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      Immittance 함수 확장에 의한 고차능동 RC 회로망 = High-Order Active RC Networks by Expanding the Immittance Function

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      https://www.riss.kr/link?id=A2079713

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      다국어 초록 (Multilingual Abstract)

      In active RC networks, GIC inductor and FDNR is realized as an immittance elements. Using these elements, a new networks design method with high-order elements can be considered.
      In this paper, the fundamental circuit is designed as unilateral circuits. Immittance function of arbitrary order is realized by expanding the fundamental circuit, and is implemented by active RC networks. Inverse L type circuit using this RC circuit is considered. The network design method in this paper is relatively easy and parameter of circuit is calculated simply. 5th order lowpass filter using this active RC networks is implemented and what its operation characteristic is approximately same that of theory is proved through experiment, and its dynamic range is studied.

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      In active RC networks, GIC inductor and FDNR is realized as an immittance elements. Using these elements, a new networks design method with high-order elements can be considered. In this paper, the fundamental circuit is designed as unilateral circu...

      In active RC networks, GIC inductor and FDNR is realized as an immittance elements. Using these elements, a new networks design method with high-order elements can be considered.
      In this paper, the fundamental circuit is designed as unilateral circuits. Immittance function of arbitrary order is realized by expanding the fundamental circuit, and is implemented by active RC networks. Inverse L type circuit using this RC circuit is considered. The network design method in this paper is relatively easy and parameter of circuit is calculated simply. 5th order lowpass filter using this active RC networks is implemented and what its operation characteristic is approximately same that of theory is proved through experiment, and its dynamic range is studied.

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      목차 (Table of Contents)

      • Ⅰ. 서 론
      • Ⅱ. 본 론
      • 1. 기본회로와 구성방법
      • 2. 응용회로
      • 3. 유리전달함수의 실현
      • Ⅰ. 서 론
      • Ⅱ. 본 론
      • 1. 기본회로와 구성방법
      • 2. 응용회로
      • 3. 유리전달함수의 실현
      • 4. 실 험
      • Ⅲ. 결 론
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