WO2022134585A1 - Rgb-ww 同步智能美耐灯 - Google Patents

Rgb-ww 同步智能美耐灯 Download PDF

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Publication number
WO2022134585A1
WO2022134585A1 PCT/CN2021/109511 CN2021109511W WO2022134585A1 WO 2022134585 A1 WO2022134585 A1 WO 2022134585A1 CN 2021109511 W CN2021109511 W CN 2021109511W WO 2022134585 A1 WO2022134585 A1 WO 2022134585A1
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WIPO (PCT)
Prior art keywords
rgb
tetrode
bulb
wire
lamp
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PCT/CN2021/109511
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English (en)
French (fr)
Inventor
陈根海
陈勇
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江苏镭科照明科技有限公司
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Application filed by 江苏镭科照明科技有限公司 filed Critical 江苏镭科照明科技有限公司
Priority to DE212021000143.2U priority Critical patent/DE212021000143U1/de
Publication of WO2022134585A1 publication Critical patent/WO2022134585A1/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]
    • H05B45/30Driver 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
    • 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
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the invention relates to the technical field of decorative lighting, in particular to an RGB-WW synchronous intelligent meena lamp.
  • RGB-WW synchronous smart meinai lamp is the main decoration product for Christmas, and it is also an indispensable decoration product for consumers' festivals, cultural exchanges, cultural activities, and night scene lighting in public places.
  • the light strings in the existing RGB-WW synchronous smart lights on the market can realize various functions such as full-color color and single color, and cannot maintain the synchronization of colors at the same time. Moreover, there is no synchronous remote control in different rooms or the use of electronic devices. Terminal control, inconvenient to operate. Based on this, it is particularly necessary to design a new type of RGB-WW synchronous smart light.
  • the purpose of the present invention is to provide a RGB-WW synchronous smart light bulb, which has a simple structure and a reasonable design.
  • the synchronization effect of the smart light bulb can be achieved, and the remote control can be used to control the smart light.
  • the function switching of the synchronous effect of the Minai lamp is very practical and easy to promote and use.
  • RGB-WW synchronous smart light bulbs including an intelligent power supply and a plurality of light bulb strings, all of the light bulb strings are connected in parallel to the RGB-
  • the main line positive and negative poles of the main line of the WW synchronous smart light bulbs form a light string loop of the light bulbs.
  • Voltage drop resistance each light string is formed by a plurality of RGB-WW tetrode bulbs in series in sequence, and the wires exposed at the bottom of the RGB-WW tetrode bulbs respectively constitute the wires of the RGB-WW tetrode.
  • the positive pole and the negative pole of the wire, the positive pole of each RGB-WW tetrode bulb is respectively connected with the negative pole of the adjacent RGB-WW tetrode bulb, and a plurality of RGB-WW tetrode bulbs are connected in series in sequence into a string, and the positive pole of the lead A voltage drop resistor is connected with the negative pole of the wire, and two brackets are arranged at the bottom of the RGB-WW tetrode bulb.
  • the brackets are respectively connected to the wires by welding, and the wires are copper wires;
  • the intelligent power supply is IP44
  • the plug, the controller and the female terminal of the power cord are connected in sequence, and the end of the light string is connected to the controller through the female terminal of the power cord, and the controller is connected to the 24-240V voltage through the IP44 plug.
  • 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, and the DC transformer is respectively connected with the drive module and the IRF.
  • the DC transformer outputs the DC power after changing the voltage 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 connected to the The remote control is wirelessly connected, the IRF is connected to the drive module through the heat dissipation component, the output end of the drive module and the DC transformer are both connected to the input end of the MOSFET, and the output end of the MOSFET is connected to the Meina lamp string.
  • the surface of the Meina light string is wrapped with an outer skin, and the tail of the outer skin is provided with a tail plug.
  • the RGB-WW tetrode bulb is a four-pin lamp bead that adopts the control IC and LED chip sealing technology, and the lamp bead is sealed with R red-G green-B blue-WW warm white
  • the RGB-WW tetrode bulb is composed of LED chip, adhesive glue, SI glue, phosphor powder, gold wire, LED bracket and heat sink, and the LED chip is fixed on the LED bracket by the adhesive glue
  • the surface of the LED chip is provided with phosphor powder through SI glue, the LED chip is connected with the 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 voltage at both ends of the RGB-WW tetrode bulb is 3.0-3.2V; the outer diameter of the RGB-WW tetrode bulb is one of 3mm, 4mm, and 5mm.
