Portable data analyzer

By using overlapping reinforcement units, anti-slip plates, and adjustable support mechanisms, the stability problem of portable data analyzers on complex terrains was solved, enabling stable placement of the equipment on different terrains and ensuring the accuracy of test results, while reducing maintenance costs.

CN223857189UActive Publication Date: 2026-01-30TIANYANG CONSTR MANAGEMENT CO LTD
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Patent Information

Application Number
CN202423229192.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-01-30
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Portable data analyzers suffer from reduced stability and support due to complex terrain conditions in outdoor or field environments, affecting the stability and accuracy of tests.

Method used

The system employs staggered and overlapping reinforcement and strengthening groups, combined with anti-slip plates and an adjustable support mechanism, including motor-driven transmission rods and linkage rods, along with detachable foot supports, to achieve dynamic adjustment and enhance friction, ensuring the stability of the equipment on different terrains.

Benefits of technology

It improves the stability of the equipment in complex terrain and the accuracy of test results, reduces maintenance costs, and maintains the portability of the equipment and the efficient use of internal space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The portable data analyzer is characterized in that reinforcing groups are symmetrically arranged on the long sides of a box body, reinforcing groups are symmetrically arranged on the short sides of the box body, the reinforcing groups and the reinforcing groups are staggered and overlapped at the bottom of the box body, each reinforcing group comprises a first transverse rib plate and a second transverse rib plate, and each reinforcing group comprises a first vertical rib plate and a second vertical rib plate; a positioning groove is formed in the second vertical rib plate, a supporting mechanism is installed in the positioning groove, when the linkage rod moves downwards, the bottom end of a foot support protrudes out of the box body, the foot support replaces a reinforcing set and a strengthening set for supporting, and dynamic adjustment of the supporting mechanism is achieved; the design allows a user to quickly adjust the position of the kickstand according to needs so as to flexibly adapt to different ground environments and support requirements.
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Description

Technical Field

[0001] This utility model belongs to the field of analyzer technology, specifically relating to a portable data analyzer. Background Technology

[0002] Portable water quality analyzers are a common tool in water quality testing, used to measure water conditions such as pH, dissolved oxygen, ammonia, and nitrogen. They are especially indispensable in aquaculture.

[0003] Portable data analyzers have become essential tools for data monitoring, acquisition, and analysis across numerous industries. These instruments are typically designed to be small and lightweight for easy carrying and use in various environments. However, in practical applications, especially in outdoor or field environments, users often encounter diverse and complex terrain conditions, such as uneven ground, slopes, and rocks. These terrain conditions reduce the stability and durability of portable data analyzers. Utility Model Content

[0004] The purpose of this invention is to provide a portable data analyzer to solve the problem of stability in use on different terrains in the prior art.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A portable data analyzer includes a tester inside a housing. The housing has symmetrically arranged reinforcing groups along its long side and symmetrically arranged reinforcement groups along its short side. The reinforcement groups and reinforcement groups overlap at the bottom of the housing. Each reinforcement group includes a first transverse rib and a second transverse rib, and each reinforcement group includes a first vertical rib and a second vertical rib. A positioning groove is formed on the second vertical rib, and a support mechanism is installed within the positioning groove. A motor is located on one side of the housing, and the output end of the motor is connected to a transmission rod, which cooperates with the support mechanism.

[0007] Furthermore, the overlapping sections of the reinforcement and strengthening groups are provided with mounting grooves, and anti-slip plates made of rubber are installed inside these grooves. The reinforcement and strengthening groups, combined with the anti-slip plates installed in the mounting grooves, significantly improve the anti-slip performance of the bottom of the enclosure. When the enclosure is placed on a table or other flat surface, the anti-slip plates increase the friction with the contact surface, preventing the enclosure from sliding due to accidental contact or vibration during testing, thereby ensuring the stability of the testing instrument and the accuracy of the test results. The anti-slip plates are made of rubber, which has an excellent coefficient of friction, further enhancing the friction between the anti-slip plates and the contact surface.

