A dual-lamp-plate dual-light-emitting type lighting atmosphere light bar
Patent Information
- Application Number
- CN202521905667.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-04
AI Technical Summary
[0002]目前常见的照明灯条功能较为单一,大多仅提供单向的主照明光线,无法同时实现照明与装饰氛围光的双重效果
[0018]本实用新型的核心技术方案是通过在灯壳上独立设置第一灯板和第二灯板,并配合具有不同出光方向的透光罩结构,使第一灯板发出的照明光线经由第一透光板射出,而第二灯板所发出的柔光或彩色光线则经由交叉设置的第二透光板向外投射,从而在物理结构上实现两种光线的分向出光。电控组件可对两个灯板进行独立或联合调控。该设计从光源排布、光学结构和控制方式三个层面协同作用,实现了主照明功能与氛围光效在出光方向和光学特性上的有效分离与融合。
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Figure CN224649698U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting device technology, and in particular discloses a dual-lamp panel dual-emitting ambient lighting strip. Background Technology
[0002] Currently, most common lighting strips have relatively simple functions, providing only unidirectional main lighting and failing to achieve the dual effects of illumination and decorative ambient lighting simultaneously. Some products attempt to achieve light effect variations by combining multiple color temperature LEDs with a single light panel, but their single light output direction and the resulting light mixing can easily cause glare or uneven color, making it difficult to achieve independent control and effective separation of illumination and ambient lighting in spatial direction. This limits their application in high-end homes, commercial displays, and other similar scenarios. Utility Model Content
[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a dual-lamp panel dual-emitting ambient lighting strip to solve the above-mentioned technical problems.
[0004] To achieve the above objectives, this utility model provides a dual-light panel dual-light-emitting ambient light strip, comprising a lamp housing, the lamp housing having a main housing wall and a side housing wall intersecting the main housing wall, the included angle between the main housing wall and the side housing wall being 0-180°, the main housing wall having a main light-emitting hole, and the side housing wall having a secondary light-emitting hole isolated from the main light-emitting hole, the area of the secondary light-emitting hole being less than half the area of the side housing wall.
[0005] Furthermore, the lamp housing is provided with a light-emitting component and an electronic control component used in conjunction with the light-emitting component; the light-emitting component includes a first lamp plate and a second lamp plate, and the lamp housing is provided with a light-transmitting cover, the light-transmitting cover including a first light-transmitting plate for covering the main light-emitting hole and a second light-transmitting plate for covering the secondary light-emitting hole; the light emitted by the first lamp plate is irradiated to the outside through the first light-transmitting plate, and the light emitted by the second lamp plate is irradiated to the outside through the second light-transmitting plate.
[0006] Furthermore, the power of the first lamp panel is greater than that of the second lamp panel. The light emitted by the first lamp panel is used for illumination, while the light emitted by the second lamp panel is soft light and / or colored light. The electronic control component is used to regulate the light emission of the first lamp panel and / or the second lamp panel.
[0007] Furthermore, the first light-transmitting plate is located on the main shell wall of the lamp housing, and the second light-transmitting plate is located on the side shell wall of the lamp housing. There is an angle of 0-180° between the first light-transmitting plate and the second light-transmitting plate. The light-emitting area of the first light-transmitting plate is greater than half the area of the main shell wall of the lamp housing, and the light-emitting area of the second light-transmitting plate is less than half the area of the side shell wall of the lamp housing.
[0008] Furthermore, the lamp housing is provided with a first lamp groove, a second lamp groove, and a first partition plate for isolating the first lamp groove and the second lamp groove. The opening direction of the first lamp groove is intersected with the opening direction of the second lamp groove. The first lamp plate is located in the first lamp groove, the second lamp plate is located in the second lamp groove, the first light-transmitting plate is covered on the first lamp groove, and the second light-transmitting plate is covered on the second lamp groove.
[0009] Furthermore, the first lamp panel is disposed on the side wall and / or bottom wall of the first lamp trough, and the second lamp panel is disposed on the bottom wall and / or side wall of the second lamp trough.
[0010] Furthermore, the side shell wall is provided with a first snap-fit groove, and the second light-transmitting plate is provided with a snap-fit edge that engages with the first snap-fit groove. The second light-transmitting plate is inserted into the first snap-fit groove via the snap-fit edge to cover the secondary light-emitting hole.
