CN205648090U - LED lamp remote control system - Google Patents

LED lamp remote control system Download PDF

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Publication number
CN205648090U
CN205648090U CN201620317361.3U CN201620317361U CN205648090U CN 205648090 U CN205648090 U CN 205648090U CN 201620317361 U CN201620317361 U CN 201620317361U CN 205648090 U CN205648090 U CN 205648090U
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China
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electric capacity
chip
pin
process chip
connects
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CN201620317361.3U
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Chinese (zh)
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何俊仪
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SHANGHAI EURO-AMERICAN LIGHTING Co Ltd
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SHANGHAI EURO-AMERICAN LIGHTING Co Ltd
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Abstract

The utility model discloses a LED lamp remote control system, the remote control system includes: remote control terminal, LED lamp module piece, the LED lamp module piece includes LED lamp unit, first control circuit, first control circuit connects LED lamp unit, the remote control terminal includes second processor, second bluetooth communication unit, second order input unit, second processor connects second bluetooth communication unit, second order input unit respectively, control system is still including showing control terminal, show that control terminal includes third treater, third bluetooth communication unit, touch -sensitive screen. The utility model provides a LED lamp remote control system, but convenient and fast ground control LED lamp. And simultaneously, the utility model discloses control system add to show control terminal, can show that the hand draws like the demonstration of, convenience of customers control LED lamp.

Description

A kind of LED remote control system
Technical field
This utility model belongs to LED and controls technical field, relates to a kind of LED control system, particularly relates to A kind of LED remote control system.
Background technology
LED (Light Emitting Diode), light emitting diode, it is visible to be that one can convert electrical energy into The semiconductor device of the solid-state of light, it directly can be converted into light electricity.The heart of LED is a quasiconductor Wafer, one end of wafer is attached on a support, and one end is negative pole, and the other end connects the positive pole of power supply, makes whole Individual wafer is got up by epoxy encapsulation.Semiconductor wafer is made up of two parts, and a part is P-type semiconductor, Inside it, occupy an leading position in hole, and the other end is N-type semiconductor, at the most mainly electronics.But both The when that quasiconductor coupling together, between them, it is formed for a P-N junction.When electric current acts on this by wire The when of individual wafer, electronics will be pushed to P district, and in P district, electronics is with hole-recombination, then will be with light The form of son sends energy, here it is the principle that LED is luminous.And the wavelength of light i.e. the color of light, it is Determined by the material forming P-N junction.
Initially LED is used as the instruction light source of instrument and meter, and the most various photochromic LED are at traffic light and big Area display is widely applied, creates good economic benefit and social benefit.
The controller of cloth screen LED display device of today and LED wired connection, under many circumstances cannot be square Just LED is manipulated.
Additionally, the information that existing cloth screen LED shows presets when generally being dispatched from the factory by producer, user also may be used To input some Word messages by some terminals, but generally cannot show hand-drawing image, also cannot show picture, Video information.
In view of this, nowadays in the urgent need to designing a kind of new LED control system, in order to overcome existing control system The drawbacks described above that system exists.
Utility model content
Technical problem to be solved in the utility model is: provides a kind of LED remote control system, can facilitate Control LED quickly.
For solving above-mentioned technical problem, this utility model adopts the following technical scheme that
A kind of LED remote control system, described remote control system includes: remote pilot terminal, LED Module;
Described LED lamp module includes LED lamp unit, first control circuit, and described first control circuit connects LED lamp unit;
Described remote pilot terminal includes the second processor, the second bluetooth communication unit, the second command input unit, Described second processor connects the second bluetooth communication unit, the second command input unit respectively;
Described first control circuit include mu balanced circuit, bluetooth communication circuit, main control circuit, through control circuit, Latitude control circuit;Main control circuit connect respectively mu balanced circuit, bluetooth communication circuit, through control circuit, latitude control Circuit processed.
