Analog Circuit Design Volume 2: Immersion in the Black Art by Bob Dobkin, Jim Williams

By Bob Dobkin, Jim Williams

Analog circuit and process layout this present day is extra crucial than ever ahead of. With the expansion of electronic structures, instant communications, complicated business and automobile structures, designers are being challenged to increase subtle analog strategies. This finished resource e-book of circuit layout options aids engineers with dependent and functional layout recommendations that concentrate on universal analog demanding situations. The book's in-depth software examples supply perception into circuit layout and alertness options that you should practice in latest challenging designs. this can be the better half quantity to the profitable Analog Circuit layout: an academic consultant to functions and suggestions (October 2011), which has offered over 5000 copies in its the 1st 6 months of when you consider that e-book. It extends the Linear expertise choice of program notes, which gives analog specialists with a whole choice of reference designs and challenge fixing insights to use to their very own engineering challenges.Full help package deal together with on-line assets (LTSpice). Contents comprise extra program notes on strength administration, and knowledge conversion and sign conditioning circuit ideas, plus a useful circuit number of reference designs.

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Extra info for Analog Circuit Design Volume 2: Immersion in the Black Art of Analog Design

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Under the same operating conditions as Step 5, set input pulse width at 10µs and adjust A1’s capacitive trim for the fastest positive going edge obtainable at A3’s output without introducing pulse distortion. 7 with somewhat degraded top-front and bottom-rear corner rounding. 7. Adjust “FET Response Compensation” to correct the corner rounding noted in Step 6. Some interaction may occur with Step 6’s adjustment. 7. Appendix C Instrumentation considerations The pulse edge rates discussed in the text are not particularly fast, but high fidelity response requires some diligence.

Once again a small value of ESR will provide a more optimum response. At 5VOUT with 10µF COUT (Figure B4) the response is well damped with 0Ω ESR. 2V (Figure B5), the output rings although the amplitude is only 20mVP-P. 2V output. 5V and 5V output with 100µF COUT shows similar characteristics to the 10µF case (see Figures B6 and B7). 5VOUT 5mΩ to 20mΩ can improve transient response. At 5VOUT the response is well damped with 0Ω ESR. Capacitor types with inherently higher ESR can be combined with 0mΩ ESR ceramic capacitors to achieve both good high frequency bypassing and fast settling time.

A possible problem with this circuit is related to the poor regulation of the −16V line. If the positive output is lightly loaded L1’s magnetic flux is low. Heavy negative output loading under this condition results in the −16V line falling below its output regulators dropout value. Specifically, with no load on the 15V output only 20mA is available from the −15V output. The full 100mA is only 49 SECTION TWO Switching Regulator Design This circuit works well but pulls 9mA of quiescent current. If battery capacity is limited by size or weight this may be too high.

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