WO2022134597A1 - Rgb-ww 同步智能灯 - Google Patents

Rgb-ww 同步智能灯 Download PDF

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Publication number
WO2022134597A1
WO2022134597A1 PCT/CN2021/109998 CN2021109998W WO2022134597A1 WO 2022134597 A1 WO2022134597 A1 WO 2022134597A1 CN 2021109998 W CN2021109998 W CN 2021109998W WO 2022134597 A1 WO2022134597 A1 WO 2022134597A1
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WO
WIPO (PCT)
Prior art keywords
rgb
led
light
controller
light string
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PCT/CN2021/109998
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English (en)
French (fr)
Inventor
陈根海
陈勇
Original Assignee
江苏镭科照明科技有限公司
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Publication of WO2022134597A1 publication Critical patent/WO2022134597A1/zh

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Classifications

    • 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]
    • H05B45/20Controlling the colour of the light
    • 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]
    • H05B45/30Driver circuits
    • 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
    • H05B47/165Controlling the light source following a pre-assigned programmed sequence; Logic control [LC]
    • 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
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission

Definitions

  • the invention relates to the technical field of decorative lighting, in particular to an RGB-WW synchronous intelligent lamp.
  • RGB-WW synchronous smart lights are the main decoration products for Christmas, and also an indispensable decoration product for consumers' festivals, cultural exchanges, cultural activities and night lighting in public places.
  • the control of the light string is rather troublesome, and it is necessary to manually change the program of the control box to change the color of the light string, which is very inconvenient to operate and cannot be flexibly adapted to the change of demand.
  • the structure of the light string is simple, and the light string cannot be used as a function of the light string.
  • the decorative effect of door curtains or tandem sets off the festive atmosphere. Based on this, it is particularly necessary to design a new type of RGB-WW synchronized smart light.
  • the purpose of the present invention is to provide an RGB-WW synchronous intelligent lamp with reasonable structural design, convenient operation, convenient lamp string control, flexible adaptation to changes in demand, and good decoration It has strong practicability and is easy to promote and use.
  • RGB-WW synchronous smart lights including a smart power supply and a plurality of light strings
  • the plurality of light strings are connected to the main line in parallel
  • each light string is composed of a plurality of RGB-WW
  • the WW-LED tetrodes are connected in series by wires, and the wires exposed at the bottom of the RGB-WW-LED tetrodes respectively constitute the positive and negative electrodes of the tetrodes, and the positive electrodes of each RGB-WW-LED tetrode They are respectively connected with the negative poles of adjacent tetrodes, and a plurality of RGB-WW-LED tetrodes are connected in series to form a string; both ends of the main line are respectively provided with product male connectors and product female connectors; the intelligent power supply
  • the power plug, the controller and the controller female connector are connected by wires in sequence.
  • the power plug adopts an IP44 plug.
  • the end of the light string is connected to the controller female connector of the intelligent power supply
  • the light strings are arranged vertically downward, and the light strings are distributed equidistantly along the main line; the length of the light string in the middle of the main line is longer than that on both sides, and the length of the light string on the two sides is the light string in the middle.
  • the center gets shorter in turn.
  • the controller includes a fuse with current protection, a varistor for voltage limiting control, a filter for filtering noise and separating signals, and a filter circuit for blocking high frequency and low frequency pass, and the output ends of the filter circuit are respectively connected to
  • the input end of the MOSFET is connected to the DC transformer.
  • the DC transformer is respectively connected to the drive module and the IRF.
  • the IRF is connected to the WiFi and Bluetooth module, the remote control module and the program module.
  • the remote control module is wirelessly connected to the remote control.
  • the IRF is connected to the drive module through the cooling component
  • the output terminals of the drive module and the DC transformer are both connected to the input terminals of the MOSFET, and the output terminals of the MOSFET are connected to the light string.
  • the outer parts of the product male connector and the product female connector are provided with PE heat-shrinkable sleeves; the connection between the product male connector and the controller female connector is provided with a waterproof rubber ring.
  • the outer diameter of the RGB-WW-LED tetrode is 3mm, 4mm, 5mm or 8mm;
  • the RGB-WW-LED tetrode includes an LED bulb and a PC shell, and the LED bulb passes through epoxy resin
  • the LED bulb is composed of LED chips, adhesive glue, SI glue, phosphor powder, gold wire, LED brackets, and heat sinks.
