Seat body, support and microscope
By setting a set of reinforcing ribs with mixed strength on the back of the microscope base plate, the deformation problem caused by the misalignment of the microscope base was solved, the structural strength and equipment stability were improved, and the production cost was reduced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- POTENTIAL INNOVATION TECH CO LTD
- Filing Date
- 2025-07-29
- Publication Date
- 2026-05-26
Smart Images

Figure CN224287243U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of maintenance equipment, specifically to a base, a bracket, and a microscope. Background Technology
[0002] As smartphones and other mobile devices continue to become smaller and thinner, the integration of their internal motherboards is increasing, and the size of electronic components on the motherboards is becoming increasingly miniaturized. Against this backdrop, microscopes have become a crucial tool for professional-grade mobile device repair.
[0003] Currently, microscopes used for maintenance are typically fixed to a worktable using a dedicated base. However, the structural characteristics of the microscope itself mean that the projected position of its center of gravity often does not coincide with the projected position of the connection point between the microscope and the base. This misalignment between the center of gravity and the fulcrum causes the microscope's own weight to generate a continuous, asymmetrical overturning moment (mainly a forward pulling force) on the base connection point. Under long-term gravitational load, the base (especially the area where its mounting column is installed) is prone to plastic deformation, causing the microscope to tilt forward and wobble. This deformation severely affects the operator's experience and accuracy, potentially leading to operational errors; it also accelerates fatigue damage to the base and related connecting components, significantly shortening the overall lifespan of the microscope.
[0004] To address the issue of base deformation, some attempts have been made in existing technologies, such as adding reinforcing ribs to the base in the hope of improving its structural rigidity and resistance to deformation. However, in practical applications, due to considerations of controlling the difficulty of processing and forming and material costs, these reinforcing ribs are usually designed to be relatively simple, and their effectiveness in resisting the asymmetric stress generated by the long-term gravitational pull of the microscope is limited, making it difficult to provide sufficient and targeted reinforcement support.
[0005] Therefore, how to effectively improve the overall structural strength of the microscope base and achieve a better balance between the product's manufacturing cost and its long-term durability and stability has become an urgent technical problem to be solved. Utility Model Content
[0006] Based on the above situation, the main purpose of this utility model is to provide a base, bracket and microscope to effectively improve the overall structural strength of the microscope base and achieve a better balance between the manufacturing cost of the product and its durability and stability in long-term use.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] In a first aspect, this utility model discloses a base body, including a base plate, wherein the base plate is provided with a mounting position for mounting and connecting columns, and the back of the base plate forms a semi-enclosed cavity, wherein a strip-shaped reinforcing rib assembly is provided within the semi-enclosed cavity, wherein:
[0009] The strip-shaped reinforcing rib group includes a type I reinforcing rib and multiple type II reinforcing ribs. The type I reinforcing ribs are interspersed among the multiple type II reinforcing ribs, and the strength of the type I reinforcing ribs is greater than the strength of the type II reinforcing ribs.
[0010] The type of reinforcing rib includes a central rib and at least two side ribs. The central rib extends radially outward along the center of the mounting position and is parallel to the side of the base plate. The at least two side ribs are respectively disposed on both sides of the central rib.
[0011] Optionally, an annular reinforcing rib group is also provided in the semi-enclosed cavity, the annular reinforcing rib group passing through the strip reinforcing rib group and intersecting with the strip reinforcing rib group.
[0012] Optionally, the annular reinforcing rib group includes a first type of reinforcing rib and a second type of reinforcing rib, wherein the number of the first type of reinforcing rib is at least one.
[0013] Optionally, the annular reinforcing ribs are distributed in a corrugated pattern outward from the mounting position.
[0014] Optionally, the mounting position protrudes from the surface of the base plate, and one side of the mounting position is provided with a wiring port communicating with the hollow channel of the connecting column.
[0015] Optionally, a wiring groove is also provided inside the semi-enclosed cavity.
[0016] Optionally, a support foot is also provided inside the semi-enclosed cavity, and the height of the support foot is not less than the height of the semi-enclosed cavity.
[0017] Optionally, the surface of the base plate is provided with a storage groove.