As a kind of preferred version of the present utility model, described mu balanced circuit include the first diode D1, first Electric capacity C1, the second electric capacity C2, the first electrochemical capacitor EC1, the second electrochemical capacitor EC2, the second process chip U2;Described second the first pin ground connection processing chip U2;Second the second pin processing chip U2 connects the Two power vd D, and first end of the second electrochemical capacitor EC2, first end of the second electric capacity C2;Second electricity Solve second end of electric capacity EC2, the second end ground connection of the second electric capacity C2;Second three-prong processing chip U2 Connect the first power supply VCC, and first end of the first electrochemical capacitor EC1, first end of the first electric capacity C1, Second end of the first electrochemical capacitor EC1, the second end ground connection of the first electric capacity C1;The positive pole of the first diode D1 Ground connection, negative pole meet the first power supply VCC;
Described bluetooth communication circuit include the first process chip U1, the 3rd electric capacity C3, the 4th electric capacity C4, the 5th Electric capacity C5, the 6th electric capacity C6, the 17th electric capacity C17, the 21st electric capacity Z1, the 22nd electric capacity Z2, First inductance Z3, the second inductance Z4, crystal oscillator Y1;First process first pin of chip U1, the Six pin ground connection;First the second pin processing chip U1 connects bluetooth communication electricity by the 21st electric capacity Z1 Road, first processes second pin of chip U1 also through the second inductance Z4 ground connection;Bluetooth communication circuit is also distinguished By the 22nd electric capacity Z2, the first inductance Z3 ground connection;First three-prong processing chip U1 connects the Two power vd D, first end of the 17th electric capacity C17, first end of the 5th electric capacity C5, the 6th electric capacity C6 First end, second end of the 17th electric capacity C17, second end of the 5th electric capacity C5, the second of the 6th electric capacity C6 End ground connection respectively;First processes the 4th pin of chip U1 through the 3rd electric capacity C3 ground connection;First processes chip 7th pin of U1 is through the 4th electric capacity C4 ground connection;First the 8th pin processing chip U1 shakes through crystal Swing device Y1 ground connection;
Main control circuit includes the 3rd process chip U3, indicating lamp control circuit, the 9th electric capacity C9, the tenth electricity Hold C10;3rd processes chip U3 connects indicating lamp control circuit, and the 3rd processes the 12nd pin of chip U3 Connecting second source VDD, first end of the tenth electric capacity C10, the 3rd the tenth pin processing chip U3 connects First end of the 9th electric capacity C9, the 3rd processes the 11st pin ground connection of chip U3;The of tenth electric capacity C10 Two ends, the second end ground connection of the 9th electric capacity C9;
The 11st process chip U11, the 12nd process chip U12, the 13rd process core is included through control circuit Sheet U13, some interface circuits, the 13rd electric capacity C13, the 14th electric capacity C14, the 15th electric capacity C15;The 11 the first pin GND ground connection processing chip U11, the 11st processes the 24th pin of chip U11 VCC connects first end of the first power supply VCC, the 13rd electric capacity C13 and connects the of the 11st process chip U11 Second end of 24 pin VCC, the 13rd electric capacity C13 connects first pin of the 11st process chip U11 GND;The 11st multiple pins processing chip U11 connect corresponding interface circuit;
12nd the first pin GND ground connection processing chip U12, the 12nd processes the 24th of chip U12 Pin VCC connects the first power supply VCC, and first end of the 14th electric capacity C14 connects the 12nd process chip U12 The 24th pin VCC, the 14th electric capacity C14 second end connect the 12nd process chip U12 first Pin GND;The 12nd multiple pins processing chip U12 connect corresponding interface circuit;
13rd the first pin GND ground connection processing chip U13, the 13rd processes the 24th of chip U13 Pin VCC connects the first power supply VCC, and first end of the 15th electric capacity C15 connects the 13rd process chip U13 The 24th pin VCC, the 15th electric capacity C15 second end connect the 13rd process chip U13 first Pin GND;The 13rd multiple pins processing chip U13 connect corresponding interface circuit;
Latitude control circuit include the 5th process chip U5, the 6th process chip U6, the 7th process chip U7, the Eight process chip U8, the 9th process chip U9, the tenth process chip U10, the 14th process chip U14, the 15 process chip U15, the 16th process chip U16, the 17th process chip U17, some interfaces, the 12 electric capacity C12, the 16th electric capacity C16;
6th process chip U6, the 9th process chip U9 connect the 5th process chip U5, the 7th process core respectively Sheet U7, the 8th process chip U8, the tenth process chip U10, the 14th process chip U14, the 15th process Chip U15, the 16th process chip U16, the 17th process chip U17;5th process chip U5, the 7th Process chip U7, the 8th process chip U8, the tenth process chip U10 connect corresponding interface circuit, and the 14th Process chip U14, the 15th process chip U15, the 16th process chip U16, the 17th process chip U17 Connect corresponding interface circuit.
