Mounting mechanism and ultrasonic bird repeller

CN120584832BActive Publication Date: 2026-09-22ZHEJIANG SIJI TECH SERVICE CO LTD
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Patent Information

Application Number
CN202510740843.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2026-09-22
Estimated Expiration
2045-06-05

AI Technical Summary

Technical Problem

[0004]现有的驱鸟器一般安装在绝缘杆顶部,因此需要再对绝缘杆进行安装,安装操作费时费力,且安装后调节不变

Benefits of technology

[0016]与现有技术相比,本发明具有如下有益的技术效果:设置发射角度可调的超声波驱鸟器本体,利用鸟类识别模块进行检测,有针对性的、大范围的发出有效的超声波频率,使得驱鸟更加的智能、精准和高效。设置三段式的安装调节架,分段式调节方式,使得超声波驱鸟器本体工作时和安装时位置、角度均可灵活调节,一方面满足安装环境的需求,另一方面满足驱鸟效果的需求。设置的绝缘固定组件一方面可以通过限位杆、固定架和固定板围成封闭的固定空间,套在安装物(线缆)上进行固定,另一方面通过限位杆贯穿安装物,配合固定架和固定板对安装物(杆塔横担)夹持,以进行固定。安装结构不仅安装灵活,可调节性强,可以直接安装在电线杆的现有结构上,且安装的方式多样,满足不同的安装环境需求。此外,太阳能组件通过转动盘、伸缩杆、转动架的配合,高效收集太阳能,并转化、存储电能以进行供能,便于超声波驱鸟器本体在野外作业。

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Abstract

The present application relates to the field of bird repeller, especially to a mounting mechanism and an ultrasonic bird repeller. The mounting mechanism comprises an insulating mounting table, a solar energy assembly, a mounting adjusting frame and an insulating fixing assembly. The insulating mounting table is provided with a rotatable insulating mounting seat. The solar energy assembly is located on the front and rear sides of the insulating mounting table. The mounting adjusting frame is arranged on the left and right sides of the insulating mounting table. The insulating fixing assembly is located at the end of the mounting adjusting frame and comprises a rotatable fixing frame. A movable fixing plate is arranged on the fixing frame. The insulating fixing assembly further comprises a limiting rod arranged on the fixing frame and the fixing plate. The present application sets an ultrasonic bird repeller body with adjustable emission angle, cooperates with a three-section mounting adjusting frame, so that the position and angle of the ultrasonic bird repeller body can be flexibly adjusted when working and installing. The present application not only meets the demand of installation environment, but also meets the demand of bird repelling effect. The installation is flexible, the adjustability is strong, and the installation modes are various.
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Description

Technical Field

[0001] This invention relates to the field of bird repellers, and more particularly to an installation mechanism and an ultrasonic bird repeller. Background Technology

[0002] An ultrasonic bird repeller is a device that uses high-frequency sound waves to drive away birds. Its working principle is based on birds' sensitivity and discomfort to sound waves of specific frequencies.

[0003] Chinese Patent CN117175434B discloses a live-line installation tool and method for installing a bird repeller. The live-line installation tool has an insulating rod below its installation head; a first installation groove is provided on the upper surface of the bottom of the installation head, within which a support plate is installed. A first spring is provided between the support plate and the bottom of the first installation groove. A push plate for clamping a U-shaped seat is provided above the support plate, and the push plate is connected to the support plate via a linkage mechanism. A clamping mechanism for holding the bird repeller support rod is provided at the top of the installation head, and the clamping mechanism is connected to the support plate via a connecting mechanism. A locking mechanism for locking the support plate is provided on the side wall of the first installation groove; and an opening and closing mechanism for pushing the locking mechanism is provided on the insulating rod.

