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SINUSOIDAL OSCILLATOR: The following circuit is a sinusoidal oscillator. The band-pass filter is constructed using a GIC. a) Write the transfer function, V gic/Vout in
SINUSOIDAL OSCILLATOR: The following circuit is a sinusoidal oscillator. The band-pass filter is constructed using a GIC. a) Write the transfer function, V gic/Vout in terms of (Rg, C. and Z,) and the variable 's'. b) Choose an appropriate form for Zto produce a 2nd order Band-Pass Response. The form should be an expression containing constants with units and the variable 's'. c) Determine the gain Vout/Vbpf if the amplitude stabilizes at 4 Volts. d) Calculate the required value for H.. e) Choose values for all remaining components so that 0.=10% rad/sec and Q = 10. U. gic Vbpf Z Z: Z4 Zg Z,2,Z ZZZ4 24 12 KS2 Vout Rg ww - 1 6 KS2 Cg = 2 nF UM81 -1 Va= R, 1-VII R = 2k1, V=-9 V, 24 Vacon) = 0 V 500 SINUSOIDAL OSCILLATOR: The following circuit is a sinusoidal oscillator. The band-pass filter is constructed using a GIC. a) Write the transfer function, V gic/Vout in terms of (Rg, C. and Z,) and the variable 's'. b) Choose an appropriate form for Zto produce a 2nd order Band-Pass Response. The form should be an expression containing constants with units and the variable 's'. c) Determine the gain Vout/Vbpf if the amplitude stabilizes at 4 Volts. d) Calculate the required value for H.. e) Choose values for all remaining components so that 0.=10% rad/sec and Q = 10. U. gic Vbpf Z Z: Z4 Zg Z,2,Z ZZZ4 24 12 KS2 Vout Rg ww - 1 6 KS2 Cg = 2 nF UM81 -1 Va= R, 1-VII R = 2k1, V=-9 V, 24 Vacon) = 0 V 500
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