WO2019128009A1 - 一种照明设备的控制系统及控制盒 - Google Patents

一种照明设备的控制系统及控制盒 Download PDF

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Publication number
WO2019128009A1
WO2019128009A1 PCT/CN2018/084626 CN2018084626W WO2019128009A1 WO 2019128009 A1 WO2019128009 A1 WO 2019128009A1 CN 2018084626 W CN2018084626 W CN 2018084626W WO 2019128009 A1 WO2019128009 A1 WO 2019128009A1
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control
signal
wifi module
wifi
infrared receiving
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PCT/CN2018/084626
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English (en)
French (fr)
Inventor
彭智光
熊飞
汪序凯
张文彬
陈进银
黄广亮
吴洛毅
黄新
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深圳佳比泰智能照明股份有限公司
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Publication of WO2019128009A1 publication Critical patent/WO2019128009A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source

Definitions

  • the present application relates to the field of lighting equipment, and in particular to a control system and a control box for a lighting device.
  • LED lights are lamps that use LEDs as a light source. Because the LED itself has high brightness, energy saving and environmental protection, the LED lamp has the energy-saving characteristics of the LED.
  • Optical characteristics of LED lamps LEDs provide monochromatic light with a large half-width. Since the energy gap of a semiconductor decreases with increasing temperature, the peak wavelength emitted by it increases with temperature, that is, the spectrum shifts red. The temperature coefficient is +2 ⁇ 3A/°C.
  • the existing lighting equipment has a single control mode, which is not conducive to the user experience.
  • the technical problem to be solved by the present application is to provide a control box for a lighting device according to the above-mentioned drawbacks of the prior art, which solves the problem that the existing lighting device has a single control mode and is not conducive to user experience.
  • the technical solution adopted by the present application to solve the technical problem thereof is to provide a control system for a lighting device, the lighting device comprising an LED driver and an LED lamp, the LED driver controlling the operation of the LED lamp, the control system comprising a gateway and a control box,
  • the control box includes a WIFI module and an infrared receiving head, the external terminal sends a first control signal to the WIFI module of the control box through the gateway, and the external infrared transmitter sends a second control signal to the infrared receiving head of the control box; the WIFI module And respectively connected to the infrared receiving head and the LED driver, the infrared receiving head sends the second control signal to the WIFI module, and the WIFI module controls the LED lamp to operate according to the first control signal and the second control signal and through the LED driver.
  • the WIFI module includes a WIFI chip, and the first signal receiving end of the WIFI chip is connected to the antenna, and acquires a first control signal of the gateway, and the signal of the second signal receiving end and the infrared receiving head of the WIFI chip The output terminal is connected to obtain a second control signal of the infrared receiving head.
  • the WIFI chip includes a plurality of control outputs, and the control output includes at least a blue control output, a red control output, a green control output, a warm color control output, and a cool white light control output.
  • the control output is respectively connected to the corresponding signal control receiving end of the LED driver.
  • a driving switch is disposed between the control output end of the WIFI chip and the corresponding signal control receiving end of the LED driver, the driving switch includes a MOS tube, and the G pole of the MOS tube and the control output end of the WIFI chip Connected, its D pole is connected to the corresponding signal of the LED driver to control the receiving end, and its S pole is grounded.
  • a resistor is further disposed between the blue control output end, the red control output end, and the green control output end and the corresponding signal control receiving end of the LED driver.
  • an antenna matching circuit is disposed between the WIFI chip and the antenna, and the antenna matching circuit includes a capacitor C4, an inductor L2, and a capacitor C1.
  • the antenna, the capacitor C4, and the WIFI chip are sequentially connected, and the antenna is connected.
  • the capacitor C1 is grounded in series, and the capacitor C4 is connected in series with the inductor L2.
  • control box further includes a step-down circuit, wherein the power terminals of the LED driver are respectively connected to the input terminal IN of the external power source and the step-down circuit, and the output pin of the step-down circuit is connected to the WIFI module and the infrared receiving head. , powering the WIFI module and the infrared receiving head.
  • control box further includes an adjustment circuit disposed between the WIFI module and the infrared receiving head, and the adjustment circuit converts the external infrared signal into a pulse waveform signal that can be recognized by the WIFI module.
