Range finder adaptable to optical devices of multiple specifications

By designing a rangefinder that can be adapted to multiple specifications of optical devices, the problem of insufficient compatibility of existing rangefinders has been solved, and the assembly and stability of rangefinder components of different sizes have been achieved, thereby improving the user experience and reducing costs.

CN120947568APending Publication Date: 2025-11-14SHENZHEN JIASAI TECH CO LTD
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Patent Information

Application Number
CN202511203741.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

Existing optical systems for rangefinders can only be adapted to rangefinding components of the same size, resulting in insufficient compatibility.

Method used

A rangefinder adaptable to optical devices of various specifications was designed. By cooperating the rangefinder body and the rangefinder components, the assembly of rangefinder components of different sizes can be realized. The compatibility is improved by using the tail fixed shell and the upper fixed plate, and the assembly stability is enhanced by using the fixed assembly shell and the positioning plate.

Benefits of technology

It enables a single ranging main body to adapt to multiple ranging components of different sizes, improving the user experience and reducing the cost of use, while meeting various ranging needs and expanding its application and applicability.

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Abstract

The invention relates to the technical field of range finders, and discloses a range finder adaptable to multi-specification optical devices, the range finder comprises a range finding main body, a control panel, a power supply part and a plurality of range finding assemblies, the control panel and the power supply part are respectively assembled with the range finding main body; the distance measuring body comprises a tail fixing shell and an upper fixing plate, the tail fixing shell and the control plate are electrically connected, the distance measuring assembly comprises an assembly body and a firmware plate, the lower portion of the firmware plate and the assembly body are fixedly arranged in a butt joint mode, the firmware plate is used for being assembled with or separated from the upper fixing plate in an overlapped mode, and an assembly tail is formed at the end of the assembly body. And the assembly tail part and the tail fixing shell are assembled in a horizontal abutting manner and are arranged in a conducting manner. According to the invention, a single distance measuring main body is adapted to a plurality of distance measuring assemblies of different sizes, and a single telescopic light path is adapted to different distance measuring assemblies, so that a user can selectively assemble different distance measuring assemblies based on use requirements, the use experience of the user is improved, the use cost of the user is reduced, various distance measuring requirements are met, and the use and application range is wider.
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Description

Technical Field

[0001] This invention patent relates to the technical field of rangefinders, and more specifically, to rangefinders that can be adapted to optical devices of various specifications. Background Technology

[0002] A laser rangefinder is an instrument that uses a modulated laser parameter to measure the distance to a target. Laser rangefinders have the advantages of being lightweight, small in size, easy to operate, fast, and accurate, and are used in a wider range of fields and scenarios.

[0003] For example, the prior patent with authorization announcement number CN219978523U discloses a high-precision long-range laser rangefinder, characterized in that it includes a main body (2), the main body (2) being provided with: a visible light lamp (1) disposed on the acquisition end; a display screen (4) located on the side, and a penetrating display screen (12); an eyepiece (6) arranged opposite to the acquisition end, wherein: a lens group (11) is disposed between the eyepiece (6) and the objective lens on the acquisition end.

[0004] In the prior art, optical systems with a single main body configuration can only be adapted to ranging components of the same size, resulting in insufficient adaptability of the rangefinder. Summary of the Invention

[0005] The purpose of this invention is to provide a rangefinder that can be adapted to multiple specifications of optical devices, thereby solving the problem of insufficient adaptability of rangefinders in the prior art.

[0006] This invention is implemented as follows: a rangefinder adaptable to various optical devices includes a rangefinder body, a control board, a power supply unit, and multiple rangefinder components. The control board and the power supply unit are respectively assembled with the rangefinder body, and the various rangefinder components are arranged with different sizes. The rangefinder body includes a tail housing and an upper plate. The upper plate is arranged horizontally, and the tail housing is electrically connected to the control board. Each rangefinder component includes a component body and a mounting plate. The mounting plate is arranged longitudinally, and its lower part is fixedly connected to the component body. The mounting plate is used for overlapping or separating with the upper plate. The end of the component body forms a tail section, which is horizontally abutted and conductively connected to the tail housing.

[0007] Furthermore, the tail shell includes an upper shell plate and a lower shell plate, which are arranged vertically at intervals. The upper shell plate has an upper plate, and the lower shell plate has a lower plate. The upper plate and the lower plate are respectively arranged in a protruding manner. The tail end is provided with an upper clamp and a lower clamp. The upper clamp is arranged to clamp or separate from the upper shell plate, and the upper plate is used to abut against the upper clamp and restrict the upper clamp from disengaging. The lower clamp is arranged to clamp or separate from the lower shell plate, and the lower plate is used to abut against the lower clamp and restrict the upper clamp from disengaging.

