Optical Sight with a Device for Indicating a Turn of a Rectifier and with a Zero Stop Function
20180347945 ยท 2018-12-06
Inventors
Cpc classification
F41G1/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41G1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41G1/545
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F41G1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41G1/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to an optical sight with a device for indicating a turn of a rectifier and with a zero stop function, which comprises a longitudinal body (1), in which are mounted elements of the sight, which are coupled to at least one mechanism of the rectifier (2), which comprises a control element (20) to be used by the sight user for manual control, whereby the rectifier (2) is provided with a turn indicator (21) of the rectifier (2), which protrudes from the upper surface (200) of the rectifier (2) and which is coupled to a mechanism of turn identification of the rectifier (2). The indicator (21) comprises a longitudinal identification protrusion (210), which is by its length (L) located in a direction along the upper surface (200) of the rectifier (2) and which is rotatable about the axis OI, which is perpendicular to the length (L) of the longitudinal identification protrusion (210) and at the same time is parallel to the axis (OP) of rotation of the control element (20) of the rectifier (2), whereby the longitudinal identification protrusion (210) is rotatable about the axis OI between its basic position and its turned position, the longitudinal identification protrusion (210) being associated with a coding means (211), which is mounted on the upper surface (200) of the rectifier (2) and is located above the upper surface of the longitudinal identification protrusion (210).
Claims
1. An optical sight with a device for indicating a turn of a rectifier and with a zero stop function, which comprises a longitudinal body (1) in which are mounted elements of the sight, which are coupled to at least one mechanism of the rectifier (2), which comprises a rotatable control element (20) to be used by the sight user for manual control, whereby the rectifier (2) is provided with an indicator (21) of a turn of the rectifier (2), which protrudes from the upper surface (200) of the rectifier (2) and which is coupled to a mechanism identifying a turn of the rectifier (2), characterized in that the indicator (21) comprises a longitudinal identification protrusion (210), which is located by its length (L) in the direction along the upper surface (200) of the rectifier (2) and which is rotatable about the axis OI, which is perpendicular to the length (L) of the longitudinal identification protrusion (210) and at the same time is parallel to the axis (OP) of rotation of the control element (20) of the rectifier (2), whereby the longitudinal identification protrusion (210) is rotatable about the axis OI between its basic position and its slightly turned position, whereby the longitudinal identification protrusion (210) is associated with a coding means (211), which is mounted on the upper surface (200) of the rectifier (2) and is located above the upper surface of the longitudinal identification protrusion (210).
2-10. (canceled)
Description
DESCRIPTION OF DRAWINGS
[0011] The invention is schematically represented in the drawings, wherein
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EXAMPLES OF EMBODIMENT
[0024] The invention will be described with reference to an exemplary embodiment of an optical sight with a device for indicating a turn of a rectifier with a built-in zero stop function, the optical sight comprising a longitudinal body 1, in which individual unillustrated elements of the sight are mounted.
[0025] The elements of the sight which can be set by the user when using the sight are coupled to mechanisms of rectifiers 2, which are mounted on a body 1. The rectifiers 2 comprise rotatable control elements 20, which are adapted to be used by the sight user for manual control.
[0026] At least one of the rectifiers 2 is provided with an indicator 21 of a turn of the rectifier 2, which protrudes from the upper surface 200 of the respective rectifier 2. The upper surface 200 of the respective rectifier 2 is either a part of the control element 20, turning together with it, or the upper surface 200 of the respective rectifier 2 is independent of the control element 20 and during the rotation of the control element 20 the upper surface 200 does not move.
[0027] The indicator 21 comprises a longitudinal identification protrusion 210, located by its length L in the direction along the upper surface 200 of the rectifier 2. The longitudinal identification protrusion 210 has a width S. The longitudinal identification protrusion 210 is rotatable about the axis OI, which is perpendicular to the length L of the longitudinal identification protrusion 210 and at the same time parallel to the axis OP of rotation of the control element 20 of the rectifier 2. For this rotatable movement, the longitudinal identification protrusion 210 is coupled to a mechanism for identifying the rectifier 2 turn, which will be described in more detail hereinafter. The longitudinal identification protrusion 210 is rotatable about the axis OI between its basic position, see
[0028] The above-mentioned coding means 211 of the longitudinal identification protrusion 210 is fixedly mounted on the upper surface 200 of the rectifier 2, whereby in the illustrated example of embodiment it is formed by at least one longitudinal strip. The coding means 211 is located at a level above the upper surface of the longitudinal identification protrusion 210, whereby in one turned position of the longitudinal identification protrusion 210 the coding means 211 is, for example, situated in the direction of the length L of the longitudinal identification protrusion 210, which it practically overlaps in the illustrated example of embodimentsee
[0029] The coding means 211 is, for example, formed by a shaped strip of a suitable material which by its bottom surface follows the shape of the upper surface of the longitudinal identification protrusion 210. Alternatively, the width of the coding means 211, or, more specifically, of the strip by which it is formed, corresponds to the width S of the longitudinal identification protrusion 210, SO that it would be possible to identify reliablyvisually, but also tactilelythe mutual position of the longitudinal identification protrusion 210 and the coding means 211 and in this manner to determine accurately in which turn the rectifier 2 currently is. For easier visual control, the longitudinal identification protrusion 210 in the unillustrated example of embodiment is distinguished by its color from the coding means 211 and, if appropriate, also from the other elements of the rectifier 2.
[0030] The above-mentioned mechanism for identifying a turn of the rectifier 2, which ensures respective rotation of the longitudinal identification protrusion 210 depending on the current turn of the control element 20 of the rectifier 2, comprises a variation of a Maltese mechanism with a Maltese cross 3, whose rotatable motion, which is transferred onto the longitudinal identification protrusion 210, is evoked by a drive pin 4, and which is carried by the control element 20 of the rectifier 2.
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[0032] The function of the mechanism is as follows.
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[0034] At top dead center is also employed the zero stop function of the control element 20 of the rectifier 2, which is in the illustrated exemplary embodiment achieved by the mechanism described above. The zero stop function of the control element 20 of the rectifier 2 is based on the fact that a fixed starting point of the gun when zeroing the weapon is created, which allows the shooter to return the control 20 of the rectifier 2 always to the same initial (zero) position. The zero stop position must be set after the rectification and firing the weapon. A change in the setting of the zero stop position is in the solution according to the invention implemented by means of at least one locking bolt 8, see
[0035] In an unillustrated example of embodiment, the modified Maltese mechanism is provided with a plurality of grooves to accommodate the drive pin 4 the grooves being directed to each other, which enables to display a greater number of the turns of the rectifier 2 than the basic 2 turns, for which purpose is adapted the shape and design of the longitudinal identification protrusion 210 and the coding means 211, especially due to the fact that the longitudinal identification protrusion 210 must assume a greater number of positions slightly turned relative to the coding means 211 than the basic 2 positions described herein, and, moreover, it is essential that the greater number of the mutual positions of the longitudinal identification protrusion 210 and of the coding means 211 are reliably recognized by the user both visually and tactilely in conditions of reduced visibility or even in complete darkness.