As a kind of preferred version of the present utility model, described control system also includes sound acquisition module, in order to Obtain voice data.
As a kind of preferred version of the present utility model, described LED lamp unit is curtain lamp or lamp string or cloth.
The beneficial effects of the utility model are: the LED remote control system that the utility model proposes, can be square Control LED the most quickly.Meanwhile, this utility model control system adds display control terminal, can show hands Drawing picture, facilitates user to control the display of LED.
Accompanying drawing explanation
Fig. 1 is the composition schematic diagram of this utility model LED remote control system.
Fig. 2 is the circuit diagram of mu balanced circuit in this utility model.
Fig. 3 is the circuit diagram of bluetooth communication circuit in this utility model.
Fig. 4 is the circuit diagram of main control circuit in this utility model.
Fig. 5 is the circuit diagram of latitude control circuit in this utility model.
Fig. 6 is the circuit diagram in this utility model through control circuit.
Fig. 7 is the line schematic diagram of LED lamp module in this utility model system.
Fig. 8 is the circuit diagram of this utility model system, control circuit.
Fig. 9 is the composition schematic diagram of speech recognition apparatus in this utility model system.
Figure 10 is the composition schematic diagram of this utility model LED remote control system in embodiment four.
Detailed description of the invention
Describe preferred embodiment of the present utility model below in conjunction with the accompanying drawings in detail.
Embodiment one
Referring to Fig. 1, this utility model discloses a kind of LED remote control system, described remote pilot system System includes: LED lamp module 1, remote pilot terminal 2, display control terminal 3.Remote pilot terminal 2, aobvious Show that control terminal 3 can be integrated in mobile phone.
Described LED lamp module 1 includes the first controller 11, LED lamp unit the 12, first bluetooth communication unit 13, described controller 11 connects LED lamp unit the 12, first bluetooth communication unit 13.LED lamp unit is permissible For curtain lamp or lamp string or cloth.
Described remote pilot terminal 2 includes that second processor the 21, second bluetooth communication unit 22, second is ordered Input block 23, described second processor 21 connects the second bluetooth communication unit 22, second respectively orders input Unit 23.
Described display control terminal 3 includes the 3rd processor the 31, the 3rd bluetooth communication unit 32, touch screen 39, 3rd processor 31 connects the 3rd bluetooth communication unit 32, touch screen 39 respectively.Can make on touch screen 39 Another mode of LED is controlled for user;As shown on touch screen, some different display types supply User selects.
In order to play the sound (or coordinating photo to play music) in video, described control system also includes sound Sound acquisition module, in order to obtain voice data.
Embodiment two
A kind of LED remote control system, described remote control system includes: remote pilot terminal, LED Module.
Described LED lamp module includes LED lamp unit, first control circuit, and described first control circuit connects LED lamp unit;Described remote pilot terminal includes the second processor, the second bluetooth communication unit, the second order Input block, described second processor connects the second bluetooth communication unit, the second command input unit respectively.
Described first control circuit include mu balanced circuit, bluetooth communication circuit, main control circuit, through control circuit, Latitude control circuit.
Refer to Fig. 2, described mu balanced circuit include the first diode D1, the first electric capacity C1, the second electric capacity C2, First electrochemical capacitor EC1, the second electrochemical capacitor EC2, the second process chip U2;Described second processes chip U2 The first pin ground connection;Second the second pin processing chip U2 connects second source VDD, and the second electricity Solve first end of electric capacity EC2, first end of the second electric capacity C2;Second end of the second electrochemical capacitor EC2, The second end ground connection of two electric capacity C2;Second three-prong processing chip U2 connects the first power supply VCC, and First end of the first electrochemical capacitor EC1, first end of the first electric capacity C1, the second of the first electrochemical capacitor EC1 End, the second end ground connection of the first electric capacity C1;The plus earth of the first diode D1, negative pole connect the first power supply VCC。
Refer to Fig. 3, described bluetooth communication circuit include the first process chip U1, the 3rd electric capacity C3, the 4th Electric capacity C4, the 5th electric capacity C5, the 6th electric capacity C6, the 17th electric capacity C17, the 21st electric capacity Z1, second 12 electric capacity Z2, the first inductance Z3, the second inductance Z4, crystal oscillator Y1;First processes chip U1's First pin, the 6th pin ground connection;First processes second pin of chip U1 by the 21st electric capacity Z1 Connecting bluetooth communication circuit, first processes second pin of chip U1 also through the second inductance Z4 ground connection;Bluetooth Communicating circuit is the most respectively by the 22nd electric capacity Z2, the first inductance Z3 ground connection;First processes chip U1's Three-prong connect second source VDD, first end of the 17th electric capacity C17, first end of the 5th electric capacity C5, First end of the 6th electric capacity C6, second end of the 17th electric capacity C17, second end of the 5th electric capacity C5, the 6th Second end of electric capacity C6 ground connection respectively;First processes the 4th pin of chip U1 through the 3rd electric capacity C3 ground connection; First processes the 7th pin of chip U1 through the 4th electric capacity C4 ground connection;First the 8th pipe processing chip U1 Foot is through crystal oscillator Y1 ground connection.
