Glasses lamp

By designing a compact eyeglass lamp and utilizing detachable connectors and lightweight materials, the problem of the weight of head-mounted lighting has been solved, achieving a seamless wearing experience and convenient use, thus improving user comfort and convenience.

CN224261588UActive Publication Date: 2026-05-19SHENZHEN LUNBI PRECISION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional head-mounted lights are large in size and can feel heavy when worn on the head, which can easily lead to fatigue for users after prolonged use.

Method used

Design an eyeglass lamp with a body size no larger than 6cm×2.5cm×2.5cm. It is fixed to the temple of the eyeglasses by a detachable connector. The controller is detachably connected to the end of the temple. It uses lightweight materials and a compact design, combined with elastic connectors and a magnetic quick-release structure, to achieve a seamless wearing experience.

Benefits of technology

The weight of the eyeglass lamp is effectively controlled at 3-4 grams, improving wearing comfort, reducing the feeling of heaviness, making it easy to store and carry, extending its service life, and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The glasses lamp comprises a lamp body, a first connecting piece and a controller, the length of the lamp body is not larger than 6 cm, the width of the lamp body is not larger than 2.5 cm, the height of the lamp body is not larger than 2.5 cm, a light-emitting assembly used for lighting is arranged at the front end of the lamp body, and the first connecting piece is arranged on one side of the lamp body. The first connecting piece is configured to detachably fix the lamp body to a bearing structure of the wearable accessory, an electric wire is connected between the controller and the lamp body, the controller is electrically connected with the light-emitting assembly through the electric wire, and a second connecting piece is arranged on the controller and used for detachably connecting the controller to the tail end of the glasses leg. The lamp body is designed to be in a small shape with the maximum size not larger than 6 cm, materials used for the glasses lamp can be effectively controlled, the overall weight of the glasses lamp is reduced, the load bearing feeling when the glasses lamp is worn is relieved, and meanwhile the glasses lamp is more convenient to store and carry.
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Description

Technical Field

[0001] This utility model relates to the field of lighting device technology, and in particular to an eyeglass lamp. Background Technology

[0002] In dark environments (such as nighttime maintenance, outdoor camping, and emergency repairs), where both hands need to be used simultaneously, traditional handheld lighting devices have limitations in their usability. To address this, head-mounted lights (such as miner's lamps and headlamps) have been introduced to free up the user's hands. These lights allow the illumination area to move with the head and the user's field of vision, greatly improving ease of use. Most head-mounted lights are equipped with a headband to secure them to the user's head.

[0003] However, most head-mounted lights are quite large, and wearing them on the head can cause significant weight and fatigue for users over a long period of time. Utility Model Content

[0004] In view of this, the present invention provides an eyeglass lamp to solve the problem that the existing head-mounted lighting lamps are too large, causing a noticeable burden when worn on the head, and easily leading to user fatigue after prolonged use.

[0005] To achieve one or more of the above-mentioned objectives or other objectives, this utility model proposes an eyeglass lamp, including a lamp body, a first connector, and a controller. The lamp body has a length not exceeding 6cm, a width not exceeding 2.5cm, and a height not exceeding 2.5cm. The front end of the lamp body is provided with a light-emitting component for illumination. The first connector is disposed on one side of the lamp body and is configured to detachably fix the lamp body to the support structure of a wearable accessory. A wire connects the controller to the lamp body, and the controller is electrically connected to the light-emitting component via the wire. The controller is provided with a second connector for detachably connecting the controller to the end of the temple.

[0006] Preferably,

[0007] i) The first connector is a spring clip, and the end of one arm of the spring clip is connected to the rear end of the lamp body;

[0008] ii) The first connector includes a base and a strap;

[0009] The first side wall of the base is provided with a limiting shaft, the second side wall of the base is provided with a buckle, the end of the strap is sleeved on the limiting shaft, and the front end of the strap has a number of locking holes evenly distributed along its length direction, and the buckle can be locked into any of the locking holes.

[0010] The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes.

[0011] The cross-sectional area of ​​the constraint channel can be adjusted by selecting different card holes and buckles;

[0012] iii) The first connector includes a base, a strap, a clamping block, and a spring;

[0013] The base has a limiting shaft on its first side wall, a spring-loaded groove on its second side wall, and a through-hole that passes through both sides of the base and intersects with the spring-loaded groove. The clamping block is slidably connected or partially slidably connected in the spring-loaded groove, and the clamping block has an avoidance opening that can connect with the through-hole.