[0004] Existing bird repellers are typically installed on top of an insulating rod, requiring the rod to be installed as well. This installation process is time-consuming and labor-intensive, and the adjustment remains unchanged after installation. When operating, ultrasonic bird repellers have a limited range of ultrasonic waves, and their effectiveness may be affected by obstacles, resulting in less than ideal bird-repelling results. Summary of the Invention

[0005] To address the problems existing in the background technology, an installation mechanism and an ultrasonic bird repeller are proposed. By setting an ultrasonic bird repeller body with an adjustable emission angle, and in conjunction with a three-section installation and adjustment frame, the position and angle of the ultrasonic bird repeller body can be flexibly adjusted during operation and installation. This not only meets the requirements of the installation environment but also satisfies the requirements of the bird repeller effect. It offers flexible installation, strong adjustability, and can be installed in various ways.

[0006] This invention proposes an installation mechanism, including an insulating mounting platform, a solar panel, an adjusting mounting frame, and an insulating fixing assembly. A rotatable insulating mounting base is provided on the insulating mounting platform. The solar panel is located on the front and rear sides of the insulating mounting platform, and its position is controlled by extension, retraction, and rotation. The adjusting mounting frame is located on the insulating mounting platform and extends to its left and right sides, and its position is controlled by extension, retraction, and rotation. The insulating fixing assembly is located at the end of the adjusting mounting frame and includes a rotatable fixing frame; a movable fixing plate is provided on the fixing frame; the insulating fixing assembly also includes limiting rods provided on the fixing frame and the fixing plate. During installation, the limiting rods, fixing frame, and fixing plate form a closed fixing space, which is then fitted onto the object for fixation, or the limiting rods penetrate the object, cooperating with the fixing frame and fixing plate to clamp the object for fixation.

[0007] Preferably, the mounting adjustment frame includes a middle section located on an insulating mounting platform, rotatable bent sections slidably disposed at both ends of the middle section, and a rotatable connecting section located between the bent sections and the insulating fixing assembly.

[0008] Preferably, the middle section includes a pipe that passes through the insulating mounting platform; both ends of the pipe are provided with connecting rods; the bent section is adjusted by the connecting rods and slides in and out of the pipe.

[0009] Preferably, the bending section includes a second tube that mates with the first connecting rod and a third tube that mates with the connecting section; the second and third tubes are rotatably connected to form a complete bending structure.

[0010] Preferably, the connecting section includes a fourth pipe that is movably sleeved on the third pipe; a second connecting rod and a mounting sleeve are provided on the fourth pipe; the third pipe is adjusted by the second connecting rod and slides in and out of the fourth pipe; and an insulating fixing component is provided on the mounting sleeve.

[0011] Preferably, the tube four is provided with a limiting seat one located at the upper end of the mounting sleeve, a limiting seat two located below the mounting sleeve, and a fastening sleeve slidably disposed between the mounting sleeve and the limiting seat two; the mounting sleeve is rotatably disposed on the limiting seat one, and a groove is provided at the bottom of the mounting sleeve; the fastening sleeve is fixed by moving upward to engage with the groove, and is released from limiting the mounting sleeve by moving downward to separate from the groove; a fixing ring is provided at the bottom of the fastening sleeve; a fastening rod is provided at the bottom of the fixing ring that penetrates the limiting seat two.

[0012] Preferably, the insulating fixing assembly includes a fixing frame with a rotatable connecting mounting sleeve; an adjusting rod is provided on one side of the fixing frame; the fixing plate is adjusted by the adjusting rod and slidably mounted on the fixing frame; a limiting rod is provided on the other side of the fixing frame and is detachably inserted through the fixing plate and the fixing frame; the fixing frame is a horizontally placed U-shaped structure with one side longer than the other; the fixing space is square.

[0013] Preferably, the insulating mounting platform is provided with a mounting slot for through-mounting of the middle section, and also provides a storage battery; the solar panel includes a rotating disk rotatably mounted outside the mounting slot; the rotating disk is provided with a telescopic rod extending out of the insulating mounting platform; the end of the telescopic rod is provided with a rotating frame; the solar panel is mounted on the rotating frame.