  • control box is further integrated with a power processor that converts the commercial power into a voltage that is supplied by the LED lamp and a voltage that is converted into a power supply of the circuit of the control box itself.
  • control box further includes a FLASH module, and the FLASH module is connected to the WIFI module.
  • control box includes a housing, one end is connected to the power source, and one end is connected to the LED driver of the lighting device.
  • the housing includes a circuit board, and the WIFI module and the infrared receiving head are integrally disposed on the circuit board.
  • model of the WIFI chip is ESP8266EX.
  • the technical solution adopted by the present application to solve the technical problem thereof is to provide a control box for a lighting device, the lighting device comprising an LED driver and an LED lamp, wherein the LED driver controls the operation of the LED lamp, wherein the control box comprises a WIFI a module and an infrared receiving head, the external terminal sends a first control signal to the WIFI module of the control box through the gateway, and the external infrared transmitter sends a second control signal to the infrared receiving head of the control box; the WIFI module and the infrared receiving head respectively An LED driver is connected, the infrared receiving head sends a second control signal to the WIFI module, and the WIFI module controls the LED lamp to operate according to the first control signal and the second control signal through the LED driver;
  • the WIFI module includes a WIFI chip, and the first signal receiving end of the WIFI chip is connected to the antenna to obtain a first control signal of the gateway, and the second signal receiving end of the WIFI chip and the signal output of the infrared receiving head Connecting, obtaining a second control signal of the infrared receiving head;
  • the WIFI chip includes a plurality of control outputs
  • the control output terminal includes at least a blue control output end, a red control output end, a green control output end, a warm color control output end, and a cool white light control output end
  • the control The output terminals are respectively connected to the corresponding signal control receiving ends of the LED driver.
  • the utility model has the beneficial effects that the present application increases the control mode of the lighting device and improves the user experience by designing the control system and the control box of the lighting device compared with the prior art; at the same time, the WIFI module and the infrared module are integrated and designed to reduce occupation. Space, reduce costs, improve performance, such as stability, safety, while reducing losses, easy to integrate, miniaturized design, easy to mass production of products.
  • FIG. 1 is a structural block diagram of a control system of the present application
  • FIG. 2 is a circuit diagram of a control box of the present application
  • FIG. 3 is a circuit diagram of a WIFI chip of the present application.
  • FIG. 4 is a schematic circuit diagram of a WIFI module of the present application.
  • FIG. 5 is a schematic circuit diagram of a FLASH module of the present application.
  • Icon 100-LED light box; 110-light box bracket; 120-light absorbing layer; 130-canvas; 150-controller; 170-LED light source module; 180-wire; 181- buckle; 190-metal tube; Magnet; 171-LED strip; 172-light strip PCB connector; 173-LED lamp; 174-power line; 175-signal line.
  • the present application provides an alternative embodiment of a control system for a lighting device.
  • a control system for a lighting device comprising an LED driver 21 and an LED lamp 22, the LED driver 21 controlling the operation of the LED lamp 22, the control system comprising a gateway 30 and a control box, the control box comprising a WIFI module 11 and The infrared receiving head 12, the external terminal sends the first control signal to the WIFI module 11 of the control box through the gateway 30, and the external infrared transmitter 50 sends the second control signal to the infrared receiving head 12 of the control box; the WIFI module 11 respectively
  • the infrared receiving head 12 is connected to the LED driver 21, and the infrared receiving head 12 sends a second control signal to the WIFI module 11, and the WIFI module 11 controls the LED through the LED driver 21 according to the first control signal and the second control signal.
  • Lamp 22 works.
  • control box includes a casing, one end is connected to the power source, and one end is connected to the LED driver 21 of the lighting device.
  • the LED driver 21 can be a control circuit of the lighting device, and controls the operation of the LED lamp 22 to emit light, discolor, and adjust the color temperature.
  • the control box also integrates a power processor that converts the utility power into a voltage that is supplied by the LED lamp 22 and converts it into a voltage that powers the circuit of the control box itself.
  • the circuit board includes a circuit board, and the WIFI module 11 and the infrared receiving head 12 are integrated on the circuit board to reduce space occupation, reduce material cost, and improve performance stability.
