Adjustable edible mushroom LED light supplement lamp

By designing adjustable supplementary lighting components and a shock-absorbing structure, the problems of fixed and unstable LED supplementary lighting for edible fungi have been solved, achieving flexible adjustment of illumination and improved stability, thus extending the service life.

CN223987500UActive Publication Date: 2026-03-13HUAZHONG AGRI UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing LED supplementary lighting for edible fungi has a single fixing method, which makes it difficult to adjust flexibly and has poor stability. It cannot provide uniform and suitable lighting and is prone to shaking under external impact.

Method used

It adopts an adjustable lighting component and shock absorption structure, including a fixed base, connecting frame, round tube, lighting component and U-shaped retaining ring. Through threaded connection and spring guide rod design, it can flexibly adjust the position and angle of the lighting and has a buffer and shock absorption function.

Benefits of technology

It enables flexible adjustment of the supplemental lighting to meet the light requirements of different growth stages, improves the uniformity and stability of light, and extends the service life.

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Abstract

The utility model belongs to the field of edible mushroom planting, and provides an adjustable edible mushroom LED light supplement lamp which comprises a fixing base, a connecting frame is arranged below the fixing base, a round pipe is arranged on the connecting frame, a pair of light supplement assemblies are arranged on the round pipe in a left-right mode, each light supplement assembly comprises a connecting base and a pair of U-shaped clamping rings, and the U-shaped clamping rings are arranged on the connecting base. The connecting base is fixedly installed on the round pipe through a U-shaped clamping ring, a short plate capable of being adjusted up and down is arranged on the connecting base, a lamp holder is arranged on the short plate, a light supplementing lamp body is arranged in the lamp holder, and threaded sections are formed at the two ends of the upper portion of the U-shaped clamping ring. When the light supplementing assembly needs to be installed on the round pipe, the four fixing nuts are unscrewed firstly, the U-shaped clamping rings move downwards by a certain distance, then the arc-shaped notches of the connecting base are aligned to the round pipe, then the round pipe penetrates into the two U-shaped clamping rings, finally the four fixing nuts are screwed one by one, the U-shaped clamping rings are tightly fixed to the round pipe, and therefore fixing of the connecting base is achieved.
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Description

Technical Field

[0001] This utility model belongs to the field of edible fungi cultivation, and in particular relates to an adjustable LED supplemental light for edible fungi. Background Technology

[0002] Edible fungi, as an important agricultural product, have specific requirements for light conditions during their growth process. Suitable light intensity and duration can promote mycelial growth, fruiting body differentiation and development of edible fungi, thereby improving the yield and quality of edible fungi.

[0003] The light requirements of edible fungi change at different growth stages, necessitating adjustments to the position and angle of supplemental lighting to meet these needs. However, traditional lighting fixtures have a limited range of fixing methods, making flexible adjustments difficult to adapt to specific conditions and failing to provide uniform and suitable lighting for the fungi. Furthermore, existing LED supplemental lighting for edible fungi is typically installed indoors via connecting rods, lacking shock absorption. If subjected to impacts from the external environment, the entire supplemental lighting system will shake severely, exhibiting poor stability. Utility Model Content

[0004] In view of the above problems, the purpose of this utility model is to provide an adjustable LED supplementary light for edible fungi, which aims to solve the problems that the existing LED supplementary lights for edible fungi have a relatively simple fixing method, are difficult to adjust flexibly according to the actual situation, and have poor stability.

[0005] The present invention adopts the following technical solution:

[0006] The edible fungus LED supplemental light includes a fixed base, a connecting frame below the fixed base, a round tube on the connecting frame, and a pair of supplemental lighting components on the round tube. Each supplemental lighting component includes a connecting base and a pair of U-shaped retaining rings. The connecting base is fixedly installed on the round tube by the U-shaped retaining rings. The connecting base has an adjustable short plate, and a lamp holder is provided on the short plate. The lamp holder has a supplemental light body inside. Both ends of the U-shaped retaining rings have threaded sections, and a pair of fixing nuts are screwed into the top of the U-shaped retaining rings.

