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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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<strong>Op</strong>erational Amplifier Parameter Glossary<br />

11-6<br />

PARAMETER ABBV UNITS DEFINITION INFO<br />

Temperature coefficient of<br />

<strong>in</strong>put offset voltage<br />

Total current <strong>in</strong>to VCC+/<br />

VDD+<br />

Total current out of VDD–<br />

αVIO<br />

µV/°C<br />

mA<br />

mA<br />

Total harmonic distortion THD dB<br />

Total harmonic distortion<br />

plus noise<br />

THD+N dB<br />

Total power dissipation PD mW<br />

Turn-on voltage (shutdown)<br />

Turn-off voltage (shutdown)<br />

VIH–<br />

SHDN<br />

VIL–<br />

SHDN<br />

Turn-on time (shutdown) tEN µs<br />

Turn-off time (shutdown) tDIS µs<br />

Unity ga<strong>in</strong> bandwidth B1 MHz<br />

Table 11–2. Cross-Reference of <strong>Op</strong> Amp Parameters<br />

V<br />

V<br />

<strong>The</strong> ratio of <strong>the</strong> change <strong>in</strong> <strong>in</strong>put offset voltage to <strong>the</strong> change <strong>in</strong><br />

free-air temperature. This is an average value for <strong>the</strong> specified<br />

temperature range.<br />

Maximum current that can be supplied to <strong>the</strong> positive power<br />

term<strong>in</strong>al of <strong>the</strong> op amp — usually specified as an absolute<br />

maximum.<br />

Maximum current that can be drawn from <strong>the</strong> negative power<br />

term<strong>in</strong>al of <strong>the</strong> op amp — usually specified as an absolute<br />

maximum.<br />

<strong>The</strong> ratio of <strong>the</strong> RMS voltage of <strong>the</strong> first n<strong>in</strong>e harmonics of <strong>the</strong><br />

fundamental signal to <strong>the</strong> total RMS voltage at <strong>the</strong> output.<br />

<strong>The</strong> ratio of <strong>the</strong> RMS noise voltage and RMS harmonic voltage<br />

of <strong>the</strong> fundamental signal to <strong>the</strong> total RMS voltage at <strong>the</strong><br />

output.<br />

<strong>The</strong> total dc power supplied to <strong>the</strong> device less any power<br />

delivered from <strong>the</strong> device to a load. Note: At no load: PD =<br />

VCC+ × I or PD = VDD+ × I<br />

<strong>The</strong> voltage required on <strong>the</strong> shutdown p<strong>in</strong> to turn <strong>the</strong> device<br />

on.<br />

<strong>The</strong> voltage required on <strong>the</strong> shutdown p<strong>in</strong> to turn <strong>the</strong> device<br />

off.<br />

<strong>The</strong> time from when <strong>the</strong> turn-on voltage is applied to <strong>the</strong> shutdown<br />

p<strong>in</strong> to when <strong>the</strong> supply current has reached half of its<br />

f<strong>in</strong>al value.<br />

<strong>The</strong> time from when <strong>the</strong> turn-off voltage is applied to <strong>the</strong> shutdown<br />

p<strong>in</strong> to when <strong>the</strong> supply current has reached half of its<br />

f<strong>in</strong>al value.<br />

<strong>The</strong> range of frequencies with<strong>in</strong> which <strong>the</strong> open-loop voltage<br />

amplification is greater that unity.<br />

ABBV PARAMETER<br />

αIIO<br />

∆VCC±/<br />

∆VDD±<br />

αVIO<br />

∆VIO<br />

AD<br />

Am<br />

AOL<br />

AV<br />

AVD<br />

Temperature coefficient of <strong>in</strong>put offset current<br />

Supply voltage sensitivity<br />

Temperature coefficient of <strong>in</strong>put offset voltage<br />

Supply voltage sensitivity<br />

Differential ga<strong>in</strong> error<br />

Ga<strong>in</strong> marg<strong>in</strong><br />

<strong>Op</strong>en loop voltage ga<strong>in</strong><br />

Large-signal voltage amplification<br />

Differential voltage amplification<br />

11.3.1<br />

11.3.14<br />

11.3.15

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