CN217329130U - Monitoring mounting bracket - Google Patents

Monitoring mounting bracket Download PDF

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Publication number
CN217329130U
CN217329130U CN202220384301.9U CN202220384301U CN217329130U CN 217329130 U CN217329130 U CN 217329130U CN 202220384301 U CN202220384301 U CN 202220384301U CN 217329130 U CN217329130 U CN 217329130U
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sides
shell
plate
plates
limiting
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CN202220384301.9U
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Chinese (zh)
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杨杰
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Qingdao Jiajie Technology Development Co ltd
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Qingdao Jiajie Technology Development Co ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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Abstract

The utility model discloses a control installing support, include: the shell is of a cuboid tubular structure, limiting plates are arranged on two sides of the shell, baffles are clamped and connected in the limiting plates, and 2 locating plates are symmetrically arranged on the inner wall of the shell; the semicircle board, it is installed the locating plate inner wall, semicircle board one side is provided with circular hole, and is provided with spacing spring between 2 semicircle boards to both sides are provided with the silica gel piece between 2 semicircle boards. This control installing support, through the inside spacing ring of device and spacing pipe can with between the regional support of externally mounted, the equidirectional dual location is connected, and the spacing ring both sides all are provided with between circular hole and the outside support through the bolt run through between outside support and spacing ring and the connecting pipe use of fixing a position, improve the holistic stable effect of device, improve the whole monitoring of control and look the screen quality, improve the result of use of device.

