CN205610998U - Optical communication lighting control system - Google Patents
Optical communication lighting control system Download PDFInfo
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- CN205610998U CN205610998U CN201620389175.0U CN201620389175U CN205610998U CN 205610998 U CN205610998 U CN 205610998U CN 201620389175 U CN201620389175 U CN 201620389175U CN 205610998 U CN205610998 U CN 205610998U
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Abstract
The utility model discloses an optical communication lighting control system, including the customer end, the customer end is connected with female lamp, and female lamp is connected with sub - lamp, wherein, sub - lamp includes power module, and power module is connected with a LED lamp, a MCU respectively, and a MCU and sub - lamp integration infrared receiving terminal are connected. The utility model has the characteristics of simple structure, cost advantage, easy maintenance, stable performance and be suitable for popularization etc.
Description
Technical field
This utility model relates to light fixture communication technology, specifically a kind of optic communication Lighting Control Assembly.
Background technology
Nowadays intelligent lighting field emerges, and in intelligent lighting field, communication mode is numerous, wired
Communicate with wireless.The wherein wire communication mode with DALI, CAN, DMX512 etc. as representative
Although communications cost is low, but when it is installed, need wiring, bring many troubles to installation;WIFI,
Although the communication that bluetooth, zigbee etc. are representative is easy for installation, but it is relatively costly, the most unfavorable
Popularization in its market.
Utility model content
The purpose of this utility model is the deficiency overcoming above prior art to exist, it is provided that a kind of structure
Simply, low cost, easy to maintenance, stable performance and be suitable to promote optic communication Lighting Control Assembly.
In order to achieve the above object, this utility model is by the following technical solutions: a kind of optic communication illumination control
System processed, including client, client is connected with female lamp, and female lamp is connected with sub-lamp;Wherein, sub-lamp bag
Including power module, power module is connected with the first LED, a MCU respectively, a MCU with
The lamp integrated infrared receiving terminal of son connects.
Described female lamp includes the female lamp AC-DC module being sequentially connected with, female lamp DC-DC module and second
LED, female lamp DC-DC module is connected with the second MCU module, the second MCU module respectively with mother
Lamp integrated infrared receiving terminal, wire communication module, wireless communication module connect.
Described power module includes sub-lamp AC-DC module, sub-lamp DC-DC module;Sub-lamp AC-DC
Module, sub-lamp DC-DC module and the first LED are sequentially connected.
Described client is remote controller, mobile phone, PC or panel computer.
By wire communication module or wireless communication module communication between described female lamp and client.
Described sub-lamp is communicated with female lamp by infrared ray.
Described wire communication module is that DALI communication interface, CAN communication interface or DMX512 communication connect
Mouthful.
Described wireless communication module is WIFI communication interface, bluetooth communication interface or zigbee communication interface.
The implementation method of above-mentioned optic communication Lighting Control Assembly, comprises the following steps:
(1), female lamp connects: client is connected with female lamp coupling by wired or wireless communication mode, female
Lamp and client mutual data transmission;
(2), sub-lamp controls: client is to female lamp transmitting control commands, and female lamp will by optical communication mode
Control command is sent to sub-lamp;
(3), data returned by sub-lamp: sub-lamp sends the data to female lamp by optical communication mode, and female lamp is again
Client is forwarded the data to by wired or wireless communication technology;
Optical communication mode in described step (2) and (3) is: the luminosity of the second LED is by
The PWM ripple that two MCU produce controls female lamp DC-DC part and is adjusted;It addition, the 2nd MCU
Infrared receiving terminal lamp integrated with mother is connected, data during for receiving optic communication;Sending out of first LED
The PWM ripple that brightness is produced by a MCU controls sub-lamp DC-DC part and is adjusted;It addition,
Oneth MCU infrared receiving terminal lamp integrated with son is connected, data during for receiving optic communication;Sending
During data, when sending mathematical logic " 0 ", the frequency of the PWM ripple of lamp light-regulating driver is changed into
38KHz, maintains and produces 0.56ms, recover former PWM ripple 0.56ms;When sending mathematical logic " 1 "
The frequency of the PWM ripple of lamp light-regulating driver is changed into 38KHz and maintains generation 0.56ms, recover former
PWM ripple 1.68ms;When receiving data, carry out data demodulation by corresponding integrated infrared receiving terminal,
Corresponding MCU directly exports data according to traditional infrared decoding mode to integration infrared receiving terminal
It is decoded.