[0011] Furthermore, the light-emitting area of the secondary light-emitting hole in the side shell wall accounts for 1 / 10 to 1 / 3 of the total area of the side shell wall.
[0012] Furthermore, the first lamp panel includes a first plate body arranged in a rectangular strip shape and a plurality of lamp beads arranged on the first plate body along the length direction of the first plate body, wherein the power of the first lamp bead on the first lamp panel is different from the power of the second lamp bead on the first lamp panel.
[0013] Furthermore, the second lamp panel has the same structure as the first lamp panel, and the first lamp panel and the second lamp panel are located on both sides of the length direction of the lamp housing.
[0014] Furthermore, the dual-lamp panel dual-emitting ambient light strip also includes a light-diffusing component located between the inner wall of the lamp housing and the light-transmitting cover. The light-diffusing component includes a reflective paper, a light guide plate, and a diffuser plate arranged sequentially on the light-emitting surface of the self-emitting component. The light guide plate is used to convert the point light source emitted by the light-emitting component into a surface light source, and the diffuser plate is used to eliminate the dot pattern of the light guide plate and evenly diffuse the light to the light-transmitting cover before illuminating the outside.
[0015] Furthermore, the dual-lamp panel dual-light-emitting ambient light strip also includes a first end cap and a second end cap that are detachably disposed at both ends of the lamp housing along its length. The light-emitting component, the light-transmitting cover, and the electronic control component are respectively inserted into the lamp housing along its length. The first end cap and the second end cap are used to encapsulate the light-emitting component, the light-transmitting cover, and the electronic control component inside the lamp housing.
[0016] Furthermore, the electronic control component includes a central control circuit board electrically connected to the light-emitting component, a power supply module, and a switch module. The power supply module is used to be electrically connected to an external power supply via an external wire, or the power supply module is a rechargeable battery mounted on the lamp housing and a charging interface used in conjunction with the rechargeable battery. The switch module is used to control the light-emitting component to turn on or off via the central control circuit board. The switch module includes one or more combinations of touch control switches, physical button switches, and inductive switches electrically connected between the light-emitting component and the central control circuit board.
[0017] Furthermore, the dual-lamp panel dual-emitting ambient lighting strip also includes a fixing component, which is a suction cup, magnetic adsorption component, or adhesive component set on the lamp housing. The lamp housing is used in conjunction with external objects through the fixing component.
[0018] The core technical solution of this utility model is to independently set a first lamp panel and a second lamp panel on the lamp housing, and cooperate with a light-transmitting cover structure with different light emission directions. The illumination light emitted by the first lamp panel is emitted through the first light-transmitting cover, while the soft light or colored light emitted by the second lamp panel is projected outward through the cross-arranged second light-transmitting covers, thus achieving separate light emission of the two types of light in a physical structure. The electronic control component can independently or jointly control the two lamp panels. This design, through the synergistic effect of light source arrangement, optical structure, and control method, achieves effective separation and integration of the main lighting function and ambient lighting effect in terms of light emission direction and optical characteristics.
[0019] The beneficial effects of this utility model are as follows: On the one hand, the two types of light do not interfere with each other. The illumination light can ensure sufficient brightness and uniformity to meet basic lighting needs, while the ambient light can independently create a soft colored light environment. On the other hand, the cross design of the dual light outlets expands the spatial layering of light and shadow, enhances the decorative effect and scene adaptability, and can be widely used in various scenarios such as cabinet lighting, advertising light boxes, and interior decoration. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of the dual-lamp panel, dual-emitting ambient lighting strip of this utility model.
[0021] Figure 2 This is a partial cross-sectional three-dimensional structural diagram of the dual-lamp panel dual-emitting ambient lighting strip of this utility model.
[0022] Figure 3 This is an exploded structural diagram of the dual-lamp panel dual-emitting ambient lighting strip of this utility model;
[0023] Figure 4 This is a schematic diagram of the structure of the first lamp plate of this utility model;
[0024] Figure 5This is a schematic diagram of the structure of the lamp housing of this utility model;
[0025] Figure 6 This is a schematic diagram of the structure of the electronic control component of this utility model;
[0026] Figure 7 This is a schematic diagram of the structure of the lamp housing and light-emitting components of this utility model.
