DocumentCode
1178644
Title
Optimum design of linear tuning algorithms
Author
Lopresti, Philip V.
Volume
24
Issue
3
fYear
1977
fDate
3/1/1977 12:00:00 AM
Firstpage
144
Lastpage
151
Abstract
A high-performance
active filter realized as a thick or thin-film hybrid integrated circuit presents special fabrication problems. A filter of this type is so sensitive to its parameters that in a large proportion of cases, a circuit so constructed will not meet its performance specifications even if the tightest practicable tolerances are held on the circuit components. As a consequence, the filter network must be tuned after fabrication. It is not feasible to adjust circuit capacitors, hence all tuning must be accomplished by resistor adjustment, and these adjustments can only increase resistance. In this paper, a generalized tuning technique is described which makes the design of a tuning algorithm, and automated tuning, amenable to a universal computer mechanization. In addition to eliminating the analysis and software preparation required to set up a process-control system, the generalized algorithm improves the yield and speed of operation of the tuning process. The central idea of this tuning scheme is to estimate transfer function coefficient errors based on capacitor measurements and then to choose resistance values for the circuit in such a way as to minimize these errors. The operation of the algorithm is sequential, with succeeding resistance values chosen to minimize the cumulative error due to preceeding process steps.
active filter realized as a thick or thin-film hybrid integrated circuit presents special fabrication problems. A filter of this type is so sensitive to its parameters that in a large proportion of cases, a circuit so constructed will not meet its performance specifications even if the tightest practicable tolerances are held on the circuit components. As a consequence, the filter network must be tuned after fabrication. It is not feasible to adjust circuit capacitors, hence all tuning must be accomplished by resistor adjustment, and these adjustments can only increase resistance. In this paper, a generalized tuning technique is described which makes the design of a tuning algorithm, and automated tuning, amenable to a universal computer mechanization. In addition to eliminating the analysis and software preparation required to set up a process-control system, the generalized algorithm improves the yield and speed of operation of the tuning process. The central idea of this tuning scheme is to estimate transfer function coefficient errors based on capacitor measurements and then to choose resistance values for the circuit in such a way as to minimize these errors. The operation of the algorithm is sequential, with succeeding resistance values chosen to minimize the cumulative error due to preceeding process steps.Keywords
Active filters, RC; Computer-aided design; Hybrid integrated-circuit fabrication; Network tolerance analysis; Thin-film resistor fabrication; Active filters; Algorithm design and analysis; Capacitors; Circuit optimization; Fabrication; Hybrid integrated circuits; Resistors; Software algorithms; Thin film circuits; Transfer functions;
fLanguage
English
Journal_Title
Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0098-4094
Type
jour
DOI
10.1109/TCS.1977.1084313
Filename
1084313
Link To Document