Plant growth lamp capable of supplying energy by following light
By designing a light-chasing energy-seeking plant growth light with removable clamping components and photosensitive components to adjust, the problem of insufficient light in winter at the dragon fruit planting base is solved, stable support and efficient light energy utilization are achieved, and power consumption and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422166768.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The fill-up equipment of the existing dragon fruit planting base requires long-term lighting when there is insufficient light in winter, which consumes a lot of power resources. The solar panels need to be replaced as a whole when they are damaged, and cannot be replaced in part, and lacks integrated support brackets.
Design a light-chasing plant growth lamp, including support rods, lighting devices and removable clamping components, to separate solar panels and lighting lamps through clamping components, adjust the angle of solar panels using photosensitive elements, support rods provide multi-directional support, and the motor controls the angle of lighting lamps, and supports rapid installation and disassembly.
It achieves stable support and uniform light of dragon fruit trees, reduces power consumption, supports rapid maintenance and installation, adapts to different planting needs, and improves light energy absorption efficiency.
Smart Images

Figure CN223274555U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the fields of agricultural science and technology and lighting technology, and particularly relates to a plant growth lamp that provides energy through light tracking. Background Art
[0002] In dragon fruit cultivation bases, consistent light is crucial to the growth and yield of pitaya. Pitaya is a light-loving, shade-tolerant crop that requires ample sunlight year-round. Sufficient light allows pitaya to grow rapidly, shortening its growth cycle and promoting early flowering. Good light conditions are beneficial for pitaya growth and improving fruit quality. Pitaya requires up to half a day of sunlight daily to function normally. However, most of the time, especially in winter, daylight hours are short, so supplemental lighting technology is needed to help pitaya meet its light requirements.
[0003] In order to meet the long-term lighting needs, people often extend the lighting time by means of lighting, but long-term lighting will consume a lot of electricity resources; therefore, pitaya lighting equipment for the use of the sun came into being. There are also related light-tracking devices that can make good use of solar energy to a certain extent, but they are limited to the use of solar energy. When in use, they are integral devices that cannot be disassembled. When the corresponding solar panel is damaged, it cannot be replaced locally and can only be replaced as a whole, which consumes a lot of resources. At the same time, it does not have a corresponding integrated support bracket for the pitaya tree to meet actual needs; the existing equipment still has corresponding defects to a certain extent.
[0004] Therefore, a new plant growth lamp powered by tracking light is needed to solve the above technical problems. Utility Model Content
[0005] In order to solve the above technical problems, the utility model designs a plant growth lamp powered by chasing light, comprising: a support rod and a lighting device; a crossbar is fixedly mounted on the upper end of the support rod, a plurality of extension rods are evenly spaced on the crossbar, and the ends of the extension rods are mounted with the lighting device, the lighting device comprising a lighting lamp, a motor and a clamping assembly; the lighting lamp is fixedly mounted on the lower end of the motor, the motor is fixedly mounted on the upper end of the lighting lamp, and the clamping assembly is fixedly mounted on the output shaft of the motor; the solar panel and the lighting lamp are separated by the clamping assembly;
[0006] The clamping assembly includes an upper clamping block and a lower clamping block; the upper clamping block and the lower clamping block are detachably connected, and the lower clamping block is an L-shaped structure as a whole, a joint is installed in the middle of the upper end of the lower clamping block, a space groove is opened inside the lower clamping block, and a release assembly is installed on the space groove, and the release assembly includes a pull rod, a spring and a semicircular plate; the spring is installed in a spring groove provided on the space groove, and the semicircular plate is rotatably installed in the semicircular groove provided on the space groove, and the spring groove and the semicircular groove are close but not overlapped; the pull rod is fixedly installed on the semicircular plate, and the end of the pull rod extends out of the side wall of the lower clamping block. At the same time, the end of the spring is connected to the pull rod, and a clamping groove is opened on the end face of the other side wall of the lower clamping block; the upper clamping block and the lower clamping block have the same structure and are mirror images of each other;
[0007] Furthermore, a bearing plate is fixedly mounted on the upper end of the upper holding block, an electric energy storage box is fixedly mounted on one side of the upper end of the bearing plate, a photosensitive element is fixedly mounted on one side of the electric energy storage box, and a solar panel is fixedly mounted on one side of the photosensitive element;
[0008] Furthermore, the solar panel is arranged at an angle of 25° to 35° in a clockwise direction relative to the carrier plate, and the photosensitive element and the solar panel are kept parallel;
[0009] Furthermore, a control system is installed at the upper end of the extension rod, and the control system is electrically connected to the motor, the photosensitive element and the lighting lamp;
[0010] Furthermore, the front end of the extension rod is divided into two sections by a rotating shaft, and the position of the rotating shaft is fixed by bolts;
[0011] Furthermore, the end of the support rod is designed to be conical, and a support plate is provided at the end of the side wall of the support rod, and fixing clips are evenly spaced at the upper end of the support plate.