Referring to Fig. 4, main control circuit includes the 3rd process chip U3, indicating lamp control circuit, the 9th electric capacity C9, the tenth electric capacity C10;3rd processes chip U3 connects indicating lamp control circuit, and the 3rd processes chip U3's 12nd pin connects second source VDD, first end of the tenth electric capacity C10, and the 3rd processes the of chip U3 Ten pins connect first end of the 9th electric capacity C9, and the 3rd processes the 11st pin ground connection of chip U3;Tenth electricity Hold second end of C10, the second end ground connection of the 9th electric capacity C9.
Refer to Fig. 5, through control circuit include the 11st process chip U11, the 12nd process chip U12, 13rd process chip U13, some interface circuits, the 13rd electric capacity C13, the 14th electric capacity C14, the tenth Five electric capacity C15;11st the first pin GND ground connection processing chip U11, the 11st processes chip U11's 24th pin VCC connects first end of the first power supply VCC, the 13rd electric capacity C13 and connects the 11st process Second end of the 24th pin VCC of chip U11, the 13rd electric capacity C13 connects the 11st process chip U11 The first pin GND;The 11st multiple pins processing chip U11 connect corresponding interface circuit.
12nd the first pin GND ground connection processing chip U12, the 12nd processes the 24th of chip U12 Pin VCC connects the first power supply VCC, and first end of the 14th electric capacity C14 connects the 12nd process chip U12 The 24th pin VCC, the 14th electric capacity C14 second end connect the 12nd process chip U12 first Pin GND;The 12nd multiple pins processing chip U12 connect corresponding interface circuit.
13rd the first pin GND ground connection processing chip U13, the 13rd processes the 24th of chip U13 Pin VCC connects the first power supply VCC, and first end of the 15th electric capacity C15 connects the 13rd process chip U13 The 24th pin VCC, the 15th electric capacity C15 second end connect the 13rd process chip U13 first Pin GND;The 13rd multiple pins processing chip U13 connect corresponding interface circuit.
Referring to Fig. 6, latitude control circuit includes the 5th process chip U5, the 6th processes chip U6, at the 7th Reason chip U7, the 8th process chip U8, the 9th process chip U9, the tenth process chip U10, the tenth everywhere Reason chip U14, the 15th process chip U15, the 16th process chip U16, the 17th process chip U17, Some interfaces, the 12nd electric capacity C12, the 16th electric capacity C16.
6th process chip U6, the 9th process chip U9 connect the 5th process chip U5, the 7th process core respectively Sheet U7, the 8th process chip U8, the tenth process chip U10, the 14th process chip U14, the 15th process Chip U15, the 16th process chip U16, the 17th process chip U17;5th process chip U5, the 7th Process chip U7, the 8th process chip U8, the tenth process chip U10 connect corresponding interface circuit, and the 14th Process chip U14, the 15th process chip U15, the 16th process chip U16, the 17th process chip U17 Connect corresponding interface circuit.
Embodiment three
In the present embodiment, described LED lamp module includes M group LED lamp unit, N bar connecting line, M >=2, M For even number, N >=2;Each connecting line connects aneroid battery;M=(N-1) * N;Every two groups of LED lamp unit include to A few LED, when every two groups of LED lamp unit include more than 2 LED, each LED includes series connection LED or/and the LED of parallel connection.
