مرکز منطقه ای اطلاع رساني علوم و فناوري - A 90-  10-Gb/s Optical Receiver Analog Front-End in a 0.18-
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-  
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-  
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-  
  10-Gb/s Optical Receiver Analog Front-End in a 0.18-
  10-Gb/s Optical Receiver Analog Front-End in a 0.18- , including a transimpedance amplifier (TIA), an automatic gain control circuit, and a postamplifier (PA), is fabricated using a 0.18-mum CMOS technology. In contrast with a conventional limiting amplifier architecture, the PA is consisted of a voltage amplifier followed by a slicer. By means of the TIA and the PA codesign, the receiver front-end provides a -3-dB bandwidth of 7.86 GHz and a gain bandwidth product (GBW) of 248.5 THz-Omega. The tiny photocurrent received by the AFE is amplified to a differential voltage swing of 900 mV<sub>pp</sub> when driving 50-Omega output loads. The measured input sensitivity of the optical receiver is -13 dBm at a bit-error rate of 10<sup>-12</sup> with a 2<sup>31</sup>-1 pseudorandom test pattern. The optical receiver AFE dissipates a total power of 199 mW from a 1.8-V supply, among which 35 mW is consumed by the output buffer. The chip size is 1300 mumtimes1796 mum</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Keywords : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>CMOS integrated circuits; amplifiers; automatic gain control; error statistics; optical receivers; 0.18 micron; 1.8 V; 10 Gbit/s; 1300 micron; 1796 micron; 199 mW; 35 mW; 50 ohm; 7.86 GHz; CMOS technology; automatic gain control; bit-error rate; optical receiver analog front-end; pseudorandom test pattern; transimpedance amplifier; voltage amplifier; Bandwidth; Bit error rate; CMOS analog integrated circuits; CMOS technology; Gain control; Optical amplifiers; Optical receivers; Photoconductivity; Semiconductor optical amplifiers; Voltage; Optical receiver; postamplifier (PA); transformer; transimpedance amplifier (TIA);</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>fLanguage : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>English</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Journal_Title : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Publisher : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>ieee</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>ISSN : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>1063-8210</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Type : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>jour</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>DOI : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>10.1109/TVLSI.2007.893625</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Filename : </div><div class='valueDiv leftDirection leftAlign col-xs-8 col-sm-10 fullRecValueEnglish'>4154778</div>
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            <div class='leftDiv labelDiv col-xs-4 col-sm-2 fullRecLabelEnglish'>Link To Document : </div><div class='valueDiv leftDirection leftAlign fullRecValueEnglish col-xs-8 col-sm-10'><a href='https://search.ricest.ac.ir/dl/search/defaultta.aspx?DTC=49&DC=774200' target='_blank'>https://search.ricest.ac.ir/dl/search/defaultta.aspx?DTC=49&DC=774200</a></div>
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