[0014] Preferably, the insulating mounting base includes a turntable located on an insulating mounting platform one; an insulating mounting platform two is provided on the turntable; an inner mounting cylinder and an outer mounting ring are provided on the insulating mounting platform two; and an annular mounting cavity is provided between the inner mounting cylinder and the outer mounting ring.

[0015] The present invention also proposes an ultrasonic bird repeller, which is installed on the above-mentioned mounting mechanism and includes an ultrasonic bird repeller body and a mounting ring located at the bottom of the ultrasonic bird repeller body; the mounting ring extends into the mounting cavity for fixation; the ultrasonic bird repeller body includes a housing; a control system is set inside the housing, and a bird identification module and a multi-directional rotatable ultrasonic generator are set on the housing.

[0016] Compared with existing technologies, this invention has the following beneficial technical effects: It features an ultrasonic bird repeller body with an adjustable emission angle, utilizing a bird identification module for detection, and emits effective ultrasonic frequencies in a targeted and wide-range manner, making bird repeller more intelligent, precise, and efficient. The three-section installation and adjustment frame allows for flexible adjustment of the ultrasonic bird repeller body's position and angle during operation and installation, meeting both installation environment requirements and bird repeller effectiveness needs. The insulated fixing components can be used to create a closed fixing space through limiting rods, fixing frames, and fixing plates, securing it to the installation object (cable). Alternatively, the limiting rods can penetrate the installation object, clamping it with the fixing frames and fixing plates for fixation. The installation structure is not only flexible and highly adjustable, allowing direct installation on existing utility pole structures, but also offers diverse installation methods to meet different installation environment requirements. Furthermore, the solar panel, through the cooperation of a rotating disk, telescopic rod, and rotating frame, efficiently collects solar energy and converts and stores electrical energy for power supply, facilitating the ultrasonic bird repeller body's operation in the field. Attached Figure Description

[0017] Figure 1 Top view of the installation mechanism; Figure 2 This is a bottom view of the installation mechanism; Figure 3 A schematic diagram showing the installation mechanism mounted on the crossarm of the tower. Figure 4 A schematic diagram showing the mounting mechanism installed on the cable; Figure 5 This is a split diagram of the installation mechanism; Figure 6This is a sectional view of the middle section; Figure 7 This is a schematic diagram of the bent section; Figure 8 This is a schematic diagram of the connecting segment; Figure 9 for Figure 8 Enlarged view of point A in the middle; Figure 10 This is a structural diagram of the insulating fixing assembly; Figure 11 This is a structural diagram of the combined structure of the insulating mounting platform and the solar modules; Figure 12 for Figure 11 Enlarged view at point B in the middle; Figure 13 This is a schematic diagram of an insulating mounting base; Figure 14 This is a schematic diagram of an ultrasonic bird repeller.

[0018] Reference numerals: 1. Ultrasonic bird repeller body; 101. Housing; 102. Ultrasonic generator; 103. Bird identification module; 104. Rotating cover; 105. Hemispherical base; 2. Insulating mounting platform one; 201. Mounting slot; 3. Mounting adjustment bracket; 301. Middle section; 30101. Pipe one; 302. Bending section; 30201. Pipe three; 30202. Pipe two; 303. Connecting section; 30301. Pipe four; 30302. Limiting seat one; 30303. Limiting seat two; 30304. Mounting sleeve; 30305. Fixing ring; 3030 6. Fastening rod; 30307. Fastening sleeve; 30308. Slot; 304. Connecting rod one; 305. Connecting rod two; 4. Insulation fixing assembly; 401. Rotating motor; 402. Fixing frame; 404. Fixing plate; 405. Adjusting rod; 406. Limiting rod; 5. Protective cover net; 6. Solar module; 601. Rotating disk; 602. Telescopic rod; 603. Rotating frame; 604. Solar panel; 7. Insulation mounting base; 701. Turntable; 702. Insulation mounting platform two; 703. Inner mounting cylinder; 704. Outer mounting ring; 8. Mounting ring. Detailed Implementation

