WO2018188108A1 - 一种面板灯 - Google Patents

一种面板灯 Download PDF

Info

Publication number
WO2018188108A1
WO2018188108A1 PCT/CN2017/081103 CN2017081103W WO2018188108A1 WO 2018188108 A1 WO2018188108 A1 WO 2018188108A1 CN 2017081103 W CN2017081103 W CN 2017081103W WO 2018188108 A1 WO2018188108 A1 WO 2018188108A1
Authority
WO
WIPO (PCT)
Prior art keywords
light
lamp
lamps
warm
panel
Prior art date
Application number
PCT/CN2017/081103
Other languages
English (en)
French (fr)
Inventor
陈进银
黄广亮
熊飞
汪序凯
张文彬
Original Assignee
深圳佳比泰智能照明股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳佳比泰智能照明股份有限公司 filed Critical 深圳佳比泰智能照明股份有限公司
Publication of WO2018188108A1 publication Critical patent/WO2018188108A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V3/00Globes; Bowls; Cover glasses
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V7/00Reflectors for light sources
    • F21V7/22Reflectors for light sources characterised by materials, surface treatments or coatings, e.g. dichroic reflectors

Definitions

  • the present invention relates to the field of Bluetooth luminaires, and in particular, to a panel light.
  • An object of the present invention is to provide a panel light, which solves the problem that the lighting fixture in the prior art is difficult to realize remote multi-dimension operation, and there is a technical bottleneck in the lighting function and the Bluetooth communication function set.
  • the present invention provides a panel light, including:
  • a panel light housing assembly including a light panel
  • a Bluetooth module for receiving an external control signal via Bluetooth, coupled to the control module;
  • an illumination driving circuit for controlling the light emitting unit, coupled to the control module and the light emitting unit
  • the panel lamp housing assembly further includes a frame, a diffusion plate, and a light guide plate.
  • the light panel, the diffusion plate, the light guide plate, the reflective paper, the pearl cotton, and the back plate are sequentially stacked on the rear side of the frame, and the back plate is fastened by screws The back side of the frame.
  • the light panel comprises two light-inducing modules, and each of the light-inducing modules is provided with a plurality of light-emitting regions arranged in sequence, and each of the light-emitting regions includes sequentially arranged The first cold light area, the first warm light area, the second cold light area, the second warm light area and the RGB light area; two of the light entrance modules are respectively disposed on opposite sides of the frame.
  • the light emitting unit includes a plurality of cool color temperature LED monochrome lamps, a plurality of warm color temperature LED monochrome lamps, and a plurality of RGB lamps; and the plurality of the cool color temperature LEDs are monochrome.
  • the lamps are connected in series to form a cold color lamp branch, and a plurality of warm color temperature LED monochromatic lamps are sequentially connected in series to form a warm color lamp branch;
  • a plurality of the cold color temperature LED monochromatic lamps are disposed in the first cold light area and the second cold light area, and the plurality of warm color temperature LED monochrome lights are disposed on the first warm light And in the second warm light zone, a plurality of the RGB lights are disposed in the RGB light zone.
  • the light panel includes two first light entrance modules and two second light entrance modules, and each of the first light entrance modules is provided with a plurality of cold light a light area and a plurality of warm light areas, a plurality of the cold light areas and a plurality of the warm light areas are alternately arranged, and each of the second light entrance modules is provided with a plurality of RGB light areas arranged in sequence;
  • the first light entrance module and the two second light entrance modules are respectively disposed around the frame.
  • the light emitting unit includes a plurality of cool color temperature LED monochrome lamps, a plurality of warm color temperature LED monochrome lamps, and a plurality of RGB lamps; and the plurality of the cool color temperature LEDs are monochrome.
  • the lamps are connected in series to form a cold color lamp branch, and a plurality of warm color temperature LED monochromatic lamps are sequentially connected in series to form a warm color lamp branch;
  • a plurality of the cold color temperature LED monochrome lamps are disposed in the cold light region, a plurality of the warm color temperature LED monochrome lamps are disposed in the warm light region, and the plurality of the RGB lamps are disposed in the RGB light zone.
  • each RGB lamp includes an R lamp, a G lamp, and a B lamp; a plurality of the R lamps are sequentially connected in series to form an R lamp branch, and the plurality of G lamps are sequentially connected in series. a G lamp branch has been formed, and a plurality of the B lamps are sequentially connected in series to form a B lamp branch;
  • the illumination driving circuit includes a warm color lamp driving sub circuit, a cold color lamp driving sub circuit, an R lamp driving sub circuit, a G lamp driving sub circuit, and a B lamp driving sub circuit;
  • the warm color lamp driving sub circuit is connected to the One end of the warm color lamp branch
  • the cold color lamp driving sub-circuit is connected to one end of the cold color lamp branch
  • the R lamp driving sub-circuit is connected to one end of the R lamp branch
  • the B lamp driving subcircuit is connected to one end of the B lamp branch.
  • the panel lamp of the present invention further includes a power module and a Bluetooth power supply module, wherein an input end of the Bluetooth power supply module is electrically connected to the power module, and an output end of the Bluetooth power supply module is connected to the warm color
  • the panel lamp of the present invention further includes a plug-in unit; the control module is respectively connected to the warm color lamp driving sub-circuit, the cold color lamp driving sub-circuit, and the R lamp driver through the plug-in unit
  • the circuit, the G lamp driving sub-circuit and the B lamp driving sub-circuit, the control module is further connected to the Bluetooth power supply module to be connected to the DC voltage through the plug-in unit.
  • each of the cool color temperature LED monochromatic lamps includes a plurality of parallel cold dice lamps, each of the warm color temperature LED monochromatic lamps including a plurality of parallel warm dice lamps.
  • the beneficial effects of the present invention are: remotely adjusting brightness, adjusting color, fixing color, music colorful, scene mode and the like by using a bluetooth wireless control technology to facilitate people's lives and increase diversification of smart home lighting. And fun.
  • FIG. 1 is a block diagram of a panel lamp provided by the present invention.
