Hexagonal array optical linear LED luminaire
By designing linear LED luminaires with diverse installation methods and hexagonal reflectors, the problems of limited installation and low optical efficiency have been solved, achieving flexible installation, low-cost production, and efficient lighting effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NATA LIGHTING CO LTD
- Filing Date
- 2025-08-13
- Publication Date
- 2026-08-04
AI Technical Summary
Existing linear LED lighting fixtures have limited installation methods, restricted application scenarios, non-adjustable length, high customization costs, low optical efficiency, and poor reflection effects, which negatively impact the consumer experience.
A linear LED luminaire with hexagonal array optics was designed, which can be installed in various ways, including embedded, surface-mounted, and suspended. The inner side is equipped with an adjustable length light source plate, optical body, and reflector body. The cross-section of the reflector is a regular hexagon, which improves the reflection effect and illumination uniformity.
It enables diverse installations, reduces customization costs, shortens production cycles, improves optical efficiency and anti-glare effects, and enhances the consumer experience.
Smart Images

Figure CN224593183U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting technology, specifically to a linear LED lamp with hexagonal array optics. Background Technology
[0002] Linear LED lighting fixtures are commonly used in daily life for both illumination and decoration. They are generally suitable for indoor and outdoor entertainment venues, primarily for outlining buildings and creating billboards. However, existing linear LED lighting fixtures have limited installation options: recessed, surface-mounted, or suspended. This restricts installation and application scenarios. Furthermore, the dimensions of existing linear LED lighting fixtures are relatively fixed, and the length is not adjustable, making it difficult to match the lighting requirements of different store spaces. Customization is costly, and non-standard sizes require separate molds, resulting in long production cycles and high production costs. The reflectors are typically circular or square, leading to low optical efficiency, poor uniformity, inadequate reflection, and poor anti-glare performance, negatively impacting the consumer experience and overall user experience. Therefore, to overcome the shortcomings of existing technology, it is necessary to improve it. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings and deficiencies in the existing technology and provide a linear LED lamp with hexagonal array optics that is easy to install and has good performance.
[0004] This utility model is achieved through the following technical solution:
[0005] A linear LED lamp with hexagonal array optics includes a lamp body with an opening at the bottom, a mounting groove at the top of the lamp body for mounting a hanging connector, and mounting slots on both the front and rear outer sides of the lamp body. From top to bottom, the inner side of the lamp body is sequentially equipped with a plurality of connected light source plates, a plurality of connected optical bodies, and a plurality of connected reflector bodies. The bottom of each light source plate has a plurality of downward-emitting LED beads. Each optical body has a lens covering the LED beads, and each reflector body has a reflector covering the lens. The reflectors gradually increase in size from top to bottom, and their cross-section is a regular hexagon.
[0006] Furthermore, a mounting plate is provided on the inner side of the lamp body, and the optical body and the light source plate are mounted on the mounting plate by screws.
[0007] Furthermore, the mounting plate is provided with screw mounting slots for mounting the screws.
[0008] Furthermore, the reflector body is snapped onto the optical body, the top of the reflector is provided with a hook, and the optical body is provided with a slot corresponding to the hook.
[0009] Furthermore, the bottom of the reflector body is provided with a backing plate, and the inner side of the bottom of the lamp body is provided with a backing groove for mounting the backing plate.
[0010] Furthermore, the LED beads are arranged in a linear array, the lens is arranged in a linear array, and the reflector is arranged in a linear array.
[0011] Furthermore, a power cord is installed on the top of the lamp body, and the power cord is connected to a driving power supply.
[0012] Furthermore, the hanging connector is connected to a hanging line.
[0013] Furthermore, a heat dissipation cavity is provided on the upper part of the lamp body.
[0014] Furthermore, plugs are installed at both ends of the lamp body.
