Double-camera image dynamic acquisition device

Through the dual-camera image dynamic acquisition device, the rotating motor drives the upper and lower camera rotation and the PLC controller to transmit images, solving the problem of image acquisition loss caused by single direction locking in the prior art, and achieving the avoidance of monitoring blind spots and continuous image acquisition.

CN223219150UActive Publication Date: 2025-08-12CHANGZHOU QINGKUI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422467648.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-12
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The existing image dynamic acquisition devices are prone to locking in a single direction under abnormal conditions, resulting in the loss of image acquisition capability in other directions.

Method used

A dual-camera image dynamic acquisition device is designed, and the upper and lower cameras are driven by a rotating motor to rotate horizontally and vertically, and images are transmitted using a PLC controller, and warning lights are equipped to ensure that the other camera can operate normally when one camera is abnormal and avoid monitoring blind spots.

Benefits of technology

It realizes the continuity and reliability of image acquisition when the camera is abnormal, reduces water vapor entry, is convenient to operate and the image acquisition is comparable.

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    Figure CN223219150U_ABST
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Abstract

The utility model relates to the technical field of acquisition, in particular to a double-camera image dynamic acquisition device which comprises an installation assembly, an upper camera assembly, a lower camera assembly and a warning lamp, the upper end of the installation assembly is connected with the upper camera assembly, the upper end of the upper camera assembly is connected with the warning lamp, the lower end of the installation assembly is connected with the lower camera assembly, and the lower camera assembly is connected with the warning lamp. The mounting assembly is composed of a bearing seat, a first mounting sleeve, a lower rotating motor, an upper rotating motor, a rotating shaft, a coupler, a mounting frame and a protective sleeve, and the upper camera shooting assembly is composed of a second mounting sleeve, an upper camera, a third mounting sleeve, a PLC, an inner connecting port, an outer connecting port, a protective cover and an antenna. The lower camera shooting assembly is composed of a fourth mounting sleeve and a lower camera arranged on the lower portion of the interior of the fourth mounting sleeve, right-angle motors are connected to the lower portions of one sides of the exteriors of the second mounting sleeve and the fourth mounting sleeve correspondingly, and sliding grooves are formed in the upper portions of the exteriors of the first mounting sleeve and the fourth mounting sleeve correspondingly.
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Description

Technical Field

[0001] The utility model relates to the field of acquisition technology, in particular to a dual-camera image dynamic acquisition device. Background Art

[0002] When the dynamic image acquisition device is in operation, it is easy to be locked in a single direction after an abnormal situation occurs, and then lose the ability to acquire images in other directions.

[0003] Therefore, it is necessary to design a dual-camera image dynamic acquisition device to solve the problems in the above background technology. Utility Model Content

[0004] The purpose of the utility model is to solve the problems in the prior art and to propose a dual-camera image dynamic acquisition device.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A dual-camera image dynamic acquisition device includes a mounting assembly, an upper camera assembly, a lower camera assembly, and a warning light. The upper end of the mounting assembly is connected to the upper camera assembly, the upper end of the upper camera assembly is connected to the warning light, and the lower end of the mounting assembly is connected to the lower camera assembly.

[0007] The mounting assembly consists of a bearing seat, a first mounting sleeve, a lower rotating motor, an upper rotating motor, a rotating shaft, a coupling, a mounting frame and a protective sleeve, and the back of the first mounting sleeve is provided with a mounting frame, the upper end of the first mounting sleeve is provided with a protective sleeve, the upper part of the outer portion of the protective sleeve is connected to the bearing seat, the inner portion of the bearing seat is connected to the coupling, the inner portion of the first mounting sleeve is connected to the upper rotating motor and the lower rotating motor, and the upper end of the upper rotating motor and the lower end of the lower rotating motor are both provided with a rotating shaft;

