feedback (2) section 8.2-8.4. topics feedback topologies loading effects effect of feedback on noise

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Feedback (2) Section 8.2-8.4

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Page 1: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Feedback (2)

Section 8.2-8.4

Page 2: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Topics

• Feedback topologies• Loading Effects• Effect of Feedback on Noise

Page 3: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Feedback Topologies

• Types– Voltage-voltage– Voltage-Current– Current-Voltage– Current-Current

• Parameters– Closed Loop Gain– Input Impedance– Output Impedance

Page 4: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Summary

Page 5: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

General Comment

• Parallel Connection: Impedance fall by 1+loop gain.

• Series Connection: Impedance Rises by 1+loop gain

Page 6: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Feedback

Sense Vout in parallelReturn Vin in series

Alternative name:Return-Sense=Series-Shunt feedback

Page 7: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Ideal A0

Infinite input resistance so it can sense voltage as an ideal voltmeter.Zero output resistance so as to serve as an ideal voltage source.

Page 8: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

(R1+R2=large so as not to disturb Vout)

Page 9: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Input Resistance

(non-ideal)

(ideal)

Without feedback:

With feedback:

Page 10: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Page 11: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Output Resistance

(ideal)

Page 12: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Page 13: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Feedback

Sense Vout in parallel

Return Vin in series

Page 14: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Current Feedback

Sense Vout in parallelReturn current in parallel

Alternative name:Return-Sense=Shunt-Shunt feedback

K has a dimension of conductance:K=IF/Vout

Page 15: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

(RF is largein order to returna current)

(Open-loop gain)Assumption:RF is large!Or RF>>RD2

IRF=Vout/RF

K=-1/RF (- comes from the The direction of IF)

Page 16: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Ideal R0

Zero input impedance so that it can Measure currents as an ideal current meter.

Zero output resistance so as to behaveas an ideal voltage source.

Page 17: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Input Impedance

(small resistance)

Page 18: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

(Open loop input-impedance)

R0=RD1(-gm2RD2)

IRF=Vout/RF

K=-1/RF

Page 19: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Output Impedance

(small resistance)

VA=(-IF)RoRout

(Current drawn by the feedback network is neglected)

Page 20: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Rout=RD2

R0=RD1(-gm2RD2)

IRF=Vout/RF

K=-1/RF

Page 21: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Voltage Feedback

Sense Iout in seriesReturn Vin in series

Alternative name:Return-Sense=series-series feedback

(K=VF/Iout, hence a dimension of resistance)

Page 22: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Gm

Infinite input resistance so it can sense voltage as an ideal voltmeter.

Infinite output resistance in order to behaveas an ideal current source.

Page 23: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

(For sensing current)

(polarity check)

(Calculate the open loop gain)

Page 24: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Input Impedance

(Vin-VF)/Rin=Iin

VF=KIinRinGm

Page 25: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Open Loop Input impedance: 1/gm

Page 26: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Output Impedance

Page 27: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Open Loop Input impedance: 1/gm2

Page 28: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Feedback

Sense Vout in parallelReturn current in parallel

Alternative name:Return-Sense=Shunt-Shunt feedback

K has a dimension of conductance:K=IF/Vout

Page 29: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Feedback

Sense Iout in seriesReturn current in parallel

Alternative name:Return-Sense=Shunt-series feedback

K has a dimension of conductance:K=IF/Iout

(current gain)

Page 30: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Ideal Forward Current Amplifier

Zero input impedance in order to maximize current transfer.Infinite output impedance in order to behave as a current source.

Page 31: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Polarity of Feedback

Page 32: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current and Current FeedbackRM is small, therefore VP is small.Vp is IoutRM

(RF>>1/gm1)RF is large in order for K to behave as a current source.

Page 33: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Input Impedance

Page 34: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Page 35: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculation of Output Impedance

AI

Page 36: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Example

Page 37: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

In Summary

Page 38: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Inclusion of I/O Effects

Page 39: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Rules for Breaking the Feedback Network (1)

Page 40: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Rules for Breaking the Feedback Network (2)

Page 41: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Feedback

K is driven by a zero source impedance. K sees the infinite input impedance of the forward amplifier.

Page 42: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Current Feedback

K is driven by a zero source impedance. K sees a zero input impedance of the forward amplifier.

Page 43: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Voltage Feedback

K is driven by an infinite source impedance. K sees the infinite input impedance of the forward amplifier.

Page 44: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Feedback

K is driven by an infinite source impedance. K sees the zero input impedance of the forward amplifier.

Page 45: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Rules for Breaking the Feedback Network

• Applicable for both sense and return duplicate.– Open for series connection– Shorted for parallel connection

Page 46: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Calculate the Feedback Factor

Page 47: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Feedback

Page 48: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Current Feedback

Page 49: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Voltage Feedback

Page 50: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Feedback

Page 51: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Rules for Determining the Feedback

• If the output of the feedback depends on voltage, open it.

• If the output of the feedback depends on current, short it.

Page 52: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Example (1)(R1+R2 is not much larger than RD)

Page 53: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Example(1)

Page 54: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Example (2)

Page 55: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Voltage Example (2)

Page 56: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Current Example (1)

Page 57: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Voltage-Current Example (1)

Page 58: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Voltage Example (1)

Page 59: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Voltage Example (1)

Page 60: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Example (1)

Page 61: Feedback (2) Section 8.2-8.4. Topics Feedback topologies Loading Effects Effect of Feedback on Noise

Current-Current Example (1)