[0015] Compared to existing technologies, this utility model features a mounting groove on the top of the lamp body, with a hanging connector installed in the groove. The front and rear outer sides of the lamp body each have a mounting slot. During installation, the mounting slots allow for embedded installation, while the grooves can be surface-mounted with screws. The hanging connectors can suspend a suspension wire, facilitating wire-mounted installation. This allows for diverse installation methods for linear LED lamps, including embedded, surface-mounted, and wire-mounted installations, without limitations on installation or usage scenarios. Installation is convenient, and the user experience is excellent. The lamp body's inner side, from top to bottom, features a series of connected light source boards, optical bodies, and reflector bodies, making the lamp length adjustable to easily match the lighting requirements of different shop spaces. Customization costs are low, non-standard sizes do not require separate molds, and production cycles are short. The reflectors gradually increase in size from top to bottom, with a hexagonal cross-section, resulting in excellent reflection of the linear LED lamp. Light is evenly diffused after reflection, providing uniform illumination, high optical efficiency, and good anti-glare performance, thus enhancing the consumer experience. Attached Figure Description
[0016] 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.
[0017] Figure 1 This is a schematic diagram of the first direction structure of the linear LED lamp with hexagonal array optics of this utility model.
[0018] Figure 2This is a schematic diagram of the second direction structure of the linear LED lamp with hexagonal array optics of this utility model.
[0019] Figure 3 This is an exploded view of the linear LED lamp with hexagonal array optics according to this utility model;
[0020] Figure 4 This is a schematic diagram of the cross-sectional structure of the linear LED lamp with hexagonal array optics according to this utility model;
[0021] Figure 5 This is a schematic diagram of the structure of the reflector and the reflector body of this utility model.
[0022] In the diagram: 1-Lamp body; 2-Mounting slot; 3-Hanging connector; 4-Mounting slot; 5-Light source board; 6-Optical main body; 7-Reflector main body; 8-LED lamp bead; 9-Lens; 10-Reflector; 11-Mounting plate; 12-Screw mounting slot; 13-Hook; 14-Slot; 15-Abutting plate; 16-Abutting groove; 17-Power cord; 18-Drive power supply; 19-Hanging wire; 20-Heat dissipation cavity; 21-End cap. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] like Figures 1 to 5The present invention discloses a linear LED lamp with a hexagonal array optics, comprising a lamp body 1 with an opening at the bottom, a mounting groove 2 at the top of the lamp body 1, a hanging connector 3 mounted in the mounting groove 2, and a mounting slot 4 on both the front and rear outer sides of the lamp body 1. From top to bottom, the inner side of the lamp body 1 is sequentially equipped with several connected light source plates 5, several connected optical bodies 6, and several connected reflector bodies 7. The bottom of the light source plates 5 is provided with several downward-emitting LED beads 8. The optical bodies 6 are provided with lenses 9 covering the LED beads 8. The reflector bodies 7 are provided with reflectors 10 covering the lenses 9. The reflectors 10 gradually increase in size from top to bottom, and the cross-section of the reflectors 10 is a regular hexagon. The top of the lamp body 1 has a mounting groove 2, on which a hanging connector 3 is installed. The front and rear outer sides of the lamp body 1 each have a mounting slot 4. During installation, the mounting slot 4 allows for embedded installation, while the mounting groove 2 can be surface-mounted with screws. The hanging connector 3 can suspend a suspension wire, facilitating wire-mounted installation. This allows for diverse installation methods for linear LED lights: embedded, surface-mounted, or wire-mounted. Installation is unrestricted, and the application scenario is unlimited. Installation is convenient, and the user experience is good. (The last sentence appears to be a separate, unrelated statement: "Through the inner side of the lamp body 1 from top to bottom...") The lamp is equipped with several connected light source boards 5, several connected optical bodies 6, and several connected reflector bodies 7, making the lamp length adjustable. This allows it to easily match the lighting requirements of different store spaces, resulting in low customization costs. Non-standard sizes do not require separate molds, leading to short production cycles and low production costs. The reflector 10 is set to gradually increase in size from top to bottom, and its cross-section is set in a regular hexagon, which makes the linear LED lamp reflect well. After reflection, the light is evenly diffused and emitted, resulting in uniform illumination, high optical efficiency, good anti-glare effect, and improved consumer experience.