  • the LED chips are fixed on the LED brackets by the adhesive glue, and the surface of the LED chips is Phosphor powder is arranged through SI glue, the LED chip is connected with gold wire, the two ends of the LED bracket are connected with pins, and the bottom of the LED bracket is provided with a heat sink; the LED chip adopts R red-G green-B blue Color-WW warm white four-core chip.
  • the light string is one of a linear light string, an ice bar light, a curtain light, and a net light.
  • the device is easy to operate, convenient for light string control, and has outstanding functional effects. It can be controlled by an intelligent power supply to achieve the synchronization effect of the smart light strings, and at the same time, the functions of the synchronization effect of the smart light strings can be switched by the remote control. It can flexibly adapt to changes in demand, play a good decorative role, and has broad application prospects.
  • FIG. 1 is a schematic structural diagram of a light string according to the present invention
  • Fig. 2 is the structural representation of the controller of the present invention
  • FIG. 3 is a schematic structural diagram of the present invention applying a linear light string
  • FIG. 4 is a schematic structural diagram of the application of the ice bar light in the present invention.
  • Fig. 5 is the structural schematic diagram of the application of the curtain lamp of the present invention.
  • FIG. 6 is a schematic structural diagram of the present invention applying a net lamp
  • FIG. 7 is a schematic diagram of the internal structure of the RGB-WW-LED tetrode of the present invention
  • FIG. 8 is a schematic diagram of a size of the RGB-WW-LED tetrode of the present invention.
  • Fig. 9 is the synchronization schematic diagram of the present invention under the same line.
  • FIG. 10 is a schematic diagram of the wire bonding package of the RGB-WW-LED tetrode of the present invention.
  • RGB-WW synchronous smart lights including smart power supply and multiple light strings 1
  • the multiple light strings 1 are connected to the main line 2 in parallel
  • each light string 1 consists of multiple lights
  • the RGB-WW-LED tetrodes 3 are connected in series by wires 4 in sequence, and the wires exposed at the bottom of the RGB-WW-LED tetrodes 3 constitute the positive electrodes 5 and the negative electrodes 6 of the tetrodes respectively.
  • the positive poles 5 of the WW-LED tetrodes 3 are respectively connected with the negative poles 6 of the adjacent tetrodes, and a plurality of RGB-WW-LED tetrodes 3 are connected in series in sequence;
  • the product male connector 7 and the product female connector 8; the intelligent power supply is connected by the power plug 9, the controller 10 and the controller female connector 11 in sequence.
  • the power plug 9 adopts an IP44 plug, and the end of the light string 1 passes through
  • the product male connector 7 is connected to the controller female connector 11 of the intelligent power supply, and the controller 10 is connected to a voltage of 24-240V through the power plug 9 .
  • the light strings 1 are arranged vertically downward, and the light strings 1 are distributed equidistantly along the main line 2; the length of the light strings 1 in the middle of the main line 2 is longer than that on both sides, and the The length is shortened sequentially with the light string in the middle as the center.
  • the RGB-WW-LED tetrode 3 includes an LED bulb and a PC shell, the LED bulb is encapsulated in the PC shell by epoxy resin, and the LED bulb is composed of the LED chip 3-1, glued Glue 3-2, SI glue 3-3, phosphor 3-4, gold wire 3-5, LED bracket 3-6, heat sink 3-7, LED chip 3-1 is fixed on the On the LED bracket 3-6, the surface of the LED chip 3-1 is provided with phosphors 3-4 through the SI glue 3-3, and the LED chip 3-1 is connected with the gold wire 3-5. The ends are connected with pins 3-8, and the bottom of the LED bracket 3-6 is provided with a heat sink 3-7; the LED chip 3-1 adopts a four-core chip of R red-G green-B blue-WW warm white.
  • the outer parts of the product male connector 7 and the product female connector 8 are provided with PE heat shrinkable sleeves; the connection between the product male connector 7 and the controller female connector 11 is provided with a waterproof rubber ring 13 .