  • the terminal device 40 such as a mobile phone, a tablet, a computer, a notebook, a smart wearer, a controller, etc., accesses the gateway 30 through the WIFI, and transmits signals through the gateway 30 and the WIFI module 11, mainly sending relevant control signals to In the WIFI module 11, the control of the LED lamp 22 is achieved.
  • the WIFI module 11 includes a WIFI chip, and the first signal receiving end of the WIFI chip is connected to the antenna, and acquires a first control signal of the gateway 30, and a signal of the second signal receiving end of the WIFI chip and the infrared receiving head 12 The output terminal is connected to obtain a second control signal of the infrared receiving head 12.
  • FIG. 3 is a schematic diagram of a conventional circuit of the WIFI chip
  • FIG. 4 is a circuit schematic diagram of the WIFI module 11, which is convenient for understanding.
  • a pin 2 (LNA) of the WIFI chip is connected to the antenna (ANT1), and an antenna matching circuit is disposed between the WIFI chip and the antenna, and the line matching circuit includes a capacitor C4 (8.2pF) and an inductor connected in series with the capacitor C4. L2 (1.5nH) and capacitor C1 (2.4pF) in series with capacitor C4.
  • the output pin 1 (OUT) of the infrared receiving head 12 is connected to the pin 14 (GPIO5) of the WIFI module 11, and is connected to the pin 24 of the WIFI chip.
  • the model of the WIFI chip is ESP8266EX.
  • the WIFI chip includes a plurality of control outputs, and the control output terminal includes at least a blue control output terminal B1, a red control output terminal R1, a green control output terminal G1, a warm color control output terminal WW, and a cool white light control output.
  • the terminal CW is connected to the corresponding signal control receiving end of the LED driver 21, respectively.
  • the blue control output terminal B1, the red control output terminal R1, and the green control output terminal G1 respectively control blue, red and green light of the illumination device, and realize color adjustment of the LED lamp 22 by three colors of RGB.
  • the warm color control output terminal WW adjusts the warm color of the LED lamp 22, and the cool white light control output terminal CW adjusts the cool white light of the LED lamp 22.
  • the WIFI chip controls the operation of the LED lamp 22 through different control pins according to different control signals.
  • a driving switch is disposed between the control output end of the WIFI chip and the corresponding signal control receiving end of the LED driver 21, and the driving switch includes a MOS tube, and the G pole and the WIFI chip of the MOS tube The control output is connected, and the D pole is connected to the corresponding signal control receiving end of the LED driver 21, and the S pole is grounded.
  • the warm color control output terminal WW and the LED driver 21 drive switch the G pole of the MOS transistor QW1 is connected to the warm color control output terminal WW through the resistor R10 (2K), and the pull-down resistor R11 (4.7K) is connected in parallel. Its S pole is grounded, and the model number of the MOS transistor QW1 is LN2306LT1G.
  • a resistor is further disposed between the blue control output end, the red control output end, and the green control output end and the corresponding signal control receiving end of the LED driver 21.
  • control box further includes a step-down circuit, and the power terminals of the LED driver 21 are respectively connected to the input terminal IN of the external power supply and the step-down circuit, and the output pin of the step-down circuit and the WIFI module 11 It is connected to the infrared receiving head 12 to supply power to the WIFI module 11 and the infrared receiving head 12.
  • the buck circuit includes a voltage stabilizing chip si3116.
  • control box further includes an adjustment circuit disposed between the WIFI module 11 and the infrared receiving head 12, and the adjustment circuit converts the external infrared signal into a pulse waveform signal that can be recognized by the WIFI module 11.
  • control box further includes a FLASH module, and the FLASH module is connected to the WIFI module 11.
  • the application provides a control system and a control box for a lighting device, which increases the control mode of the lighting device, improves product performance, reduces space occupation and loss, and is compact in design for large-scale production.