[0025] The lamp body 1 has a mounting plate 11 on its inner side. The optical body 6 and the light source plate 5 are mounted on the mounting plate 11 with screws, which facilitates the stable installation of the optical body 6 and the light source plate 5.
[0026] Mounting plate 11 is provided with screw mounting slots 12 for screw installation, which facilitates screw installation.
[0027] The reflector body 7 is snapped onto the optical body 6. The top of the reflector 10 is provided with a hook 13, and the optical body 6 is provided with a slot 14 corresponding to the hook 13, so that the reflector body 7 can be quickly and stably installed onto the optical body 6.
[0028] The bottom of the reflector body 7 is provided with a support plate 15, and the inner side of the bottom 1 of the lamp body is provided with a support groove 16 for the support plate 15 to be installed, so as to facilitate the positioning and stable installation of the reflector body 7.
[0029] In one specific implementation, the LED beads 8 are arranged in a linear array, the lens 9 is arranged in a linear array, and the reflector 10 is arranged in a linear array.
[0030] A power cord 17 is installed on the top of the lamp body 1. The power cord 17 is connected to the driver power supply 18, which facilitates the power supply connection of the linear LED lamp.
[0031] The hanging connector 3 is connected to the hanging wire 19, which facilitates the hanging and installation of linear LED lights.
[0032] The upper part of the lamp body 1 is provided with a heat dissipation cavity 20 to improve the heat dissipation effect of the linear LED lamp.
[0033] Both ends of the lamp body 1 are equipped with plugs 21 to prevent external objects from entering the lamp body 1 and improve the sealing and dustproof performance of the linear LED lamp.
[0034] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A linear LED lamp with hexagonal array optics, characterized in that: The lamp body includes an opening at the bottom, a mounting groove at the top for mounting a hanging connector, and mounting slots on both the front and rear outer sides. From top to bottom, the inner side of the lamp body is fitted with a plurality of connected light source boards, a plurality of connected optical bodies, and a plurality of connected reflector bodies. The bottom of each light source board has a plurality of downward-emitting LED beads. Each optical body has a lens covering the LED beads, and each reflector body has a reflector covering the lens. The reflectors gradually increase in size from top to bottom, and their cross-section is a regular hexagon.
2. The hexagonal array optical linear LED luminaire of claim 1, wherein: The lamp body has a mounting plate on its inner side, and the optical body and the light source plate are mounted on the mounting plate by screws.
3. The hexagonal array optical linear LED luminaire of claim 2, wherein: The mounting plate is provided with screw mounting slots for mounting the screws.
4. The hexagonal array optical linear LED luminaire of claim 1, wherein: The reflector body is snapped onto the optical body, the top of the reflector is provided with a hook, and the optical body is provided with a slot corresponding to the hook.
5. The hexagonal array optical linear LED luminaire of claim 1, wherein: The bottom of the reflector body is provided with a backing plate, and the inner side of the bottom of the lamp body is provided with a backing groove for mounting the backing plate.
6. The linear LED luminaire with hexagonal array optics according to claim 1, characterized in that: The LED beads are arranged in a linear array, the lens is arranged in a linear array, and the reflector is arranged in a linear array.
7. The hexagonal array optical linear LED luminaire of claim 1, wherein: A power cord is installed on the top of the lamp body, and the power cord is connected to a driving power supply.
8. The hexagonal array optical linear LED luminaire of claim 1, wherein: The hanging connector is connected to a hanging line.
9. The hexagonal array optical linear LED luminaire of claim 1, wherein: The upper part of the lamp body is provided with a heat dissipation cavity.
10. The hexagonal array optical linear LED luminaire of claim 1, wherein: Both ends of the lamp body are fitted with plugs.