Intelligent environmental protection sign based on brightness adjustment

CN224773537UActive Publication Date: 2026-09-18ZHEJIANG SUOYU INTELLIGENT MFG TECH CO LTD
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Patent Information

Application Number
CN202522232781.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-09-18
Estimated Expiration
2035-10-22

AI Technical Summary

Technical Problem

[0004]为了解决上述技术问题,本实用新型提供基于亮度调节智能化环保标识标牌,以解决现有的承载杆插入地面过程中的阻力较大,导致承载杆的安装效率较低,不方便在承载杆上设置踩踏措施,来辅助承载杆快速插入地面;标牌板通过锁紧箍安装在承载杆上,导致标牌板会产生转动位移,不方便在标牌板上设置止转措施,来保证标牌板不会产生转动的问题

Benefits of technology

方便通过踩踏筒状承载杆的三角板,来使筒状承载杆下部快速插入土壤地面内部,由此实现标牌本体的快速固定安装,解决了承载杆插入地面过程中的阻力较大,导致承载杆的安装效率较低,不方便在承载杆上设置踩踏措施,来辅助承载杆快速插入地面的问题。

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Abstract

The utility model provides based on the intelligent environmental protection identification sign of luminance adjustment, relates to identification sign technical field, including the sign body, the sign body is provided with the tubular bearing lever, the inside circumference of tubular bearing lever lower extreme is equipped with screw thread, the inside circumference of tubular bearing lever upper end is equipped with screw thread, tubular bearing lever lower part both sides are all provided with the triangular plate, the insertion hole of tubular bearing lever upper part is set up and passes through before and after, the assembling hole of tubular bearing lever upper end front wall is set up, the threading hole of tubular bearing lever upper end rear wall is set up, the triangular plate of tubular bearing lever is facilitated through treading, to make tubular bearing lever lower part fast insertion soil ground inside, thus realizes the quick fixing installation of sign body, has solved the resistance in the process of bearing lever insertion ground, leads to the installation efficiency of bearing lever to be lower, is not convenient in the bearing lever and sets up treading measure, to assist bearing lever fast insertion ground problem.
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Description

Technical Field

[0001] This utility model belongs to the field of signage technology, and particularly relates to intelligent environmentally friendly signage based on brightness adjustment. Background Technology

[0002] The brightness-adjustable intelligent environmental protection signage is a signage device that automatically adjusts its brightness by sensing the intensity of ambient light. It is mainly used to improve visibility at night or in inclement weather while reducing energy consumption. It uses a photosensitive sensor to detect the intensity of ambient light in real time and automatically adjusts the brightness. It is mainly used in fields such as smart transportation and urban management.

[0003] Based on the above, the inventors have discovered the following shortcomings in existing intelligent environmental protection signs with adjustable brightness: 1. The resistance during the insertion of the support rod into the ground is relatively large, resulting in low installation efficiency and making it inconvenient to install stepping measures on the support rod to assist in its rapid insertion into the ground; 2. The signboard is installed on the support rod by a locking clamp, which causes the signboard to rotate and shift. It is inconvenient to install anti-rotation measures on the signboard to ensure that the signboard does not rotate. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides an intelligent environmental protection sign based on brightness adjustment. This solves the issues of existing support rods experiencing significant resistance during ground insertion, resulting in low installation efficiency and making it inconvenient to install stepping mechanisms on the support rods to assist in rapid insertion. Furthermore, the signboard is mounted on the support rod via a locking clamp, causing rotational displacement, making it difficult to implement anti-rotation measures to prevent rotation.

[0005] The purpose and effect of this utility model based on intelligent environmental protection signage with brightness adjustment are achieved by the following specific technical means: The intelligent environmental protection sign based on brightness adjustment includes a sign body; the sign body is provided with a cylindrical support rod, the lower end of the cylindrical support rod has a threaded inner circumference, the upper end of the cylindrical support rod has a threaded inner circumference, triangular plates are provided on both the left and right sides of the lower part of the cylindrical support rod, the upper part of the cylindrical support rod has a through insertion hole, the upper front wall of the cylindrical support rod has an assembly hole, and the upper rear wall of the cylindrical support rod has a wire hole.