  • the outer diameter of the RGB-WW-LED tetrode 3 in this specific embodiment is 3mm, 4mm, 5mm or 8mm;
  • FIG. 8 is a schematic structural diagram of the 5mm size of the RGB-WW tetrode bulb, the outer diameter of the bottom of the LED colloid is a is 5mm, the outer diameter b of the top of the LED gel is 4.8mm, the length c is 7.9mm, the thickness d of the bracket is 0.5mm, the length e is 15.4mm and 16.96mm, the length difference f is 1.56mm, the distance between the brackets g is 2.54mm.
  • RGB-WW-LED tetrode 3 is a four-pin lamp bead with control IC and LED chip packaging technology (Figure 10).
  • the lamp bead is sealed with R red-G green-B blue-WW warm white
  • the four-core chip, the control IC can control different flashing modes of the LED chip after receiving the command.
  • the synchronization diagram of synchronous smart lights under the same circuit is shown in Figure 9. Under the same power-on circuit, power is supplied at the same time. No matter how long the product runs, the synchronization effect is maintained, and the number of connected products is not limited.
  • the connection method of the intelligent power supply in this specific embodiment the power plug 9 is connected to the 24-240V power supply, and the input terminal of the control box is input with 24-240V, and the transformer of the controller 10 is energized to convert AC into DC, and filter through the circuit board circuit.
  • the programmer writes programs through the program module to program the function of the program chip, and the controller includes components such as WiFi and Bluetooth receiving and sending chips, heat sinks and so on. And then through the circuit board circuit to the controller output, to the power supply female connector.
  • the controller 10 includes a fuse 10-1 with current protection, a varistor 10-2 with voltage limiting control, a filter 10-3 and a filter circuit 10-4.
  • the function of the fuse 10-1 is: when the circuit fails or In the event of an abnormality, with the continuous increase of the current, and the increased current may damage some important components or valuable components in the circuit, burn the circuit or even cause a fire, the fuse will fuse and cut off when the current abnormally rises to a certain height.
  • One end of the power plug 9 is connected to the power supply, the 24-240V voltage is applied to the input end of the controller, and the other end of the power plug 9 is connected to the filter 10 which filters out noise and signals in turn.
  • the output end of the filter circuit 10-4 is respectively connected to the input end of the MOSFET 10-5 and the DC transformer 10-6, and the DC transformer 10-6 is respectively connected to the driving module 10- 7 is connected to the IRF10-8, the DC transformer 10-6 outputs the DC power after changing the voltage to the drive module 10-7 and the IRF10-8, the IRF10-8 is connected to the WiFi and Bluetooth module 10-9, the remote control module 10-10 and the program module 10-11 Connection, WiFi and Bluetooth module 10-9, remote control module 10-10 and program module 10-11 are all provided with switches, remote control module 10-10 and remote control 12 are wirelessly connected, and the program module 10-11 input control After the intelligent lamp synchronization command is processed by the IRF10-8, the output signal is input to the input end of the drive module 10-7 through the heat dissipation component 10-12, and the output end of the drive module 10-7 is connected to the DC transformer 10-6.
  • the output terminals are all connected to the input terminal of the MOSFET 10
  • the specific connection method is as follows: from the end of the fuse 10-1 through the circuit board circuit to the varistor 10-2, the varistor is used as a voltage-limiting protection device. Between the two poles, the varistor 10-2 can clamp the voltage to a relatively fixed voltage value, thereby realizing the protection of the subsequent circuit.
  • the filter is a circuit or arithmetic processing system with a frequency selection function, and has the function of filtering noise and separating various different signals.
  • the 10-3 terminal reaches the filter circuit 10-4 through the circuit board circuit.
  • the filter circuit 10-4 allows a certain frequency current to pass or prevents a certain frequency current from passing through.
  • the basic filter circuit includes high-pass, low-pass, band-pass and band-stop high-pass. Type, let the high frequency pass block the low frequency low pass, and the opposite band pass of the high pass, let the specified frequency current pass its blocking band stop, and prevent the specified frequency current from passing its frequency pass.
  • the input DC power is converted into AC power through the self-excited oscillation circuit, and then the voltage is changed through the DC transformer 10-6 and then converted into DC power output, or through the double The voltage rectifier circuit converts the alternating current into high voltage direct current output.
  • the WiFi and Bluetooth module 10-9 remote control module 10-10 and program module 10-11, WiFi And the Bluetooth module 10-9 is a PCBA board integrating WiFi and Bluetooth functions, which is used for short-distance wireless communication.
  • the WiFi and Bluetooth module 10-9 is controlled by a wireless terminal, and is divided into a data module and a voice module according to functions.
