Binocular camera auxiliary device
By designing a binocular camera auxiliary device with an arc-shaped side support rod and built-in lighting components, the problems of incorrect orientation and insufficient light in the existing technology are solved, thus improving the ease of operation of implantation surgery.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-27
AI Technical Summary
Existing binocular cameras have difficulty quickly adjusting their orientation and solving the problem of insufficient light during implantation surgery, which affects the efficiency of the surgical procedure.
A binocular camera auxiliary device was designed, including a side support rod with an arc structure and a built-in lighting component. The support rod provides a grip point and adjusts the orientation, while providing additional light sources on both sides of the camera.
It enables convenient orientation adjustment and light supplementation, improving the ease of use and operational efficiency of binocular cameras in implantation surgery.
Smart Images

Figure CN224039189U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical equipment technical field relates to a device for in the implementation of implant surgery process auxiliary binocular camera towards adjustment and light source supplement. BACKGROUND
[0002] As the name implies, binocular camera is a kind of image recording equipment with two camera modules, which can simultaneously collect image data of the same object using two camera modules, and perform three-dimensional analysis on the object based on two sets of image data, to obtain the spatial coordinates of the object in the three-dimensional coordinate system corresponding to the binocular camera. In short, in addition to being able to record the video, image of the object, the binocular camera can also be used for spatial positioning of the object.
[0003] During the implant surgery, the binocular camera is an indispensable device, which can real-time position the implant handset and the patient's oral cavity by collecting image data of the reflective marker points on the reference plate, and obtain the real-time relative position between the implant handset and the patient's oral cavity. Based on the above use scenario, it is known that during actual use, the binocular camera needs to be oriented towards the direction of the implant handset and the patient's oral cavity, and at the same time, it also needs to ensure that clear images are collected, which is the basic condition for the binocular camera to function.
[0004] The binocular camera in the prior art generally uses an internal light source to ensure sufficient light during operation. Before use, the operator needs to adjust the orientation of the binocular camera and turn on the internal light source, and then start the binocular camera to collect image data of the reflective marker points. However, if the orientation is found to be incorrect or the light is insufficient after starting the operation, it is difficult to adjust again due to the design defects of the existing structure, and the working conditions need to be reconfigured, which is inconvenient for the implant surgery operation to some extent. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is to provide a binocular camera auxiliary device that can adjust the orientation of the binocular camera at any time and solve the problem of insufficient light, thereby providing convenience for implant surgery.
[0006] The technical solution adopted by the utility model to solve the technical problem is as follows:
[0007] A binocular camera auxiliary device, comprising:
[0008] A camera body is provided with a first image acquisition module and a second image acquisition module, and the first image acquisition module and the second image acquisition module are respectively arranged on both sides of the inside of the camera body.
[0009] A back support is fixedly arranged on the back of the camera body;
[0010] First and second side support rods are in arc-shaped structure, and are fixedly arranged at two ends of the back support respectively, and are located at two sides of the camera body respectively, and each of the first and second side support rods is provided with a lighting assembly.
[0011] Compared with the prior art, the beneficial effects of the technical scheme are that the first and second side support rods are arranged at two sides of the camera body through the back support, which facilitates the operator to hold and adjust, and the lighting assembly is arranged on the first and second side support rods to provide additional light source at two sides of the camera body.
[0012] Further, the first and second side support rods are of the same structure, and each of the first and second side support rods comprises a bottom panel, a side panel and a top panel;
[0013] The side panels are connected end to end to form an arc-shaped support cylinder, the bottom panel is fixedly arranged at one side of the arc-shaped support cylinder, and the top panel is fixedly arranged at the other side of the arc-shaped support cylinder, the bottom panel, the side panel and the top panel form a sealed cavity structure, and the lighting assembly is fixedly installed in the sealed cavity structure;
[0014] A fixing groove is formed in the bottom panel, and an installation through hole and a wire through hole are arranged in the fixing groove, and an end of the back support is fixedly sleeved in the fixing groove; a mounting bolt passes through the bottom panel and the installation through hole to connect and fix the back support and the bottom panel, and a wire passes through the bottom panel and the wire through hole and is connected with the lighting assembly.