  • FIG. 2 is an exploded view of a panel lamp housing assembly according to an embodiment of the invention.
  • FIG. 3 is an exploded view of a panel lamp housing assembly according to another embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a light panel according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural connection diagram of a light panel according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a setting manner of a light-receiving module according to an embodiment of the present invention.
  • FIG. 7 is a circuit diagram of a light emitting unit provided by the present invention.
  • FIG. 8 is a schematic structural diagram of a light panel according to another embodiment of the present invention.
  • FIG. 9 is a schematic diagram of a manner of setting an optical module according to another embodiment of the present invention.
  • 10 is a schematic structural diagram of a Bluetooth power supply module according to the present invention
  • 11 is a schematic structural diagram of a power module according to the present invention
  • FIG. 12 is a schematic diagram of connection of a control module and a Bluetooth module provided by the present invention.
  • FIG. 13 is a schematic structural diagram of a plug-in unit provided by the present invention.
  • FIG. 14 is a schematic structural diagram of a warm color lamp driving subunit provided by the present invention.
  • FIG. 15 is a schematic structural diagram of a cold color lamp driving subunit provided by the present invention.
  • FIG. 16 is a schematic structural diagram of an R lamp driving subunit provided by the present invention.
  • FIG. 17 is a schematic structural diagram of a G lamp driving subunit provided by the present invention.
  • FIG. 18 is a schematic structural diagram of a B lamp driving subunit provided by the present invention.
  • the present invention provides a panel light 100, which aims to realize freely networking through the use of Bluetooth control technology in the panel light, and can remotely control the panel light dimming by using a terminal intelligent controller, a remote controller, and the like. , music and other functions, to meet the needs of different people, the operation is strong, the experience is good.
  • FIG. 1 is a block diagram of a panel lamp 100 according to the present invention.
  • the panel lamp 100 includes a panel lamp housing assembly 10 , a control module 20 , a Bluetooth module 30 , an illumination unit 40 , and an illumination driving circuit. 50.
  • the panel light housing assembly 10 includes a light panel 7; a control module 20 is disposed inside the panel light housing assembly 10; a Bluetooth module 30 for receiving an external control signal via Bluetooth is coupled to the control module 20;
  • the unit 40 is disposed on the light board 7; the light emitting driving circuit 50 for controlling the light emitting unit 40 is coupled to the control module 20 and the light emitting unit 40.
  • the panel light housing assembly 10 includes a light board 7; Referring to FIG. 2 and FIG. 3, the panel light housing assembly 10 provided by the present invention generally has two kinds of square and rectangular shapes.
  • the panel lamp housing assembly 10 further includes a frame 8, a diffusing plate 6, a light guide plate 5, a reflective paper 4, an EPE 3, and a back plate 2; wherein the rear side of the frame 8 is sequentially laminated with the lamp plate 7,
  • the diffusion plate 6, the light guide plate 5, the reflective paper 4, the pearl cotton 3, and the back plate 2, the back plate 2 is fastened to the frame 8 by screws 1.
  • FIG. 4 is a schematic structural diagram of a lamp panel 7 according to an embodiment of the present invention, and FIG.
  • FIG. 5 is a schematic structural diagram of a lamp panel according to an embodiment of the present invention.
  • the light-emitting area 71 is disposed on opposite sides of the frame 8 respectively.
  • the light emitting unit 40 includes a plurality of cool color temperature LED monochrome lamps 41, a plurality of warm color temperature LED monochrome lamps 42 and a plurality of RGB lamps 43.
  • the plurality of cold color temperature LED monochrome lamps 41 are sequentially connected in series to form a cool color lamp.
  • a plurality of warm color temperature LED monochrome lamps 42 are sequentially connected in series to form a warm color lamp branch; a plurality of the cool color temperature LED monochrome lamps 41 are disposed in the first cold light region 711 and the second cold light region 713 a plurality of the warm color temperature L ED monochrome lamps 42 are disposed in the first warm light zone 712 and the second warm light zone 714, and the plurality of RG B lights 43 are disposed in the RGB light zone 715.
  • A, B, C, and D are two-sided light-in modules, and two light bar modules are used on each product.
  • FIG. 7 is a circuit diagram of a light emitting unit 40 according to the present invention.
  • the light emitting unit 40 includes a plurality of cool color temperature LED monochrome lamps 41 and a plurality of warm color temperature LEDs. a monochromatic lamp 42 and a plurality of R GB lamps 43; a plurality of the cold color temperature LED monochromatic lamps 41 are sequentially connected in series to form a cold color lamp branch, and a plurality of warm color temperature LED monochromatic lamps 42 are sequentially connected in series to form a warm color lamp branch; a plurality of the cool color temperature LED monochrome lamps 41 are disposed in the first cold light region 711 and the second cold light region 713, and the plurality of warm color temperature LED monochrome lamps 42 are disposed on the first warm light In the lamp area 712 and the second warm light area 714, a plurality of the RGB lamps 43 are disposed in the RGB lamp area 715.
  • FIG. 8 is a schematic structural diagram of a light board 7 according to another embodiment of the present invention
  • FIG. 9 is a schematic diagram of a setting manner of a light entrance module 71 according to another embodiment of the present invention.
  • the number of the light-emitting modules 71 is four, and the light-boarding module 7 includes two first light-inducing modules 72 and two second light-inducing modules 73.
  • Each of the first light-inducing modules 72 is provided with a plurality of cold light areas 721 and a plurality of warm light areas 722, a plurality of the cold light areas 721 and a plurality of the warm light areas 722 are alternately arranged, and each of the second light entrance modules 73 is provided with a plurality of The RGB light areas 731 are arranged in sequence; the two first light entrance modules 72 and the two second light entrance modules 73 are respectively disposed around the frame 8.