[0019] Example 1: The present invention proposes an installation mechanism, such as... Figures 1-4As shown, the system includes an insulating mounting platform 2, a solar panel 6, a mounting adjustment frame 3, and an insulating fixing assembly 4. The insulating mounting platform 2 has a rotatable insulating mounting base 7. The solar panel 6 is located on the front and rear sides of the insulating mounting platform 2, and its position is controlled by extension and rotation. The mounting adjustment frame 3 is mounted on the insulating mounting platform 2 and extends to the left and right sides of the platform, controlling its position through extension and rotation. The insulating fixing assembly 4 is located at the end of the mounting adjustment frame 3 and includes a rotatable fixing frame 402. A movable fixing plate 404 is mounted on the fixing frame 402. The insulating fixing assembly 4 also includes a limiting rod 406 mounted on the fixing frame 402 and the fixing plate 404. During installation, the limiting rod 406, the fixing frame 402, and the fixing plate 404 form a closed fixing space, which is then fitted onto the object for fixation. Alternatively, the limiting rod 406 can penetrate the object, and the fixing frame 402 and the fixing plate 404 can clamp the object for fixation.

[0020] like Figure 5 As shown, the mounting adjustment frame 3 includes a middle section 301 located on the insulating mounting platform 2, a rotatable bent section 302 slidably disposed at both ends of the middle section 301, and a rotatable connecting section 303 located between the bent section 302 and the insulating fixing assembly 4.

[0021] It should be further explained that the middle section 301, the bending section 302 and the connecting section 303 form a deformable U-shaped structure. By rotating and extending, the position of the insulating fixing component 4 can be flexibly adjusted to meet different installation requirements.

[0022] like Figure 6 As shown, the middle section 301 includes a pipe 30101 that passes through the insulating mounting platform 2; both ends of the pipe 30101 are provided with connecting rods 304; the bent section 302 is adjusted by the connecting rods 304 and slides in and out of the pipe 30101.

[0023] It should be further explained that the tube 30101 has a partition and a gear 1 inside, and a knob 1 that connects to the gear 1 outside; the connecting rod 304 is rotatably mounted on the partition and has external threads, and a gear 2 is mounted on the connecting rod 304; the gear 2 meshes with the gear 1, driving the connecting rod 304 to rotate.

[0024] It should be further noted that there are also installation holes at both ends of pipe 30101.

[0025] like Figure 7 As shown, the bending section 302 includes a second tube 30202 that cooperates with the first connecting rod 304 and a third tube 30201 that cooperates with the connecting section 303; the second tube 30202 and the third tube 30201 are rotatably connected by a motor to form a complete bending structure.

[0026] It should be further noted that pipe 2 (30202) is threadedly connected to connecting rod 1 (304).

[0027] It should be further noted that the bending structure is L-shaped.

[0028] During adjustment, turning knob one engages gear two with gear one, causing connecting rod one 304 to rotate. Tube two 30202 slides in and out of tube one 30101 to adjust the distance between the two sets of insulating fixing components 4. The bent section 302 is fixed by installing screws on mounting hole one, pressing against tube two 30202. Further adjustment of the angle between the two sets of insulating fixing components 4 is achieved through the relative rotation of tube two 30202 and tube three 30201.

[0029] like Figure 8 As shown, the connecting section 303 includes a fourth pipe 30301 movably sleeved on the third pipe 30201; a second connecting rod 305 and a mounting sleeve 30304 are provided on the fourth pipe 30301; the third pipe 30201 is adjusted by the second connecting rod 305 and slides in and out of the fourth pipe 30301. The insulating fixing assembly 4 is provided on the mounting sleeve 30304.

[0030] It should be further noted that the top of the 30301 tube is equipped with a knob and the tube opening is equipped with a mounting hole.