[0015] The beneficial effects of the above scheme are that the first and second side support rods in arc-shaped structure formed by the bottom panel, the side panel and the top panel can fix the lighting assembly in the space formed by the bottom panel, the side panel and the top panel on one hand, and can hold the first and second side support rods to adjust the orientation of the camera body on the other hand, and two problems can be solved by one structure.
[0016] Further, the lighting assembly comprises a circuit board and a lamp bead;
[0017] The circuit board is fixedly arranged on the bottom panel and the side panel, the lamp beads are arranged in plurality, the plurality of lamp beads are arranged on the circuit board, the plurality of lamp beads emit light towards the top panel, and the top panel is an acrylic panel.
[0018] The beneficial effect of the above scheme is that the light-emitting unit is formed by the circuit board and the lamp beads, and the lighting assembly is formed by the acrylic panel as the top panel, so that a stable and reliable additional light source can be provided by a simple structure.
[0019] Further, the side panel is provided with a silica gel heat-conducting pad between the circuit board and the bottom panel.
[0020] The beneficial effect of the above scheme is that the heat generated by the lamp beads during operation can be promptly dissipated through the silica gel heat-conducting pad, avoiding overheating caused by heat accumulation, which is conducive to maintaining normal operation of the device.
[0021] Further, the inner wall of the side panel is formed with a PBC plate fixing boss and a panel fixing boss, the PBC plate fixing boss and the panel fixing boss are arranged around the inner wall of the side panel, the PBC plate fixing boss is located below the panel fixing boss, and a plurality of support columns are arranged on the bottom panel in an interval.
[0022] The bottom surface of the circuit board abuts on the PBC plate fixing boss, the circuit board is fixed on the bottom panel and the side panel by bolts, and the top ends of the plurality of support columns abut on the bottom surface of the circuit board.
[0023] The bottom surface of the top panel abuts on the panel fixing boss, and the top panel is fixed on the panel fixing boss by bolts.
[0024] The beneficial effect of the above scheme is that the PBC plate fixing boss and the panel fixing boss are used to fix the circuit board and the top panel respectively, which can improve the structural stability of the device.
[0025] Further, the bottom panel, the side panel and the top panel are of an aluminum alloy structure.
[0026] The beneficial effect of the above scheme is that the aluminum alloy structure is used as the bottom panel, the side panel and the top panel, which can improve the strength of the structure and reduce the overall weight of the structure.
[0027] Further, the back support member includes a fixed back plate, a first horizontal rod, a second horizontal rod, a first vertical rod and a second vertical rod.
[0028] The first transverse rod and the second transverse rod are fixedly arranged on both sides of the fixed back plate, the first longitudinal rod is fixedly arranged on one end of the first transverse rod away from the fixed back plate, and the second longitudinal rod is fixedly arranged on one end of the second transverse rod away from the fixed back plate; the fixed back plate, the first transverse rod, the second transverse rod, the first longitudinal rod and the second longitudinal rod are integrally formed aluminum alloy structures.
[0029] The fixed back plate, the first transverse rod and the second transverse rod are parallel to the back of the camera body, and the first longitudinal rod and the second longitudinal rod are parallel to the side of the camera body.
[0030] The beneficial effects of the above scheme are that the fixed back plate, the first transverse rod, the second transverse rod, the first longitudinal rod and the second longitudinal rod form a back support, the fixed back plate, the first transverse rod and the second transverse rod are fixedly connected with the camera body, and the structure design of the first longitudinal rod and the second longitudinal rod ensures that the first side support rod and the second side support rod are oriented in the same direction as the camera body, facilitating holding and light supplementing functions.
[0031] Further, the fixed back plate is provided with a first mounting through hole, a second mounting through hole and a limiting through hole;
[0032] The first mounting through hole is provided with four, the first mounting through hole is provided with a countersunk hole, and the first mounting through hole is fixedly connected with the back of the camera body through a bolt in the first mounting through hole; the second mounting through hole is provided with three, and the second mounting through hole is used for being fixedly connected with a movable arm of an external device through a bolt in the second mounting through hole; the limiting through hole is provided with three, and the back of the camera body is provided with three limiting protruding portions, and the limiting protruding portions are correspondingly sleeved in the limiting through hole.
