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TSZ124IPT Scheda tecnica(PDF) 20 Page - STMicroelectronics

Il numero della parte TSZ124IPT
Spiegazioni elettronici  Very high accuracy zero drift micropower 5 V operational amplifiers
PDF  38 Pages
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Produttore elettronici  STMICROELECTRONICS [STMicroelectronics]
Homepage  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

TSZ124IPT Scheda tecnica(HTML) 20 Page - STMicroelectronics

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Application information
TSZ121, TSZ122, TSZ124
20/38
DocID023563 Rev 5
5.5
Input offset voltage drift over temperature
The maximum input voltage drift variation over temperature is defined as the offset
variation related to the 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
Where T = -40 °C and 125 °C.
The TSZ121, TSZ122, and TSZ124 datasheet maximum value is guaranteed by
measurements on a representative sample size ensuring a Cpk (process capability index)
greater than 1.3.
5.6
Rail-to-rail output
The operational amplifier output levels can go close to the rails: to a maximum of 30 mV
above and below the rail when connected to a 10
kΩ resistive load to V
CC/2.
5.7
Capacitive load
Driving large capacitive loads can cause stability problems. Increasing the load
capacitance produces gain peaking in the frequency response, with overshoot and ringing
in the step response. It is usually considered that with a gain peaking higher than 2.3 dB an
op amp might become unstable.
Generally, the unity gain configuration is the worst case for stability and the ability to drive
large capacitive loads.
Figure 43: "Stability criteria with a serial resistor at VDD = 5 V" and Figure 44: "Stability
criteria with a serial resistor at VDD = 1.8 V" show the serial resistor that must be added to
the output, to make a system stable. Figure 45: "Test configuration for Riso" shows the test
configuration using an isolation resistor, Riso.
∆V
io
∆T
ma x
V
io T
V
io 25
T
25 °C
=
°C



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