CN215982445U - Fin heat dissipation formula light filling lamp - Google Patents

Fin heat dissipation formula light filling lamp Download PDF

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Publication number
CN215982445U
CN215982445U CN202122617602.XU CN202122617602U CN215982445U CN 215982445 U CN215982445 U CN 215982445U CN 202122617602 U CN202122617602 U CN 202122617602U CN 215982445 U CN215982445 U CN 215982445U
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lamp
fins
photon flux
light supplement
heat dissipation
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CN202122617602.XU
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陈海伦
陈正盘
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Shenzhen Enlite Energy Technology Co ltd
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Shenzhen Enlite Energy Technology Co ltd
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Abstract

The utility model belongs to the technical field of biological light supplement, and particularly relates to a fin heat dissipation type light supplement lamp which comprises a bracket, fins and a lamp panel; the bracket is used for mounting and connecting the fin heat dissipation type light supplement lamp; the lamp comprises a lamp panel, a support, fins, lamp beads, lamp rods and lamp holders, wherein the fins are arranged in the middle of the support, four side faces of the fins are connected with the support respectively, the top faces of the fins are arranged in an empty mode, the bottom face of the fins is provided with the lamp panel, and the lamp beads are regularly arranged on the lamp panel. The fin heat dissipation type light supplement lamp provided by the embodiment of the utility model utilizes the empty fins to transfer heat generated by the operation of the lamp beads, thereby achieving the purpose of effectively reducing the temperature, having simple structure, reducing the whole volume and saving the manufacturing and transportation cost.

