CN202488827U - Remote control device for LED plant growth lamps - Google Patents

Remote control device for LED plant growth lamps Download PDF

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Publication number
CN202488827U
CN202488827U CN2012200606323U CN201220060632U CN202488827U CN 202488827 U CN202488827 U CN 202488827U CN 2012200606323 U CN2012200606323 U CN 2012200606323U CN 201220060632 U CN201220060632 U CN 201220060632U CN 202488827 U CN202488827 U CN 202488827U
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CN
China
Prior art keywords
plant growth
led plant
wireless signal
signal receiver
growth lamp
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2012200606323U
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Chinese (zh)
Inventor
杜海浩
杜刚
王瑞章
邵威
张继川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TIANJIN JINYA ELECTRONICS CO Ltd
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TIANJIN JINYA ELECTRONICS CO Ltd
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Priority to CN2012200606323U priority Critical patent/CN202488827U/en
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Publication of CN202488827U publication Critical patent/CN202488827U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a remote control device for LED plant growth lamps. The remote control device comprises a remote controller, a wireless signal receiver and a plurality of light-adjustable power sources. The remote controller transmits control signals to the wireless signal receiver, the wireless signal receiver receives the control signals, converts the control signals into PWM (pulse width modulation) values and outputs the PWM values to the light-adjustable power sources, an input end of each light-adjustable power source is connected with the mains supply, an output end of each light-adjustable power source is connected with an LED plant growth lamp of one color, and a PWM control end is connected with a PWM output pin of the wireless signal receiver. By means of the technical scheme, light intensity of the LED plant growth lamps can be remotely controlled to enable various light intensity match proportions of RGB (red, green and blue) lights of the LED plant growth lamps to be helpful to growth of various plants.