[0006] Furthermore, the threaded rods of the luminous sign are locked with an intelligent control box by nuts. A photovoltaic connection line is provided at the rear of the top end face of the intelligent control box, a sensor connection line is provided at the front of the top end face of the intelligent control box, a sign connection line is provided in the middle of the bottom end face of the intelligent control box, and a fixing plate with front and rear through holes is provided in the middle of the front of the left and right ends of the intelligent control box. A triangular plate is provided at the inner end of the rear end face of the fixing plate of the intelligent control box.

[0007] Furthermore, a luminous sign is inserted in front of the insertion hole of the cylindrical support rod, threaded rods are provided on both the left and right sides of the rear end face of the luminous sign, a semi-cylinder in the vertical direction is provided in the middle of the rear end face of the luminous sign, an insertion cylinder is provided in the middle of the bottom of the rear end face of the luminous sign, and a connecting wire is provided inside the insertion cylinder of the luminous sign.

[0008] Furthermore, a photovoltaic panel is bolted to the rear of the upper end of the cylindrical support rod, a support plate is provided in the middle of the bottom end face of the photovoltaic panel, a connecting line is provided behind the support plate of the photovoltaic panel, a sleeve in the vertical direction is provided at the front end of the support plate of the photovoltaic panel, and a threaded hole is provided on the front wall of the sleeve of the photovoltaic panel.

[0009] Furthermore, a photosensitive sensor is threadedly mounted on the upper end of the cylindrical support rod. A regular hexagonal prism is provided on the bottom end face of the photosensitive sensor, a threaded post is provided on the bottom end face of the regular hexagonal prism of the photosensitive sensor, and a connecting wire is provided on the bottom end face of the threaded post of the photosensitive sensor.

[0010] Furthermore, the lower end of the cylindrical bearing rod is threaded with a fixed grounding head, the fixed grounding head has a regular hexagonal prism in the middle, the top end face of the regular hexagonal prism of the fixed grounding head has a threaded post, and the bottom end face of the regular hexagonal prism of the fixed grounding head has a conical head.

[0011] Compared with the prior art, the present invention has the following beneficial effects: The triangular plate on the cylindrical support rod allows the lower part of the support rod to be quickly inserted into the soil by stepping on it, thereby achieving rapid fixing and installation of the sign body. This solves the problem of high resistance during the insertion of the support rod into the ground, which leads to low installation efficiency and makes it inconvenient to set up stepping measures on the support rod to assist in the rapid insertion of the support rod into the ground.

[0012] This design facilitates the insertion of illuminated signs into the cylindrical support rod, thereby preventing the illuminated signs from shifting vertically or rotating around the axis of the cylindrical support rod. It solves the problem that when the signboard is installed on the support rod via a locking clamp, it causes the signboard to rotate, making it inconvenient to install anti-rotation measures on the signboard to ensure that it does not rotate. Attached Figure Description

[0013] Figure 1This is a schematic diagram of the main structure of this utility model.

[0014] Figure 2 This is a schematic diagram of the rear view structure of this utility model.

[0015] Figure 3 This is a disassembled structural diagram of the present invention.

[0016] Figure 4 This is an assembly diagram of the cylindrical support rod and the luminous sign of this utility model.

[0017] Figure 5 This is an assembly diagram of the photosensitive sensor and intelligent control box of this utility model.

[0018] Figure 6 This is an assembly cross-sectional view of the cylindrical support rod and the photovoltaic panel of this utility model.

[0019] In the diagram: 1. Sign body; 2. Cylindrical support rod; 3. Fixed grounding head; 4. Photosensitive sensor; 5. Photovoltaic panel; 6. Illuminated sign; 7. Intelligent control box. Detailed Implementation