[0031] It should be further explained that the connecting rod 2 305 is rotatably installed inside the tube 4 30301 via the connecting knob 2, and the connecting rod 2 305 is provided with external thread; the tube 3 30201 is threadedly connected to the connecting rod 2 305.

[0032] During adjustment, turn knob two, which rotates connecting rod two 305, causing tube three 30201 to slide in and out of tube four 30301, thereby adjusting the length of the mounting bracket 3. Secure the bent section 302 by installing screws on mounting hole two, which press against tube three 30201.

[0033] like Figure 9 As shown, the tube 30301 is provided with a limiting seat 30302 located at the upper end of the mounting sleeve 30304, a limiting seat 30303 located below the mounting sleeve 30304, and a fastening sleeve 30307 slidably disposed between the mounting sleeve 30304 and the limiting seat 30303; the mounting sleeve 30304 is rotatably disposed on the limiting seat 30302, and a slot 30308 is provided at the bottom of the mounting sleeve 30304; the fastening sleeve 30307 moves upward to engage with the slot 30308 to fix the mounting sleeve 30304, and moves downward to separate from the slot 30308 to release the limitation on the mounting sleeve 30304; a fixing ring 30305 is provided at the bottom of the fastening sleeve 30307; a fastening rod 30306 is provided at the bottom of the fixing ring 30305, which penetrates the limiting seat 30303.

[0034] The fastening rod 30306 is a threaded rod. When the fastening sleeve 30307 moves upward and engages with the slot 30308, the bottom of the fastening rod 30306 is screwed into the nut until it abuts against the limit seat 30303, which can strengthen the fastening sleeve 30307 and position the mounting sleeve 30304.

[0035] like Figure 10 As shown, the insulating fixing assembly 4 includes a fixing frame 402 that is rotatably connected to the mounting sleeve 30304 and driven by a rotating motor 401; an adjusting rod 405 is provided on one side of the fixing frame 402; a fixing plate 404 is adjusted by the adjusting rod 405 and slidably mounted on the fixing frame 402; a limiting rod 406 is provided on the other side of the fixing frame 402 and is detachably passed through the fixing plate 404 and the fixing frame 402; the fixing frame 402 is a horizontally placed U-shaped structure with one side longer than the other; the fixing space is square.

[0036] It should be further explained that the adjusting rod 405 is threaded to the short side wall of the fixing bracket 402, with a handle at the upper end and a rotatably connected fixing plate 404 at the lower end.

[0037] It should be further explained that the limiting rod 406 is a threaded rod, with its upper end passing through the through hole of the fixing plate 404 and fixed by a nut, and its lower end passing through the through hole of the long side wall of the fixing bracket 402 and fixed by a nut.

[0038] like Figure 4 As shown, when installing on the tower crossarm, holes need to be pre-drilled in the crossarm. First, the tower crossarm is positioned between the long sidewall of the fixing plate 404 and the fixing frame 402. The adjusting rod 405 is rotated, causing the fixing plate 404 to move downwards, and the long sidewall of the fixing plate 404 and the fixing frame 402 clamps the tower crossarm. Next, the limiting rod 406 passes through the through holes in the fixing plate 404, the tower crossarm, and the long sidewall of the fixing frame 402, and the nuts are tightened for fixation. Because the fixing frames 402 are of different lengths, the bottom of the L-shaped tower crossarm fits snugly against the long sidewall, while the short sidewall abuts against the vertical section of the L-shaped tower crossarm.

[0039] like Figure 3 As shown, when installing on the cable, the cable is initially positioned between the long sidewall of the fixing plate 404 and the fixing bracket 402. The adjusting rod 405 is rotated, causing the fixing plate 404 to move downwards, and the long sidewall of the fixing plate 404 and the fixing bracket 402 clamps the cable. Next, the limiting rod 406 passes through the through holes in the long sidewall of the fixing plate 404 and the fixing bracket 402, and the nut is tightened to secure it, forming a closed fixing space. Because the fixing brackets 402 are of different lengths, a smaller fixing space can be formed to reduce subsequent shaking of the ultrasonic bird repeller while ensuring the stable installation of the limiting rod 406.

