Double-path double-color switching side light-emitting panel lamp
By designing a side luminous panel lamp with dual-channel and two-color switching, independent control of the emission of two colors by the same lamp is achieved, which solves the problem that a single color lamp in the existing technology cannot meet the special spectral lighting needs, improves reliability and reduces the transformation cost.
Patent Information
- Application Number
- CN202423269271.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing side luminous panel lamps can only be single color and cannot meet the special spectral lighting needs, resulting in high cost of workshop transformation.
Two-way and two-color switched side luminous panel lamps are designed, and two-color lamp beads are connected in parallel or in series to form independent power access terminals. They are controlled independently using dual-drive and voltage stabilization components. Each color lamp bead is controlled independently without affecting each other.
The same lamp emits two different colors of light, which can be independently controlled, improves reliability and reduces maintenance costs.
Smart Images

Figure CN223228369U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of optoelectronic technology, in particular to a dual-channel dual-color switching side-emitting panel lamp. Background Art
[0002] In the prior art, due to production needs, some production workshops need to adjust the lighting in the workshop to special bands such as yellow and red in order to avoid decomposition or damage of products due to light.
[0003] Since the current side-emitting panel lighting is all monochrome, such as Figure 1 As shown, the driver and voltage regulator component 2 is a four-terminal device with two inputs and two outputs. The live wire enters the switch and is then connected to one input terminal, while the neutral wire is directly connected to one input terminal. The two output terminals of the driver and voltage regulator component 2 are connected to the two power input terminals of the light strip. After construction is completed, the workshop can only produce single-demand products according to the original plan. If there is a subsequent demand for special spectrum lighting, additional workshops will need to be added or the existing workshop will need to be renovated, which will incur significant costs. Utility Model Content
[0004] To solve the above technical problems, the present invention designs a dual-channel dual-color switching side-emitting panel lamp suitable for industrial lighting, which can switch the spectrum long-term and reliably. The present invention adopts the following technical solutions to achieve this.
[0005] A dual-channel, dual-color switching side-emitting panel lamp includes two driver and voltage stabilization components and a light bar. The light bar includes lamp beads and a base plate. The lamp beads are mounted on the base plate. The lamp beads are composed of a first color lamp bead and a second color lamp bead. The first color lamp bead and the second color lamp bead are spaced apart on the base plate. All the first color lamp beads are connected in parallel or in series to eventually form two power access terminals, and all the second color lamp beads are connected in parallel or in series to eventually form another two power access terminals; the two driving and voltage stabilizing components are both four-terminal devices, and each driving and voltage stabilizing component has two input terminals and two output terminals; the two output terminals of the first driving and voltage stabilizing component are respectively connected to the two power access terminals of the first color lamp beads, and the two output terminals of the second driving and voltage stabilizing component are respectively connected to the two power access terminals of the second color lamp beads; when in use, the live wire is connected to the input terminal of the first switch, the output terminal of the first switch is connected to the first input terminal of the first driving and voltage stabilizing component, and the neutral wire is connected to the second input terminal of the first driving and voltage stabilizing component; the live wire is connected to the input terminal of the second switch, the output terminal of the second switch is connected to the first input terminal of the second driving and voltage stabilizing component, and the neutral wire is connected to the second input terminal of the second driving and voltage stabilizing component.
[0006] A dual-channel, dual-color switching side-emitting panel lamp includes an integrated driver and voltage stabilization component and a light bar. The light bar includes lamp beads and a base plate. The lamp beads are mounted on the base plate. The lamp beads are composed of lamp beads of a first color and lamp beads of a second color. The first and second color lamp beads are spaced apart on the base plate. All first color lamp beads are connected in parallel or in series to form two power input terminals, and all second color lamp beads are connected in parallel or in series to form another two power input terminals.
[0007] The integrated driver and voltage stabilization component integrates two driver and voltage stabilization components. The integrated driver and voltage stabilization component has four input terminals and four output terminals. Both the driver and voltage stabilization components are four-terminal devices, and each driver and voltage stabilization component has two input terminals and two output terminals. The four input terminals of the integrated driver and voltage stabilization component correspond to the four input terminals of the two driver and voltage stabilization components, and the four output terminals of the integrated driver and voltage stabilization component correspond to the four output terminals of the two driver and voltage stabilization components.
