Analog Circuits. World Class Designs by Robert Pease

By Robert Pease

Newnes has labored with Robert Pease, a pace-setter within the box of analog layout to pick some of the best design-specific fabric that we have got to provide. The Newnes portfolio has continually been comprehend for its useful no nonsense technique and our layout content material is in line with that culture. This fabric has been selected in keeping with its timeliness and timelessness. Designers will locate idea among those covers highlighting uncomplicated layout techniques that may be tailored to present day most popular expertise in addition to layout fabric particular to what's taking place within the box this present day. As an extra bonus the editor of this reference tells you why this is often vital fabric to have to be had constantly. A library needs to for any layout engineers in those fields.
*Hand-picked content material chosen through analog layout legend Robert Pease
*Proven top layout practices for op amps, suggestions loops, and all kinds of filters
*Case histories and layout examples get you off and working in your present undertaking

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Lpr: Inductance in series with feedback resistance, approximately 10 nH. Lpc: Inductance in series with feedback capacitor, approximately 5 nH. Cp: Capacitance of photodiode, approximately 60 pF. Cin: Input capacitance of op-amp, approximately 5 pF. The Rf Cp combination results in a pole inside the feedback loop that results in potential instability. Plotted in Figure 1-34 is frequency response of vo / ip of the original circuit with Rf ϭ 15 k, showing that the response is very underdamped.

W ww. 828 deg. 8615e ϩ 005 rad/sec) 100 50 0 Ϫ50 Ϫ100 Ϫ150 101 102 103 104 105 106 Frequency (rad/sec) Figure 1-18: Phase margin and bandwidth calculation for gain of ؉1 op-amp circuit. 2 ϫ10Ϫ5 Figure 1-19: Step response for gain of ؉1 amplifier. Example 1-2: Gain of ؉10 amplifier What is the bandwidth and risetime when this same op-amp is configured as a gain of ϩ10 amplifier? The gain of ϩ10 op-amp circuit is shown in Figure 1-20a, and the block diagram is shown in Figure 1-20b. 1. T . 1 R (a) (b) Figure 1-20: Gain of ϩ10 op-amp circuit.

The block diagram of this circuit is shown in Figure 1-17b. T . 1s ϩ 1)(10Ϫ6 s ϩ 1) Vi ϩ ϩϪ a(s) [1-25] Vo Vo Ϫ 1 (a) (b) Figure 1-17: Gain of ϩ1 op-amp circuit. (a) Circuit. (b) Block diagram. which is the same as the open-loop transfer function of the op-amp a(s). Using MATLAB, the bandwidth and phase margin are calculated, as shown in Figure 1-18. The results show a phase margin of 52° and a crossover frequency of 786,150 radians/second (125 kHz). 8 μs (Figure 1-19). 35/fc, where fc is the crossover frequency in Hz.

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