During the frequency shift of described PWM ripple, its dutycycle keeps constant;Female lamp includes the female lamp being sequentially connected with
AC-DC module, female lamp DC-DC module and the second LED, female lamp DC-DC module and second
MCU module connects, the second MCU module infrared receiving terminal lamp integrated with mother, wire communication mould respectively
Block, wireless communication module connect;Described power module includes sub-lamp AC-DC module, sub-lamp DC-DC
Module;Sub-lamp AC-DC module, sub-lamp DC-DC module and the first LED are sequentially connected.
This utility model, relative to prior art, has such advantages as and effect:
1, this utility model includes that client, client are connected with female lamp, and female lamp is connected with sub-lamp;Wherein,
Sub-lamp includes power module, and power module is connected with the first LED, a MCU respectively, a MCU
Infrared receiving terminal lamp integrated with son is connected, and has simple in construction, low cost, easy to maintenance, performance
Stablize and be suitable to the features such as popularization.
2, the female lamp in this utility model includes the female lamp AC-DC module being sequentially connected with, female lamp DC-DC
Module and the second LED, female lamp DC-DC module is connected with the second MCU module, the 2nd MCU mould
Block infrared receiving terminal lamp integrated with mother, wire communication module, wireless communication module respectively are connected, communication
Pattern is various, simple in construction.
3, the sub-lamp in this utility model is communicated with female lamp by infrared ray, and with low cost, using effect is good.
4, light fixture and optic communication are combined together by this utility model, and communication efficiency, using effect are the most significantly
Improving, cost is substantially reduced, it is simple to maintenance.
Although 5, this utility model employing infrared communication technique, do not use infrared LED, but
The infrared light composition in illuminating ray is utilized to carry out infrared communication.
6, this utility model is combined with optical communication technique by existing communication technology and realizes intelligence photograph
Bright, it is achieved intelligent lighting controls mode polymorphicization, communications cost cheapization.
7, this utility model utilizes optic communication to realize intelligent lighting, makes the installation of lighting simplify,
Communication line safe, it is possible to decrease the repair rate of Intelligent luminaire.
Accompanying drawing explanation
Fig. 1 is the connection diagram of a kind of optic communication Lighting Control Assembly;
Fig. 2 is the connection diagram of female lamp in this utility model;
Fig. 3 is the connection diagram of this utility model neutron lamp.
Detailed description of the invention
For ease of it will be appreciated by those skilled in the art that below in conjunction with the accompanying drawings and embodiment this utility model made into
The detailed description of one step.
Embodiment 1:
As shown in Figures 1 to 3, a kind of optic communication Lighting Control Assembly, including client, client and female lamp
Connecting, female lamp is connected with sub-lamp;Wherein, sub-lamp includes power module, power module respectively with a LED
Lamp, a MCU connect, and a MCU infrared receiving terminal lamp integrated with son is connected.
As in figure 2 it is shown, female lamp includes the female lamp AC-DC module being sequentially connected with, female lamp DC-DC module
And second LED, female lamp DC-DC module is connected with the second MCU module, and the second MCU module is divided
Not infrared receiving terminal lamp integrated with mother, wire communication module, wireless communication module is connected.
As it is shown on figure 3, power module includes sub-lamp AC-DC module, sub-lamp DC-DC module;Sub-lamp
AC-DC module, sub-lamp DC-DC module and the first LED are sequentially connected.
Described client is remote controller, mobile phone, PC or panel computer, uses mobile phone in the present embodiment.
By wire communication module or wireless communication module communication, this enforcement between described female lamp and client
Example uses wire communication module.
Sub-lamp in the present embodiment is communicated with female lamp by infrared ray.
Described wire communication module is that DALI communication interface, CAN communication interface or DMX512 communication connect
Mouthful, the present embodiment wire communication module is DMX512 communication interface.
The implementation method of above-mentioned optic communication Lighting Control Assembly, comprises the following steps:
(1), female lamp connects: client is connected with female lamp coupling by wired or wireless communication mode, female
Lamp and client mutual data transmission;
(2), sub-lamp controls: client is to female lamp transmitting control commands, and female lamp will by optical communication mode
Control command is sent to sub-lamp;
(3), data returned by sub-lamp: sub-lamp sends the data to female lamp by optical communication mode, and female lamp is again
Client is forwarded the data to by wired or wireless communication technology;
Optical communication mode in described step (2) and (3) is: the luminosity of the second LED is by
The PWM ripple that two MCU produce controls female lamp DC-DC part and is adjusted;It addition, the 2nd MCU
Infrared receiving terminal lamp integrated with mother is connected, data during for receiving optic communication;Sending out of first LED
The PWM ripple that brightness is produced by a MCU controls sub-lamp DC-DC part and is adjusted;It addition,
Oneth MCU infrared receiving terminal lamp integrated with son is connected, data during for receiving optic communication;Sending
During data, when sending mathematical logic " 0 ", the frequency of the PWM ripple of lamp light-regulating driver is changed into
38KHz, maintains and produces 0.56ms, recover former PWM ripple 0.56ms;When sending mathematical logic " 1 "
The frequency of the PWM ripple of lamp light-regulating driver is changed into 38KHz and maintains generation 0.56ms, recover former
PWM ripple 1.68ms;When receiving data, carry out data demodulation by corresponding integrated infrared receiving terminal,
Corresponding MCU directly exports data according to traditional infrared decoding mode to integration infrared receiving terminal
It is decoded.
