CN218998173U - Camera with protection function - Google Patents
Camera with protection function Download PDFInfo
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- CN218998173U CN218998173U CN202320047419.7U CN202320047419U CN218998173U CN 218998173 U CN218998173 U CN 218998173U CN 202320047419 U CN202320047419 U CN 202320047419U CN 218998173 U CN218998173 U CN 218998173U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E40/00—Technologies for an efficient electrical power generation, transmission or distribution
- Y02E40/30—Reactive power compensation
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Abstract
The utility model discloses a camera with a protection function, which comprises: the camera is mounted on the fixed supporting block, the pair of protective glass is mounted on the fixed supporting block through a protective shock-absorbing structure, and the fixed supporting block is provided with a lifting cleaning structure; the utility model relates to the technical field of cameras, and aims to realize double-layer multiple protection of protective glass through a protection and shock absorption structure, convert kinetic energy, avoid crushing of the protective glass at the outer side and damage to equipment at the inner side, ensure that the whole device is better and more convenient to clean, avoid difficult installation and simultaneously ensure that the device is convenient to clean, and avoid the phenomena of manual cleaning and difficult manual replacement.
Description
Technical Field
The utility model relates to the technical field of cameras, in particular to a camera with a protection function.
Background
Along with the development of society, in our daily life, monitoring camera is everywhere visible, along with the coming of digital monitoring age and the promotion of user's consumption ability, home monitoring equipment starts to rise, but the problem of following is also unavoidable, most monitoring camera is fixed at the room top, face the furniture transport in room, the easy collision causes the damage to the camera, simultaneously when the room air is comparatively turbid, the monitoring work of camera is easily influenced, and dust pile up easily takes place damage and trouble to the camera device, for example, "CN112584029B an imaging device with safeguard function, including the bottom plate, the infrared camera is installed in the top rotation of bottom plate, the below of bottom plate is provided with coupling assembling, the top of bottom plate is provided with the multidirectional adjustment mechanism that is used for adjusting infrared camera circumference position and pitch angle, the top fixed mounting of bottom plate has the type of falling V cover body, the side wall opening department of type of falling V cover body articulates there is the transparent window, be connected with automatic clean mechanism between transparent window and the type cover body, install clean mechanism" on the infrared camera, in view of this, the above-mentioned problem has been thoroughly studied.
Disclosure of Invention
In order to achieve the above purpose, the utility model is realized by the following technical scheme: a camera with protective function, comprising: the camera is mounted on the fixed supporting block, the pair of protective glass is mounted on the fixed supporting block through a protective shock-absorbing structure, and the fixed supporting block is provided with a lifting cleaning structure;
the protection shock-absorbing structure includes: the device comprises an inner return block, an outer return block, a return supporting inner block, a plurality of damping slide ways, a plurality of damping slide blocks, a plurality of damping limit shafts, a plurality of sleeved springs, a plurality of telescopic spring columns, a plurality of concave buffer blocks, a plurality of convex buffer blocks, a plurality of buffer balls, a plurality of buffer spring columns and a limit assembly;
the fixed supporting block is provided with an inner concave groove and an outer concave groove, the inner return block and the outer return block are movably inserted into the inner concave groove and the inner side of the outer concave groove, a plurality of damping slide ways are respectively horizontally and parallelly arranged on the inner concave groove and the inner side of the outer concave groove, a plurality of damping slide blocks are respectively arranged on the inner return block and the outer return block, a plurality of damping slide blocks are respectively movably inserted into the inner sides of a plurality of damping slide ways, a plurality of telescopic spring columns are respectively arranged on a plurality of damping slide ways, a plurality of telescopic spring columns are respectively connected to a plurality of damping slide blocks, a plurality of damping limiting shafts are respectively inserted into a plurality of damping slide blocks, and a plurality of shock attenuation spacing axle respectively cartridge in interior return shape piece and outer return shape piece is last, a plurality of suit spring respectively in a plurality of shock attenuation spacing epaxial, a pair of protection glass passes through spacing subassembly install in interior return shape piece and outer return shape piece is last, return shape support interior piece install in outer return shape piece the inboard of protection glass, a plurality of concave buffer block respectively install in return shape support interior piece, a plurality of movable cartridge respectively in the inboard of a plurality of concave buffer block, a plurality of buffer spring post is installed respectively in a plurality of concave buffer block's inboard, a plurality of have seted up the ball groove respectively on the convex buffer block, a plurality of buffer ball respectively movable cartridge in a plurality of the inboard of ball groove.