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

本申请涉及照明设备领域,具体涉及一种照明设备的控制系统及控制盒。所述控制系统包括网关和控制盒,所述控制盒包括WIFI模块和红外接收头,外部终端通过网关发送第一控制信号至控制盒的WIFI模块,以及外部红外发射器发送第二控制信号至控制盒的红外接收头;所述WIFI模块根据第一控制信号和第二控制信号并通过LED驱动器控制LED灯工作。本申请通过设计照明设备的控制系统及控制盒,增加照明设备的控制方式,提高用户体验;同时将WIFI模块和红外模块集成设计,减少占用空间,减少成本,提高性能,如稳定性、安全性,同时减少损耗,便于集成化、小型化设计,便于产品大规模生产。

Description

一种照明设备的控制系统及控制盒
本申请要求于2017年12月30日提交中国专利局,申请号为CN2017219096096、名称为“一种照明设备的控制系统及控制盒”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及照明设备领域,具体涉及一种照明设备的控制系统及控制盒。
背景技术
LED灯是以LED为光源的灯具。因为LED本身具有亮度高,节能环保,所以LED灯都具有LED的节能特性。LED灯的光学特性:LED提供的是半宽度很大的单色光,由于半导体的能隙随温度的上升而减小,因此它所发射的峰值波长随温度的上升而增长,即光谱红移,温度系数为+2~3A/℃。
但是现有的照明设备,控制方式单一,不利于用户体验。
实用新型内容
本申请要解决的技术问题在于,针对现有技术的上述缺陷,提供一种照明设备的控制盒,解决现有的照明设备,控制方式单一,不利于用户体验的问题。
本申请解决其技术问题所采用的技术方案是:提供一种照明设备的控制系统,照明设备包括LED驱动器和LED灯,所述LED驱动器控制LED灯工作,所述控制系统包括网关和控制盒,所述控制盒包括WIFI模块和红外接收头,外部终端通过网关发送第一控制信号至控制盒的WIFI模块,以及外部红外发射器发送第二控制信号至控制盒的红外接收头;所述WIFI模块分别与红外接收头和LED驱动器连接,所述红外接收头将第二控制信号发送至WIFI模块中,所述WIFI模块根据第一控制信号和第二控制信号并通过LED驱动器控制LED灯工作。
进一步地,所述WIFI模块包括一WIFI芯片,所述WIFI芯片的第一信号接收端与天线连接,获取网关的第一控制信号,所述WIFI芯片的第二信号接收端与红外接收头的信号输出端连接,获取红外接收头的第二控制信号。
进一步地,所述WIFI芯片包括多个控制输出端,所述控制输出端至少包括蓝色控制输出端、红色控制输出端、绿色控制输出端、暖色控制输出端和冷白光控制输出端,所述控制输出端分别与LED驱动器的对应信号控制接收端连接。
进一步地,所述WIFI芯片的控制输出端与LED驱动器的对应信号控制接收端之间均设置有驱动开关,所述驱动开关包括MOS管,所述MOS管的G极与WIFI芯片的控制输出端连接,其D极与LED驱动器的对应信号控制接收端连接,其S极接地。进一步地, 所述蓝色控制输出端、红色控制输出端和绿色控制输出端与LED驱动器的对应信号控制接收端之间,还设置有一电阻。
进一步地,所述WIFI芯片与所述天线之间设置有一天线匹配电路,所述天线匹配电路包括电容C4、电感L2及电容C1,所述天线、电容C4、WIFI芯片依次连接,且所述天线串联所述电容C1接地,所述电容C4串联所述电感L2接地。
进一步地,所述控制盒还包括降压电路,所述LED驱动器的电源端分别与外部电源和降压电路的输入端IN连接,所述降压电路的输出脚与WIFI模块和红外接收头连接,为WIFI模块和红外接收头供电。
进一步地,所述控制盒还包括设置在WIFI模块和红外接收头之间的调节电路,所述调节电路将外部的红外信号转化为可为WIFI模块识别的脉冲波形信号。
进一步地,所述控制盒还集成有电源处理器,所述电源处理器将市电转化为所述LED灯供电的电压、以及转化为所述控制盒本身电路供电的电压。
进一步地,所述控制盒还包括一FLASH模块,所述FLASH模块与WIFI模块连接。
进一步地,所述控制盒包括一壳体,一端与电源连接,一端与所述照明设备的所述LED驱动器连接。