As, described LED lamp module includes 56 groups of LED lamp unit, 8 connecting lines;Or, LED lamp module Including 42 groups of LED lamp unit, 7 connecting lines;Or, LED lamp module include 30 groups of LED lamp unit, 6 Bar connecting line;Or, LED lamp module includes 20 groups of LED lamp unit, 5 connecting lines.In the present embodiment, As it is shown in fig. 7, LED lamp module 3 includes 30 groups of LED lamp unit, 6 connecting lines.
Every two groups of LED lamp unit partner, the connecting line that every pair of LED lamp unit connection is identical, but wiring side To on the contrary;That is, the positive pole of the one of which LED lamp unit of every pair LED lamp unit connects the i-th connecting line Li, Negative pole connects jth connecting line Lj;The positive pole of another group LED lamp unit of every pair of LED lamp unit connects jth Connecting line Lj, negative pole connects the i-th connecting line Li.
As it is shown in fig. 7, LED lamp unit 31, LED lamp unit 32 are as a pair, LED lamp unit 31 is just Pole connects connecting line L1, and negative pole connects connecting line L6;The positive pole of LED lamp unit 32 connects connecting line L6, negative Pole connects connecting line L1.For another example, LED lamp unit 33, LED lamp unit 34 as a pair, LED lamp unit The positive pole of 33 connects connecting line L3, and negative pole connects connecting line L5;The positive pole of LED lamp unit 34 connects connecting line L5, negative pole connects connecting line L3.
Described control circuit controls the voltage of each connecting line in the way of scanning, makes synchronization only have one group of LED Lamp unit lights;The most often group LED lamp unit is all lit at least one times in same period of time T, and Other group LED lamp unit are in OFF state when lighting;Period of time T is shorter than human eye vision and persists the time, makes Human eye thinks that often group LED lamp unit is all in illuminating state.In the present embodiment, T < 0.02 second;As can one Second carry out 60 scanning, scan each time, according to setting sequential illumination (and closedown) to each group of LED Unit.
The voltage only having a connecting line in synchronization, N bar connecting line is just, the voltage of a connecting line It is negative;Thus control a LED lamp unit in corresponding two LED lamp unit connected with these two connecting lines Lighting, remaining LED lamp unit is in OFF state.
Referring to Fig. 8, the present embodiment is as a example by 4 line 12 tunnels (12 groups of LED lamp unit, 4 connecting lines) Introduce the composition of control circuit.Described control circuit include first processor, LED drive circuit, memorizer, First wireless communication module, first processor connects memorizer, the first wireless communication module, LED driving respectively Circuit.
Described control circuit include transformator, current rectifying and wave filtering circuit, decompression voltage regulator, MCU control chip, Some audions;Described transformator, current rectifying and wave filtering circuit, decompression voltage regulator are sequentially connected with, and MCU controls core Sheet connects each audion respectively;Described MCU control chip is also associated with memory chip.
Described current rectifying and wave filtering circuit includes the first diode, the first electric capacity;First port of transformator, the one or two The positive pole of pole pipe, the second end ground connection of the first electric capacity, the negative pole of the first diode, the first end of the first electric capacity lead to Cross the second port of electric fuse connection transformer.
Described decompression voltage regulator include the first stabilivolt, the second stabilivolt, the second electric capacity, the second diode, 3rd diode;First port of described first stabilivolt, the first port of the second stabilivolt are connected by electric fuse Connect the second port of transformator;First stabilivolt, the grounding ports ground connection of the second stabilivolt;Described first voltage stabilizing The output port of pipe connects the first end of the second electric capacity, the positive pole of the second diode, the second termination of the second electric capacity Ground, the negative pole of the second diode connects voltage VCC;The output port of the first stabilivolt connects the 3rd diode Positive pole, the negative pole of the 3rd diode connects voltage VCC.
The base stage of described MCU control chip coupling part audion respectively, every three audions assemble conjunction as one Use;With the use of three audions in, a pin of MCU control chip connects the base of the first audion Pole, the grounded emitter of the first audion, send control signal by the colelctor electrode of the first audion;MCU is controlled Another pin of coremaking sheet connects the base stage of the second audion, the grounded emitter of the second audion, and the two or three The colelctor electrode of pole pipe connects the base stage of the 3rd audion;The emitter stage of the 3rd audion connects voltage VCC, passes through The colelctor electrode of the 3rd audion sends control signal.
Preferably, described control system also includes speech recognition apparatus;Described control circuit sets according to speech recognition LED lamp module is controlled by the standby control command identified.