Preferably, the lifting cleaning structure comprises: two pairs of concave telescopic limiting shaft tubes, two pairs of telescopic inner rods, two pairs of stretching spring columns, a square lifting block, two pairs of cleaning brushes, a square electromagnet and a square magnet block;
the two pairs of the concave telescopic limiting shaft pipes are installed on the fixed supporting blocks in a pairwise parallel manner, the two pairs of the telescopic inner rods are respectively movably inserted into the two pairs of the concave telescopic limiting shaft pipes, the two pairs of the stretching spring columns are respectively installed on the inner sides of the two pairs of the concave telescopic limiting shaft pipes, the two pairs of the stretching spring columns are respectively connected to the two pairs of the telescopic inner rods, the return-shaped lifting blocks are installed on the two pairs of the telescopic inner rods, the two pairs of the cleaning brushes are installed on the return-shaped lifting blocks, the return-shaped electromagnets are installed on the fixed supporting blocks, and the return-shaped magnet blocks are installed on the return-shaped lifting blocks.
Preferably, the limiting assembly comprises: a plurality of T-shaped telescopic rods, a plurality of telescopic sleeve springs and four pairs of telescopic driving rods;
the inner loop-shaped block and the outer loop-shaped block are provided with a plurality of convex clamping grooves, the T-shaped telescopic rods are movably inserted into the convex clamping grooves respectively, the telescopic sleeve springs are sleeved on the T-shaped telescopic rods respectively, the telescopic sleeve springs are connected to the convex clamping grooves respectively, and the four pairs of telescopic driving rods are connected to the T-shaped telescopic rods respectively.
Preferably, the bottom ends of the inner and outer square blocks are respectively provided with a plurality of movable ball grooves, the inner sides of the movable ball grooves are respectively provided with movable balls, and the fixed supporting blocks are provided with a pair of square rubber pads.
Preferably, the fixed supporting block is provided with a plurality of heat dissipation holes.
Preferably, the fixed supporting block is provided with a cooling fan.
Advantageous effects
The utility model provides a camera with a protection function. The beneficial effects are as follows: this kind of camera with safeguard function carries out double-deck many times protection with protection glass through protection shock-absorbing structure, converts kinetic energy away, has avoided outside protection glass broken, causes the damage to inboard equipment, and whole device is better clean convenient, has avoided the installation difficulty, and is clean convenient simultaneously, has avoided the phenomenon of manual cleaning and manual replacement difficulty 。
Drawings
Fig. 1 is a schematic front view of a camera with protection function according to the present utility model.
Fig. 2 is a three-dimensional schematic diagram of a camera with a protection function according to the present utility model.
In the figure: 1. a camera; 2. fixing the supporting block; 3. a cover glass; 4. an inner loop-shaped block; 5. an outer loop-shaped block; 6. the inner support block is in a shape of a loop; 7. damping slideway; 8. a damping slide block; 9. damping limiting shafts; 10. sleeving a spring; 11. a telescoping spring post; 12. a concave buffer block; 13. a convex buffer block; 14. a buffer ball; 15. a buffer spring column; 16. concave telescopic limiting shaft tube; 17. a telescopic inner rod; 18. stretching the spring column; 19. a loop-shaped lifting block; 20. a cleaning brush; 21. a loop electromagnet; 22. a magnet block in a shape of a circle; 23. a T-shaped telescopic rod; 24. a telescopic sleeve spring; 25. and a telescopic driving rod.
Detailed Description
All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
All electric parts and the adaptive power supply are connected through wires by the person skilled in the art, and a proper controller and encoder should be selected according to actual conditions so as to meet control requirements, specific connection and control sequence, and the electric connection is completed by referring to the following working principles in the working sequence among the electric parts, and the detailed connection means are known in the art, and mainly introduce the working principles and processes as follows, and do not describe the electric control.
Examples
As shown in fig. 1-2, the camera is mounted on the fixed supporting block, a pair of protective glass is mounted on the fixed supporting block through a protective shock-absorbing structure, and a lifting cleaning structure is mounted on the fixed supporting block;
specifically, the protection shock-absorbing structure includes: the device comprises an inner return block, an outer return block, a return supporting inner block, a plurality of damping slide ways, a plurality of damping slide blocks, a plurality of damping limit shafts, a plurality of sleeved springs, a plurality of telescopic spring columns, a plurality of concave buffer blocks, a plurality of convex buffer blocks, a plurality of buffer balls, a plurality of buffer spring columns and a limit assembly;
specifically, set up indent type groove and outer indent type groove on the fixed bolster, interior return shape piece with outer return shape piece activity cartridge in indent type groove reaches outer indent type inslot's inboard, a plurality of the shock attenuation slide respectively horizontal parallel mount in indent type groove reaches outer indent type inslot's inboard, a plurality of the shock attenuation slider install respectively in interior return shape piece and outer return shape piece is last, and a plurality of the movable cartridge respectively in a plurality of in the shock attenuation slide's inboard, a plurality of the telescopic spring post is installed respectively in a plurality of on the shock attenuation slide, and a plurality of telescopic spring post is connected respectively in on the shock attenuation slider, a plurality of the shock attenuation limiting shaft is inserted respectively in a plurality of on the shock attenuation slider, and a plurality of the spring is installed respectively in a plurality of respectively on the inner return shape piece the cushion block is installed in a plurality of the recess type groove is installed respectively in a plurality of the inner return shape piece is gone up in a plurality of the buffer ball is installed respectively to the recess is installed in a plurality of the inner return shape piece.