  • the light emitting unit 40 includes a plurality of cool color temperature LED monochrome lamps 41, a plurality of warm color temperature LED monochrome lamps 42 and a plurality of RGB lamps 43; and the plurality of cold color temperature LED monochrome lamps 41 are sequentially connected in series to form a cold color lamp branch, a plurality of warm color temperature LED monochrome lamps 42 are sequentially connected in series to form a warm color lamp branch; a plurality of the cold color temperature LED monochrome lamps 41 are disposed in the cold light region, and the plurality of the warm color temperature LEDs are single A color lamp 42 is disposed in the warm light zone, and a plurality of the RGB lamps 43 are disposed in the RGB light zone 731.
  • the light emitting unit 40 includes a plurality of cool color temperature LED monochrome lamps 41, a plurality of warm color temperature LED monochrome lamps 42 and a plurality of RGB lamps 43;
  • the cold color temperature LED monochrome lamps 41 are sequentially connected in series to form a cold color lamp branch, and the plurality of warm color temperature LED monochrome lamps 42 are sequentially connected in series to form a warm color lamp branch; and the plurality of the cool color temperature LED monochrome lamps 41 are disposed in In the cold light area, a plurality of the warm color temperature LED monochrome lamps 42 are disposed in the warm light area, and a plurality of the RGB lights 43 are disposed in the RGB light area 731.
  • FIG. 10 is a schematic structural diagram of a Bluetooth power supply module according to the present invention
  • FIG. 11 is a schematic structural diagram of a power module provided by the present invention; Connected to the power module, the output end of the Bluetooth power supply module is connected to the other end of the warm light branch, the other end of the cold light branch, the other end of the R light branch, the other end of the B light branch, and G The other end of the lamp branch.
  • the control module 20 is a schematic diagram of the connection between the control module 20 and the Bluetooth module 30 provided by the present invention; the control module 20 is disposed inside the panel lamp housing assembly 10; the control module 20 includes eight output pins, and is connected To the Bluetooth module 30.
  • the control module 20 preferably has a built-in 16KB data memory (SRAM) embedded in a 32-bit high-performance MCU and a maximum 48MHZ cesium clock signal.
  • SRAM 16KB data memory
  • the powerful memory function provides enough capacity to write control programs for a wide variety of control functions.
  • a Bluetooth module 30 for receiving an external control signal via Bluetooth is coupled to the control module 20; the Bluetooth module 30 is configured to receive a corresponding Bluetooth signal from the outside, the Bluetooth signal originating from a movement paired with the Bluetooth module 30 in advance Terminal or other device with Bluetooth pairing. After receiving the Bluetooth signal, the Bluetooth module 30 forwards it to the control module 20, and the control module 20 controls the lighting unit 40 according to the Bluetooth signal.
  • FIG. 13 is a schematic structural diagram of a plug-in unit according to the present invention
  • the control module 20 is respectively connected to the warm color lamp driving sub-circuit 51, the cold color lamp driving sub-circuit 52, and the R lamp driving through the plug-in unit.
  • the sub-circuit 53, the G lamp driving sub-circuit 54 and the B lamp driving sub-circuit 55, the control module 20 is further connected to the Bluetooth power supply module via the plug-in unit to have a DC voltage.
  • Each of the cool color temperature LED monochromatic lamps 41 includes a plurality of parallel cold dice lamps 411, each of which includes a plurality of parallel warm dice lamps 412.
  • FIG. 14 is a schematic structural view of a warm color lamp driving subunit provided by the present invention; FIG.
  • FIG. 15 is a schematic structural view of a cold color lamp driving subunit provided by the present invention
  • FIG. 17 is a schematic structural diagram of a G lamp driving subunit 54 provided by the present invention
  • FIG. 18 is a schematic structural view of a B lamp driving subunit provided by the present invention.
  • Each of the RGB lamps 43 includes an R lamp 431, a G lamp 432, and a B lamp 433; a plurality of the R lamps 431 are sequentially connected in series to form an R lamp branch, and the plurality of G lamps 432 are sequentially connected in series to form a G lamp branch.
  • each of the cool color temperature LED monochromatic lamps 41 includes a plurality of parallel cold dice lamps 411, each of the warm color temperature LED monochromatic lamps 42 including a plurality of parallel warm colors.
  • the illumination driving circuit 50 includes a warm color lamp driving sub-circuit 51, a cold color lamp driving sub circuit 52, an R lamp driving sub circuit 53, a G lamp driving sub circuit 54 and a B lamp driving sub circuit 55; and the warm color lamp driving sub circuit 51 Connected to one end of the warm light branch, the cold light driving sub-circuit 52 is connected to one end of the cold light branch, and the R light driving sub-circuit 53 is connected to one end of the R light branch,
  • the G lamp driving sub-circuit 54 is connected to one end of the G lamp branch, and the B lamp driving sub circuit 55 is connected to one end of the B lamp branch.
  • the one or operations may constitute computer readable instructions stored on a computer readable medium that, when executed by an electronic device, will cause the computing device to perform the operations.
  • the order in which some or all of the operations are described should not be construed as implying that the operations must be sequential. Those skilled in the art will appreciate alternative rankings that have the benefit of this specification. Moreover, it should be understood that not all operations must be present in every embodiment provided herein.
  • the word "preferred” as used herein is intended to serve as an example, instance, or illustration. Any aspect or design described as “preferred” by the text is not necessarily to be construed as being more advantageous than other aspects or designs. Instead, the use of the word “preferred” is intended to present concepts in a specific manner.
  • the term “or” as used in this application is intended to mean “or” or “exclud”. That is, “X uses A or B” means naturally including any one of the permutations unless otherwise specified or clear from the context. That is, if X uses A; X uses B; or X uses both A and B, then "X uses A or B" is satisfied in any of the preceding examples.
  • Each functional unit in the embodiment of the present invention may be integrated into one processing module, or each unit may exist physically separately, or two or more units may be integrated into one module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the integrated modules, if implemented in the form of software functional modules and sold or used as separate products, may also be stored in a computer readable storage medium.
  • the above mentioned storage medium may be a read only memory, a magnetic disk or an optical disk or the like.