[0012] The beneficial effects of the utility model are:
[0013] The utility model designs a plant growth lamp powered by a tracking light, comprising: a support rod and a lighting device; a cross rod is fixedly mounted on the upper end of the support rod, a plurality of extension rods are evenly spaced on the cross rod, and the lighting device is mounted on the end of the extension rod. The arrangement of the plurality of extension rods can support the growing dragon fruit tree, and the plurality of extension rods can provide multi-directional support for the dragon fruit tree, ensuring the stability of growth; compared with traditional devices, the dragon fruit tree support can be integrated, solving the support problem while providing lighting;
[0014] In addition, the lighting device in the present invention includes a lighting lamp, a motor and a holding assembly; the lighting lamp is fixedly installed on the lower end of the motor, the motor is fixedly installed on the upper end of the lighting lamp, and the holding assembly is fixedly installed on the output shaft of the motor; the solar panel and the lighting lamp are separated by the holding assembly; and when separating, it is only necessary to pull one of the pull rods provided on the holding assembly to achieve separation, and it can be directly inserted during installation, which can achieve quick installation and removal. Compared with traditional devices, the damaged device can be quickly and better repaired in a detachable manner, ensuring the uniformity and continuity of the light received by the dragon fruit and the continuous effect of the light. At the same time, the installation is convenient and fast through the detachable manner, which can adapt to the installation and use requirements of large-scale planting. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.
[0016] Figure 1 This is a schematic diagram of the overall structure of a plant growth lamp powered by a chasing light;
[0017] Figure 2 This is another overall structural diagram of a plant growth lamp that is powered by a chasing light;
[0018] Figure 3 This is a schematic diagram of the overall structure of a lighting device for plant growth lamps powered by a tracking light;
[0019] Figure 4 This is a schematic diagram of the structure of a plant growth lamp with a tracking light supply and a separated upper clamping block;
[0020] Figure 5 This is a schematic diagram of another structure of a plant growth lamp with a tracking light supply and an upper clamping block separated;
[0021] Figure 6 The present invention is a structural diagram of an upper clamping block and a lower clamping block of a plant growth lamp powered by a chasing light.