[0018] Secondly, this utility model discloses a bracket, including a connecting column and a base as described in any one of the first aspects, wherein the connecting column is fastened to the base.
[0019] Thirdly, embodiments of this utility model disclose a microscope, including a microscope body and a support as described in the second aspect.
[0020] Beneficial effects:
[0021] According to an embodiment of this utility model, a base, a support, and a microscope are disclosed. The base includes a base plate with a mounting position for installing a connecting column. The back of the base plate forms a semi-enclosed cavity, within which a group of strip-shaped reinforcing ribs is arranged. The group of strip-shaped reinforcing ribs includes primary and secondary reinforcing ribs. The primary reinforcing ribs are interlaced between the secondary reinforcing ribs, and the strength of the primary reinforcing ribs is greater than that of the secondary reinforcing ribs. Each primary reinforcing rib includes a central rib and at least two side ribs. The central rib extends radially outward from the center of the mounting position and is parallel to the side of the base plate. The side ribs are respectively arranged on both sides of the central rib. By mixing reinforcing ribs of different strengths within the semi-enclosed cavity, the overall tensile strength of the base plate is improved, making it less prone to deformation during use, while simultaneously controlling the processing and production costs of the base plate, thus achieving a balance between processing and production costs and product durability. Furthermore, the central rib extends along the center of the installation position, while the side ribs are respectively set on both sides of the central rib. The position of the high-strength central rib and side ribs can further strengthen the base plate, improve the tensile strength of the base plate, and make the base plate less prone to deformation during use.
[0022] Other beneficial effects of this utility model will be explained in detail through the introduction of specific technical features and technical solutions in the specific embodiments. Those skilled in the art should be able to understand the beneficial technical effects brought about by the technical features and technical solutions through the introduction of these technical features and technical solutions. Attached Figure Description
[0023] The following description, with reference to the accompanying drawings, outlines a preferred embodiment of the base, support, and microscope of this invention. In the drawings:
[0024] Figure 1 This is a schematic diagram of the structure of a seat disclosed in this embodiment;
[0025] Figure 2 This is a schematic diagram of the structure of the back of a seat disclosed in this embodiment;
[0026] Figure 3 This is a schematic diagram of the structure of a support disclosed in this embodiment;
[0027] Figure 4 This is a schematic diagram of the structure of a microscope disclosed in this embodiment. Detailed Implementation
[0028] The present invention will now be described based on embodiments, but the present invention is not limited to these embodiments. In the following detailed description of the present invention, some specific details are described in detail, but well-known methods, processes, procedures, and elements are not described in detail in order to avoid obscuring the essence of the present invention.
[0029] Furthermore, those skilled in the art should understand that the accompanying drawings provided herein are for illustrative purposes only and are not necessarily drawn to scale.
[0030] Unless the context explicitly requires it, the words "comprising," "including," and similar terms throughout the specification and claims should be interpreted as encompassing rather than being exclusive or exhaustive; that is, meaning "including but not limited to."
[0031] In the description of this utility model, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0032] To effectively improve the overall structural strength of the microscope base, especially its ability to resist long-term gravitational tensile deformation (tensile and overturning deformation) caused by center of gravity shift, while meeting the economic requirements of large-scale production and processing, and thus achieving a better balance between manufacturing cost and long-term durability and stability, this embodiment discloses a base body. Please refer to... Figure 1 , Figure 1 This is a schematic diagram of the structure of a seat disclosed in this embodiment.
[0033] like Figure 1 As shown, the base 10 includes a base plate 11, on which a mounting position 111 for mounting the connecting column 20 is provided. In this embodiment, the base 10 can cooperate with the connecting column 20 to fix and support equipment such as microscopes. In specific implementation, the mounting position 111 is provided on the front side of the base plate 11. The mounting position 111 can be a mounting hole for inserting the connecting column 20. The mounting position 111 can be located at any position on the base plate 11, such as at the center of the base plate 11 or at the side of the base plate 11, without limitation. During installation, after the connecting column 20 is inserted into the mounting position 111, the connecting column 20 can be fixedly connected to the base plate 11 by means of screw connection or threaded connection.