Description

Fin heat dissipation formula light filling lamp
Technical Field
The utility model belongs to the technical field of biological light supplement, and particularly relates to a fin heat dissipation type light supplement lamp.
Background
An important aspect of modern agriculture is the large-scale planting of crops, and soilless culture is an important mode of large-scale planting and is generally carried out in a planting greenhouse. The planting greenhouse can provide stable environmental conditions, is not influenced by external environment, creates conditions for continuous growth of crops all the year round, can realize out-of-season planting and continuous planting of the crops, and has high yield and stable and controllable quality.
In the crop planting process, light supplement is an important link. The supplementary lighting needs to provide illumination with sufficient intensity to meet the needs of crops, and meanwhile, illumination with corresponding spectrums is provided according to the needs of different crops for different spectrums. The purpose of supplementary lighting is achieved by using the supplementary lighting to illuminate crops.
In the prior art, the light supplement lamp is large in size, poor in heat dissipation effect, high in production and transportation cost and needs to be improved.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model aims to provide a fin radiating type light supplement lamp, and aims to solve the problems that in the prior art, the light supplement lamp is large in size, poor in radiating effect, high in production and transportation cost and needs to be improved.
The embodiment of the utility model is realized in such a way that the fin heat dissipation type light supplement lamp comprises a bracket, fins and a lamp panel;
the bracket is used for mounting and connecting the fin heat dissipation type light supplement lamp;
the lamp comprises a lamp panel, a support, fins, lamp beads, lamp rods and lamp holders, wherein the fins are arranged in the middle of the support, four side faces of the fins are connected with the support respectively, the top faces of the fins are arranged in an empty mode, the bottom face of the fins is provided with the lamp panel, and the lamp beads are regularly arranged on the lamp panel.
Preferably, the bracket comprises two side plates, and the two side plates are respectively positioned on two opposite side surfaces of the fin;
the side plates are provided with strip-shaped grooves, and the strip-shaped grooves are in insertion fit with the edges of the fins;
the upper sides of the fins are provided with one or more hooks, two ends of each hook are connected with the side plates respectively, and the hooks are used for hanging the fin heat dissipation type light supplement lamps.
Preferably, the fins are made of aluminum material by bending;
the lower sides of the fins are located at the bottom of the lamp panel, and a radiator is arranged on the lamp panel and covers the lamp panel.
Preferably, the fin heat dissipation type light supplement lamp further comprises a power supply, and the power supply is used for supplying power to the lamp beads;
the power is provided with two, be provided with power support piece on two other relative sides of fin, power support piece's transversal L type of personally submitting, the power set up in on the power support piece, still be provided with the apron on the power support piece, the apron is used for hiding of power.
Preferably, the lamp panel comprises a substrate and a lamp bead positioned on the substrate;
the substrate is made of an aluminum plate;
the lamp beads are arranged on the substrate, three-proofing glue is filled between the lamp beads, and the lamp beads are electrically connected with the power supply.
Preferably, the fin heat dissipation type light supplement lamp further comprises a control port and a power adjusting knob;
the control port is used for controlling the on and off of the lamp bead;
the power adjusting knob is used for adjusting the power of the fin heat dissipation type light supplement lamp.
Preferably, the lamp beads comprise first lamp beads, the photosynthetic photon flux of the first lamp beads is 2145 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 323.2umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 853.3umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 968.7 umol/s.
Preferably, the lamp beads comprise second lamp beads, the photosynthetic photon flux of the second lamp beads is 11.3umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 0.0umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 0.008umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 11.29 umol/s.
Preferably, the lamp beads comprise third lamp beads, the photosynthetic photon flux of the third lamp beads is 148.9umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 0.0014umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 0.07umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 148.9 umol/s.
Preferably, the lamp beads comprise fourth lamp beads, the photosynthetic photon flux of the fourth lamp beads is 1993 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 332.4umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 858.7umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 811.9 umol/s.
The fin heat dissipation type light supplement lamp provided by the embodiment of the utility model utilizes the empty fins to transfer heat generated by the operation of the lamp beads, so that the aim of effectively cooling is fulfilled, one side of each fin is empty, and the other side of each fin is connected with the lamp panel, so that the heat can be quickly transferred; the light supplementing lamp is convenient to mount and connect through the support. The utility model has simple structure, reduces the whole volume and saves the manufacturing and transportation cost.
Drawings
Fig. 1 is an exploded view of a fin-type heat-dissipating light supplement lamp according to an embodiment of the present invention.
In the drawings: 1. hooking; 2. a control port; 3. a side plate; 4. a cover plate; 5. a power source; 6. a power supply support; 7. a fin; 8. a heat sink; 9. and a lamp panel.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Specific implementations of the present invention are described in detail below with reference to specific embodiments.
As shown in fig. 1, an explosion structure diagram of a fin 7 heat dissipation type fill light provided in an embodiment of the present invention is shown, where the fin 7 heat dissipation type fill light includes a bracket, a fin 7, and a lamp panel 9;
the bracket is used for installing and connecting the heat dissipation type light supplementing lamp of the fin 7;
fin 7 set up in the middle part of support, four sides of fin 7 respectively with leg joint, fin 7's top surface sets up to the air, fin 7's bottom surface is provided with lamp plate 9, the lamp pearl of having arranged regularly on the lamp plate 9.
In the embodiment of the utility model, the bracket is used for mounting and connecting the light supplement lamp, optionally, the bracket can be used for being connected with a base plate or a base or a top plate, and when the light supplement lamp is used, the light supplement lamp can be mounted in a flat manner, a hanging manner and the like.