Description

Monitoring mounting bracket
Technical Field
The utility model relates to a control installing support technical field specifically is a control installing support.
Background
While the development of network high technology and the improvement of the living standard of people, the application of video monitoring and security protection is wide, the single engineering at the early stage gradually moves to diversification, especially, the civil security which is more and more concerned becomes the new field with the most development potential of the video monitoring security, the monitoring bracket refers to the device used for fixing the position of the security monitoring device, and can be divided into a universal bracket, an I-shaped bracket, an L-shaped bracket, a T-shaped bracket and a duckbill bracket according to the shape, can be used for security monitoring equipment such as monitors, cameras, probes, external wall corners and the like, most of the existing monitoring mounting brackets are rod-shaped structures with one end and a supporting frame which are difficult to provide higher stable effect for monitoring, and the existing double-hoop type clamping mounting bracket gradually becomes loose and is easy to fall off when being used for a long time, and the existing device does not limit the position of the monitoring rear part for a long time and the monitoring rear part is easy to fall off.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a control installing support to it is difficult to the higher stable effect that provides of control to propose in solving above-mentioned background art, and the installing support of current two hoop formula centre grippings can become gradually when using for a long time and easily drop, and current device does not carry out the problem that the control rear dropped easily after spacing long-time installation to the position at control rear.
In order to achieve the above object, the utility model provides a following technical scheme: a monitoring mounting bracket comprises a shell, wherein the shell is of a cuboid tubular structure, limiting plates are arranged on two sides of the shell, a baffle is clamped and connected in the limiting plates, and 2 positioning plates are symmetrically arranged on the inner wall of the shell;
the locating plate comprises a locating plate, semicircular plates and a positioning plate, wherein the semicircular plates are arranged inside the locating plate, one sides of the semicircular plates are provided with circular holes, a limiting spring is arranged between 2 semicircular plates, and silica gel sheets are arranged on two sides between 2 semicircular plates;
the holding ring, its symmetry is installed the shell both sides, the inside commentaries on classics of holding ring is connected with the bull stick, and bull stick one side installs the connecting pipe, rubber circle is run through to connecting pipe one end.
By adopting the technical scheme, the monitoring device can be conveniently and better connected and positioned, and a stable using effect is provided for installation.
Preferably, circular holes have all been seted up to the shell both sides, and shell one side block is connected with the back plate, circular hole has been seted up in the middle of the back plate, and back plate circular hole both sides are opened and are provided with the arc hole to back plate one end is run through by the bolt with shell one side.
By adopting the technical scheme, the rear of the monitoring device is convenient to position, install and use, and the rear use effect of the monitoring device is protected.
Preferably, the locating plate both ends run through the upper and lower both sides of shell, and 2 bearing rotation between the locating plate are connected with spacing pipe, spacing pipe one side is provided with circular hole, and spacing pipe sliding connection has the bearing board.
By adopting the technical scheme, the external supports on the upper side and the lower side are convenient to connect and use, and the connecting effect of the device is improved.
Preferably, the semicircle board symmetry is provided with 2, and semicircle board one side is run through by the bearing board, bearing board one side is provided with arc platelike structure, and threaded connection between bearing board and the semicircle board to semicircle board both sides set up to open structure.
By adopting the technical scheme, the monitoring devices with different sizes can be conveniently positioned and connected for use.
Preferably, a damping spring is arranged between the positioning ring and the outside of the rotating rod, one end of the damping spring is connected with one side of the positioning ring, and an internal thread pipe orifice is arranged inside one side of the connecting pipe.
By adopting the technical scheme, the shock absorption effect can be integrally provided for the device, and the device is convenient to be integrally connected and used.
Preferably, the limiting ring is run through to connecting pipe one end, and is run through by limiting tube upper end in the middle of the limiting ring, the limiting ring both sides all are provided with circular opening.
By adopting the technical scheme, the connection effect of the connection part of the device is kept stable, and the use effect of the device is improved.
Compared with the prior art, the beneficial effects of the utility model are that: this control installing support:
1. when the device is used, the device can be in double positioning connection with the bracket in the external installation area in the same direction through the limiting ring and the limiting pipe in the device, meanwhile, circular holes are formed in both sides of the limiting ring, and the circular holes and the external bracket penetrate through the external bracket and the positions between the limiting ring and the connecting pipe through bolts for positioning use, so that the overall stability effect of the device is improved, and the overall monitoring video quality of monitoring is improved;
2. after the bearing plate and the semicircular plate in the device are positioned through threads, the bolt and the external bracket are directly inserted into the connecting surface between the inside of the bearing plate and the inside of the bearing plate through the bolt, meanwhile, the semicircular plate rotating structure on one side of the bearing plate can support the lower part of the monitoring device to keep the position of the monitoring device, and simultaneously, the external bracket is directly connected with one side of the bearing bracket to reduce the possibility of loosening and falling after long-time use between the monitoring device, and meanwhile, the limiting springs on two sides of the semicircular plate can better clamp the monitoring device;