  • This module is mainly used in the field of short-distance wireless data transmission. It can be easily connected to Bluetooth or WIFI devices of PC, mobile phone and tablet, avoiding cumbersome cable connection, and can directly replace serial cable;
  • the function of remote control module 10-10 plays a Control and function conversion and transmission;
  • the program module 10-11 writes and changes the component of the function program file of the product, closes the switch of one of the WiFi and Bluetooth module 10-9, the remote control module 10-10 and the program module 10-11, forming a loop , change the color change of the light string.
  • the circuit board circuit is energized to reach the IRF10-8, and the output end of the IRF10-8 reaches the heat dissipation component 10-12 through the circuit board circuit,
  • the heat dissipation component 10-12 is a temperature protection component, which reaches the input end of the drive module 10-7 from the output end of the DC transformer 10-6 and the heat sink assembly 10-12, and the drive module 10-7 is used to simulate the upper-level module of the tested module , which is equivalent to the main program of the tested module; the circuit board circuit is energized from the output end of the drive module 10-7 to reach the MOSFET10-5, and finally reaches the load from the MOSFET output end.
  • the light string can be a linear light string (FIG. 3), an ice bar light (FIG. 4), a curtain light (FIG. 5), a net light (FIG. 6) or other shapes, which play a good decorative role and function
  • the effect is outstanding and the operation is simple. It can be controlled by the intelligent power supply to achieve the synchronization effect of the smart light string.
  • the function of the synchronization effect of the smart light string can be switched through the remote control to adapt to the change of demand, and has a broad market application prospect.