[0040] like Figures 11-12 As shown, the insulating mounting platform 2 is provided with a mounting slot 201 for the middle section 301 to be installed through, and a battery is also provided; the solar panel 6 includes a rotating disk 601 rotatably disposed outside the mounting slot 201; the rotating disk 601 is driven to rotate by a motor, and the rotating disk 601 is provided with a telescopic rod 602 that extends out of the insulating mounting platform 2 controlled by a cylinder; the end of the telescopic rod 602 is provided with a rotating frame 603 driven to rotate by a motor; the solar panel 604 is mounted on the rotating frame 603.

[0041] The position and angle of the solar panel 604 can be adjusted by the cooperation of the rotating disk 601, the telescopic rod 602, and the rotating frame 603. This satisfies the need for collecting solar energy and ensures the energy collection effect, while avoiding conflict with the subsequent ultrasonic bird repeller and reducing obstruction.

[0042] like Figure 13 As shown, the insulating mounting base 7 includes a turntable 701 located on the insulating mounting platform 2 and rotated by a motor; an insulating mounting platform 2 702 is provided on the turntable 701; an inner mounting cylinder 703 and an outer mounting ring 704 are provided on the insulating mounting platform 2 702; an annular mounting cavity is left between the inner mounting cylinder 703 and the outer mounting ring 704.

[0043] It should be further noted that the outer mounting ring 704 is provided with mounting hole three.

[0044] Example 2: This example proposes an ultrasonic bird repeller, which is installed on the mounting mechanism described in Example 1. Figure 14 As shown, it includes an ultrasonic bird repeller body 1 and a mounting ring 8 located at the bottom of the ultrasonic bird repeller body 1; the mounting ring 8 extends into the mounting cavity, is threadedly connected to the inner mounting cylinder 703, and is screwed into the mounting hole three for secondary fixation; the ultrasonic bird repeller body 1 includes a housing 101; a control system is installed inside the housing 101, and a bird identification module 103 and an ultrasonic generator 102 that can rotate in multiple directions are installed on the housing 101.

[0045] It should be further explained that a spherical groove is provided on the housing 101; a rotating cover 104 is provided in the spherical groove and rotates from the origin by a motor; a hemispherical seat 105 is provided on the rotating cover 104 and rotates by another motor; and an ultrasonic generator 102 is provided on the horizontal end of the hemispherical seat 105.

[0046] By setting up the bird recognition module 103 (sound recognition or image recognition), the most effective ultrasonic frequency can be automatically switched when a bird is detected approaching (e.g., 18kHz for pigeons and 22kHz for crows). By rotating the rotating cover 104 and the hemispherical base 105 alternately, the ultrasonic emission direction can be further adjusted, making its effective range more precise and efficient.

[0047] It should be further explained that the outside of the insulating mounting platform 2 is equipped with a protective cover net 5 that covers the insulating mounting base 7 and the ultrasonic bird repeller body 1 to protect the ultrasonic bird repeller body 1.

[0048] It should be further noted that the protective mesh 5 is fixed with screws.

[0049] The working principle of the above-mentioned installation mechanism and ultrasonic bird repeller is as follows: Rotating knob one causes tube two (30202) to slide in and out of tube one (30101) to meet the spacing requirements of the two sets of insulating fixing components 4. By installing screws on mounting hole one, tube two (30202) is pressed against, and the bent section 302 is fixed. Further, the relative rotation of tube two (30202) and tube three (30201) adjusts the angle of the two sets of insulating fixing components 4. Then, by rotating knob two, tube three (30201) slides in and out of tube four (30301) to adjust the length of the mounting adjustment bracket 3. By installing screws on mounting hole two, tube three (30201) is pressed against, and the bent section 302 is fixed. Finally, rotating mounting sleeve 30304 adjusts the position of the insulating fixing components 4.