[0008] Further, the support mechanism includes a linkage rod that is slidingly installed in a positioning slot, the middle of the linkage rod is threadedly connected with a transmission rod, and the two ends of the linkage rod are provided with mounting heads, the mounting heads are internally provided with props, the bottom of each prop is a pointed end, the top end of the second vertical rib plate is provided with a stabilizing plate, and the transmission rod is movably connected inside the stabilizing plate.

[0009] Further, the prop passes through the mounting head, and a compression nut is mounted on the prop. The prop is provided with threads above for cooperating with the compression nut, and the prop is detachable. When the prop is worn out, damaged, or needs to be replaced to adapt to different terrains, the user can easily detach and replace a new prop without replacing the entire support mechanism. This greatly reduces maintenance costs and improves the maintainability of the equipment. The detachable prop design allows users to choose props of different materials, shapes, or sizes according to actual needs. For example, in scenarios requiring higher stability, wider and heavier props can be selected; in scenarios requiring better penetration, props with sharper pointed ends can be selected. This flexibility enables the equipment to be more widely adapted to various environmental and task requirements.

[0010] The technical scheme of the utility model has the following beneficial effects:

[0011] 1. When the linkage rod moves downward, the bottom end of the prop will protrude outside the box, replacing the support of the reinforcement group and the reinforcing group, achieving dynamic adjustment of the support mechanism. This design allows users to quickly adjust the position of the prop as needed, thereby flexibly adapting to different ground environments and support requirements.

[0012] 2. The support mechanism installed in the reinforcement group allows the entire system to be compactly stored in the box in a non-use state, without occupying additional space. This design ensures the portability of the box while optimizing the use efficiency of the internal space, without affecting the stable function of the reinforcement group as a support box. BRIEF DESCRIPTION OF DRAWINGS

[0013] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description.

[0014] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0015] Figure 2 It is a schematic diagram of the bottom structure of the utility model.

[0016] Figure 3 It is a schematic diagram of the local structure of the utility model.

[0017] Figure 4 It is a schematic diagram of the disassembly and installation of the utility model.

[0018] Figure 5 The utility model discloses a plane use structure schematic diagram.

[0019] Reference: 10, box body, 11, tester, 12, reinforcing group, 13, first transverse rib, 14, second transverse rib, 15, reinforcing group, 16, first vertical rib, 17, second vertical rib, 18, positioning groove, 20, motor, 21, transmission rod, 22, linkage rod, 23, mounting head, 24, foot prop, 25, compression nut, 26, stabilizing plate, 30, mounting groove, 31, antiskid plate. DETAILED DESCRIPTION

[0020] In order to make the utility model purposes, technical scheme and advantages more clearly, below will combine with the drawing and example, and this utility model will be further detailedly explained.It should be understood that the specific example described here is only used to explain the utility model, and is not used to limit the utility model.Based on the example in the utility model, all other examples obtained by the person skilled in the art without making creative labor are within the protection scope of the utility model.

[0021] Example one:

[0022] Reference Figure 1 A kind of portable data analyzer, including tester 11 in box body 10, the long side of box body 10 is symmetrically equipped with reinforcing group 12, the short side of box body 10 is symmetrically equipped with reinforcing group 15, reinforcing group 15 and reinforcing group 12 staggered overlap at the bottom of box body 10, reinforcing group 12 includes first transverse rib 13 and second transverse rib 14, reinforcing group 15 includes first vertical rib 16 and second vertical rib 17;

[0023] In the above scheme, tester 11 when using, will be placed on the desktop using the box body 10 flat, staggered overlap reinforcing group 15 and reinforcing group 12 play the role of supporting box body 10, can ensure that tester 11 is stably placed in the box, avoid shaking or tilting during testing process;Staggered overlap reinforcing group 15 and reinforcing group 12 can also consolidate the structure of box body 10, significantly enhance the overall structural stability of box body, this design makes the box more solid when bearing external force, not easy to deform or damage.

[0024] Further reference Figure 2 Reinforcing group 15 and reinforcing group 12 staggered overlap place is equipped with mounting groove 30, antiskid plate 31 is installed in mounting groove 30.

