Bird viewer
By designing the movable connection method of the accommodating mechanism and the engagement mechanism in the birdwatcher, and combining the optimization of the feeding port and station frame structure, the problem of inconvenient removal and unclear shooting of the existing birdwatcher camera device is solved, achieving the effect of convenient disassembly and clear shooting.
Patent Information
- Application Number
- CN202422532868.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The camera device of the existing bird watcher is not convenient to remove, and the image taken is not clear, especially the small birds cannot eat stably, resulting in the camera device being unclear.
A bird watching device is designed. By installing the camera device in the accommodation mechanism and movably connecting it to the engaging mechanism through a rotating shaft, two clasps and line channels are arranged to form a triangle structure to facilitate the disassembly of the camera unit with one hand; at the same time, the design of the feeding port and the station frame is optimized, so that smaller birds can eat stably and improve shooting clarity.
It realizes convenient disassembly and clear shooting of the camera device, prevents the bird watcher from shaking, and improves the quality of the shot photos and videos.
Smart Images

Figure CN223274700U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of bird feeding devices and observation devices, and more particularly to a bird watching device. Background Art
[0002] Birdwatchers are a common device in North America, often placed in gardens. Birds are attracted to the device by food, and the device's camera records them simultaneously, allowing users to observe the birds up close while feeding them. Current birdwatcher cameras are often detachably mounted on the device. This presents several issues. First, they cannot be removed single-handed, requiring two hands. This is inconvenient and increases the likelihood of hand grease contaminating the camera lens. Second, the improper placement of the perches prevents smaller birds from landing on them to feed, forcing them to fly while feeding, resulting in unclear images captured by the camera. Utility Model Content
[0003] The technical problem to be solved by the utility model is to provide a bird watcher with a camera device that is easy to dismantle and can take clear images, in view of the problems in the prior art that the camera device of the bird watcher is inconvenient to dismantle and the captured images are unclear.
[0004] The utility model provides a birdwatcher, comprising an upper cover, a column, a camera unit, and a base. The camera unit comprises a camera device, a accommodating mechanism, a clamping mechanism, a buckle, a rotating shaft, and a circuit channel. The camera device is installed in the accommodating mechanism, the accommodating mechanism is movably connected to the clamping mechanism via the rotating shaft, and the clamping mechanism is detachably mounted on the column.
[0005] Preferably, there are two buckles, which are respectively arranged on both sides of the locking mechanism and form a triangle with the line connecting the circuit channel.
[0006] Preferably, a column buckle is provided on the column, and the buckle handle cooperates with the column buckle to fix the locking mechanism.
[0007] Preferably, the longitudinal height of the circuit channel opening is at least 1.4 cm, and the transverse length of the circuit channel is at least 1.6 cm.
[0008] Preferably, a line fixing device is provided on the engaging mechanism.
[0009] Preferably, the bird watcher further includes a feeding port, a flower-shaped feeder and a stand, the stand includes a stand mounting hole, and the lower end of the flower-shaped feeder is inserted into the feeding port after passing through the stand mounting hole.
[0010] Preferably, the stand frame further includes a resting portion and a stand frame connecting portion, and the resting portion is connected to the stand frame mounting hole through the stand frame connecting portion.
[0011] Preferably, the distance between the stand mounting hole and the resting portion is 1-5 cm.
[0012] Preferably, a spring sheet is designed on the back of the accommodating mechanism, and the spring sheet contacts the engaging mechanism to increase the rotation resistance when the accommodating mechanism rotates around the rotating shaft.
[0013] Preferably, a positioning groove is provided on the spring sheet, and a positioning mechanism is provided on the engaging mechanism, and the positioning groove is engaged with the engaging mechanism to determine the optimal shooting angle of the camera device.