[0033] The beneficial effects of the above scheme are that the first mounting through hole, the second mounting through hole and the limiting through hole are provided, and other structures are matched to realize the connection and fixation of the device.
[0034] Further, the back support is provided with a wire slot, and the wire slot is arranged along the fixed back plate, the first transverse rod, the second transverse rod, the first longitudinal rod and the second longitudinal rod;
[0035] The wire slot is provided with a first conductive cable and a second conductive cable, one end of the first conductive cable and the second conductive cable is electrically connected with the camera body;
[0036] The first conductive cable is arranged in the wire groove on the fixed back plate, the first transverse rod and the first longitudinal rod, and the other end of the first conductive cable is electrically connected with the lighting assembly in the first side support rod.
[0037] The second conductive cable is arranged in the wire groove on the fixed back plate, the second transverse rod and the second longitudinal rod, and the other end of the second conductive cable is electrically connected with the lighting assembly in the second side support rod.
[0038] The beneficial effect of the above scheme is that the first conductive cable and the second conductive cable can be led out of the camera body, and working power supply is provided for the lighting assemblies on both sides.
[0039] Further, the first conductive cable and the second conductive cable are fixed in the wire groove by dispensing.
[0040] The beneficial effect of the above scheme is that the first conductive cable and the second conductive cable can be effectively prevented from falling off. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1 is the installation schematic view of the binocular camera auxiliary device.
[0042] Figure 2 is the cooperation schematic view of the back support, the first side support rod and the second side support rod in the binocular camera auxiliary device.
[0043] Figure 3 is the exploded schematic view of the first side support rod or the second side support rod in the binocular camera auxiliary device.
[0044] Figure 4 is the schematic view of the first side support rod or the second side support rod in the binocular camera auxiliary device.
[0045] Figure 5 is another schematic view of the first side support rod or the second side support rod in the binocular camera auxiliary device.
[0046] Figure 6 is the schematic view of the back support in the binocular camera auxiliary device.
[0047] In the drawings, the components represented by the respective reference numerals are listed as follows:
[0048] Camera body 1, back support 2, first side support rod 3, second side support rod 4, lighting assembly 5.
[0049] First image acquisition module 101, second image acquisition module 102.
[0050] The fixed back plate 201, the first transverse rod 202, the second transverse rod 203, the first longitudinal rod 204, the second longitudinal rod 205, the first mounting through hole 206, the second mounting through hole 207, the limiting through hole 208, and the wire slot 209;
[0051] The bottom panel 301, the side panel 302, the top panel 303, the fixed groove 304, the mounting through hole 305, the wire through hole 306, the PBC plate fixed boss 307, the panel fixed boss 308, and the support column 309.
[0052] The circuit board 501 and the lamp bead 502. DETAILED DESCRIPTION
[0053] To make the purpose, technical scheme and advantages of the present application more clear and definite, the present application is further described in detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and should not be used to limit the present application.
[0054] In the description of the present application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the devices or components referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0055] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two components. When a component is referred to as "fixed to" or "provided on" another element, it can be directly on another component or there can be a middle component. When a component is considered to be "connected" to another element, it can be directly connected to another element or a middle element can exist at the same time. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0056] The binocular camera is an image recording device with two camera modules, which can simultaneously collect image data of the same object by the two camera modules, and perform three-dimensional analysis on the object based on the two sets of image data to obtain the spatial coordinates of the object in the three-dimensional coordinate system corresponding to the binocular camera. In short, in addition to being able to record the video and image of the object, the binocular camera can also spatially locate the object.
[0057] During the implementation of the implantation operation, the binocular camera is an indispensable device, which can collect image data of the reflected mark points on the reference plate to real-time locate the implantation handset and the oral cavity of the patient, and obtain the real-time relative position between the implantation handset and the oral cavity of the patient. Based on the above use scene, it can be known that in actual use, the binocular camera needs to be directed to the direction of the implantation handset and the oral cavity of the patient, and at the same time, it also needs to ensure that clear image data is collected, which is the basic condition for the binocular camera to play its role.
