This title deals with the design and analysis of log-domain filter circuits. It describes synthesis methods for developing bipolar or BiCMOS filter circuits with cut-off frequencies ranging from the low kilohertz range to several hundred megahertz. Numerous examples provide measured experimental data from IC prototypes.
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From the foreword: `The bipolar transistor has a remarkable characteristic that makes it unique as a circuit design element; it displays an exponential relationship between collector current and base-to-emitter voltage that is highly accurate over an extremely wide range of currents. This conformance to a mathematical law opens up numerous possibilities for analog signal processing. Log filters represent one of the most interesting applications of this exponential relationship.' Robert Adams, Analog Devices
From the foreword:
`The bipolar transistor has a remarkable characteristic that makes it unique as a circuit design element; it displays an exponential relationship between collector current and base-to-emitter voltage that is highly accurate over an extremely wide range of currents. This conformance to a mathematical law opens up numerous possibilities for analog signal processing. Log filters represent one of the most interesting applications of this exponential relationship.'
Robert Adams, Analog Devices
`The bipolar transistor has a remarkable characteristic that makes it unique as a circuit design element; it displays an exponential relationship between collector current and base-to-emitter voltage that is highly accurate over an extremely wide range of currents. This conformance to a mathematical law opens up numerous possibilities for analog signal processing. Log filters represent one of the most interesting applications of this exponential relationship.'
Robert Adams, Analog Devices