[0008] Furthermore, the upper clamping member includes two upper spring pieces, which are arranged at intervals and corresponding to each other. The inner ends of the upper spring pieces are fixed, and the outer ends of the upper spring pieces extend and are movably arranged in the direction towards the tail shell. The two upper spring pieces are used to clamp the upper shell plate.

[0009] Furthermore, the upper spring sheet includes an upper clamping portion and an upper guide portion, which are connected and integrally formed. Along the direction toward the tail housing, the upper clamping portions of the two upper spring sheets extend obliquely in opposite directions, and the upper guide portions of the two upper spring sheets extend obliquely in opposite directions. The upper plate has an upper plate surface, which is obliquely arranged and is used to lay flat against the upper clamping portion.

[0010] Furthermore, the rangefinder adaptable to multiple optical devices includes multiple fixed assembly shells, which are arranged in an assembly arrangement with the fixed plate. Each fixed assembly shell is arranged to be adapted to each of the ranging components, and each fixed assembly shell is arranged in an assembly arrangement with the ranging body. Each fixed assembly shell includes a fixed plate strip, a fixed assembly plate, and multiple positioning plates. The fixed plate strip and the fixed assembly plate are stacked and fixed, and the fixed plate strip and the fixed assembly plate are respectively assembled with the fixed plate. Each positioning plate is arranged at intervals and correspondingly. The upper part of the positioning plate is mated with the fixed assembly plate, and the lower part of the positioning plate forms a positioning groove. The positioning groove is used for embedding the component body, and the positioning groove is arranged to abut against the outer surface of the component body.

[0011] Furthermore, the ranging body includes a main shell, the control board and the power supply are respectively assembled on the main shell, the two sides of the main shell respectively form a control fixation surface and an electrical fixation surface, the control board and the control fixation surface are arranged in a flat overlapping arrangement, and the power supply is arranged in a flat overlapping arrangement with the electrical fixation surface.

[0012] Furthermore, the main body shell has a plate fixing platform and a retaining post, the control plate has a plate fixing groove, the plate fixing groove is arranged in a through manner, the plate fixing platform is arranged to abut against the end of the control plate, the retaining post is embedded in the plate fixing groove, and the retaining post and the plate fixing platform clamp the control plate.

[0013] Furthermore, the main body shell is provided with a fixed electrical shell, which includes a main fixed plate and a side fixed plate. The main fixed plate and the side fixed plate are arranged perpendicularly to each other. The main fixed plate is stacked and assembled with the electrical fixed surface. The main fixed plate is used to be arranged to be laid flat with the front or back of the power supply component, and the side fixed plate is used to be arranged to be laid flat and abutting against the side of the power supply component.

[0014] Furthermore, the ranging body includes a transmitting module, a lens module, a collecting cavity, a reflecting module, and an eyepiece module. The transmitting module transmits a telescope optical path to the reflecting module. The reflecting module is used to reflect the telescope optical path multiple times and reflect it to the collecting cavity. The collecting cavity is located between the lens module and the eyepiece module, and both ends of the collecting cavity are connected to the lens module and the eyepiece module, respectively.

[0015] Furthermore, the reflection module includes an upper reflection shell, a middle reflection shell, and a lower reflection shell, which are sequentially assembled vertically. The upper reflection shell includes an upper reflector plate, which is inclined. The lower reflection shell includes a lower reflector plate, the lower part of which is assembled with the emission module. The upper part of the lower reflector plate extends inclinedly away from the reflection module. The lower reflector plate is used to reflect the telescope optical path to the upper reflector plate, the upper reflector plate is used to reflect the telescope optical path to the lens module, the lens module is used to reflect the telescope optical path to the collecting cavity, and the telescope optical path passes through the collecting cavity to the eyepiece module.