[0014] The through-hole and the clearance opening can form a passageway. The end of the strap passes through the passageway and is sleeved on the limiting shaft. The spring is set at the bottom of the spring pressure groove to drive the clamping block to slide, forcing the clearance opening to be offset from the through-hole. The strap in the passageway is clamped by the squeezing action between the inner wall of the clearance opening and the inner wall of the through-hole.

[0015] The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes.

[0016] The cross-sectional area of ​​the constraint channel can be adjusted by changing the clamped area at the front end of the strap.

[0017] iiii) The first connector includes a base and a strap;

[0018] The first side wall of the base is provided with a limiting shaft, the end of the strap is sleeved on the limiting shaft, and the inner side of the front end of the strap can be detachably connected to the second side wall of the base via Velcro.

[0019] The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes.

[0020] The cross-sectional area of ​​the constraint channel can be adjusted by changing the connection area at the front end of the strap.

[0021] Preferably, the front end of the strap has a dimension in at least one direction that is larger than the dimension in the corresponding direction of the through-hole, so as to restrict the front end of the strap from passing through the through-hole.

[0022] Preferably, the rear end of the lamp body is provided with a ball head, and the front end of the base is provided with a ball seat, with the ball head snapped into the ball seat.

[0023] Preferably, the first connector further includes a wire harness, which is disposed on the wire and has a wire harness channel passing through both ends thereon. The wire harness channel is used for the temple to pass through so that the wire runs along the direction of the temple.

[0024] Preferably, a portion of the wire has a spiral coil structure.

[0025] Preferably, the second connector includes a sleeve made of elastic material, the sleeve being disposed on one side wall of the controller, the sleeve having a sleeve cavity for the end of the temple to pass through, and the cross-section of the sleeve cavity having a major axis and a minor axis.

[0026] Preferably, the controller includes a base and a battery block, one end of the wire is connected to the base, the second connector is disposed on the inner side of the base, the outer side of the base is provided with a quick-release position, the battery block is detachably installed on the quick-release position and is connected to the wire through a contact.

[0027] Preferably, the outer wall of the base forms a quick-release position, and the battery block is magnetically attached to the quick-release position.

[0028] Preferably, both ends of the quick-release position are provided with protrusions, and both ends of one side wall of the battery block are provided with notches that are adapted to the protrusions. When the battery block is adsorbed on the quick-release position, the protrusions are engaged in the corresponding notches.

[0029] Preferably, the controller is provided with a motherboard, a switch and a label. The motherboard is electrically connected to the built-in battery of the controller. The label is connected to the motherboard. The controller has a sound hole for the label to receive external sound sources. The switch is located on one side of the controller and is electrically connected to the motherboard. Both the switch and the label are used to control the power supply between the motherboard and the lighting components.

[0030] Implementing the embodiments of this utility model will have the following beneficial effects:

[0031] After adopting the above-mentioned eyeglass lamp, because the lamp body is designed to be small in size with a maximum size of no more than 6cm, the materials used in the eyeglass lamp can be effectively controlled. Thanks to the small size and lightweight materials, the weight of the lamp body plus the lighting components can be limited to 3-4 grams. Compared with the existing eyeglass lamps that weigh hundreds of grams, the eyeglass lamp of this application can truly achieve imperceptible wearing, effectively improve the feeling of weight when wearing the eyeglass lamp, enhance wearing comfort, and also make it easier to store and carry the eyeglass lamp. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] in:

[0034] Figure 1 This is a perspective view of Embodiment 2 of this utility model from a top view angle;

[0035] Figure 2 This is a perspective view of Embodiment 2 of this utility model from a downward angle;

[0036] Figure 3 This is an exploded view of Embodiment 3 of this utility model from a top-down perspective;

[0037] Figure 4 This is an exploded view of Embodiment 3 of this utility model from a bottom-view angle;

[0038] Figure 5 This is a side sectional view of Embodiment 3 of this utility model;

[0039] Figure 6 This is a perspective view of Embodiment 1 of this utility model;

[0040] Figure 7 These are views of the lamp body and the annular cover connected in this utility model from three different perspectives.