[0008] The upper camera assembly consists of a second mounting sleeve, an upper camera head, a third mounting sleeve, a PLC controller, an internal connection port, an external connection port, a protective cover, and an antenna. The upper cameras are connected to both sides of the interior of the second mounting sleeve, the third mounting sleeve is connected to the interior of the second mounting sleeve near the back, the PLC controller is connected to the third mounting sleeve, the PLC controller is provided with multiple groups of internal connection ports on the front of the PLC controller, the second mounting sleeve, the third mounting sleeve, and the back of the PLC controller are provided with external connection ports, a protective cover is provided on the upper part of the back of the second mounting sleeve, and the upper parts of both sides of the second mounting sleeve are connected to the antenna;

[0009] The lower camera assembly is composed of a fourth mounting sleeve and a lower camera located at the lower portion of the fourth mounting sleeve;

[0010] The lower parts of the outer sides of the second mounting sleeve and the fourth mounting sleeve are both connected to right-angle motors;

[0011] The upper parts of the exteriors of the first mounting sleeve and the fourth mounting sleeve are both provided with sliding grooves.

[0012] As a preferred solution of the present invention, the bearing seat and the second mounting sleeve and the fourth mounting sleeve are connected by bolts, the bearing seat is connected to the rotating shaft through a coupling, and the bearing seat and the protective sleeve are connected through a bearing.

[0013] As a preferred solution of the present invention, the first mounting sleeve is connected to the lower rotating motor and the upper rotating motor through a sleeve connection and is locked by bolts.

[0014] As a preferred solution of the present invention, the upper camera and the second mounting sleeve, as well as the lower camera and the fourth mounting sleeve are connected via bearings.

[0015] As a preferred solution of the present invention, the upper camera, the lower camera and the right-angle motor are connected via a coupling, and the right-angle motor and the second mounting sleeve and the fourth mounting sleeve are connected via bolts.

[0016] As a preferred solution of the present invention, the third mounting sleeve, the second mounting sleeve and the PLC controller are all connected by bolts.

[0017] As a preferred solution of the present invention, the lower parts of the second mounting sleeve and the first mounting sleeve are both provided with raised rings that are sleeved with the sliding groove.

[0018] As a preferred solution of the present invention, the PLC controller and the warning light, the lower rotating motor, the upper rotating motor, the upper camera, the antenna, the lower camera, and the right-angle motor are all electrically connected.

[0019] To sum up, the technical effects and advantages of the utility model are as follows: the dual-camera image dynamic acquisition device is installed through the mounting bracket on the back of the first mounting sleeve when in use, and then the lower camera and the upper camera are driven horizontally by the lower rotating motor and the upper rotating motor respectively to form a dual-camera image dynamic acquisition device. When one of the cameras locks an abnormal phenomenon, the other camera can maintain normal operation to avoid blind spots in monitoring, and the fourth mounting sleeve, the second mounting sleeve and the first mounting sleeve are all connected by a socket and can be rotated along the slide groove to ensure the stability of rotation, and the whole is assembled with a structure that is stacked from top to bottom to reduce the entry and accumulation of water vapor. When in use, the upper camera and the lower camera are driven to rotate in the vertical direction by the right-angle motor, and the operation of the lower rotating motor and the upper rotating motor is coordinated to perform dynamic image acquisition, and then transmitted to the terminal through the PLC controller. The warning light can be used to warn on site. The operation is convenient and the acquired images are comparable. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is the overall structural diagram of the utility model;

[0021] Figure 2 This is a front structural diagram of the upper camera assembly of the present utility model;

[0022] Figure 3 This is a back structural diagram of the upper camera assembly of the present utility model;

[0023] Figure 4 This is a split structural diagram of the installation assembly of the utility model;

[0024] Figure 5 This is a structural diagram of the installation components of the utility model;

[0025] Figure 6 This is a structural diagram of the lower camera assembly of the present utility model.