[0016] Compared with existing technologies, the rangefinder provided by this invention, which is compatible with multiple specifications of optical devices, achieves telescopic and target distance measurement through the cooperation of the rangefinder body and rangefinder components. At the same time, the assembly of rangefinder components of different sizes is achieved through the cooperation of the tail housing and the upper plate, improving the compatibility of the rangefinder. Furthermore, a single rangefinder body can be adapted to multiple rangefinder components of different sizes, and a single telescopic optical path can be adapted to different rangefinder components. Users can choose to assemble different rangefinder components according to their needs, improving the user experience and reducing user costs. Moreover, it meets a variety of rangefinder requirements and has a wider range of applications. Attached Figure Description

[0017] Figure 1 This is an exploded view of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention. Figure 2 This is a three-dimensional schematic diagram of the assembly of the ranging component and the tail housing of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention. Figure 3 This is a three-dimensional schematic diagram of the upper clamp of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention; Figure 4 This is an exploded view of the ranging body and ranging components of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention. Figure 5 This is a three-dimensional schematic diagram of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention; Figure 6 This is a three-dimensional schematic diagram of a rangefinder adaptable to multiple optical devices according to another embodiment of the present invention; Figure 7 This is a three-dimensional schematic diagram of a rangefinder adaptable to multiple optical devices according to another embodiment of the present invention; Figure 8 This is a schematic diagram of the telescope optical path of different specifications of the rangefinding components of the rangefinder that can be adapted to multiple specifications of optical devices provided by the present invention. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0019] The implementation of the present invention will be described in detail below with reference to specific embodiments.

[0020] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this invention, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0021] Reference Figure 1-8 The image shown is a preferred embodiment of the present invention.

[0022] A rangefinder adaptable to various optical devices includes a rangefinder body 1, a control board 2, a power supply 5, and multiple rangefinder components 3. The control board 2 and the power supply 5 are assembled with the rangefinder body 1, and the rangefinder components 3 are arranged with different sizes. The rangefinder body 1 includes a tail housing 11 and an upper plate 12. The upper plate 12 is arranged horizontally, and the tail housing 11 is electrically connected to the control board 2. The rangefinder components 3 include a component body 31 and a fastener plate 32. The fastener plate 32 is arranged vertically, and the lower part of the fastener plate 32 is fixedly connected to the component body 31. The fastener plate 32 is used for overlapping or separating from the upper plate 12. The end of the component body 31 forms a tail section, which is horizontally assembled with the tail housing 11 and is conductively connected.

[0023] The aforementioned rangefinder, which is compatible with multiple optical devices, achieves telescopic and target distance measurement through the cooperation of the rangefinder body 1 and the rangefinder component 3. At the same time, the rangefinder component 3 of different sizes can be assembled through the cooperation of the tail housing 11 and the upper mounting plate 12, improving the compatibility of the rangefinder. Furthermore, a single rangefinder body 1 can be adapted to multiple rangefinder components 3 of different sizes, and a single telescopic optical path can be adapted to different rangefinder components 3. Users can choose to assemble different rangefinder components 3 according to their usage needs, improving the user experience and reducing user costs. Moreover, it meets a variety of rangefinder requirements and has a wider range of applications.

[0024] The tail shell 11 includes an upper shell plate and a lower shell plate, which are arranged vertically and horizontally. The upper shell plate has an upper plate and the lower shell plate has a lower plate. The upper plate and the lower plate are respectively arranged in a protruding manner. The tail end is provided with an upper clamping member 33 and a lower clamping member 34. The upper clamping member 33 is arranged to clamp or separate from the upper shell plate, and the upper plate is used to abut against the upper clamping member 33 and restrict the upper clamping member 33 from disengaging. The lower clamping member 34 is arranged to clamp or separate from the lower shell plate, and the lower plate is used to abut against the lower clamping member 34 and restrict the upper clamping member 33 from disengaging.

[0025] In this way, the upper clamp 33 and the lower clamp 34 enhance the assembly stability of the ranging component 3 and the ranging body 1. When disassembling and replacing, the upper fixed plate 12 and the fastener plate 32 are first removed from the fixed state and made movable. Then, a pulling force is applied to the ranging component 3 until the upper clamp 33 and the lower clamp 34 are separated from the upper shell plate and the lower shell plate respectively, thereby realizing the disassembly of the ranging component 3 and the ranging body 1.

[0026] The upper clamp 33 includes two upper spring pieces, which are arranged at intervals and corresponding to each other. The inner ends of the upper spring pieces are fixed, and the outer ends of the upper spring pieces extend and are movably arranged in the direction towards the tail shell 11. The two upper spring pieces are used to clamp the upper shell plate. Under the action of the two upper spring pieces, the assembly with the upper shell plate is realized.