[0034] Please see Figure 2 , Figure 2 This is a schematic diagram of the structure of the back of a seat disclosed in this embodiment. Figure 2 As shown, a semi-enclosed cavity 112 is formed on the back of the base plate 11. A strip-shaped reinforcing rib group 12 is provided in the semi-enclosed cavity 112. The strip-shaped reinforcing rib group 12 includes a first-class reinforcing rib and a second-class reinforcing rib. The first-class reinforcing rib is interspersed among multiple second-class reinforcing ribs, and the strength of the first-class reinforcing rib is greater than the strength of the second-class reinforcing rib.
[0035] In this embodiment, the semi-enclosed cavity 112 on the back of the base plate 11 can be formed by bending the four sides of the base plate 11 towards the back of the base plate 11. The first type of reinforcing rib can refer to a coarse rib, which has higher strength but also higher processing cost; the second type of reinforcing rib can refer to a fine rib, which has lower strength and lower processing cost compared to the coarse rib. By providing strip-shaped reinforcing rib groups 12 within the cavity 112, and by mixing and interweaving the first and second types of reinforcing ribs, the overall tensile strength of the base plate 11 can be improved, making the base plate 11 less prone to deformation during use, while also controlling the processing and production costs of the base plate 11.
[0036] In practical implementation, when connecting equipment such as microscopes to the base 10, the projected position of the center of gravity of the microscope or other equipment may not coincide with the projected position of the stress point of the connecting column 20 and the base plate 11. This causes the mounting position 111 of the base 11 to be stretched under the influence of gravity when the microscope or other equipment is fixed to the connecting column 20, making the base 11 prone to deformation at the mounting position 111. Therefore, the strip reinforcing rib group 12 can be radially distributed outward from the mounting position 111 as the center. Each type of reinforcing rib in the strip reinforcing rib group 12 radiates outward from the mounting position 111, resulting in a high density distribution of the strip reinforcing rib group 12 around the mounting position 111. This greatly increases the hardness of the mounting position 111, giving it better tensile strength and making it less prone to deformation.
[0037] One type of reinforcing rib includes a central rib 121 and at least two side ribs 122. The central rib 121 extends radially outward along the center of the mounting position 111 and is parallel to the side of the base plate 11. The at least two side ribs 122 are respectively arranged on both sides of the central rib 121.
[0038] In this embodiment, the extension line of the central rib 121 passes radially through the center of the mounting position 111, and the central rib 121 is parallel to the side of the base plate 11. Preferably, the mounting position 111 is located on the central axis of the base plate 11, and the central rib 121 can also be located on the central axis of the base plate 11. Side ribs 122 can be respectively located on both sides of the central rib 121 to strengthen the effect of the central rib 121. The two side ribs 122 and the central rib 121 work together to increase the overall tensile strength of the base plate 11, making the base plate 11 less prone to deformation during use. Preferably, at least two of the two side ribs 122 can be symmetrically arranged on both sides of the central rib 121. Preferably, in order to achieve a better balance between the manufacturing cost of the product and the durability and stability of long-term use, such as Figure 2 As shown, among the strip reinforcing ribs 12, except for the central rib 121 and the two side ribs 122 which are Class I reinforcing ribs, the rest are Class II reinforcing ribs.
[0039] In an optional embodiment, an annular reinforcing rib group 13 is further provided within the semi-enclosed cavity 112, wherein the annular reinforcing rib group 13 passes through the strip reinforcing rib group 12 and intersects with the strip reinforcing rib group 12. In this embodiment, the annular reinforcing rib group 13 may be distributed in a corrugated pattern outward from the mounting position 111. The annular reinforcing rib group 13 may include multiple reinforcing ribs, and the spacing between each reinforcing rib may be the same or different, which is not limited here.
[0040] In the specific implementation process, the reinforcing ribs in the annular reinforcing rib group 13 will pass through the reinforcing ribs in the strip reinforcing rib group 12 and intersect with the reinforcing ribs in the strip reinforcing rib group 12, thereby forming a reinforcing rib pattern similar to crisscrossing, which further improves the overall tensile strength of the base plate 11 and makes the base plate 11 less prone to deformation during use.
