CMOS sensor data acquisition device

By designing support and protection components, and utilizing drying channels and desiccants to handle humid air, the imaging problem of UAV CMOS sensor data acquisition devices when stored in humid areas was solved, achieving dry storage and protection of the devices.

CN223673349UActive Publication Date: 2025-12-16NANJING HANDONG BOHUI SURVEYING & MAPPING CO LTD
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Patent Information

Application Number
CN202423166437.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-16
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

When existing drone CMOS sensor data acquisition devices are stored in humid areas, the humid air affects the image quality, resulting in unclear images, and existing patents cannot effectively solve this problem.

Method used

A CMOS sensor data acquisition device was designed, comprising a support component and a prevention component. The support component includes a support plate, a protective housing, a limiting clamp, and a protective enclosure. The prevention component includes a support plate, a drying housing, and a miniature fan. Humid air is treated through a drying channel and a desiccant to ensure that the device remains dry in a humid environment.

Benefits of technology

It effectively prevents humid air from affecting image quality, ensuring that the CMOS sensor maintains clear shooting results in humid environments and protecting the device from damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a CMOS sensor data acquisition device, which belongs to the technical field of image acquisition, and is characterized by comprising an unmanned aerial vehicle body, a CMOS data acquisition device body is arranged at the bottom of the unmanned aerial vehicle body, an auxiliary mechanism is arranged on the outer side of the CMOS data acquisition device body, and the auxiliary mechanism comprises a bearing assembly and a prevention assembly. The bearing assembly is arranged on the outer side of the CMOS data acquisition device body, the prevention assembly is arranged on the inner side of the bearing assembly, and the bearing assembly and the prevention assembly are arranged, so that the bearing assembly can store and protect the unmanned aerial vehicle body, the CMOS data acquisition device body and the prevention assembly; meanwhile, a fixing structure arranged in the bearing assembly can be used for clamping and fixing, the situation that the unmanned aerial vehicle body and the CMOS data acquisition device body are damaged due to accidental falling of the bearing assembly is avoided, and meanwhile, the prevention assembly can dry air in the bearing assembly to ensure that the CMOS data acquisition device body is located in a dry storage environment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to image acquisition technical field, especially in a kind of CMOS sensor data acquisition device. BACKGROUND

[0002] CMOS sensor CMOS data acquisition device body is a kind of equipment for obtaining the data generated by CMOS sensor, and CMOS sensor is widely used in digital imaging field, such as digital camera, monitoring camera head etc., and also used in some scientific and industrial detection scene.

[0003] The storage device of existing unmanned aerial vehicle CMOS sensor CMOS data acquisition device body is generally only simply sealed during storage, and the inside of the storage device in some humid areas will be filled with humid air, which will affect the imaging quality of unmanned aerial vehicle CMOS sensor CMOS data acquisition device body, resulting in unclear shooting, and the existing patent cannot solve the problem, so it is not conducive to the use of users.

[0004] Therefore, a kind of CMOS sensor data acquisition device is proposed. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a kind of CMOS sensor data acquisition device, to solve the problem that the storage device of existing unmanned aerial vehicle CMOS sensor CMOS data acquisition device body is generally only simply sealed during storage, and the inside of the storage device in some humid areas will be filled with humid air, which will affect the imaging quality of unmanned aerial vehicle CMOS sensor CMOS data acquisition device body, resulting in unclear shooting, and the existing patent cannot solve the problem, so it is not conducive to the use of users.

[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of CMOS sensor data acquisition device, including unmanned aerial vehicle body, the bottom of the unmanned aerial vehicle body is provided with CMOS data acquisition device body, the outside of the CMOS data acquisition device body is provided with auxiliary mechanism, the auxiliary mechanism includes bearing assembly and prevention component, the bearing assembly is arranged at the outside of CMOS data acquisition device body, and the prevention component is arranged at the inside of bearing assembly;

[0007] The bearing assembly includes bearing plate, protective shell, limiting clamp, protective fence and centralized passage, the bearing plate is arranged at the bottom of CMOS data acquisition device body, the protective shell is clamped at the top of bearing plate, the limiting clamp is clamped at the inside bottom of bearing plate front side, the protective fence is fixedly connected at the bottom of protective shell outside, and the centralized passage is opened at the front side of bearing plate inside.

[0008] Preferably, the top of the bearing plate is slidingly connected with a supporting plate, the top of the supporting plate is in contact with the bottom of the CMOS data acquisition device body, and the surface of the supporting plate is provided with air holes.