[0014] Compared with the prior art, the present invention provides more adaptability by installing the camera device in a accommodating mechanism, which is then movably connected to the locking mechanism through a rotating shaft. Two buckles are respectively provided on both sides of the locking mechanism, and form a triangle with the connection line of the circuit channel, so that the camera unit can be easily removed by exerting force with three fingers at the same time. By setting the size of the circuit channel opening, it is convenient for fingers to enter the circuit channel. The design of the flower-shaped feeder and the stand allows smaller birds to land safely on the stand to eat, making it convenient for the camera device to shoot static birds, making the photos and videos taken clearer. The overall fastening design of the bird watcher can prevent the bird watcher from shaking, so that the camera device can shoot clearer. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments, as shown in the figures:
[0016] In the utility model: 1-birdwatcher; 11-hook; 12-upper cover; 13-sealing cover; 14-column; 15-camera unit; 16-base cover; 17-base; 18-connector; 19-bracket; 10-sealing ring
[0017] 121-first anti-ant device; 122-first fastening structure; 1221-insertion end; 1222-upper clamping portion; 1223-limiting block; 1224-lower clamping portion; 123-rain shelter; 131-sealing ring groove; 141-second fastening structure; 1411-upper joint; 1412-lower joint; 1413-installation groove; 142-column liquid storage tank; 143-third fastening structure; 1 431 - Upper joint of base; 1432 - Lower joint of base; 1433 - Base mounting slot; 144 - Column buckle; 145 - Column sealing ring slot; 146 - Mounting space; 151 - Camera device; 152 - Accommodation mechanism; 1521 - Spring clip; 1522 - Positioning slot; 153 - Engaging mechanism; 1531 - Positioning mechanism; 154 - Handle; 155 - Rotating shaft; 156 - Line channel ;157-line fixing device;161-feeding port;162-stand;1621-stand mounting hole;1622-perching portion;1623-stand connecting portion;163-flower-shaped feeder;171-fourth fastening structure;1711-base insertion end;1712-base upper clamping portion;1714-base lower clamping portion;173-base liquid storage tank;174-base liquid outlet;176-base sealing member;177-base external slot;181-second anti-ant device;182-connector clamping mechanism;191-bracket external slot;192-bracket clamping mechanism;193-universal mounting hole;194-third anti-ant device;195-protective plug;1951-wire through hole;196-bracket through hole;197-vertical mounting hole;198-horizontal bracket body;199-vertical bracket body;
[0018] Figure 1 It is a structural schematic diagram of the utility model bird watching device;
[0019] Figure 2 This is a schematic diagram of the upper cover structure of the birdwatcher of the utility model;
[0020] Figure 3 This is a schematic diagram of the explosion of the upper structure of the birdwatcher of this utility model. Figure 1 ;
[0021] Figure 4 This is a schematic diagram of the explosion of the upper structure of the birdwatcher of this utility model. Figure 2 ;
[0022] Figure 5 This is a schematic diagram of the first fastening structure and the second fastening structure of the birdwatcher of the present utility model;
[0023] Figure 6 This is a schematic diagram of the lower structure of the bird watching device of the present invention. Figure 1 ;
[0024] Figure 7This is a schematic diagram of the lower structure of the bird watching device of the present invention. Figure 2 ;
[0025] Figure 8 This is a schematic diagram of dismantling the camera unit of the birdwatcher of the present invention;
[0026] Figure 8a This is a schematic diagram of the engaging mechanism and the accommodating mechanism of the birdwatcher of the utility model;
[0027] Figure 9 This is a schematic diagram of the bottom structure of the birdwatcher of the utility model;
[0028] Figure 10 This is a schematic diagram of the third fastening structure and the fourth fastening structure of the birdwatcher of the present utility model;
[0029] Figure 11 This is a schematic diagram of the explosion of the bottom structure of the birdwatcher of this utility model. Figure 1 ;
[0030] Figure 12 This is a schematic diagram of the explosion of the bottom structure of the bird watcher of this utility model. Figure 2 . DETAILED DESCRIPTION
[0031] In order to solve the defect that the bird watcher in the prior art has poor air tightness, which causes the contained liquid to easily leak out from various parts of the feeder, a bird watcher with good air tightness is provided.
[0032] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The drawings illustrate exemplary embodiments of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0033] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," and similar expressions used herein are for illustrative purposes only.
[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.