[0027] Figure 8 This is an exploded view of another embodiment of the lamp housing and the second light-transmitting plate of this utility model;
[0028] Figure 9 A schematic diagram of the structure for adding reflective paper when the second light-transmitting panel is an arc-shaped panel;
[0029] Figure 10 A schematic diagram of the structure for adding reflective paper when the second light-transmitting plate is a rectangular strip.
[0030] The reference numerals in the figures include:
[0031] 1. Lamp housing; 2. Light-emitting component; 3. Electronic control component; 4. Light-transmitting cover; 5. Light diffuser; 6. First end cap; 7. Second end cap; 8. Fixing component; 11. First lamp slot; 111. First rib; 112. Second rib; 113. Fourth rib; 12. Second lamp slot; 121. First snap-fit slot; 122. Second snap-fit slot; 13. First partition; 14. Third rib; 15. Mounting slot; 21. First lamp plate; 211 1. First panel; 212. LED bead; 22. Second lamp panel; 31. Central control circuit board; 321. Rechargeable battery; 322. Charging interface; 331. Slide key; 332. Mode adjustment button; 34. Human infrared sensor; 35. Infrared receiver; 36. Display screen; 41. First light-transmitting plate; 42. Second light-transmitting plate; 421. Edge clip; 422. Rib; 51. Reflective paper; 52. Light guide plate; 53. Diffuser plate. Detailed Implementation
[0032] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.
[0033] Please see Figures 1 to 10As shown, this utility model discloses a dual-light panel, dual-emission ambient lighting strip, comprising a lamp housing 1, a light-emitting component 2 disposed on the lamp housing 1, and an electronic control component 3 electrically connected to the light-emitting component 2. The lamp housing 1 adopts a hollow groove structure, extending along its length, and has a long strip shape, facilitating integration with furniture, display racks, cabinets, and other installation environments. The lamp housing 1 has a main shell wall 10 and a side shell wall 101. A first light-transmitting plate 41 and a second light-transmitting plate 42 are respectively disposed on the main light-emitting hole 102 of the main shell wall 10 and the secondary light-emitting hole 103 of the side shell wall 101. Both are made of light-transmitting material. The main shell wall 10 and the side shell wall 101 are arranged intersectingly such that the light-emitting directions of the first light-transmitting plate 41 and the second light-transmitting plate 42 form an angle with each other, allowing the two sets of light rays to cross and separate in a spatial direction. In this embodiment, the angle between the two sets of light rays is 90°, thereby achieving physical separation of the main lighting and ambient light in terms of geometric structure. By using the dual-light-emitting structure of the lamp housing 1, glare and color drift caused by superimposing different light properties on the same light-emitting surface are avoided, balancing illuminance and visual appeal, and providing clear optical partitions for the subsequent dual-channel independent drive of the electronic control.
[0034] Specifically, the first light-transmitting plate 41 mainly receives light from the first light panel 21, with the irradiation direction facing the front area of the lamp housing 1, forming the main lighting effect; the second light-transmitting plate 42 mainly receives light from the second light panel 22, with the irradiation direction intersecting the first light-transmitting plate 41, releasing light from the side or obliquely, forming an ambient lighting effect. To ensure that the light intensity and uniformity of the two light-emitting surfaces are not affected by each other, the first light-transmitting plate 41 and the second light-transmitting plate 42 each form an independent light cavity with their respective lamp slots, and the light is emitted after passing through their respective light guiding and diffusion paths, reducing light crosstalk. The main lighting beam has a clear directionality, and the ambient light is diffused and soft. The two light paths are decoupled in space and spectrum, satisfying the composite scene of "visible task area + decorative background area" within the same light strip.
[0035] Specifically, the light-emitting component 2 includes a first lamp plate 21 and a second lamp plate 22, both of which are rectangular strip substrate structures. Multiple light-emitting LED beads 212 are evenly distributed on the substrate along the length direction. The first lamp plate 21 is disposed in the first lamp groove 11 of the lamp housing 1, and the second lamp plate 22 is disposed in the second lamp groove 12 of the lamp housing 1. The two lamp grooves are separated by a partition, and their opening directions are at an angle to each other (90° in this embodiment), corresponding to the first light-transmitting plate 41 and the second light-transmitting plate 42 respectively, forming a stable light source cavity.
