Journal of Jilin University (Information Science Edition) ›› 2024, Vol. 42 ›› Issue (2): 232-241.

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Control Drive System of Optical Crossbar Chip Based on DAC Array

OUYANG Aoqi 1 , Lv Xinyu 1 , XU Xinru 1 , ZENG Guoyan 1 , YIN Yuexin 1 , LI Fengjun 2 , ZHANG Daming 1 , GAO Fengli 1,2   

  1. 1. College of Electronic Science and Engineering, Jilin University, Changchun 130012, China; 2. College of Medical Engineering and Technology, Xinjiang Medical University, Urumqi 830054, China
  • Received:2023-03-07 Online:2024-04-10 Published:2024-04-12

Abstract:

The optical crossbar chip is the core device used to realize optical routing in the field of optical communication. A control and driver system is designed based on a multi-channel DAC ( Digital to Analog Converter) array to achieve optical routing through the optical crossbar chip. The system consists of a control system module, a multi-channel drive circuit module, and a host computer control module. This system has several advantages, including simple adjustment, bipolar output, more output channels, and higher power accuracy. It solves the problems of the current driving circuit, such as complex operation, single power polarity, fewer output channels, and poor accuracy. The host computer control module can control the driving circuit to apply the control voltage and receive the optical power signal collected from the data acquisition device as the feedback signal of the control driving system. By analyzing the relationship between the control voltage and the received optical power, the best control driving voltage of the optical crossbar chip can be obtained. The system test results show that the system can provide high-precision bipolar driving voltage to effectively drive the optical crossbar chip and can calibrate the control voltage of the optical switch in a short time, fully meeting the requirements of the driving voltage in the active optical crossbar chip control. We believe that this system could be useful for optical crossbar chip control.

Key words: optical crossbar chip, digital to analog converter (DAC) array, bipolar voltage, circuit system; feedback contro

CLC Number: 

  • TN914