[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0021] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown: This utility model provides an intelligent environmental protection sign based on brightness adjustment, including a sign body 1; the sign body 1 is provided with a cylindrical support rod 2 for easy support of various components. The lower end of the cylindrical support rod 2 has a threaded inner circumference for easy installation of the fixing plug 3 via the thread. The upper end of the cylindrical support rod 2 has a threaded inner circumference for easy installation of the photosensitive sensor 4 via the thread. Triangular plates are provided on both the left and right sides of the lower part of the cylindrical support rod 2 to facilitate foot pressure. The upper part of the cylindrical support rod 2 has a through insertion hole for easy insertion of the insert cylinder of the luminous sign 6. The upper front wall of the cylindrical support rod 2 has an assembly hole for easy insertion of the fixing bolt of the photovoltaic panel 5. The upper rear wall of the cylindrical support rod 2 has a wire hole for easy passage of the connection wire of the photosensitive sensor 4. The lower end of the cylindrical support rod 2 A fixed insertion head 3 is installed via threads to facilitate breaking up the soil surface. A regular hexagonal prism is set in the middle of the fixed insertion head 3, which can be rotated and disassembled with tools. A threaded post is set on the top end face of the regular hexagonal prism of the fixed insertion head 3, which can be installed by threads. A conical head is set on the bottom end face of the regular hexagonal prism of the fixed insertion head 3, which can break up the soil surface. A photosensitive sensor 4 is installed at the upper end of the cylindrical support rod 2 via threads to facilitate sensing light intensity. A regular hexagonal prism is set on the bottom end face of the photosensitive sensor 4, which can be rotated and disassembled with tools. A threaded post is set on the bottom end face of the regular hexagonal prism of the photosensitive sensor 4, which can be disassembled and disassembled by threads. A connecting wire is set on the bottom end face of the threaded post of the photosensitive sensor 4, which can be connected to the intelligent control box 7 for data transmission.

[0022] The cylindrical support rod 2 has a photovoltaic panel 5 bolted to its upper rear end for power supply to the intelligent control box 7. A support plate is located in the middle of the bottom face of the photovoltaic panel 5 for load bearing. A connecting wire is located behind the support plate for power transmission to the intelligent control box 7. A sleeve with an up-down orientation is located at the front end of the support plate for inserting the cylindrical support rod 2. A threaded hole is located on the front wall of the sleeve for bolting the photovoltaic panel 5 onto the cylindrical support rod 2. A luminous sign 6 is inserted in front of the insertion hole of the cylindrical support rod 2 for illumination. Threaded rods are located on both sides of the rear face of the luminous sign 6 for mounting the intelligent control box 7 and locking it with nuts. A semi-cylinder with an up-down orientation is located in the middle of the rear face of the luminous sign 6 for fitting with the cylindrical support rod 2 and illuminating the light. The sign 6 has an insertion cylinder at the bottom center of its rear end face for easy insertion into the cylindrical support rod 2. The insertion cylinder of the illuminated sign 6 contains a connecting wire for easy connection to the intelligent control box 7 for power transmission. The threaded rods of the illuminated sign 6 are locked to the intelligent control box 7 with nuts, facilitating intelligent brightness adjustment of the illuminated sign 6. The intelligent control box 7 has a photovoltaic connection wire at the rear of its top end face for easy connection to the photovoltaic panel 5. The intelligent control box 7 has a sensor connection wire at the front of its top end face for easy connection to the photosensitive sensor 4. The intelligent control box 7 has a sign connection wire at the center of its bottom end face for easy connection to the illuminated sign 6. The intelligent control box 7 has a fixing plate with front and rear through holes at the center of the front of both its left and right ends for easy insertion of the threaded rods of the illuminated sign 6. The fixing plate of the intelligent control box 7 has a triangular plate at the inner end of its rear end face to increase the load-bearing capacity of the intelligent control box 7.

[0023] The specific usage and function of this embodiment are as follows: In this utility model, when... Figure 1As shown, when installing and using the sign body 1, hold the cylindrical support rod 2 so that the fixing insertion head 3 is aligned with the soil surface. Step on the top of the triangular plate of the cylindrical support rod 2 and apply downward force to break the soil surface with the fixing insertion head 3. This allows the lower part of the cylindrical support rod 2 to quickly insert into the soil surface, making the top end face of the triangular plate of the cylindrical support rod 2 flush with the soil surface. This achieves the insertion and use of the sign body 1. This method solves the problem of high resistance during the insertion of the support rod into the ground, resulting in low installation efficiency. At the same time, the insertion cylinder of the luminous sign 6 is inserted into the insertion hole of the cylindrical support rod 2, thereby preventing the luminous sign 6 from vertical displacement and rotation around the axis of the cylindrical support rod 2. The semi-cylinder of the sign 6 fits into the cylindrical support rod 2, thus preventing the illuminated sign 6 from swaying left and right. This method solves the problem of the sign plate being installed on the support rod by a locking clamp, which causes the sign plate to rotate. When the sign body 1 is working, sunlight shines on the photovoltaic panel 5 during the day, causing the photovoltaic panel 5 to generate electricity and send it to the intelligent control box 7 for storage. When the photosensitive sensor 4 detects dim light, the photosensitive sensor 4 transmits the signal to the intelligent control box 7 for analysis. The intelligent control box 7 then controls the illuminated sign 6 to turn on and automatically adjusts the brightness of the illuminated sign 6 based on the light intensity monitored by the photosensitive sensor 4, thus completing the intelligent adjustment of the brightness of the illuminated sign 6.