Abstract

一种面板灯(100),包括:面板灯壳体组件(10);控制模块(20),设置于面板灯壳体组件(10)的内部;用于通过蓝牙接收外部控制信号的蓝牙模块(30),耦合至控制模块(20);发光单元(40),设置于面板灯壳体组件(10)内部;以及用于控制发光单元(40)的发光驱动电路(50),耦合至控制模块(20)及发光单元(40)。通过蓝牙无线控制技术实现面板灯(100)远程调节亮度、调节颜色、定时、音乐炫彩、情景模式等功能,方便人们生活,增加智能家居照明的多样化和情趣化。

Description

一种面板灯
技术领域
[0001] 本发明涉及蓝牙灯具技术领域, 尤其涉及一种面板灯。
背景技术
[0002] 随着 LED技术的普及, 越来越多的 LED照明灯具进入到人们的生活中。 目前 市场上的无线调光和调色温超薄面板灯几乎都是无线射频控制技术, 这种控制 技术抗干扰能力弱, 组网不便, 可靠性一般, 不能实现情景模式和音乐炫彩等 功能。 而且现有技术中, 将灯的照明功能与蓝牙通讯功能集合一直存在技术瓶 颈。
技术问题
[0003] 本发明的目的在于提供一种面板灯, 解决现有技术中照明灯具难以实现远程多 样化操作, 照明功能与蓝牙通讯功能集合存在技术瓶颈的问题。
问题的解决方案
技术解决方案
[0004] 本发明的技术方案实现如下:
[0005] 本发明提供一种面板灯, 包括:
[0006] 面板灯壳体组件, 所述面板灯壳体组件包括灯板;
[0007] 控制模块, 设置于所述面板灯壳体组件的内部;
[0008] 用于通过蓝牙接收外部控制信号的蓝牙模块, 耦合至所述控制模块;
[0009] 发光单元, 设置于所述灯板上; 以及
[0010] 用于控制所述发光单元的发光驱动电路, 耦合至所述控制模块及所述发光单元
[0011] 在本发明所述的面板灯中, 所述面板灯壳体组件还包括框架、 扩散板、 导光板
、 反射纸、 珍珠棉以及背板; 其中:
[0012] 所述框架后侧依次层叠所述灯板、 所述扩散板、 所述导光板、 所述反射纸、 所 述珍珠棉以及所述背板, 所述背板通过螺丝紧固于所述框架后侧。 [0013] 在本发明所述的面板灯中, 所述灯板包括两条进光模组, 每条进光模组上设置 有多个依次排列的发光区, 每个发光区包括依次排列的第一冷光灯区、 第一暖 光灯区、 第二冷光灯区、 第二暖光灯区以及 RGB灯区; 两条所述进光模组分别 设置于所述框架相对的两侧。
[0014] 在本发明所述的面板灯中, 所述发光单元包括多个冷色温 LED单色灯、 多个暖 色温 LED单色灯及多个 RGB灯; 多个所述冷色温 LED单色灯依次串联以形成冷色 灯支路, 多个暖色温 LED单色灯依次串联以形成暖色灯支路;
[0015] 多个所述冷色温 LED单色灯设置于所述第一冷光灯区及所述第二冷光灯区, 多 个所述暖色温 LED单色灯设置于所述第一暖光灯区及所述第二暖光灯区, 多个所 述 RGB灯设置于所述 RGB灯区。
[0016] 在本发明所述的面板灯中, 所述灯板包括两条第一进光模组及两条第二进光模 组, 每条第一进光模组上设置有多个冷光灯区及多个暖光灯区, 多个所述冷光 灯区及多个所述暖光灯区交替排列, 每条第二进光模组上设置有多个依次排列 的 RGB灯区; 两条所述第一进光模组及两条所述第二进光模组分别设置于所述 框架的四周。
[0017] 在本发明所述的面板灯中, 所述发光单元包括多个冷色温 LED单色灯、 多个暖 色温 LED单色灯及多个 RGB灯; 多个所述冷色温 LED单色灯依次串联以形成冷色 灯支路, 多个暖色温 LED单色灯依次串联以形成暖色灯支路;
[0018] 多个所述冷色温 LED单色灯设置于所述冷光灯区, 多个所述暖色温 LED单色灯 设置于所述暖光灯区, 多个所述 RGB灯设置于所述 RGB灯区。
[0019] 在本发明所述的面板灯中, 每个 RGB灯包括 R灯、 G灯及 B灯; 多个所述 R灯依 次串联以形成 R灯支路, 多个所述 G灯依次串联已形成 G灯支路, 多个所述 B灯依 次串联已形成 B灯支路;
[0020] 所述发光驱动电路包括暖色灯驱动子电路、 冷色灯驱动子电路、 R灯驱动子电 路、 G灯驱动子电路及 B灯驱动子电路; 所述暖色灯驱动子电路连接至所述暖色 灯支路的一端, 所述冷色灯驱动子电路连接至所述冷色灯支路的一端, 所述 R灯 驱动子电路连接至所述 R灯支路的一端, 所述 G灯驱动子电路连接至所述 G灯支 路的一端, 所述 B灯驱动子电路连接至所述 B灯支路的一端。 [0021] 在本发明所述的面板灯中, 还包括电源模块及蓝牙供电模块, 所述蓝牙供电模 块的输入端电性连接于电源模块, 所述蓝牙供电模块的输出端连接于所述暖色 灯支路的另一端、 冷色灯支路的另一端、 R灯支路的另一端、 B灯支路的另一端 及 G灯支路的另一端。
[0022] 在本发明所述的面板灯中, 还包括插接单元; 所述控制模块通过所述插接单元 分别连接于所述暖色灯驱动子电路、 冷色灯驱动子电路、 R灯驱动子电路、 G灯 驱动子电路及 B灯驱动子电路, 所述控制模块还通过所述插接单元连接所述蓝牙 供电模块已接入直流电压。
[0023] 在本发明所述的面板灯中, 每个冷色温 LED单色灯包括多个并联的冷色子灯, 每个暖色温 LED单色灯包括多个并联的暖色子灯。
发明的有益效果
有益效果
[0024] 因此, 本发明的有益效果是, 通过蓝牙无线控制技术实现面板灯远程调节亮度 、 调节颜色、 定吋、 音乐炫彩、 情景模式等功能, 方便人们生活, 增加智能家 居照明的多样化和情趣化。
对附图的简要说明
附图说明
[0025] 下面将结合附图及实施例对本发明作进一步说明, 附图中:
[0026] 图 1为本发明提供的一种面板灯的模块框图;
[0027] 图 2为本发明一实施例提供的一种面板灯壳体组件的爆炸图;
[0028] 图 3为本发明另一实施例提供的一种面板灯壳体组件的爆炸图;
[0029] 图 4为本发明一实施例提供的灯板的结构示意图;
[0030] 图 5为本发明一实施例提供的灯板的具体结构连接示意图;
[0031] 图 6为本发明一实施例提供的进光模组设置方式的示意图;