[0041] Figure 8 This is an exploded view of the entire utility model;

[0042] Figure 9 This is a partial exploded view of the present invention;

[0043] Figure 10 This is a perspective view of the present invention in its use state.

[0044] In the diagram: 1. Lamp body; 11. Heat dissipation groove; 23. Buckle; 24. Limiting shaft; 25. Spring-loaded groove; 26. Through-hole; 3. Base; 33. Flat wall; 34. Rubber pad; 35. First positioning groove; 36. Second positioning groove; 41. Ball seat; 51. Mounting cavity; 52. Ball head; 6. Light-emitting component; 61. Lamp bead; 62. Concentrator; 63. Lens; 64. Ring cover; 65. Sealing ring; 7. Strap; 71. Clip hole; 81. Clamping block; 82. Elastic element; 83. 91. Wire; 100. Elastic clip; 101. Clip groove; 1100. Controller; 1200. Base; 1201. Quick release position; 1202. Protrusion; 1203. Sound hole; 1300. Battery block; 1301. Notch; 1400. Magnet; 1401. Main board; 1402. Switch; 1403. Mark; 1500. Socket; 1501. Socket cavity; 1600. Battery; a. Restraint channel; b. Passage channel; c. Contact. Detailed Implementation

[0045] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects, not to describe a particular order.

[0046] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0047] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0048] like Figure 1-10 As shown, an eyeglass lamp includes a lamp body 1, a first connector, and a controller 1100. The lamp body 1 has a length of no more than 6cm, a width of no more than 2.5cm, and a height of no more than 2.5cm. The front end of the lamp body 1 is provided with a light-emitting component 6 for illumination. The first connector is provided on one side of the lamp body 1 and is configured to detachably fix the lamp body 1 to the support structure of a wearable accessory. A wire 91 is connected between the controller 1100 and the lamp body 1. The controller 1100 and the light-emitting component 6 are electrically connected through the wire 91. The controller 1100 is provided with a second connector for detachably connecting the controller 1100 to the end of the temple of the glasses, so as to shorten the wiring length of the wire 91, reduce the wiring burden, improve the visual consistency of the eyeglass lamp, and reduce the risk of the wire 91 being snagged by external objects during use, thereby increasing the service life of the eyeglass lamp. Designing the lamp body 1 to be a compact form with a maximum size of no more than 6cm not only effectively controls the materials used in the eyeglass lamp and reduces the overall weight of the eyeglass lamp, reducing the burden when wearing the eyeglass lamp, but also makes it easier to store and carry the eyeglass lamp.

[0049] When the supporting structure is eyeglasses, the lamp body 1 is connected to the outside of the temple or the head of the glasses through the first connector, and the controller 1100 is connected to the end of the temple through the second connector. The controller 1100 is suspended behind the ear, and the direction of the eyelight is consistent with the direction of the eyeglasses. This can replace the headlamp to help the user achieve nighttime lighting, achieve imperceptible wearing, and will not cover the head skin, which is conducive to heat dissipation of the head.

[0050] Specifically, the eyeglass lamp of this utility model can be detachably fixed to the support structure of the wearable accessory through the first connector. The support structure of the wearable accessory can be the temple of the eyeglasses, the edge of the headdress, etc.

[0051] In one embodiment, the dimensions of the lamp body 1 after being connected to the annular cover 64 are 2.4-6cm in length, 1.28-2.5cm in width, and 1.28-2.5cm in height.

[0052] In one embodiment, the dimensions of the lamp body 1 after being connected to the annular cover 64 are 2.4-5cm in length, 1.28-2cm in width, and 1.28-2cm in height.

[0053] In one embodiment, the dimensions of the lamp body 1 after being connected to the annular cover 64 are 2.4-4cm in length, 1.28-1.5cm in width, and 1.28-1.5cm in height.

[0054] In one embodiment, the dimensions of the lamp body 1 after being connected to the annular cover 64 are 2.4-3cm in length, 1.28-1.3cm in width, and 1.28-1.3cm in height.