[0058] The binocular camera in the prior art generally ensures sufficient light during work by built-in light source. Before use, the operator needs to adjust the direction of the binocular camera, turn on the built-in light source, and then start the binocular camera to collect image data of the reflected mark points. However, after starting work, it is found that the direction is not correct or the light is insufficient, which is limited by the defects of the existing structure design, and it is difficult to re-adjust, and the working conditions need to be re-configured, which is inconvenient for the implementation of the implantation operation to a certain extent.
[0059] As shown in Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , in order to solve the above problems, the utility model provides a binocular camera auxiliary device, which comprises a camera body 1, a back supporting piece 2, a first side supporting rod 3 and a second side supporting rod 4. Wherein, the camera body 1 plays a video image data collection function; the back supporting piece 2 plays a structure connection fixing role, and connects and fixes the first side supporting rod 3 and the second side supporting rod 4 with the camera body 1; the first side supporting rod 3 and the second side supporting rod 4 are the key of the technical scheme, and the role is to provide a holding point and set an additional lighting assembly 5.
[0060] The camera body 1 is provided with a first image collection module 101 and a second image collection module 102, and the first image collection module 101 and the second image collection module 102 are arranged on the two sides of the camera body 1 respectively; the back supporting piece 2 is fixedly arranged on the back of the camera body 1.
[0061] Generally speaking, the camera body 1 in the prior art is built-in with a light source, but this built-in light source cannot solve the lighting requirements in all application scenarios. If the orientation is not correct or the light is insufficient during use, the orientation of holding the camera body must be adjusted to try to capture more light. However, the binocular camera in the prior art does not have a holding structure, and the operator can only hold the body to adjust it, without an operating force point. Such an operating mode undoubtedly causes great inconvenience.
[0062] On the one hand, the first side support rod 3 and the second side support rod 4 are arc-shaped structures. The first side support rod 3 and the second side support rod 4 are arranged in an arc-shaped structure. During use, the operator holds the first side support rod 3 and / or the second side support rod 4, and drives the binocular camera to move as a whole through the first side support rod 3 and / or the second side support rod 4, so as to adjust the orientation of the binocular camera. On the other hand, the first side support rod 3 and the second side support rod 4 are respectively fixedly arranged at two ends of the back support 2. The first side support rod 3 and the second side support rod 4 are respectively located at two sides of the camera body 1 outside. The first side support rod 3 and the second side support rod 4 are both provided with a lighting assembly 5. The arc-shaped structure makes the first side support rod 3 and the second side support rod 4 distributed in a semi-enclosing manner at two sides of the camera body 1, so as to ensure that the lighting assembly 5 is closer to the first image acquisition module 101 and the second image acquisition module 102, thereby ensuring that the light can be fully collected by the first image acquisition module 101 and the second image acquisition module 102. Based on the above structure and the above two principles, the technical scheme can effectively solve the problems of incorrect orientation and insufficient light of the binocular camera in the prior art during actual use.
[0063] As shown in Figure 1 , Figure 2 and Figure 3 , preferably, the first side support rod 3 and the second side support rod 4 are the same in structure. The first side support rod 3 and the second side support rod 4 include a bottom panel 301, a side panel 302, and a top panel 303.
[0064] The side panels 302 are connected end to end to form an arc-shaped support cylinder, the bottom panel 301 is fixedly arranged on one side of the arc-shaped support cylinder, the top panel 303 is fixedly arranged on the other side of the arc-shaped support cylinder, the bottom panel 301, the side panel 302 and the top panel 303 form a sealed cavity structure, and the lighting assembly 5 is fixedly installed in the sealed cavity structure. Based on the above structure, the first side support rod 3 and the second side support rod 4 of the arc-shaped structure are formed by the bottom panel 301, the side panel 302 and the top panel 303. On the one hand, the lighting assembly 5 can be fixedly installed in the space formed between the bottom panel 301, the side panel 302 and the top panel 303. On the other hand, the first side support rod 3 and the second side support rod 4 can be held to adjust the orientation of the camera body 1. Two problems can be solved by one structure.