Refer to Fig. 9, described speech recognition apparatus include voice acquiring unit 41, voice comparison data storehouse 42, Voice comparing unit 43, voice recognition unit 44;Voice comparing unit 43 connects voice acquiring unit respectively 41, voice comparison data storehouse 42, the voice messaging that voice acquiring unit 41 is obtained and voice comparison data storehouse Voice in 42 is compared, and finds out the voice that similarity is the highest, sends to voice recognition unit 44;Voice The result that recognition unit 44 will identify that sends to control circuit 1 as control command.
Described voice comparing unit includes that dialect comparing unit, voice comparison data storehouse include dialect comparison data Storehouse;Described dialect comparing unit will set the setting dialect of user and corresponding dialect comparison data storehouse comparison; The dialect of setting user is set by the user or system obtains according to the use record autonomic learning of user.
Described system also includes autonomic learning module, passes through neutral net in order to the use record according to each user Independent study study obtains;If as user's use is the most same or like after dialect phonetic order, system is not known Not going out, or the result identified by user is negated all, then user manually performs the operational order of correspondence; Then think above-mentioned dialect phonetic order to should operational order, and update dialect comparison data storehouse.By this side Formula can improve identification accuracy, can better adapt to the pronunciation custom of different people.
Embodiment four
Referring to Figure 10, this utility model discloses a kind of LED remote control system, described remote pilot System includes: LED lamp module 1, remote pilot terminal 2, display control terminal 3.Remote pilot terminal 2, Display control terminal 3 can be integrated in mobile phone.
Described LED lamp module 1 includes the first controller 11, LED lamp unit the 12, first bluetooth communication unit 13, described controller 11 connects LED lamp unit the 12, first bluetooth communication unit 13.LED lamp unit is permissible For curtain lamp or lamp string or cloth.
Described remote pilot terminal 2 includes that second processor the 21, second bluetooth communication unit 22, second is ordered Input block 23, described second processor 21 connects the second bluetooth communication unit 22, second respectively orders input Unit 23.
Described display control terminal 3 includes that the 3rd processor the 31, the 3rd bluetooth communication unit 32, LED are aobvious Showing that content input unit 33, LED show information assigning unit 34, the 3rd processor 31 connects the 3rd respectively Bluetooth communication unit 32, LED display content input unit 33.
Described LED display content input unit 33 is in order to form linear image in setting painting canvas, in order to LED lamp unit shows;The distribution of painting canvas correspondence LED lamp unit, some LED that LED lamp unit includes exist Painting canvas all has the coordinate of its correspondence, as key node.
Described LED display content input unit 33 includes painting canvas generation module, Freehandhand-drawing image generating module; Described painting canvas generation module is in order to generate painting canvas;Described LED lamp unit includes the LED that M row N arranges, M row The key node that the LED of N row is corresponding is covered with whole painting canvas, the distance between LED and corresponding key node Between distance become corresponding;Described Freehandhand-drawing image generating module is with raw at described painting canvas generation module for user Freehandhand-drawing picture in the painting canvas become, forms corresponding linear image.
Described LED display information assigning unit 34 is in order to according to LED display content input unit input Information distributes switch and the color of each LED;The mode of LED display information assigning unit 34 distribution is: Whether there are the lines of described linear image in judging each LED respective coordinates setpoint distance, if existing, Setting this LED as opening, if not existing, then setting this LED as closing;The color attribute of LED is homologous pair The color of bar.
The letter that described first controller 11 sets for each LED according to LED display information assigning unit 34 Breath controls LED lamp unit 12.
Described LED display content input unit 33 can also include picture acquisition module, picture gray proces Module, picture profile automatically-generating module;Picture acquisition module in order to obtain image data, picture gray proces Module in order to carry out gray proces by picture, and picture profile automatically-generating module is in order to generate after gray proces The contour line of picture.
The contour line that described LED display information assigning unit 34 generates according to picture profile automatically-generating module And the switch of each LED of color assignment of former contour line and color;LED display information assigning unit distribution Mode be: whether there is the contour line of described picture in judging each LED respective coordinates setpoint distance, if Existing and then set this LED as opening, if not existing, then setting this LED as pass;The color attribute of LED The color of corresponding contour line.