[0055] In this embodiment, the dimensions of the lamp body 1 after being connected with the annular cover 64 are preferably 2.4cm in length, 1.28cm in width, and 1.28cm in height, and it is made of aluminum or aluminum alloy or similar lightweight materials. Thanks to its small size and lightweight materials, the weight of the lamp body 1 plus the lighting components can be limited to 3-4 grams. Compared with the existing headlamps that weigh hundreds of grams, the eyeglass lamp of this application can truly achieve imperceptible wearing and effectively improve the wearing comfort. The side wall of the lamp body 1 is provided with heat dissipation grooves 11 along its circumference in order to increase the heat dissipation area of ​​the lamp body 1 and improve the heat dissipation efficiency of the lamp body 1.

[0056] Specifically, the supporting structure includes eyeglass frames or headdresses, etc.

[0057] Furthermore,

[0058] i) Such as Figure 6As shown, the first connector is a spring clip 100. The end of one arm of the spring clip 100 is fixedly connected to the rear end of the lamp body 1. In this embodiment, the end of the arm and the rear end of the lamp body 1 can be detachably connected by any means such as plugging or snapping. The orientation of the spring clip 100 is perpendicular to the illumination direction of the lamp body 1. The user can use the spring clip 100 to hold the temples or brim of the glasses and fix the lamp body 1 on the outside of the temples or brim of the glasses for use, so that the eyeglass lamp can be used to connect to various load-bearing structures.

[0059] Specifically, the inner front end of each of the two clamping arms is provided with a clamping groove 101 for engaging the temple. In one embodiment, the two clamping grooves 101 have different widths to accommodate two different thicknesses of temples.

[0060] ii) such as Figure 1-2 As shown, the first connector includes a base 3 and a strap 7;

[0061] The first side wall of the base 3 is provided with a limiting shaft 24, and the second side wall of the base 3 is provided with a buckle 23. The end of the strap 7 is sleeved on the limiting shaft 24. Several locking holes 71 are evenly distributed along the length of the front end of the strap 7. The buckle 23 can be locked into any locking hole 71.

[0062] Among them, the inner wall of the strap 7 and the side wall of the base 3 together form a constraint channel a through which the temple of the eyeglasses passes;

[0063] By selecting different clips 71 to engage with clips 23, the cross-sectional area of ​​the constraint channel a can be adjusted to accommodate the binding of temples of different diameters, ensuring that the lamp body 1 is stably bound to the temple.

[0064] In this embodiment, a through first positioning groove 35 is provided on the first side wall of the base 3 along the width direction of the base 3, and a through second positioning groove 36 is provided on the second side wall of the base 3 along the width direction of the base 3. The limiting shaft 24 is provided on the inner wall of the first positioning groove 35, and the buckle 23 is provided on the inner wall of the second positioning groove 36. When the lamp body 1 is tied to the temple by the strap 7, the strap 7 will be in a taut state. At this time, the rear end of the strap 7 is engaged in the first positioning groove 35, and the front end of the strap 7 is engaged in the second positioning groove 36. The first positioning groove 35 and the second positioning groove 36 limit the strap 7, preventing the strap 7 from shifting in the length direction of the base 3, making the structure of the constraint channel a more stable, thereby ensuring the installation stability of the lamp body 1 on the temple.

[0065] iii) such as Figure 3-5 As shown, the first connector includes a base 3, a strap 7, a clamping block 81, and an elastic element 82;

[0066] The first side wall of the base 3 is provided with a limiting shaft 24, the second side wall of the base 3 is provided with a spring-loaded groove 25, and the base 3 is also provided with a through-hole 26 that passes through both sides and intersects with the spring-loaded groove 25. The clamping block 81 is slidably connected or partially slidably connected in the spring-loaded groove 25, and the clamping block 81 is provided with a clearance opening 83 that can connect with the through-hole 26.

[0067] The through-hole 26 and the clearance opening 83 can form a passageway b. The end of the strap 7 passes through the passageway b and is sleeved on the limiting shaft 24. The elastic element 82 is set at the bottom of the spring pressure groove 25 to drive the clamping block 81 to slide, forcing the clearance opening 83 to be offset from the through-hole 26. The strap 7 in the passageway b is clamped by the squeezing action between the inner wall of the clearance opening 83 and the inner wall of the through-hole 26.