[0027] The upper clamp 33 includes four upper spring pieces, which are arranged in pairs and cooperate to clamp the upper shell plate, thereby enhancing the clamping force with the upper shell plate and improving the assembly stability of the ranging component 3.

[0028] The upper spring sheet includes an upper clamping plate portion and an upper guide plate portion. The upper clamping plate portion and the upper guide plate portion are arranged in a mating and integrally formed manner. Along the direction towards the tail housing 11, the upper clamping plate portions of the two upper spring sheets are arranged inclinedly in opposite directions, and the upper guide plate portions of the two upper spring sheets are arranged inclinedly in opposite directions. The upper plate has an upper plate surface, which is arranged inclined and is used to lay flat against the upper clamping plate portion.

[0029] In this way, the upper shell plate is clamped by the two upper clamping parts working together to apply clamping force. Under the action of the two upper guide pieces, the upper shell plate is guided, making it easier for the upper shell plate to be embedded between the two upper clamping parts, thus facilitating the clamping of the upper shell plate by the two upper clamping parts.

[0030] The upper clamping plate has an upper clamping plate groove, which is arranged in a through manner. The upper plate has an upper block strip, which is arranged in a protruding manner and is used to be inserted into or removed from the upper clamping plate groove. This enhances the assembly stability of the ranging component 3.

[0031] The upper strip is arranged flexibly, or the upper strip is made of silicone material, which makes it easy for the upper strip to be embedded in or detached from the upper clamping slot.

[0032] The lower clamp 34 includes two lower spring pieces, which are arranged at intervals and corresponding to each other. The inner ends of the lower spring pieces are fixed, and the outer ends of the lower spring pieces extend and are movably arranged in the direction of the tail shell 11. The two lower spring pieces are used to clamp the lower shell plate. Under the action of the two lower spring pieces, the assembly with the lower shell plate is realized.

[0033] The lower spring includes a lower clamping plate and a lower guide plate. The lower clamping plate and the lower guide plate are arranged in a mating and integrally formed manner. Along the direction towards the tail housing 11, the lower clamping plates of the two lower springs extend obliquely in opposite directions, and the lower guide plates of the two lower springs extend obliquely in opposite directions. The lower plate has a lower plate surface, which is arranged obliquely and is used to lay flat against the lower clamping plate.

[0034] In this way, the lower shell plate is clamped by the two lower clamping plates working together to apply clamping force. The two lower guide plates act as guides, making it easier for the lower shell plate to be embedded between the two lower clamping plates, thus facilitating the clamping of the lower shell plate by the two lower clamping plates.

[0035] The lower clamping plate has a lower clamping plate groove, which is arranged in a through manner. The lower plate has a lower block strip, which is arranged in a protruding manner and is used to be inserted into or removed from the lower clamping plate groove. This enhances the assembly stability of the ranging component 3.

[0036] The lower strip is arranged flexibly, or the lower strip is made of silicone material, which makes it easy for the lower strip to be inserted into or removed from the lower clamping slot.

[0037] The tail housing 11 includes a side housing plate, which is arranged longitudinally. The two ends of the side housing plate are respectively connected to the ends of the upper housing plate and the lower housing plate. The tail end is provided with a side clamp for clamping the side housing plate, thereby enhancing the assembly stability of the ranging component 3.

[0038] The upper shell plate, lower shell plate and side shell plate form the tail cavity, which is hollow. The tail cavity is connected to the wiring to facilitate the connection between the control board 2 and the ranging component 3.

[0039] The rangefinder that can be adapted to multiple optical devices includes multiple fixed housings 4. The fixed housings 4 are used to assemble with the fixed plate. Each fixed housing 4 is matched with each ranging component 3. Each fixed housing 4 is also assembled with the ranging body 1. In this way, under the action of the fixed housings 4, the assembled ranging components 3 are positioned and the offset is limited, thereby improving the assembly stability and stability of the ranging components 3.

[0040] The fixed assembly shell 4 includes a fixed plate strip 41, a fixed assembly plate 42, and multiple positioning plates 43. The fixed plate strip 41 and the fixed assembly plate 42 are stacked and fixedly arranged, and the fixed plate strip 41 and the fixed assembly plate 42 are respectively assembled with the fixed plate 32. The positioning plates 43 are arranged at intervals and corresponding to each other. The upper part of the positioning plate 43 is mated with the fixed assembly plate 42, and the lower part of the positioning plate 43 forms a positioning groove for the component body 31 to be embedded. The positioning groove is in contact with the outer surface of the component body 31.

