CN214256118U - Integrated multifunctional power supply of plant lighting lamp - Google Patents

Integrated multifunctional power supply of plant lighting lamp Download PDF

Info

Publication number
CN214256118U
CN214256118U CN202120350347.4U CN202120350347U CN214256118U CN 214256118 U CN214256118 U CN 214256118U CN 202120350347 U CN202120350347 U CN 202120350347U CN 214256118 U CN214256118 U CN 214256118U
Authority
CN
China
Prior art keywords
power supply
module
output interface
dimming
input interface
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.)
Active
Application number
CN202120350347.4U
Other languages
Chinese (zh)
Inventor
谈会诗
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.)
Dongguan Haiyue Intelligent Technology Co ltd
Original Assignee
Shenzhen Haixing Technology Co ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Shenzhen Haixing Technology Co ltd filed Critical Shenzhen Haixing Technology Co ltd
Priority to CN202120350347.4U priority Critical patent/CN214256118U/en
Application granted granted Critical
Publication of CN214256118U publication Critical patent/CN214256118U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

The utility model discloses a plant lighting lamp integrated multifunctional power supply, which comprises a power supply shell, a single chip microcomputer arranged in the power supply shell, an AC input interface and an AC output interface which are arranged at one end of the power supply shell and connected with the single chip microcomputer, and a dimming module arranged at the other end of the power supply shell and connected with the single chip microcomputer and a first output interface used for connecting a plant lighting lamp; the AC input interface is connected with the AC output interface in parallel, the AC input interface of one power supply is used for being connected with commercial power, and the AC output interface is used for being connected with the AC input interface of the other power supply to supply power to the AC input interface. The utility model relates to a rationally, compact structure can establish ties a plurality of powers through AC input interface and AC output interface, and then inserts the commercial power with the AC input interface of one of them power and can supply power to a plurality of powers, solves the problem that the wiring is troublesome, the installation is complicated, and the practicality is strong.