[0022] In the accompanying drawings, the components represented by the reference numerals are as follows:
[0023] 1-support rod, 11-cross bar, 111-extension rod, 12-rotating shaft, 2-support plate, 21-fixing clamp, 3-lighting device, 31-lighting lamp, 32-motor, 33-clamping assembly, 331-lower clamping block, 332-connector, 333-slot, 334-pull rod, 335-spring, 336-upper clamping block, 337-space slot, 3371-spring slot, 3372-semicircular slot, 338-semicircular plate, 34-carrying plate, 35-electric energy storage box, 36-photosensitive element, 37-solar panel, 4-control system. DETAILED DESCRIPTION
[0024] Example 1
[0025] A plant growth lamp powered by chasing light, comprising: a support rod 1 and a lighting device 3; a cross bar 11 is fixedly installed on the upper end of the support rod 1, and a plurality of extension rods 111 are evenly spaced on the cross bar 11, so that the growing dragon fruit tree can be supported by the arrangement of the plurality of extension rods 111, and the dragon fruit tree can be supported in all directions at the same time, thereby ensuring the growth stability; the end of the extension rod 111 is installed with the lighting device 3, and the lighting device 3 includes a lighting lamp 31, a motor 32 and a clamping assembly 33; the lower end of the motor 32 is fixedly installed with the lighting lamp 31, the upper end of the lighting lamp 31 is fixedly installed with the motor 32, and the output shaft of the motor 32 is fixedly installed with the clamping assembly 33; the solar panel 37 and the lighting lamp 31 are separated by the clamping assembly 33; the end of the support rod 1 is conical in design, and a support plate 2 is arranged at the end of the side wall of the support rod 1, and a fixing clamp 21 is evenly spaced on the upper end of the support plate 2. The setting of the tip enables it to be smoothly inserted into the soil. At the same time, the support plate 2 and the fixing clips 21 evenly spaced at the upper end can clamp and fix the pipe used for watering, so that the pipe can be completely fitted near the fruit tree, and uniform watering can be achieved;
[0026] Specifically, in this embodiment, the clamping assembly 33 includes an upper clamping block 336 and a lower clamping block 331; the upper clamping block 336 and the lower clamping block 331 are detachably connected, and the lower clamping block 331 is an L-shaped structure as a whole, and a joint 332 is installed at the middle of the upper end of the lower clamping block 331, and a space groove 337 is opened inside the lower clamping block, and a release assembly is installed on the space groove 337, and the release assembly includes a pull rod 334, a spring 335 and a semicircular plate. 338; the spring 335 is installed in the spring 335 groove provided on the space groove 337, and the semicircular plate 338 is rotatably installed in the semicircular groove 3372 provided on the space groove 337. The spring 335 groove and the semicircular groove 3372 are close to each other but do not overlap. The pull rod 334 is fixedly installed on the semicircular plate 338, and the end of the pull rod 334 extends out of the side wall of the lower holding block 331. At the same time, the end of the spring 335 is connected to the pull rod 334, and the other side wall of the lower holding block 331 is fixed to the pull rod 334. The end surface of the upper clamping block 336 is provided with a clamping groove 333; the upper clamping block 336 and the lower clamping block 331 have the same structure and are mirror images of each other; the working process is as follows: when installing, the upper clamping block 336 is installed on the lower clamping block 331, and when pressed in, under the action of pressure, the semicircular plates 338 are first in parallel positions with each other, at this time the spring 335 is compressed, and when it is fully inserted, the semicircular plates 338 return to their original position under the action of the spring 335, and at this time the lower clamping block 331 is The semicircular plate 338 is restricted on the upper holding block 336, and the semicircular plate 338 of the upper holding block 336 is restricted on the lower holding block 331; that is, at this time, they form a limiting effect on each other to form a fixation; after use, the upper holding block 336 is pulled out while pulling the pull rod 334. When the pull rod 334 is pulled, the spring 335 is compressed, and the semicircular plate 338 moves to a horizontal position. The upper holding block 336 and the lower holding block 331 no longer form a holding effect, that is, they can be separated from each other.
[0027] Example 2
[0028] In this embodiment, a support plate 34 is fixedly mounted on the upper end of the upper holding block 336. An energy storage box 35 is fixedly mounted on one side of the upper end of the support plate 34. A photosensor 36 is fixedly mounted on one side of the energy storage box 35. A solar panel 37 is fixedly mounted on one side of the photosensor 36. The photosensor 36 monitors light intensity, and the control system 4 controls the motor 32 to adjust the angle of the solar panel 37 to ensure that it always faces the sun. This overcomes the limitations of traditional fixed solar panels 37. This solves the problem of traditional fixed solar panels 37 experiencing changes in sunlight angle caused by the Earth's rotation and revolution, thereby improving energy absorption efficiency.
