Four-quadrant detector signal conditioning circuit for displacement feedback system

A four-quadrant detector and signal conditioning circuit technology, which is applied in the field of photoelectric detection, can solve problems such as difficult to achieve high bandwidth, difficult to weak AC signal, complex circuit structure, etc., and achieve high bandwidth, simple circuit structure, and simplified circuit structure.

Active Publication Date: 2021-09-21
ZHEJIANG LAB
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Problems solved by technology

[0010] The purpose of the present invention is to provide a four-quadrant detector signal conditioning circuit for displacement feedback system, which is used to solve the problem that the existing technology is difficult to precisely extract the weak AC signal in the photocurrent, and it needs to adopt a multi-stage amplification structure, and the circuit structure is complicated. It is easy to introduce circuit noise, and it is difficult to achieve high bandwidth under high gain

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  • Four-quadrant detector signal conditioning circuit for displacement feedback system
  • Four-quadrant detector signal conditioning circuit for displacement feedback system
  • Four-quadrant detector signal conditioning circuit for displacement feedback system

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Embodiment Construction

[0028] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments, but the protection scope of the present invention is not limited thereby.

[0029]A signal conditioning circuit for a four-quadrant detector used in a displacement feedback system provided by the present invention includes a four-quadrant detector and a current blocking module, a transimpedance amplification module and an analog operation module sequentially connected to the four-quadrant detector. The four-quadrant detector converts the laser signal into a current signal, and extracts the AC component containing displacement information in the current signal through the current blocking module; the transimpedance amplification module is connected to the output signal of the current blocking module to convert the current signal into a voltage signal and output after amplification; the analog operation module is connected to the voltage signal outp...

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Abstract

The invention discloses a four-quadrant detector signal conditioning circuit for a displacement feedback system. The four-quadrant detector signal conditioning circuit comprises a four-quadrant detector, a current blocking module, a transimpedance amplification module and an analog operation module. The four-quadrant detector converts a laser signal into a current signal, and the current blocking module extracts an alternating current component containing displacement information in the current signal; the transimpedance amplification module accesses an output signal of the current blocking module, converts the output signal into a voltage signal, amplifies the voltage signal and outputs the amplified voltage signal; and the analog operation module accesses the voltage signal output by the transimpedance amplification module to carry out analog operation and low-pass filtering so as to solve the three-dimensional dynamic displacement information of a target. The four-quadrant detector signal conditioning circuit can realize high-precision three-dimensional dynamic displacement measurement, is suitable for construction of the displacement feedback system, and has the advantages of high gain, high bandwidth, simple circuit structure and low noise.

Description

technical field [0001] The invention relates to the field of photoelectric detection, in particular to a four-quadrant detector signal conditioning circuit used in a displacement feedback system. Background technique [0002] The working principle of the four-quadrant detector is as follows: the four-quadrant detector is composed of four identical photodetectors arranged in four quadrants. Generally, the laser beam irradiated on the photosensitive surface of the four-quadrant detector uses a circular spot and the energy distribution is uniform. When the beam is irradiated on the surface of the four-quadrant detector, if the center of the beam is located at the center of the four-quadrant detector, the light power received by each quadrant is the same , output equal photocurrent; if the center of the beam deviates from the center of the four-quadrant detector, the received light energy will also change due to the different spot areas on the four quadrants, resulting in differ...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03F1/30H03F1/26H03F1/42H03F3/04
CPCH03F1/30H03F1/26H03F1/42H03F3/04
Inventor 王颖颖高晓文朱绍冲许世东陈杏藩胡慧珠
Owner ZHEJIANG LAB
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