3. after being connected through the block between inside back plate of device and the shell, wear both to fix it after through the bolt hanging, the back plate of being convenient for is protected the monitoring device rear, is convenient for the outside twitching of line through the hole in the middle of the back plate simultaneously and connects the use, can connect the use between the device that two close on through the limiting plate.
Drawings
FIG. 1 is a schematic view of the whole internal front view structure of the present invention;
FIG. 2 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
FIG. 3 is a schematic view of the overall internal side view structure of the present invention;
FIG. 4 is a schematic view of the overall external side view structure of the present invention;
fig. 5 is a schematic view of the overall external overlooking structure of the present invention.
In the figure: 1. a housing; 2. a limiting plate; 3. a baffle plate; 4. positioning a plate; 5. a semicircular plate; 6. a limiting spring; 7. a silica gel sheet; 8. a back plate; 9. a limiting pipe; 10. a support plate; 11. a positioning ring; 12. a rotating rod; 13. a connecting pipe; 14. a damping spring; 15. a rubber ring; 16. a limit ring.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: a monitoring mounting bracket comprises a shell 1, a limiting plate 2, a baffle 3, a positioning plate 4, a semicircular plate 5, a limiting spring 6, a silicon sheet 7, a rear plate 8, a limiting pipe 9, a bearing plate 10, a positioning ring 11, a rotating rod 12, a connecting pipe 13, a damping spring 14, a rubber ring 15 and a limiting ring 16;
the shell 1 is of a cuboid tubular structure, two sides of the shell 1 are respectively provided with a limiting plate 2, the limiting plates 2 are clamped and connected with a baffle 3, a positioning plate 4 is installed on the inner wall of the shell 1, the positioning plates 4 are symmetrically installed with 2, two sides of the shell 1 are respectively provided with a circular hole, one side of the shell 1 is clamped and connected with a back plate 8, the middle of the back plate 8 is provided with a circular hole, two sides of the circular hole of the back plate 8 are provided with arc-shaped holes, one end of the back plate 8 is penetrated through one side of the shell 1 by a bolt, two ends of the positioning plates 4 are penetrated through the upper side and the lower side of the shell 1, a limiting pipe 9 is rotatably connected between the 2 positioning plates 4 through a bearing, one side of the limiting pipe 9 is provided with a circular hole, and the limiting pipe 9 is slidably connected with a bearing plate 10;
when using the device, according to the needs of monitoring installation region, when installing the wall surface, the support upper end that directly will install with the wall is connected with shell 1 upper end or shell 1 lower extreme, when installing, reserve the position at control rear, place monitoring device behind the bearing board 10 inside the semicircle board 5 of shell 1 inside according to the semicircle board 5 of control size pulling top, connect back plate 8 one end block behind shell 1 one side, draw out monitoring device's electric wire directly from the inside circular hole that sets up in the middle of back plate 8, can directly detain signal line inside arbitrary one arbitrary arc hole that sets up in back plate 8 circular hole both sides according to the difference of signal line, later with signal line and the connection of electric wire in use region, according to the installation demand in region, can open baffle 3 inside limiting plate 2 outside the shell 1 that will be close to one side when closing on the installation between 2 devices to one side to open through between the two through the installation demand in one side The pipelines or the telescopic rods are connected and positioned, and the lower end of the limiting pipe 9 is connected with an external bracket for use;
the positioning plate comprises a positioning plate 4, semicircular plates 5 and a positioning plate, wherein the semicircular plates 5 are arranged inside the positioning plate 4, circular holes are formed in one sides of the semicircular plates 5, a limiting spring 6 is arranged between 2 semicircular plates 5, silicon sheets 7 are arranged on two sides between 2 semicircular plates 5, 2 semicircular plates 5 are symmetrically arranged, one sides of the semicircular plates 5 are penetrated through by a bearing plate 10, an arc-shaped plate-shaped structure is arranged on one side of the bearing plate 10, the bearing plate 10 is in threaded connection with the semicircular plates 5, and opening structures are formed in two sides of each semicircular plate 5;
when the monitoring device is placed in the semicircular plate 5, one side of the lens of the monitoring device is towards the semicircular plate 5 in the shell 1, before the positioning plate is put in, the bearing plate 10 in the lower positioning plate 4 can be rotated to be in threaded connection with the semi-circular plate 5, after the bearing plate 10 is rotated to a designated height, when the upper half-round plate 5 in the 2 half-round plates 5 is lifted upwards, after the limiting spring 6 is pulled up, simultaneously, the silica gel sheets 7 arranged on the two sides between the 2 semicircular plates 5 are stretched along with the silica gel sheets, then the monitoring device is placed inside the semicircular plates 5, contacts with one side of the arc-shaped plate-shaped structure of the bearing plate 10, then rotates the bearing plate 10 above, when the bearing plate 10 rotates, the limiting pipe 9 is driven to rotate in a bearing way among the 2 positioning plates 4, and meanwhile, the bearing plate 10 slides downwards from the upper end of the limiting pipe 9, so that the arc-shaped plate-shaped structure of the bearing plate 10 above the limiting pipe is contacted with the upper end of the monitoring device;
the positioning rings 11 are symmetrically arranged on two sides of the shell 1, rotating rods 12 are rotatably connected inside the positioning rings 11, connecting pipes 13 are arranged on one sides of the rotating rods 12, one ends of the connecting pipes 13 penetrate through the rubber rings 15, damping springs 14 are arranged between the positioning rings 11 and the outer portions of the rotating rods 12, one ends of the damping springs 14 are connected with one sides of the positioning rings 11, internal thread pipe orifices are formed inside one sides of the connecting pipes 13, one ends of the connecting pipes 13 penetrate through the limiting rings 16, the middle of each limiting ring 16 is penetrated through by the upper end of each limiting pipe 9, and circular openings are formed in two sides of each limiting ring 16;