[0029] At the same time, the solar panel 37 is arranged at an angle of 25°-35° to the supporting plate 34 in a clockwise direction, and the photosensor 36 and the solar panel 37 are kept parallel. Due to the parallel arrangement, after the photosensor 36 detects strong light, the detected signal can be converted and fed back to the control system 4, and the control system 4 controls the overall rotation of the motor 32 to keep the solar panel 37 parallel, so that the solar panel 37 can maintain optimal light energy absorption.
[0030] To control the operation of each component, a control system 4 is mounted at the upper end of the extension rod 111. The control system 4 is electrically connected to the motor 32, the photosensitive element 36, and the lighting lamp 31. Furthermore, the front end of the extension rod 111 is divided into two sections by a rotating shaft 12, which is fixed by bolts. This bolting allows the front end of the extension rod 111 to be adjusted, allowing the angle of the lighting device 3 to be adjusted to a preferred illumination position.
[0031] The operating principle of the present invention is as follows: first, the entire device is inserted into the soil through the support rod 1, and the watering pipe is fixed with the fixing clamp 21, and then the angle of the lighting device 3 is adjusted by the bolts according to actual needs. After the adjustment is completed, Jack starts to use it; when the upper clamping block and the corresponding components need to be removed as a whole, the pull rod 334 can be directly pulled out at the same time. When installation is required, the upper clamping block can be directly aligned with the position of the lower clamping block and inserted.
[0032] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all details in detail, nor do they limit the present invention to only the specific implementation methods described.
Claims
1. A plant growth lamp powered by chasing light, characterized in that: include: A support rod and a lighting device; a crossbar is fixedly mounted on the upper end of the support rod, a plurality of extension rods are evenly spaced on the crossbar, and the ends of the extension rods are mounted with the lighting device, the lighting device comprising a lighting lamp, a motor and a clamping assembly; the lighting lamp is fixedly mounted on the lower end of the motor, the upper end of the lighting lamp is fixedly mounted on the motor, and the clamping assembly is fixedly mounted on the output shaft of the motor; the solar panel and the lighting lamp are separated by the clamping assembly; The clamping assembly includes an upper clamping block and a lower clamping block; the upper clamping block and the lower clamping block are detachably connected, and the lower clamping block is an L-shaped structure as a whole, and a joint is installed in the middle of the upper end of the lower clamping block. A space groove is opened inside the lower clamping block, and a release assembly is installed on the space groove, and the release assembly includes a pull rod, a spring and a semicircular plate; the spring is installed in a spring groove set on the space groove, and the semicircular plate is rotatably installed in the semicircular groove set on the space groove, and the spring groove and the semicircular groove are close but not overlapped; the pull rod is fixedly installed on the semicircular plate, and the end of the pull rod extends out of the side wall of the lower clamping block and the end of the spring is connected to the pull rod. A clamping groove is opened on the end face of the other side wall of the lower clamping block; the upper clamping block and the lower clamping block have the same structure and are mirror images of each other.
2. A plant growth lamp powered by chasing light according to claim 1, characterized in that: A bearing plate is fixedly mounted on the upper end of the upper holding block, an electric energy storage box is fixedly mounted on one side of the upper end of the bearing plate, a photosensitive element is fixedly mounted on one side of the electric energy storage box, and a solar panel is fixedly mounted on one side of the photosensitive element.
3. A plant growth lamp powered by chasing light according to claim 2, characterized in that: The solar panel is arranged at an angle of 25° to 35° with respect to the supporting plate in a clockwise direction, and the photosensitive element and the solar panel are kept parallel.
4. The plant growth lamp powered by chasing light according to claim 1, characterized in that: A control system is installed at the upper end height of the extension rod, and the control system is electrically connected to the motor, the photosensitive element and the lighting lamp.
5. The plant growth lamp powered by chasing light according to claim 1, characterized in that: The front end of the extension rod is divided into two sections by a rotating shaft, and the position of the rotating shaft is fixed by bolts.
6. The plant growth lamp powered by chasing light according to claim 1, characterized in that: The end of the support rod is designed to be conical, and a support plate is provided at the end of the side wall of the support rod, and fixing clips are evenly spaced at the upper end of the support plate.