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Big relative aperture long-focus image space telecentric zoom lens

A technology of zoom lens and relative aperture, which is applied in the field of front objective lens and zoom lens system of spectral imager, which can solve the problems of small relative aperture of lens, uneven illumination, change of image plane size, etc., and achieve good imaging quality and high light energy The effect of utilization rate and uniform illumination

Inactive Publication Date: 2010-02-03
SUZHOU UNIV
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  • Application Information

AI Technical Summary

Problems solved by technology

The fixed-focus lens restricts the imaging spectrometer to only image the scene at a specific distance from the ground. If the scene exceeds this specific range, the position of the imaging spectrometer must be adjusted to the ground, causing great inconvenience
[0004] In addition, the zoom lenses currently on the market and in patents generally have the following disadvantages: (1) the relative aperture of the lens is small and changes during the zooming process, and the utilization rate of light energy is not high; (2) the telecentricity of the image cannot be achieved. , so that the size of the image surface changes with the movement of the image surface, and the illumination is not uniform
In the Chinese invention patent with the publication number CN1409149A, a zoom lens system is disclosed with a relative aperture of 1 / 2.8 to 1 / 4.7 and a focal length of 7.4 to 21.3 mm; another example is the Canon EF-S zoom lens with a relative aperture of 1 / 4.7 mm. 3.5 to 1 / 5.6, focal length is 18 to 200mm, none of them can meet the requirements for the use of the front objective lens of the spectral imager

Method used

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  • Big relative aperture long-focus image space telecentric zoom lens
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  • Big relative aperture long-focus image space telecentric zoom lens

Examples

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Embodiment 1

[0028] This embodiment provides a telecentric zoom lens with large relative aperture and long focal length. See attached figure 1 , figure 2 and image 3 , the system is four groups of fourteen pieces and five double-glued structures, using six kinds of Chinese glass, and adopts the mechanical compensation method to compensate the structure. In order from the object side, it includes a front fixed group with positive power, a zoom group with negative power, a compensation group with positive power, and a rear fixed group with negative power. Among them, the front fixed group and the rear fixed group are fixedly set, and the zoom group and compensation group are set to move (along the optical axis). According to this structure, the effective focal length of the zoom lens can be changed by changing the position between the zoom group and the compensation group to realize the zoom function. For example, if the zoom group moves to the object side and the compensation group mo...

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Abstract

The invention discloses a big relative aperture long-focus image space telecentric zoom lens, sequentially comprising a front fixed group, a zoom group, a compensation group and a back fixed group from the object plane side to the image plane side; the corresponding combined focus satisfies a conditional equation: 3.5<F1 / FW<6, -1.6<F2 / FW<-0.9, 1.1<F3 / FW<2, 1.3<F4 / FW<1.9, wherein FW is the focus ofthe zoom lens in wide angle end state. The invention adopts the design of big relative aperture which reaches 1:2 and keeps constant big relative aperture in zoom process to ensure high light energyutilization rate of lens; bigger zoom ratio and longer focus ensure good imaging quality in zooming process; the lens adopt the image space telecentric design, so that the size of the image plane doesnot change with the movement of the image plane and the illumination is even; and all of the glass are made in China, with low cost. The big relative aperture long-focus image space telecentric zoomlens shows a wide application prospect in the fields of remote sensing, measurement, photography and the like.

Description

technical field [0001] The present invention relates to a zoom lens system, in particular to a lens system with large relative aperture, long focal length, image space telecentricity and continuous zoom, which is especially suitable for the front objective lens of a spectrum imager, and can also be used for measurement, fields of photography. Background technique [0002] Spectral imaging technology is an organic combination of spectral technology and imaging technology. While detecting the spatial characteristics of ground objects, it can obtain the spectral characteristics of ground objects in dozens or even hundreds of bands, which greatly improves the classification and identification of ground objects. It has shown broad application prospects in many fields such as the global environment and military affairs, and has become one of the most active frontiers in the development of remote sensing technology in the 1990s. [0003] In the 21st century, with the continuous de...

Claims

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Application Information

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IPC IPC(8): G02B15/167
Inventor 沈为民陆强
Owner SUZHOU UNIV
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