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

Print ISSN:
Online ISSN:


  About JIO
  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)

 

 
Progress in Systems and Telecommunication Engineering
 

Bidirectional Converter based on Ramp Conversion
Svilen Stoyanov, Desislava Mihaylova
Technological College of Dobrich at Technical University of Varna, 1 Studentska Str, Varna 9010 Bulgaria
Abstract: We have introduced a method of bidirectional converter with frequency deviation. It has low power output and low power consumption which work on ramp conversion. Besides, we have also developed a mathematical model of the convertor. While we tested in real life we found that the model is designed for measuring forces and torques in different technological processes. The experimental outcome is given extensively and summarized.
Keywords: Low Power Supply, Measurement, Integrating Converter, Strain Gauge Bridge Bidirectional Converter based on Ramp Conversion
DOI:
Full_Text   PDF 2.05 MB   Download:   199  times
References:

[1] Stoyanov, S. (2016). Modeling Integrating Strain Gauges Measuring Converter whit Instrumental Amplifier, MHK’16, Proceedings of TU Ruse, vol. 55, book 3.1, p.14-18, Ruse, Bulgaria.
[2] Stoyanov, S. (2016). Research Methods of Enhancing the Metrological Parameters and Characteristics of Bidirectional Frequency Strain Gauges Converter, EF 2015, Proceedings of TU Sofia, 66 (1) 305-314, Sofia, Bulgaria.
[3] Gigov, H. (2013). Measuring Electronics, Technical University Varna, Bulgaria.
[4] Kaliyugavaradan, S. (2013). A Linear Resistance-To-Time Converter with High Resolution, IEEE Transaction on Instrumentation and Measurement, vol. 62, p. 151-153, Madras, India.
[5] Mohan, M., Kumar, J. (2009). Direct Digital Converter for a Single Active Element Resistive Sensor, I2MTC 2009 Conference, p. 28-831, Singapore.
[6] Vasilev, V., Gromkov, N. (2009). Frequency Converter of the Signal Strain Gauges Bridge Disbalance with a Reduced Temperature Error, patent RU 2395060/2009, Russian Federation.
[7] Forehand, G. (1994). Temperature to Frequency Converter, United States Patent, 5277495, 11.01.1994.
[8] http://www.analog.com/data-sheets/AD8055_8056.pdf.
[9] http://www.ti.com/lit/ds/symlink/opa134.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