  • Example 1 RGB-WW synchronous smart lamp, every 50 bulbs is a loop, there are two loops in total, and the button functions in the remote control from top to bottom are: ON to open, JUMP one-on-one-off cycle function, OF closes, FADE fading light and dark button, FLASH WHITE always on + flashing (strobe), CHASE full flash and strobe, STEADY always on, FADE one on and one off monochrome function, FLASH WHITE white flash, FLASH OUT red + flash (strobe flash), CHASE full flash flash, WAVE flash, Red red, green green, blue blue, warm white warm white, pink pink, light blue light green, White white, four colors, auto loop key.
  • One-on-one-off function Press the button function (red, green, blue, warm white, pink, light green, four colors) on and off, and after flashing for 15 seconds, change to another color.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

本发明公开了一种RGB-WW同步智能灯,它涉及装饰照明技术领域。多个灯串并联到主线上,每个灯串由多个RGB-WW-LED四极管依次通过导线串连而成,主线的两端分别设置产品公接头与产品母接头;智能电源由电源插头、控制器和控制器母接头依次电线连接,所述的电源插头采用IP44插头,灯串的端部通过产品公接头与智能电源的控制器母接头连接,控制器通过电源插头接入到24-240V电压。本发明操作简便,便于灯串控制,功能效果突出,通过智能电源控制,达到智能灯串同步效果,同时也可以通过遥控器对智能灯串进行同步效果的功能切换,灵活地适应需求的变化,起到很好的装饰作用,应用前景广阔。

Description

RGB-WW同步智能灯 技术领域
本发明涉及的是装饰照明技术领域,具体涉及RGB-WW同步智能灯。
背景技术
RGB-WW同步智能灯是圣诞节的主要装饰产品,也是广大消费者节日、文化交流、文化活动和公共场所夜景亮化的不可缺少的装饰产品。
技术问题
但是,目前灯串控制比较麻烦,需要人为改变控制盒的程序改变灯串颜色的变化,操作十分不便,不能灵活地适应需求的变化,另外,灯串的结构简单,不能通过灯串起到充当门帘或串联的装饰作用,烘托节日气氛。基于此,设计一种新型的RGB-WW同步智能灯尤为必要。
技术解决方案
针对现有技术上存在的不足,本发明目的是在于提供一种RGB-WW同步智能灯,结构设计合理,操作方便,便于灯串控制,能灵活地适应需求的变化,起到很好的装饰作用,实用性强,易于推广使用。
为了实现上述目的,本发明是通过如下的技术方案来实现:RGB-WW同步智能灯,包括智能电源和多个灯串,多个灯串并联到主线上,每个灯串由多个RGB-WW-LED四极管依次通过导线串连而成,所述的RGB-WW-LED四极管底部露出的电线分别构成四极管的正极和负极,各个RGB-WW-LED四极管的正极分别与相邻四极管的负极相连接,将多个RGB-WW-LED四极管依次串联成一串;所述的主线的两端分别设置产品公接头与产品母接头;所述的智能电源由电源插头、控制器和控制器母接头依次电线连接,所述的电源插头采用IP44插头,灯串的端部通过产品公接头与智能电源的控制器母接头连接,控制器通过电源插头接入到24-240V电压。
作为优选,所述的灯串竖直向下设置,灯串沿主线等距离分布;所述的主线中部的灯串的长度长于两侧,两侧的灯串的长度以该中部的灯串为中心依次变短。
作为优选,所述的控制器包括有电流保护的保险丝、限压控制的压敏电阻、滤除噪音和分离信号的滤波器以及高频阻低频通的滤波电路,滤波电路的输出端分别连接到MOSFE的输入端和DC变压器,DC变压器分别与驱动模块和IRF连接,IRF与WiFi及蓝牙模块、遥控模块及程序模块连接,遥控模块与遥控器无线连接,所述的IRF通过散热组件与驱动模块连,驱动模块和DC变压器的输出端均连接到MOSFET的输入端,MOSFET的输出端连接至灯串。
作为优选,所述的产品公接头与产品母接头的外部均设置有PE热缩套管;所述的产品公接头与控制器母接头的连接处设置有防水胶圈。
作为优选,所述的RGB-WW-LED四极管的外径为3mm、4mm、5mm或8mm;所述的RGB-WW-LED四极管包括有LED灯泡和PC壳,LED灯泡通过环氧树脂封装PC壳内,所述的LED灯泡由LED芯片、粘接胶、SI胶、荧光粉、金丝、LED支架、热沉组成,LED芯片通过粘接胶固定在LED支架上,LED芯片表面通过SI胶设置有荧光粉,LED芯片与金丝连接,所述的LED支架的两端连接有引脚,LED支架底部设置有热沉;所述的LED芯片采用R红色-G绿色-B蓝色-WW暖白的四芯芯片。