[0065] As shown in Figure 4 Preferably, a fixing groove 304 is formed on the bottom panel 301, an installation through hole 305 and a wire through hole 306 are arranged in the fixing groove 304, and the end of the back support 2 is fixedly sleeved in the fixing groove 304. The mounting bolt passes through the bottom panel 301 and the installation through hole 305 to connect and fix the back support 2 and the bottom panel 301. The wire passes through the bottom panel 301 and the wire through hole 306 and is connected with the lighting assembly 5.
[0066] The back support 2 is sleeved on the bottom panel 301 through the fixing groove 304, the mounting through hole 305 is used to realize the fixed connection of the back support 2 and the bottom panel 301, and the conductive cable is introduced through the wire through hole 306 for the work of the lighting assembly 5.
[0067] As shown in Figure 3 Preferably, the lighting assembly 5 includes a circuit board 501 and a lamp bead 502. The circuit board 501 is fixedly arranged on the bottom panel 301 and the side panel 302. The lamp bead 502 is provided in plurality, and the plurality of lamp beads 502 are arranged on the circuit board 501. The plurality of lamp beads 502 emit light towards the top panel 303. The top panel 303 is an acrylic plate.
[0068] In the above embodiment, the acrylic plate is used as the top panel 303, and the light emitted by the lamp bead 502 is uniformly lighted by using the physical characteristics of the acrylic. Based on the above structure, the light emitting unit is formed by the circuit board 501 and the lamp bead 502, and the lighting assembly 5 is formed by cooperating the acrylic plate as the top panel 303. A stable and reliable additional light source can be provided by a simple structure.
[0069] Preferably, a silica gel heat-conducting pad is arranged in the side panel 302 between the circuit board 501 and the bottom panel 301. The silica gel heat-conducting pad can dissipate the heat generated by the lamp beads 502 during operation in time, avoiding overheating caused by heat accumulation and facilitating normal operation of the device.
[0070] As shown in Figure 4 and Figure 5 Preferably, the inner wall of the side panel 302 is formed with a PBC plate fixing boss 307 and a panel fixing boss 308, both of which are arranged around the inner wall of the side panel 302, the PBC plate fixing boss 307 is below the panel fixing boss 308, and the bottom panel 301 is provided with a plurality of support columns 309 at intervals.
[0071] During installation, the bottom surface of the circuit board 501 abuts against the PBC plate fixing boss 307, the circuit board 501 is fixed to the bottom panel 301 and the side panel 302 by bolts, and the top ends of the plurality of support columns 309 abut against the bottom surface of the circuit board 501; the bottom surface of the top panel 303 abuts against the panel fixing boss 308, and the top panel 303 is fixed to the panel fixing boss 308 by bolts.
[0072] Based on the above structure, the circuit board 501 and the top panel 303 are fixed by the PBC plate fixing boss 307 and the panel fixing boss 308 respectively, which can improve the structural stability of the device.
[0073] Specifically, the bottom panel 301, the side panel 302 and the top panel 303 are made of aluminum alloy. Using aluminum alloy as the material of the bottom panel 301, the side panel 302 and the top panel 303 can improve the strength of the structure and reduce the overall weight of the structure.
[0074] As shown in Figure 6 The back support 2 includes a fixed back plate 201, a first horizontal rod 202, a second horizontal rod 203, a first vertical rod 204 and a second vertical rod 205. The fixed back plate 201 is the main component, the directions of the first horizontal rod 202 and the second horizontal rod 203 are consistent with that of the fixed back plate 201, and the first vertical rod 204 and the second vertical rod 205 form a 90° angle with the fixed back plate 201.
[0075] The first transverse rod 202 and the second transverse rod 203 are fixedly arranged on both sides of the fixed back plate 201, the first longitudinal rod 204 is fixedly arranged on one end of the first transverse rod 202 away from the fixed back plate 201, and the second longitudinal rod 205 is fixedly arranged on one end of the second transverse rod 203 away from the fixed back plate 201; the fixed back plate 201, the first transverse rod 202, the second transverse rod 203, the first longitudinal rod 204 and the second longitudinal rod 205 are integrally formed aluminum alloy structures; the fixed back plate 201, the first transverse rod 202 and the second transverse rod 203 are parallel to the back of the camera body 1, and the first longitudinal rod 204 and the second longitudinal rod 205 are parallel to the side of the camera body 1.
