- Startpagina tijdschrift
- Volume 85 - Année 2016
- Actes de colloques
- Special edition
- An Improved Methodology for Sample-Time Calibration in Time-Interleaved Analog-to-Digital Data Converters
    sinds 05 februari 2011 :
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    Weergave(s): 438 (2 ULiège)
Download(s): 199 (0 ULiège)
                   Nazari Ali, Jalali-Farahani Bahar & Barnaby Hugh         
        
                                                                        
        An Improved Methodology for Sample-Time Calibration in Time-Interleaved Analog-to-Digital Data Converters
              (Volume 85 - Année 2016 — Actes de colloques — Special edition)
                    
                          
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Version PDF originaleAbstract
A mixed-signal scheme is presented for the sample-time error calibration in time-interleaved analog-to-digital converters (TIADC). Interchannel equalization is used to remove the sample-time error mismatch between channels using an extra channel. Simulation results show that the proposed technique is able to improve the SNDR for a 12-bit TIADC system by 29 dB at 37% of the Nyquist rate frequency.
  Keywords : mixed-signal calibration, pipeline A/D converter, time-Interleaved ADC
                                          Om dit artikel te citeren:
                Nazari Ali, Jalali-Farahani Bahar & Barnaby Hugh, «An Improved Methodology for Sample-Time Calibration in Time-Interleaved Analog-to-Digital Data Converters», Bulletin de la Société Royale des Sciences de Liège [En ligne],                Volume 85 - Année 2016,                Actes de colloques,                Special edition,      238 - 243  URL : http://popups.ulg.be/0037-9565/index.php?id=5306.             
             
          Over : Nazari Ali
School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ USA
 
          Over : Jalali-Farahani Bahar
Bell Laboratories Inc, New Providence, PA USA
 
          Over : Barnaby Hugh
School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ USA
                                    
 
     
   
     
    