[0026] In the figure: 1. Mounting assembly; 101. Bearing seat; 102. First mounting sleeve; 103. Lower rotating motor; 104. Upper rotating motor; 105. Rotating shaft; 106. Coupling; 107. Mounting bracket; 108. Protective sleeve; 2. Upper camera assembly; 201. Second mounting sleeve; 202. Upper camera; 203. Third mounting sleeve; 204. PLC controller; 205. Internal connector; 206. External connector; 207. Protective cover; 208. Antenna; 3. Lower camera assembly; 301. Fourth mounting sleeve; 302. Lower camera; 303. Right-angle motor; 304. Slide; 4. Warning light. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0028] Reference Figures 1-6A dual-camera image dynamic acquisition device includes a mounting assembly 1, an upper camera assembly 2, a lower camera assembly 3 and a warning light 4. The upper end of the mounting assembly 1 is connected to the upper camera assembly 2, the upper end of the upper camera assembly 2 is connected to the warning light 4, and the lower end of the mounting assembly 1 is connected to the lower camera assembly 3; the mounting assembly 1 is composed of a bearing seat 101, a first mounting sleeve 102, a lower rotating motor 103, an upper rotating motor 104, a rotating shaft 105, a coupling 106, a mounting frame 107 and a protective sleeve 108, and the first mounting sleeve The back of the sleeve 102 is provided with a mounting frame 107, the upper end of the first mounting sleeve 102 is provided with a protective sleeve 108, the upper part of the outer surface of the protective sleeve 108 is connected to the bearing seat 101, the bearing seat 101 is connected to the coupling 106, the first mounting sleeve 102 is connected to the upper rotating motor 104 and the lower rotating motor 103, the upper end of the upper rotating motor 104 and the lower end of the lower rotating motor 103 are both provided with a rotating shaft 105; the upper camera assembly 2 is composed of the second mounting sleeve 201, the upper camera 202, and the third mounting sleeve 20 3. The PLC controller 204, the internal connection port 205, the external connection port 206, the protective cover 207 and the antenna 208 are composed of the second installation sleeve 201 and the upper camera 202 are connected on both sides of the interior of the second installation sleeve 201. The third installation sleeve 203 is connected to the back of the second installation sleeve 201. The third installation sleeve 203 is connected to the PLC controller 204. The front of the PLC controller 204 is provided with multiple groups of internal connection ports 205. The second installation sleeve 201, the third installation sleeve 203 and the PLC controller 20 An external connection port 206 is provided on the back of the second mounting sleeve 201, a protective cover 207 is provided on the upper portion of the back of the second mounting sleeve 201, and antennas 208 are connected to the upper portions of both sides of the second mounting sleeve 201. The lower camera assembly 3 consists of a fourth mounting sleeve 301 and a lower camera head 302 provided at the lower portion of the interior of the fourth mounting sleeve 301. A right-angle motor 303 is connected to the lower portion of the exterior side of both the second mounting sleeve 201 and the fourth mounting sleeve 301. A slide groove 304 is provided on the upper portion of the exterior side of both the first mounting sleeve 102 and the fourth mounting sleeve 301.

[0029] Reference Figures 1-6, When the image dynamic acquisition device is in operation, it is easy to be locked in one direction after an abnormal situation occurs, and then the image acquisition ability in other directions is lost. The bearing seat 101 and the second mounting sleeve 201 and the fourth mounting sleeve 301 are connected by bolts. The bearing seat 101 is connected to the rotating shaft 105 through the coupling 106. The bearing seat 101 and the protective sleeve 108 are connected by a bearing. The first mounting sleeve 102 and the lower rotating motor 103 and the upper rotating motor 104 are connected by a sleeve connection and locked by bolts. The lower part of the second mounting sleeve 201 and the first mounting sleeve 102 is provided with a raised ring that is sleeved and connected to the slide groove 304. When in use, It is installed through the mounting bracket 107 on the back of the first mounting sleeve 102, and then the lower camera 302 and the upper camera 202 are driven horizontally by the lower rotating motor 103 and the upper rotating motor 104 respectively to form a dual-camera image dynamic acquisition device. When one of the cameras locks an abnormal phenomenon, the other camera can maintain normal operation to avoid blind spots in monitoring. The fourth mounting sleeve 301, the second mounting sleeve 201 and the first mounting sleeve 102 are all connected by a socket and can be rotated along the slide groove 304, which ensures the stability of the rotation. The whole is assembled with a stacked structure from top to bottom to reduce the entry and accumulation of water vapor.

