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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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Analog Output Voltage<br />

3<br />

2<br />

1<br />

0<br />

Nom<strong>in</strong>al<br />

Offset<br />

Figure 14–7. D/A Offset Error<br />

14.5.1.2 Ga<strong>in</strong> Error<br />

Actual Ideal<br />

Actual<br />

Offset Offset Error<br />

(+ 1 1/4 LSB)<br />

000 001 0<strong>10</strong> 011<br />

Digital Output Code<br />

D/A Converter Errors and Parameters<br />

Related to <strong>the</strong> offset error is <strong>the</strong> offset error temperature coefficient, which is <strong>the</strong> change<br />

<strong>in</strong> offset over temperature. This is usually specified <strong>in</strong> ppm/C.<br />

Offset error is critical <strong>in</strong> dc applications. For this reason, a buffer op amp must be selected<br />

that does not contribute to <strong>the</strong> problem — its own offset voltages should be much less than<br />

that of <strong>the</strong> converter. In ac applications, <strong>the</strong> offset error is not important and can be ignored.<br />

<strong>The</strong> buffer op amp can be selected for low THD, high slew rate, or whatever o<strong>the</strong>r<br />

parameters are important for <strong>the</strong> application.<br />

<strong>The</strong> ga<strong>in</strong> of <strong>the</strong> D/A converter may greater than or less than <strong>the</strong> ga<strong>in</strong> needed to produce<br />

<strong>the</strong> desired full-scale analog voltage (Figure 14–8). <strong>The</strong> ga<strong>in</strong> error is <strong>the</strong> difference <strong>in</strong><br />

slope between <strong>the</strong> ideal D/A output ga<strong>in</strong> and <strong>the</strong> actual ga<strong>in</strong>.<br />

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

14-11

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