[0007] Furthermore, the connector has a pair of arc-shaped notches that match the round tube.

[0008] Furthermore, the connecting seat has an clearance notch, the right end of the short plate is bent downward to form a mounting part, and the mounting part is located inside the clearance notch. The mounting part has a pair of round holes, and the connecting seat has an arc-shaped groove. A locking screw passes through one of the round holes, passes through the connecting seat and locks it in place, and an adjusting screw passes through the other round hole, passes through the arc-shaped groove and locks it in place.

[0009] Furthermore, the fixing base includes an inner sleeve and a fixing sleeve installed inside and outside. The inner sleeve is provided with a collar, and a spring is provided between the collar and the fixing sleeve. The bottom of the fixing sleeve is provided with a ring plate. The fixing sleeve has a pair of left and right slots. The collar has a pair of short blocks forming outwards. The short blocks pass through the slots on the same side. Each short block is provided with a guide rod vertically. The guide rod passes through the ring plate.

[0010] Furthermore, the top plate of the fixing sleeve has slots at all four corners.

[0011] Furthermore, the circular tube includes an inner tube with outer tubes fitted at both ends. A connecting bracket is installed in the middle of the inner tube. An adjustment hole and a row of threaded holes are respectively opened on the outer tube and the inner tube. An adjustment screw is inserted into the adjustment hole with its face facing inward, and the adjustment screw is screwed into the corresponding threaded hole.

[0012] The beneficial effects of this utility model are:

[0013] 1. In this device, there is a pair of supplementary lighting components on the left and right sides. Both sets of supplementary lighting components are independently installed on the round tube. They can be controlled separately during operation and provide light for edible fungi on the same side.

[0014] 2. The supplemental lighting assembly can be flexibly installed and removed on the round tube using U-shaped retaining rings and fixing nuts. The short plate can be adjusted up and down to facilitate adjustment of the supplemental lighting position of the supplemental light and meet the needs of different planting scenarios.

[0015] 3. The spring and guide rod structure of the mounting base has a buffering and shock absorption function, which can reduce the impact of external vibration on the fill light and extend the service life of the fill light. Attached Figure Description

[0016] Figure 1 This utility model provides an overall view of an adjustable LED supplemental light for edible fungi.

[0017] Figure 2 This utility model provides a supplementary lighting component structure. Figure 1 .

[0018] Figure 3 This utility model provides a supplementary lighting component structure. Figure 2 .

[0019] Figure 4 This utility model provides an overall drawing of the fixing base.

[0020] Figure 5 This utility model provides a cross-sectional view of the fixing seat. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of this utility model patent clearer, the present utility model will be further described in 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 present utility model and are not intended to limit the scope of the present utility model.

[0022] To illustrate the technical solution described in this utility model, specific embodiments are described below.

[0023] For ease of explanation, only the parts relevant to the embodiments of this utility model are shown.

[0024] Combination Figure 1-4 As shown, the edible fungus LED supplemental light includes a fixed base 1, a connecting frame 2 is provided below the fixed base 1, a round tube 3 is provided on the connecting frame 2, and a pair of supplemental lighting components are provided on the round tube 3. The supplemental lighting component 18 includes a connecting base 4 and a pair of U-shaped retaining rings 5. The connecting base 4 is fixedly installed on the round tube 3 by the U-shaped retaining rings 5. The connecting base 4 is provided with a short plate 6 that can be adjusted up and down. The short plate 6 is provided with a lamp holder 7. The lamp holder 7 has a supplemental light body 8 built into it. Both ends of the U-shaped retaining ring 5 have threaded sections, and a pair of fixing nuts 9 are screwed into the top of the U-shaped retaining ring 5.

[0025] Edible fungi, as an important agricultural product, have specific requirements for light conditions during their growth process. The light requirements change at different growth stages of edible fungi, and the position and angle of this LED supplemental light can be adjusted to meet these growth requirements.

