Weak-current intelligent security and protection monitoring cabinet
Through the combination of anti-biased vertical plate and synchronous drive components, the problem of inflexible adjustment of the installation board in the existing weak-current intelligent security monitoring cabinet is solved, and the stability and convenience of installation partitions are achieved, which improves the flexibility of device installation and the convenience of the cabinet use.
Patent Information
- Application Number
- CN202422108383.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-28
AI Technical Summary
In the existing weak current intelligent security monitoring cabinet, the adjustment flexibility of the installation board is insufficient, resulting in inconvenient installation.
The anti-biased vertical plate and synchronous drive assembly are adopted to adjust the position of the mounting partition through the anti-biased vertical plate, and the synchronous drive assembly is used to lock the position of the mounting partition, so that it can be moved arbitrarily and locked at any height, increasing installation stability and convenience.
It realizes flexible adjustment and stable locking of the installation partition, improving the convenience of device installation and the convenience of cabinet use.
Smart Images

Figure CN223053303U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of security monitoring, in particular to a weak current intelligent security monitoring cabinet. Background Art
[0002] Weak current generally refers to DC circuits or audio, video lines, network lines, and telephone lines, and the AC voltage is generally within 36V. Electrical appliances such as telephones, computers, and televisions in household appliances for signal input (cable TV lines) and audio equipment (output line) are all weak current electrical equipment. Conceptually, strong current and weak current are generally easy to distinguish, and the main difference lies in their different uses. Strong current is used as a power energy source. Weak current is used as a signal electricity. Voltage is not a way to distinguish strong current and weak current.
[0003] The security monitoring system transmits video signals within its closed loop using optical fibers, coaxial cables, or microwaves, and forms an independent and complete system from camera to image display and recording. It can reflect the monitored object in real time, vividly, and truly, not only greatly extending the observation distance of the human eye, but also expanding the function of the human eye. It can replace manual long-term monitoring in harsh environments, allowing people to see everything that actually happens at the monitored site and recording it through a video recorder. At the same time, the alarm system equipment alarms against illegal intrusion, and the generated alarm signal is input into the alarm host, which triggers the monitoring system to record and record.
[0004] When the security monitoring system is actually used, a weak current cabinet is required to control various weak current instruments. In the authorized Chinese utility model patent "Publication No.: CN212786218U, Name: A Building Security Monitoring Cabinet", by pushing the second extrusion block to squeeze the first extrusion block through a button, the first extrusion blocks can be made to approach each other, driving the clamping rods to contract into the interior of the mounting plate. In this way, the clamping rods no longer catch the card slots, and the mounting plate can be taken out of the sliding groove. The entire disassembly process is convenient and fast, so as to be conveniently installed in the target sliding groove. However, in the above application, the position of the sliding groove is fixed, resulting in the fact that although the mounting plate can be adjusted, the position adjusted each time is fixed, affecting the flexibility during the adjustment of the mounting plate. Summary of the Utility Model
[0005] The technical problem to be solved by the utility model is to overcome the defect of low flexibility in the use of the existing mechanism and provide a weak current intelligent security monitoring cabinet.
[0006] The utility model solves the above technical problem through the following technical solutions:
[0007] The utility model provides a weak current intelligent security monitoring cabinet, including a cabinet body frame,
[0008] Install partition boards. A plurality of partition boards are arranged in the inner cavity of the cabinet frame, and the partition boards are used for installing weak current intelligent security devices;
[0009] Anti-deviation vertical plates. Two anti-deviation vertical plates symmetrically distributed left and right are fixedly connected to the inner side wall of the cabinet frame, and the surface of the anti-deviation vertical plates is slidably and penetratingly connected with the partition boards;
[0010] Moving toothed plates. Moving toothed plates are arranged on both sides of the partition board, and are engaged when the moving toothed plates are attached to the side surface of the partition board;
[0011] Synchronous driving assembly. The synchronous driving assembly is respectively connected to the upper and lower sides of the two moving toothed plates, and is used for moving the moving toothed plates on both sides.
[0012] In this technical solution, the position of the partition board can be adjusted arbitrarily by using the anti-deviation vertical plate, and at the same time, the position of the moving toothed plate can be adjusted by using the synchronous driving assembly, so as to lock the position of the partition board, so that the partition board can move arbitrarily and be locked at any height, thereby increasing the stability of the partition board adjustment, facilitating the installation of devices, and increasing the convenience of using the cabinet.
[0013] Preferably, a plurality of fixed teeth are arranged on both sides of the partition board.
[0014] In this technical solution, the partition board and the moving toothed plate can be engaged and locked when they are attached.