Description

The remote control of LED plant growth lamp
Technical field
The utility model relates to the controlled in wireless technical field, specifically, relates to a kind of remote control of LED plant growth lamp.
Background technology
The LED plant growth lamp has progressed into the light filling lighting field of agricultural planting, plant cultivation; Different floristics and same kind plant are different at different growth phases to the demand of light, and people have to color and the light intensity of a plurality of LED plant growth lamps of frequent manual adjustment to satisfy the photosynthetic demand of various plants kind.
Along with improving constantly of cordless communication network technical merit, ZigBee alliance has defined the controlled in wireless standard about light, makes short-distance wireless communication technology be applied to lighting field.The ZigBee network technology is the basis of wireless network short distance control, no matter is domestic lighting or plant light filling, all can use the ZigBee wireless control network.
The utility model content
The utility model technical problem to be solved is: a kind of remote control of LED plant growth lamp is provided, through the short distance straighforward operation of remote controller, realizes the multiple beam intensity ratio of the LED plant growth lamp of different colours, satisfy the illumination demand of plant.
For solving above technical scheme, the utility model takes following technical scheme to realize: a kind of remote control of LED plant growth lamp comprises remote controller, wireless signal receiver and a plurality of tunable optical power supply; Said remote controller emissioning controling signal is given said wireless signal receiver; Said wireless signal receiver receives control signal and is converted into the PWM value exports to said tunable optical power supply; The input of each tunable optical power supply connects civil power; Output connects a kind of LED plant growth lamp of color, and the PWM control end connects a PWM output pin of said wireless signal receiver.
Further: said remote controller mainly is made up of chip module, antenna, rotary switch, trigger switch, mains switch, indicator light and battery; Said antenna, rotary switch, trigger switch and battery all are connected with said chip module; Said mains switch and indicator light are connected on the battery; Said rotary switch comprises red rotary switch, green rotary switch and blue rotary switch, and a plurality of gears are arranged on each switch; Said trigger switch comprises signal emission key and signal at stop key.
Further: said wireless signal receiver mainly is made up of chip module, antenna and battery; Said antenna all is connected with said chip module with battery.
Further: said wireless signal receiver connects a tunable optical power supply at least, and each tunable optical power supply connects a kind of LED plant growth lamp of color.
Further: the light emitting source of said LED plant growth lamp adopts LED lamp bar.
The utility model advantage and beneficial effect specifically comprise the following aspects:
1. in the remote control of the utility model LED plant growth lamp; Corresponding 10 gears of the rotary switch of each color or more a plurality of gear on the remote controller; Realize the multiple light intensity proportioning of LED plant growth lamp RGB three coloured light, be not only applicable to the light demand of any plant growth, and the light demand of the different growth phases of same plant; So can effectively avoid a LED plant growth lamp can only increase operation rate to the drawback of kind of plant use;
2. in the remote control of the utility model LED plant growth lamp, remote controller adopts multichannel control LED plant growth lamp only to need very little electric current just can realize higher luminous efficiency, not only environmental protection but also energy-conservation;
3. the remote control of the utility model LED plant growth lamp has been used the ZigBee wireless communication technology, networking flexibility, and a remote controller can be controlled a plurality of wireless signal receivers, thus can energy-conservation resource, and be user-friendly to;
4. the operating remote controller INTERFACE DESIGN becomes rotary switch and button pattern, and is simple to operate.
Description of drawings
Fig. 1 is the operation principle sketch map of the remote control of the utility model LED plant growth lamp;
Fig. 2 is the circuit theory sketch map of remote controller in the remote control of the utility model LED plant growth lamp;
Fig. 3 is the circuit theory sketch map of wireless signal receiver in the remote control of the utility model LED plant growth lamp.
Embodiment
With reference to accompanying drawing 1-3 the technical scheme of the utility model is described in detail below.
As shown in Figure 1, be the operation principle sketch map of the remote control of the utility model LED plant growth lamp.The remote control of LED plant growth lamp comprises remote controller, wireless signal receiver and three tunable optical power supplys; The remote controller emissioning controling signal is given wireless signal receiver; Wireless signal receiver receives control signal and is converted into the PWM value exports to the tunable optical power supply; The input of each tunable optical power supply connects civil power, and output connects a kind of LED plant growth lamp of color, and the PWM control end connects a PWM output pin of wireless signal receiver.
As shown in Figure 2, be the circuit theory sketch map of remote controller in the remote control of the utility model LED plant growth lamp.Remote controller mainly is made up of chip module, antenna, three rotary switches, two trigger switches, mains switch, indicator light and batteries; Antenna, three rotary switches, two trigger switches all are connected with chip module with battery; Mains switch and indicator light are connected on the battery.
Chip module in the remote controller adopts ZIGBEE integrated chip CC2530, circuit such as built-in CPU, PWM controller and RF.C2530 provides the link-quality of 101dB, outstanding receiver sensitivity and antijamming capability, four kinds of powering modes, 21 general purpose I/O pins.Except strengthening the 8051MCU kernel through outstanding RF performance, selectivity and industrywide standard; Support general low-consumption wireless communication; Provide the ZigBee2007/PRO/RF4CE protocol stack to simplify exploitation, suitable system configuration meets worldwide radio frequency rules.
Three rotary switches on the remote controller are respectively: red rotary switch (SW-R), green rotary switch (SW-G) and blue rotary switch (SW-B); Each rotary switch has 10 gears (to be respectively 1; 2; 3-10 keeps off) or a plurality of gear, a pwm control signal value in the corresponding chip of each gear.Mains switch adopts Push switch, and battery adopts the 3V power supply, presses mains switch, and indicator light is bright.Two trigger switches are respectively: signal emission key (SW1) and signal at stop key (SW2) click signal emission key (SW1), the antenna emissioning controling signal; Click signal at stop key (SW2), control signal output PWM value is zero.
As shown in Figure 3, be the circuit theory sketch map of wireless signal receiver in the remote control of the utility model LED plant growth lamp.Wireless signal receiver mainly is made up of chip module, antenna and battery; Antenna all is connected with chip module with battery.
Chip module in the wireless signal receiver adopts integrated chip CC2530, circuit such as built-in CPU, PWM controller and RF.The PWM output pin that the PWM controller has multichannel independently to control, each pin connects the PWM control end of a tunable optical power supply.
After the antenna of wireless signal receiver receives the control signal of remote controller emission; CPU in the CC2530 chip changes into corresponding PWM value; Export to corresponding tunable optical power supply through the PWM pin of the PWM controller in the CC2530 chip again, each tunable optical power supply is according to the LED plant growth lamp of the corresponding electric current supply corresponding color of PWM value output.When the PWM value when higher, the light intensity of the LED plant growth lamp of corresponding color is higher, when the PWM value was low, the light intensity of the LED plant growth lamp of corresponding color was just lower.Because each LED plant growth lamp all has the tunable optical power supply of a correspondence to control, and can export the beam intensity ratio of controlling the LED plant growth lamp through the electric current of remote control adjustment tunable optical power supply.
Illustrate; Rotate red rotary switch (SW-R) to 1 retaining, green rotary switch (SW-G) to 2 retainings and blue rotary switch (SW-B) to 3 retainings; Control signal value a in the corresponding CC2530 chip of red rotary switch (SW-R), green rotary switch (SW-G) corresponding control signal value b, blue rotary switch (SW-B) corresponding control signal value c; Click signal emission key (SW1), control signal value a, b and c launch through antenna.After the antenna of wireless signal receiver receives control signal value a, b and the c of remote controller emission; CPU in the CC2530 chip changes into corresponding PWM value; Be respectively PWM1; PWM2 and PWM3; The PWM value is exported to three tunable optical power supplys through three pin correspondences of PWM controller, controls the electric current of tunable optical power supply output setting and supplies with red LED plant growth lamp, green LED plant growth lamp and blue led plant growth lamp respectively, and the beam intensity ratio of three kinds of color LED plant growth lamps is red: green: indigo plant is 1:2:3.When three rotary switches that rotate remote controller again arrive different gears; Corresponding control signal value changes; The PWM value of wireless signal receiver also can change; The output current respective change of tunable optical power supply, the beam intensity ratio of LED plant growth lamp changes, thereby reaches the purpose of the control LED plant growth lamp RGB three coloured light beam intensity ratios that use a teleswitch.
Utilize the described technical scheme of the utility model, or those skilled in the art designs the similar techniques scheme under the inspiration of the utility model technical scheme, and reach above-mentioned technique effect, all fall into the protection range of the utility model.