进一步地,所述壳体内包括一电路板,所述WIFI模块和所述红外接收头均集成设置在所述电路板上。
进一步地,所述WIFI芯片的型号为ESP8266EX。
本申请解决其技术问题所采用的技术方案是:提供一种照明设备的控制盒,照明设备包括LED驱动器和LED灯,所述LED驱动器控制LED灯工作,其特征在于:所述控制盒包括WIFI模块和红外接收头,外部终端通过网关发送第一控制信号至控制盒的WIFI模块,以及外部红外发射器发送第二控制信号至控制盒的红外接收头;所述WIFI模块分别与红外接收头和LED驱动器连接,所述红外接收头将第二控制信号发送至WIFI模块中,所述WIFI模块根据第一控制信号和第二控制信号并通过LED驱动器控制LED灯工作;
其中,所述WIFI模块包括一WIFI芯片,所述WIFI芯片的第一信号接收端与天线连接,获取网关的第一控制信号,所述WIFI芯片的第二信号接收端与红外接收头的信号输出端连接,获取红外接收头的第二控制信号;
以及,所述WIFI芯片包括多个控制输出端,所述控制输出端至少包括蓝色控制输出端、红色控制输出端、绿色控制输出端、暖色控制输出端和冷白光控制输出端,所述控制输出端分别与LED驱动器的对应信号控制接收端连接。
本申请的有益效果在于,与现有技术相比,本申请通过设计照明设备的控制系统及控制盒,增加照明设备的控制方式,提高用户体验;同时将WIFI模块和红外模块集成设计, 减少占用空间,减少成本,提高性能,如稳定性、安全性,同时减少损耗,便于集成化、小型化设计,便于产品大规模生产。
附图说明
下面将结合附图及实施例对本申请作进一步说明,附图中:
图1是本申请控制系统的结构框图;
图2是本申请控制盒的电路示意图;
图3是本申请WIFI芯片的电路示意图;
图4是本申请WIFI模块的电路示意图;
图5是本申请FLASH模块的电路示意图。
图标:100-LED灯箱;110-灯箱支架;120-吸光层;130-画布;150-控制器;170-LED光源模组;180-金属丝;181-卡扣;190-金属管;191-磁铁;171-LED灯条;172-灯条PCB连接件;173-LED灯;174-电源线;175-信号线。
具体实施方式
现结合附图,对本申请的可选实施例作详细说明。
如图1所示,本申请提供一种照明设备的控制系统的可选实施例。
一种照明设备的控制系统,照明设备包括LED驱动器21和LED灯22,所述LED驱动器21控制LED灯22工作,所述控制系统包括网关30和控制盒,所述控制盒包括WIFI模块11和红外接收头12,外部终端通过网关30发送第一控制信号至控制盒的WIFI模块11,以及外部红外发射器50发送第二控制信号至控制盒的红外接收头12;所述WIFI模块11分别与红外接收头12和LED驱动器21连接,所述红外接收头12将第二控制信号发送至WIFI模块11中,所述WIFI模块11根据第一控制信号和第二控制信号并通过LED驱动器21控制LED灯22工作。
可选地,控制盒包括一壳体,一端与电源连接,一端与照明设备的LED驱动器21连接,LED驱动器21可为照明设备的控制电路,控制LED灯22发光、变色、色温调节等操作。本控制盒也集成电源处理器,将市电转化为LED灯22供电的电压,以及转化为为控制盒本身电路供电的电压。进一步地,壳体内包括一电路板,WIFI模块11和红外接收头12均集成设置在电路板上,减少占用空间,降低材料成本,提高性能稳定性。
以及,终端设备40,如手机、平板、电脑、笔记本、智能穿戴、控制器等,通过WIFI接入网关30,并通过网关30与WIFI模块11进行信号传输,主要是将相关的控制信号发送至WIFI模块11中,从而实现LED灯22的控制。
如图2至5所示,本申请提供一种控制盒的电路原理图的可选实施例。
所述WIFI模块11包括一WIFI芯片,所述WIFI芯片的第一信号接收端与天线连接, 获取网关30的第一控制信号,所述WIFI芯片的第二信号接收端与红外接收头12的信号输出端连接,获取红外接收头12的第二控制信号。
可选地,并参考图3和图4,其中,图3是WIFI芯片的常规电路原理图,图4是WIFI模块11的电路原理图,便于理解。WIFI芯片的引脚2(LNA)与天线(ANT1)连接,所述WIFI芯片与天线之间设置有一天线匹配电路,所述线匹配电路包括电容C4(8.2pF),以及与电容C4串联的电感L2(1.5nH),以及与电容C4串联的电容C1(2.4pF)。以及,红外接收头12的输出引脚1(OUT)WIFI模块11的引脚14(GPIO5)连接,通过与WIFI芯片的引脚24连接。