In the embodiment of the present invention, the top surface of the fin 7 is disposed in the empty space, and the bottom surface is connected to the lamp panel 9, preferably, the top surface and the bottom surface are two opposite surfaces of the fin 7 as a whole, and are two surfaces with the largest whole area of the fin 7, so that the heat conduction effect can be increased. The top surfaces of the fins 7 are arranged in an empty mode, and heat on the fins 7 can be driven by the flowing of air, so that heat dissipation is achieved. It should be understood that the top surface and the bottom surface are opposite, the utility model is described with reference to the suspension state of the fill light, and in different usage scenarios, the top surface and the bottom surface may be inverted and oriented horizontally or arranged at any angle with respect to the horizontal direction, which does not affect the essence of the solution of the utility model, and is only the difference in description.
In the embodiment of the present invention, the bottom surface of the fin 7 is provided with the lamp panel 9, and the lamp panel 9 is provided with at least one lamp bead, preferably, in an embodiment provided by the present invention, four lamp beads are provided on the lamp panel 9, and the spectrum of light emitted by each lamp bead is different, and by controlling the on-off combination of the four lamp beads (including the number of the on-off lamp beads, the number of each lamp bead, and the positions of the on-off lamp beads), light beams with different spectra can be obtained, so as to meet the needs of different plants.
The fin 7 heat dissipation type light supplement lamp provided by the embodiment of the utility model utilizes the empty fin 7 to transfer heat generated by the operation of the lamp bead so as to achieve the purpose of effective cooling, one side of the fin 7 is empty, and the other side is connected with the lamp panel 9, so that the heat can be transferred quickly; the light supplementing lamp is convenient to mount and connect through the support. The utility model has simple structure, reduces the whole volume and saves the manufacturing and transportation cost.
In one embodiment of the present invention, the bracket includes two side plates 3, and the two side plates 3 are respectively located on two opposite side surfaces of the fin 7;
a strip-shaped groove is formed in the side plate 3 and is in inserted fit with the edge of the fin 7;
one or more hooks 1 are arranged on the upper side of the fin 7, two ends of each hook 1 are connected with the side plates 3 respectively, and the hooks 1 are used for hanging the heat dissipation type light supplement lamps of the fin 7.
In the embodiment of the present invention, the strip-shaped groove may be a through groove or a groove, which is an optional specific implementation manner, the strip-shaped groove is inserted into the edge of the fin 7 to realize the positioning of the side plate 3, and then the side plate 3 may be fixed on the fin 7 by a screw.
In the embodiment of the utility model, the light supplement lamp is further provided with a hook 1, the hook 1 is positioned on the upper side of the top of the fin 7, two ends of the hook 1 are connected with the side plate 3, and the hook 1 is integrally in an inverted V-shaped structure. Optionally, the hook 1 is provided with two hooks, so that the light supplement lamp can be hung.
In one embodiment of the present invention, the fins 7 are made of aluminum material by bending;
the lower side of the fins 7 is located at the bottom of the lamp panel 9, a radiator 8 is arranged on the lower side of the lamp panel 9, and the radiator 8 covers the lamp panel 9.
In the embodiment of the utility model, the fins 7 are made of aluminum material, so that the weight of the fins 7 can be reduced, and meanwhile, the aluminum material has better heat conductivity and is beneficial to heat dissipation. In the embodiment of the utility model, the fin 7 is made of bent aluminum material, can be made of a thin aluminum material through repeated reciprocating bending, and can also be made of a plurality of aluminum materials through splicing.
In the embodiment of the utility model, the lower side of the fin 7 is also provided with the heat radiator 8, the heat radiator 8 can be made of aluminum, and the heat radiator 8 is provided with a through hole or a through groove for allowing light of a lamp bead to pass through. The lamp panel 9 downside of can being convenient for dispel the heat in the setting of radiator 8.
In an embodiment of the utility model, the fin 7 heat dissipation type light supplement lamp further comprises a power supply 5, and the power supply 5 is used for supplying power to the lamp bead;
the power 5 is provided with two, be provided with power support piece 6 on two other relative sides of fin 7, power support piece 6's cross-section is the L type, power 5 set up in on the power support piece 6, still be provided with apron 4 on the power support piece 6, apron 4 is used for hiding of power 5.
In the embodiment of the utility model, the power supply 5 can adopt a storage battery, and the scheme provided by the embodiment of the utility model adopts a double-power supply 5 scheme, so that the overall gravity of the light supplement lamp can be balanced, and the cruising ability of the light supplement lamp is improved. In the embodiment of the utility model, the other two opposite side surfaces of the fin 7 are provided with the power supply support 6, the cross section of the power supply support 6 is L-shaped, the power supply 5 is arranged on the power supply support 6, the power supply support 6 is also provided with the cover plate 4, and the top surface of the cover plate 4 is arc-shaped.
In one embodiment of the present invention, the lamp panel 9 includes a substrate and a lamp bead located on the substrate;
the substrate is made of an aluminum plate;
the lamp pearl set up in on the base plate, and it has three proofings to glue to fill between the pearl lamp, lamp pearl and 5 electric connection of power.
In the embodiment of the utility model, the substrate is formed by adding copper sheets and heat-conducting silicone grease on an aluminum plate with the heat dissipation and conduction speed meeting the requirement. The lamp panel 9 is formed by mounting the bio-optical lamp bead on an aluminum substrate printed with a lead-free solder paste through Surface mounting equipment, welding the lead-free solder paste, the bio-optical lamp bead, an SMD terminal (Surface Mounted Device) and the aluminum substrate together through reflow soldering, and printing a three-proofing adhesive after the lighting test is finished. The three-proofing glue is white or transparent, meets the requirements on viscosity, transparency and sealing property, can prevent water, moisture and oxidation, is used for filling gaps between lamp beads, has no gap, and meets the requirements on water, moisture, oxidation and dust prevention.
In an embodiment of the present invention, the fin 7 heat dissipation type light supplement lamp further includes a control port 2 and a power adjustment knob;
the control port 2 is used for controlling the on and off of the lamp beads;
the power adjusting knob is used for adjusting the power of the heat dissipation type light supplement lamp of the fin 7.