During the frequency shift of described PWM ripple, its dutycycle keeps constant;Female lamp includes the female lamp being sequentially connected with
AC-DC module, female lamp DC-DC module and the second LED, female lamp DC-DC module and second
MCU module connects, the second MCU module infrared receiving terminal lamp integrated with mother, wire communication mould respectively
Block, wireless communication module connect;Described power module includes sub-lamp AC-DC module, sub-lamp DC-DC
Module;Sub-lamp AC-DC module, sub-lamp DC-DC module and the first LED are sequentially connected.
Embodiment 2
The present embodiment difference from Example 1 is: pass through radio communication mold between female lamp and client
Block is carried out, and described wireless communication module is that WIFI communication interface, bluetooth communication interface or zigbee communication connect
Mouthful, the present embodiment wireless communication module is WIFI communication interface.
Above-mentioned detailed description of the invention is preferred embodiment of the present utility model, can not enter this utility model
Row limits, other any change made without departing from the technical solution of the utility model or other equivalence
Substitute mode, within being included in protection domain of the present utility model.
Claims (8)
1. an optic communication Lighting Control Assembly, it is characterised in that: include client, client and female lamp
Connecting, female lamp is connected with sub-lamp;Wherein, sub-lamp includes power module, power module respectively with a LED
Lamp, a MCU connect, and a MCU infrared receiving terminal lamp integrated with son is connected.
Optic communication Lighting Control Assembly the most according to claim 1, it is characterised in that: described female lamp
Including the female lamp AC-DC module being sequentially connected with, female lamp DC-DC module and the second LED, female lamp
DC-DC module is connected with the second MCU module, and the second MCU module is lamp integrated with mother infrared respectively
Receive head, wire communication module, wireless communication module connection.
Optic communication Lighting Control Assembly the most according to claim 1, it is characterised in that: described power supply
Module includes sub-lamp AC-DC module, sub-lamp DC-DC module;Sub-lamp AC-DC module, sub-lamp DC-DC
Module and the first LED are sequentially connected.
Optic communication Lighting Control Assembly the most according to claim 1, it is characterised in that: described client
End is remote controller, mobile phone, PC or panel computer.
Optic communication Lighting Control Assembly the most according to claim 1, it is characterised in that: described female lamp
And by wire communication module or wireless communication module communication between client.
Optic communication Lighting Control Assembly the most according to claim 1, it is characterised in that: described sub-lamp
Communicated with female lamp by infrared ray.
Optic communication Lighting Control Assembly the most according to claim 5, it is characterised in that: described wired
Communication module is DALI communication interface, CAN communication interface or DMX512 communication interface.
Optic communication Lighting Control Assembly the most according to claim 5, it is characterised in that: described wireless
Communication module is WIFI communication interface, bluetooth communication interface or zigbee communication interface.
Priority Applications (1)
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CN201620389175.0U CN205610998U (en) | 2016-04-29 | 2016-04-29 | Optical communication lighting control system |
Applications Claiming Priority (1)
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CN201620389175.0U CN205610998U (en) | 2016-04-29 | 2016-04-29 | Optical communication lighting control system |
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CN205610998U true CN205610998U (en) | 2016-09-28 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105848348A (en) * | 2016-04-29 | 2016-08-10 | 横店集团得邦照明股份有限公司 | Optical communication lighting control system and realization method thereof |
-
2016
- 2016-04-29 CN CN201620389175.0U patent/CN205610998U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105848348A (en) * | 2016-04-29 | 2016-08-10 | 横店集团得邦照明股份有限公司 | Optical communication lighting control system and realization method thereof |
CN105848348B (en) * | 2016-04-29 | 2019-03-08 | 横店集团得邦照明股份有限公司 | A kind of optic communication lighting control system and its implementation |
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