[0036] Specifically, in this embodiment, the cross-section of the second lamp slot 12 is approximately "C"-shaped, formed by folding back the side shell wall 101, thus ensuring that the light-emitting area of the second light-transmitting plate 42 is less than half the area of the side shell wall of the lamp housing 1. Both sides of the folded-back side shell walls 101 are provided with first snap-fit grooves 121, and the second light-transmitting plate 42 is provided with snap-fit edges 421 corresponding to the first snap-fit grooves 121. The two snap-fit edges 421 of the second light-transmitting plate 42 are inserted into the two first snap-fit grooves 121 along the length of the lamp housing 1 to achieve width-direction limiting. The structure of the second light-emitting surface combines light shielding and assembly; the integrated snap-fit structure reduces the need for fasteners, improves appearance integrity and assembly efficiency, and simultaneously suppresses lateral light leakage.
[0037] Specifically, a first stop is provided in the first lamp groove 11. The first stop protrudes along the side wall of the first lamp groove 11. The first stop has a first rib 111 protruding laterally and a second rib 112 protruding vertically. A third rib 14 is also formed on the lamp housing 1. The first rib 111, the second rib 112 and the third rib 14 surround and form a mounting groove 15 for installing the first lamp plate 21. During installation, the first lamp plate 21 can be inserted into the mounting groove 15 along the length direction to achieve width-direction limiting. The quasi-dovetail mounting groove 15 formed by the multi-rib enclosure improves the lamp plate's resistance to loosening and thermal contact stability, and reduces displacement and abnormal noise during transportation and long-term use.
[0038] Specifically, in this embodiment, the light-emitting area of the secondary light-emitting hole 103 is 1 / 3 of the area of the side shell wall. The main shell wall 10 extends from the third rib 14 into the first lamp groove 11.
[0039] Specifically, in this embodiment, the side wall of the first lamp groove 11 away from the first stop member is also provided with two fourth ribs 113. The fourth ribs 113 protrude into the first lamp groove 11, and the two fourth ribs 113 are used to clamp one side of the first light-transmitting plate 41. The second rib 112 and the third rib 14 are used to clamp the other side of the first light-transmitting plate 41. In actual installation, the light guide plate 52 is stacked with the first light-transmitting plate 41 and inserted between the two fourth ribs 113 and between the second rib 112 and the third rib 14 along the length direction of the lamp housing 1 to achieve width-direction limiting.
[0040] Specifically, in another embodiment, the side shell wall 101 has only one side with a first snap-fit groove 121, and the second light-transmitting plate 42 has two snap-fit edges 421. Simultaneously, a rib 422 is provided on the snap-fit edge 421 of the second light-transmitting plate 42 near the second lamp plate 22. The protruding direction of the rib 422 is perpendicular to the protruding direction of the snap-fit edge 421. During actual installation, the second lamp plate 22 is attached to the side wall of the second lamp slot 12. One snap-fit edge 421 of the second light-transmitting plate 42 engages with the first snap-fit groove 121, and the second snap-fit edge 421 extends into the gap between the second lamp plate 22 and the folded portion of the side shell wall 101. The rib 422 prevents contact with the second lamp plate 22. In the first stopper, the design of the second rib plate 112 is omitted.
[0041] Specifically, the power distribution of the LEDs 212 in the first lamp board 21 may not be completely uniform, allowing it to form different brightness zones on the same lamp board to meet the needs of gradual lighting changes. The structure of the second lamp board 22 may be the same as that of the first lamp board 21, but it may use LEDs 212 with different emitting colors or lower brightness to provide soft or colored ambient light. The two lamp boards are powered by independent constant current drive channels, and the constant current drive is controlled by the pulse width or current setting of the central control circuit board 31, thereby maintaining stable color temperature and linear brightness adjustment.