[0032] 图 7为本发明提供的发光单元的电路图;
[0033] 图 8为本发明另一实施例提供的灯板的结构示意图;
[0034] 图 9为本发明另一实施例提供的进光模组设置方式的示意图;
[0035] 图 10为本发明提供的蓝牙供电模块的结构示意图; [0036] 图 11为本发明提供的电源模块的结构示意图;
[0037] 图 12为本发明提供的控制模块及蓝牙模块的连接示意图;
[0038] 图 13为本发明提供的插接单元的结构示意图;
[0039] 图 14为本发明提供的暖色灯驱动子单元的结构示意图;
[0040] 图 15为本发明提供的冷色灯驱动子单元的结构示意图;
[0041] 图 16为本发明提供的 R灯驱动子单元的结构示意图;
[0042] 图 17为本发明提供的 G灯驱动子单元的结构示意图;
[0043] 图 18为本发明提供的 B灯驱动子单元的结构示意图。
本发明的实施方式
[0044] 为了对本发明的技术特征、 目的和效果有更加清楚的理解, 以下将对照附图详 细说明本发明的具体实施方式。 应当理解, 以下说明仅为本发明实施例的具体 阐述, 不应以此限制本发明的保护范围。
[0045] 本发明提供一种面板灯 100, 其目的在于, 通过面板灯中采用蓝牙控制技术, 实现能够自由组网, 采用终端智能控制器、 遥控器等就能够远程控制面板灯调 光调色、 音乐炫彩等功能, 满足不同需求的使用人群, 操作性强, 体验性好。
[0046] 参见图 1, 图 1为本发明提供的一种面板灯 100的模块框图, 该面板灯 100包括面 板灯壳体组件 10、 控制模块 20、 蓝牙模块 30、 发光单元 40、 发光驱动电路 50、 电源模块 60以及蓝牙供电模块 70。 所述面板灯壳体组件 10包括灯板 7; 控制模块 20设置于所述面板灯壳体组件 10的内部; 用于通过蓝牙接收外部控制信号的蓝 牙模块 30耦合至所述控制模块 20; 发光单元 40设置于所述灯板 7上; 用于控制所 述发光单元 40的发光驱动电路 50耦合至所述控制模块 20及所述发光单元 40。
[0047] 面板灯壳体组件 10, 所述面板灯壳体组件 10包括灯板 7; 参见图 2及图 3, 本发 明提供的一种面板灯壳体组件 10—般具有正方形及长方形两种形状, 所述面板 灯壳体组件 10还包括框架 8、 扩散板 6、 导光板 5、 反射纸 4、 珍珠棉 3以及背板 2 ; 其中所述框架 8后侧依次层叠所述灯板 7、 所述扩散板 6、 所述导光板 5、 所述 反射纸 4、 所述珍珠棉 3以及所述背板 2, 所述背板 2通过螺丝 1紧固于所述框架 8 [0048] 参见图 4-6, 图 4为本发明一实施例提供的灯板 7的结构示意图, 图 5为本发明一 实施例提供的灯板的具体结构连接示意图, 图 6为本发明一实施例提供的进光模 组 71设置方式的示意图, 所述进光模组 71的条数为 2, 所述灯板 7包括两条进光 模组 71, 每条进光模组 71上设置有多个依次排列的发光区 710, 每个发光区 710 包括依次排列的第一冷光灯区 711、 第一暖光灯区 712、 第二冷光灯区 713、 第二 暖光灯区 714以及 RGB灯区 715; 两条所述进光模组 71分别设置于所述框架 8相对 的两侧。 所述发光单元 40包括多个冷色温 LED单色灯 41、 多个暖色温 LED单色灯 42及多个 RGB灯 43; 多个所述冷色温 LED单色灯 41依次串联以形成冷色灯支路 , 多个暖色温 LED单色灯 42依次串联以形成暖色灯支路; 多个所述冷色温 LED单 色灯 41设置于所述第一冷光灯区 711及所述第二冷光灯区 713, 多个所述暖色温 L ED单色灯 42设置于所述第一暖光灯区 712及所述第二暖光灯区 714, 多个所述 RG B灯 43设置于所述 RGB灯区 715。 图 5中, A、 B、 C及 D为两面进光模组, 每个产 品上使用两条灯条模组。
[0049] 针对图 4-6的实施例, 参见图 7, 图 7为本发明提供的发光单元 40的电路图, 所 述发光单元 40包括多个冷色温 LED单色灯 41、 多个暖色温 LED单色灯 42及多个 R GB灯 43; 多个所述冷色温 LED单色灯 41依次串联以形成冷色灯支路, 多个暖色 温 LED单色灯 42依次串联以形成暖色灯支路; 多个所述冷色温 LED单色灯 41设置 于所述第一冷光灯区 711及所述第二冷光灯区 713, 多个所述暖色温 LED单色灯 42 设置于所述第一暖光灯区 712及所述第二暖光灯区 714, 多个所述 RGB灯 43设置 于所述 RGB灯区 715。
[0050] 参见图 8及图 9, 图 8为本发明另一实施例提供的灯板 7的结构示意图; 图 9为本 发明另一实施例提供的进光模组 71设置方式的示意图, 所述进光模组 71的条数 为 4, 所述灯板 7包括两条第一进光模组 72及两条第二进光模组 73, 每条第一进 光模组 72上设置有多个冷光灯区 721及多个暖光灯区 722, 多个所述冷光灯区 721 及多个所述暖光灯区 722交替排列, 每条第二进光模组 73上设置有多个依次排列 的 RGB灯区 731; 两条所述第一进光模组 72及两条所述第二进光模组 73分别设置 于所述框架 8的四周。 所述发光单元 40包括多个冷色温 LED单色灯 41、 多个暖色 温 LED单色灯 42及多个 RGB灯 43; 多个所述冷色温 LED单色灯 41依次串联以形成 冷色灯支路, 多个暖色温 LED单色灯 42依次串联以形成暖色灯支路; 多个所述冷 色温 LED单色灯 41设置于所述冷光灯区, 多个所述暖色温 LED单色灯 42设置于所 述暖光灯区, 多个所述 RGB灯 43设置于所述 RGB灯区 731。
[0051] 针对图 8及图 9的实施例, 参见图 7, 所述发光单元 40包括多个冷色温 LED单色 灯 41、 多个暖色温 LED单色灯 42及多个 RGB灯 43; 多个所述冷色温 LED单色灯 41 依次串联以形成冷色灯支路, 多个暖色温 LED单色灯 42依次串联以形成暖色灯支 路; 多个所述冷色温 LED单色灯 41设置于所述冷光灯区, 多个所述暖色温 LED单 色灯 42设置于所述暖光灯区, 多个所述 RGB灯 43设置于所述 RGB灯区 731。
