The present disclosure relates to the technical field of lighting, and in particular, to a multifunctional and variable lamp sheet and lamp.
In recent years, with the development of lighting with light-emitting diodes (LED), the demand for personalized lamps has grown rapidly. An LED filament lamp, as a type of lamp with a retro feature, has developed rapidly in its field. Personalized LED-shaped light-emitting lamp sheets are widely loved by consumers, and demands for personalization are increasingly high.
However, the existing technology platforms are difficult to unify, resulting in high processing cost. Meanwhile, the way of changing lighting is single and does not have sufficient waterproof performance, making it difficult to adapt to outdoor lighting environments. Therefore, it is very hard to apply this type of product to consumers' lighting market. This solution mainly optimizes the structures of the existing LED-shaped lamp sheets and the structures of existing lamp bulbs, and greatly saves the processing cost of this type of product. Moreover, by adding different LED light-emitting chips and a control single-chip microcomputer, the LED-shaped lamp sheet can have more color and function changes.
In view of the above shortcomings and defects in the prior art, the present disclosure provides a multifunctional and variable lamp sheet and lamp, solving the technical problem that an existing LED filament lamp has a single light-emitting function and can hardly meet the market requirement.
In order to achieve the above objectives, main technical solutions used by the present disclosure are as follows:
In a first aspect, the embodiments of the present disclosure provide a multifunctional and variable lamp sheet, applicable to an LED filament lamp, including: an LED multifunctional light-emitting assembly; the LED multifunctional light-emitting assembly includes a light-emitting region and a control region which are arranged on a transparent bracket; the light-emitting region includes several colored light-emitting chips and a light-emitting control element which are arranged on a light-emitting base plate; the light-emitting region is any geometric light-emitting shape and is provided with at least one sub-region; at least one colored light-emitting chip is arranged in the various sub-regions; and the various sub-regions are connected to the control region respectively through electric signals, so that the light-emitting region achieves various lighting changes.
In a second aspect, the embodiments of the present disclosure provide a multifunctional and variable lamp, including a lamp housing, a lamp base, and a multifunctional and variable lamp sheet, wherein the lamp base is detachably connected to the lamp housing; a driving bin is mounted in the lamp base; a switch control board and a rechargeable battery are arranged in the driving bin.
The lamp sheet is mounted in a cavity enclosed by the lamp base and the lamp housing; a grounding end of the LED multifunctional light-emitting assembly of the lamp sheet is mounted in the driving bin and is electrically connected to the switch control board; and a light-emitting end of the LED multifunctional light-emitting assembly is located in the lamp housing.
Beneficial effects of the present disclosure are as follows:
1. According to the multifunctional and variable lamp sheet of the present disclosure, the light-emitting region of the lamp sheet is set to any geometric light-emitting shape, and the light-emitting style is divided into the plurality of sub-regions connected into the control region of the lamp sheet to achieve the partition control on the light-emitting region. When the control region inputs different control signals to the corresponding sub-regions, the lighting of the lamp can achieve a dynamic water flowing effect and color changing and pattern changing effects. Compared with the prior art, the fun and observability of displaying of the lamp can be improved to adapt to more lighting scenarios, and the technical problem that the existing LED-shaped light-emitting lamp has a single lighting effect, so that it is hard for the existing LED-shaped light-emitting lamp to meet the needs of various application scenarios.
2. The light-emitting style is divided into a plurality of sub-regions that are connected to the control region of the lamp sheet. These sub-regions can be combined into various expression patterns such as “happy”, “angry”, “sad”, “glad”, and can also create various other pattern modes or LOGOs, which are more in line with a current actual lighting scenario during use and meet the personalized lighting need of people.
3. The switch control board and the rechargeable battery are mounted in the driving bin in the lamp base, and the LED multifunctional light-emitting assembly into a light-emitting region, a light-emitting supporting region, and a control region. Compared with the prior art, the present disclosure has the advantages that the structures of the existing LED-shaped lamp sheets and the structures of the existing lamp bulbs are optimized, and the processing cost of this type of product is greatly saved. Moreover, by adding LED chips with different light-emitting colors and a control single-chip microcomputer, the LED-shaped lamp sheet can have more color and function changes.
