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"Chapter 1 - The Op Amp's Place in the World" - HTL Wien 10

"Chapter 1 - The Op Amp's Place in the World" - HTL Wien 10

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14.1 Introduction<br />

Interfac<strong>in</strong>g D/A Converters to Loads<br />

Bruce Carter<br />

A digital to analog converter, or D/A, is a component that takes a digital word and converts<br />

it to a correspond<strong>in</strong>g analog voltage. It has <strong>the</strong> opposite function of an A/D converter. <strong>The</strong><br />

D/A is only capable of produc<strong>in</strong>g a quantized representation of an analog voltage, not an<br />

<strong>in</strong>f<strong>in</strong>ite range of output voltages.<br />

<strong>The</strong> application will almost always dictate <strong>the</strong> selection of <strong>the</strong> D/A converter, leav<strong>in</strong>g <strong>the</strong><br />

designer <strong>the</strong> task of <strong>in</strong>terfac<strong>in</strong>g that converter with <strong>the</strong> output load.<br />

A D/A converter <strong>in</strong>terfaces with a buffer op amp. Most D/A converters are manufactured<br />

with a process that is <strong>in</strong>compatible with op amps. <strong>The</strong>refore, <strong>the</strong> op amp cannot be<br />

manufactured on <strong>the</strong> same IC. It must be external, and its characteristics are an <strong>in</strong>tegral<br />

part of <strong>the</strong> conversion process. In most cases, <strong>the</strong> data sheet will make a recommendation<br />

for <strong>the</strong> selection of a buffer op amp. Follow <strong>the</strong> recommendation, unless <strong>the</strong>re is a compell<strong>in</strong>g<br />

reason not to do so. Performance can be improved only if you know exactly what op<br />

amp specifications need to be optimized.<br />

Signal condition<strong>in</strong>g — low pass filter<strong>in</strong>g, DC offsets, and power stages — should all be<br />

placed after <strong>the</strong> recommended op amp buffer. Do not attempt to comb<strong>in</strong>e <strong>the</strong>se functions<br />

with <strong>the</strong> buffer unless you are an experienced designer with a good grasp of all of <strong>the</strong> implications.<br />

14.2 Load Characteristics<br />

14.2.1 DC Loads<br />

<strong>Chapter</strong> 14<br />

<strong>The</strong>re are two ma<strong>in</strong> types of loads that a D/A may have to drive — ac and dc. Each has<br />

different characteristics, and will require different <strong>in</strong>terface circuitry.<br />

<strong>The</strong>se <strong>in</strong>clude l<strong>in</strong>ear actuators such as those used on position<strong>in</strong>g tables, motors, programmable<br />

power supplies, outdoor displays, and light<strong>in</strong>g systems. Large load currents<br />

14-1

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