  • the main wires connected to the Meinai light string are made of plastic and copper wires through compression molding by an extruder.
  • the light string in the RGB-WW synchronous smart light bulb of the device realizes various changing functions such as full-color color, single color, etc., while maintaining the synchronization of colors, easy to operate, and convenient for synchronous remote control in different rooms Or use electronic terminal control, which has strong practicability and broad application prospects.
  • Fig. 1 is the structural representation of the present invention
  • Fig. 3 is the connection schematic diagram of RGB-WW tetrode bulb of the present invention.
  • Fig. 4 is the circuit block diagram of the controller of the present invention.
  • FIG. 5 is a schematic diagram of the internal structure of the RGB-WW tetrode bulb of the present invention.
  • Fig. 6 is a dimension schematic diagram of the RGB-WW tetrode bulb of the present invention.
  • Fig. 7 is the synchronization schematic diagram of the present invention's synchronous intelligent meinai lamp under the same circuit
  • FIG. 8 is a schematic diagram of the wire bonding package of the RGB-WW tetrode bulb of the present invention.
  • RGB-WW synchronous intelligent mei-nai lamps including a smart power supply and a plurality of mei-nai lamp strings, all the mei-nai lamp strings are connected in parallel to the RGB-WW
  • the main line positive pole 13 and main line negative pole 14 of the main line of the synchronous smart light bulbs form the light string loop of the light bulbs. 4.
  • each mei-nai lamp string is formed by a plurality of RGB-WW tetrode bulbs 1 in series in sequence, and the wires exposed at the bottom of the RGB-WW tetrode bulbs 1 are respectively
  • the wire positive electrode 4 and the wire negative electrode 5 of the RGB-WW tetrode are formed, and the wire positive electrode 4 of each RGB-WW tetrode bulb 1 is respectively connected with the wire negative electrode 5 of the adjacent RGB-WW tetrode bulb, and a plurality of The RGB-WW tetrode bulbs 1 are connected in series to form a string, and a voltage drop resistor 6 is connected between the positive electrode 4 of the wire and the negative electrode 5 of the wire.
  • the bottom of the RGB-WW tetrode bulb 1 is provided with two brackets 2, and the brackets 2 pass through The way of welding is connected with the electric wire 3, and the electric wire 3 is copper wire; the intelligent power supply is connected by the IP44 plug 7, the controller 8 and the power cord female terminal 9 in turn, and the end of the Meina lamp string is connected by the power cord.
  • the female terminal 9 is connected to the controller 8, and the controller 8 is connected to the voltage of 24-240V through the IP44 plug 7.
  • the surface of the plurality of parallel MINA lamp strings is wrapped with an outer skin 10, the tail of the outer cover 10 is provided with a tail plug 11, and the power cable female terminal 9 is connected to the multiple parallel MINA lamp light strings. form the entire luminaire structure.
  • the main wires connected to the Meina light string are made of plastic and copper wires through compression molding by an extruder.
  • IP44 plug 7 is connected to 24-240V power supply, input 24-240V to the input end of the control box, and the transformer of the controller 8 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 8 includes a fuse 8-1 with current protection, a varistor 8-2 with voltage limiting control, a filter 8-3 and a filter circuit 8-4.
  • the function of the fuse 8-1 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 IP44 plug 7 is connected to the power supply, the 24-240V voltage is connected to the input end of the controller, and the other end of the IP44 plug 7 is connected to the filter 8 that filters out noise and separates signals in turn.
  • the output end of the filter circuit 8-4 is respectively connected to the input end of the MOSFET 8-5 and the DC transformer 8-6, and the DC transformer 8-6 is respectively connected to the driving module 8- 7 is connected with IRF8-8, DC transformer 8-6 will output the DC power after changing the voltage to drive module 8-7 and IRF8-8, IRF8-8 is connected with WiFi and Bluetooth module 8-9, remote control module 8-10 and program module 8-11 is connected, the remote control module 8-10 is wirelessly connected with the remote control 12, the program module 8-11 inputs the synchronizing command to control the lamp, after processing by IRF8-8, the output signal is input to the radiator component 8-12.
  • the input end of the drive module 8-7, the output end of the drive module 8-7 and the output end of the DC transformer 8-6 are connected to the input end of the MOSFET 8-5, and then transferred to the load at the end of the main line, namely Minor String Lights.