作为优选,所述的灯串采用直线灯串、冰条灯、窗帘灯、网灯中的一种。
有益效果
本发明的有益效果:本装置操作简便,便于灯串控制,功能效果突出,可以通过智能电源控制,达到智能灯串同步效果,同时也可以通过遥控器对智能灯串进行同步效果的功能切换,能灵活地适应需求的变化,起到很好的装饰作用,应用前景广阔。
附图说明
下面结合附图和具体实施方式来详细说明本发明;
图1为本发明灯串的结构示意图;
图2为本发明控制器的结构示意图;
图3为本发明应用直线灯串的结构示意图;
图4为本发明应用冰条灯的结构示意图;
图5为本发明应用窗帘灯的结构示意图;
图6为本发明应用网灯的结构示意图;
图7为本发明RGB-WW-LED四极管的内部结构示意图
图8为本发明RGB-WW-LED四极管的一种尺寸示意图;
图9为本发明在同一线路下的同步示意图;
图10为本发明RGB-WW-LED四极管的打线封装示意图。
本发明的实施方式
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
参照图1-10,本具体实施方式采用以下技术方案:RGB-WW同步智能灯,包括智能电源和多个灯串1,多个灯串1并联到主线2上,每个灯串1由多个RGB-WW-LED四极管3依次通过导线4串连而成,所述的RGB-WW-LED四极管3底部露出的电线分别构成四极管的正极5和负极6,各个RGB-WW-LED四极管3的正极5分别与相邻四极管的负极6相连接,将多个RGB-WW-LED四极管3依次串联成一串;所述的主线2的两端分别设置产品公接头7与产品母接头8;所述的智能电源由电源插头9、控制器10和控制器母接头11依次电线连接,所述的电源插头9采用IP44插头,灯串1的端部通过产品公接头7与智能电源的控制器母接头11连接,控制器10通过电源插头9接入到24-240V电压。
值得注意的是,所述的灯串1竖直向下设置,灯串1沿主线2等距离分布;所述的主线2中部的灯串1的长度长于两侧,两侧的灯串1的长度以该中部的灯串为中心依次变短。
值得注意的是,所述的RGB-WW-LED四极管3包括有LED灯泡和PC壳,LED灯泡通过环氧树脂封装PC壳内,所述的LED灯泡由LED芯片3-1、粘接胶3-2、SI胶3-3、荧光粉3-4、金丝3-5、LED支架3-6、热沉3-7组成,LED芯片3-1通过粘接胶3-2固定在LED支架3-6上,LED芯片3-1表面通过SI胶3-3设置有荧光粉3-4,LED芯片3-1与金丝3-5连接,所述的LED支架3-6的两端连接有引脚3-8,LED支架3-6底部设置有热沉3-7;所述的LED芯片3-1采用R红色-G绿色-B蓝色-WW暖白的四芯芯片。
此外,所述的产品公接头7与产品母接头8的外部均设置有PE热缩套管;所述的产品公接头7与控制器母接头11的连接处设置有防水胶圈13。
本具体实施方式RGB-WW-LED四极管3的外径为3mm、4mm、5mm或8mm;如图8为RGB-WW四极管灯泡的5mm尺寸的结构示意图,其LED胶体底部的外径a为5mm,LED胶体顶部的外径b为4.8mm、长度c为7.9mm,支架的厚度d为0.5mm,长度e为15.4mm和16.96mm,长度相差f为1.56mm,支架之间的距离g为2.54mm。
RGB-WW-LED四极管3为采用控制IC和LED芯片合封技术的四个引脚的灯珠(图10),灯珠内封有R红色-G绿色-B蓝色-WW暖白的四芯芯片,控制IC接收指令后可控制LED芯片不同的闪烁方式。同步智能灯在同一线路下的同步示意图如图9,在同一通电线路下,同时供电,不管运行多长时间产品保持同步效果,连接产品数量不限。
本具体实施方式智能电源的连接方式:电源插头9接入24-240V电源,到控制盒输入端输入24-240V,通电控制器10的变压器将AC转换成DC,经过线路板电路进行滤波,程序员通过程序模块编写程序对程序芯片进行功能编程,控制器包含WiFi及蓝牙接收发送芯片、散热片等组件。然后经过线路板电路到达控制器输出端,到电源母接头。该控制器10包括有电流保护的保险丝10-1、限压控制的压敏电阻10-2、滤波器10-3以及滤波电路10-4,保险丝10-1的作用是:当电路发生故障或异常时,伴随着电流不断升高,并且升高的电流有可能损坏电路中的某些重要器件或贵重器件、烧毁电路甚至造成火灾,保险丝会在电流异常升高到一定的高度,自身熔断切断电流,从而起到保护电路安全运行的作用;电源插头9的一端接入到电源,24-240V电压到控制器输入端,电源插头9的另一端依次连接滤除噪音和离信号的滤波器10-3以及高频阻低频通的滤波电路10-4,滤波电路10-4的输出端分别连接到MOSFET10-5的输入端和DC变压器10-6,DC变压器10-6分别与驱动模块10-7和IRF10-8连接,DC变压器10-6将改变电压之后的直流电输出到驱动模块10-7和IRF10-8,IRF10-8与WiFi及蓝牙模块10-9、遥控模块10-10及程序模块10-11连接,WiFi及蓝牙模块10-9、遥控模块10-10及程序模块10-11均设置有开关,遥控模块10-10与遥控器12无线连接,该程序模块10-11输入的控制智能灯同步指令,经过IRF10-8处理后,将输出信号经过散热组件10-12输入到驱动模块10-7的输入端,该驱动模块10-7的输出端和所述DC变压器10-6的输出端均连接到MOSFET10-5的输入端,MOSFET10-5的输出端连接主线2的端部。