[0015] Preferably, the synchronous driving assembly includes a driving source, the driving source is installed on the top of the cabinet frame, and both output ends of the driving source are connected with rotating shafts;
[0016] One end of each of the two rotating shafts away from the driving source is rotatably and penetratingly connected to one side of the protective housing, and the two protective housings are respectively connected to both sides of the cabinet frame;
[0017] Two moving components are arranged inside the protective housing and are distributed up and down. The two moving components are respectively connected to the upper and lower sides of the moving toothed plate, and the moving component located above is connected to one end of the rotating shaft away from the driving source;
[0018] The two moving components achieve synchronous movement through a synchronous component.
[0019] In this technical solution, the synchronous driving assembly can make the moving toothed plates on both sides move towards or away from each other simultaneously.
[0020] Preferably, the moving component includes a threaded column, and the end face of the threaded column is rotatably connected to the inner wall of the protective housing;
[0021] A moving plate is threadedly connected to the surface of the threaded post, and a plurality of connecting posts are connected to the bottom of the moving plate;
[0022] The connecting post is slidably and penetratingly connected to the side surface of the cabinet frame, and one end of the connecting post away from the moving plate is connected to a moving tooth plate.
[0023] In this technical solution, the moving tooth plate can be moved by using a moving component.
[0024] Preferably, one end of the threaded post located above is rotatably connected to the inner wall of the protective housing, and the other end is connected to one end of a rotating shaft;
[0025] Both ends of the threaded post located below are rotatably connected to the inner wall of the protective housing.
[0026] In this technical solution, the rotation of the threaded post can drive the movement of the moving plate.
[0027] Preferably, the synchronization component includes two driving sprockets distributed up and down, and the two driving sprockets are respectively connected to the surface of the threaded post;
[0028] The side surface of the driving sprocket is meshed and connected with a driving chain, and the upper and lower driving sprockets are drivingly connected through the driving chain.
[0029] In this technical solution, the synchronization component can be used to synchronously rotate the threaded posts on the upper and lower sides.
[0030] Preferably, a temporary fixing component is installed at the bottom of the installation partition board. The temporary fixing component includes two symmetrically distributed fixing side plates, and the fixing side plates are installed at the bottom of the installation partition board;
[0031] The two fixing side plates are connected by a plurality of support columns;
[0032] Two symmetrically distributed adjusting plates are slidably and penetratingly connected to the surface of the support column;
[0033] A plurality of locking columns are connected to the opposite sides of the two adjusting plates. A positioning groove is formed on one side of the anti-deviation vertical plate, and the locking column is detachably connected to the anti-deviation vertical plate through the positioning groove.
[0034] In this technical solution, the temporary fixing component can be used to temporarily lock the position of the installation partition board when the moving tooth plate is away from the installation partition board, so as to facilitate the adjustment of the position of the installation partition board.
[0035] Preferably, a plurality of elastic resetting members are connected to the opposite sides of the two adjusting plates.
[0036] In this technical solution, the elastic resetting members can be used to facilitate the two adjusting plates to return to their initial positions.
[0037] Preferably, the fixed side plate is provided with a sliding hole, and the surface of the locking column is slidably and penetratingly connected to the fixed side plate through the sliding hole.
[0038] In this technical solution, the locking column can slide along with the adjusting plate.
[0039] Preferably, a plurality of moving wheels are installed at the bottom of the cabinet frame.
[0040] In this technical solution, the use of moving wheels can facilitate the movement of the cabinet.
[0041] On the basis of conforming to the common knowledge in the art, the above preferred conditions can be combined arbitrarily to obtain various preferred examples of the present invention.
[0042] The positive and progressive effects of the present invention are as follows:
[0043] The present invention can arbitrarily adjust the position of the installation partition by using the anti-deviation vertical plate, and at the same time, the position of the moving tooth plate can be adjusted by using the synchronous drive assembly, so as to lock the position of the installation partition, so that the installation partition can move arbitrarily and be locked at any height, thereby increasing the stability of the adjustment of the installation partition, facilitating the installation of devices, and increasing the convenience of using the cabinet. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] Figure 1 It is a schematic structural diagram of a weak current intelligent security monitoring cabinet according to an embodiment of the present invention.
[0045] Figure 2 is Figure 1 The overall internal structural schematic diagram of the weak current intelligent security monitoring cabinet shown.
[0046] Figure 3 is Figure 1 The top view structural schematic diagram of the synchronous drive assembly of the weak current intelligent security monitoring cabinet shown.