可选地,所述WIFI芯片的型号为ESP8266EX。
进一步地,所述WIFI芯片包括多个控制输出端,所述控制输出端至少包括蓝色控制输出端B1、红色控制输出端R1、绿色控制输出端G1、暖色控制输出端WW和冷白光控制输出端CW,所述控制输出端分别与LED驱动器21的对应信号控制接收端连接。
可选地,蓝色控制输出端B1、红色控制输出端R1、绿色控制输出端G1分别控制照明设备的蓝光、红光和绿光,并通过RGB三种光实现LED灯22的颜色调节。暖色控制输出端WW调节LED灯22的暖色,冷白光控制输出端CW调节LED灯22的冷白光。所述WIFI芯片根据不同的控制信号,通过不同的控制引脚控制LED灯22工作。
在本实施例中,所述WIFI芯片的控制输出端与LED驱动器21的对应信号控制接收端之间均设置有驱动开关,所述驱动开关包括MOS管,所述MOS管的G极与WIFI芯片的控制输出端连接,其D极与LED驱动器21的对应信号控制接收端连接,其S极接地。
例如,暖色控制输出端WW与LED驱动器21之间的驱动开关,所述MOS管QW1的G极通过电阻R10(2K)接入暖色控制输出端WW,并且并联一下拉电阻R11(4.7K),其S极接地,MOS管QW1的型号为LN2306LT1G。
以及,所述蓝色控制输出端、红色控制输出端和绿色控制输出端与LED驱动器21的对应信号控制接收端之间,还设置有一电阻。
在本实施例中,所述控制盒还包括降压电路,所述LED驱动器21的电源端分别与外部电源和降压电路的输入端IN连接,所述降压电路的输出脚与WIFI模块11和红外接收头12连接,为WIFI模块11和红外接收头12供电。
可选地,降压电路包括稳压芯片si3116。
在本实施例中,所述控制盒还包括设置在WIFI模块11和红外接收头12之间的调节电路,所述调节电路将外部的红外信号转化为可为WIFI模块11识别的脉冲波形信号。
在本实施例中,所述控制盒还包括一FLASH模块,所述FLASH模块与WIFI模块11连接。
以上所述者,仅为本申请可选实施例而已,并非用于限制本申请的范围,凡依本申请专利范围所作的等效变化或修饰,皆为本申请所涵盖。
工业实用性:
本申请提供一种照明设备的控制系统及控制盒,增加了照明设备的控制方式,提高了产品性能,减少了占用空间及损耗,同时小型化设计便于大规模生产。

Claims (15)

  1. 一种照明设备的控制系统,照明设备包括LED驱动器和LED灯,所述LED驱动器控制LED灯工作,其特征在于:所述控制系统包括网关和控制盒,所述控制盒包括WIFI模块和红外接收头,外部终端通过网关发送第一控制信号至控制盒的WIFI模块,以及外部红外发射器发送第二控制信号至控制盒的红外接收头;所述WIFI模块分别与红外接收头和LED驱动器连接,所述红外接收头将第二控制信号发送至WIFI模块中,所述WIFI模块根据第一控制信号和第二控制信号并通过LED驱动器控制LED灯工作。
  2. 根据权利要求1所述的控制系统,其特征在于:所述WIFI模块包括一WIFI芯片,所述WIFI芯片的第一信号接收端与天线连接,获取网关的第一控制信号,所述WIFI芯片的第二信号接收端与红外接收头的信号输出端连接,获取红外接收头的第二控制信号。
  3. 根据权利要求2所述的控制系统,其特征在于:所述WIFI芯片包括多个控制输出端,所述控制输出端至少包括蓝色控制输出端、红色控制输出端、绿色控制输出端、暖色控制输出端和冷白光控制输出端,所述控制输出端分别与LED驱动器的对应信号控制接收端连接。
  4. 根据权利要求3所述的控制系统,其特征在于:所述WIFI芯片的控制输出端与LED驱动器的对应信号控制接收端之间均设置有驱动开关,所述驱动开关包括MOS管,所述MOS管的G极与WIFI芯片的控制输出端连接,其D极与LED驱动器的对应信号控制接收端连接,其S极接地。
  5. 根据权利要求4所述的控制系统,其特征在于:所述蓝色控制输出端、红色控制输出端和绿色控制输出端与LED驱动器的对应信号控制接收端之间,还设置有一电阻。
