Determine an expression for the low frequency gain

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Reference no: EM131892116 , Length: 6 pages

OPERATIONAL AMPLIFIERS - OP-AMP PERFORMANCE

TABLE A lists parameters for two different operational amplifiers, A and B.

Question 1. a) Contrast the relative performance of each op-amp in terms of these parameters and state how they compare to that of the ideal op-amp.

b) TABLE B gives two descriptions of operational amplifiers. State, with justifications, which description most closely matches the op-amps of TABLE A.

c) State, with reasons, which op-amp in TABLE A would be most suitable for the applications listed in TABLE C.

d) TABLE D shows the internal circuitry of two op-amps. Identify, with justification, which op-amp circuit is most likely to belong to which op-amp in TABLE A.

Question 2. The amplifier of FIGURE 1 has a closed loop gain of 20 dB and R1 = 10 kΩ. The resistors have a tolerance of 5%.

a. Estimate the output offset voltage of the circuit of FIGURE 1 when the op-amp used is
i) op-amp A of TABLE A
ii) op-amp B of TABLE A.

b. If the circuit of FIGURE 1 uses op-amp A of TABLE A, show how the output offset voltage can be reduced by a circuit modification, calculating the value of any components used.

c. Explain why the technique used in (b) above is relatively ineffectual if op-amp B of TABLE A is used.

N.B. The output offset voltage is given by the equation:

V2O = IIB(Rf - R2((Rf + R1)/R1) + IIORf + VIO(1 + Rf/R1))

136_amplifier.jpg

Figure 1

Question 3. a) Explain what is meant by ‘unconditional stability' in an op-amp.

b) FIGURE 2 gives the open-loop response of an uncompensated op- amp. Compensation is to be applied to the amplifier to make it unconditionally stable. Estimate the frequency at which the breakpoint of the compensated response must occur.

514_uncompensated op amp.jpg

FIGURE 2

Question 4. FIGURE 3(a) shows the Bode plot of op-amp THS4021. The manufacturer describes this device as a ‘decompensated op-amp', by which is meant that the frequency compensation is partial as opposed to ‘uncompensated' where no compensation is used at all. The advantages of ‘decompensation' over ‘full compensation' include a higher open-loop gain and better slew rate. Greater care, however, is need in the use of such an op-amp as frequency stability cannot be assured.

a) Estimate the phase margin and unity gain BW of the THS 4021.

b) FIGURE 3(b) shows the THS4021 in a practical op-amp circuit with applied external compensation. Determine an expression for the low frequency gain of the circuit.

1751_Bode plot of op-amp.jpg

Figure 3(a)

1348_practical op-amp circuit.jpg

Figure 3(b)

Question 5. In FIGURE 4(a) the input voltage Vin is swept from 0 to 5 V. The supply voltage is a single-rail 5 V. Explain the shapes of the output responses of the two op-amps shown in FIGURE 4(b).

[TABLE E gives some further information on these op-amps.]

Question 6. Estimate the maximum frequency of a sinusoidal input signal of 10 mV peak, for distortion-free output, when applied to an op-amp circuit of closed-loop gain of 100, if the op-amp used is the:

a) TL072
b) TLV2362.

[TABLE E gives some further information on these op-amps.]

1440_input voltage.jpg

Figure 4(a)

717_responses of the two op-amps.jpg

Figure 4(b)

Attachment:- OP-AMP PERFORMANCE.rar

Reference no: EM131892116

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Reviews

len1892116

3/8/2018 1:59:24 AM

PASS MERIT Criteria in excess of the pass grade. DISTINCTION Criteria in excess of the merit grade. Learning outcomes are satisfied as evidenced by substantially correct analysis and solutions. satisfactory The ability to transfer a competence gained in one situation to related but unfamiliar situations. The ability to support descriptive answers with analysis and simulation and in the application of valid engineering judgment.

len1892116

3/8/2018 1:59:14 AM

MODULE LEARNING OUTCOMES Knowledge and Understanding 1. Review and contrast actual characteristics of an operational amplifier with the ideal. Cognitive and Intellectual Skills 2. Interpret manufacturers’ data to match operational amplifier parameters to a given performance and application. 3. Analyse the performance of operational amplifier circuits in terms of gain, phase, stability and pulse response. Practical and Professional Skills 4. Design, simulate, build and test operational amplifier circuits. Key Transferable Skills 5. Apply mathematical skills in more complex contexts involving operational amplifiers.

len1892116

3/8/2018 1:59:01 AM

Ensure that you indicate the number of the question you are answering. 3. Make a copy of your answers before submitting the assignment. 4. Complete all details on the front page of this TMA and return it with the completed assignment to your support centre. 5. Your tutor’s comments on the assignment will be sent to your home address (unless you have requested otherwise) on a separate feedback sheet. Your assignment will not be returned to you.

len1892116

3/8/2018 1:58:51 AM

all working showed in simple format, there is more texts to add but could only upload maximum of 3, 2 more to upload This assignment forms part of the formal assessment for this module. If you fail to reach the required standard for the assignment then you will be allowed to resubmit but a resubmission will only be eligible for a Pass grade, not a Merit or Distinction. You should therefore not submit the assignment until you are reasonably sure that you have completed it successfully. Seek your tutor's advice if unsure.

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