YOU ARE DOWNLOADING DOCUMENT

Please tick the box to continue:

Transcript
Page 1: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Op-Amp Based Band Pass Filter

Page 2: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)
Page 3: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Equivalent Circuit @ DC

(DC feedback)

Page 4: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Equivalent Circuit @ ω=ωo

Page 5: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Circuit Analysis

(Solve for Vout/Vin)

Page 6: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Circuit Analysis

Page 7: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Second Order Bandpass Filter

Page 8: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Bandwidth of Second Order Bandpass Filter

Page 9: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Circuit Parameters

Page 10: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Matlab Script

Page 11: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Cadence Simulation

Page 12: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Tunable Bandpass Filter

Page 13: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

BPF at 100 Hz12.396 mS

15.15 mS

Vout is delayed by 2.76 mS, approximately ¼ of a period.

Page 14: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Closer Look at 950 Hz

(Vout is larger than Vin!)

Page 15: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

BPF at 10 KHz

Page 16: Op-Amp Based Band Pass Filter. Equivalent Circuit @ DC (DC feedback)

Question

• What is tunable?– Not a capacitor! (Not an absolute

requirement, since you can always do switches to add/remove capacitors)

– Resistor, but which resistor? Consequnce?• R3+R4• R1• R2


Related Documents