[0035] As used in this specification, terms containing ordinal numbers such as "first" and "second" may be used to describe various components, but these components are not limited by these terms. The purpose of using these terms is only to distinguish one component from other components. For example, without departing from the scope of the present invention, the first component can be named the second component, and similarly, the second component can be named the first component. The term "and / or" as used herein includes any and all combinations of one or more of the relevant listed items.
[0036] See also Figure 1 The birdwatcher 1 of the present invention includes a hook 11, an upper cover 12, a column 14, a camera unit 15, a base cover 16, a base 17, and a bracket 19. The hook 11 is mounted on the upper cover 12, which is detachably connected to the column 14. The base 17 is detachably connected to the lower portion of the column 14. The upper end of the base 17 is detachably covered with the base cover 16, and the lower portion is detachably connected to the bracket 19. The camera unit 15 is detachably inserted into the column 14.
[0037] See also Figure 2 The upper end of the upper cover 12 is provided with a first anti-ant device 121. This first anti-ant device 121 is a connected groove, generally arranged in a ring shape. When in use, this groove can store liquids such as water or insect repellent. When ants and other insects climb onto the upper cover 12 along the hook 11, they are blocked by the liquid in the first anti-ant device 121, preventing them from climbing onto the base cover 16 to absorb nectar and other liquids. The upper cover 12 is also provided with a rain shelter 123. The rain shelter 123 reduces the impact of rain on the camera unit 15, preventing water stains on the camera lens and preventing rain from wetting and damaging the camera unit 15.
[0038] See also Figure 3-Figure 5 The sealing cover 13 is provided with multiple sealing ring grooves 131, which accommodate the sealing rings 10. In this embodiment, there are three sealing ring grooves 131, corresponding to the three sealing rings 10. In the bird watcher 1, since the top end is not immersed in liquid, the airtightness requirements at the top end are more stringent than those at the bottom end. Having three sealing ring grooves 131 ensures good airtightness at the top end of the bird watcher 1, preventing problems such as poor airtightness caused by damaged or loosely installed sealing rings 10.
[0039] The prior art generally has one sealing ring. When the sealing cover is closed, it covers the column. The cooperation between the sealing ring and the inner wall of the column achieves a sealing effect on the upper layer. It has a certain airtightness, but the effect is relatively general. Due to the inability to close tightly or the easy movement of the sealing cover, it often has poor airtightness, causing the contained liquid to leak. To address this problem, the present invention sets a method for the upper cover 12 to engage with the column 14, so that the sealing cover 13 cannot move. Specifically, a first fastening structure 122 is set inside the upper cover 12, and a second fastening structure 141 is set at the upper end of the column 14. The first fastening structure 122 can cooperate with the second fastening structure 141 to lock the sealing cover 13 in the space between the upper cover 12 and the column 14. The first fastening structure 122 can be one or more polygonal mounting blocks, including an insertion end 1221, an upper engaging portion 1222, a stopper 1223, and a lower engaging portion 1224. The insertion end 1221, the upper engaging portion 1222, the stopper 1223, and the lower engaging portion 1224 are integrally formed. The insertion end 1221 connects the upper engaging portion 1222 and the lower engaging portion 1224. The insertion end 1221 is disposed at a first end of the polygonal mounting block, and the stopper 1223 is disposed at a second end of the polygonal mounting block. The axial cross-sectional length of the insertion end 1221 along the birdwatcher 1 is less than the distance from the upper end of the upper engaging portion 1222 to the lower end of the lower engaging portion 1224, and is also less than the width of the mounting slot 1413 formed in the second fastening structure 141. The column 14 includes an upper engaging portion 1411 and a lower engaging portion 1412, with the mounting slot 1413 formed therebetween. The distance between the upper end of the upper engaging portion 1222 and the lower end of the lower engaging portion 1224 is adapted to the width of the mounting groove 1413. A reserved space is provided between the upper engaging portion 1222 and the lower engaging portion 1224 to allow slight deformation of the first fastening structure 122 when pressed by the second fastening structure 141, thereby preventing excessive pressure on the second fastening structure 141, which could damage it or reduce its service life. When installing the upper portion of the birdwatcher 1, the end of the sealing cover 13 with the sealing ring 10 is first inserted into the upper end of the column 14. The upper cover 12 is then inserted into the sealing cover 13. The first fastening structure 122 of the upper cover 12 