4. Compared with the prior art, using the waterproof kit to wrap around the lamp base to provide waterproof protection for the lamp base can improve the waterproof performance of the lamp, making the lamp more suitable for an outdoor suspension application scenario, so that the technical problem that the existing lamp bulb cannot be well suitable for the outdoor application scenario because of its poor waterproof effect.
To better understand the above technical solutions, exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although the accompanying drawings show the exemplary embodiments of the present disclosure, it should be understood that the present disclosure can be implemented in various forms, and should not be limited to the embodiments stated herein. Rather, these embodiments are provided for understanding the present disclosure more clearly and thoroughly, and can completely transfer the scope of the present disclosure to those skilled in the art.
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In an actual production application process, the light-emitting shape of the light-emitting region 201 can be set according to an actual need, and can be any geometric light-emitting shape. Different patterns and LOGOs can be personalized according to customers. The number of the sub-regions can be increased or decreased according to an actual situation. The light-emitting region 201 includes at least one sub-region. At least one colored light-emitting chip 2011 is arranged in the various sub-regions. The colored light-emitting chip 2011 includes but is not limited to red, green, and glue LED light-emitting chips.
As a feasible solution, the transparent bracket is further provided with a light-emitting supporting region 202 configured to connect the light-emitting region 201 to the control region 203. Due to the arrangement of the light-emitting supporting region 202, on the one hand, it is possible to achieve electrical and mechanical connections between the light-emitting region 201 and the control region 203, so that the light-emitting region 201 can be suspended in the LED filament lamp. On the second hand, it provides a large change space for the style and structure of the light-emitting region 201, so that more shapes can be formed, and the difficulty of production and assembling is low.
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The two sub-regions respectively receive control signals from the connecting pins of the control electronic element 2032 or the control single-chip microcomputer 2031 to emit light, to change the colors of the light-emitting shapes and display roses in various colors.
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The light-emitting shape of this embodiment can be customized into various patterns or LOGOs by increasing or decreasing the number and forms of the sub-regions according to an actual need. LOGO here means a trademark or a brand mark.
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The light-emitting supporting region 202 is self-supported in an LED filament lamp, without a stem or a bracket, and electrical connection is ensured.
The driving bin 3 is arranged in the lamp base 4, can accommodate the switch control board 5 and the rechargeable battery 6, and can be configured to mount and fix the LED multifunctional light-emitting assembly 2. The LED multifunctional light-emitting assembly 2 is provided with the light-emitting region 201, the light-emitting supporting region 202, and the control region 203, so that the lamp is more compact in structure; the difficulty of production and processing is lower; and the production and processing costs are greatly reduced.
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The gravity switch device and the single power switch button are two side-by-side independent switches, both of which can control light emission of the lamp, making use convenient. The single power switch button is mainly configured to: control on and off of a power supply and achieve manual switching of light-emitting function modes. When there is a change in the gravity, the gravity switch device acquires the gravity change and transmits the gravity change to the control single-chip microcomputer 2031. The control single-chip microcomputer 2031 converts the change into a control signal and transmits the control signal to the light-emitting region 201 to correspondingly change the light-emitting colors and function modes.
In practical applications, the gravity switch device can be replaced with a vibration switch device. The vibration switch device acquires vibration information and transmit the vibration information to the control single-chip microcomputer 2031. The control single-chip microcomputer 2031 converts the information into a control signal and transmits the control signal to the light-emitting region 201 to change the light-emitting colors and function modes. Due to the arrangement of the gravity switch device or the vibration switch device, a user can switch the light-emitting colors and function modes by shaking the lamp. It is more interesting.
