Outdoor data acquisition equipment shell

By designing a detachable and connected outdoor data acquisition equipment shell, the roof cover and hollow equipment tube are composed of a problem that the existing equipment shell cannot meet the lightweight and sealing, achieving the lightweight and sealing of the equipment, reducing costs.

CN223053244UActive Publication Date: 2025-07-01LIUPANSHUI VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202421919060.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-01
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

The housing of the existing data acquisition equipment cannot meet the lightweight and sealing properties, resulting in large equipment size, weight and increased cost.

Method used

An outdoor data acquisition equipment shell is designed, consisting of a top cover and multiple hollow equipment tubes. The equipment tube can be detached and connected, the top cover can be detached and connected to the top end of the equipment tube, and the installation tube can be detached and connected to the bottom end of the equipment tube, adding joints and partitions to enhance sealing.

Benefits of technology

Effectively reduce the footprint and volume of the equipment, enhance sealing, avoid rainwater from entering, improve installation convenience and maintenance convenience, and reduce costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223053244U_ABST
    Figure CN223053244U_ABST
Patent Text Reader

Abstract

The scheme discloses an outdoor data acquisition equipment shell in the field of outdoor equipment, the outdoor data acquisition equipment shell comprises a top cover and a plurality of equipment pipes, the plurality of equipment pipes are hollow and are detachably connected end to end in sequence, the top cover is detachably connected to the top end of the uppermost equipment pipe, the bottom end of the lowermost equipment pipe is detachably connected with a mounting pipe, and the mounting pipe is detachably connected with the top end of the lowermost equipment pipe. The mounting pipe is hollow, and the diameter of the mounting pipe is the same as that of the equipment pipe. The device is arranged to be pipe-mounted and is disassembled and mounted in a segmented mode, the occupied area and the size of the device can be effectively reduced, the interior of the device is sealed through a top cover, then the whole device is lifted through a mounting pipe, and the situation that water enters the device due to the fact that the device is flooded by water when rainwater is too much is effectively avoided.
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Description

Technical Field

[0001] The utility model belongs to the field of outdoor equipment, and particularly relates to a housing for an outdoor data acquisition device. Background Technique

[0002] At present, outdoor data acquisition devices play an indispensable role in the fields of environmental monitoring, meteorological observation, industrial automation, agricultural intelligent management, etc. When the data acquisition device works outdoors, an electrician box and a telegraph pole are mostly used to be fixed near the position where data needs to be acquired. Such devices usually consist of three parts: a core part (circuit board, battery), a sensor part (sensor), and a display and communication part (indicator light, antenna). In design, durability, waterproofness, and low power consumption need to be considered to adapt to the harsh outdoor environment.

[0003] Due to the limitations of its own functions, the existing data acquisition devices have the disadvantages of large volume, heavy weight, inconvenient installation and maintenance, etc. At the same time, in order to ensure that the device can work normally in harsh environments such as the rainy season, it is also necessary to have good waterproofness and airtightness, which increases the cost of the device. Content of the Utility Model

[0004] The utility model aims to provide a housing for an outdoor data acquisition device to solve the problem that the existing housing of the data acquisition device cannot meet the requirements of light weight and airtightness, resulting in large volume, heavy weight and increased cost of the device.

[0005] A housing for an outdoor data acquisition device in this solution includes a top cover and a plurality of device tubes. The interiors of the plurality of device tubes are hollow, and they are detachably connected in sequence from beginning to end. The top cover is detachably connected to the top of the uppermost device tube. The bottom end of the lowermost device tube is detachably connected with an installation tube, and the interior of the installation tube is hollow. The diameter of the installation tube is the same as that of the device tube.

[0006] The working principle of this solution: When in use, the above-mentioned display and communication part (indicator light, antenna), core part (circuit board, battery), and sensor part (sensor) are sequentially placed into different device tubes from top to bottom, and the device tubes are sequentially installed and connected into one body. The top cover is installed on the top of the uppermost device tube, and the installation tube is installed on the bottom end of the lowermost device tube. After the installation is completed, the device is taken to the position where data needs to be acquired, and the installation tube is buried underground or other places, and then it can be used;

[0007] Beneficial effects: 1. The housing is set as a long strip-shaped tube, and the electronic components required for data acquisition are arranged sequentially from top to bottom, which can effectively reduce the floor area and volume of the device;

[0008] 2. The top cover is used to seal the interior of the device tube, enhancing the airtightness and avoiding rainwater from entering the device tube and damaging the internal electronic components;

[0009] 3. The installation pipe at the bottom can fix the device at the required position, prevent the equipment from shaking and tilting, and can raise the height of the equipment pipe on which the electronic components are installed, keeping it away from the ground to avoid damage caused by flooding of the equipment when there is too much rain.