[0026] In this structure, the LED supplemental lighting for edible fungi mainly consists of a mounting base, a connecting frame, a circular tube, and supplemental lighting components. The mounting base is located on top of the supplemental lighting components and is used to fix the lighting indoors. The circular tube is horizontally mounted on the connecting frame, providing support for the supplemental lighting components. There are two pairs of supplemental lighting components, left and right, each independently mounted on the circular tube. They can be controlled separately during operation to provide illumination for the edible fungi on the same side.

[0027] In this structure, the connecting seat 4 has a pair of arc-shaped notches 10 that match the circular tube 3. The supplementary lighting assembly includes the connecting seat and a pair of U-shaped retaining rings. The connecting seat is fixedly installed on the circular tube by the U-shaped retaining rings. When installing the supplementary lighting assembly on the circular tube, first loosen the four fixing nuts, move the U-shaped retaining rings down a certain distance, then align the arc-shaped notches of the connecting seat with the circular tube, then insert the circular tube into the two U-shaped retaining rings, and finally tighten the four fixing nuts one by one. The U-shaped retaining rings are tightly fixed on the circular tube, thus fixing the connecting seat. As can be seen, the entire installation process of the supplementary lighting assembly is relatively simple and facilitates later maintenance. In addition, the arc-shaped notch design allows the connecting seat and the circular tube to fit tightly, increasing the stability of the connection.

[0028] As a specific structure, such as Figure 2 The connecting seat 4 has a clearance notch 11. The right end of the short plate 6 is bent downward to form a mounting part 12, and the mounting part 12 is located inside the clearance notch 11. The mounting part 12 has a pair of round holes (covered in the figure). The connecting seat 4 has an arc-shaped groove 14. A locking screw 13 passes through one of the round holes and is locked after passing through the connecting seat 4. An adjusting screw 15 passes through the other round hole and is locked after passing through the arc-shaped groove 14.

[0029] In this device, the connecting base is equipped with a height-adjustable short plate, on which a lamp holder is mounted, housing the supplementary light unit. The height-adjustable function of the short plate allows the height of the supplementary light unit to be adjusted according to the growth stage and light requirements of the edible fungi. For example, in the early stages of fungi growth, the supplementary light unit can be lowered to provide stronger light; as the fungi grow, the height of the supplementary light unit can be appropriately raised to avoid excessive light damaging the fungi.

[0030] When the short board needs to be raised, the supplementary light body will also be raised accordingly. Specifically: first loosen the locking screw, then loosen the adjusting screw, then move the short board upwards, and let the adjusting screw slide in the arc groove. After the short board is moved to the appropriate position, tighten the adjusting screw and locking screw in sequence to fix the short board.

[0031] During the aforementioned adjustment of the short board, the avoidance notch serves to avoid interference with the connecting seat during the up-and-down adjustment process, ensuring smooth adjustment.

[0032] As a preferred structure, such as Figure 4-5 The fixing base 1 includes an inner sleeve 1.1 and a fixing sleeve 1.2 installed inside and outside. The inner sleeve 1.1 is provided with a collar 1.3. A spring 1.4 is provided between the collar 1.3 and the fixing sleeve 1.2. The bottom of the fixing sleeve 1.2 is provided with a ring plate 1.6. The fixing sleeve 1.2 has a pair of left and right slots 1.7. The collar 1.3 has a pair of short blocks 1.8 formed outward. The short blocks 1.8 pass through the slots 1.7 on the same side. Each short block 1.8 is provided with a guide rod 1.9 vertically. The guide rod 1.9 passes through the ring plate 1.6.

[0033] This device, by installing a mounting base in a corresponding indoor location, effectively reduces the impact of external vibrations on the fill light. This not only protects the internal structure of the fill light from damage and extends its lifespan, but also ensures its stability and improves the uniformity of illumination.

[0034] If the device is shaken by an impact from the external environment, the inner sleeve will slide up and down inside the fixed sleeve under the impact of the connecting frame. During this process, the inner sleeve compresses the spring, and the spring's buffering effect can effectively reduce the amplitude of the inner sleeve's up and down movement inside the fixed sleeve, thereby reducing the shaking amplitude of the device and making the device more stable during use.