Description

Integrated multifunctional power supply of plant lighting lamp
Technical Field
The utility model relates to a power technical field especially relates to a plant light integrated form multifunctional power supply.
Background
Present plant light power function is more single, and all adopt single AC output line and transfer light, when the installation power promptly, need all insert the commercial power with each power and just can use through the socket, simultaneously, can only carry out single light modulation, wiring through adjusting light line to each plant light, and it is troublesome to adjust luminance, and consuming time and wasting power, and it is relatively poor to use experience degree.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a plant lighting lamp integrated form multifunctional power supply, this power reasonable in design, compact structure can establish ties a plurality of powers through AC input interface and AC output interface, and then inserts the commercial power with the AC input interface of one of them power and can supply power to a plurality of powers, solves the problem that the wiring is troublesome, the installation is complicated, and the practicality is strong.
In order to realize the purpose, the following technical scheme is adopted:
a plant lighting lamp integrated multifunctional power supply comprises a power supply shell, a single chip microcomputer arranged in the power supply shell, an AC input interface and an AC output interface which are arranged at one end of the power supply shell and connected with the single chip microcomputer, a dimming module arranged at the other end of the power supply shell and connected with the single chip microcomputer, and a first output interface used for accessing a plant lighting lamp; the AC input interface is connected with the AC output interface in parallel, the AC input interface of one power supply is used for being connected with commercial power, and the AC output interface is used for being connected with the AC input interface of the other power supply to supply power to the AC input interface.
Furthermore, the dimming module comprises a dimming knob installed at one end of the power supply shell, and an adjustable resistor and a resistor sampling unit connected between the single chip microcomputer and the dimming knob.
Furthermore, the dimming module also comprises a dimming interface, a network input interface and a network output interface which are arranged at one end of the power supply shell and connected with the single chip microcomputer; the network input interface and the network output interface are used for connecting a plurality of power supplies in series, and the dimming interface of one power supply is used for being connected into external dimming equipment so as to perform integral dimming on the plant lighting lamp.
Furthermore, the integrated multifunctional power supply of the plant lighting lamp also comprises a PWM control module, a detection control feedback module and a constant current detection module; an EMC filtering module, a PFC boosting module, a PWM switch switching module and a rectifying and filtering module are sequentially connected between the AC input interface, the AC output interface and the first output interface; the single chip microcomputer is respectively connected with the PFC boosting module and the PWM switch switching module through the PWM control module, and is also sequentially connected with the rectification filter module through the detection control feedback module, the constant current detection module and the PWM switch switching module; and the PWM control module is also connected with a detection control feedback module.
Further, one end of the power supply shell is also provided with a DC output interface for supplying power to other equipment.
Further, the power supply housing comprises a mounting shell and two end covers; the mounting shell is provided with a first containing cavity with openings at two ends, and the single chip microcomputer is arranged in the first containing cavity; and connecting plates are further uniformly arranged at two ends of the mounting shell, and each end cover is fixedly connected with the end part of the mounting shell through one connecting plate.
Furthermore, two sides of the connecting plate are provided with extension fixing parts respectively, and the two extension fixing parts extend towards the first cavity and the inner part of the end cover respectively; and a plurality of fixing holes are formed in the top of the extending fixing part at intervals in the length direction and used for mounting screws so as to lock and fix the end cover and the mounting shell.
Further, an accommodating groove is further formed in the two sides of the mounting shell along the length direction of the mounting shell, and a hook is further arranged at the corresponding position of the two ends of each connecting plate and the accommodating groove.
Furthermore, the surface of the mounting shell is also provided with a plurality of radiating fins.
Adopt above-mentioned scheme, the beneficial effects of the utility model are that:
1) a plurality of power supplies can be connected in series through the AC input interface and the AC output interface, and then the AC input interface of one power supply is connected with commercial power to supply power to the plurality of power supplies, so that the problems of troublesome wiring and complex installation are solved, and the practicability is high;
2) the power supply shell is provided with the dimming knob, so that the plant illuminating lamp can be directly dimmed, and the operation is simple and convenient;
3) the network input interface and the network output interface can connect a plurality of power supplies in series, and then the dimming interface of one power supply is connected to external dimming equipment, so that the plant lighting lamp can be uniformly and integrally dimmed, and dimming is convenient;
4) the DC output interface is arranged, so that power can be supplied to other equipment needing power, and the device is simple and practical;
5) the installation shell is provided with the hooks, so that the power supply is conveniently and fixedly installed outside and is convenient to install.
Drawings
FIG. 1 is an exploded view of the present invention;
FIG. 2 is an exploded view of FIG. 1 from another perspective;
FIG. 3 is a schematic block diagram of the present invention;
wherein the figures identify the description:
1-power supply housing; 2, a singlechip;
3-an AC input interface; 4-an AC output interface;
5-a dimming module; 6-a first output interface;
11-mounting the housing; 12-end cap;
13-connecting plate; 14-an extension fixing part;
15-hanging hooks; 21-PWM control module;
22-detection control feedback module; 23, a constant current detection module;
24-EMC filtering module; 25-PFC boost module;
26-PWM switch switching module; 27-a rectifying and filtering module;
28-DC output interface; 51-a dimming knob;
52-resistance sampling unit; 53-dimming interface;
54-network input interface; 55-network output interface.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1 to 3, the utility model provides a plant lighting lamp integrated multifunctional power supply, which comprises a power supply shell 1, a single chip microcomputer 2 arranged in the power supply shell 1, an AC input interface 3 and an AC output interface 4 which are arranged at one end of the power supply shell 1 and connected with the single chip microcomputer 2, a dimming module 5 arranged at the other end of the power supply shell 1 and connected with the single chip microcomputer 2, and a first output interface 6 for accessing a plant lighting lamp; the AC input interface 3 and the AC output interface 4 are connected in parallel, the AC input interface 3 of one power supply is used for accessing commercial power, and the AC output interface 4 is used for accessing the AC input interface 3 of the other power supply to supply power to the other power supply.