[0052] 相关电源模块参见图 10及图 11, 图 10为本发明提供的蓝牙供电模块的结构示意 图; 图 11为本发明提供的电源模块的结构示意图; 所述蓝牙供电模块的输入端 电性连接于电源模块, 所述蓝牙供电模块的输出端连接于所述暖色灯支路的另 一端、 冷色灯支路的另一端、 R灯支路的另一端、 B灯支路的另一端及 G灯支路 的另一端。
[0053] 图 12为本发明提供的控制模块 20及蓝牙模块 30的连接示意图; 控制模块 20, 设 置于所述面板灯壳体组件 10的内部; 控制模块 20包括 8个输出引脚, 并连接至蓝 牙模块 30。 控制模块 20优选内置 16KB容量的数据存储器 (SRAM) , 嵌入 32位 高性能 MCU与最大 48MHZ的吋钟信号, 强大的存储功能能够提供足够的容量写 入控制程序, 实现丰富多样的控制功能。
[0054] 用于通过蓝牙接收外部控制信号的蓝牙模块 30, 耦合至所述控制模块 20; 蓝牙 模块 30用于从外部接收相应的蓝牙信号, 蓝牙信号来源于预先与该蓝牙模块 30 配对的移动终端或者其他具有蓝牙配对功能的设备。 蓝牙模块 30接收到蓝牙信 号之后, 将其转发至控制模块 20, 控制模块 20再依据所述蓝牙信号对发光单元 4 0进行控制。
[0055] 图 13为本发明提供的插接单元的结构示意图; 所述控制模块 20通过所述插接单 元分别连接于所述暖色灯驱动子电路 51、 冷色灯驱动子电路 52、 R灯驱动子电路 53、 G灯驱动子电路 54及 B灯驱动子电路 55, 所述控制模块 20还通过所述插接单 元连接所述蓝牙供电模块已接入直流电压。 每个冷色温 LED单色灯 41包括多个并 联的冷色子灯 411, 每个暖色温 LED单色灯 42包括多个并联的暖色子灯 412。 [0056] 参见图 14-图 18, 图 14为本发明提供的暖色灯驱动子单元的结构示意图; 图 15 为本发明提供的冷色灯驱动子单元的结构示意图; 图 16为本发明提供的 R灯驱动 子单元 53的结构示意图; 图 17为本发明提供的 G灯驱动子单元 54的结构示意图; 图 18为本发明提供的 B灯驱动子单元的结构示意图。 每个 RGB灯 43包括 R灯 431、 G灯 432及 B灯 433; 多个所述 R灯 431依次串联以形成 R灯支路, 多个所述 G灯 432 依次串联已形成 G灯支路, 多个所述 B灯 433依次串联已形成 B灯支路; 每个冷色 温 LED单色灯 41包括多个并联的冷色子灯 411, 每个暖色温 LED单色灯 42包括多 个并联的暖色子灯 412。 所述发光驱动电路 50包括暖色灯驱动子电路 51、 冷色灯 驱动子电路 52、 R灯驱动子电路 53、 G灯驱动子电路 54及 B灯驱动子电路 55; 所 述暖色灯驱动子电路 51连接至所述暖色灯支路的一端, 所述冷色灯驱动子电路 5 2连接至所述冷色灯支路的一端, 所述 R灯驱动子电路 53连接至所述 R灯支路的一 端, 所述 G灯驱动子电路 54连接至所述 G灯支路的一端, 所述 B灯驱动子电路 55 连接至所述 B灯支路的一端。
[0057] 本文提供了实施例的各种操作。 在一个实施例中, 所述的一个或操作可以构成 一个或计算机可读介质上存储的计算机可读指令, 其在被电子设备执行吋将使 得计算设备执行所述操作。 描述一些或所有操作的顺序不应当被解释为暗示这 些操作必需是顺序相关的。 本领域技术人员将理解具有本说明书的益处的可替 代的排序。 而且, 应当理解, 不是所有操作必需在本文所提供的每个实施例中 存在。
[0058] 而且, 本文所使用的词语"优选的 "意指用作实例、 示例或例证。 奉文描述为" 优选的 "任意方面或设计不必被解释为比其他方面或设计更有利。 相反, 词语"优 选的"的使用旨在以具体方式提出概念。 如本申请中所使用的术语 "或"旨在意指 包含的 "或"而非排除的"或"。 即, 除非另外指定或从上下文中清楚, "X使用 A或 B"意指自然包括排列的任意一个。 即, 如果 X使用 A; X使用 B; 或 X使用 A和 B 二者, 则" X使用 A或 B "在前述任一示例中得到满足。
[0059] 而且, 尽管已经相对于一个或实现方式示出并描述了本公幵, 但是本领域技术 人员基于对本说明书和附图的阅读和理解将会想到等价变型和修改。 本公幵包 括所有这样的修改和变型, 并且仅由所附权利要求的范围限制。 特别地关于由 上述组件 (例如元件、 资源等) 执行的各种功能, 用于描述这样的组件的术语 旨在对应于执行所述组件的指定功能 (例如其在功能上是等价的) 的任意组件 (除非另外指示) , 即使在结构上与执行本文所示的本公幵的示范性实现方式 中的功能的公幵结构不等同。 此外, 尽管本公幵的特定特征已经相对于若干实 现方式中的仅一个被公幵, 但是这种特征可以与如可以对给定或特定应用而言 是期望和有利的其他实现方式的一个或其他特征组合。 而且, 就术语 "包括"、 " 具有"、 "含有 "或其变形被用在具体实施方式或权利要求中而言, 这样的术语旨 在以与术语"包含"相似的方式包括。
[0060] 本发明实施例中的各功能单元可以集成在一个处理模块中, 也可以是各个单元 单独物理存在, 也可以两个或两个以上单元集成在一个模块中。 上述集成的模 块既可以采用硬件的形式实现, 也可以采用软件功能模块的形式实现。 所述集 成的模块如果以软件功能模块的形式实现并作为独立的产品销售或使用吋, 也 可以存储在一个计算机可读取存储介质中。 上述提到的存储介质可以是只读存 储器, 磁盘或光盘等。 上述的各装置或系统, 可以执行相应方法实施例中的方 法。
[0061] 综上所述, 虽然本发明已以优选实施例揭露如上, 但上述优选实施例并非用以 限制本发明, 本领域的普通技术人员, 在不脱离本发明的精神和范围内, 均可 作各种更动与润饰, 因此本发明的保护范围以权利要求界定的范围为准。

