication contact is provided in the accommodating groove, and the second surface of the frame is provided with a second communication contact; When the glasses are accommodated in the accommodating groove, the first communication contact contacts the second communication contact, so that the charging base is in communication connection with the glasses.
11. The eyeglass system according to claim 7, wherein: The charging base is provided with a first wireless communication component, and the frame is correspondingly provided with a second wireless communication component. The charging base realizes wireless communication connection with the glasses through the first wireless communication component and the second wireless communication component.
Citation Information
Patent Citations
Intelligent sleeping device
CN105148409A
System for securing eyewear to user or object
CN110651220A
Light-emitting treatment glasses
CN111659017A
Intelligent head-mounted device
CN111679433A
Glasses device, intelligent glasses and spectacle case
CN205450448U