[0009] Preferably, the front side of the supporting plate is provided with a drying shell, the bottom of the front side of the drying shell is connected with the bottom of the inside of the drying shell, and the bottom of the inside of the drying shell is slidingly connected with the supporting plate.

[0010] Preferably, the bottom of the drying shell is provided with a drying channel, the top of the two sides of the drying channel is clamped with the top of the bearing plate, and the bottom of the inside of the drying channel is bolted with a micro fan.

[0011] Preferably, the outside of the unmanned aerial vehicle body is provided with an auxiliary assembly, the auxiliary assembly comprises a limiting plate slidingly connected on the top of the bearing plate, and the surface of the inside of the limiting plate is bonded with a protective pad.

[0012] Preferably, the bottom of the limiting plate is rotatably connected with a moving wheel, and the surface of the moving wheel is slidingly connected with the top of the inside of the bearing plate.

[0013] Preferably, the inside bottom of the bearing plate is provided with a clamping groove around, the four corners of the outside of the bearing plate are in arc shape, the four corners of the outside of the protective shell are in arc shape, and the inside of the limiting clamp is bonded with a non-slip pad.

[0014] Preferably, the four corners of the outside of the protective fence are in arc shape, the bottom of the protective fence is fixedly connected with a round protective strip, and the inside of the concentrating channel is close to the outside of the drying channel.

[0015] Compared with the prior art, the beneficial effects of the utility model are:

[0016] 1、The bearing assembly is arranged, when the CMOS sensor data acquisition device is stored, the user can combine the bearing assembly with the unmanned aerial vehicle body, the CMOS data acquisition device body and the prevention assembly, so that the bearing assembly can accommodate and protect the unmanned aerial vehicle body, the CMOS data acquisition device body and the prevention assembly, and the fixing structure arranged in the bearing assembly can clamp and fix the bottom workbench, so that the unmanned aerial vehicle body and the CMOS data acquisition device body are prevented from being damaged due to accidental falling of the bearing assembly.

[0017] 2、The application is provided with a prevention assembly, when the unmanned aerial vehicle body and the CMOS data acquisition device body are placed in the bearing assembly, the user can start the air guiding structure in the prevention assembly to guide the humid air in the bearing assembly, so that the humid air enters the prevention assembly and contacts with the desiccant stored in the prevention assembly, and after a period of time, the air guiding structure in the prevention assembly is closed, so that the air in the bearing assembly is relatively dry, for protecting the unmanned aerial vehicle body and the CMOS data acquisition device body. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a whole structure diagram of the CMOS sensor data acquisition device in the utility model;

[0019] Figure 2 It is a structure schematic view of the auxiliary mechanism in the utility model;

[0020] Figure 3 It is a structure schematic view of the bearing assembly in the utility model;

[0021] Figure 4 It is a structure schematic view of the prevention assembly in the utility model;

[0022] Figure 5 It is a structure schematic view of the auxiliary assembly in the utility model.

[0023] In the drawing, 1, unmanned aerial vehicle body; 2, CMOS data acquisition device body; 3, auxiliary mechanism; 301, bearing assembly; 301a, bearing plate; 301b, protective shell; 301c, limiting clamp; 301d, protective coaming; 301e, centralized passage; 302, prevention assembly; 302a, support plate; 302b, drying shell; 302c, drying passage; 302d, micro fan; 4, auxiliary assembly; 401, limiting plate; 402, protective pad; 403, moving wheel. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0025] Please refer to Figures 1-5The utility model provides a kind of CMOS sensor data acquisition device, including unmanned aerial vehicle body 1, the bottom of unmanned aerial vehicle body 1 is provided with CMOS data acquisition device body 2, the outside of CMOS data acquisition device body 2 is provided with auxiliary mechanism 3, auxiliary mechanism 3 includes bearing assembly 301 and prevention component 302, bearing assembly 301 is arranged at the outside of CMOS data acquisition device body 2, prevention component 302 is arranged at the inside of bearing assembly 301;

[0026] Bearing assembly 301 includes bearing plate 301a, protective shell 301b, limiting clamp 301c, protective fence 301d and centralized passage 301e, bearing plate 301a is arranged at the bottom of CMOS data acquisition device body 2, protective shell 301b is clamped at the top of bearing plate 301a, limiting clamp 301c is clamped at the inside bottom of bearing plate 301a front side, protective fence 301d is fixedly connected at the bottom of the outside of protective shell 301b, and centralized passage 301e is opened at the front side of the inside of bearing plate 301a.