In the embodiment of the utility model, the power of the light supplement lamp can be adjusted through the power knob, and the power can be different, such as different brightness, and the number of the lighted lamp beads can be different. The control port 2 can control the on-off combination of the light supplement lamp beads to obtain light beams with different illumination ranges or different spectrums.
In an embodiment of the utility model, the lamp beads comprise first lamp beads, the photosynthetic photon flux of the first lamp beads is 2145 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 323.2umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 853.3umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 968.7 umol/s.
In one embodiment of the utility model, the lamp beads comprise second lamp beads, the photosynthetic photon flux of the second lamp beads is 11.3umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 0.0umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 0.008umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 11.29 umol/s.
In an embodiment of the utility model, the lamp beads comprise third lamp beads, the photosynthetic photon flux of the third lamp beads is 148.9umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 0.0014umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 0.07umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 148.9 umol/s.
In an embodiment of the utility model, the lamp beads comprise fourth lamp beads, the photosynthetic photon flux of the fourth lamp beads is 1993 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 332.4umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 858.7umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 811.9 umol/s.
In the embodiment of the present invention, the lamp panel 9 has one or more of the first lamp bead, the second lamp bead, and the fourth lamp bead at the same time, and each lamp bead has a different spectrum. According to the scheme provided by the utility model, by selecting and matching the four lamp beads, the spectrum suitable for different types of plants can be obtained through the on-off control of the types and the number of the lamp beads, the spectrum adjustable effect is realized, and the spectrum adjustable lamp is suitable for different types of plants and different generation stages of the same type of plants.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. A fin heat dissipation type light supplement lamp is characterized by comprising a support, fins and a lamp panel;
the bracket is used for mounting and connecting the fin heat dissipation type light supplement lamp;
the lamp comprises a lamp panel, a support, fins, lamp beads, lamp rods and lamp holders, wherein the fins are arranged in the middle of the support, four side faces of the fins are connected with the support respectively, the top faces of the fins are arranged in an empty mode, the bottom face of the fins is provided with the lamp panel, and the lamp beads are regularly arranged on the lamp panel.
2. The fin heat dissipation type light supplement lamp as claimed in claim 1, wherein the bracket comprises two side plates, and the two side plates are respectively located on two opposite side surfaces of the fin;
the side plates are provided with strip-shaped grooves, and the strip-shaped grooves are in insertion fit with the edges of the fins;
the upper sides of the fins are provided with one or more hooks, two ends of each hook are connected with the side plates respectively, and the hooks are used for hanging the fin heat dissipation type light supplement lamps.
3. The fin heat dissipation type light supplement lamp as claimed in claim 1, wherein the fins are made of aluminum material by bending;
the lower sides of the fins are located at the bottom of the lamp panel, and a radiator is arranged on the lamp panel and covers the lamp panel.
4. The fin-type heat-dissipating light supplement lamp according to claim 2, further comprising a power supply for supplying power to the lamp bead;
the power is provided with two, be provided with power support piece on two other relative sides of fin, power support piece's transversal L type of personally submitting, the power set up in on the power support piece, still be provided with the apron on the power support piece, the apron is used for hiding of power.
5. The fin heat dissipation type light supplement lamp according to claim 1, wherein the lamp panel comprises a substrate and a lamp bead located on the substrate;
the substrate is made of an aluminum plate;
the lamp beads are arranged on the substrate, three-proofing glue is filled between the lamp beads, and the lamp beads are electrically connected with the power supply.
6. The fin-based heat dissipating light supplement lamp of claim 1, further comprising a control port and a power adjustment knob;
the control port is used for controlling the on and off of the lamp bead;
the power adjusting knob is used for adjusting the power of the fin heat dissipation type light supplement lamp.
7. The fin heat dissipation type light supplement lamp as claimed in any one of claims 1 to 6, wherein the lamp beads comprise first lamp beads, the photosynthetic photon flux of the first lamp beads is 2145 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-600 nm range is 323.2umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm range is 853.3umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm range is 968.7 umol/s.
8. The fin heat dissipation type light supplement lamp as recited in claim 7, wherein the lamp beads comprise second lamp beads, the photosynthetic photon flux of the second lamp beads is 11.3umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 0.0umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 0.008umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 11.29 umol/s.
9. The fin heat dissipation type light supplement lamp as claimed in claim 8, wherein the lamp beads comprise third lamp beads, the photosynthetic photon flux of the third lamp beads is 148.9umol/s, wherein the photosynthetic photon flux with the wavelength of 400-600 nm range is 0.0014umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm range is 0.07umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm range is 148.9 umol/s.
10. The fin heat dissipation type light supplement lamp as claimed in claim 9, wherein the lamp beads comprise fourth lamp beads, the photosynthetic photon flux of the fourth lamp beads is 1993 umol/s, wherein the photosynthetic photon flux with the wavelength of 400-500 nm is 332.4umol/s, the photosynthetic photon flux with the wavelength of 500-600 nm is 858.7umol/s, and the photosynthetic photon flux with the wavelength of 600-700 nm is 811.9 umol/s.
CN202122617602.XU 2021-10-28 2021-10-28 Fin heat dissipation formula light filling lamp Active CN215982445U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122617602.XU CN215982445U (en) 2021-10-28 2021-10-28 Fin heat dissipation formula light filling lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122617602.XU CN215982445U (en) 2021-10-28 2021-10-28 Fin heat dissipation formula light filling lamp

Publications (1)

Publication Number Publication Date
CN215982445U true CN215982445U (en) 2022-03-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122617602.XU Active CN215982445U (en) 2021-10-28 2021-10-28 Fin heat dissipation formula light filling lamp

Country Status (1)

Country Link
CN (1) CN215982445U (en)

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