[0041] In an optional embodiment, the annular reinforcing rib group 13 also includes a first-class reinforcing rib and a second-class reinforcing rib, and the number of first-class reinforcing ribs is at least one. In this embodiment, the annular reinforcing rib group 13 is provided with a mixture of first-class and second-class reinforcing ribs, which can improve the overall tensile strength of the base plate 11, making the base plate 11 less prone to deformation during use, and can also control the processing and production cost of the base plate 11. Furthermore, the inclusion of at least one first-class reinforcing rib in the annular reinforcing rib group 13 can also improve the reinforcing effect of the annular reinforcing rib group 13 on the base plate 11.
[0042] In an optional embodiment, the mounting position 111 protrudes from the surface of the base plate 11, and a cable routing port 1111 communicating with the hollow channel of the connecting column 20 is provided on one side of the mounting position 111. In this embodiment, the mounting position 111 protrudes from the surface of the base plate 11. The protruding structure of the mounting position 111 can better fix the connecting column 20. Furthermore, a hollow channel is provided inside the connecting column 20, and the cable routing port 1111 on the mounting position 111 communicates with this hollow channel. This allows data cables of equipment such as microscopes to be routed out from the cable routing port 1111 through the hollow channel inside the connecting column 20, preventing the cable bundles from being scattered messily on the outside of the base 10, facilitating cable bundle storage, and improving the cleanliness of the surface of the base 10.
[0043] In an optional embodiment, a cable routing channel is also provided within the semi-enclosed cavity 112. In this embodiment, the cable routing channel may have cable routing holes provided on the reinforcing ribs of the strip reinforcing rib group 12 and / or the annular reinforcing rib group 13, or it may have cable routing holes provided on the bottom of the mounting position 111, that is, the part located within the semi-enclosed cavity 112. This allows data cables of equipment such as microscopes to pass through the hollow channel inside the connecting column 20 and exit through the cable routing channel. The cable routing channel can be stored within the semi-enclosed cavity 112, making reasonable use of the space within the semi-enclosed cavity 112, preventing the cable bundles from being scattered messily outside the base 10, facilitating cable bundle storage, and improving the cleanliness of the surface of the base 10.
[0044] In an optional embodiment, a support foot 14 is further provided within the semi-enclosed cavity 112, the height of which is not less than the height of the semi-enclosed cavity 112. In this embodiment, the support foot 14 is used to support the base plate 11, allowing the base plate 11 to be stably placed on the tabletop or workbench. Preferably, there are four support feet 14, each located at one of the four corners of the semi-enclosed cavity 112. The height of each support foot 14 is not less than the height of the semi-enclosed cavity 112, meaning that when the base plate 11 is placed on the tabletop or workbench, the support feet 14 can contact the tabletop or workbench surface to support the base plate 11. In specific implementation, an anti-slip pad can also be provided on the end face of the support foot 14 that contacts the tabletop or workbench to increase friction and improve stability.
[0045] In an optional embodiment, the surface of the base plate 11 is provided with a storage groove 113 for storing miscellaneous items, such as knife handles. In specific implementation, the storage groove 113 can be set at any position on the surface of the base plate 11, for example, it can be set on both sides of the base plate 11.
[0046] According to an embodiment of this utility model, a base, a support, and a microscope are disclosed. The base includes a base plate with a mounting position for installing a connecting column. The back of the base plate forms a semi-enclosed cavity, within which a group of strip-shaped reinforcing ribs is arranged. The group of strip-shaped reinforcing ribs includes primary and secondary reinforcing ribs. The primary reinforcing ribs are interlaced between the secondary reinforcing ribs, and the strength of the primary reinforcing ribs is greater than that of the secondary reinforcing ribs. Each primary reinforcing rib includes a central rib and at least two side ribs. The central rib extends radially outward from the center of the mounting position and is parallel to the side of the base plate. The side ribs are respectively arranged on both sides of the central rib. By mixing reinforcing ribs of different strengths within the semi-enclosed cavity, the overall tensile strength of the base plate is improved, making it less prone to deformation during use, while simultaneously controlling the processing and production costs of the base plate, thus achieving a balance between processing and production costs and product durability. Furthermore, the central rib extends along the center of the installation position, while the side ribs are respectively set on both sides of the central rib. The position of the high-strength central rib and side ribs can further strengthen the base plate, improve the tensile strength of the base plate, and make the base plate less prone to deformation during use.