  • the specific connection method is: from the end of fuse 8-1 to the varistor 8-2 through the circuit board circuit. Between the two poles, the varistor 8-2 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 8-3 terminal reaches the filter circuit 8-4 through the circuit board circuit.
  • the filter circuit 8-4 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 8-6 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.
  • IRF8-8 From the DC transformer 8-6 end through the circuit board circuit to IRF8-8, and from the DC transformer 8-6 end through the circuit board circuit to the WiFi and Bluetooth module 8-9, remote control module 8-10 and program module 8-11, WiFi And Bluetooth modules 8-9 are PCBA boards integrating WiFi and Bluetooth functions, which are used for short-distance wireless communication, and are divided into data modules and voice modules according to their 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 functions of remote control module 8-10 play a role in Control and function conversion transmission; program modules 8-11 write and change components of the product's function program files.
  • the circuit board circuit is energized to reach IRF8-8, and from the output end of IRF8-8 through the circuit board circuit to heat dissipation component 8-12,
  • the heat dissipation component 8-12 is a temperature protection component, from the output end of the DC transformer 8-6 and the heat dissipation component 8-12 to the input end of the drive module 8-7, the drive module 8-7 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 8-7 to MOSFET8-5, and finally reaches the load from the MOSFET output end.
  • RGB-WW tetrode bulb 1 is a four-pin lamp bead that adopts the control IC and LED chip sealing technology.
  • the lamp bead is sealed with R red-G green-B blue-WW warm white
  • a four-core chip, such as the lamp bead of the RGB-WW tetrode bulb 1 in Figure 8, has two kinds of LED chips, white and warm white, and the control IC can control different flashing modes of the LED chips after receiving the command.
  • RGB-WW tetrode bulb 1 consists of LED chip 1-1, adhesive 1-2, SI glue 1-3, phosphor 1-4, gold wire 1-5, LED bracket 1-6, heat sink 1- 7 components (Fig. 5), LED chip 1-1 is fixed on LED bracket 1-6 by adhesive 1-2, phosphor 1-4 is provided on the surface of LED chip 1-1 through SI glue 1-3, LED chip 1-1 is connected with the gold wire 1-5, the two ends of the LED bracket 1-6 are connected with pins 1-8, and the bottom of the LED bracket 1-6 is provided with a heat sink 1-7.
  • the voltage at both ends of the RGB-WW tetrode bulb 1 is 3.0-3.2V
  • the outer diameter of the RGB-WW tetrode bulb 1 is 3mm, 4mm or 5mm
  • Figure 6 is a size of the RGB-WW tetrode bulb
  • the schematic diagram shows that the outer diameter a of the bottom of the LED colloid is 5mm, the outer diameter b of the top of the LED colloid 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, and the difference in length is f is 1.56mm, and the distance g between the brackets is 2.54mm.
  • Fig. 7 is a schematic diagram of the synchronization of the synchronous smart light under the same circuit. Under the same power-on line, power is supplied at the same time. No matter how long the product runs for a long time, the synchronization effect is maintained, and the number of connected products varies.
  • the light string in the RGB-WW synchronous smart lamp is controlled by inputting instructions from the program module, realizing multiple changing functions such as full-color color and single color, while maintaining the color synchronization, through the remote control of the remote control module or WiFi And the terminal of bluetooth module automatically controls the change or switch of full-color color, realizes remote control of multiple different floors and rooms, and is easy to operate. Market application prospects.
  • Example 1 RGB-WW synchronised smart light bulbs (Figure 1), the number of light bulbs is 60 and 30M per meter, and the functions of the buttons in the remote control from top to bottom are: ON to turn on, JUMP to turn on.
  • On and off cycle function OF close, FADE gradually bright and dark button, FLASH WHITE always on + flash (strobe), CHASE full flash and strobe, STEADY always on, FADE on and off monochrome function, FLASH WHITE white flash, FLASH OUT red + flash (burst 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 , the auto loop key.
  • RGB-WW synchronous smart light The effect of RGB-WW synchronous smart light is as follows: (1) Switch function: The switch function turns on and off the controller.
