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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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SINGLE DUAL<br />

LONG<br />

TRACES<br />

Figure 17–18. Trace Length for an Invert<strong>in</strong>g <strong>Op</strong> Amp Stage<br />

SHORT TRACES<br />

Circuit Board Layout Techniques<br />

Packages<br />

It is popular to use dual op amps for stereophonic circuits, and quad op amps for filter<br />

stages with many sections. <strong>The</strong>re is a penalty for do<strong>in</strong>g so, however. Although modern<br />

process<strong>in</strong>g techniques provide high levels of isolation between amplifiers on <strong>the</strong> same<br />

piece of silicon, <strong>the</strong>re will be some crosstalk. If isolation between amplifiers is important,<br />

<strong>the</strong>n s<strong>in</strong>gle packages should be considered. Crosstalk problems are not limited to <strong>the</strong> IC<br />

– <strong>the</strong> dual and quad packages place a high density of passive components <strong>in</strong> close proximity<br />

to each o<strong>the</strong>r. This proximity will lead to some crosstalk.<br />

Dual and quad op amp packages offer some additional benefits beyond density. <strong>The</strong> amplifier<br />

stages tend to be mirror images of each o<strong>the</strong>r. If similar stages are to be laid out<br />

on <strong>the</strong> PCB, <strong>the</strong> layout only needs to be done once, <strong>the</strong>n it can be mirror-imaged to form<br />

<strong>the</strong> o<strong>the</strong>r stage. Figure 17–19 illustrates this effect for four <strong>in</strong>vert<strong>in</strong>g op amp stages implemented<br />

<strong>in</strong> a quad package:<br />

QUAD<br />

Figure 17–19. Mirror-Image Layout for Quad <strong>Op</strong> Amp Package<br />

<strong>The</strong>se illustrations, however, do not show all connections required for operation, <strong>in</strong> particular,<br />

<strong>the</strong> half-supply generator for s<strong>in</strong>gle-supply operation. Modify<strong>in</strong>g <strong>the</strong> diagram of Figure<br />

17–19 to use <strong>the</strong> fourth op amp as a half supply generator is shown <strong>in</strong> Figure 17–20.<br />

17-25

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