[0024] Example 2: The difference from Example 1 is that the regular hexagonal prism of the fixed grounding head 3 can also be set as a regular heptagonal prism, so that the fixed grounding head 3 can only be rotated by a special tool that works with the regular heptagonal prism, thus preventing non-workers from rotating and disassembling the fixed grounding head 3.

[0025] Example 3: Unlike Example 1, the regular hexagonal prism of the photosensitive sensor 4 can also be set as a regular heptagonal prism. This makes the photosensitive sensor 4 require a special tool that works with the regular heptagonal prism to rotate, thus preventing non-staff members from rotating and disassembling the photosensitive sensor 4.

Claims

1. A smart environmental protection sign based on brightness adjustment, characterized in that: The sign body (1) includes a cylindrical support rod (2). The lower end of the cylindrical support rod (2) has a threaded inner circumference, and the upper end of the cylindrical support rod (2) has a threaded inner circumference. Triangular plates are provided on both the left and right sides of the lower part of the cylindrical support rod (2). The upper part of the cylindrical support rod (2) has a through insertion hole. An assembly hole is provided on the front wall of the upper end of the cylindrical support rod (2), and a wire hole is provided on the rear wall of the upper end of the cylindrical support rod (2).

2. The intelligent environmental protection signage based on brightness adjustment as described in claim 1, characterized in that: The lower end of the cylindrical support rod (2) is threaded with a fixed insertion head (3). A regular hexagonal prism is provided in the middle of the fixed insertion head (3). A threaded post is provided on the top end face of the regular hexagonal prism of the fixed insertion head (3). A conical head is provided on the bottom end face of the regular hexagonal prism of the fixed insertion head (3).

3. The intelligent environmental protection signage based on brightness adjustment as described in claim 2, characterized in that: The upper end of the cylindrical support rod (2) is threaded with a photosensitive sensor (4). The bottom end face of the photosensitive sensor (4) is provided with a regular hexagonal prism, the bottom end face of the regular hexagonal prism of the photosensitive sensor (4) is provided with a threaded post, and the bottom end face of the threaded post of the photosensitive sensor (4) is provided with a connecting line.

4. The intelligent environmental protection signage based on brightness adjustment as described in claim 3, characterized in that: A photovoltaic panel (5) is bolted to the rear of the upper end of the cylindrical support rod (2). A support plate is provided in the middle of the bottom end face of the photovoltaic panel (5). A connecting line is provided behind the support plate of the photovoltaic panel (5). A sleeve in the upper and lower direction is provided at the front end of the support plate of the photovoltaic panel (5). A threaded hole is provided on the front wall of the sleeve of the photovoltaic panel (5).

5. The intelligent environmental protection signage based on brightness adjustment as described in claim 4, characterized in that: A luminous sign (6) is inserted in front of the insertion hole of the cylindrical support rod (2). Threaded rods are provided on both the left and right sides of the rear end face of the luminous sign (6). A semi-cylinder in the vertical direction is provided in the middle of the rear end face of the luminous sign (6). An insertion tube is provided in the middle of the bottom of the rear end face of the luminous sign (6). A connecting wire is provided inside the insertion tube of the luminous sign (6).

6. The intelligent environmental protection signage based on brightness adjustment as described in claim 5, characterized in that: The threaded rods of the luminous sign (6) are locked with a smart control box (7) by nuts. A photovoltaic connection line is provided at the rear of the top end face of the smart control box (7). A sensor connection line is provided at the front of the top end face of the smart control box (7). A sign connection line is provided in the middle of the bottom end face of the smart control box (7). A fixing plate with front and rear through holes is provided in the middle of the front of the left and right ends of the smart control box (7). A triangular plate is provided at the inner end of the rear end face of the fixing plate of the smart control box (7).