[0047] Figure 4 is Figure 1 The internal top view structural schematic diagram of the cabinet frame of the weak current intelligent security monitoring cabinet shown.
[0048] DESCRIPTION OF THE REFERENCE NUMERALS
[0049] 1. Cabinet frame;
[0050] 2. Installation partition;
[0051] 3. Anti-deviation vertical plate;
[0052] 4. Moving tooth plate;
[0053] 5. Synchronous drive assembly; 51. Drive source; 52. Rotating shaft; 53. Protective housing; 54. Moving part; 541. Threaded column; 542. Moving plate; 543. Connecting column; 544. Fixed track; 55. Synchronous part; 551. Driving sprocket; 552. Driving chain;
[0054] 6. Temporary fixing assembly; 61. Fixed side plate; 62. Support column; 63. Adjusting plate; 64. Locking column; 65. Elastic reset member;
[0055] 7. Moving wheel. Detailed implementation manners
[0056] The present utility model will be further described below by way of embodiments, but the present utility model is not limited to the scope of the described embodiments.
[0057] Figures 1 to 4 The following shows a schematic structural diagram of an embodiment of the weak-current intelligent security monitoring cabinet of the present utility model. The weak-current intelligent security monitoring cabinet includes a cabinet body frame 1,
[0058] Installation partition 2. A plurality of installation partitions 2 are arranged in the inner cavity of the cabinet body frame 1, and the installation partitions 2 are used for installing weak-current intelligent security devices;
[0059] Anti-deviation vertical plate 3. Two anti-deviation vertical plates 3 symmetrically distributed left and right are fixedly connected to the inner cavity side wall of the cabinet body frame 1, and the surface of the anti-deviation vertical plate 3 is slidably penetrated and connected with the installation partition 2;
[0060] Moving tooth plate 4. Moving tooth plates 4 are arranged on both sides of the installation partition 2, and the moving tooth plates 4 are engaged when they are attached to the side surface of the installation partition 2;
[0061] Synchronous drive assembly 5. The synchronous drive assembly 5 is respectively connected to the upper and lower sides of the two moving tooth plates 4, and the synchronous drive assembly 5 is used for moving the two moving tooth plates 4.
[0062] In this technical solution, the position of the installation partition 2 can be adjusted arbitrarily by using the anti-deviation vertical plate 3, and at the same time, the position of the moving tooth plate 4 can be adjusted by using the synchronous drive assembly 5, so as to lock the position of the installation partition 2, so that the installation partition 2 can move arbitrarily and be locked at any height, thereby increasing the stability of the adjustment of the installation partition 2, facilitating the installation of devices, and increasing the convenience of use of the cabinet.
[0063] A plurality of fixed teeth are arranged on both sides of the installation partition 2.
[0064] In this technical solution, when the installation partition 2 and the moving tooth plate 4 are attached, they can be engaged and locked.
[0065] The synchronous drive assembly 5 includes a drive source 51, which is installed on the top of the cabinet frame 1, and both output ends of the drive source 51 are connected with a rotating shaft 52;
[0066] One end of each of the two rotating shafts 52 away from the drive source 51 is rotatably and penetratingly connected to one side of a protective housing 53, and the two protective housings 53 are respectively connected to both sides of the cabinet frame 1;
[0067] Two moving components 54 are arranged inside the protective housing 53 and are distributed vertically. The two moving components 54 are respectively connected to the upper and lower sides of the moving tooth plate 4, and the moving component 54 located above is connected to one end of the rotating shaft 52 away from the drive source 51;
[0068] The two moving components 54 achieve synchronous movement through a synchronous component 55.
[0069] In this technical solution, the synchronous drive assembly 5 is used to move the moving tooth plates 4 on both sides towards or away from each other simultaneously.
[0070] The moving component 54 includes a threaded column 541, and the end face of the threaded column 541 is rotatably connected to the inner wall of the protective housing 53;
[0071] A moving plate 542 is threadedly connected to the surface of the threaded column 541, and a plurality of connecting columns 543 are connected to the bottom of the moving plate 542;
[0072] The connecting columns 543 are slidably and penetratingly connected to the side surface of the cabinet frame 1, and one end of the connecting column 543 away from the moving plate 542 is connected to the moving tooth plate 4.
[0073] In this technical solution, the moving component 54 is used to move the moving tooth plate 4.
[0074] One end of the threaded column 541 located above is rotatably connected to the inner wall of the protective housing 53, and the other end is connected to one end of the rotating shaft 52;
[0075] Both ends of the threaded column 541 located below are rotatably connected to the inner wall of the protective housing 53.