Claims (5)

1. the remote control of a LED plant growth lamp is characterized in that: comprise remote controller, wireless signal receiver and a plurality of tunable optical power supply; Said remote controller emissioning controling signal is given said wireless signal receiver; Said wireless signal receiver receives control signal and is converted into the PWM value exports to said tunable optical power supply; The input of each tunable optical power supply connects civil power; Output connects a kind of LED plant growth lamp of color, and the PWM control end connects a PWM output pin of said wireless signal receiver.
2. the remote control of LED plant growth lamp according to claim 1 is characterized in that: said remote controller mainly is made up of chip module, antenna, rotary switch, trigger switch, mains switch, indicator light and battery; Said antenna, rotary switch, trigger switch and battery all are connected with said chip module; Said mains switch and indicator light are connected on the battery; Said rotary switch comprises red rotary switch, green rotary switch and blue rotary switch, and a plurality of gears are arranged on each switch; Said trigger switch comprises signal emission key and signal at stop key.
3. the remote control of LED plant growth lamp according to claim 1 is characterized in that: said wireless signal receiver mainly is made up of chip module, antenna and battery; Said antenna all is connected with said chip module with battery.
4. the remote control of LED plant growth lamp according to claim 1 is characterized in that: said wireless signal receiver connects a tunable optical power supply at least, and each tunable optical power supply connects a kind of LED plant growth lamp of color.
5. the remote control of LED plant growth lamp according to claim 4 is characterized in that: the light emitting source of said LED plant growth lamp adopts the monochromatic LED lamp bar.
CN2012200606323U 2012-02-24 2012-02-24 Remote control device for LED plant growth lamps Expired - Fee Related CN202488827U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012200606323U CN202488827U (en) 2012-02-24 2012-02-24 Remote control device for LED plant growth lamps

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2012200606323U CN202488827U (en) 2012-02-24 2012-02-24 Remote control device for LED plant growth lamps

Publications (1)

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CN202488827U true CN202488827U (en) 2012-10-10

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103047571A (en) * 2012-12-27 2013-04-17 青岛盛嘉信息科技有限公司 LED lamp capable of accelerating growth of plants
CN105939557A (en) * 2016-06-23 2016-09-14 深圳市前海小沃科技有限公司 Multifunctional intelligent interactive care lamp

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103047571A (en) * 2012-12-27 2013-04-17 青岛盛嘉信息科技有限公司 LED lamp capable of accelerating growth of plants
CN105939557A (en) * 2016-06-23 2016-09-14 深圳市前海小沃科技有限公司 Multifunctional intelligent interactive care lamp

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121010

Termination date: 20150224

EXPY Termination of patent right or utility model