[0025] In this further embodiment, the reinforcing groups 15 and the reinforcing groups 12, in combination with the anti-slip plates 31 installed in the mounting slots 30, significantly improve the anti-slip performance of the bottom of the box 10. When the box is placed on a table top or other flat surface, the anti-slip plates 31 can increase the friction with the contact surface, preventing the box from sliding due to accidental touch or vibration during testing, thereby ensuring the stability of the tester and the accuracy of the test results. The anti-slip plates 31 are made of rubber material, which has excellent friction coefficient, further improving the friction between the anti-slip plates 31 and the contact surface.

[0026] Example Two:

[0027] Reference Figures 1-5 A positioning slot 18 is provided on the second vertical rib plate 17, and a support mechanism is installed in the positioning slot 18. One side of the box 10 is provided with a motor 20, and the output end of the motor 20 is connected with a transmission rod 21. The transmission rod 21 cooperates with the support mechanism. The support mechanism includes a linkage rod 22, which is slidingly installed in the positioning slot 18. The middle of the linkage rod 22 is threadedly connected with the transmission rod 21. The two ends of the linkage rod 22 are provided with mounting heads 23, and the mounting heads 23 are provided with foot props 24. The bottom of the foot prop 24 is pointed. A stabilizing plate 26 is installed at the top end of the second vertical rib plate 17, and the transmission rod 21 is movably connected inside the stabilizing plate 26.

[0028] In the above scheme, the motors 20 on both sides of the box 10 are started. Since the linkage rod 22 is slidingly installed at both ends of the positioning slot 18, the rotation of the transmission rod 21 will drive the linkage rod 22 to move inside the positioning slot 18. When the linkage rod 22 moves downward, the bottom end of the foot prop 24 will protrude to the outside of the box 10, and the foot prop 24 will replace the reinforcing groups 15 and the reinforcing groups 12 to support, realizing dynamic adjustment of the support mechanism. This design allows users to quickly adjust the position of the foot prop 24 as needed, thereby flexibly adapting to different ground environments and support needs. The bottom of the foot prop 24 is pointed, which can be used for outdoor carrying. The pointed design can better penetrate the ground and increase the friction, thereby significantly improving the stability of the box 10. This design makes the box 10 not only suitable for flat ground, but also can be stably placed on slopes, rocks or other complex terrains.

[0029] When the ground is uneven or inclined, by separately controlling the motor 20 on one side, the support mechanisms at both ends of the box 10 can produce different height differences, so as to maintain the horizontal state of the box 10, and the box 10 can adapt to various complex and uneven terrains. This design ensures that the box can maintain a horizontal or nearly horizontal state on any terrain, thereby effectively preventing tilting or overturning due to uneven ground.

[0030] Further reference Figure 3The support mechanism is installed in the reinforcing group 15. The support mechanism installed in the reinforcing group 15 enables the whole system to be compactly accommodated in the box body 10 in a non-use state, without occupying extra space. This design not only ensures the portability of the box body 10, but also optimizes the use efficiency of the internal space, without affecting the stable function of the reinforcing group 15 as a support for the box body 10.

[0031] Embodiment three:

[0032] With reference to Figure 4 The foot prop 24 passes through the mounting head 23, and the foot prop 24 is provided with a pressing nut 25.

[0033] In the above scheme, the foot prop 24 is provided with a thread above for cooperating with the pressing nut 25, and the foot prop 24 is detachable. When the foot prop 24 is worn, damaged or needs to be replaced to adapt to different terrains, the user can easily detach and replace a new foot prop 24 without replacing the whole support mechanism. This greatly reduces the maintenance cost and improves the maintainability of the equipment. The detachable foot prop 24 design allows the user to select foot props 24 of different materials, shapes or sizes according to actual needs. For example, in a scenario requiring higher stability, a wider and heavier foot prop 24 can be selected; in a scenario requiring better penetration, a foot prop 24 with a sharper tip can be selected. This flexibility enables the equipment to be more widely adapted to various environmental and task requirements.