[0027] In the embodiment: by setting bearing plate 301a, protective shell 301b, limiting clamp 301c, protective fence 301d and centralized passage 301e, when storing the CMOS sensor data acquisition device, user can place unmanned aerial vehicle body 1 and CMOS data acquisition device body 2 on the top of bearing plate 301a, then protective shell 301b, protective fence 301d are clamped on the top of bearing plate 301a, to be stored for CMOS data acquisition device body 2, while the centralized passage 301e opened in the inside of bearing plate 301a can be carried and limit dry, and the limiting clamp 301c clamped in the inside of bearing plate 301a can clamp the bottom workbench, avoid bearing plate 301a accidental drop.

[0028] Specifically, as shown in Figure 2 、 Figure 4 The top of bearing plate 301a is slidably connected with support plate 302a, the top of support plate 302a is in contact with the bottom of CMOS data acquisition device body 2, and the surface of support plate 302a is provided with air holes.

[0029] Specifically, the front side of support plate 302a is provided with dry shell 302b, the bottom of dry shell 302b front side is inserted with the bottom of dry shell 302b inside, and the bottom of dry shell 302b inside is slidably connected with support plate 302a.

[0030] Specifically, as shown in Figure 2 、 Figure 4As shown in the figure, the bottom of the drying shell 302b is provided with a drying channel 302c, the top of both sides of the drying channel 302c is clamped with the top of the bearing plate 301a, and the bottom of the inner side of the drying channel 302c is bolted with a micro fan 302d.

[0031] In this embodiment: by setting the support plate 302a, the drying shell 302b, the drying channel 302c and the micro fan 302d, when the CMOS data acquisition device body 2 is placed on the top of the bearing plate 301a and contacts the support plate 302a, the user can move the support plate 302a to contact the drying shell 302b, so that the CMOS data acquisition device body 2 is located in the storage space composed of the drying shell 302b and the support plate 302a, then the user can start the micro fan 302d clamped in the drying channel 302c to guide the air flow to the support plate 302a, so that the humid air in the protective shell 301b enters the drying shell 302b through the concentrating channel 301e, so that it contacts the desiccant arranged in the drying shell 302b, and then flows into the protective shell 301b. After a period of time, the micro fan 302d can dry the air in the protective shell 301b, so that the CMOS data acquisition device body 2 is in a dry storage environment.

[0032] Specifically, as shown in the figure, Figure 5 The outer side of the unmanned aerial vehicle body 1 is provided with an auxiliary assembly 4, the auxiliary assembly 4 includes a limiting plate 401 slidingly connected on both sides of the top of the bearing plate 301a, and the inner side of the limiting plate 401 is bonded with a protective pad 402.

[0033] Specifically, as shown in the figure, Figure 5 The bottom of the limiting plate 401 is rotatably connected with a moving wheel 403, and the surface of the moving wheel 403 is slidingly connected with the top of the inner side of the bearing plate 301a.

[0034] In this embodiment: by setting the limiting plate 401, the protective pad 402 and the moving wheel 403, the limiting plate 401, the protective pad 402 and the moving wheel 403 cooperate with each other to assist in fixing the unmanned aerial vehicle body 1.

[0035] Specifically, as shown in the figure, Figure 3 The inner bottom of the bearing plate 301a is provided with a clamping groove around, the outer side of the bearing plate 301a is provided with a circular arc shape at the four corners, the outer side of the protective shell 301b is provided with a circular arc shape at the four corners, and the inner side of the limiting clamp 301c is bonded with a non-slip pad.

[0036] Specifically, as shown in the figure, Figure 3As shown, the four corners of the outer side of the protective fence 301d are in arc shape, and the bottom of the protective fence 301d is fixedly connected with a round protective strip.

[0037] In the embodiment: by setting the bearing plate 301a, the protective shell 301b, the limiting clamp 301c and the protective fence 301d, the bearing plate 301a, the protective shell 301b, the limiting clamp 301c and the protective fence 301d are matched with each other, so that the unmanned aerial vehicle body and the CMOS data acquisition device body 2 can be stored.