and the second fastening structure 141 of the column are engaged and fastened. The insertion end 1221 is inserted into the mounting groove 1413. The upper cover 12 is then rotated so that the upper engaging portion 1411 contacts the upper engaging portion 1222 via the inclined surface of the insertion end 1221, thereby securing the upper cover 12 and the column 14. When the stopper 1223 contacts the upper engaging portion 1411, further rotation is impossible, and the upper cover 12 is engaged with the column 14. Once engaged, the lower end of the first anti-ant device 121 contacts the upper end of the sealing cover 13, and the downward pressure of the upper cover 12 on the sealing cover 13 is non-zero.The downward pressure exerted by the upper cover 12 on the sealing cover 13 can tighten the sealing cover 13, causing the retaining structure of the sealing cover 13 to abut against the column 14. This allows the outer wall of the sealing ring 10 mounted on the sealing cover 13 to fully contact the inner wall of the column 14, thereby enhancing the sealing degree and improving the airtightness, thereby preventing leakage of the contained liquid. Indicator arrows are marked on the upper cover 12 and the column 14 to facilitate the user's alignment of the arrows. When the arrows are aligned, the base insertion end 1221 of the first fastening structure 122 is aligned with the installation groove 1413. At this time, the column 14 or the upper cover 12 can be rotated to complete the installation.
[0040] See also Figure 6-Figure 8a The upper end of the column 14 is open, and its interior is hollow. A columnar liquid reservoir 142 is provided to hold liquid. The columnar liquid reservoir 142 is connected to the base 17 from top to bottom. A mounting space 146 for accommodating the camera unit 15 is defined in the middle of the column 14. The camera unit 15 includes a camera device 151, a housing mechanism 152, a locking mechanism 153, a latch 154, a rotating shaft 155, and a circuit channel 156. The camera device 151 is mounted in the housing mechanism 152, which is movably connected to the locking mechanism 153 via a rotating shaft 155. The locking mechanism 153 is removably mounted in the mounting space 146.
[0041] The conventional camera unit is attached to the column via a latch at the top. Removing the camera unit requires two hands. One hand presses the latch, while the other pushes the camera unit from the front to the back. However, this approach has several drawbacks. First, removal is inconvenient. Second, pushing the camera unit from the front inevitably touches the lens, contaminating it and requiring cleaning. Furthermore, the power port of a camera device is often located at the rear end of the unit, increasing the risk of damage from rain. The present invention's latching mechanism 153 is equipped with two latches 154 and a wiring channel 156. The latches 154 are located on either side of the latching mechanism 153 and engage with the column latch 144 to secure the mechanism 153. The wiring channel 156 is designed to accommodate at least an adult's finger. Preferably, the opening of the wiring channel 156 is at least 1.4 cm in height and at least 1.6 cm in width. This design accommodates most people's fingers, making assembly and disassembly of the camera unit 15 easier. At the same time, the power cord enters the installation space 146 from the line channel 156, reducing the chance of being wetted by rainwater and protecting the camera unit 15 to a certain extent. When disassembling the camera unit 15, you can insert your index finger into the line channel 156, pinch the thumb and another finger at the two ends of the buckle 154 respectively, and use three fingers to exert force together to easily and stably remove the camera unit 15. This is convenient for one-handed operation, and the force exerted by three fingers can also make the removal process more stable, while also avoiding the possibility of contamination caused by the fingers touching the lens. During installation, you only need to align the locking mechanism 153 with the installation space 146, push the locking mechanism 153 in, and the two buckles 154 will engage with the two column buckles 144 to complete the installation. In order to allow the power line to be close to the locking mechanism 153 without hindering the insertion and removal of fingers, a line fixing device 157 for fixing the power line can be provided on the locking mechanism 153. The line fixing device 157 can clamp the power line so as not to affect the removal operation. At the same time, the fingers will not be obstructed or blocked when inserting into the line channel 156 for operation. The back of the accommodating mechanism 152 is designed with a spring 1521. The spring 1521 contacts the locking mechanism 153 and can increase the resistance to rotation when the accommodating mechanism 152 rotates around the rotating shaft 155. The spring 1521 is provided with a positioning groove 1522. The positioning groove 1522 can engage with the positioning mechanism 1531 provided on the locking mechanism 153 to fix the accommodating mechanism 152. When the positioning groove 1522 is engaged with the positioning mechanism 1531, the viewing angle of the camera device 151 is at the optimal shooting angle.