[0076] In this technical solution, the rotation of the threaded column 541 can drive the movement of the moving plate 542.
[0077] During use, the anti-deviation vertical plate 3 is used to movably install the installation partition 2, so as to adjust the position of the installation partition 2. Then, the drive source 51 is used to drive the rotation of the rotating shaft 52, thereby driving the corresponding threaded column 541 to rotate. At this time, the synchronous component 55 can drive the rotation of the threaded column 541 below;
[0078] When the two threaded columns 541 rotate, they can drive the moving plates 542 to move along the fixed tracks 544 respectively, thereby driving the connecting columns 543 to move in the same direction, and further driving the moving tooth plates 4 to move, so that the moving tooth plates 4 on both sides can move towards each other and closely adhere to the side surface of the installation partition 2, thereby realizing clamping, locking the position of the installation partition 2, and can lock multiple installation partitions 2 at the same time, making the operation more convenient;
[0079] When it is necessary to move the installation partition 2, use the opposite method to first move the moving tooth plate 4 away from the installation partition 2, and then move the position of the installation partition 2.
[0080] The synchronization component 55 includes two driving sprockets 551 distributed up and down, and the two driving sprockets 551 are respectively connected to the surface of the threaded column 541;
[0081] The side surface of the driving sprocket 551 is meshed and connected with the driving chain 552, and the two driving sprockets 551 up and down are drivingly connected through the driving chain 552.
[0082] In this technical solution, the synchronization component 55 can be used to make the threaded columns 541 on the upper and lower sides rotate synchronously.
[0083] During use, the upper threaded column 541 rotates, thereby driving the corresponding driving sprocket 551 to rotate, and then driving the driving chain 552 to rotate. At this time, it can drive the other driving sprocket 551 to rotate, thereby driving the lower threaded column 541 to rotate, so that the upper and lower two threaded columns 541 can rotate in the same direction at the same time to achieve synchronization.
[0084] A temporary fixing component 6 is installed at the bottom of the installation partition 2. The temporary fixing component 6 includes two symmetrically distributed fixed side plates 61, and the fixed side plates 61 are installed at the bottom of the installation partition 2;
[0085] The two fixed side plates 61 are connected by a plurality of support columns 62;
[0086] Two symmetrically distributed adjusting plates 63 are slidably penetrated and connected to the surface of the support column 62;
[0087] A plurality of locking columns 64 are connected to the opposite sides of the two adjusting plates 63. A positioning groove is opened on one side of the anti-deviation vertical plate 3, and the locking column 64 is detachably connected to the anti-deviation vertical plate 3 through the positioning groove.
[0088] In this technical solution, the temporary fixing component 6 can be used to temporarily lock the position of the installation partition 2 when the moving tooth plate 4 is moved away from the installation partition 2, so as to facilitate the adjustment of the position of the installation partition 2.
[0089] A plurality of elastic reset components 65 are connected to the opposite sides of the two adjusting plates 63.
[0090] In this technical solution, the elastic reset member 65 can facilitate the two side adjusting plates 63 to return to their initial positions.
[0091] The fixed side plate 61 is provided with a sliding hole, and the surface of the locking column 64 is slidably connected through the sliding hole with the fixed side plate 61.
[0092] In this technical solution, the locking column 64 can slide along with the adjusting plate 63.
[0093] When moving the mounting partition 2, hold the two side adjusting plates 63 by hand, so that the two side adjusting plates 63 move towards each other along the support column 62, thereby driving the adjusting plates 63 to move in the same direction, and moving the adjusting plates 63 away from the positioning grooves provided in the anti-deviation vertical plate 3. At this time, the mounting partition 2 can be moved;
[0094] When the position of the mounting partition 2 is adjusted, under the action of the elastic reset member 65, the locking column 64 can automatically enter the positioning groove, thereby temporarily fixing the position of the mounting partition 2.
[0095] A plurality of moving wheels 7 are installed at the bottom of the cabinet frame 1.
[0096] In this technical solution, the moving wheels 7 can facilitate the movement of the cabinet.
[0097] The driving source 51 is a double-shaft motor or other device that can output rotational kinetic energy bidirectionally.
[0098] Although the specific implementation manners of the present invention have been described above, those skilled in the art should understand that this is only an example. The protection scope of the present invention is defined by the appended claims. Without departing from the principles and essence of the present invention, those skilled in the art can make various changes or modifications to these implementation manners, but these changes and modifications all fall within the protection scope of the present invention.