[0076] Based on the above structure, the fixed back plate 201, the first transverse rod 202, the second transverse rod 203, the first longitudinal rod 204 and the second longitudinal rod 205 form the back support 2, the fixed back plate 201, the first transverse rod 202 and the second transverse rod 203 are fixedly connected with the camera body 1, and the first longitudinal rod 204 and the second longitudinal rod 205 are designed to ensure that the first side support rod 3 and the second side support rod 4 are oriented in the same direction as the camera body 1, facilitating holding and light supplementing functions.
[0077] As shown in Figure 6 The fixed back plate 201 is provided with a first mounting hole 206, a second mounting hole 207 and a limiting hole 208. Specifically, the first mounting hole 206 is provided with four, the first mounting hole 206 is provided with a countersunk hole, and the first mounting hole 206 is fixedly connected with the back of the camera body 1 through the bolt inside it; the second mounting hole 207 is provided with three, the second mounting hole 207 is used for being fixedly connected with the movable arm of the external device through the bolt inside it; the limiting hole 208 is provided with three, and the back of the camera body 1 is provided with three limiting protruding parts, which are correspondingly sleeved in the limiting hole 208.
[0078] Based on the above structure, by providing the first mounting hole 206, the second mounting hole 207 and the limiting hole 208, the connection and fixation of the device are realized in cooperation with other structures.
[0079] As shown in Figure 2 Preferably, the back support 2 is provided with a wire groove 209, and the wire groove 209 is arranged along the fixed back plate 201, the first transverse rod 202, the second transverse rod 203, the first longitudinal rod 204 and the second longitudinal rod 205.
[0080] The wire slot 209 is used for accommodating the fixed conductive cable. The first conductive cable and the second conductive cable are arranged in the wire slot 209, one end of the first conductive cable and the second conductive cable is electrically connected with the camera body 1; the first conductive cable is arranged in the wire slot 209 on the fixed back plate 201, the first transverse rod 202 and the first longitudinal rod 204, and the other end of the first conductive cable is electrically connected with the lighting assembly 5 in the first side support rod 3; the second conductive cable is arranged in the wire slot 209 on the fixed back plate 201, the second transverse rod 203 and the second longitudinal rod 205, and the other end of the second conductive cable is electrically connected with the lighting assembly 5 in the second side support rod 4.
[0081] Based on the above structure, the wire slot 209 is arranged on the back support 2, so that the first conductive cable and the second conductive cable can be led out from the camera body 1, and working power supply is provided for the lighting assemblies 5 on both sides.
[0082] Preferably, the first conductive cable and the second conductive cable are fixed in the wire slot 209 by dispensing. Since the wire slot 209 is an open structure, the conductive cable arranged in the wire slot 209 has a risk of falling off, therefore, the first conductive cable and the second conductive cable are fixed in the wire slot 209 by dispensing, which can effectively prevent the first conductive cable and the second conductive cable from falling off.
[0083] It should be understood that the application of the utility model is not limited to the above examples, and those skilled in the art can improve or transform according to the above description, and all these improvements and transformations should belong to the protection scope of the utility model.
Claims
1. A binocular camera-assisted device, characterized in that, The utility model relates to a kind of camera, including: Camera body, first image acquisition module and second image acquisition module are provided on the camera body, the first image acquisition module and the second image acquisition module are respectively arranged in the two sides inside the camera body; Back support, the back support is fixedly arranged on the back of the camera body; First side support rod and second side support rod, the first side support rod and the second side support rod are arc structure, the first side support rod and the second side support rod are respectively fixedly arranged on the two ends of the back support, the first side support rod and the second side support rod are respectively located on the two sides outside the camera body, and the first side support rod and the second side support rod are provided with lighting assembly in.