[0042] See also Figures 8-12The lower end of the column 14 is provided with a column sealing ring groove 145. There is at least one column sealing ring groove 145, and preferably two. The sealing ring 10 is correspondingly mounted in the column sealing ring groove 145. The lower end of the column 14 is provided with a third fastening structure 143, and the base 17 is provided with a fourth fastening structure 171. The third fastening structure 143 cooperates with the fourth fastening structure 171 to complete the installation and fastening of the bottom.
[0043] The fourth fastening structure 171 can be one or more polygonal mounting blocks, including a base insertion end 1711, an upper base engaging portion 1712, and a lower base engaging portion 1714. The base insertion end 1711, the upper base engaging portion 1712, and the lower base engaging portion 1714 are integrally formed. The base insertion end 1711 connects the upper base engaging portion 1712 and the lower base engaging portion 1714. The base insertion end 1711 is disposed at one end of the polygonal mounting block. The axial cross-sectional length of the base insertion end 1711 along the bird watcher 1 is less than the distance from the upper end of the upper base engaging portion 1712 to the lower end of the lower base engaging portion 1714, and is also less than the width of the base mounting slot 1433 formed by the third fastening structure 143. The column 14 includes an upper base engaging portion 1431 and a lower base engaging portion 1432, with the base mounting slot 1433 formed therebetween. The distance between the upper end of the base's upper engaging portion 1712 and the lower end of the base's lower engaging portion 1714 matches the width of the base's mounting slot 1433. A gap is left between the upper and lower engaging portions 1712, 1714, allowing slight deformation of the fourth fastening structure 171 when pressed by the third fastening structure 143. This prevents excessive pressure on the third fastening structure 143, which could damage it or reduce its service life. To install the lower portion of the birdwatcher 1, the column 14 is inserted into the base 17. The third fastening structure 143 engages with the fourth fastening structure 171. The base's insertion end 1711 is inserted into the base's mounting slot 1433 from its first end. The column 14 is then rotated, allowing the upper engaging portion 1431 to contact the upper engaging portion 1712, securing the column 14 and base 17. A beveled surface can be provided on the lower engaging portion 1432 to facilitate smooth assembly. When the base insertion end 1711 is rotated to the point where it contacts the second end of the mounting groove 1433, the rotation can no longer continue, and the engagement of the column 14 and the base 17 is completed. After the engagement is completed, the downward pressure exerted by the column 14 on the base 17 is greater than its own gravity. Through the downward pressure exerted by the column 14 on the base 17, the outer wall of the sealing ring 10 mounted on the column 14 can be fully in contact with the inner wall of the base 17, thereby increasing the degree of sealing, improving the airtightness, and preventing leakage of the contained liquid. Indicator arrows are marked on the base cover 16 and the column 14 to facilitate the user to align the arrows. When the arrows are aligned, the base insertion end 1711 of the fourth fastening structure 171 is facing the base mounting groove 1433. At this time, the installation can be completed by rotating the column 14 or the base 17.
[0044] The base 17 is provided with a base liquid outlet 174, a base seal 176, and a base liquid reservoir 173. The base liquid outlet 174 connects the base liquid reservoir 173 and the column liquid reservoir 142. Liquid contained in the column liquid reservoir 142 enters the base liquid reservoir 173 through the base liquid outlet 174. The base seal 176 is made of a soft waterproof material and is shaped to fit the base liquid reservoir 173. Its size is slightly larger than the base liquid reservoir 173 to ensure an interference fit with the base liquid reservoir 173. During use, the base seal 176 is placed in the base liquid reservoir 173, and the contained liquid enters the base liquid reservoir 173 through the base liquid outlet 174, filling the base seal 176 and applying outward pressure to the base seal 176, forcing the outer wall of the base seal 176 against the inner wall of the base liquid reservoir 173, thereby achieving a better waterproof effect. This prevents liquid from flowing into the left, right, and rear spaces of the base 17.