[0008] The two output ends of the first driving and voltage stabilizing component are respectively connected to the two power supply access ends of the first color lamp beads, and the two output ends of the second driving and voltage stabilizing component are respectively connected to the two power supply access ends of the second color lamp beads; when in use, the live wire is connected to the input end of the first switch, the output end of the first switch is connected to the first input end of the first driving and voltage stabilizing component, and the neutral wire is connected to the second input end of the first driving and voltage stabilizing component; the live wire is connected to the input end of the second switch, the output end of the second switch is connected to the first input end of the second driving and voltage stabilizing component, and the neutral wire is connected to the second input end of the second driving and voltage stabilizing component.
[0009] The above-described dual-channel, dual-color switching side-emitting panel lamp is characterized in that: the first color lamp beads and the second color lamp beads are distributed on the substrate in a two-by-two interval, each two adjacent first color lamp beads are connected in series to form a first color lamp bead string, and each two adjacent second color lamp beads are connected in series to form a second color lamp bead string. All first color lamp bead strings are connected in parallel or in series to ultimately form two power input terminals, and all second color lamp bead strings are connected in parallel or in series to ultimately form another two power input terminals; the two output terminals of the first driving and voltage stabilizing component are respectively connected to the two power input terminals of the first color lamp bead string, and the two output terminals of the second driving and voltage stabilizing component are respectively connected to the two power input terminals of the second color lamp bead string.
[0010] The aforementioned dual-channel, dual-color switching side-emitting panel lamp is characterized by: first-color lamp beads and second-color lamp beads are arranged on the base plate with a gap of one every two. Each first-color lamp bead is also called a first-color lamp bead string, and every two adjacent second-color lamp beads are connected in series to form a second-color lamp bead string.
[0011] The utility model has the following beneficial technical effects: the same lamp can emit two different colors of light, the different colors of light can be controlled independently without affecting each other, the reliability is high, and the maintenance cost is low. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a connection diagram of a side-emitting panel lamp in the prior art.
[0013] Figure 2 This is a connection diagram for implementing Example 1.
[0014] Figure 3 Schematic diagram of a section of the side-emitting panel light strip used in Example 1.
[0015] Figure 4 for Figure 3 Enlarged view at point A.
[0016] Figure 5 This is a connection diagram for implementing Example 2.
[0017] Figure 6 Schematic diagram of a section of the side-emitting panel light strip used in Example 3.
[0018] Figure 7 Schematic diagram of a section of the side-emitting panel light strip used in Example 4.
[0019] The names of the figures corresponding to the figure numbers are: 2—driving and voltage stabilizing components, 11—lamp beads, 12—substrate, 111—lamp beads of the first color, 112—lamp beads of the second color. DETAILED DESCRIPTION
[0020] Below, the present invention is further described in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0021] Example 1: See Figures 2 to 4A dual-channel, dual-color switching side-emitting panel lamp includes two driving and voltage stabilizing components 2 and a light bar. The light bar includes lamp beads 11 and a substrate 12. The lamp beads 11 are mounted on the substrate 12. The lamp beads 11 are composed of first color lamp beads 111 and second color lamp beads 112. The first color lamp beads 111 and second color lamp beads 112 are spaced apart on the substrate 12. All first-color lamp beads 111 are connected in parallel or in series to eventually form two power access terminals, and all second-color lamp beads 112 are connected in parallel or in series to eventually form another two power access terminals; the two driving and voltage stabilizing components 2 are both four-terminal devices, and each driving and voltage stabilizing component 2 has two input terminals and two output terminals; the two output terminals of the first driving and voltage stabilizing component 2 are respectively connected to the two power access terminals of the first-color lamp beads 111, and the two output terminals of the second driving and voltage stabilizing component 2 are respectively connected to the two power access terminals of the second-color lamp beads 112; when in use, the live wire is connected to the input terminal of the first switch, the output terminal of the first switch is connected to the first input terminal of the first driving and voltage stabilizing component 2, and the neutral wire is connected to the second input terminal of the first driving and voltage stabilizing component 2; the live wire is connected to the input terminal of the second switch, the output terminal of the second switch is connected to the first input terminal of the second driving and voltage stabilizing component 2, and the neutral wire is connected to the second input terminal of the second driving and voltage stabilizing component 2.