  6. 根据权利要求2至5任一项所述的控制系统,其特征在于:所述WIFI芯片与所述天线之间设置有一天线匹配电路,所述天线匹配电路包括电容C4、电感L2及电容C1,所述天线、电容C4、WIFI芯片依次连接,且所述天线串联所述电容C1接地,所述电容C4串联所述电感L2接地。
  7. 根据权利要求1所述的控制系统,其特征在于:所述控制盒还包括降压电路,所述LED驱动器的电源端分别与外部电源和降压电路的输入端IN连接,所述降压电路的输出脚与WIFI模块和红外接收头连接,为WIFI模块和红外接收头供电。
  8. 根据权利要求1所述的控制系统,其特征在于:所述控制盒还包括设置在WIFI模块和红外接收头之间的调节电路,所述调节电路将外部的红外信号转化为可为WIFI 模块识别的脉冲波形信号。
  9. 根据权利要求1或7或8所述的控制系统,其特征在于:所述控制盒还集成有电源处理器,所述电源处理器将市电转化为所述LED灯供电的电压、以及转化为所述控制盒本身电路供电的电压。
  10. 根据权利要求1至3任一所述的控制系统,其特征在于:所述控制盒还包括一FLASH模块,所述FLASH模块与WIFI模块连接。
  11. 根据权利要求1所述的控制系统,其特征在于:所述控制盒包括一壳体,一端与电源连接,一端与所述照明设备的所述LED驱动器连接。
  12. 根据权利要求11所述的控制系统,其特征在于:所述壳体内包括一电路板,所述WIFI模块和所述红外接收头均集成设置在所述电路板上。
  13. 根据权利要求2或3所述的控制系统,其特征在于:所述WIFI芯片的型号为ESP8266EX。
  14. 根据权利要求1所述的控制系统,其特征在于:所述控制系统还包括终端设备,所述终端设备通过所述WIFI模块接入所述网关,并通过所述网关与所述WIFI模块进行信号传输。
  15. 一种照明设备的控制盒,照明设备包括LED驱动器和LED灯,所述LED驱动器控制LED灯工作,其特征在于:所述控制盒包括WIFI模块和红外接收头,外部终端通过网关发送第一控制信号至控制盒的WIFI模块,以及外部红外发射器发送第二控制信号至控制盒的红外接收头;所述WIFI模块分别与红外接收头和LED驱动器连接,所述红外接收头将第二控制信号发送至WIFI模块中,所述WIFI模块根据第一控制信号和第二控制信号并通过LED驱动器控制LED灯工作;
    其中,所述WIFI模块包括一WIFI芯片,所述WIFI芯片的第一信号接收端与天线连接,获取网关的第一控制信号,所述WIFI芯片的第二信号接收端与红外接收头的信号输出端连接,获取红外接收头的第二控制信号;以及
    所述WIFI芯片包括多个控制输出端,所述控制输出端至少包括蓝色控制输出端、红色控制输出端、绿色控制输出端、暖色控制输出端和冷白光控制输出端,所述控制输出端分别与LED驱动器的对应信号控制接收端连接。
PCT/CN2018/084626 2017-12-30 2018-04-26 一种照明设备的控制系统及控制盒 WO2019128009A1 (zh)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000004043A (ja) * 1998-06-12 2000-01-07 Sony Corp 画像情報処理装置
CN102591277A (zh) * 2012-01-31 2012-07-18 得实半导体照明(江门)有限公司 一种智能环境监控系统
CN203136283U (zh) * 2013-03-25 2013-08-14 常州新区爱立德电子有限公司 一种基于图像识别调节led路灯亮度的控制器

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000004043A (ja) * 1998-06-12 2000-01-07 Sony Corp 画像情報処理装置
CN102591277A (zh) * 2012-01-31 2012-07-18 得实半导体照明(江门)有限公司 一种智能环境监控系统
CN203136283U (zh) * 2013-03-25 2013-08-14 常州新区爱立德电子有限公司 一种基于图像识别调节led路灯亮度的控制器

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