This is a non-inverting amplifier configuration with feedback resistors selected to achieve a gain of 0, 1, 2, 4, or 8, based on digital control inputs. Comparators at the output may be utilized for automatic gain selection in applications such as auto-ranging meters.
The non-inverting amplifier circuit is designed to provide variable gain through the use of feedback resistors that can be digitally controlled. The configuration typically involves an operational amplifier (op-amp) where the input signal is applied to the non-inverting terminal. The gain of the amplifier is determined by the ratio of the feedback resistors connected between the output and the inverting terminal, as well as the resistor connected to ground.
In this specific design, the feedback resistors are strategically selected to allow for discrete gain settings of 0, 1, 2, 4, or 8. This is achieved by employing a digital control mechanism, such as a microcontroller or digital potentiometer, which can switch between different resistor values to set the desired gain level. The selection of gain can be critical in applications requiring precise signal amplification, particularly in scenarios where the input signal may vary significantly in amplitude.
Additionally, the incorporation of comparators at the output of the amplifier enhances the functionality of the circuit by enabling automatic gain selection. This feature is particularly useful in auto-ranging meters, where the application needs to adapt to varying signal levels without manual intervention. The comparators can monitor the output voltage and adjust the gain accordingly, ensuring optimal performance across a wide range of input conditions.
Overall, this non-inverting amplifier configuration is a versatile solution for applications requiring adjustable gain, offering both flexibility and precision in signal processing.This is a noninverting amplifier configuration with feedback resistors chosen to produce a gain of 0, 1, 2, 4, or 8, depending on the digital control inputs. Comparators at the output could be used for automatic gain selection for auto-ranging meters, etc.
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