[0050] After adjustment, select the installation location based on the installation environment. For example... Figure 4 As shown, when installing on the tower crossarm, holes need to be pre-drilled in the crossarm. First, the tower crossarm is positioned between the long sidewall of the fixing plate 404 and the fixing frame 402. The adjusting rod 405 is rotated, causing the fixing plate 404 to move downwards, and the long sidewall of the fixing plate 404 and the fixing frame 402 clamps the tower crossarm. Then, the limiting rod 406 passes through the through holes in the fixing plate 404, the tower crossarm, and the long sidewall of the fixing frame 402, and the nut is tightened for fixation. Figure 3 As shown, when installing on a cable, the cable is initially positioned between the long sidewall of the fixing plate 404 and the fixing bracket 402. The adjusting rod 405 is rotated, causing the fixing plate 404 to move downwards, and the long sidewall of the fixing plate 404 and the fixing bracket 402 clamps the cable. Next, the limiting rod 406 passes through the through-holes in the long sidewall of the fixing plate 404 and the fixing bracket 402, and the nut is tightened to secure it, forming a closed, fixed space.

[0051] After the insulating fixing component 4 is fixed, the fastening sleeve 30307 moves upward and engages with the slot 30308. The bottom of the fastening rod 30306 is screwed into the nut until it abuts against the limit seat 30303, thus reinforcing the fastening sleeve 30307 and positioning the mounting sleeve 30304. The mounting ring 8 is inserted into the mounting cavity and threadedly connected to the inner mounting cylinder 703. It is then screwed into the mounting hole 3 with a screw to secure the ultrasonic bird repeller body 1. Finally, the protective cover net 5 is installed.

[0052] The ultrasonic bird repeller body 1 rotates during operation. When the bird recognition module 103 detects an approaching bird, it automatically switches to the most effective ultrasonic frequency. Simultaneously, through the further staggered rotation of the rotating cover 104 and the hemispherical base 105, the ultrasonic emission direction is precisely adjusted, making its effective range more accurate and efficient. During operation, the ultrasonic bird repeller body 1 can rotate and move with the insulating mounting platform 2 under the adjustment of the mounting bracket 3 to ensure the effectiveness of the ultrasonic emission. For disassembly, first remove the protective cover 5, then unscrew the screws on the mounting hole 3, and finally remove the ultrasonic bird repeller body 1. Installation and disassembly are convenient.

[0053] In addition, the solar module 6, through the cooperation of the rotating disk 601, the telescopic rod 602, and the rotating frame 603, efficiently collects solar energy and converts and stores electrical energy for power supply.

[0054] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. An installation mechanism, characterized in that, include: Insulation mounting platform 1 (2), and a rotatable insulation mounting seat (7) is provided on insulation mounting platform 1 (2); The solar module (6) is located on the front and rear sides of the insulating mounting platform (2), and the position of the solar panel (604) is controlled by telescoping and rotating. The mounting adjustment frame (3) is set on the insulating mounting platform (2) and extends to the left and right sides of the insulating mounting platform (2). The position of the insulating mounting platform (2) is controlled by extension and rotation. The mounting adjustment frame (3) includes a middle section (301) located on the insulating mounting platform (2), a rotatable bent section (302) slidably set at both ends of the middle section (301), and a rotatable connecting section (303) located between the bent section (302) and the insulating fixing component (4). The middle section (301) includes a pipe (30101) that passes through the insulating mounting platform (2). Both ends of the pipe (30101) are provided with connecting rods (304). The bent section (302) is connected by connecting rods. (304) Adjust and slide in and out of pipe one (30101); the bending section (302) includes pipe two (30202) which cooperates with connecting rod one (304) and pipe three (30201) which cooperates with connecting section (303); pipe two (30202) and pipe three (30201) are rotatably connected to form a bending structure; the connecting section (303) includes pipe four (30301) which is movably sleeved on pipe three (30201); connecting rod two (305) and mounting sleeve (30304) are provided on pipe four (30301); pipe three (30201) is adjusted by connecting rod two (305) and slides in and out of pipe four (30301); the insulating fixing component (4) is provided on the mounting sleeve (30304); And an insulating fixing assembly (4), which is located at the end of the mounting adjustment frame (3), includes a rotatable fixing frame (402); a movable fixing plate (404) is provided on the fixing frame (402); the insulating fixing assembly (4) also includes a limiting rod (406) provided on the fixing frame (402) and the fixing plate (404). During installation, a closed fixed space is formed by the limiting rod (406), the fixing frame (402) and the fixing plate (404), which is then fitted onto the object for fixation. Alternatively, the limiting rod (406) can penetrate the object and, together with the fixing frame (402) and the fixing plate (404), clamp the object for fixation.