[0041] In this way, the various positioning plates 43 provide multiple positioning along the axial direction of the ranging body 1, greatly enhancing the assembly stability and stability of the ranging component 3.

[0042] The main shell has a retaining groove 16, and a fixing strip 41 is embedded in the retaining groove 16. Through the cooperation between the retaining groove 16 and the fixing strip 41, the assembly of the ranging component 3 is guided and the offset is restricted, thereby improving the assembly accuracy and disassembly accuracy of the ranging component 3.

[0043] The ranging main body 1 includes a main shell, a control board 2 and a power supply 5 respectively assembled on the main shell, and control fixation surface 13 and power fixation surface respectively formed on both sides of the main shell. The control board 2 and control fixation surface 13 are arranged in a flat overlapping manner, and the power supply 5 and power fixation surface are arranged in a flat overlapping manner. This facilitates the assembly of the control board 2 and the power supply 5, improves the assembly stability of the control board 2 and the power supply 5, and reduces the overall size of the ranging instrument, making it easy to carry and use.

[0044] The main body shell has a plate fixing platform 14 and a retaining post 15. The control plate 2 has a plate fixing groove, which is arranged in a through manner. The plate fixing platform 14 is arranged to abut against the end of the control plate 2. The retaining post 15 is embedded in the plate fixing groove, and the retaining post 15 and the plate fixing platform 14 clamp the control plate 2. In this way, the assembly stability of the control plate 2 is enhanced by the cooperation of the plate fixing platform 14 and the retaining post 15.

[0045] At the same time, the main housing is secured by screws that penetrate the control board 2, thereby enhancing the assembly stability of the control board 2.

[0046] The main body shell is equipped with a fixed electrical shell, which includes a main fixed plate and a side fixed plate. The main fixed plate and the side fixed plate are arranged vertically butt-together. The main fixed plate is stacked and assembled with the electrical fixed surface. The main fixed plate is used to be arranged to be laid flat with the front or back of the power supply component 5, and the side fixed plate is used to be arranged to be laid flat and in contact with the side of the power supply component 5.

[0047] This increases the assembly and fixing area of ​​the power supply component 5, thereby improving the assembly stability of the power supply component 5 and effectively preventing the power supply component 5 from shifting.

[0048] The ranging main body 1 includes a transmitting module, a lens module, a collecting cavity, a reflecting module, and an eyepiece module. The transmitting module transmits the telescopic optical path to the reflecting module. The reflecting module is used to reflect the telescopic optical path multiple times and reflect it to the collecting cavity. The collecting cavity is located between the lens module and the eyepiece module, and the two ends of the collecting cavity are respectively connected to the lens module and the eyepiece module; thus realizing the presentation of the telescopic optical path, thereby realizing the use of the rangefinder.

[0049] The reflection module includes an upper reflection shell, a middle reflection shell, and a lower reflection shell, which are assembled sequentially vertically. The upper reflection shell includes an upper reflector plate, which is arranged at an angle. The lower reflection shell includes a lower reflector plate, the lower part of which is assembled with the emission module. The upper part of the lower reflector plate extends at an angle away from the reflection module. The lower reflector plate reflects the telescope optical path to the upper reflector plate, the upper reflector plate reflects the telescope optical path to the lens module, the lens module reflects the telescope optical path to the collecting cavity, and the telescope optical path passes through the collecting cavity to the eyepiece module, thus realizing the presentation of the telescope optical path and enabling the use of the rangefinder.

[0050] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A rangefinder adaptable to various optical devices, characterized in that, The system includes a ranging main body, a control board, a power supply unit, and multiple ranging components. The control board and the power supply unit are assembled with the ranging main body, and the various ranging components are arranged with different sizes. The ranging main body includes a tail housing and an upper plate. The upper plate is arranged horizontally, and the tail housing is electrically connected to the control board. Each ranging component includes a component body and a mounting plate. The mounting plate is arranged longitudinally, and its lower part is fixedly connected to the component body. The mounting plate is used for overlapping or separating with the upper plate. The end of the component body forms a tail section, which is horizontally assembled with and conductively connected to the tail housing.

2. The rangefinder adaptable to multiple optical devices as described in claim 1, characterized in that, The tail shell includes an upper shell plate and a lower shell plate, which are arranged vertically and perpendicularly. The upper shell plate has an upper plate, and the lower shell plate has a lower plate. The upper plate and the lower plate are respectively arranged in a protruding manner. The tail end is provided with an upper clamp and a lower clamp. The upper clamp is arranged to clamp or separate from the upper shell plate, and the upper plate is used to abut against the upper clamp and restrict the upper clamp from disengaging. The lower clamp is arranged to clamp or separate from the lower shell plate, and the lower plate is used to abut against the lower clamp and restrict the upper clamp from disengaging.