[0045] The base 17 is fastened with a base cover 16, which is provided with a feeding port 161, a stand 162, and a flower-shaped feeder 163. The stand 162 includes a stand mounting hole 1621, a perch 1622, and a stand connecting portion 1623. The perch 1622 is connected to the stand mounting hole 1621 via the stand connecting portion 1623. The lower end of the flower-shaped feeder 163 passes through the stand mounting hole 1621 and is inserted into the feeding port 161, and is connected to the base liquid reservoir 173 through the base seal 176. Hummingbirds can suck nectar from the base liquid reservoir 173 by inserting their mouths into the flower-shaped feeder 163. The distance between the perch 1622 of the stand 162 and the stand mounting hole 1621 is 1-5 cm, preferably 2-4 cm. This arrangement allows the perch 1622 to be at an appropriate distance from the feeding port 161, allowing the hummingbird to just inhale the nectar when standing on the perch 1622. At this point, the camera 151 can be used to capture a still, clearer image of the hummingbird.
[0046] The lower end of the base 17 is provided with a base external connection groove 177 for an external fixing device. In order to facilitate adaptation, the base external connection groove is provided with a variety of different interfaces, such as a cylindrical mounting interface, a plate-shaped screw fixing mounting interface, etc. In the present utility model, we use a cylindrical mounting interface to externally connect the connector 18. The connector 18 may include a connector snap-fit mechanism 182 and a second anti-ant device 181. The connector snap-fit mechanism 182 may be provided at either end or both ends of the connector 18 to play a fixing role. The second anti-ant device 181 is provided in the middle of the connector 18 and may be provided as an annular water tank, which is filled with water or insect repellent liquid when in use to prevent ants and other insects from climbing onto the base 17 through the connector 18.
[0047] One end of connector 18 is connected to base 17, and the other end is connected to bracket 19. Bracket 19 includes a transverse bracket body 198 and a vertical bracket body 199. Transverse bracket body 198 and vertical bracket body 199 can be movably connected, fixedly connected, or designed as a single piece. During normal use, transverse bracket body 198 and vertical bracket body 199 are perpendicular to each other. Transverse bracket body 198 is provided with a bracket external connection slot 191, which can be connected to base 17 via connector 18. A bracket locking mechanism 192 can be provided within bracket external connection slot 191. Bracket locking mechanism 192 can interlock with connector locking mechanism 182 of connector 18, thereby ensuring a more secure installation of birdwatcher 1. Transverse bracket body 198 can also be provided with a universal mounting hole 193 to facilitate adaptation to other types of bird feeders.
[0048] In the prior art, when power is needed for the camera, it is often provided through a power cord, with one end of the power cord connected to the camera and the other end connected to a solar power supply device or a socket. Ants or squirrels can easily climb onto the feeding device through the power cord. In the present utility model, a third anti-ant device 194 is also provided on the transverse bracket body 198. The third anti-ant device 194 is provided around the bracket through-hole 196 and can hold water or insect repellent liquid. The bracket through-hole 196 connects the upper and lower ends of the transverse bracket body 198. A protective plug 195 is installed in the bracket through-hole 196. The protective plug 195 is a soft plug. A wire through-hole 1951 is provided on the protective plug 195, which allows the wire to pass through one end of the protective plug 195 and out of the other end. The protective plug 195 can play a dual role in preventing small insects such as ants and squirrels. When the main purpose is to prevent small insects such as ants, the power cord is passed through the wire through hole 1951 from top to bottom after being connected to the power supply, and then the other end is connected to the camera device 151. In this way, when small insects such as ants crawl along the wire to the protective plug 195, they will be blocked by the third anti-ant device 194 and cannot reach the bird watcher 1; when the main purpose is to prevent squirrels, the power cord is passed through the wire through hole 1951 from bottom to top after being connected to the power supply, and then the other end is connected to the camera device 151. In this way, when squirrels crawl along the wire to the protective plug 195, they will be blocked by the bottom of the horizontal bracket body 198 and cannot reach the bird watcher 1.
