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Selected Papers


[1] W. Kuhn, N. Yanduru, and A. Wyszynski,  "Q-Enhanced LC Bandpass Filters for Integrated Wireless Applications," IEEE Transactions on Microwave Theory and Techniques, Vol. 46, No. 12, pp. 2577 - 2586, December 1998.

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[2] A. Wyszynski, P. Siniscalchi, and D. Choi,  "S/N Optimized, Programmable 1-10 MHz Bandwidth 0-20 dB Gain, Precision Communication Channel for Digital Video Applications," Kluwer, Analog ICs and Signal Processing Journal, Vol. 16, No. 3, pp. 207-223, August 1998.

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[3] W. Kuhn, N. Yanduru, and A. Wyszynski,  "A High Dynamic Range, Digitally Tuned, Q-Enhanced LC Bandpass Filter," Proc. IEEE Radio Frequency Integrated Circuit Symposium, Baltimore, pp. 261- 264, June 1998.

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[4] P. Siniscalchi, A. Wyszynski, and D. Choi, "High-Precision, Programmable 1-10 MHz Bandwidth 0-20 dB Gain Communication Channel for Digital Video Applications," Proc. IEEE Custom Integrated Circuit Conference CICC’96, San Diego, May 1996.

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[5] A. Wyszynski, "High-Frequency Linear Tunable Single-Ended Voltage to Differential Current Converter," Proc. IEEE Midwest Symposium on Circuit and Systems MSCAS’95, Rio de Janeiro, pp. 896-899, August 1995.

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[6] A. Wyszynski and P. Van Halen "60 MHz Common-Mode Self-Tuned Continuous-Time Filter for Mass Storage Applications," Proc. International Solid-State Circuits Conference ISSCC’95, pp. 214-215, San Francisco 1995.

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[7] A. Wyszynski, "Low-Voltage CMOS and BiCMOS Triode Transconductors and Integrators with Gain-Enhanced Linearity and Output Impedance," IEE Electronics Letters, Vol. 30, No. 3, pp. 211-213, 1994.

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[8] A. Wyszynski and R. Schaumann, "Avoiding Common-Mode Feedback Circuitry in Continuous-Time gm-C Filters by Use of Lossy Integrators," Proc. IEEE International Symposium on Circuits and Systems ISCAS'94, pp. 269-272, London, 1994.

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[9] A. Wyszynski and R. Schaumann, "Frequency and Phase Tuning of Continuous-Time Integrated Filters Using Common-Mode Signals," Proc. IEEE International Symposium on Circuits and Systems ISCAS'94, pp. 281-284, London, 1994.

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[10] A. Wyszynski and R. Schaumann: "A Current Mode Biquadratic Amplitude Equalizer," Kluwer, Analog ICs and Signal Processing Journal, Vol. 4, No. 2, pp. 161-166, 1993.

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[11] S. Szczepanski, A. Wyszynski, and R. Schaumann: "Highly Linear Voltage-Controlled CMOS Transconductors," IEEE Transactions on Circuits and Systems Part I, CAS-40, pp. 258-262, 1993.

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[12] A. Wyszynski, R. Schaumann, S. Szczepanski, and P. Van Halen: "Design of a 2.7 GHz Linear OTA and a 250 MHz Elliptic Filter in Bipolar Transistor-Array Technology," IEEE Trans. on Circuits and Systems Part II, CAS-40, pp. 19-31, 1993.

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[13] A. Wyszynski and R. Schaumann: "Highly Linear VHF Fully Balanced CMOS OTA," Proc. IEEE International Symposium on Circuits and Systems ISCAS'93, pp. 1156-1159, Chicago, 1993.

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[14] A. Wyszynski, R. Schaumann, S. Szczepanski, and P. Van Halen: "Design of a 2.7 GHz linear OTA in Bipolar Transistor-Array Technology with Lateral PNPs," Proc. IEEE International Symposium on Circuits and Systems ISCAS'92, pp. 2844-2847, San Diego, 1992.

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[15] A. Wyszynski and R. Schaumann: "Using Multiple-Input Transconductors to Reduce the Number of Components in OTA-C Filter Design," IEE Electronic Letters, Vol. 28, No. 3, pp. 217-220, 1992.

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