[0034] The specific implementation process of the utility model is as follows:

[0035] When the tester 11 is used, the box body 10 is placed flat on the desktop for use. The staggered and overlapped reinforcing groups 15 and reinforcing groups 12 play a role in supporting the box body 10, and can ensure that the tester 11 is stably placed in the box body.

[0036] The motors 20 on both sides of the box body 10 are started, and the support mechanism is adjusted. The rotation of the transmission rod 21 will drive the linkage rod 22 to move inside the positioning groove 18. When the linkage rod 22 moves downward, the bottom end of the foot prop 24 will protrude to the outside of the box body 10, and the foot prop 24 will replace the reinforcing groups 15 and reinforcing groups 12 to support, realizing dynamic adjustment of the support mechanism.

[0037] When the ground is uneven or inclined, the motor 20 on one side is controlled separately, so that the support mechanisms at both ends of the box body 10 produce different height differences, to maintain the horizontal state of the box body 10.

[0038] The above embodiments are only exemplary embodiments of the utility model and are not used to limit the utility model. The protection scope of the utility model is defined by the claims. Various modifications or equivalent replacements can be made to the utility model within the spirit and protection scope of the utility model. Such modifications or equivalent replacements should also be considered to fall within the protection scope of the utility model.

[0039] In the description of the utility model, it is explained that the directions or position relations indicated by the terms "inner", "front", "rear", "left", "right" and the like are based on the directions or position relations shown in the drawings or the directions or position relations in which the utility model product is usually placed during use, and are only used for facilitating the description of the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the terms indicating the directions or position relations cannot be understood as a limitation on the utility model.

[0040] In the description of the utility model, it is further explained that, unless otherwise explicitly specified and limited, the terms "arranged", "connected" should be understood in a broad sense, for example, these terms can represent fixed connection, detachable connection or integral connection between elements; can also represent mechanical connection, electrical connection; can also represent direct connection or indirect connection through an intermediate medium. For those skilled in the art, the specific meanings of these terms in the utility model can be understood according to the specific circumstances.

Claims

1. A portable data analyser comprising a tester (11) within a case (10) characterised in that: The long side of the box (10) is symmetrically provided with a reinforcing group (12), and the short side of the box (10) is symmetrically provided with a reinforcing group (15), the reinforcing group (15) and the reinforcing group (12) are staggered and overlapped at the bottom of the box (10), the reinforcing group (12) comprises a first transverse rib plate (13) and a second transverse rib plate (14), and the reinforcing group (15) comprises a first vertical rib plate (16) and a second vertical rib plate (17); The second vertical rib plate (17) is provided with a positioning groove (18), a supporting mechanism is installed in the positioning groove (18), one side of the box (10) is provided with a motor (20), the output end of the motor (20) is connected with a transmission rod (21), and the transmission rod (21) and the supporting mechanism are matched with each other.

2. The portable data analyzer of claim 1, wherein: The reinforcing group (15) and the reinforcing group (12) are provided with mounting grooves (30) at the staggered overlapping positions, and the mounting grooves (30) are internally provided with anti-skid plates (31).

3. A portable data analyzer according to claim 2, wherein: The anti-skid plate (31) is made of rubber material.

4. The portable data analyzer of claim 1, wherein: The supporting mechanism comprises a linkage rod (22), the linkage rod (22) is slidably installed in the positioning groove (18), the middle of the linkage rod (22) is threadedly connected with the transmission rod (21), the two ends of the linkage rod (22) are provided with mounting heads (23), the mounting heads (23) are internally provided with foot props (24), the bottom of the foot prop (24) is a pointed end, the top end of the second vertical rib plate (17) is provided with a stabilizing plate (26), and the transmission rod (21) is movably connected in the stabilizing plate (26).

5. A portable data analyser according to claim 4, wherein: The supporting mechanism is installed in the reinforcing group (15).

6. The portable data analyzer of claim 4, wherein: The foot prop (24) penetrates through the mounting head (23), and the foot prop (24) is provided with a compression nut (25).