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TSZ181ILT データシート(PDF) 17 Page - STMicroelectronics

部品番号 TSZ181ILT
部品情報  Very high accuracy (25 μV) high bandwidth (3 MHz) zero drift 5 V operational amplifiers
PDF  43 Pages
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メーカー  STMICROELECTRONICS [STMicroelectronics]
ホームページ  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

TSZ181ILT データシート(HTML) 17 Page - STMicroelectronics

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5
Application information
5.1
Operation theory
The TSZ18x is a high precision CMOS device. It can achieve a low offset drift and no 1/f noise thanks to its
chopper architecture. Chopper-stabilized amps constantly correct low-frequency errors across the inputs of the
amplifier.
Chopper-stabilized amplifiers can be explained with respect to:
Time domain
Frequency domain
5.1.1
Time domain
The basis of the chopper amplifier is realized in two steps. These steps are synchronized thanks to a clock
running at 2.4 MHz.
Figure 46. Block diagram in the time domain (step 1)
Vout
A1(f)
Filter
A2(f)
V
V
Chop 1
Chop 2
inp
inn
Figure 47. Block diagram in the time domain (step 2)
Vout
A1(f)
Filter
A2 (f)
V
V
Chop 1
Chop 2
inp
inn
Figure 46. Block diagram in the time domain (step 1) shows step 1, the first clock cycle, where Vio is amplified in
the normal way.
Figure 47. Block diagram in the time domain (step 2) shows step 2, the second clock cycle, where Chop1 and
Chop2 swap paths. At this time, the Vio is amplified in a reverse way as compared to step 1.
At the end of these two steps, the average Vio is close to zero.
The A2(f) amplifier has a small impact on the Vio because the Vio is expressed as the input offset and is
consequently divided by A1(f).
In the time domain, the offset part of the output signal before filtering is shown in Figure 48. Vio cancellation
principle.
TSZ181, TSZ182
Application information
DS11863 - Rev 5
page 17/43



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