具体的连接方式为:从保险丝10-1端通过线路板电路到达压敏电阻10-2,该压敏电阻作为限压型保护器件,利用其非线性特性,当过电压出现在压敏电阻的两极间,压敏电阻10-2可以将电压钳位到一个相对固定的电压值,从而实现对后级电路的保护。从压敏电阻10-2端通过线路板电路到达滤波器10-3,该滤波器是具有频率选择作用的电路或运算处理系统,具有滤除噪声和分离各种不同信号的功能,从滤波器10-3端通过线路板电路到达滤波电路10-4,滤波电路10-4让某种频率电流通或阻止某种频率电流通,基本滤波电路有高通、低通、带通、带阻高通四种,让高频率通阻止低频率低通、与高通相反带通、让指定频率电流通其阻止带阻、阻止指定频率电流通其频率通。
从滤波电路10-4端通过线路板电路到DC变压器10-6,通过自激振荡电路把输入的直流电转变为交流电,再通过DC变压器10-6改变电压之后再转换为直流电输出,或者通过倍压整流电路将交流电转换为高压直流电输出。从DC变压器10-6端通过线路板电路到IRF10-8,同时从DC变压器10-6端通过线路板电路到WiFi及蓝牙模块10-9、遥控模块10-10及程序模块10-11,WiFi及蓝牙模块10-9为集成WiFi和蓝牙功能的PCBA板,用于短距离无线通讯,WiFi及蓝牙模块10-9通过无线终端控制,按功能分为数据模块和语音模块。该模块主要用于短距离无线数据传输领域,可方便地和PC、手机、平板的蓝牙或者WIFI设备相连,避免繁琐的线缆连接,能直接替代串口线;遥控模块10-10的作用起到控制和功能转换传输;程序模块10-11对产品的功能程序文件的编写更改组件,关闭WiFi及蓝牙模块10-9、遥控模块10-10和程序模块10-11其中的一个的开关,构成回路,改变灯串颜色的变化。
从WiFi及蓝牙模块10-9、遥控模块10-10及程序模块10-11的输出端通电线路板电路到达IRF10-8,从IRF10-8的输出端通过线路板电路到达散热组件10-12,散热组件10-12为温度保护组件,从DC变压器10-6和散热组件10-12输出端到达驱动模块10-7的输入端,驱动模块10-7用来模拟被测试模块的上一级模块,相当于被测模块的主程序;从驱动模块10-7输出端通电线路板电路到达MOSFET10-5,最后从MOSFET输出端到达负载。
本具体实施方式灯串可采用直线灯串(图3)、冰条灯(图4)、窗帘灯(图5)、网灯(图6)或其它形状,起到很好的装饰作用,功能效果突出,操作简便,可以通过智能电源控制,达到智能灯串同步效果,同时也可以通过遥控器对智能灯串进行同步效果的功能切换,适应需求的变化,具有广阔的市场应用前景。
实施例1:RGB-WW同步智能灯,每50灯泡为一回路,共两个回路,其中遥控器中的按键功能由上至下依次为:ON开启,JUMP一亮一灭循环功能,OF关闭,FADE渐明渐暗按键,FLASH WHITE常亮+闪(爆闪),CHASE全闪爆闪,STEADY常亮功能,FADE一亮一灭单色功能,FLASH WHITE白闪,FLASH OUT红+闪(爆闪),CHASE全闪爆闪,WAVE闪动,Red红色,green绿色,blue蓝色,warm white暖白,pink粉色,light blue浅绿色,White白色,four colors四彩,auto循环键。
RGB-WW同步智能灯效果为:(1)开关功能:开关功能对控制器进行开启和关闭作用。
(2)常亮功能:按键功能按到红色、绿色、蓝色,暖白、粉色、浅绿色,RGB-WW同步智能灯串呈现对应的常亮颜色。
 (3)常亮加闪功能:按键功能按到红色+白闪、绿色+白闪、蓝色+白闪,暖白+白闪、粉色+白闪、浅绿色+白闪时,RGB-WW同步智能灯串呈现对应的常亮加闪颜色。
(4)全闪功能:按键功能按到红色全闪、绿色全闪、蓝色全闪,暖白全闪、粉色全闪、浅绿色全闪时,RGB-WW同步智能灯串呈现对应的全闪颜色。
(5)渐明渐暗功能:按键功能按到(红色、绿色、蓝色,暖白、粉色、浅绿色、四彩)渐明渐暗时,每个颜色渐明渐暗两次后,换下一种颜色。
(6)一亮一灭功能:按键功能按到(红色、绿色、蓝色,暖白、粉色、浅绿色、四彩)一亮一灭,闪烁15秒后,换下一种颜色。
(7)自动循环功能:按键功能按到自动变色功能键时,RGB-WW同步智能灯串呈现以下功能效果。
(红色、绿色、蓝色,暖白、粉色、浅绿色)常亮颜色,每15秒换一种颜色;
(红色+白闪、绿色+白闪、蓝色+白闪,暖白+白闪、粉色+白闪、浅绿色+白闪时),每15秒换一种颜色;