when the device is installed, the monitoring device is installed inside the semicircular plate 5 and is positioned and used by the bearing plate 10, the two sides of the monitoring device and the bearing plate 10 are positioned and clamped, the outer support and the limiting ring 16 are contacted, then the bolt penetrates through the circular openings formed in the two sides of the limiting ring 16 and is connected with the inner thread pipe orifice inside the connecting pipe 13, the middle of the bolt penetrates through the middle of the bearing plate 10 to keep the connection between the bearing plate 10 and the monitoring device, the left and right angles of the device can be adjusted through the rotation between the positioning ring 11 and the rotating rod 12, the positioning ring 11 and the rotating rod 12 inside the device are connected and used in a tight fit mode, meanwhile, the damping spring 14 arranged between the outer portions of the positioning ring 11 and the rotating rod 12 and the rubber ring 15 arranged between the connecting pipe 13 and the limiting ring 16 are used for damping, and the stability of the device is improved.
The working principle is as follows: when the monitoring mounting bracket is used and is mounted, the monitoring device lens side is towards the inside of the shell 1, before the monitoring device lens side is placed in the shell, the bearing plate 10 in the lower positioning plate 4 is rotated to be connected with the semi-circular plate 5 through the screw thread to rotate to a designated height, then the upper semi-circular plate 5 is lifted upwards, after the limiting spring 6 and the silicon sheet 7 are pulled up, the monitoring device is placed in the semi-circular plate 5 to be contacted with one side of the arc-shaped plate structure of the bearing plate 10, then the upper bearing plate 10 is rotated, when the bearing plate 10 is rotated, the limiting pipe 9 is driven to rotate by the bearing between the positioning plates 4, meanwhile, the bearing plate 10 slides downwards due to the screw thread connection on the surface of the limiting pipe 9, the arc-shaped plate structure of the bearing plate 10 is contacted with the lower end of the monitoring device, then one end of the rear plate 8 is clamped at one side of the shell 1, the electric wire of the monitoring device is directly drawn out from the inside of the circular hole formed in the middle of the rear plate 8, between 2 devices closing on the installation, open baffle 3 between limiting plate 2 through closing on one side, with connecting the location through pipeline or telescopic link between the two, outside support passes the circular opening that both sides all set up through the bolt with spacing ring 16 and is connected with the inside internal thread mouth of pipe of connecting pipe 13, pass through the bolt and keep connecting in the middle of the layer board 10, angle is adjusted about the device through the rotation between holding ring 11 and bull stick 12, carry out the shock attenuation through damping spring 14 and rubber ring 15 when using simultaneously, holistic practicality has been increased.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A monitoring mounting bracket, comprising:
the shell (1) is of a cuboid tubular structure, limiting plates (2) are arranged on two sides of the shell (1), baffles (3) are connected to the inner portions of the limiting plates (2) in a clamping mode, positioning plates (4) are mounted on the inner wall of the shell (1), and 2 positioning plates (4) are symmetrically mounted;
the locating plate comprises semi-circular plates (5) which are arranged inside the locating plate (4), wherein one sides of the semi-circular plates (5) are provided with circular holes, limiting springs (6) are arranged between 2 semi-circular plates (5), and silica gel sheets (7) are arranged on two sides between 2 semi-circular plates (5);
holding ring (11), its symmetry is installed shell (1) both sides, the inside rotation of holding ring (11) is connected with bull stick (12), and bull stick (12) one side installs connecting pipe (13), rubber circle (15) are run through to connecting pipe (13) one end.
2. A monitoring mounting bracket in accordance with claim 1, wherein: circular hole has all been seted up to shell (1) both sides, and shell (1) one side block is connected with back plate (8), circular hole has been seted up in the middle of back plate (8), and back plate (8) circular hole both sides are opened and are provided with the arc hole to back plate (8) one end is run through by the bolt with shell (1) one side.
3. A monitoring mounting bracket in accordance with claim 1, wherein: the locating plate (4) both ends run through the upper and lower both sides of shell (1), and 2 bearing rotation between locating plate (4) are connected with spacing pipe (9), spacing pipe (9) one side is provided with circular hole, and spacing pipe (9) sliding connection has bearing board (10).
4. A monitoring mounting bracket according to claim 1, wherein: semicircle board (5) symmetry is provided with 2, and semicircle board (5) one side is run through by bearing board (10), bearing board (10) one side is provided with arc plate structure, and threaded connection between bearing board (10) and semicircle board (5) to semicircle board (5) both sides set up to open structure.
5. A monitoring mounting bracket in accordance with claim 1, wherein: the shock absorption device is characterized in that a shock absorption spring (14) is arranged between the outer portion of the positioning ring (11) and the outer portion of the rotating rod (12), one end of the shock absorption spring (14) is connected with one side of the positioning ring (11), and an internal thread pipe orifice is formed in the inner portion of one side of the connecting pipe (13).
6. A monitoring mounting bracket in accordance with claim 1, wherein: the limiting ring (16) is run through to connecting pipe (13) one end, and is run through by spacing pipe (9) upper end in the middle of limiting ring (16), spacing ring (16) both sides all are provided with circular opening.
CN202220384301.9U 2022-02-24 2022-02-24 Monitoring mounting bracket Active CN217329130U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220384301.9U CN217329130U (en) 2022-02-24 2022-02-24 Monitoring mounting bracket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220384301.9U CN217329130U (en) 2022-02-24 2022-02-24 Monitoring mounting bracket

Publications (1)

Publication Number Publication Date
CN217329130U true CN217329130U (en) 2022-08-30

Family

ID=82999405

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220384301.9U Active CN217329130U (en) 2022-02-24 2022-02-24 Monitoring mounting bracket

Country Status (1)

Country Link
CN (1) CN217329130U (en)

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