[0022] Example 2: See Figure 5 , and refer to Figures 2 to 4 A dual-channel, dual-color switching side-emitting panel lamp is basically the same as Example 1, except that it includes an integrated driver and voltage stabilization component and a light strip. The integrated driver and voltage stabilization component 2 integrates the two driver and voltage stabilization components 2 in Example 1. The integrated driver and voltage stabilization component has four input terminals and four output terminals. The four input terminals of the integrated driver and voltage stabilization component correspond to the four input terminals of the driver and voltage stabilization component 2 in Example 1, and the four output terminals of the integrated driver and voltage stabilization component correspond to the four output terminals of the driver and voltage stabilization component 2 in Example 1.
[0023] Example 3: See Figure 6 , and refer to Figures 2 to 5 A dual-channel dual-color switching side-emitting panel lamp is basically the same as Implementation Example 1 or Implementation Example 2, except that:
[0024] The first color lamp beads 111 and the second color lamp beads 112 are distributed in a gap of two every two on the substrate 12. Every two adjacent first color lamp beads 111 are connected in series to form a first color lamp bead string, and every two adjacent second color lamp beads 112 are connected in series to form a second color lamp bead string. All first color lamp bead strings are connected in parallel or in series to ultimately form two power access terminals, and all second color lamp bead strings are connected in parallel or in series to ultimately form another two power access terminals; the two output terminals of the first driving and voltage stabilizing component 2 are respectively connected to the two power access terminals of the first color lamp bead string, and the two output terminals of the second driving and voltage stabilizing component 2 are respectively connected to the two power access terminals of the second color lamp bead string.
[0025] Please see Figure 4 , please see Figure 7 , and refer to Figures 2 to 6 A dual-channel, dual-color switching side-emitting panel lamp is basically the same as embodiment 1 or embodiment 2, except that: first color lamp beads 111 and second color lamp beads 112 are distributed on the substrate 12 with a gap of one every two. Each first color lamp bead 111 is also called a first color lamp bead string, and every two adjacent second color lamp beads 112 are connected in series to form a second color lamp bead string.
[0026] In this application:
[0027] The first color lamp beads 111 and the second color lamp beads 112 are distributed on the substrate 12 with intervals therebetween, which means that on the substrate 12 , one first color lamp bead 111 and one second color lamp bead 112 are continuously distributed in sequence.
[0028] The first color lamp beads 111 and the second color lamp beads 112 are distributed on the substrate 12 with a two-by-two gap, which means that on the substrate 12: two first color lamp beads 111 and two second color lamp beads 112 are distributed in sequence.
[0029] The first color lamp beads 111 and the second color lamp beads 112 are distributed on the substrate 12 with a gap of one every two, which means that on the substrate 12: one first color lamp bead 111 and two second color lamp beads 112 are distributed in sequence.
[0030] Of course, the distribution is not limited to the above. For actual use needs, other conceivable distribution methods can also be used, such as brightness, illumination and other needs.
[0031] In the present application, the colors of light emitted by the first color lamp bead 111 and the second color lamp bead 112 are different. For example, the light emitted by the first color lamp bead 111 is white light, and the light emitted by the second color lamp bead 112 is yellow or red. It can also be a combination of other colors.
[0032] Components having the functions of the driving and voltage stabilizing component 2 described in this application are prior art and can be purchased on the market.
[0033] In this application, the original side-emitting lamp light strip is redesigned, and one light strip has two independent lines at the same time, and the lamp output line also uses two independent lines.
[0034] In this application, the two spectral lines are independent of each other and can be turned on either alone or in pairs. When dual-drive light strips are designed for two independent lines, voltage drops must be prevented.
[0035] In this application, the same workshop can undertake production tasks with different lighting needs, and because the lamps are independently controlled in two ways and do not affect each other, when some lamps in the same line fail, production will not be delayed due to inconsistent lighting; due to the use of a dual-independent drive solution, compared with a dual-way switching drive, the reliability is greatly enhanced, reducing the later maintenance costs of the lamps.