(红色、绿色、蓝色,暖白、粉色、浅绿色、四彩)渐明渐暗,渐明渐暗的过程时长8秒每个颜色渐明渐暗两次后,换下一种颜色;
(红色、绿色、蓝色,暖白、粉色、浅绿色、四彩)一亮一灭,闪烁15秒后,换下一种颜色。
(8)以上功能分可遥控和不可遥控两种。本功能可以通过电脑程序,对产品功能进行任意编程修改。在同一通电线路下,同时供电不管多长时间都同步。
以上显示和描述了本发明的基本原理和主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (10)

  1. RGB-WW同步智能灯,其特征在于,包括智能电源和多个灯串(1),多个灯串(1)并联到主线(2)上,每个灯串(1)由多个RGB-WW-LED四极管(3)依次通过导线(4)串连而成,所述的RGB-WW-LED四极管(3)底部露出的电线分别构成四极管的正极(5)和负极(6),各个RGB-WW-LED四极管(3)的正极(5)分别与相邻四极管的负极(6)相连接,将多个RGB-WW-LED四极管(3)依次串联成一串;所述的主线(2)的两端分别设置产品公接头(7)与产品母接头(8);所述的智能电源由电源插头(9)、控制器(10)和控制器母接头(11)依次电线连接,灯串(1)的端部通过产品公接头(7)与智能电源的控制器母接头(11)连接,控制器(10)通过电源插头(9)接入到24-240V电压。
  2. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的灯串(1)竖直向下设置,灯串(1)沿主线(2)等距离分布。
  3. 根据权利要求2所述的RGB-WW同步智能灯,其特征在于,所述的主线(2)中部的灯串(1)的长度长于两侧,两侧的灯串(1)的长度以该中部的灯串为中心依次变短。
  4. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的控制器(10)包括有电流保护的保险丝(10-1)、限压控制的压敏电阻(10-2)、滤除噪音和分离信号的滤波器(10-3)以及高频阻低频通的滤波电路(10-4),滤波电路(10-4)的输出端分别连接到MOSFET(10-5)的输入端和DC变压器(10-6),DC变压器(10-6)分别与驱动模块(10-7)和IRF(10-8)连接,IRF(10-8)与WiFi及蓝牙模块(10-9)、遥控模块(10-10)及程序模块(10-11)连接,WiFi及蓝牙模块(10-9)、遥控模块(10-10)及程序模块(10-11)均设置有开关,关闭WiFi及蓝牙模块(10-9)、遥控模块(10-10)和程序模块(10-11其)中的一个的开关,构成回路,改变灯串颜色的变化;所述的遥控模块(10-10)与遥控器(12)无线连接,所述的IRF(10-8)通过散热组件(10-12)与驱动模块(10-7)连接,驱动模块(10-7)和DC变压器(10-6)的输出端均连接到MOSFET(10-5)的输入端,MOSFET(10-5)的输出端连接至灯串。
  5. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的产品公接头(7)与产品母接头(8)的外部均设置有PE热缩套管。
  6. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的产品公接头(7)与控制器母接头(11)的连接处设置有防水胶圈(13)。
  7. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的RGB-WW-LED四极管(3)包括有LED灯泡和PC壳,LED灯泡通过环氧树脂封装PC壳内,所述的LED灯泡由LED芯片(3-1)、粘接胶(3-2)、SI胶(3-3)、荧光粉(3-4)、金丝(3-5)、LED支架(3-6)、热沉(3-7)组成LED芯片(3-1)通过粘接胶(3-2)固定在LED支架(3-6)上,LED芯片(3-1)表面通过SI胶(3-3)设置有荧光粉(3-4),LED芯片(3-1)与金丝(3-5)连接,所述的LED支架(3-6)的两端连接有引脚(3-8),LED支架(3-6)底部设置有热沉(3-7);所述的LED芯片(3-1)采用R红色-G绿色-B蓝色-WW暖白的四芯芯片。
  8. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的RGB-WW-LED四极管(3)的外径为3mm、4mm、5mm、8mm中的一种。
  9. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的灯串(1)为直线灯串、冰条灯、窗帘灯、网灯中的一种。
  10. 根据权利要求1所述的RGB-WW同步智能灯,其特征在于,所述的电源插头(9)采用IP44插头。
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