Claims
1. A weak current intelligent security monitoring cabinet, comprising a cabinet frame (1), characterized in that: The weak-current intelligent security monitoring cabinet further comprises: an installation partition (2), a plurality of installation partitions (2) are arranged at the inner cavity of the cabinet frame (1), and the installation partitions (2) are used to install weak-current intelligent security devices; Anti-deflection vertical plates (3), the inner cavity side walls of the cabinet frame (1) are fixedly connected with two anti-deflection vertical plates (3) which are symmetrically distributed on the left and right sides, and the surfaces of the anti-deflection vertical plates (3) are slidably connected to the mounting partition (2); A movable tooth plate (4), wherein both sides of the mounting partition (2) are provided with movable tooth plates (4), and the movable tooth plates (4) are engaged with the side surfaces of the mounting partition (2) when they are in contact with each other; A synchronous drive component (5), wherein the synchronous drive component (5) is respectively connected to the upper and lower sides of the two movable tooth plates (4), and the synchronous drive component (5) is used to move the movable tooth plates (4) on both sides.
2. The weak current intelligent security monitoring cabinet according to claim 1, characterized in that: A plurality of fixed teeth are arranged on both sides of the mounting partition (2).
3. The weak current intelligent security monitoring cabinet according to claim 1, characterized in that: The synchronous drive assembly (5) comprises a drive source (51), the drive source (51) is installed on the top of the cabinet frame (1), and two output ends of the drive source (51) are connected to a rotating shaft (52); One end of the two rotating shafts (52) away from the driving source (51) is rotatably connected to one side of the protective shell (53), and the two protective shells (53) are respectively connected to two sides of the cabinet frame (1); Two movable parts (54) are arranged on the inner side of the protective shell (53) and are distributed in an upper and lower manner. The two movable parts (54) are respectively connected to the upper and lower sides of the movable tooth plate (4), and the movable part (54) located on the upper side is connected to an end of the rotating shaft (52) away from the driving source (51); The two moving parts (54) achieve synchronous movement through a synchronization part (55).
4. The weak current intelligent security monitoring cabinet according to claim 3, characterized in that: The moving component (54) comprises a threaded column (541), and the end surface of the threaded column (541) is rotatably connected to the inner wall of the protective shell (53); The surface of the threaded column (541) is threadedly connected to a movable plate (542), and the bottom of the movable plate (542) is connected to a plurality of connecting columns (543); The connecting column (543) is slidably connected to the side of the cabinet frame (1), and one end of the connecting column (543) away from the movable plate (542) is connected to the movable tooth plate (4).
5. The weak current intelligent security monitoring cabinet according to claim 4, characterized in that: One end of the threaded column (541) located at the top is rotatably connected to the inner wall of the protective housing (53), and the other end is connected to one end of the rotating shaft (52); Both ends of the threaded column (541) located at the bottom are rotatably connected to the inner wall of the protective shell (53).
6. The weak current intelligent security monitoring cabinet according to claim 3, characterized in that: The synchronization component (55) comprises two transmission sprockets (551) distributed up and down, and the two transmission sprockets (551) are respectively connected to the surface of the threaded column (541); The side surface of the transmission sprocket (551) is meshedly connected with the transmission chain (552), and the upper and lower transmission sprockets (551) are transmission-connected via the transmission chain (552).
7. The weak current intelligent security monitoring cabinet according to claim 1, characterized in that: A temporary fixing assembly (6) is installed at the bottom of the installation partition (2), and the temporary fixing assembly (6) comprises two symmetrically distributed fixing side plates (61), and the fixing side plates (61) are installed at the bottom of the installation partition (2); The two fixed side plates (61) are connected via a plurality of support columns (62); The surface of the support column (62) is slidably connected to two symmetrically distributed adjustment plates (63); A plurality of locking columns (64) are connected to opposite sides of the two adjustment plates (63), a positioning groove is provided on one side of the anti-deflection vertical plate (3), and the locking columns (64) are detachably connected to the anti-deflection vertical plate (3) via the positioning groove.
8. The weak current intelligent security monitoring cabinet according to claim 7, characterized in that: A plurality of elastic reset members (65) are connected to opposite sides of the two adjustment plates (63).
9. The weak current intelligent security monitoring cabinet according to claim 7, characterized in that: The fixed side plate (61) is provided with a sliding hole, and the surface of the locking column (64) is slidably connected to the fixed side plate (61) through the sliding hole.
10. The weak current intelligent security monitoring cabinet according to claim 1, characterized in that: A plurality of moving wheels (7) are installed at the bottom of the cabinet frame (1).
Citation Information
Patent Citations
Building security monitoring cabinet
CN212786218U