[0010] Furthermore, joints are provided between multiple said equipment pipes and installation pipes. The joint consists of two cylinders of different sizes. The outer diameter of the upper cylinder is the same as the inner diameter of the equipment pipe, and the inner diameter of the lower cylinder is the same as the outer diameter of the equipment pipe. Both the equipment pipe and the installation pipe are detachably connected to the joint. During installation, the bottom end of the equipment pipe is inserted outside the upper cylinder at the top of the joint, and then the top end of the equipment pipe or the installation pipe is inserted into the lower cylinder at the bottom of the joint, successively fixing the equipment pipe and the installation pipe into a longer cylindrical device. The joint can fix and seal the connection between the equipment pipe and the installation pipe, and can better increase the sealing performance of the equipment shell.

[0011] Furthermore, pinholes are provided on both opposite sides of the upper cylinder and the lower cylinder of the joint. Corresponding pinholes are provided at the positions where the pin is connected to the equipment pipe or the installation pipe. A pin is provided through the connection position between the top cover and the equipment pipe, and the pin is detachably connected. Using the pin as a connecting piece can make the installation firm while also making the equipment pipes detachable, reducing the transportation cost and increasing the convenience of maintenance.

[0012] Furthermore, a T-shaped groove is provided at the position of the joint where the pin is located, and the pin passes through the T-shaped groove to be connected to the equipment pipe. The T-shaped groove can prevent the situation where the pin cannot be disassembled due to breakage, expansion, or rust.

[0013] Furthermore, the bottom of the installation pipe is inclined and in a state with one end sharp. The sharp bottom can more easily bury the equipment in the required position.

[0014] Furthermore, partitions are provided between multiple said equipment pipes and installation pipes. The partitions separate each equipment pipe and installation pipe to prevent water vapor from rising from the bottom into the upper part.

[0015] Furthermore, the equipment pipe is made of materials such as glass, polymer materials, or quartz that have good light transmission and do not obstruct the propagation of wireless signals. This enhances the signal transmission between the internal electronic components and the outside, and prevents the equipment pipe from obstructing data collection. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of an outdoor data acquisition equipment shell of the present utility model;

[0017] Figure 2 is Figure 1 a schematic cross-sectional structure diagram;

[0018] Figure 3 is Figure 2 the front view of;

[0019] Figure 4 is Figure 3 the enlarged partial view of. Specific Embodiment

[0020] The following is a further detailed description through specific embodiments:

[0021] The reference numerals in the accompanying drawings of the specification include: top cover 1, equipment pipe 2, joint 3, installation pipe 4, T-shaped groove 5, partition 6, and pin 7.

[0022] The embodiment is basically as shown in the attached Figures 1 to 3 : An outdoor data acquisition device housing, including a top cover 1, three joints 3, and three equipment pipes 2. The equipment pipes 2 are made of materials such as glass, polymer materials, or quartz that have good light transmission and do not hinder the propagation of wireless signals. The joint 3 is composed of two cylinders of different sizes. The outer diameter of the upper cylinder is the same as the inner diameter of the equipment pipe 2, and the inner diameter of the lower cylinder is the same as that of the equipment pipe 2. The upper ends of the three joints 3 are respectively detachably connected to the bottoms of the three equipment pipes 2. The three equipment pipes 2 and the three joints 3 are connected in sequence. The top of the joint 3 is located inside the equipment pipe 2, and the bottom of the joint 3 is located outside the equipment pipe 2. The order is equipment pipe 2, joint 3, equipment pipe 2. The top cover 1 is detachably connected to the top of the uppermost equipment pipe 2. The lower end of the lowermost joint 3 is detachably connected with an installation pipe 4. The diameter of the installation pipe 4 is the same as that of the equipment pipe 2. The bottom of the installation pipe 4 is an inclined surface and is hollow inside. A partition 6 is detachably provided at the position where the installation pipe 4 is connected to the three equipment pipes 2;