[0036] The utility model has the following beneficial technical effects: the same lamp can emit two different colors of light, the different colors of light can be controlled independently without affecting each other, the reliability is high, and the maintenance cost is low.
[0037] The above-mentioned embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.
Claims
1. A dual-channel dual-color switching side-emitting panel lamp, comprising two driving and voltage stabilizing components (2) and a light bar, characterized in that: The light bar includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) in a gap. All first color lamp beads (111) are connected in parallel or in series to eventually form two power supply access terminals, and all second color lamp beads (112) are connected in parallel or in series to eventually form another two power supply access terminals; the two driving and voltage stabilizing components (2) are both four-terminal devices, and each driving and voltage stabilizing component (2) has two input terminals and two output terminals; the two output terminals of the first driving and voltage stabilizing component (2) are respectively connected to the two power supply access terminals of the first color lamp beads (111), and the two output terminals of the second driving and voltage stabilizing component (2) are respectively connected to the two power supply access terminals of the second color lamp beads (112); when in use, the live wire is connected to the input terminal of the first switch, the output terminal of the first switch is connected to the first input terminal of the first driving and voltage stabilizing component (2), and the neutral wire is connected to the second input terminal of the first driving and voltage stabilizing component (2); the live wire is connected to the input terminal of the second switch, the output terminal of the second switch is connected to the first input terminal of the second driving and voltage stabilizing component (2), and the neutral wire is connected to the second input terminal of the second driving and voltage stabilizing component (2).
2. A dual-channel, dual-color switching side-emitting panel lamp, comprising an integrated driver and voltage stabilization component and a light bar, characterized by: The light strip includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) with a gap between them. All the first color lamp beads (111) are connected in parallel or in series to eventually form two power access terminals. All the second color lamp beads (112) are connected in parallel or in series to eventually form another two power access terminals. The integrated driving and voltage stabilizing component (2) integrates two driving and voltage stabilizing components (2). The integrated driving and voltage stabilizing component has four input terminals and four output terminals. The driving and voltage stabilizing components (2) are all four-terminal devices. Each driving and voltage stabilizing component (2) has two input terminals and two output terminals. The four input terminals of the integrated driving and voltage stabilizing component correspond to the four input terminals of the two driving and voltage stabilizing components (2). The four output ends of the integrated driving and voltage stabilizing component correspond to the four output ends of the two driving and voltage stabilizing components (2); the two output ends of the first driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the first color lamp bead (111), and the two output ends of the second driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the second color lamp bead (112); when in use, the live wire is connected to the input end of the first switch, the output end of the first switch is connected to the first input end of the first driving and voltage stabilizing component (2), and the neutral wire is connected to the second input end of the first driving and voltage stabilizing component (2); the live wire is connected to the input end of the second switch, the output end of the second switch is connected to the first input end of the second driving and voltage stabilizing component (2), and the neutral wire is connected to the second input end of the second driving and voltage stabilizing component (2).
3. A dual-channel dual-color switching side-emitting panel lamp, comprising two driving and voltage stabilizing components (2), and a light bar, characterized in that: The light strip includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) in a gap of two. Every two adjacent first-color lamp beads (111) are connected in series to form a first-color lamp bead string, every two adjacent second-color lamp beads (112) are connected in series to form a second-color lamp bead string, all first-color lamp bead strings are connected in parallel or in series to ultimately form two power access terminals, and all second-color lamp bead strings are connected in parallel or in series to ultimately form another two power access terminals; both driving and voltage-stabilizing components (2) are four-terminal devices, and each driving and voltage-stabilizing component (2) has two input terminals and two output terminals; the two output terminals of the first driving and voltage-stabilizing component (2) are respectively connected to the two power access terminals of the first-color lamp bead string, and the two output terminals of the second driving and voltage-stabilizing component (2) are respectively connected to the two power access terminals of the second-color lamp bead string.