The dimming module 5 comprises a dimming knob 51 installed at one end of the power supply shell 1, and an adjustable resistor and a resistor sampling unit 52 connected between the single chip microcomputer 2 and the dimming knob 51; the dimming module 5 further comprises a dimming interface 53, a network input interface 54 and a network output interface 55 which are arranged at one end of the power supply shell 1 and connected with the singlechip 2; the network input interface 54 and the network output interface are used for connecting a plurality of power supplies in series, and the dimming interface 53 of one power supply is used for connecting an external dimming device, so as to perform overall dimming on the plant lighting lamp.
The integrated multifunctional power supply of the plant lighting lamp also comprises a PWM control module 21, a detection control feedback module 22 and a constant current detection module 23; an EMC filtering module 24, a PFC boosting module 25, a PWM switch switching module 26 and a rectifying and filtering module 27 are further connected between the AC input interface 3, the AC output interface 4 and the first output interface 6 in sequence; the single chip microcomputer 2 is respectively connected with the PFC boosting module 25 and the PWM switch switching module 26 through the PWM control module 21, and the single chip microcomputer 2 is also sequentially connected with the rectification filter module 27 through the detection control feedback module 22, the constant current detection module 23 and the PWM switch switching module; the PWM control module 21 is also connected with a detection control feedback module 22; one end of the power supply shell 1 is also provided with a DC output interface 28 for supplying power to other equipment; the power supply shell 1 comprises a mounting shell 11 and two end covers 12; the mounting shell 11 is provided with a first containing cavity with openings at two ends, and the single chip microcomputer 2 is arranged in the first containing cavity; a connecting plate 13 is further arranged at each of two ends of the mounting shell 11, and each end cover 12 is fixedly connected with the end part of the mounting shell 11 through a connecting plate 13; two sides of the connecting plate 13 are provided with an extending fixing part 14, and the two extending fixing parts 14 extend into the first cavity and the end cover 12 respectively; a plurality of fixing holes are further formed in the length direction of the top of the extending fixing portion 14 at intervals, and the fixing holes are used for mounting screws so as to lock and fix the end cover 12 and the mounting shell 11; both sides of the mounting shell 11 are provided with accommodating grooves along the length direction, and both ends of each connecting plate 13 are provided with hooks 15 corresponding to the accommodating grooves; the surface of the mounting shell 11 is also provided with a plurality of heat dissipation fins.
The utility model discloses the theory of operation:
with continued reference to fig. 1 to 3, in the present embodiment, the power supply housing 1 of the power supply includes a mounting case 11, two connecting plates 13, and two end caps 12; each end cover 12 is fixedly connected with the end part of the mounting shell 11 through a connecting plate 13, and the assembly is convenient; the surface of the mounting shell 11 is provided with a plurality of radiating fins which can radiate the power supply shell 1, two ends of each connecting plate 13 are respectively provided with a hook 15 which extends towards the accommodating groove, a fixing piece can be mounted to fix the connecting plate on the outside, and the connecting plate can also be directly hung on the outside through the two hooks 15 on one side of the mounting shell 11, so that the mounting is convenient; each power supply shell 1 is provided with an AC input interface 3 and an AC output interface 4 which are connected in parallel, when two power supplies or a plurality of power supplies are installed together, the first power supply is connected with commercial power through a standard power line and the AC input interface 3, the second power supply inserts one end of the power line into the AC output interface 4 of the first power supply, the other end of the power line into the AC input interface 3 of the power supply, the third power supply inserts one end of the power line into the AC output interface 4 of the second power supply, the other end of the power line into the AC input interface 3 of the power supply, and so on, a plurality of power supplies can be connected in series, and then the power supplies are unified, thereby solving the problems of troublesome wiring and complex installation; still be connected with EMC filtering module 24 between AC input interface 3 and AC output interface 4 and the first output interface 6 in proper order, PFC boost module 25, PWM switch switches module 26 and rectification filtering module 27, can filter the electric energy, boost, pulse width modulation, the rectification and then supply power to the plant lighting lamp through first output interface 6, simultaneously, singlechip 2 still can detect voltage and current through constant current detection module 23, detect control feedback module 22 and control PFC boost module 25 and PWM switch module 26 work through PWM control module 21, guarantee the security of power supply.
Similarly, a plurality of power supplies can be connected in series through the network input interface 54 and the network output interface, and then the dimming interface 53 of one of the power supplies is connected to an external dimming device (dimmer), so that the plant lighting lamp can be uniformly and integrally dimmed, and the dimming is convenient.
Simultaneously, still be equipped with dimming knob 51 on each power casing 1, dimming knob 51 connects adjustable resistance, and resistance sampling unit 52 transmits adjustable resistance voltage signal for singlechip 2 through the collection and does the function judgement and signal processing, and then directly adjusts luminance to the light, specifically as follows:
1) when the single chip microcomputer 2 receives the 4.5V-5V signal, 110% rated power is output and used for accelerating the production of fruits of plants or limited components in a specific period;
2) when the single chip microcomputer 2 receives a 0.5V-4.5V signal, the linear dimming of the rated power of 5% -100% is performed, and the linear dimming is used for the illumination requirements of plants in different time periods;
3) when the single chip microcomputer 2 receives the 0V-0.5V signal, the unified dimming of a plurality of power supplies can be realized through the dimming interface 53.
In addition, each power supply shell 1 still is equipped with DC output interface 28, can supply power to other equipment that need the power consumption, if when output current is 1 ~ 5A (voltage is between 12 ~ 60V), can directly supply power for the iridescent lamp in the plant light, simple and practical.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (9)