[0068] Among them, the inner wall of the strap 7 and the side wall of the base 3 together form a constraint channel a through which the temple of the eyeglasses passes;

[0069] By changing the clamped area at the front end of the strap 7, the cross-sectional area of ​​the constraint channel a can be adjusted. In use, first press down or pull the exposed end of the clamping block 81 so that the clearance opening 83 slides with the clamping block 81 and aligns with the through opening 26. Then, pass the front end of the strap 7 through the passage channel b and release the control force on the clamping block 81. At this time, the elastic element 82 will drive the clamping block 81 to reset, forcing the clearance opening 83 to be offset from the through opening 26. The corresponding part of the strap 7 in the passage channel b is clamped by the squeezing action of the inner wall corner of the clearance opening 83 and the inner wall corner of the through opening 26, thereby limiting the movable end of the strap 7. The user can slide the strap 7 along the passage channel b to adjust the clamped part of the strap 7, thereby changing the cross-sectional area of ​​the constraint channel a.

[0070] In this embodiment, the elastic element 82 is a spring, and the clamping block 81 has a receiving cavity that opens toward its bottom wall. The spring is sleeved in the receiving cavity, with one end of the spring extending out of the receiving cavity and abutting against the bottom wall of the spring pressure groove 25, and the other end of the spring abutting against the inner wall of the receiving cavity.

[0071] iiii) The first connector includes a base 3 and a strap 7;

[0072] A limiting shaft 24 is provided on the first side wall of the base 3. The end of the strap 7 is sleeved on the limiting shaft 24. The inner side of the front end of the strap 7 can be detachably connected to the second side wall of the base 3 via Velcro. The hook side of the Velcro is placed on the second side wall of the base 3, and the velvet side is distributed along the length of the strap 7 on its inner side (not shown in the figure). The inner side wall of the strap 7 and the side wall of the base 3 together form a constraint channel a through which the temple of the eyeglasses passes. The cross-sectional area of ​​the constraint channel a can be adjusted by changing the connection area of ​​the front end of the strap 7.

[0073] Among them, the inner wall of the strap 7 and the side wall of the base 3 together form a constraint channel a through which the temple of the eyeglasses passes;

[0074] The cross-sectional area of ​​the constraint channel a can be adjusted by changing the connection area at the front end of the strap 7.

[0075] Specifically, the strap 7 is made of rubber or silicone to increase the frictional resistance between the strap 7 and the temple, thereby improving the grip of the strap 7 on the temple.

[0076] In this embodiment, the combined length of the lamp body 1 and the first connector is no more than 3.5cm, the width is no more than 1.9cm, and the height is no more than 1.9cm. It is compact in shape and lightweight, and can be worn without being felt.

[0077] In one embodiment, the lamp body 1 has a built-in battery that powers the light-emitting component 6. The battery can be a dry cell battery or a rechargeable battery (not shown in the figures).

[0078] Furthermore, the front end of the strap 7 has a dimension in at least one direction that is larger than the dimension in the corresponding direction of the through-hole 26. This is to restrict the front end of the strap 7 from passing through the through-hole 26 (not shown in the figure) when it is used, so that the front end of the strap 7 cannot pass through the through-passage b. This serves to prevent the front end of the strap 7 from coming loose and to ensure that the strap 7 is stably attached to the temple of the glasses.

[0079] In one embodiment, a straight wall 33 is connected between the first and second sidewalls of the base 3. The straight wall 33 can form a constraint channel a with the inner sidewall of the strap 7. Since a considerable number of glasses are made of acetate, the cross-section of their temples is mostly rectangular or waist-shaped. When the lamp body 1 is tied to the outside of such temples, the straight wall 33 will be tightly pressed against the outer sidewall of the temple when the strap 7 is tightened. The temple can provide a certain limit and support for the lamp body 1 through the straight wall 33, preventing the lamp body 1 from swinging around the temple and making the installation of the glasses lamp more stable. A rubber pad 34 is laid on the straight wall 33. When the lamp body 1 is tied to the temple and the straight wall 33 is tightly pressed against the outer sidewall of the temple, the outer sidewall of the temple will squeeze the rubber pad 34, thereby increasing the frictional resistance between the lamp body 1 and the temple through the rubber pad 34, improving the anti-slip ability between the two and improving the connection stability.