It should be noted that, in the above, when external force is applied to the cover glass on the outside, the cover glass drives the outer shape piece that returns, drive the spacing axle of shock attenuation on it through outer shape piece that returns, through the cooperation of the spacing axle of shock attenuation slider and shock attenuation, the cross buffering effect of combination, the cooperation through the spacing axle of shock attenuation and suit spring in the vertical direction is formed to the cooperation of a pair of relative shock attenuation slider and shock attenuation slide, thereby reach the buffering effect, carry out cross buffering, thereby avoided external force to apply to cover glass on the inner shape piece, the back shape on the cover glass on the outer shape piece supports the inner piece simultaneously, make the concave buffer block on the back shape support the inner piece and the cooperation of protruding type buffer block, thereby carry out movable spacing with the distance between a pair of cover glass, buffer ball on the protruding type buffer block simultaneously, thereby reach the buffering effect, kinetic energy consumption on the protruding type buffer block through a plurality of buffer spring post simultaneously.
As shown in fig. 1-2, the lifting cleaning structure comprises: two pairs of concave telescopic limiting shaft tubes, two pairs of telescopic inner rods, two pairs of stretching spring columns, a square lifting block, two pairs of cleaning brushes, a square electromagnet and a square magnet block;
specifically, two pairs of concave telescopic limiting shaft pipes are installed on the fixed supporting block in a pairwise parallel manner, two pairs of telescopic inner rods are respectively movably inserted into two pairs of concave telescopic limiting shaft pipes, two pairs of extension spring columns are respectively installed on the inner sides of the concave telescopic limiting shaft pipes, two pairs of extension spring columns are respectively connected to the two pairs of telescopic inner rods, the lifting block is installed on the two pairs of telescopic inner rods, two pairs of cleaning brushes are installed on the lifting block, the electromagnet is installed on the fixed supporting block, and the magnet block is installed on the lifting block.
It should be noted that, in the above, through the regulation of the current direction on the rectangular electromagnet, thereby change the magnetism on the rectangular electromagnet, thereby reach the effect of adsorbing or repelling rectangular magnet piece, drive rectangular lifting block through rectangular magnet piece and go up and down, thereby reach two pairs of flexible inner levers on the tensile rectangular lifting block, two pairs of flexible inner levers go up and down along the inboard of concave flexible spacing central siphon, stretch two pairs of extension spring posts simultaneously, thereby reach and go up and down rectangular lifting block, simultaneously through the cleaning brush on the rectangular lifting block, clean and scrub glass through going up and down the cleaning brush.
As shown in fig. 1-2, the limiting assembly comprises: a plurality of T-shaped telescopic rods, a plurality of telescopic sleeve springs and four pairs of telescopic driving rods;
specifically, a plurality of protruding type clamping grooves are formed in the inner return-shaped block and the outer return-shaped block, a plurality of T-shaped telescopic rods are movably inserted into the protruding type clamping grooves respectively, a plurality of telescopic sleeve springs are sleeved on the T-shaped telescopic rods respectively, the telescopic sleeve springs are connected to the protruding type clamping grooves respectively, and four pairs of telescopic driving rods are connected to the T-shaped telescopic rods respectively.
It should be noted that, in the above, the telescopic extrusion is performed to the T-shaped telescopic rods through the telescopic sleeve springs, so as to achieve the effect of extruding the protective glass, and the T-shaped telescopic rods are driven by the telescopic driving rods, so as to achieve the effect of conveying the T-shaped telescopic rods.
As an optimal scheme, further, a plurality of movable ball grooves are respectively formed in the bottom ends of the inner return-shaped block and the outer return-shaped block, movable balls are respectively arranged on the inner sides of the movable ball grooves, and a pair of return-shaped rubber pads are arranged on the fixed supporting block.
As an optimal scheme, a plurality of heat dissipation holes are formed in the fixed supporting block.