[0030] Reference Figures 1-6 The third mounting sleeve 203 is connected to the second mounting sleeve 201 and the PLC controller 204 by bolts. The PLC controller 204 is electrically connected to the warning light 4, the lower rotating motor 103, the upper rotating motor 104, the upper camera 202, the antenna 208, the lower camera 302, and the right-angle motor 303. The upper camera 202 and the second mounting sleeve 201, the lower camera 302 and the fourth mounting sleeve 301 are connected by bearings. The upper camera 202, the lower camera 302 and the right-angle motor 303 are connected by a coupling. The right-angle motor 303 and the second mounting sleeve 201 and the fourth mounting sleeve 301 are connected by bolts. When in use, the right-angle motor 303 drives the upper camera 202 and the lower camera 302 to rotate in the vertical direction, and cooperates with the operation of the lower rotating motor 103 and the upper rotating motor 104 to perform dynamic image acquisition, which is then transmitted to the terminal through the PLC controller 204. The warning light 4 can be used for on-site warning. The operation is convenient and the acquired images are comparable.

[0031] Working principle: The bearing seat 101 of the dual-camera image dynamic acquisition device is connected to the second mounting sleeve 201 and the fourth mounting sleeve 301 by bolts. The bearing seat 101 is connected to the rotating shaft 105 through the coupling 106. The bearing seat 101 and the protective sleeve 108 are connected by bearings. The first mounting sleeve 102 and the lower rotating motor 103 and the upper rotating motor 104 are connected by sleeves and locked by bolts. The lower part of the second mounting sleeve 201 and the first mounting sleeve 102 is provided with a raised ring that is sleeved and connected to the slide groove 304. When in use, It is installed through the mounting bracket 107 on the back of the first mounting sleeve 102, and then the lower camera 302 and the upper camera 202 are driven by the lower rotating motor 103 and the upper rotating motor 104 to rotate horizontally, forming a dual-camera image dynamic acquisition device. When one of the cameras locks an abnormal phenomenon, the other camera can maintain normal operation to avoid blind spots in monitoring. The fourth mounting sleeve 301, the second mounting sleeve 201 and the first mounting sleeve 102 are all connected by sockets and can rotate along the slide groove 304, ensuring the stability of the rotation. The whole is assembled by stacking the structure from top to bottom to reduce the entry and accumulation of water vapor. The third mounting sleeve 203 and the second mounting sleeve 201 and the PLC controller 204 are connected by bolts. The PLC controller 204 and the warning light 4, the lower rotating motor 103, the upper rotating motor 104, the upper camera 202, the antenna 208, the lower camera 302, and the right-angle motor 303 are all electrically connected. The upper camera 202 and the second mounting sleeve 201, the lower camera 302 and the fourth mounting sleeve 301 are all connected by bearings. 202, the lower camera 302 and the right-angle motor 303 are connected by a coupling, and the right-angle motor 303 and the second mounting sleeve 201 and the fourth mounting sleeve 301 are connected by bolts. When in use, the upper camera 202 and the lower camera 302 are driven by the right-angle motor 303 to rotate in the vertical direction, and the operation of the lower rotating motor 103 and the upper rotating motor 104 is coordinated to perform dynamic image acquisition, and then transmitted to the terminal through the PLC controller 204. The warning light 4 can be used to warn on site. The operation is convenient and the acquired images are comparable.

