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

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R2<br />

820 Ω<br />

+5V<br />

0.01 µF<br />

VIN<br />

R1<br />

75 kΩ<br />

Figure 4–14. Case 2 Example Circuit<br />

– Input Voltage – V<br />

V IN<br />

0.5<br />

0.4<br />

0.3<br />

0.2<br />

RG<br />

20 kΩ<br />

_<br />

+<br />

+5V<br />

RF<br />

180 kΩ<br />

0.01 µF<br />

VOUT – Output Voltage – V<br />

RL<br />

<strong>10</strong> kΩ<br />

TLV247x<br />

0.1<br />

0 1 2 3 4 5<br />

Figure 4–15. Case 2 Example Circuit Measured Transfer Curve<br />

S<strong>in</strong>gle-Supply <strong>Op</strong> Amp Design Techniques<br />

Simultaneous Equations<br />

VOUT<br />

<strong>The</strong> TLV247X was used to build <strong>the</strong> test circuit because of its wide dynamic range. <strong>The</strong><br />

transfer curve plots very close to <strong>the</strong> <strong>the</strong>oretical curve; <strong>the</strong> direct result of us<strong>in</strong>g a high performance<br />

op amp.<br />

4-15

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