As a feasible solution, the colored light-emitting chips 2011 emit warm white light, red light, green light, blue light, and white light, or may emit light in other colors. The encapsulation colloid 2013 is milk white colloid. The colored light-emitting chips 2011 are LED chips. The lamp housing 1, the LED multifunctional light-emitting assembly 2, the driving bin 3, and the lamp base 4 form an LED-shaped filament lamp; and a placement mode of the LED-shaped filament lamp includes flat placement or suspension to adapt to move application scenarios. The flat placement means upright placement.
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In an actual production application process, there are no restrictions on the materials of the lamp housing 1, the driving bin 3, and the lamp base 4.
As a feasible solution, the switch control board 5 includes a switch circuit, a charging circuit, and a driving circuit; and the switch circuit, the charging circuit, and the driving circuit are respectively controlled by various electronic elements.
The switch circuit is configured to control turning on and turning off of the lamp. The charging circuit is configured to charge the rechargeable battery 6. The driving circuit is configured to drive the colored light-emitting chips 2011 to emit light.
By the use of the multifunctional and variable lamp designed in this solution, the colored light-emitting chips 2011 with more light-emitting colors and the control single-chip microcomputer 2031 are arranged in an LED-shaped light-emitting lamp sheet. When the colored light-emitting chips 2011 are combined with a program of the control single-chip microcomputer 2031, colors and functions can be randomly changed. Furthermore, the control single-chip microcomputer 2031 and the colored light-emitting chips 2011 are combined into a whole, so that the cost of the wiring process is greatly saved.
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In practical applications, a material of the waterproof kit 7 is not limited, and can be a soft rubber material, a hard rubber material, or other materials that can be used in conjunction with the lamp base 4 to achieve waterproofing. When the waterproof kit 7 is made of the soft rubber material, such as silica gel, the waterproof kit 7 tightly wraps around the lamp base 4 due to its own material. When the waterproof kit 7 is made of the hard adhesive material, the waterproof kit 7 can be connected to the lamp base 4 in a threaded connection way, a clamping way, or another detachable way.
It should be noted that the waterproof kit 7 is detachably connected to the lamp base 4, making it convenient to disassemble the waterproof kit 7 to charge the lamp.
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The waterproof kit 7 is used to wrap around the lamp base 4. There is a larger changing space for the shape and style of the waterproof kit 7, which not only achieves a waterproof effect, but also achieves decoration and beautification.
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The rechargeable battery 6 can be arranged either internally or externally, thus achieving higher flexibility. When arranged internally, the rechargeable battery 6 is mounted in the driving bin 3. When arranged externally, the rechargeable battery 6 is mounted in a space enclosed by the waterproof kit 7 and the lamp base 4, and is connected to the lamp through a power cable to supply power to the LED multifunctional light-emitting assembly 2.
After the arrangement of the waterproof kit 7, in addition to arranging the rechargeable battery 6 internally, the rechargeable battery 6 can be further mounted in a space between the waterproof kit 7 and the lamp base 4, so that the arrangement is more flexible.
In practical applications, the lamp can be either a rechargeable lamp bulb or non-rechargeable lamp bulb.
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Since the waterproof kit 7 is used to wrap around the lamp base 4 to provide the waterproof protection for the lamp base 4, rainwater is prevented from entering the lamp from a charging port of the lamp base 4 or a gap. The waterproof performance of the lamp can be improved, and the lamp is more applicable to an application scenario of outdoor hanging.
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In the description of the present disclosure, it should be understood that the terms “first” and “second” are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or to implicitly indicate the number of technical features indicated. Thus, features defined as “first” and “second” explicitly or implicitly include one or more of the features. In the description of this disclosure, “plurality” means two or more, unless otherwise expressly and specifically defined.
The embodiments of the present disclosure have been shown and described above, but it can be understood that the above embodiments are exemplary and cannot be understood as limitations on the present disclosure. A person of ordinary skill in the art may make changes, modifications, substitutions, and transformations to the above embodiments within the scope of the present disclosure.
Number | Date | Country | Kind |
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202322556322.1 | Sep 2023 | CN | national |
202420734413.1 | Apr 2024 | CN | national |
202421296504.8 | Jun 2024 | CN | national |