[0038] Working principle: first, when storing the CMOS data acquisition device body 2, the user can place the unmanned aerial vehicle body 1 and the CMOS data acquisition device body 2 on the top of the bearing plate 301a, and then the protective shell 301b and the protective fence 301d are clamped on the top of the bearing plate 301a, so as to store the CMOS data acquisition device body 2, and the central channel 301e opened in the inner side of the bearing plate 301a can bear and limit the drying channel, and the limiting clamp 301c clamped in the inner side of the bearing plate 301a can clamp the bottom workbench, avoiding the bearing plate 301a from falling off accidentally, when the CMOS data acquisition device body 2 is placed on the top of the bearing plate 301a and contacts the supporting plate 302a, the user can move the supporting plate 302a to contact the drying shell 302b, so that the CMOS data acquisition device body 2 is located in the storage space composed of the drying shell 302b and the supporting plate 302a, then the user can start the micro fan 302d clamped in the drying channel 302c to guide the air flow to the supporting plate 302a, so that the humid air in the protective shell 301b enters the drying shell 302b through the central channel 301e, so as to contact the drying agent arranged in the drying shell 302b, and then flows into the protective shell 301b after contacting the drying agent arranged in the drying shell 302b and the supporting plate 302a, and the air in the protective shell 301b is dried for a period of time, so that the CMOS data acquisition device body 2 is in a dry storage environment.

[0039] The above is only a preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement and improvement made in the present application shall be included in the protection scope of the present application.

Claims

1. A CMOS sensor data acquisition device, comprising a UAV body (1), the bottom of the UAV body (1) is provided with a CMOS data acquisition device body (2), characterized in that: The outer side of the CMOS data acquisition device body (2) is provided with an auxiliary mechanism (3), the auxiliary mechanism (3) comprises a bearing assembly (301) and a prevention assembly (302), the bearing assembly (301) is arranged on the outer side of the CMOS data acquisition device body (2), and the prevention assembly (302) is arranged on the inner side of the bearing assembly (301); The bearing assembly (301) comprises a bearing plate (301a), a protective shell (301b), a limiting clamp (301c), a protective fence (301d) and a centralized channel (301e), the bearing plate (301a) is arranged at the bottom of the CMOS data acquisition device body (2), the protective shell (301b) is clamped at the top of the bearing plate (301a), the limiting clamp (301c) is clamped at the front side of the inner bottom of the bearing plate (301a), the protective fence (301d) is fixedly connected to the bottom of the outer side of the protective shell (301b), and the centralized channel (301e) is arranged on the front side of the inner side of the bearing plate (301a).

2. The CMOS sensor data acquisition device of claim 1, wherein: The top of the bearing plate (301a) is slidably connected with a supporting plate (302a), the top of the supporting plate (302a) is in contact with the bottom of the CMOS data acquisition device body (2), and the surface of the supporting plate (302a) is provided with a breathable hole.

3. The CMOS sensor data acquisition device of claim 2, wherein: The front side of the supporting plate (302a) is provided with a drying shell (302b), the bottom of the front side of the drying shell (302b) is inserted into the bearing plate (301a), and the bottom of the inner side of the drying shell (302b) is slidably connected with the supporting plate (302a).

4. The CMOS sensor data acquisition device of claim 3, wherein: The bottom of the drying shell (302b) is provided with a drying channel (302c), the top of the two sides of the drying channel (302c) is clamped with the top of the bearing plate (301a), and the bottom of the inner side of the drying channel (302c) is bolted with a micro fan (302d).

5. The CMOS sensor data acquisition device of claim 1, wherein: The outer side of the unmanned aerial vehicle body (1) is provided with an auxiliary assembly (4), the auxiliary assembly (4) comprises a limiting plate (401) slidably connected on the top of the two sides of the bearing plate (301a), and the surface of the inner side of the limiting plate (401) is bonded with a protective pad (402).

6. The CMOS sensor data acquisition device of claim 5, wherein: The bottom of the limiting plate (401) is rotatably connected with a moving wheel (403), and the surface of the moving wheel (403) is slidably connected with the top of the inner side of the bearing plate (301a).

7. The CMOS sensor data acquisition device of claim 1, wherein: The inner bottom of the bearing plate (301a) is provided with a clamping groove around, the four corners of the outer side of the bearing plate (301a) are in arc shape, the four corners of the outer side of the protective shell (301b) are in arc shape, and the inner side of the limiting clamp (301c) is bonded with an antiskid pad.

8. The CMOS sensor data acquisition device of claim 1, wherein: The four corners of the outer side of the protective fence (301d) are in arc shape, the bottom of the protective fence (301d) is fixedly connected with a round protective strip, and the inner side of the centralized channel (301e) is close to the outer side of the drying channel (302c).