Preferably, the fixed supporting block is provided with a cooling fan.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. A camera with protective function, comprising: the camera is mounted on the fixed supporting block, the pair of protective glass is mounted on the fixed supporting block through a protective shock-absorbing structure, and a lifting cleaning structure is mounted on the fixed supporting block;
the protection shock-absorbing structure includes: the device comprises an inner return block, an outer return block, a return supporting inner block, a plurality of damping slide ways, a plurality of damping slide blocks, a plurality of damping limit shafts, a plurality of sleeved springs, a plurality of telescopic spring columns, a plurality of concave buffer blocks, a plurality of convex buffer blocks, a plurality of buffer balls, a plurality of buffer spring columns and a limit assembly;
the fixed supporting block is provided with an inner concave groove and an outer concave groove, the inner return block and the outer return block are movably inserted into the inner concave groove and the inner side of the outer concave groove, a plurality of damping slide ways are respectively horizontally and parallelly arranged on the inner concave groove and the inner side of the outer concave groove, a plurality of damping slide blocks are respectively arranged on the inner return block and the outer return block, a plurality of damping slide blocks are respectively movably inserted into the inner sides of a plurality of damping slide ways, a plurality of telescopic spring columns are respectively arranged on a plurality of damping slide ways, a plurality of telescopic spring columns are respectively connected to a plurality of damping slide blocks, a plurality of damping limiting shafts are respectively inserted into a plurality of damping slide blocks, and a plurality of shock attenuation spacing axle respectively cartridge in interior return shape piece and outer return shape piece is last, a plurality of suit spring respectively in a plurality of shock attenuation spacing epaxial, a pair of protection glass passes through spacing subassembly install in interior return shape piece and outer return shape piece is last, return shape support interior piece install in outer return shape piece the inboard of protection glass, a plurality of concave buffer block respectively install in return shape support interior piece, a plurality of movable cartridge respectively in the inboard of a plurality of concave buffer block, a plurality of buffer spring post is installed respectively in a plurality of concave buffer block's inboard, a plurality of have seted up the ball groove respectively on the convex buffer block, a plurality of buffer ball respectively movable cartridge in a plurality of the inboard of ball groove.
2. The camera with protection function according to claim 1, wherein the lifting cleaning structure comprises: two pairs of concave telescopic limiting shaft tubes, two pairs of telescopic inner rods, two pairs of stretching spring columns, a square lifting block, two pairs of cleaning brushes, a square electromagnet and a square magnet block;
the two pairs of the concave telescopic limiting shaft pipes are installed on the fixed supporting blocks in a pairwise parallel manner, the two pairs of the telescopic inner rods are respectively movably inserted into the two pairs of the concave telescopic limiting shaft pipes, the two pairs of the stretching spring columns are respectively installed on the inner sides of the two pairs of the concave telescopic limiting shaft pipes, the two pairs of the stretching spring columns are respectively connected to the two pairs of the telescopic inner rods, the return-shaped lifting blocks are installed on the two pairs of the telescopic inner rods, the two pairs of the cleaning brushes are installed on the return-shaped lifting blocks, the return-shaped electromagnets are installed on the fixed supporting blocks, and the return-shaped magnet blocks are installed on the return-shaped lifting blocks.
3. The camera with protection function according to claim 2, wherein the limiting assembly comprises: a plurality of T-shaped telescopic rods, a plurality of telescopic sleeve springs and four pairs of telescopic driving rods;
the inner loop-shaped block and the outer loop-shaped block are provided with a plurality of convex clamping grooves, the T-shaped telescopic rods are movably inserted into the convex clamping grooves respectively, the telescopic sleeve springs are sleeved on the T-shaped telescopic rods respectively, the telescopic sleeve springs are connected to the convex clamping grooves respectively, and the four pairs of telescopic driving rods are connected to the T-shaped telescopic rods respectively.
4. The camera with protection function according to claim 3, wherein a plurality of moving ball grooves are respectively formed in the bottom ends of the inner square block and the outer square block, moving balls are respectively arranged on the inner sides of the plurality of moving ball grooves, and a pair of square rubber pads are arranged on the fixed supporting block.
5. The camera with the protection function according to claim 4, wherein the fixed supporting block is provided with a plurality of heat dissipation holes.
6. The camera with protection function according to claim 5, wherein a cooling fan is provided on the fixed supporting block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320047419.7U CN218998173U (en) | 2023-01-09 | 2023-01-09 | Camera with protection function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320047419.7U CN218998173U (en) | 2023-01-09 | 2023-01-09 | Camera with protection function |
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CN218998173U true CN218998173U (en) | 2023-05-09 |
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CN202320047419.7U Active CN218998173U (en) | 2023-01-09 | 2023-01-09 | Camera with protection function |
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2023
- 2023-01-09 CN CN202320047419.7U patent/CN218998173U/en active Active
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