3. The rangefinder adaptable to multiple optical devices as described in claim 2, characterized in that, The upper clamping member includes two upper spring pieces, which are arranged at intervals and corresponding to each other. The inner ends of the upper spring pieces are fixed, and the outer ends of the upper spring pieces extend and are movably arranged in the direction of the tail shell. The two upper spring pieces are used to clamp the upper shell plate.

4. The rangefinder adaptable to multiple optical devices as described in claim 3, characterized in that, The upper spring sheet includes an upper clamping portion and an upper guide portion, which are connected and integrally formed. Along the direction towards the tail housing, the upper clamping portions of the two upper spring sheets extend obliquely in opposite directions, and the upper guide portions of the two upper spring sheets extend obliquely in opposite directions. The upper plate has an upper plate surface, which is obliquely arranged and is used to lay flat against the upper clamping portion.

5. The rangefinder adaptable to multiple optical devices as described in any one of claims 1-4, characterized in that, The rangefinder adaptable to multiple optical devices includes multiple fixed housings, which are assembled with the fixed plate. Each fixed housing is adapted to each ranging component, and each fixed housing is assembled with the ranging body. Each fixed housing includes a fixed plate strip, a fixed plate, and multiple positioning plates. The fixed plate strip and the fixed plate are stacked and fixed, and are assembled with the fixed plate. The positioning plates are spaced apart and corresponding. The upper part of the positioning plate is mated with the fixed plate, and the lower part of the positioning plate forms a positioning groove for the component body to be embedded. The positioning groove is in contact with the outer surface of the component body.

6. The rangefinder adaptable to multiple specifications of optical devices as described in any one of claims 1-4, characterized in that, The ranging body includes a main shell, the control board and the power supply are respectively assembled on the main shell, the two sides of the main shell are respectively formed with a control surface and an electrical surface, the control board and the control surface are arranged in a flat overlapping arrangement, and the power supply is arranged in a flat overlapping arrangement with the electrical surface.

7. The rangefinder adaptable to multiple optical devices as described in claim 6, characterized in that, The main body shell has a plate fixing platform and a retaining post. The control plate has a plate fixing groove, which is arranged in a through manner. The plate fixing platform is arranged to abut against the end of the control plate. The retaining post is embedded in the plate fixing groove, and the retaining post and the plate fixing platform clamp the control plate.

8. The rangefinder adaptable to multiple optical devices as described in claim 6, characterized in that, The main body shell is equipped with a fixed electrical shell, which includes a main fixed plate and a side fixed plate. The main fixed plate and the side fixed plate are arranged perpendicularly to each other. The main fixed plate is stacked and assembled with the electrical fixed surface. The main fixed plate is used to be arranged to be laid flat with the front or back of the power supply component, and the side fixed plate is used to be arranged to be laid flat and abutting against the side of the power supply component.

9. The rangefinder adaptable to multiple specifications of optical devices as described in any one of claims 1-4, characterized in that, The ranging body includes a transmitting module, a lens module, a collecting cavity, a reflecting module, and an eyepiece module. The transmitting module transmits a telescope optical path to the reflecting module. The reflecting module is used to reflect the telescope optical path multiple times and reflect it to the collecting cavity. The collecting cavity is located between the lens module and the eyepiece module, and the two ends of the collecting cavity are respectively connected to the lens module and the eyepiece module.

10. The rangefinder adaptable to multiple optical devices as described in claim 9, characterized in that, The reflection module includes an upper reflection shell, a middle reflection shell, and a lower reflection shell, which are assembled sequentially vertically. The upper reflection shell includes an upper reflector plate, which is inclined. The lower reflection shell includes a lower reflector plate, the lower part of which is assembled with the emission module. The upper part of the lower reflector plate extends inclinedly away from the reflection module. The lower reflector plate is used to reflect the telescope optical path to the upper reflector plate, the upper reflector plate is used to reflect the telescope optical path to the lens module, the lens module is used to reflect the telescope optical path to the collecting cavity, and the telescope optical path passes through the collecting cavity to the eyepiece module.

Citation Information

Patent Citations

  • High-precision long-range laser range finder

    CN219978523U