[0049] Vertical bracket body 199 provides a more stable mounting method. When using vertical bracket body 199 for installation, vertical mounting holes 197 can be aligned with pre-fixed nails or other auxiliary mounting objects to achieve bracket 19 installation. This mounting method allows the entire vertical bracket body 199 to be fastened to the object to be mounted, such as a tree or wall, making the entire birdwatcher 1 more stable and less prone to shaking, thus protecting it from natural conditions such as strong winds. It also ensures clearer images from camera 151. The lower end of bracket 19 is also provided with a mounting interface, which can be docked with a support pole directly erected on the ground, providing more installation options.
[0050] Compared with the prior art, the present invention provides more adaptability by installing the camera device 151 in the accommodating mechanism 152, and the accommodating mechanism 152 is movably connected to the locking mechanism 153 through the rotating shaft 155. The two buckles 154 are respectively arranged on both sides of the locking mechanism 153, and form a triangle with the line connecting the circuit channel 156. By exerting force with three fingers at the same time, it is convenient to take out the camera unit 15. By setting the size of the opening of the circuit channel 156, it is convenient to insert the fingers into the circuit channel 156. The design of the flower-shaped feeder 163 and the stand 162 allows smaller birds to land safely on the stand 162 to eat, making it convenient for the camera device 151 to shoot static birds, making the photos and videos shot clearer. The overall fastening design of the bird watcher 1 can prevent the bird watcher 1 from shaking, so that the camera device 151 can shoot clearer.
[0051] The embodiments of the present invention are described above in conjunction with the accompanying drawings, but the present invention is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present invention, ordinary technicians in this field can also make many forms without departing from the scope of protection of the purpose of the present invention and the claims, which are all within the protection of the present invention.
Claims
1. A birdwatcher, comprising an upper cover, a column, a camera unit, and a base, characterized in that: The camera unit includes a camera device, a accommodating mechanism, a locking mechanism, a handle, a rotating shaft and a circuit channel. The camera device is installed in the accommodating mechanism. The accommodating mechanism is movably connected to the locking mechanism via the rotating shaft. The locking mechanism is detachably mounted on the column. There are two handles, which are respectively arranged on both sides of the locking mechanism, forming a triangle with the line connecting the circuit channel.
2. The bird watching device according to claim 1, characterized in that: The column is provided with a column buckle, and the buckle handle cooperates with the column buckle to fix the locking mechanism.
3. The bird watching device according to claim 1, characterized in that: The longitudinal height of the circuit channel opening is at least 1.4 cm, and the transverse length of the circuit channel is at least 1.6 cm.
4. The birdwatcher according to claim 1, characterized in that: The clamping mechanism is provided with a line fixing device.
5. The bird watching device according to claim 1, characterized in that: The bird watcher further includes a feeding port, a flower-shaped feeder and a stand, wherein the stand includes a stand mounting hole, and the lower end of the flower-shaped feeder passes through the stand mounting hole and is inserted into the feeding port.
6. The bird watching device according to claim 5, characterized in that: The stand frame further includes a perching portion and a stand frame connecting portion, and the perching portion is connected to the stand frame mounting hole through the stand frame connecting portion.
7. The bird watching device according to claim 6, characterized in that: The distance between the mounting hole of the stand frame and the resting portion is 1-5 cm.
8. The bird watching device according to claim 1, characterized in that: A spring sheet is designed on the back of the accommodating mechanism, and the spring sheet contacts the engaging mechanism to increase the rotation resistance when the accommodating mechanism rotates around the rotating shaft.
9. The bird watching device according to claim 8, characterized in that: A positioning groove is provided on the spring piece, and a positioning mechanism is provided on the engaging mechanism. The positioning groove is engaged with the engaging mechanism to determine the best shooting angle of the camera device.
Citation Information
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