[0035] During the above process, as the inner sleeve slides up and down within the fixed sleeve, the short block moves up and down within the ring plate with the guide rod. Under the guidance of the guide rod, the inner sleeve becomes more stable when sliding up and down within the fixed sleeve.

[0036] In addition, the top plate 16 of the fixing sleeve 1.2 has slots 17 at all four corners. When the device needs to be installed in a designated indoor location, simply insert the mounting studs into the four slots on the top plate, and then tighten the mounting studs one after another until the top plate is locked.

[0037] In addition, the round tube 3 includes an inner tube 32, with outer tubes 31 sleeved at both ends of the inner tube 32. The connecting bracket 2 is installed in the middle of the inner tube 32. An adjustment hole 33 and a row of threaded holes 34 are respectively opened on the outer tube 31 and the inner tube 32. An adjustment screw is inserted into the adjustment hole 33 and screwed into the corresponding threaded hole.

[0038] This device is installed between two sets of edible mushroom cultivation racks. The specific position of the supplementary lighting component can be determined by adjusting the installation position of the outer tube on the inner tube, which facilitates adjusting the distance between the supplementary lighting component and the edible mushrooms on the same side, thereby improving the supplementary lighting effect. When it is necessary to adjust the installation position of the supplementary lighting component, first loosen the adjusting screw, then move the position of the outer tube until the supplementary lighting component is adjusted to the appropriate position, and then screw the adjusting screw into the corresponding threaded hole.

[0039] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An adjustable LED supplemental light for edible fungi, characterized in that: The edible mushroom LED light supplementing lamp includes a fixing base, a connecting frame is arranged below the fixing base, a circular tube is arranged on the connecting frame, a pair of left and right light supplementing assemblies are arranged on the circular tube, the light supplementing assembly includes a connecting base and a pair of U-shaped clamping rings, the connecting base is fixedly installed on the circular tube through the U-shaped clamping ring, a short plate that can be adjusted up and down is arranged on the connecting base, a lamp holder is arranged on the short plate, a light supplementing lamp body is arranged in the lamp holder, threaded sections are formed at both ends of the U-shaped clamping ring, and a pair of fixing nuts are screwed into the upper portion of the U-shaped clamping ring.

2. The adjustable LED light for edible fungi of claim 1, wherein: A pair of arc-shaped notches matched with the circular tube are formed in the connecting base.

3. The adjustable LED light for edible fungi of claim 2, wherein: An avoiding notch is formed in the connecting base, the right end of the short plate is bent downward to form a mounting portion, the mounting portion is arranged in the avoiding notch, a pair of round holes are formed in the mounting portion, an arc-shaped groove is formed in the connecting base, a locking screw is arranged in one of the round holes and passes through the connecting base and is locked, and an adjusting screw is arranged in the other round hole and passes through the arc-shaped groove and is locked.

4. The adjustable LED light for edible fungi of claim 3, wherein: The fixing base includes an inner sleeve and a fixing sleeve that are arranged in series, a sleeve ring is arranged on the inner sleeve, a spring is arranged between the sleeve ring and the fixing sleeve, a ring plate is arranged at the bottom of the fixing sleeve, a pair of slot openings are formed in the fixing sleeve, a pair of short blocks are formed outward from the sleeve ring, a guide rod is vertically arranged on each short block, and the guide rod passes through the ring plate.

5. The adjustable LED light for edible fungi of claim 4, wherein: A clamping groove is formed in the top plate of the fixing sleeve.

6. The adjustable LED light for edible fungi of claim 5, wherein: The circular tube includes an inner tube, an outer tube is sleeved on both ends of the inner tube, the connecting frame is arranged on the middle portion of the inner tube, an adjusting hole and a row of threaded holes are respectively formed in the outer tube and the inner tube, the adjusting hole passes through the adjusting screw inward, and the adjusting screw is screwed into the corresponding threaded hole.