2. The installation mechanism according to claim 1, characterized in that, The fourth tube (30301) is provided with a first limiting seat (30302) located at the upper end of the mounting sleeve (30304), a second limiting seat (30303) located below the mounting sleeve (30304), and a fastening sleeve (30307) slidably disposed between the mounting sleeve (30304) and the second limiting seat (30303). The mounting sleeve (30304) is rotatably mounted on the limiting seat (30302), and the bottom of the mounting sleeve (30304) is provided with a slot (30308). The fastening sleeve (30307) moves upward to engage with the slot (30308) to fix the mounting sleeve (30304), and moves downward to separate from the slot (30308) to release the restriction on the mounting sleeve (30304); A retaining ring (30305) is provided at the bottom of the fastening sleeve (30307); a fastening rod (30306) is provided at the bottom of the retaining ring (30305) that passes through the limiting seat (30303).

3. The installation mechanism according to claim 2, characterized in that, The insulating fixing assembly (4) includes a fixing frame (402) that rotatably connects to the mounting sleeve (30304); an adjusting rod (405) is provided on one side of the fixing frame (402); the fixing plate (404) is adjusted by the adjusting rod (405) and slidably mounted on the fixing frame (402); a limiting rod (406) is provided on the other side of the fixing frame (402) and is detachably inserted through the fixing plate (404) and the fixing frame (402). The fixing frame (402) is a horizontally placed U-shaped structure with one side longer than the other; The fixed space is square.

4. The installation mechanism according to claim 3, characterized in that, An installation channel (201) for the middle section (301) to be installed through is provided on the insulation mounting platform (2), and a storage battery is also provided; The solar module (6) includes a rotating disk (601) rotatably disposed outside the mounting slot (201); a telescopic rod (602) extending out of the insulating mounting platform (2) is provided on the rotating disk (601); a rotating frame (603) is provided at the end of the telescopic rod (602); and a solar panel (604) is mounted on the rotating frame (603).

5. The installation mechanism according to claim 4, characterized in that, The insulating mounting base (7) includes a turntable (701) located on the insulating mounting platform one (2); an insulating mounting platform two (702) is provided on the turntable (701); an inner mounting cylinder (703) and an outer mounting ring (704) are provided on the insulating mounting platform two (702); an annular mounting cavity is left between the inner mounting cylinder (703) and the outer mounting ring (704).

6. An ultrasonic bird repeller, characterized in that, Installed on the mounting mechanism as described in claim 5, including an ultrasonic bird repeller body (1) and a mounting ring (8) located at the bottom of the ultrasonic bird repeller body (1). The mounting ring (8) extends into the mounting cavity for fixation; The ultrasonic bird repeller body (1) includes a housing (101); a control system is installed inside the housing (101), and a bird identification module (103) and an ultrasonic generator (102) that can rotate in multiple directions are installed on the housing (101).

Citation Information

Patent Citations

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    CN117175434B

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