  • 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)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

本发明公开了一种RGB-WW同步智能美耐灯,它涉及装饰照明技术领域。美耐灯灯串并联到主线上,每条美耐灯灯串由多个RGB-WW四极管灯泡依次串联而成,各个RGB-WW四极管灯泡的导线正极分别与相邻RGB-WW四极管灯泡的导线负极相连接,将多个RGB-WW四极管灯泡依次串联成一串,导线正极与导线负极之间连接有压降电阻;所述的智能电源IP44插头、控制器和电源线母端子依次电线连接,美耐灯灯串的端部通过电源线母端子与控制器连接,控制器通过IP44插头接入到24-240V电压。本发明通过智能电源控制,达到智能美耐灯同步效果,实现遥控器对智能美耐灯进行同步效果的功能切换,应用前景广阔。

Description

RGB-WW同步智能美耐灯 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同步智能美耐灯。
背景技术
RGB-WW同步智能美耐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、公共场所夜景亮化不可缺少的装饰产品。
技术问题
现有市面上的RGB-WW同步智能美耐灯中的灯串实现全彩颜色、单一颜色等多种变化功能,不能同时维持颜色的同步性,而且,没有在不同房间进行同步遥控或者使用电子终端控制,操作不方便。基于此,设计一种新型的RGB-WW同步智能美耐灯尤为必要。
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同步智能美耐灯,结构简单,设计合理,通过智能电源控制,达到智能美耐灯同步效果,实现遥控器对智能美耐灯进行同步效果的功能切换,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同步智能美耐灯,包括智能电源和多条美耐灯灯串,所述的美耐灯灯串均并联到RGB-WW同步智能美耐灯灯管主线的主线正极和主线负极上,形成美耐灯灯串回路,美耐灯灯串包括有RGB-WW四极管灯泡、支架、电线、导线正极、导线负极、压降电阻,每条美耐灯灯串由多个RGB-WW四极管灯泡依次串联而成,所述的RGB-WW四极管灯泡底部露出的电线分别构成RGB-WW四极管的导线正极和导线负极,各个RGB-WW四极管灯泡的导线正极分别与相邻RGB-WW四极管灯泡的导线负极相连接,将多个RGB-WW四极管灯泡依次串联成一串,导线正极与导线负极之间连接有压降电阻,RGB-WW四极管灯泡的底部设置有两根支架,支架分别通过焊接的方式与电线连接,所述电线为铜线;所述的智能电源由IP44插头、控制器和电源线母端子依次电线连接,美耐灯灯串的端部通过电源线母端子与控制器连接,控制器通过IP44插头接入到24-240V电压。
       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MOSFET的输入端和DC变压器,DC变压器分别与驱动模块和IRF连接,DC变压器将改变电压之后的直流电输出到驱动模块和IRF,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接,驱动模块和DC变压器的输出端均连接到MOSFET的输入端,MOSFET的输出端连接至美耐灯灯串。
       作为优选,所述的美耐灯灯串的表面包裹有外皮,外皮的尾部设有尾塞。
       作为优选,所述的RGB-WW四极管灯泡为采用控制IC和LED芯片合封技术的四个引脚的灯珠,灯珠内封有R红色-G绿色-B蓝色-WW暖白的四芯芯片;所述的RGB-WW四极管灯泡由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。
       作为优选,所述的RGB-WW四极管灯泡两端的电压为3.0-3.2V;所述的RGB-WW四极管灯泡的外径为3mm、4mm、5mm中的一种。
       作为优选,所述的美耐灯灯串连接的主线由塑料和铜丝经过挤出机压塑成型。
有益效果
本发明的有益效果:本装置RGB-WW同步智能美耐灯中的灯串实现全彩颜色、单一颜色等多种变化功能,同时维持颜色的同步性,操作方便,便于在不同房间进行同步遥控或者使用电子终端控制,实用性强,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为本发明的结构示意图;
图2为本发明的电路示意图;
图3为本发明RGB-WW四极管灯泡的连接示意图;
图4为本发明控制器的电路框图;
图5为本发明RGB-WW四极管灯泡的内部结构示意图;
图6为本发明RGB-WW四极管灯泡的一种尺寸示意图;
图7为本发明同步智能美耐灯在同一线路下的同步示意图;
图8为本发明RGB-WW四极管灯泡的打线封装示意图。