2. The binocular camera assistant device according to claim 1, wherein The first side support rod and the second side support rod are the same structure, and the first side support rod and the second side support rod include bottom panel, side panel and top panel; The side panel is connected head to tail to form an arc-shaped support cylinder, the bottom panel is fixedly arranged on one side of the arc-shaped support cylinder, and the top panel is fixedly arranged on the other side of the arc-shaped support cylinder. The bottom panel, the side panel and the top panel form a sealed cavity structure, and the lighting assembly is fixedly installed in the sealed cavity structure; 3. The binocular camera assistant device according to claim 2, wherein The bottom panel is provided with a fixing groove, the fixing groove is provided with a mounting hole and a wire through hole, and the end of the back support is fixedly sleeved in the fixing groove. The mounting bolt passes through the bottom panel and the mounting hole to connect and fix the back support and the bottom panel, and the wire passes through the bottom panel and the wire through hole and is connected with the lighting assembly.
4. The binocular camera assistant device according to claim 3, wherein The lighting assembly includes a circuit board and a lamp bead.
5. The binocular camera assistant of claim 3, wherein, The circuit board is fixedly arranged on the bottom panel and the side panel, the lamp bead is provided with a plurality of lamp beads arranged on the circuit board, and the plurality of lamp beads emit light towards the top panel. The side panel is provided with a silica gel heat-conducting pad between the circuit board and the bottom panel. The inner wall of the side panel is formed with a PBC plate fixing boss and a panel fixing boss, the PBC plate fixing boss and the panel fixing boss are arranged around the inner wall of the side panel, the PBC plate fixing boss is located below the panel fixing boss, and the bottom panel is provided with a plurality of support columns at intervals.
6. The binocular camera assistant of claim 2, wherein, The bottom surface of the circuit board abuts on the PBC plate fixing boss, the circuit board is fixed on the bottom panel and the side panel by bolts, and the top ends of the plurality of support columns abut on the bottom surface of the circuit board.
7. The binocular camera assistant of claim 1, wherein, The bottom surface of the top panel abuts on the panel fixing boss, and the top panel is fixed on the panel fixing boss by bolts. The bottom panel, the side panel and the top panel are aluminum alloy structures. The back support includes a fixed back plate, a first horizontal rod, a second horizontal rod, a first longitudinal rod and a second longitudinal rod. The first transverse rod and the second transverse rod are fixedly arranged on both sides of the fixed back plate, the first longitudinal rod is fixedly arranged on one end of the first transverse rod away from the fixed back plate, and the second longitudinal rod is fixedly arranged on one end of the second transverse rod away from the fixed back plate; the fixed back plate, the first transverse rod, the second transverse rod, the first longitudinal rod and the second longitudinal rod are integrally formed aluminum alloy structures; The fixed back plate, the first transverse rod and the second transverse rod are parallel to the back of the camera body, and the first longitudinal rod and the second longitudinal rod are parallel to the side of the camera body.
8. The binocular camera assistant device according to claim 7, wherein, The fixed back plate is provided with a first mounting through hole, a second mounting through hole and a limiting through hole; The first mounting through hole is provided with four, the first mounting through hole is provided with a countersunk hole, and the first mounting through hole is fixedly connected with the back of the camera body through the bolt in the first mounting through hole; the second mounting through hole is provided with three, the second mounting through hole is used for being fixedly connected with the movable arm of the external device through the bolt in the second mounting through hole; the limiting through hole is provided with three, and the back of the camera body is provided with three limiting protruding parts, and the limiting protruding parts are correspondingly sleeved in the limiting through hole.
9. The binocular camera assistant of claim 7, wherein, The back support is provided with a wire slot, and the wire slot is arranged along the fixed back plate, the first transverse rod, the second transverse rod, the first longitudinal rod and the second longitudinal rod; The wire slot is provided with a first conductive cable and a second conductive cable, one end of the first conductive cable and the second conductive cable is electrically connected with the camera body; The first conductive cable is arranged in the wire slot on the fixed back plate, the first transverse rod and the first longitudinal rod, and the other end is electrically connected with the lighting assembly in the first side support rod; The second conductive cable is arranged in the wire slot on the fixed back plate, the second transverse rod and the second longitudinal rod, and the other end is electrically connected with the lighting assembly in the second side support rod.
10. The binocular camera-assisted device according to claim 9, characterized in that, The first conductive cable and the second conductive cable are fixed in the wire slot by dispensing.