[0023] Both cylinders of the joint 3 are provided with two T-shaped grooves 5. The two T-shaped grooves 5 are symmetrically arranged on the opposite sides of the cylinder. A pin 7 is provided through between the two corresponding T-shaped grooves 5. The equipment pipe 2 and the installation pipe 4 are correspondingly provided with pin holes. The pin 7 passes through the pin holes of the equipment pipe 2 and the installation pipe 4 through the T-shaped grooves 5. The same T-shaped grooves 5 are also provided on the opposite sides of the top cover 1. A pin 7 is provided through the T-shaped grooves 5, and the pin 7 passes through the equipment pipe 2.

[0024] The specific implementation process is as follows: put the above-mentioned display communication part (indicator light, antenna), core part (circuit board, battery) and sensor part (sensor) into three equipment tubes 2, install the top end of one of the equipment tubes 2 on the top end of the joint 3, so that the cylinder at the top end of the joint 3 enters the interior of the equipment tube 2, and then take another equipment tube 2, place a partition 6 on the top end of the equipment tube 2, insert its top end into the cylinder at the bottom of the joint 3, and use a pin 7 to pass through each corresponding T-slot 5 and pin hole, connect the three equipment tubes 2 from top to bottom in sequence, and use the partition 6 to separate the three equipment tubes 2, then install the top cover 1 on the topmost equipment tube 2 and use the pin 7 to fix it to the equipment tube 2, then insert the installation tube 4 under the bottom joint 3, and place the partition 6 between the installation tube 4 and the joint 3, fix the top cover 1, the equipment tube 2 and the installation tube 4 with the joint 3 to form a whole, then take the device to the place where data needs to be collected, bury the installation tube 4 there, and then the data here can be collected;

[0025] When the pin 7 is not used, the pin hole of the equipment pipe 2 and the T-slot 5 of the top cover and the joint 3 can be staggered, and the equipment pipe 2, the top cover and the joint 3 can be bonded and fixed together with an adhesive to achieve a better sealing effect.

[0026] The above is only an embodiment of the utility model, and the common knowledge such as the known specific structure and characteristics in the scheme is not described in detail here. It should be pointed out that for those skilled in the art, several deformations and improvements can be made without departing from the structure of the utility model, which should also be regarded as the protection scope of the utility model, and these will not affect the effect of the implementation of the utility model and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the specification can be used to interpret the content of the claims.

Claims

1. A housing for an outdoor data acquisition device, characterized in that: It includes a top cover and a plurality of equipment tubes, wherein the plurality of equipment tubes are hollow inside and are detachably connected head to tail in sequence, wherein the top cover is detachably connected to the top of the topmost equipment tube, and the bottom of the bottommost equipment tube is detachably connected to a mounting tube, wherein the mounting tube is hollow inside and has the same diameter as the equipment tube; A joint is provided between the plurality of equipment pipes and installation pipes, the joint being composed of two cylinders of different sizes, the outer diameter of the upper cylinder being the same as the inner diameter of the equipment pipe, the inner diameter of the lower cylinder being the same as the outer diameter of the equipment pipe, and the equipment pipes and installation pipes being detachably connected to the joint; Pins are provided through the opposite sides of the cylinder at the top and the cylinder at the bottom of the joint, and pin holes are provided correspondingly at the positions where the pins are connected to the equipment pipe or the installation pipe. Pins are provided through the position where the top cover is connected to the equipment pipe, and the pins are detachably connected.

2. The housing of an outdoor data acquisition device according to claim 1, characterized in that: A T-shaped slot is provided at the position where the pin is provided on the joint, and the pin passes through the T-shaped slot and is connected to the equipment pipe.

3. The housing of an outdoor data acquisition device according to claim 2, characterized in that: The bottom of the installation tube is inclined, with one end being sharp.

4. The housing of an outdoor data acquisition device according to claim 3, characterized in that: Partition plates are arranged between the plurality of equipment pipes and installation pipes.

5. The housing of an outdoor data acquisition device according to claim 4, characterized in that: The equipment tube is made of glass, polymer material or quartz material which has good light transmittance and does not hinder the transmission of wireless signals.