4. A dual-channel, dual-color switching side-emitting panel lamp, comprising an integrated driver and voltage stabilization component and a light bar, characterized in that: The light strip includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) in a gap of two. Each two adjacent first color lamp beads (111) are connected in series to form a first color lamp bead string, each two adjacent second color lamp beads (112) are connected in series to form a second color lamp bead string, all first color lamp bead strings are connected in parallel or in series to ultimately form two power access terminals, and all second color lamp bead strings are connected in parallel or in series to ultimately form another two power access terminals; the integrated driving and voltage stabilizing component (2) integrates two driving and voltage stabilizing components (2), the integrated driving and voltage stabilizing component has four input terminals and four output terminals, the driving and voltage stabilizing components (2) are all four-terminal devices, and each driving and voltage stabilizing component (2) has two input terminals and two output terminals; the four input terminals of the integrated driving and voltage stabilizing component correspond to the four input terminals of the two driving and voltage stabilizing components (2), respectively. The four output ends of the integrated driving and voltage stabilizing component respectively correspond to the four output ends of the two driving and voltage stabilizing components (2); the two output ends of the first driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the first color lamp bead string, and the two output ends of the second driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the second color lamp bead string.
5. A dual-channel dual-color switching side-emitting panel lamp, comprising two driving and voltage stabilizing components (2) and a light bar, characterized in that: The light bar includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) in a gap of one to two. Each first color lamp bead (111) is also called a first color lamp bead string, and each two adjacent second color lamp beads (112) are connected in series to form a second color lamp bead string. All first color lamp bead strings are connected in parallel or in series to ultimately form two power access terminals, and all second color lamp bead strings are connected in parallel or in series to ultimately form another two power access terminals. Both driving and voltage stabilizing components (2) are four-terminal devices, and each driving and voltage stabilizing component (2) has two input terminals and two output terminals. The two output terminals of the first driving and voltage stabilizing component (2) are respectively connected to the two power access terminals of the first color lamp bead string, and the two output terminals of the second driving and voltage stabilizing component (2) are respectively connected to the two power access terminals of the second color lamp bead string.
6. A dual-channel, dual-color switching side-emitting panel lamp, comprising an integrated driver and voltage stabilization component and a light bar, characterized in that: The light bar includes a lamp bead (11) and a substrate (12). The lamp bead (11) is mounted on the substrate (12). The lamp bead (11) is composed of a first color lamp bead (111) and a second color lamp bead (112). The first color lamp bead (111) and the second color lamp bead (112) are distributed on the substrate (12) in a gap of one to two. Each first color lamp bead (111) is also called a first color lamp bead string, and each two adjacent second color lamp beads (112) are connected in series to form a second color lamp bead string. All first color lamp bead strings are connected in parallel or in series to eventually form two power access terminals, and all second color lamp bead strings are connected in parallel or in series to eventually form another two power access terminals. The integrated driving and voltage stabilizing component (2) integrates two driving and voltage stabilizing components (2). The integrated driving and voltage stabilizing component has four input terminals and four output terminals. The driving and voltage stabilizing components (2) are all four-terminal devices. Each driving and voltage stabilizing component (2) has two input terminals and two output terminals. The four input terminals of the integrated driving and voltage stabilizing component correspond to the four input terminals of the two driving and voltage stabilizing components (2). The four output ends of the integrated driving and voltage stabilizing component respectively correspond to the four output ends of the two driving and voltage stabilizing components (2); the two output ends of the first driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the first color lamp bead string, and the two output ends of the second driving and voltage stabilizing component (2) are respectively connected to the two power supply access ends of the second color lamp bead string.
7. A dual-channel dual-color switching side-emitting panel lamp according to any one of claims 1 to 6, characterized in that: The colors of light emitted by the first color lamp bead (111) and the second color lamp bead (112) are different.
8. The dual-channel dual-color switching side-emitting panel lamp according to claim 7, characterized in that: The light emitted by the first color lamp bead (111) is white light, and the light emitted by the second color lamp bead (112) is yellow or red.
9. The dual-channel dual-color switching side-emitting panel lamp according to claim 7, characterized in that: The light emitted by the first color lamp bead (111) is yellow, and the light emitted by the second color lamp bead (112) is red.