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Positive and inverted integrated microphotonics system

An inverted microscope and microscope system technology, applied in optics, microscopes, optical components, etc., can solve the problems of undetectable long-distance transmission of optical signals, low magnification, and limited magnification, and achieve both high resolution and large field of view Effect

Active Publication Date: 2017-11-24
INST OF CHEM CHINESE ACAD OF SCI
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Problems solved by technology

In order to observe a larger range in the field of view of the microscope, only an objective lens with a lower magnification can be selected; however, the low magnification objective lens has limited magnification of the sample to be tested, and cannot obtain fine information of the sample
However, the acquisition of high resolution can only observe a small range
Therefore, large field of view and high resolution are a pair of contradictions, and it is difficult to balance the two at the same time
[0005] 2) Long-distance transmission of optical signals cannot be detected

Method used

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  • Positive and inverted integrated microphotonics system
  • Positive and inverted integrated microphotonics system
  • Positive and inverted integrated microphotonics system

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Embodiment Construction

[0036] The present invention is described in detail by the following embodiments and drawings. However, those skilled in the art understand that the present invention is not limited thereto, and any improvements and changes made on the basis of the present invention are within the protection scope of the present invention.

[0037] As mentioned above, the present invention discloses a forward-inverted integrated microphotonics imaging system, which includes an inverted microscope and an upright microscope system, the upright microscope system is arranged above the inverted microscope, and the upright microscope system includes a three-dimensional An adjustment mechanism and an upright microscope fixed on the three-dimensional adjustment mechanism. Through the design of a special three-dimensional adjustment mechanism, the present invention realizes the organic combination of the upright microscope system and the inverted microscope system, so that the system has two working mo...

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Abstract

The invention discloses an upright microscope and inverted microscope integrated photonic system and application with the two working modes of being coaxial and non-coaxial. The optical imaging technology is adopted, an upright microscope system is designed, machined and installed above the inversion microscope so that the upright portion can move up and down, left and right and back and forth. An upper objective lens and a lower objective lens can have the coaxial or non-coaxial working mode, so that the advantages of high resolution and large view can be enjoyed at the same time, long-distance transmission signals can be detected, and defects of an existing optical microscope system are overcome.

Description

technical field [0001] The invention relates to the field of optical imaging, in particular to a method, device and system for designing and processing an upright microscope on an inverted microscope. Background technique [0002] Micro-nano technology is a high-tech field that has developed rapidly in recent years. Developed countries such as the United States, Japan, and Europe, as well as my country, have included micro-nano technology as a priority frontier technology field in the national science and technology development strategy in the 21st century. Microscopy technology is a very important research and observation method in the micro-nano field. It uses different imaging principles to magnify and image tiny objects that cannot be distinguished by the human eye, so that people can extract information about microstructures. According to different imaging principles, microscopes include optical microscopes, electron microscopes, scanning probe microscopes, etc. Among ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02B21/26G02B21/00
CPCG02B21/0088G02B21/26
Inventor 赵永生闫永丽
Owner INST OF CHEM CHINESE ACAD OF SCI
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