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Endress+Hauser Liquiline M CM42 - Technical Data; Input and Output Specifications

Endress+Hauser Liquiline M CM42
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Functional Safety Manual
for the Memosens transmitter Liquiline M CM42 SIL
Version: Page:
2.0
38 of 72
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e vorbehalten. Das Kopieren dieses Dokuments und die Verwendung von Teilen aus diesem Dokument ist
ohne schriftliche Genehmigung der Endress+Hauser Conducta GmbH+Co. KG nicht erlaubt.
All rights reserved. Passing on and copying of this document, use and communication of its contents not
permitted without written authorization from Endress+Hauser Conducta GmbH+Co. KG.
The measurement screen will now look like:
4.7 Using the safe sensor calibration and adjustment
Important remark!
You can also do the calibration in Classic mode (unsafe calibration/adjustment), this is
not checked for when using a SIL sensor. It is up to the user to check, if a correct "safe"
calibration is used.
4.7.1 2 point pH calibration
The two point calibration uses the following formulas to compute the slope and the zero
point of the sensor in the transmitter (the transmitter transforms the given equations
internally to reduce computational errors):
Use two buffers (only E+H buffers with pH 7.00 and pH 4.00 and in this sequence are
allowed), measure the two voltages U
1 and U2 with their pH-values pH1 and pH2.
Then we have:
Slope from the two measured values: S
Tk = (U1 U2) / (pH1 – pH2)
Temperature compensation (ATC) is done by using an adapted slope:
S'25°C = STk * ((273.15 + 25°C) / (273.15 + Tk [°C]))
Zero-Point
(x=2 is used): pH
NP
= - (Ux / STk) + pHx
Ux = voltage measured at electrode
STk = slope at temperature Tk, S'25°C = slope at 25°C/77°F
pHx = pH-value of the buffer solutions (x is 1 or 2) – the pH-values are taken from the E+H buffer
tables with regard to the temperature of the buffers (T1 or T2)
T1: temperature of pH-buffer 1, T2: temperature of pH-buffer 2

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