[0032] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A dual-camera image dynamic acquisition device, comprising a mounting assembly (1), an upper camera assembly (2), a lower camera assembly (3) and a warning light (4), characterized in that: The upper end of the mounting assembly (1) is connected to an upper camera assembly (2), the upper end of the upper camera assembly (2) is connected to a warning light (4), and the lower end of the mounting assembly (1) is connected to a lower camera assembly (3); The mounting assembly (1) is composed of a bearing seat (101), a first mounting sleeve (102), a lower rotating motor (103), an upper rotating motor (104), a rotating shaft (105), a coupling (106), a mounting frame (107) and a protective sleeve (108), wherein the back of the first mounting sleeve (102) is provided with a mounting frame (107), the upper end of the first mounting sleeve (102) is provided with a protective sleeve (108), the upper portion of the outer portion of the protective sleeve (108) is connected to the bearing seat (101), the inner portion of the bearing seat (101) is connected to the coupling (106), the inner portion of the first mounting sleeve (102) is connected to the upper rotating motor (104) and the lower rotating motor (103), and the upper end of the upper rotating motor (104) and the lower end of the lower rotating motor (103) are both provided with a rotating shaft (105); The upper camera assembly (2) is composed of a second mounting sleeve (201), an upper camera head (202), a third mounting sleeve (203), a PLC controller (204), an internal connection port (205), an external connection port (206), a protective cover (207) and an antenna (208), wherein the upper camera heads (202) are connected to both sides of the second mounting sleeve (201), the third mounting sleeve (203) is connected to the back of the second mounting sleeve (201), the PLC controller (204) is connected to the third mounting sleeve (203), a plurality of groups of internal connection ports (205) are provided on the front of the PLC controller (204), the external connection ports (206) are provided on the back of the second mounting sleeve (201), the third mounting sleeve (203) and the PLC controller (204), a protective cover (207) is provided on the upper part of the back of the second mounting sleeve (201), and the antennas (208) are connected to the upper parts of both sides of the second mounting sleeve (201); The lower camera assembly (3) is composed of a fourth mounting sleeve (301) and a lower camera (302) arranged at the lower part of the fourth mounting sleeve (301); The lower portions of the outer sides of the second mounting sleeve (201) and the fourth mounting sleeve (301) are both connected to right-angle motors (303); The upper portions of the exteriors of the first mounting sleeve (102) and the fourth mounting sleeve (301) are both provided with sliding grooves (304).

2. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The bearing seat (101) and the second mounting sleeve (201) and the fourth mounting sleeve (301) are connected via bolts, the bearing seat (101) is connected to the rotating shaft (105) via a coupling (106), and the bearing seat (101) and the protective sleeve (108) are connected via a bearing.

3. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The first mounting sleeve (102) and the lower rotating motor (103) and the upper rotating motor (104) are connected via a sleeve connection and are locked by means of bolts.

4. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The upper camera (202) and the second mounting sleeve (201), and the lower camera (302) and the fourth mounting sleeve (301) are all connected via bearings.

5. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The upper camera (202), the lower camera (302) and the right-angle motor (303) are connected via a coupling, and the right-angle motor (303) and the second mounting sleeve (201) and the fourth mounting sleeve (301) are connected via bolts.

6. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The third mounting sleeve (203), the second mounting sleeve (201), and the PLC controller (204) are all connected via bolts.

7. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The lower parts of the second mounting sleeve (201) and the first mounting sleeve (102) are both provided with raised rings that are sleeve-connected to the slide groove (304).

8. The dual-camera image dynamic acquisition device according to claim 1, characterized in that: The PLC controller (204) and the warning light (4), the lower rotating motor (103), the upper rotating motor (104), the upper camera (202), the antenna (208), the lower camera (302), and the right-angle motor (303) are all electrically connected.