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1-8,本具体实施方式采用以下技术方案:RGB-WW同步智能美耐灯,包括智能电源和多条美耐灯灯串,所述的美耐灯灯串均并联到RGB-WW同步智能美耐灯灯管主线的主线正极13和主线负极14上,形成美耐灯灯串回路,美耐灯灯串包括有RGB-WW四极管灯泡1、支架2、电线3、导线正极4、导线负极5、压降电阻6,每条美耐灯灯串由多个RGB-WW四极管灯泡1依次串联而成,所述的RGB-WW四极管灯泡1底部露出的电线分别构成RGB-WW四极管的导线正极4和导线负极5,各个RGB-WW四极管灯泡1的导线正极4分别与相邻RGB-WW四极管灯泡的导线负极5相连接,将多个RGB-WW四极管灯泡1依次串联成一串,导线正极4与导线负极5之间连接有压降电阻6,RGB-WW四极管灯泡1的底部设置有两根支架2,支架2分别通过焊接的方式与电线3连接,所述电线3为铜线;所述的智能电源由IP44插头7、控制器8和电源线母端子9依次电线连接,美耐灯灯串的端部通过电源线母端子9与控制器8连接,控制器8通过IP44插头7接入到24-240V电压。
值得注意的是,所述的多个并联的美耐灯灯串的表面包裹有外皮10,外皮10的尾部设有尾塞11,电源线母端子9与多个并联的美耐灯灯串连接形成整个灯具结构。
此外,所述的美耐灯灯串连接的主线由塑料和铜丝经过挤出机压塑成型。
本具体实施方式智能电源的连接方式:IP44插头7接入24-240V电源,到控制盒输入端输入24-240V,通电控制器8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8包括有电流保护的保险丝8-1、限压控制的压敏电阻8-2、滤波器8-3以及滤波电路8-4,保险丝8-1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;IP44插头7的一端接入到电源,24-240V电压到控制器输入端,IP44插头7的另一端依次连接滤除噪音和分离信号的滤波器8-3以及高频阻低频通的滤波电路8-4,滤波电路8-4的输出端分别连接到MOSFET8-5的输入端和DC变压器8-6,DC变压器8-6分别与驱动模块8-7和IRF8-8连接,DC变压器8-6将改变电压之后的直流电输出到驱动模块8-7和IRF8-8,IRF8-8与WiFi及蓝牙模块8-9、遥控模块8-10及程序模块8-11连接,遥控模块8-10与遥控器12无线连接,该程序模块8-11输入的控制美耐灯同步指令,经过IRF8-8处理后,将输出信号经过散热组件8-12输入到驱动模块8-7的输入端,该驱动模块8-7的输出端和所述DC变压器8-6的输出端均连接到MOSFET8-5的输入端后,传递到主线的端部的负载,即美耐灯灯串。
具体的连接方式为:从保险丝8-1端通过线路板电路到达压敏电阻8-2,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8-2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8-2端通过线路板电路到达滤波器8-3,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8-3端通过线路板电路到达滤波电路8-4,滤波电路8-4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8-4端通过线路板电路到DC变压器8-6,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8-6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8-6端通过线路板电路到IRF8-8,同时从DC变压器8-6端通过线路板电路到WiFi及蓝牙模块8-9、遥控模块8-10及程序模块8-11,WiFi及蓝牙模块8-9为集成WiFi和蓝牙功能的PCBA板,用于短距离无线通讯,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8-10的作用起到控制和功能转换传输;程序模块8-11对产品的功能程序文件的编写更改组件。
从WiFi及蓝牙模块8-9、遥控模块8-10及程序模块8-11的输出端通电线路板电路到达IRF8-8,从IRF8-8的输出端通过线路板电路到达散热组件8-12,散热组件8-12为温度保护组件,从DC变压器8-6和散热组件8-12输出端到达驱动模块8-7的输入端,驱动模块8-7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8-7输出端通电线路板电路到达MOSFET8-5,最后从MOSFET输出端到达负载。
本具体实施方式RGB-WW四极管灯泡1为采用控制IC和LED芯片合封技术的四个引脚的灯珠,灯珠内封有R红色-G绿色-B蓝色-WW暖白的四芯芯片,如图8中RGB-WW四极管灯泡1的灯珠内封白和暖白两种LED芯片,控制IC接收指令后可控制LED芯片不同的闪烁方式。
RGB-WW四极管灯泡1由LED芯片1-1、粘接胶1-2、SI胶1-3、荧光粉1-4、金丝1-5、LED支架1-6、热沉1-7组成(图5),LED芯片1-1通过粘接胶1-2固定在LED支架1-6上,LED芯片1-1表面通过SI胶1-3设置有荧光粉1-4,LED芯片1-1与金丝1-5连接,所述的LED支架1-6的两端连接有引脚1-8,LED支架1-6底部设置有热沉1-7。RGB-WW四极管灯泡1两端的电压为3.0-3.2V,RGB-WW四极管灯泡1的外径为3mm、4mm或5mm,如图6为RGB-WW四极管灯泡的一种尺寸示意图,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。
