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TSX631 Datasheet(PDF) 18 Page - STMicroelectronics

Part # TSX631
Description  Micropower (45 μA, 200 kHz) rail-to-rail 16 V CMOS operational amplifiers
PDF  31 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

TSX631 Datasheet(HTML) 18 Page - STMicroelectronics

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Application information
TSX63x, TSX63xA
18/31
DocID024293 Rev 1
4
Application information
4.1
Operating voltages
The amplifiers of the TSX63x and TSX63xA series can operate from 3.3 to 16 V. Their
parameters are fully specified at 3.3, 5, 10 and 16 V power supplies. However, the
parameters are very stable in the full VCC range. Additionally, the main specifications are
guaranteed in extended temperature ranges from -40 ° C to +125 ° C.
4.2
Rail-to-rail input
The TSX63x and TSX63xA are built with two complementary PMOS and NMOS input
differential pairs. The devices have a rail-to-rail input, and the input common mode range is
extended from VCC-- 0.1 V to VCC+ + 0.1 V.
However, the performance of these devices is clearly optimized for the PMOS differential
pairs (which means from VCC- - 0.1V to VCC+ - 1.65V).
Beyond VCC+ - 1.65 V, the op-amp is still functional but with a degraded performance as can
be observed in the electrical characteristics section of this datasheet (mainly Vio).
These performances are suitable for a number of applications requiring rail-to-rail input and
output.
The devices are guaranteed without phase reversal.
4.3
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.
ΔVio
ΔT
------------
max
Vio T
() Vio 25° C
()
–
T25
° C
–
---------------------------------------------------
=



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