Described LED display content input unit 33 can also include that video acquiring module, video turn picture mould Block, second picture gradation processing module, second picture profile automatically-generating module, playing interval control module; Video acquiring module is in order to obtain video data, and video turns picture module in order to obtain the key frame figure forming video Sheet, second picture gradation processing module is in order to carry out gray proces by key frame picture, and second picture profile is automatic Generation module is in order to generate the contour line of the picture after gray proces, and playing interval control module is in order to control The reproduction time of each picture.
The profile that described LED display information assigning unit generates according to second picture profile automatically-generating module The switch of each LED of color assignment of line and former contour line and color;LED display information assigning unit divides The mode joined is: whether there is the contour line of described picture in judging each LED respective coordinates setpoint distance, If existing, setting this LED as opening, if not existing, then setting this LED as pass;The color of LED belongs to The color of property correspondence contour line.
In order to play the sound (or coordinating photo to play music) in video, described control system also includes sound Sound acquisition module, in order to obtain voice data.
In sum, the LED remote control system that the utility model proposes, LED can be controlled conveniently and efficiently Lamp.Meanwhile, this utility model control system adds display control terminal, can show hand-drawing image, facilitate user Control the display of LED.
Description the most of the present utility model and application are illustrative, are not wishing to limit scope of the present utility model In the above-described embodiments.The deformation of embodiments disclosed herein and change are possible, for those this areas Those of ordinary skill for embodiment replace and equivalence various parts be known.Those skilled in the art It is noted that this utility model can in the case of without departing from spirit or essential characteristics of the present utility model With in other forms, structure, layout, ratio, and realize with other assembly, material and parts.Not In the case of departing from this utility model scope and spirit, embodiments disclosed herein can be carried out other deformation And change.

Claims (4)

1. a LED remote control system, it is characterised in that described remote control system includes: remote pilot Terminal, LED lamp module;
Described LED lamp module includes LED lamp unit, first control circuit, and described first control circuit is even Connect LED lamp unit;
Described remote pilot terminal includes the second processor, the second bluetooth communication unit, the second order input Unit, described second processor connects the second bluetooth communication unit, the second command input unit respectively;
Described first control circuit include mu balanced circuit, bluetooth communication circuit, main control circuit, through control Circuit, latitude control circuit;Main control circuit connect respectively mu balanced circuit, bluetooth communication circuit, through control Circuit, latitude control circuit.
LED remote control system the most according to claim 1, it is characterised in that:
Described mu balanced circuit includes the first diode D1, the first electric capacity C1, the second electric capacity C2, the first electricity Solve electric capacity EC1, the second electrochemical capacitor EC2, the second process chip U2;Described second processes chip U2's First pin ground connection;Second the second pin processing chip U2 connects second source VDD, and the second electricity Solve first end of electric capacity EC2, first end of the second electric capacity C2;Second end of the second electrochemical capacitor EC2, The second end ground connection of the second electric capacity C2;Second three-prong processing chip U2 connects the first power supply VCC, And first first end of electrochemical capacitor EC1, first end of the first electric capacity C1, the first electrochemical capacitor EC1 The second end, the second end ground connection of the first electric capacity C1;The plus earth of the first diode D1, negative pole connect First power supply VCC;
Described bluetooth communication circuit include the first process chip U1, the 3rd electric capacity C3, the 4th electric capacity C4, 5th electric capacity C5, the 6th electric capacity C6, the 17th electric capacity C17, the 21st electric capacity Z1, the 22nd electricity Hold Z2, the first inductance Z3, the second inductance Z4, crystal oscillator Y1;First processes the first of chip U1 Pin, the 6th pin ground connection;First processes second pin of chip U1 by the 21st electric capacity Z1 even Connecing bluetooth communication circuit, first processes second pin of chip U1 also through the second inductance Z4 ground connection;Blue Tooth communicating circuit is the most respectively by the 22nd electric capacity Z2, the first inductance Z3 ground connection;First processes chip The three-prong of U1 connects second source VDD, first end of the 17th electric capacity C17, the 5th electric capacity C5 The first end, first end of the 6th electric capacity C6, second end of the 17th electric capacity C17, the 5th electric capacity C5 The second end, the second end respectively ground connection of the 6th electric capacity C6;First the 4th pin warp processing chip U1 Cross the 3rd electric capacity C3 ground connection;First processes the 7th pin of chip U1 through the 4th electric capacity C4 ground connection;The One processes the 8th pin of chip U1 through crystal oscillator Y1 ground connection;