[0047] This embodiment also discloses a bracket; please refer to [link / reference]. Figure 3 , Figure 3 This is a schematic diagram of the structure of a support disclosed in this embodiment. Figure 3 As shown, the bracket includes a connecting column 20 and a base 10 as disclosed in any of the preceding embodiments, wherein the connecting column 20 and the base 10 are fastened together.
[0048] In this embodiment, the connecting post 20 can be inserted into the mounting position 111 on the base 10, thereby securing it to the base 10. In specific implementation, the connecting post 20 can be detachably connected to the base 10, and the connecting post 20 and the base 10 can be securely connected by various methods such as screw connection, snap-fit connection, and threaded connection.
[0049] This embodiment also discloses a microscope; please refer to [link / reference needed]. Figure 4 , Figure 4 This is a schematic diagram of the structure of a microscope disclosed in this embodiment. Figure 4 As shown, the microscope includes a body 30 and a support as disclosed in any of the foregoing embodiments, wherein the body 30 and the support are fastened together.
[0050] In this embodiment, the mirror body 30 can be securely connected to the bracket via a connector, and the height of the mirror body 30 on the bracket can be adjusted. In specific implementation, the mirror body 30 can be securely connected to the connecting column 20 via a connector, and the height position of the mirror body 30 on the connecting column 20 can be adjusted via an adjusting member to adjust the position of the mirror body 10 relative to the base 11, thereby facilitating operation by the operator.
[0051] Those skilled in the art will understand that, without conflict, the above-mentioned preferred solutions can be freely combined and superimposed.
[0052] It should be understood that the above-described embodiments are merely exemplary and not restrictive. Without departing from the basic principles of this utility model, any obvious or equivalent modifications or substitutions made by those skilled in the art regarding the above details will be included within the scope of the claims of this utility model.
Claims
1. A base, characterized in that, Includes a base plate (11), on which a mounting position (111) for installing and connecting columns (20) is provided. The back of the base plate (11) forms a semi-enclosed cavity (112), and a strip-shaped reinforcing rib group (12) is provided in the semi-enclosed cavity (112), wherein: The strip-shaped reinforcing rib group (12) includes a type I reinforcing rib and multiple type II reinforcing ribs. The type I reinforcing ribs are interspersed among the multiple type II reinforcing ribs, and the strength of the type I reinforcing ribs is greater than the strength of the type II reinforcing ribs. The type of reinforcing rib includes a central rib (121) and at least two side ribs (122). The central rib (121) extends radially outward along the center of the mounting position (111) and is parallel to the side of the base plate (11). The at least two side ribs (122) are respectively disposed on both sides of the central rib (121).
2. The seat according to claim 1, characterized in that, The semi-enclosed cavity (112) is also provided with an annular reinforcing rib group (13), which passes through the strip reinforcing rib group (12) and is arranged to intersect with the strip reinforcing rib group (12).
3. The seat according to claim 2, characterized in that, The annular reinforcing rib group (13) includes a first type of reinforcing rib and a second type of reinforcing rib, wherein the number of the first type of reinforcing rib is at least one.
4. The seat according to claim 2, characterized in that, The annular reinforcing rib group (13) is distributed outward in a wavy pattern from the mounting position (111) as the center.
5. The seat according to claim 1, characterized in that, The mounting position (111) protrudes from the surface of the base plate (11), and a wiring port (1111) communicating with the hollow channel of the connecting column (20) is provided on one side of the mounting position (111).
6. The seat according to claim 1, characterized in that, The semi-enclosed cavity (112) is also provided with a wiring groove.
7. The seat according to claim 1, characterized in that, The semi-enclosed cavity (112) is also provided with a support foot (14), the height of which is not less than the height of the semi-enclosed cavity (112).
8. The seat according to claim 1, characterized in that, The surface of the base plate (11) is provided with a storage groove (113).
9. A stent, characterized in that, It includes a connecting column (20) and a base (10) as described in any one of claims 1 to 8, wherein the connecting column (20) is fastened to the base (10).
10. A microscope, characterized in that, It includes a mirror body (30) and a support as described in claim 9.