[0042] Specifically, to further improve the optical effect, a light-diffusing element 5 is provided between the inner wall of the lamp housing 1 and the light-transmitting cover 4. The light-diffusing element 5 is composed of a reflective paper 51, a light guide plate 52, and a diffuser plate 53 in sequence. The reflective paper 51 is used to reflect light to the light guide plate 52 to improve light utilization; the light guide plate 52 is used to convert the point light emission of the lamp beads 212 into a continuous surface light source to eliminate local light spots; the diffuser plate 53 is placed on the light-emitting surface of the light guide plate 52 to disperse the light, eliminate the dot pattern caused by the light guide plate 52, and make the light more uniform and softer before shining through the light-transmitting cover 4 to the outside. The light-diffusing element 5 is engaged and positioned with the light-emitting component 2 and the light-transmitting cover 4 to ensure tight fit between all layers during installation.
[0043] In another preferred embodiment, specifically, two second snap-fit slots 122 are arranged diagonally within the second lamp slot 12, and a second reflective paper 51 is snapped into each of these two second snap-fit slots 122. This arrangement creates a corresponding fit between the reflective paper 51 and the second light-transmitting plate 42, enabling the reflection and redirection of some lateral light from the second lamp plate 22 to the area of the second light-transmitting plate 42. This results in a more uniform distribution of the light beam on the light-emitting surface, avoiding noticeable light spots. Simultaneously, because the second reflective paper 51 and the second light-transmitting plate 42 are diagonally distributed, the light diffuses better after multiple reflections and refractions, improving the lighting effect and further enhancing the uniformity and softness of the light emission from the second light-transmitting plate 42, thereby increasing luminous efficiency and reducing the generation of light spots.
[0044] Please refer to the actual production process. Figure 10 As shown, when the second light-transmitting plate 42 is an arc-shaped panel, a separate second snap-fit groove 122 is not required. The installation of the second reflective paper 51 can be achieved by using the original first snap-fit groove 121 of the lamp housing 1, the snap-fit edge 421 of the second light-transmitting plate 42, and the lamp beads on the second lamp plate 22.
[0045] Specifically, for ease of assembly and maintenance, a first end cap 6 and a second end cap 7 are detachably installed at both ends of the lamp housing 1. The end caps are fastened or screwed onto both ends of the lamp housing 1, and are used to encapsulate the light-emitting component 2, the light-diffusing component 5, the light-transmitting cover 4, and the electronic control component 3 inside the lamp housing 1 after assembly. During installation, each functional component is inserted sequentially along the length of the lamp housing 1, positioned, and then secured by the end caps, thereby facilitating rapid assembly on the production line or subsequent replacement of internal components.
[0046] Specifically, the end cap and the lamp housing 1 are fixed by threads (the first stop and the first partition 13 of the lamp housing 1 are both provided with threaded holes extending longitudinally, which correspond to the through holes designed on the end cap and are fastened by bolts). The inner side of the end cap is provided with guide ribs and pressure edges, which apply positioning pressure to the ends of the light-transmitting component, light guide, light-emitting component 2 and central control circuit board 31 respectively. The outer side of the end cap has a reserved opening area for arranging the charging interface 322 and mechanical buttons. A sealing and vibration damping structure is set between the end cap and the lamp housing 1 to improve the overall durability. In actual installation, after the electronic control device, light-emitting component 2 and light-transmitting cover 4 are assembled into the corresponding parts of the lamp housing 1, the first end cap 6 and the second end cap 7 are locked by threads to prevent these parts from coming out at both ends in the length direction.
[0047] Specifically, the electronic control component 3 includes a central control circuit board 31, a power supply module, and a switch module. The central control circuit board 31 is electrically connected to the first lamp board 21 and the second lamp board 22, respectively, to control the independent or coordinated operation of the two lamp boards. The power supply module can be connected to an external power source via an external wire, or it can be a rechargeable battery 321 located inside the lamp housing 1 connected to a charging interface 322; the latter is used in this embodiment. The switch module is located between the circuit board and the light-emitting component, and can be a touch switch or a mechanical button switch, which the user can directly touch or press to control and complete the switching operation. In actual use, an ambient light sensor can also be optionally installed and electrically connected to the central control circuit board.
[0048] Specifically, the central control circuit board 31 is located inside the lamp housing 1 near one end of the first lamp slot 11, and is arranged parallel to the lamp board along the length direction. One side of the central control circuit board 31 is the power supply module, and the other side is the signal and drive unit. The central control circuit board 31 is connected to the first lamp board 21 and the second lamp board 22 respectively through the plug-in socket. The power output terminal is connected to the first lamp board 21 and the second lamp board 22 respectively through two constant current drive chips or two adjustable constant current topologies. Each channel is equipped with an electronic switch device at the front end for independent switching and dimming.