1. The integrated multifunctional power supply for the plant lighting lamp is characterized by comprising a power supply shell, a single chip microcomputer, an AC input interface, an AC output interface, a dimming module and a first output interface, wherein the single chip microcomputer is arranged in the power supply shell; the AC input interface is connected with the AC output interface in parallel, the AC input interface of one power supply is used for being connected with commercial power, and the AC output interface is used for being connected with the AC input interface of the other power supply to supply power to the AC input interface.
2. The integrated multifunctional power supply for plant lighting lamps as claimed in claim 1, wherein the dimming module comprises a dimming knob installed at one end of the power supply housing, and an adjustable resistor and a resistor sampling unit connected between the single chip microcomputer and the dimming knob.
3. The integrated multifunctional power supply of the plant lighting lamp as claimed in claim 2, wherein the dimming module further comprises a dimming interface, a network input interface and a network output interface, which are installed at one end of the power supply housing and connected with the single chip microcomputer; the network input interface and the network output interface are used for connecting a plurality of power supplies in series, and the dimming interface of one power supply is used for being connected into external dimming equipment so as to perform integral dimming on the plant lighting lamp.
4. The plant lighting lamp integrated multifunctional power supply according to claim 3, further comprising a PWM control module, a detection control feedback module, and a constant current detection module; an EMC filtering module, a PFC boosting module, a PWM switch switching module and a rectifying and filtering module are sequentially connected between the AC input interface, the AC output interface and the first output interface; the single chip microcomputer is respectively connected with the PFC boosting module and the PWM switch switching module through the PWM control module, and is also sequentially connected with the rectification filter module through the detection control feedback module, the constant current detection module and the PWM switch switching module; and the PWM control module is also connected with a detection control feedback module.
5. The integrated multifunctional power supply for the plant lighting lamp as claimed in claim 4, wherein one end of the power supply housing is further provided with a DC output interface for supplying power to other devices.
6. The plant lighting integrated multifunctional power supply according to claim 1, wherein the power supply housing comprises a mounting case and two end caps; the mounting shell is provided with a first containing cavity with openings at two ends, and the single chip microcomputer is arranged in the first containing cavity; and connecting plates are further uniformly arranged at two ends of the mounting shell, and each end cover is fixedly connected with the end part of the mounting shell through one connecting plate.
7. The integrated multifunctional power supply for the plant lighting lamp as claimed in claim 6, wherein two sides of the connecting plate are provided with an extending fixing portion, and the two extending fixing portions are respectively arranged to extend towards the first cavity and the inside of the end cover; and a plurality of fixing holes are formed in the top of the extending fixing part at intervals in the length direction and used for mounting screws so as to lock and fix the end cover and the mounting shell.
8. The integrated multifunctional power supply for plant lighting lamps as claimed in claim 7, wherein both sides of the mounting case are further provided with a receiving groove along the length direction thereof, and both ends of each connecting plate are further provided with a hook corresponding to the receiving groove.
9. The integrated multifunctional power supply for plant lighting lamps as claimed in claim 8, wherein a plurality of heat dissipating fins are further provided on the surface of the mounting case.
CN202120350347.4U 2021-02-07 2021-02-07 Integrated multifunctional power supply of plant lighting lamp Active CN214256118U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120350347.4U CN214256118U (en) 2021-02-07 2021-02-07 Integrated multifunctional power supply of plant lighting lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120350347.4U CN214256118U (en) 2021-02-07 2021-02-07 Integrated multifunctional power supply of plant lighting lamp

