Learning Goal: To calculate the component values for high-Q bandpass and bandreject filters to meet frequency domain spe

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Learning Goal: To calculate the component values for high-Q bandpass and bandreject filters to meet frequency domain spe

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Learning Goal To Calculate The Component Values For High Q Bandpass And Bandreject Filters To Meet Frequency Domain Spe 1
Learning Goal To Calculate The Component Values For High Q Bandpass And Bandreject Filters To Meet Frequency Domain Spe 1 (109.95 KiB) Viewed 41 times
Learning Goal: To calculate the component values for high-Q bandpass and bandreject filters to meet frequency domain specifications. The figures show a high-Q bandpass filter (top) and a high-Q bandreject filter (bottom). mª R. с {R₂ V₂ Part A - Designing the high-Q bandpass filter By specifying R₁, R₂, and R3, design a high-Q bandpass filter based on the circuit shown that has a center frequency of fo = 5000 Hz, a quality of 7, and a passband gain of 1.8. Use C = 0.01 μF capacitors. Express your answers, separated by commas, to four significant figures in units of ohms. ► View Available Hint(s) [V] ΑΣΦ | R₁, R₂, R3=4185, 86.78,21765 Submit Previous Answers X Incorrect; Try Again; 9 attempts remaining Part B - Designing the high-Q bandreject filter Submit vec IV—| ΑΣΦ | | vec R. 61.73,0.955 By specifying R and σ, design a high-Q bandreject filter based on the circuit shown that has center frequency of wo = 7100rad/s, a bandwidth of 3 = 850rad/s, and a passband gain of 1. Use 4.2 µF capacitors. Express your answers, separated by commas, to four significant figures. ► View Available Hint(s) Previous Answers X Incorrect; Try Again; 9 attempts remaining ? ? Ω, Ω, Ω Ω
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