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Design a low pass filter with a cutoff frequency of 1 kHz +/- 100 Hz and...

Design a low pass filter with a cutoff frequency of 1 kHz +/- 100 Hz and a gain of 16.0 dB +/- 1.0 dB in the passband.

The R2 and C components of the filter control the cutoff frequency, and are inversely proportional to the cutoff frequency. So decreasing the resistance or capacitance will increase the cutoff frequency.

The R1 and Rf components determine the gain of the amplifier. Increasing the value of Rf will increase the gain. Increasing the value of R1 will decrease the gain.

After the design is complete, build the amplifier to see if it meets specifications. If not, make adjustments in components to dial in the design. The formulas that we use for cutoff frequency and gain are all subject to component tolerances. Every component used in this assignment has a tolerance. The design process requires us to calculate on paper, then verify and adjust in actual hardware.

Include a picture of your circuit, as well as a screen capture of your Bode Plot for your assignment report. Make sure you Bode plot shows a cutoff frequency between 900 Hz and 1.1 kHz, and the passband gain is between 15.0 db and 17.0 dB.

Include photo of circuit design on Prototyping Board, (NI Elvis II+) and Photo of circuit working with Bode Analyzer, along with written problem.

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