Claims

权利要求书
一种面板灯, 其特征在于, 包括:
面板灯壳体组件, 所述面板灯壳体组件包括灯板;
控制模块, 设置于所述面板灯壳体组件的内部;
用于通过蓝牙接收外部控制信号的蓝牙模块, 耦合至所述控制模块; 发光单元, 设置于所述灯板上; 以及
用于控制所述发光单元的发光驱动电路, 耦合至所述控制模块及所述 发光单元。
根据权利要求 1所述的面板灯, 其特征在于, 所述面板灯壳体组件还 包括框架、 扩散板、 导光板、 反射纸、 珍珠棉以及背板; 其中: 所述框架后侧依次层叠所述灯板、 所述扩散板、 所述导光板、 所述反 射纸、 所述珍珠棉以及所述背板, 所述背板通过螺丝紧固于所述框架 根据权利要求 2所述的面板灯, 其特征在于, 所述灯板包括两条进光 模组, 每条进光模组上设置有多个依次排列的发光区, 每个发光区包 括依次排列的第一冷光灯区、 第一暖光灯区、 第二冷光灯区、 第二暖 光灯区以及 RGB灯区; 两条所述进光模组分别设置于所述框架相对的 两侧。
根据权利要求 3所述的面板灯, 其特征在于, 所述发光单元包括多个 冷色温 LED单色灯、 多个暖色温 LED单色灯及多个 RGB灯; 多个所述 冷色温 LED单色灯依次串联以形成冷色灯支路, 多个暖色温 LED单色 灯依次串联以形成暖色灯支路;
多个所述冷色温 LED单色灯设置于所述第一冷光灯区及所述第二冷光 灯区, 多个所述暖色温 LED单色灯设置于所述第一暖光灯区及所述第 二暖光灯区, 多个所述 RGB灯设置于所述 RGB灯区。
根据权利要求 2所述的面板灯, 其特征在于, 所述灯板包括两条第一 进光模组及两条第二进光模组, 每条第一进光模组上设置有多个冷光 灯区及多个暖光灯区, 多个所述冷光灯区及多个所述暖光灯区交替排 列, 每条第二进光模组上设置有多个依次排列的 RGB灯区; 两条所述 第一进光模组及两条所述第二进光模组分别设置于所述框架的四周。 根据权利要求 5所述的面板灯, 其特征在于, 所述发光单元包括多个 冷色温 LED单色灯、 多个暖色温 LED单色灯及多个 RGB灯; 多个所述 冷色温 LED单色灯依次串联以形成冷色灯支路, 多个暖色温 LED单色 灯依次串联以形成暖色灯支路;
多个所述冷色温 LED单色灯设置于所述冷光灯区, 多个所述暖色温 L ED单色灯设置于所述暖光灯区, 多个所述 RGB灯设置于所述 RGB灯 区。
根据权利要求 4或 6所述的面板灯, 其特征在于, 每个 RGB灯包括 R灯 、 G灯及 B灯; 多个所述 R灯依次串联以形成 R灯支路, 多个所述 G灯 依次串联已形成 G灯支路, 多个所述 B灯依次串联已形成 B灯支路; 所述发光驱动电路包括暖色灯驱动子电路、 冷色灯驱动子电路、 R灯 驱动子电路、 G灯驱动子电路及 B灯驱动子电路; 所述暖色灯驱动子 电路连接至所述暖色灯支路的一端, 所述冷色灯驱动子电路连接至所 述冷色灯支路的一端, 所述 R灯驱动子电路连接至所述 R灯支路的一 端, 所述 G灯驱动子电路连接至所述 G灯支路的一端, 所述 B灯驱动 子电路连接至所述 B灯支路的一端。
根据权利要求 7所述的面板灯, 其特征在于, 还包括电源模块及蓝牙 供电模块, 所述蓝牙供电模块的输入端电性连接于电源模块, 所述蓝 牙供电模块的输出端连接于所述暖色灯支路的另一端、 冷色灯支路的 另一端、 R灯支路的另一端、 B灯支路的另一端及 G灯支路的另一端。 根据权利要求 8所述的面板灯, 其特征在于, 还包括插接单元; 所述 控制模块通过所述插接单元分别连接于所述暖色灯驱动子电路、 冷色 灯驱动子电路、 R灯驱动子电路、 G灯驱动子电路及 B灯驱动子电路, 所述控制模块还通过所述插接单元连接所述蓝牙供电模块已接入直流 电压。
根据权利要求 7所述的面板灯, 其特征在于, 每个冷色温 LED单色灯 包括多个并联的冷色子灯, 每个暖色温 LED单色灯包括多个并联的暖 色子灯。
PCT/CN2017/081103 2017-04-12 2017-04-19 一种面板灯 WO2018188108A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201720381752.6U CN207146071U (zh) 2017-04-12 2017-04-12 一种面板灯
CN201720381752.6 2017-04-12