[0080] Furthermore, the rear end of the lamp body 1 is provided with a ball head 52, and the front end of the base 3 is provided with a ball seat 41. The ball head 52 is snapped into the ball seat 41. When in use, the user can move the lamp body 1 so that the lamp body 1 can swing and position itself through the ball joint structure, thereby changing the illumination angle of the light-emitting component 6 relative to the direction of the glasses, and flexibly adjusting the lighting area to meet different lighting needs of the user, such as following the viewing angle for illumination, or illuminating the ground in front of the user below the viewing angle.

[0081] Specifically, the lamp body 1 is made of aluminum, and the lens 63 is made of acrylic plastic. This design ensures structural strength while effectively reducing the overall weight of the eyeglass lamp, minimizing its impact on eyeglass wear, facilitating a seamless wearing experience, and enhancing the user experience.

[0082] In this embodiment, the light-emitting component 6 includes an LED 61, a condenser cup 62, a lens 63, and an annular cover 64. The lamp body 1 has a mounting cavity 51 with an opening at its front end. The LED 61 is disposed on the bottom wall of the mounting cavity 51. The condenser cup 62 is fitted inside the mounting cavity 51, and its narrow end surrounds the LED 61. The lens 63 is disposed at the opening of the mounting cavity 51. The annular cover 64 is fixed to the front end of the lamp body 1 and presses the LED 61, the condenser cup 62, and the lens 63 into the mounting cavity 51 through its inner ring structure. The light emitted by the LED 61 is refracted and focused by the cup wall of the condenser cup 62 and then emitted through the lens 63, forming an illuminated area within the field of vision of the eyeglass wearer.

[0083] Specifically, a sealing ring 65 is provided between the inner ring of the annular cover 64 and the periphery of the lens 63. The sealing ring 65 closes the gap between the two to improve the airtightness of the mounting cavity 51, prevent moisture or impurities from entering, and extend the service life of the lamp bead 61.

[0084] Furthermore, the first connector also includes a wire harness (not shown in the attached figure). The wire harness is disposed on the wire 91 and has a wire harness channel passing through both ends of the wire harness. The wire harness channel is used for the temple to pass through, thereby helping the wire 91 to run along the direction of the temple. This not only improves the integration of the eyeglass lamp and the eyeglasses and enhances the appearance, but also protects the connection end between the wire 91 and the lamp body 1, preventing the end from easily breaking due to long-term bending or external pulling, thus extending the service life of the eyeglass lamp.

[0085] Specifically, both the base 3 and the ball head 52 have wiring holes for the power supply line 91 to pass through. The wire 91 passes through the wiring hole of the base 3, the inner cavity of the ball seat 41, and the wiring hole of the ball head 52 in sequence, and finally enters the mounting cavity 51 to be electrically connected to the lamp bead 61.

[0086] In this embodiment, the wire harness is a hollow structure with both ends open, and its inner cavity forms a wire harness channel. The wire harness is sleeved on the wire 91 through the wire harness channel, which also serves as a connection channel for the temple to be sleeved (not shown in the attached figure).

[0087] In one embodiment, there are two cable channels arranged in parallel, one for power supply cable 91 and the other for temple cable (not shown in the attached figure).

[0088] In one embodiment, the wire harness is fixed to the wire 91 by adhesive bonding (not shown in the figure).

[0089] In one embodiment, the wire harness is integrally formed with the wire 91 (not shown in the figures).

[0090] Furthermore, the wire 91 has a partial spiral coil structure. By stretching or contracting the spiral coil, the wire 91 has the ability to flexibly adjust its length, so as to take into account the connection requirements of different lengths of the lamp body 1 and the controller 1100 at different distances. At the same time, it is beneficial for the wire 91 to be taut along the temple, so that the eyeglass lamp looks neater when in use.

[0091] Furthermore, the second connector includes a sleeve 1500 made of elastic material. In this embodiment, the sleeve 1500 is preferably made of rubber. The sleeve 1500 is disposed on one side wall of the controller 1100. The sleeve 1500 has a sleeve cavity 1501 for the end of the temple to pass through. The cross-section of the sleeve cavity 1501 has a major axis and a minor axis. The cross-section of the sleeve cavity 1501 can be waist-shaped, rectangular, or rhomboid to fit the contour of the temple.

[0092] like Figure 8 As shown, in this embodiment, the sleeve 1500 is a hollow structure with both ends through, and its inner cavity forms the sleeve cavity 1501. The sleeve 1500 can be sleeved on the end of the temple through the sleeve cavity 1501, and the controller 1100 can be detachably connected to the end of the temple.