Publications (1)

Publication Number Publication Date
CN214256118U true CN214256118U (en) 2021-09-21

Family

ID=77726768

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120350347.4U Active CN214256118U (en) 2021-02-07 2021-02-07 Integrated multifunctional power supply of plant lighting lamp

Country Status (1)

Country Link
CN (1) CN214256118U (en)

Similar Documents

Publication Publication Date Title
US8253344B2 (en) Light emitting diode lighting device
CN106686798B (en) For driving the system and equipment of multiple great power LED units
US9200794B2 (en) Fan cooled LED light and housing
CN105873263B (en) Lighting device and luminaire
CN214256118U (en) Integrated multifunctional power supply of plant lighting lamp
CN211694441U (en) Lamp fitting
CN202598198U (en) Lighting emitting diode (LED) ball bulb with housing in insulated hollow thermal design
WO2013039366A2 (en) Power-saving led lighting
CN104349552B (en) Electric ballast and there is the luminaire of this electric ballast
CN102966871A (en) Heat dissipation-type LED lamp
CN205987456U (en) High power factor hangs down stroboscopic LED ceiling lamp
RU107881U1 (en) LED LAMP
US9719670B1 (en) Fan cooled LED light and housing
US9206972B1 (en) Compact LED device with cooling fan
CN212390187U (en) Intelligent lamp
CN204539556U (en) The switch dimming drive circuit of Width funtion LED and LED dimming control system
CN210179488U (en) Outdoor emergency induction industrial and mining lamp
CN215300972U (en) Light-emitting circuit and lamp
CN107620908B (en) High-voltage constant-current chip and constant-current power supply
CN215500083U (en) Portable direct current light-operated controller and dimming power supply
CN104837276A (en) LED wireless control system capable of being compatible with phase cut dimming and control method
CN215259281U (en) Special lamp holder for semiconductor light source capable of reducing irradiation dark area
CN218473440U (en) DC12/24V universal voltage module
CN212808987U (en) Novel servo driver
CN212851094U (en) Low-voltage dimming LED lamp track system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20240318

Address after: Room 1305, Building 1, Songhu Zhigu Industrial Building, No. 9 Liaobu Yanhe South Road, Liaobu Town, Dongguan City, Guangdong Province, 523401

Patentee after: Dongguan Haiyue Intelligent Technology Co.,Ltd.

Country or region after: China

Address before: 518000 building A6, haosilinpokeng Industrial Zone, Shajing street, Bao'an District, Shenzhen City, Guangdong Province

Patentee before: SHENZHEN HAIXING TECHNOLOGY Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right