Chin. J. Semicond. > 2007, Volume 28 > Issue 6 > 951-957

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Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver

Yu Changliang, Mao Luhong, Zhu Haobo, Song Ruiliang, Chen Mingyi, Wang Qian and Wang Rui

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Abstract: A novel method for enhancing the sensitivity and speed of CMOS optoelectronic integrated receivers called pre-equalization,which compensates the transferred signal at the input port of a preamplifier,is put forward.Based on 0.35μm CMOS technology,three types of pre-equalized optoelectronic integrated receivers are designed by parallel resonant loop peaking technique,third-order ladder network peaking technique,and high-pass filter peaking technique,respectively,where a fingered dual-photodiode is applied with a 40μm×40μm area,a 1.1GHz 3dB bandwidth,and a 0.95pF junction capacitance.The simulation results indicate that the sensitivity and speed of a receiver can be enhanced effectively by adding a third-order ladder network pre-equalization circuit,which achieves a -14dBm sensitivity and a 2GHz 3dB bandwidth with a bit error rate of 1e-12.

Key words: pre-equalizationCMOSoptoelectronic integrated receiverpeaking technique

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    Received: 18 August 2015 Revised: 23 January 2007 Online: Published: 01 June 2007

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      Yu Changliang, Mao Luhong, Zhu Haobo, Song Ruiliang, Chen Mingyi, Wang Qian, Wang Rui. Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver[J]. Journal of Semiconductors, 2007, In Press. Yu C L, Mao L H, Zhu H B, Song R L, Chen M Y, Wang Q, Wang R. Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver[J]. Chin. J. Semicond., 2007, 28(6): 951.Export: BibTex EndNote
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      Yu Changliang, Mao Luhong, Zhu Haobo, Song Ruiliang, Chen Mingyi, Wang Qian, Wang Rui. Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver[J]. Journal of Semiconductors, 2007, In Press.

      Yu C L, Mao L H, Zhu H B, Song R L, Chen M Y, Wang Q, Wang R. Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver[J]. Chin. J. Semicond., 2007, 28(6): 951.
      Export: BibTex EndNote

      Concept and Simulation of a Novel Pre-Equalized CMOS Optoelectronic Integrated Receiver

      • Received Date: 2015-08-18
      • Accepted Date: 2006-12-26
      • Revised Date: 2007-01-23
      • Published Date: 2007-05-30

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