[0093] In one embodiment, the socket 1501 is a hollow structure with one end open (not shown in the figure).

[0094] In one embodiment, the socket 1500 is fixed to the wire 91 by adhesive bonding (not shown in the figure).

[0095] In one embodiment, the socket 1500 is integrally formed with the controller 1100 (not shown in the figures).

[0096] In one embodiment, the second connector is a hooking mechanism or a clamping mechanism.

[0097] In one embodiment, the second connector is a spring hook fixed to one side wall of the controller 1100, the bent end of which can be hung on the end of the temple and clamp the end of the temple (not shown in the figure).

[0098] Specifically, one end of the wire 91 is connected to the upper corner of the controller 1100. The socket 1500 is set on the inner wall of the controller 1100 and close to the end of the wire 91. Both the end of the wire 91 and the socket 1500 are set at one corner of the controller 1100. This makes it easy to hang the controller 1100 on the end of the temple, so that the controller 1100 hangs behind the ear and the lamp body 1 are placed in front of and behind the temple to distribute the weight evenly on both ends of the temple, ensuring the balance of the glasses lamp. On the other hand, it makes it easy for the wire 91 to run along the temple, improving the aesthetics of the wiring.

[0099] Furthermore, the controller 1100 includes a base 1200 and a battery block 1300. One end of the wire 91 is connected to the base 1200. A second connector is provided on the inner side of the base 1200. A quick-release position 1201 is provided on the outer side of the base 1200. The battery block 1300 is detachably installed on the quick-release position 1201 and is connected to the wire 91 through the contact c.

[0100] Specifically, the inner side of the aforementioned components refers to the side of the component facing the face when worn, while the outer side is the opposite.

[0101] In one embodiment, a plug-in hook is provided on one side wall of the battery block 1300, and a slot is provided on the quick-release position 1201 for the hook to be inserted. The battery block 1300 can be detachably fixed on the quick-release position 1201 by the hook engaging with the slot (not shown in the figure).

[0102] Furthermore, the outer wall of the base 1200 forms a quick-release position 1201, and the battery block 1300 is attracted to the quick-release position 1201 by the magnet 1400, so that the user can quickly replace the battery block 1300 and improve the convenience of operation.

[0103] Specifically, both the base 1200 and the battery block 1300 are provided with multiple magnets 1400. The magnets 1400 on the base 1200 are evenly distributed along the periphery of the quick-release position 1201. The magnets 1400 on the battery block 1300 correspond one-to-one with the magnets 1400 on the base 1200. This multi-point magnetic attraction improves the positioning accuracy of the battery block 1300 on the quick-release position 1201, ensuring accurate connection of the contact c.

[0104] Furthermore, both ends of the quick-release position 1201 are provided with protrusions 1202, and both ends of one side wall of the battery block 1300 are provided with notches 1301 that are adapted to the protrusions 1202. When the battery block 1300 is attached to the quick-release position 1201, the protrusions 1202 are engaged in the corresponding notches 1301. By engaging the two sets of protrusions 1202 and notches 1301, the radial movement of the battery block 1300 in the magnetic attraction direction is restricted, so as to prevent the battery block 1300 from being easily knocked off by external force and improve the connection stability between the battery block 1300 and the base 1200.

[0105] Furthermore, the controller 1100 is equipped with a main board 1401 and a control unit. The main board 1401 is electrically connected to the built-in battery 1600 of the controller 1100, and the control unit is used to control the power supply between the main board 1401 and the lamp body 1.

[0106] Furthermore, the control components include a switch 1402 and a label 1403. The label 1403 is connected to the main board 1401. The controller 1100 has a sound hole 1203 for the label 1403 to receive external sound sources. The switch 1402 is located on one side of the controller 1100 and is electrically connected to the main board 1401. Users can input voice commands to the main board 1401 through the label 1403 or directly control the power on and off of the lamp body 1 through the switch 1402, improving the convenience of operation. Voice control start and stop is existing technology and will not be described in this embodiment.

[0107] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.