Publications (1)

Publication Number Publication Date
WO2018188108A1 true WO2018188108A1 (zh) 2018-10-18

Family

ID=61658928

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/081103 WO2018188108A1 (zh) 2017-04-12 2017-04-19 一种面板灯

Country Status (2)

Country Link
CN (1) CN207146071U (zh)
WO (1) WO2018188108A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110198587B (zh) * 2019-05-28 2021-03-26 江苏富联通讯技术有限公司 一种基于蓝牙通讯技术的智能面板灯具

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203395663U (zh) * 2013-07-10 2014-01-15 陈海兵 具有无线蓝牙音箱功能的led面板灯
CN204360725U (zh) * 2014-12-16 2015-05-27 李伟 一种调光调色灯箱、调光调色面板灯及导光板灯箱
US20150192277A1 (en) * 2014-01-03 2015-07-09 Lextar Electronics Corporation Panel lamp with an easily assembled lampshade
CN204922705U (zh) * 2015-09-15 2015-12-30 常州市乐阳光电科技有限公司 可蓝牙控制的led面板灯
CN205961495U (zh) * 2016-05-30 2017-02-15 深圳市蚂蚁雄兵物联技术有限公司 一种蓝牙面板灯
CN206061200U (zh) * 2016-05-30 2017-03-29 深圳市蚂蚁雄兵物联技术有限公司 一种蓝牙吸顶灯

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203395663U (zh) * 2013-07-10 2014-01-15 陈海兵 具有无线蓝牙音箱功能的led面板灯
US20150192277A1 (en) * 2014-01-03 2015-07-09 Lextar Electronics Corporation Panel lamp with an easily assembled lampshade
CN204360725U (zh) * 2014-12-16 2015-05-27 李伟 一种调光调色灯箱、调光调色面板灯及导光板灯箱
CN204922705U (zh) * 2015-09-15 2015-12-30 常州市乐阳光电科技有限公司 可蓝牙控制的led面板灯
CN205961495U (zh) * 2016-05-30 2017-02-15 深圳市蚂蚁雄兵物联技术有限公司 一种蓝牙面板灯
CN206061200U (zh) * 2016-05-30 2017-03-29 深圳市蚂蚁雄兵物联技术有限公司 一种蓝牙吸顶灯

Also Published As

Publication number Publication date
CN207146071U (zh) 2018-03-27

Similar Documents

Publication Publication Date Title
WO2017206636A1 (zh) 一种蓝牙球泡灯
WO2017206641A1 (zh) 一种蓝牙面板灯
WO2017206737A1 (zh) 一种蓝牙吸顶灯
WO2014107934A1 (zh) 一种多功能无线led装置及多功能无线音箱系统
WO2014107933A1 (zh) 一种多功能led装置及多功能音箱系统
CN105351880A (zh) 智能彩灯和智能彩灯的控制终端
WO2017215406A1 (zh) 一种蓝牙音响吸顶灯
WO2017206738A1 (zh) 一种蓝牙控制器
WO2017206637A1 (zh) 一种蓝牙控制电源
WO2018188108A1 (zh) 一种面板灯
WO2017206640A1 (zh) 一种蓝牙天花灯
WO2017206638A1 (zh) 一种蓝牙球泡灯
WO2017206639A1 (zh) 一种蓝牙筒灯
CN105323902A (zh) 一种智能显示oled天花板顶灯
CN201787476U (zh) 多功能灯具
WO2019090846A1 (zh) 一种蓝牙蜡烛音箱灯
CN207316861U (zh) 一种新型智能灯具
CN202675202U (zh) 一种可遥控的旋转灯座
WO2019037233A1 (zh) 一种智能面板灯
CN201885093U (zh) 一种led橱柜灯具
CN205244856U (zh) 便携式led智能无线音响灯
CN201121856Y (zh) 一种led雷达感应灯
CN218268753U (zh) 一种适用于多场合使用的灯具
CN203131493U (zh) Led智能照明母子灯
WO2019080084A1 (zh) 一种智能天花灯及其控制方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17905397

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17905397

Country of ref document: EP

Kind code of ref document: A1