Main control circuit include the 3rd process chip U3, indicating lamp control circuit, the 9th electric capacity C9, the tenth Electric capacity C10;3rd processes chip U3 connects indicating lamp control circuit, and the 3rd processes the tenth of chip U3 Two pins connect second source VDD, first end of the tenth electric capacity C10, and the 3rd processes the tenth of chip U3 Pin connects first end of the 9th electric capacity C9, and the 3rd processes the 11st pin ground connection of chip U3;Tenth Second end of electric capacity C10, the second end ground connection of the 9th electric capacity C9;
The 11st process chip U11, the 12nd process chip U12, the 13rd process is included through control circuit Chip U13, some interface circuits, the 13rd electric capacity C13, the 14th electric capacity C14, the 15th electric capacity C15; 11st the first pin GND ground connection processing chip U11, the 11st processes the 24th of chip U11 Pin VCC connects the first power supply VCC, and first end of the 13rd electric capacity C13 connects the 11st process chip Second end of the 24th pin VCC of U11, the 13rd electric capacity C13 connects the 11st process chip U11 The first pin GND;The 11st multiple pins processing chip U11 connect corresponding interface circuit;
12nd the first pin GND ground connection processing chip U12, the 12nd processes the second of chip U12 14 pin VCC connect the first power supply VCC, and first end of the 14th electric capacity C14 connects the 12nd process Second end of the 24th pin VCC of chip U12, the 14th electric capacity C14 connects the 12nd process core The first pin GND of sheet U12;The 12nd multiple pins processing chip U12 connect corresponding interface electricity Road;
13rd the first pin GND ground connection processing chip U13, the 13rd processes the second of chip U13 14 pin VCC connect the first power supply VCC, and first end of the 15th electric capacity C15 connects the 13rd process Second end of the 24th pin VCC of chip U13, the 15th electric capacity C15 connects the 13rd process core The first pin GND of sheet U13;The 13rd multiple pins processing chip U13 connect corresponding interface electricity Road;
Latitude control circuit include the 5th process chip U5, the 6th process chip U6, the 7th process chip U7, 8th process chip U8, the 9th process chip U9, the tenth process chip U10, the 14th process chip U14, 15th process chip U15, the 16th process chip U16, the 17th process chip U17, some interfaces, 12nd electric capacity C12, the 16th electric capacity C16;
6th process chip U6, the 9th process chip U9 and connect the 5th process chip U5 respectively, at the 7th Reason chip U7, the 8th process chip U8, the tenth process chip U10, the 14th process chip U14, the 15 process chip U15, the 16th process chip U16, the 17th process chip U17;5th processes core Sheet U5, the 7th process chip U7, the 8th process chip U8, the tenth process chip U10 connect correspondence and connect Mouthful circuit, the 14th process chip U14, the 15th process chip U15, the 16th process chip U16, 17th processes chip U17 connects corresponding interface circuit.
LED remote control system the most according to claim 1, it is characterised in that:
Described control system also includes sound acquisition module, in order to obtain voice data.
LED remote control system the most according to claim 1, it is characterised in that:
Described LED lamp unit is curtain lamp or lamp string or cloth.
CN201620317361.3U 2016-04-15 2016-04-15 LED lamp remote control system Expired - Fee Related CN205648090U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620317361.3U CN205648090U (en) 2016-04-15 2016-04-15 LED lamp remote control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620317361.3U CN205648090U (en) 2016-04-15 2016-04-15 LED lamp remote control system

Publications (1)

Publication Number Publication Date
CN205648090U true CN205648090U (en) 2016-10-12

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620317361.3U Expired - Fee Related CN205648090U (en) 2016-04-15 2016-04-15 LED lamp remote control system

Country Status (1)

Country Link
CN (1) CN205648090U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105916237A (en) * 2016-04-15 2016-08-31 上海欧美拉光电股份有限公司 Remotely controlling system for LED lamp
CN106713699A (en) * 2016-12-20 2017-05-24 广州明浩电子科技有限公司 Control system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105916237A (en) * 2016-04-15 2016-08-31 上海欧美拉光电股份有限公司 Remotely controlling system for LED lamp
CN106713699A (en) * 2016-12-20 2017-05-24 广州明浩电子科技有限公司 Control system

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