Claims

1. A spectacle light, characterized in that, include: The lamp body has a length not exceeding 6cm, a width not exceeding 2.5cm, and a height not exceeding 2.5cm, and the front end of the lamp body is provided with a light-emitting component for illumination; A first connector is disposed on one side of the lamp body and is configured to detachably fix the lamp body to the support structure of the wearable accessory. The controller is connected to the lamp body by a wire, and the controller is electrically connected to the light-emitting component by the wire. The controller is provided with a second connector for detachably connecting the controller to the end of the temple.

2. The eyeglass lamp according to claim 1, characterized in that: i) The first connector is a spring clip, and the end of one arm of the spring clip is connected to the rear end of the lamp body; ii) The first connector includes a base and a strap; The first side wall of the base is provided with a limiting shaft, the second side wall of the base is provided with a buckle, the end of the strap is sleeved on the limiting shaft, and the front end of the strap has a number of locking holes evenly distributed along its length direction, and the buckle can be locked into any of the locking holes. The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes. The cross-sectional area of ​​the constraint channel can be adjusted by selecting different card holes and buckles; iii) The first connector includes a base, a strap, a clamping block, and a spring; The base has a limiting shaft on its first side wall, a spring-loaded groove on its second side wall, and a through-hole that passes through both sides of the base and intersects with the spring-loaded groove. The clamping block is slidably connected or partially slidably connected in the spring-loaded groove, and the clamping block has an avoidance opening that can connect with the through-hole. The through-hole and the clearance opening can form a passageway. The end of the strap passes through the passageway and is sleeved on the limiting shaft. The spring is set at the bottom of the spring pressure groove to drive the clamping block to slide, forcing the clearance opening to be offset from the through-hole. The strap in the passageway is clamped by the squeezing action between the inner wall of the clearance opening and the inner wall of the through-hole. The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes. The cross-sectional area of ​​the constraint channel can be adjusted by changing the clamped area at the front end of the strap. iiii) The first connector includes a base and a strap; The first side wall of the base is provided with a limiting shaft, the end of the strap is sleeved on the limiting shaft, and the inner side of the front end of the strap can be detachably connected to the second side wall of the base via Velcro. The inner wall of the strap and the side wall of the base together form a constraint channel through which the temple of the eyeglasses passes. The cross-sectional area of ​​the constraint channel can be adjusted by changing the connection area at the front end of the strap.

3. The eyeglass lamp according to claim 2, characterized in that, The front end of the strap has a dimension in at least one direction that is larger than the dimension in the corresponding direction of the loop, so as to restrict the front end of the strap from passing through the loop.

4. A spectacle lamp according to claim 2, characterized in that, The lamp body has a ball head at the rear end and a ball seat at the front end of the base, with the ball head snapped into the ball seat.

5. A spectacle lamp according to claim 1, characterized in that, The first connector also includes a wire harness, which is disposed on the wire and has a wire harness channel passing through both ends of the wire harness. The wire harness channel is used for the temple to pass through so that the wire runs along the direction of the temple.

6. A spectacle lamp according to claim 1, characterized in that, The wire has a partial spiral coil structure.

7. A spectacle lamp according to claim 1, characterized in that, The second connector includes a sleeve made of elastic material, which is disposed on one side wall of the controller. The sleeve has a sleeve cavity for the end of the temple to pass through, and the cross-section of the sleeve cavity has a major axis and a minor axis.

8. A spectacle lamp according to claim 1, characterized in that, The controller includes a base and a battery pack; One end of the wire is connected to the base, the second connector is located on the inner side of the base, the outer side of the base is provided with a quick-release position, the battery block is detachably installed on the quick-release position and is connected to the wire through a contact.

9. A spectacle lamp according to claim 8, characterized in that, The outer wall of the base forms a quick-release position, and the battery block is magnetically attached to the quick-release position.

10. A spectacle lamp according to claim 9, characterized in that, Both ends of the quick-release position are provided with protrusions, and both ends of one side wall of the battery block are provided with notches that are adapted to the protrusions. When the battery block is adsorbed on the quick-release position, the protrusions are engaged in the corresponding notches.

11. A spectacle lamp according to claim 1, characterized in that, The controller is equipped with a motherboard, a switch, and a microphone. The motherboard is electrically connected to the built-in battery of the controller. The microphone is connected to the motherboard. The controller has a sound hole for the microphone to receive external sound sources. The switch is located on one side of the controller and is electrically connected to the motherboard. Both the switch and the microphone are used to control the power supply between the motherboard and the lighting components.