本具体实施方式采用的RGB-WW同步智能灯,图7为同步智能灯在同一线路下的同步示意图,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,该RGB-WW同步智能美耐灯中的灯串通过程序模块输入指令控制,实现全彩颜色、单一颜色等多种变化功能,同时维持颜色的同步性,通过遥控模块的遥控器或者WiFi及蓝牙模块的终端自动控制全彩彩色的变化或者开关,实现多个不同楼层和房间的异地控制,操作方便,同时可以根据用户需求进行编程,使美耐灯显示定制的需求色彩,具有广阔的市场应用前景。
实施例1:RGB-WW同步智能美耐灯(图1),美耐灯珠的数量为每米60个、30M,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同步智能美耐灯效果为:(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 (8)

  1. RGB-WW同步智能美耐灯,其特征在于,包括智能电源和多条美耐灯灯串,所述的美耐灯灯串均并联到RGB-WW同步智能美耐灯灯管主线的主线正极(13)和主线负极(14)上,形成美耐灯灯串回路,美耐灯灯串包括有RGB-WW四极管灯泡(1)、支架(2)、电线(3)、导线正极(4)、导线负极(5)、压降电阻(6),每条美耐灯灯串由多个RGB-WW四极管灯泡(1)依次串联而成,所述的RGB-WW四极管灯泡(1)底部露出的电线分别构成RGB-WW四极管的导线正极(4)和导线负极(5),各个RGB-WW四极管灯泡(1)的导线正极(4)分别与相邻RGB-WW四极管灯泡的导线负极(5)相连接,将多个RGB-WW四极管灯泡(1)依次串联成一串,正负极之间连接有压降电阻(6),RGB-WW四极管灯泡(1)的底部设置有两根支架(2),支架(2)分别通过焊接的方式与电线(3)连接,所述电线(3)为铜线;所述的智能电源由IP44插头(7)、控制器(8)和电源线母端子(9)依次电线连接,美耐灯灯串的端部通过电源线母端子(9)与控制器(8)连接,电源线母端子(9)与多个并联的美耐灯灯串连接形成整个智能美耐灯结构,控制器(8)通过IP44插头(7)接入到24-240V电压。
  2. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的控制器(8)包括有电流保护的保险丝(8-1)、限压控制的压敏电阻(8-2)、滤除噪音和分离信号的滤波器(8-3)以及高频阻低频通的滤波电路(8-4),滤波电路(8-4)的输出端分别连接到MOSFET(8-5)的输入端和DC变压器(8-6),DC变压器(8-6)分别与驱动模块(8-7)和IRF(8-8)连接,IRF(8-8)与WiFi及蓝牙模块(8-9)、遥控模块(8-10)及程序模块(8-11)连接,遥控模块(8-10)与遥控器(12)无线连接,所述的IRF(8-8)通过散热组件(8-12)与驱动模块(8-7)连接,驱动模块(8-7)和DC变压器(8-6)的输出端均连接到MOSFET(8-5)的输入端,MOSFET(8-5)的输出端连接至美耐灯灯串。
  3. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的美耐灯灯串的表面包裹有外皮(10),外皮(10)的尾部设有尾塞(11)。
  4. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的RGB-WW四极管灯泡(1)为采用控制IC和LED芯片合封的四个引脚的灯珠,灯珠内封有R红色-G绿色-B蓝色-WW暖白的四芯芯片。
  5. 根据权利要求4所述的RGB-WW同步智能美耐灯,其特征在于,所述的RGB-WW四极管灯泡(1)由LED芯片(1-1)、粘接胶(1-2)、SI胶(1-3)、荧光粉(1-4)、金丝(1-5)、LED支架(1-6)、热沉(1-7)组成,LED芯片(1-1)通过粘接胶(1-2)固定在LED支架(1-6)上,LED芯片(1-1)表面通过SI胶(1-3)设置有荧光粉(1-4),LED芯片(1-1)与金丝(1-5)连接,所述的LED支架(1-6)的两端连接有引脚(1-8),LED支架(1-6)底部设置有热沉(1-7)。
  6. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的RGB-WW四极管灯泡(1)两端的电压为3.0-3.2V。
  7. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的RGB-WW四极管灯泡(1)的外径为3mm、4mm、5mm中的一种。
  8. 根据权利要求1所述的RGB-WW同步智能美耐灯,其特征在于,所述的美耐灯灯串连接的主线由塑料和铜丝经过挤出机压塑成型。
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