[0049] The power supply module includes a battery management unit, a protection unit, and a power path management system. The battery management unit is connected to the charging interface 322. The protection unit protects against overcharging, over-discharging, overcurrent, and short circuits. The power path management system automatically switches between the external power supply and the battery. The switch module is a mechanical push-button switch, including a multi-position switch for the sliding key module 331 and two mode adjustment buttons 332. The sliding key module 331 is connected to the mode pin of the central control circuit board 31, providing three working states: automatic, on, and off. The two mode adjustment buttons 332 serve as function buttons for the first channel (first lamp board 21) and the second channel (second lamp board 22), respectively. They are connected to the button input of the central control circuit board 31, and short or long presses are used to switch on / off, brightness, and effects.
[0050] Specifically, a drive control unit, which can be a microcontroller or a programmable logic device, is set on the central control circuit board 31. Its PWM or current setting signal is sent to two constant current drives to realize independent and linked control of the channels. To support the automatic mode, in this embodiment, the central control circuit board 31 is equipped with a human infrared sensor 34 that is electrically coupled to the microcontroller to detect when a human enters the sensing area and automatically turn on the main light.
[0051] To facilitate installation and disassembly, a fixing component 8 is also provided on the lamp housing 1. The fixing component 8 can be a suction cup structure, a magnetic adsorption structure, or an adhesive structure. In this embodiment, a magnetic adsorption component is used as the fixing component 8, which can be quickly adsorbed and fixed to an external iron structure by a magnet; when a suction cup is used, the light strip can be directly adsorbed onto a smooth surface; when an adhesive component is used, the light strip can be firmly fixed to the surface of wood, plastic, or other substrates. All fixing components 8 are designed to be easily detachable, allowing users to quickly arrange and move them according to different scenarios.
[0052] Upon first use, the user charges the built-in battery via charging interface 322. During charging, the central control circuit board 31 limits the charging current and provides status indication through the battery management unit. During installation, the user selects the magnetic fixing method to attach the light strip to the target position. After powering on, the user places the sliding button 331 in the on position, briefly presses the first channel button to illuminate the main lighting, and presses and holds to achieve a gradual brightness change to adapt to the current task illumination. A brief press of the second channel button illuminates the ambient light, and a long press switches between preset effects such as soft light, color, and cycle. When intelligent following is required, the user switches to automatic mode, and the microcontroller automatically turns on and off the two channels and adjusts the brightness according to the preset curve based on the ambient light and activity status. After use, the user can switch to the off position to physically disconnect the power and enter a low-power state. In any mode, the buttons and interfaces on the end cover are easily accessible. In this embodiment, the central control circuit board 31 is also equipped with an infrared receiver 35 and a display screen 36. When the battery power is low, the system flashes or indicates on the display screen 36 and limits the maximum brightness to ensure safety. The infrared receiver 35 is used in conjunction with an external remote control, which can be used to adjust the light strip's illumination mode by pointing the remote control at the infrared receiver 35.
[0053] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A dual-lamp panel dual-light-out lighting ambilight strip, characterized in that: The lamp housing (1) includes a main housing wall (10) and a side housing wall (101) that intersects with the main housing wall (10). The angle between the main housing wall (10) and the side housing wall (101) is 0-180°. The main housing wall (10) has a main light-emitting hole (102), and the side housing wall (101) has a secondary light-emitting hole (103) that is isolated from the main light-emitting hole (102). The area of the secondary light-emitting hole (103) is less than half the area of the side housing wall (101).
2. The dual-lamp panel dual-light-out lighting ambiance light bar of claim 1, wherein: The lamp housing is provided with a light-emitting component (2) and an electronic control component (3) used in conjunction with the light-emitting component (2); the light-emitting component (2) includes a first lamp plate (21) and a second lamp plate (22); the lamp housing (1) is provided with a light-transmitting cover (4); the light-transmitting cover (4) includes a first light-transmitting plate (41) for covering the main light-emitting hole and a second light-transmitting plate (42) for covering the secondary light-emitting hole; the light emitted by the first lamp plate (21) is irradiated to the outside through the first light-transmitting plate (41), and the light emitted by the second lamp plate (22) is irradiated to the outside through the second light-transmitting plate (42).
