Binocular laser coaxial distance measuring telescope
A telescope and laser technology, applied in the field of optics, can solve problems such as inconvenient observation for users, and achieve the effects of simple structure, convenient use, and small footprint
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Embodiment 1
[0049] like figure 1 , Figure 1a Shown, the present invention provides a kind of binocular laser coaxial ranging telescope, including the first eyepiece assembly 6 installed in the first lens barrel, the first objective lens assembly and the first light splitting / combining prism system, and installed in the second The second eyepiece assembly 6', the second objective lens assembly and the second light splitting / combining prism system in the second lens barrel;
[0050] The first light splitting / combining prism system is located between the first eyepiece assembly 6 and the first objective lens assembly;
[0051] The second light splitting / combining prism system is located between the second eyepiece assembly 6' and the second objective lens assembly;
[0052] A photodetector 9 and a liquid crystal display 10 are arranged in the first lens barrel, and a laser emitter 8 is arranged in the second lens barrel;
[0053] The light path received by the first objective lens assemb...
Embodiment 2
[0074] like figure 2 , Figure 2aAs shown, the difference between this embodiment and Embodiment 1 is that the composition of the first composite prism is different. In this embodiment, the first composite prism includes the first rectangular prism A2, the first small rectangular prism C12, the small rectangular prism D14 and equilateral prism E13, wherein the first small rectangular prism C12 has the same shape as small rectangular prism D14, the slope of the first small rectangular prism C12 and the side surface of equilateral prism E13 are close to the slope of the first rectangular prism A2, the small rectangular prism The slope of D14 is close to the other side of equilateral prism E13;
[0075] The bottom surface of the first rectangular prism A2 is attached to the internal reflection surface 103 of the first pipe prism 1, and the rectangular surface of the first small rectangular prism C12 faces the first eyepiece assembly 6. The first compound prism includes a laser ...
Embodiment 3
[0084] like image 3 , Figure 3a As shown, the difference between this embodiment and Embodiment 1 is that the composition of the first compound prism is different. In this embodiment, the first compound prism includes a first equilateral prism F16, a first isosceles prism 17 and a first Small right-angled prism C12, the side face of the first equilateral prism F16 leans against two isosceles surfaces of the first isosceles prism 17 with the slope of the first small right-angled prism C12;
[0085] The other side of the first equilateral prism F16 is attached to the internal reflection surface 103 of the first pipe prism 1, and the right-angled surface of the first small rectangular prism C12 faces the first eyepiece assembly 6, and the first compound prism includes a laser The exit surface and the display incident surface, the laser exit surface is the bottom surface of the first isosceles prism 17, the display incident surface is the bottom surface of the first isosceles p...
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