Home| Contact Us| New Journals| Browse Journals| Journal Prices| For Authors|

Print ISSN:
Online ISSN:


  About JISM
  DLINE Portal Home
Home
Aims & Scope
Editorial Board
Current Issue
Next Issue
Previous Issue
Sample Issue
Upcoming Conferences
Self-archiving policy
Alert Services
Be a Reviewer
Publisher
Paper Submission
Subscription
Contact us
 
  How To Order
  Order Online
Price Information
Request for Complimentary
Print Copy
 
  For Authors
  Guidelines for Contributors
Online Submission
Call for Papers
Author Rights
 
 
RELATED JOURNALS
Journal of Digital Information Management (JDIM)
Journal of Multimedia Processing and Technologies (JMPT)
International Journal of Web Application (IJWA)

 

 
Journal of Electronic Systems
 

Managing the Noise Effect of Operational Amplifiers
Georgi Valkov and Elissaveta Gadjeva
Department of Electronics at Technical University of Sofia 8 Kl. Ohridski Blvd, Sofia 1000 Bulgaria
Abstract: In the low noise operational amplifiers, the noise is an issue. To offset the noise effects, we have developed a description Verilog which is a dynamic macro-model. We have also performed testing and found that the model is more efficient when comparing with the compatible Spice library model.
Keywords: Effectiveness, Verilog-A, Noise Macromodel, Current Feedback Operational Amplifier Managing the Noise Effect of Operational Amplifiers
DOI:https://doi.org/10.6025/jes/2022/12/4/105-110
Full_Text   PDF 1. 04 MB   Download:   112  times
References:

[1] Miller, I. & Cassagnes, T. Verilog-AMS Eases Mixed Mode Signal Simulation, technical. Proceedings of the 2000 International Conference on Modeling and Simulation of Microsystems, pp. 305–308.
[2] FitzPatrick, D. & Miller, I. (2003). Analog Behavioral Modeling with the Verilog-A Language. Kluwer Academic Publishers.
[3] www.eda.org/twiki/bin/view.cgi/VerilogAMS.
[4] w2.cadence.com/appnotes/CDN_Creating_Analog_Behavioral_Models.pdf.
[5] Frevert, R. et al. (2005). Modeling and Simulation for RF System Design. Springer: Berlin, ISBN-10 0-387-27585-1, pp. 219–246.
[6] Qin, Huabiao & Wang, F. (2006). Modeling of Operational Amplifier Based on VHDL-AMS. IEEE Publications, pp. 894–897.
[7] Coram, G.J. (2004) How to (and how not to) write a compact model in Verilog-A. Proceedings of the IEEE International Behavioral Modeling and Simulation Conference (BMAS 2004), pp. 97–106.
[8] Troyanovsky, B., O’Halloran, P., Mierzwinski, M. (2005), Digest of Papers “Analog RF model development with Verilog-A”, Radio Frequency integrated Circuits. Symposium. IEEE Publications, 12-14 June 2005, 2005, 287–290.
[9] McAndrew, C., Coram, G., Blaum, A. & Pilloud, O. (2005) Correlated noise modeling and simulation. In: Proceedings of the Tech. Workshop Compact Modeling, Anaheim, CA, pp. 40–45.
[10] Verilog-AMS Language Reference Manual, version 2.3.1, Accellera (2009).
[11] Dolphin Integration SMASH overview. www.dolphin.fr/medal/smash/smash_overview.php.
[12] “Development of an Extensive SPICE Macromodel for Current- Feedback Amplifiers”, Texas Instruments, May (2004). www.ti.com/lit/an/snoa247a/snoa247a.pdf.


Home | Aim & Scope | Editorial Board | Author Guidelines | Publisher | Subscription | Previous Issue | Contact Us |Upcoming Conferences|Sample Issues|Library Recommendation Form|

 

Copyright © 2011 dline.info