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TSX9291ILT データシート(PDF) 19 Page - STMicroelectronics

部品番号 TSX9291ILT
部品情報  16 MHz rail-to-rail CMOS 16 V operational amplifiers
PDF  31 Pages
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メーカー  STMICROELECTRONICS [STMicroelectronics]
ホームページ  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

TSX9291ILT データシート(HTML) 19 Page - STMicroelectronics

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DocID024568 Rev 4
19/31
TSX9291, TSX9292
Application information
31
Whenever possible, it is best to choose smaller feedback resistors. It is recommended to
use 1 kΩ gain and feedback resistance (Rf and Rg) when gain = -1 is necessary. In the
application, if a large value of Rf and Rg has to be used, a feedback capacitance can be
added in parallel with Rf, to reduce or eliminate the gain peaking. Additionally, Cf helps to
compensate the input capacitance and to increase stability.
Figure 38 shows how Cf reduces the gain peaking.
Figure 38. Close loop gain vs. frequency with capacitive compensation
4.5
Input offset voltage drift over temperature
The maximum input voltage drift over the temperature variation is defined as the offset
variation related to offset value measured at 25 °C. The operational amplifier is one of the
main circuits of the signal conditioning chain, and the amplifier input offset is a major
contributor to the chain accuracy. The signal chain accuracy at 25 °C can be compensated
during production at application level. The maximum input voltage drift over temperature
enables the system designer to anticipate the effect of temperature variations.
The maximum input voltage drift over temperature is computed using Equation 1.
Equation 1
with T = -40 °C and 125 °C.
The datasheet maximum value is guaranteed by a measurement on a representative
sample size ensuring a Cpk (process capability index) greater than 2.
1k
10k
100k
1M
10M
-30
-20
-10
0
10
20
Cf=1.5pF
Cf=1pF
Vcc=16V
Vicm=Vcc/2
Gain=-1
Rf=Rg=10kΩ
Rl=10kΩ
Cl=20pF
Cf=0pF
Frequency (Hz)
ΔVio
ΔT
------------
max
Vio T
() Vio 25° C
()
T25
° C
---------------------------------------------------
=



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