The length of the mounting rail on top of a firearm can impose a limit on the number and types of devices, for example a night vision device and scope that can be mounted on the rail. To permit rail space for the mounting of other devices, prism scopes are typically used, as they are substantially shorter than traditional rifle scopes. A prism scope typically includes a pivot tube enclosing a pair of prisms, the first (in sequence of light travel) is termed a roof prism and the second of which is termed a delta prism, spaced apart by about 0.5 mm. A prism scope typically does not include a zoom mechanism to permit variable magnification but is set at a fixed level of magnification. Although currently available prism scopes yield rail space, relative to traditional scopes, prism scopes that are shorter still would be desirable.
The following embodiments and aspects thereof are described and illustrated in conjunction with systems, tools, and methods which are meant to be exemplary and illustrative, not limiting in scope. In various embodiments, one or more of the above-described problems have been reduced or eliminated, while other embodiments are directed to other improvements.
In a first separate aspect, the present invention may take the form of an improvement to an optical assembly that is adapted to accept light from a field of view in front of the optical assembly and create a first inverted image on a first image plane. Further the assembly includes an objective lens, a first prism adapted to receive light from the objective lens and a second prism, adapted to receive light from the first prism and emit light. The improvement is the addition of a negative lens interposed between the first prism and the second prism, thereby reducing the total optical pathway of the optical assembly, relative to a device performing the same optical function and lacking the negative lens.
In a second separate aspect, the present invention may take the form of an optical assembly having a frame, including a spacer defining an aperture and a first prism, seated on the spacer. Further, a second prism is seated on the spacer and separated from the first prism by the spacer. Finally, a negative lens seated in the aperture.
Various embodiments of the invention are disclosed in the following detailed description and accompanying drawings.
The following is a detailed description of exemplary embodiments to illustrate the principles of the invention. The embodiments are provided to illustrate aspects of the invention, but the invention is not limited to any embodiment. The scope of the invention encompasses numerous alternatives, modifications and equivalent; it is limited only by the claims.
Numerous specific details are set forth in the following description in order to provide a thorough understanding of the invention. However, the invention may be practiced according to the claims without some or all of these specific details. For the purpose of clarity, technical material that is known in the technical fields related to the invention has not been described in detail so that the invention is not unnecessarily obscured.
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The scope described herein is of particular utility when it is desired to pair a scope with a night vision device on the railing of a firearm, particularly for a handgun, where rail space is quite limited. For a 3x scope, a length of 76.35 mm is achieved, representing a saving in length of a little less than an inch, compared with existing comparable prism scopes.
The disclosed embodiments are illustrative, not restrictive. While specific configurations of the scope have been described, it is understood that the present invention can be applied to a wide variety of optical technology. There are many alternative ways of implementing the invention.
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