一种抗跌落红点瞄准镜
By employing a multi-layered protective structure with a hard protective layer and a buffer layer in the red dot sight, the problem of lens breakage upon drop is solved, achieving greater drop resistance and cost-effectiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU SAIYILI TECHNOLOGY CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-17
AI Technical Summary
Existing red dot sights are prone to lens breakage when the weapon is dropped, resulting in loss of aiming function.
It adopts a multi-layer protective structure, including a hard protective layer and a buffer layer. The hard protective layer covers the upper part of the optical lens, and the buffer layer is set in the cavity to buffer the impact force, disperse the force, reduce the deformation of the lens mount, and prevent the lens from breaking.
It improves the drop resistance of the red dot sight, protects the optical lenses, and reduces production costs.
Smart Images

Figure CN224517550U_ABST
Abstract
Claims
1. An anti-drop red dot sight, characterized by, include: The scope mount body includes a front end close to the aiming target and a rear end away from the aiming target, and a mounting hole penetrating the front end and the rear end. The scope mount body also forms a cavity in a direction perpendicular to the direction of the mounting hole, wherein the cavity is partially connected to the mounting hole. An optical lens is mounted in the mounting hole and located below the cavity; A rigid protective layer is disposed in the cavity to cover the upper part of the optical lens, thereby preventing the optical lens from breaking due to deformation of the upper part of the lens mount body when subjected to external impact.
2. The drop-resistant red dot optic of claim 1, wherein, It also includes a buffer layer disposed in the cavity and adjacent to the rigid protective layer, for forming a buffer when subjected to external impact forces.
3. The drop-resistant red dot sight according to claim 2, characterized in that, The buffer layer is the remaining hollow portion after the hard protective layer is set in the cavity. It is used to provide a certain deformation space when the upper part of the lens mount body is subjected to external impact force, so as to prevent the deformation of the lens mount body from causing the optical lens to break.
4. The drop-resistant red dot optic of claim 2, wherein, The buffer layer is made of soft rubber, and the remaining hollow portion of the cavity is formed after the hard protective layer is applied to the buffer layer.
5. The drop-resistant red dot optic of claim 2, wherein, The buffer layer is located above the hard protective layer and covers at least a portion of the hard protective layer.
6. The drop-resistant red dot optic of claim 1, wherein, The rigid protective layer is a metal plate.
7. The drop-resistant red dot optic of claim 1, wherein, The base of the mirror is made of metal or hard plastic.
8. The drop-resistant red dot optic of claim 1, wherein, The upper outer surface of the mirror base body is provided with at least one groove for the purpose of preventing air leakage.
9. The drop-resistant red dot optic of claim 1, wherein, It also includes a plug and a fastener for fixing the plug. The plug has a first through hole through which the fastener passes. The lens mount body has a corresponding receiving hole for receiving the fastener. The hard protective layer can be installed in the cavity from the opening of the cavity. The fastener is used to fix the plug to the lens mount body and seal the opening of the cavity.
10. The drop-resistant red dot optic of claim 9, wherein, The rigid protective layer is integrally provided with fixing fins, and the fixing fins are provided with a second through hole for the fastener to pass through. The fastener can fix the plug and the rigid protective layer together on the mirror base body.