DocumentCode
834346
Title
Superconducting high-order cascaded lowpass sigma-delta modulator
Author
Hirano, Satoru ; Yoshida, Akira ; Hasuo, Shinya ; Tanabe, Keiichi
Author_Institution
Supercond. Res. laboratory, Int. Supercond. Technol. Center, Tokyo, Japan
Volume
15
Issue
2
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
292
Lastpage
295
Abstract
We propose a superconducting high-order cascaded lowpass sigma-delta modulator. The second-order cascaded modulator consists of two single-loop modulators. A part of an integrating inductor of the first-stage modulator forms a primary coil of a transformer. The secondary coil of the transformer forms an integrating inductor of the second-stage modulator. Output of the first integrator is thus magnetically fed to the second integrator through the transformer. Digital outputs from both modulators are input to a delay and a digital differentiator. The quantization noise of the first-stage modulator is canceled by choosing proper transfer functions for the delay and differentiator. This cascaded type modulator eliminates the difficulty of designing a feedback driver in a double-loop type modulator. Analytical calculation of the transfer function showed that the signal-to-noise ratio is comparable to an ideal second-order lowpass sigma-delta modulator at a given sampling frequency.
Keywords
cascade networks; sigma-delta modulation; superconducting coils; superconducting integrated circuits; transfer functions; Josephson devices; analog to digital converter; delay differentiator; digital differentiator; double-loop type modulator; feedback driver; first integrator; first-stage modulator; integrating inductor; quantization noise; rapid single flux quantum circuit; second integrator; second-order cascaded modulator; second-stage modulator; secondary coil; signal to noise ratio; single-loop modulator; superconducting high-order cascaded lowpass sigma-delta modulator; transfer functions; Delay; Delta-sigma modulation; Digital modulation; Inductors; Magnetic noise; Noise cancellation; Quantization; Superconducting coils; Superconducting magnets; Transfer functions; Analog-to-digital converter; Josephson devices; rapid single flux quantum circuit; sigma-delta modulator;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2005.849799
Filename
1439633
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