3. The dual-lamp panel dual-light-out lighting ambiance light bar of claim 2, wherein: The power of the first lamp panel (21) is greater than that of the second lamp panel (22). The light emitted by the first lamp panel (21) is used for illumination, and the light emitted by the second lamp panel (22) is soft light and / or colored light. The electronic control component (3) is used to control the light emission of the first lamp panel (21) and / or the second lamp panel (22).
4. The dual-lamp panel dual-light-output illumination ambiance light bar of claim 2, wherein: The first light-transmitting plate (41) is located on the main shell wall (10) of the lamp housing (1), and the second light-transmitting plate (42) is located on the side shell wall (101) of the lamp housing (1). The first light-transmitting plate (41) and the second light-transmitting plate (42) are provided with an angle of 0-180°. The light-emitting area of the first light-transmitting plate (41) is greater than half the area of the main shell wall (10) of the lamp housing (1), and the light-emitting area of the second light-transmitting plate (42) is less than half the area of the side shell wall (101) of the lamp housing (1).
5. The dual-lamp panel dual-light-output illumination ambiance light bar of claim 2, wherein: The lamp housing (1) is provided with a first lamp groove (11), a second lamp groove (12) and a first partition plate (13) for isolating the first lamp groove (11) and the second lamp groove (12). The opening direction of the first lamp groove (11) and the opening direction of the second lamp groove (12) are intersected. The first lamp plate (21) is located in the first lamp groove (11) and the second lamp plate (22) is located in the second lamp groove (12). The first light-transmitting plate (41) is covered on the first lamp groove (11) and the second light-transmitting plate (42) is covered on the second lamp groove (12).
6. The dual-lamp panel dual-light-output illumination ambiance light bar of claim 2, wherein: The side shell wall (101) is provided with a first snap-fit groove (121), and the second light-transmitting plate (42) is provided with a snap-fit edge (421) that engages with the first snap-fit groove (121). The second light-transmitting plate (42) is inserted into the first snap-fit groove (121) via the snap-fit edge (421) to cover the secondary light-emitting hole (103).
7. The dual-lamp panel dual-emitting ambient lighting strip according to claim 2, characterized in that: The first lamp panel (21) includes a first plate (211) arranged in a rectangular strip shape and a plurality of lamp beads (212) arranged on the first plate (211) along the length direction of the first plate (211). The power of the first lamp bead (212) on the first lamp panel (21) is different from the power of the second lamp bead (212) on the first lamp panel (21).
8. The dual-lamp panel dual-emitting ambient lighting strip according to claim 2, characterized in that: The dual-lamp panel dual-light-emitting ambient light strip also includes a light-diffusing element (5) located between the inner wall of the lamp housing (1) and the light-transmitting cover (4). The light-diffusing element (5) includes a reflective paper (51), a light guide plate (52), and a diffuser plate (53) arranged sequentially on the light-emitting surface of the self-emitting component (2) and the light-emitting surface of the light-transmitting cover (4). The light guide plate (52) is used to convert the point light source emitted by the light-emitting component (2) into a surface light source. The diffuser plate (53) is used to eliminate the dot pattern of the light guide plate (52) and diffuse the light evenly to the light-transmitting cover (4) before illuminating the outside.
9. The dual-lamp panel dual-emitting ambient lighting strip according to claim 2, characterized in that: The dual-lamp panel dual-light-emitting ambient light strip also includes a first end cap (6) and a second end cap (7) detachably disposed at both ends of the lamp housing (1) along its length. The light-emitting component (2), the light-transmitting cover (4), and the electronic control component (3) are respectively inserted into the lamp housing (1) along its length. The first end cap (6) and the second end cap (7) are used to encapsulate the light-emitting component (2), the light-transmitting cover (4), and the electronic control component (3) inside the lamp housing (1).
10. The dual-lamp panel dual-emitting ambient lighting strip according to claim 1, characterized in that: The light-emitting area of the secondary light-emitting hole (103) of the side shell wall (101) accounts for 1 / 10 to 1 / 3 of the total area of the side shell wall (101).