Rifle scope with zero lock
US-11248876-B2 · Feb 15, 2022 · US
US11892270B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11892270-B2 |
| Application number | US-202217741522-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 11, 2022 |
| Priority date | May 21, 2021 |
| Publication date | Feb 6, 2024 |
| Grant date | Feb 6, 2024 |
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A sight includes a main body, an erecting unit and a compensating mechanism. The compensating mechanism includes a fixing unit, a cover and an switching unit. A compensating mechanism for a sight includes a base unit, a transmission unit, an adjusting cap, a movable unit and a lock unit. The adjusting cap is located in a first position when the adjusting cap is locked by the lock unit. The adjusting cap in the first position can be rotated in a second direction or in a third direction opposite to the second direction when the lock unit is moved in a first direction to release the adjusting cap. The adjusting cap stops in a second position when the adjusting cap is rotated in the third direction so that the movable unit is propped against an end of a groove of the adjusting cap.
Opening claim text (preview).
What is claimed is: 1. A compensating mechanism for a sight, comprising: a base unit; a transmission unit carried by the base unit; an adjusting cap connecting to the transmission unit and comprising a groove wherein the groove comprises a first end and a second end; a movable unit disposed between the transmission unit and the base unit and comprising a movable element; a lock unit movably disposed onto the adjusting cap, wherein when the adjusting cap is rotated, the movable unit is axially moved with respect to the base unit so that the movable element enters or leaves the groove; wherein the adjusting cap is located in a first position when the adjusting cap is locked by the lock unit; wherein the adjusting cap in the first position can be rotated in a second direction or in a third direction opposite to the second direction when the lock unit is moved in a first direction to release the adjusting cap; wherein the first end, the movable element and the second end are sequentially arranged along the groove, when the adjusting cap in the first position is released by the lock unit; wherein the adjusting cap stops in a second position when the adjusting cap is rotated in the third direction so that the movable element is propped against the second end of the groove. 2. The compensating mechanism as claimed in claim 1 , wherein: the lock unit comprises a main body; the main body comprises a concave hole; the adjusting cap is locked in the first position when the movable element enters the concave hole. 3. The compensating mechanism as claimed in claim 1 , wherein: the transmission unit is rotated only with respect to the base unit; the movable element is moved away from the groove when the adjusting cap is rotated in the second direction. 4. The compensating mechanism as claimed in claim 1 , wherein the groove is curved. 5. The compensating mechanism as claimed in claim 2 , wherein the main body further comprises a passage communicating with the concave hole. 6. The compensating mechanism as claimed in claim 5 , wherein the lock unit releases the adjusting cap when the movable element leaves the concave hole and enters the passage, so that the adjusting cap is rotatable in the second direction or in the third direction. 7. The compensating mechanism as claimed in claim 2 , further comprising a guide pin, wherein: the main body further comprises a guide groove; the guide pin penetrates the guide groove and is fixed to an interior of the adjusting cap. 8. The compensating mechanism as claimed in claim 5 , further comprising a guide pin, wherein: the main body further comprises a guide groove; the guide pin penetrates the guide groove and is fixed to an interior of the adjusting cap; the guide pin is moved with respect to the guide groove to guide movement of the main body with respect to the adjusting cap when the main body is moved in the first direction and with respect to the adjusting cap so that the movable element leaves the concave hole and enters the passage. 9. The compensating mechanism as claimed in claim 2 , wherein the lock unit further comprises an elastic element disposed between the main body and the adjusting cap and propped against the main body and the adjusting cap. 10. The compensating mechanism as claimed in claim 9 , wherein the adjusting cap further comprises an indentation formed next to the groove, and the elastic element is propped against the indentation of the adjusting cap. 11. The compensating mechanism as claimed in claim 1 , wherein the movable unit further comprises a contact element disposed around the transmission unit, and the contact element is axially moved with respect to the base unit when the adjusting cap is rotated. 12. The compensating mechanism as claimed in claim 11 , wherein the movable element is disposed on the contact element, and the contact element and the movable element are axially moved with respect to the base unit when the adjusting cap is rotated. 13. The compensating mechanism as claimed in claim 1 , wherein the base unit comprises an upper cover, the movable element comprises a flange portion, and the movable protrudes from the upper cover and extends into the groove when the flange portion is propped against the upper cover. 14. The compensating mechanism as claimed in claim 11 , wherein the upper cover comprises a through hole, the movable element further comprises a nut portion and a threaded portion, the nut portion and the threaded portion are respectively connected to opposite sides of the flange portion, the threaded portion is connected to the contact element, and the nut portion penetrates through the through hole of the upper cover. 15. The compensating mechanism as claimed in claim 1 , further comprising an adjusting element connected to the transmission unit and extended to penetrate through the base unit, wherein the adjusting element is axially moved with respect to the base unit when the adjusting cap is rotated. 16. A sight, comprising: a main body; an objective lens unit; an ocular lens unit, wherein the objective lens unit and the ocular lens unit are disposed at both ends of the main body; an erecting unit disposed within the main body; and the compensating mechanism as claimed in claim 1 , disposed on the main body, penetrated into the main body and placed against the erecting unit.
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