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Description
3.3 Function
ULTRAMAT 23
28
Manual, 3/2016, A5E37100388-003
This oxygen sensor operates according to the principle of a fuel cell. The oxygen is
converted at the boundary layer between the cathode and electrolyte. An electron emission
current flows between the lead anode and cathode and via a resistor, where a measured
voltage is present. This measured voltage is proportional to the concentration of oxygen in
the sample gas.
The acidic electrolyte used is less influenced by interference influences (particularly CO
2
,
CO, H
2
, and CH
4
) than other sensor types.
Paramagnetic oxygen measurement
Figure 3-6
Operating principle of the paramagnetic O
2
sensor
In contrast to other gases, oxygen is highly paramagnetic. This property is used as the basis
for this method of measurement.
Two permanent magnets generate an inhomogeneous magnetic field in the measuring cell. If
oxygen molecules flow into the measuring cell (1), they are drawn into the magnetic field.
This results in the two diamagnetic hollow spheres (2) being displaced out of the magnetic
field. This rotary motion is recorded optically, and serves as the input variable for control of a
compensation flow. This generates a torque opposite to the rotary motion around the two
hollow spheres by means of a wire loop (3). The compensation current is proportional to the
concentration of oxygen.
The calibration point is calibrated using the AUTOCAL function by connecting oxygen
(analogous to calibration of the electrochemical O
2
sensor). In order to comply with the
technical data, the zero point of the paramagnetic measuring cell must be calibrated with
nitrogen weekly in the case of all measuring ranges < 5% or every two months in the case of
all larger measuring ranges.
Содержание ULTRAMAT 23
Страница 2: ......
Страница 10: ...Table of contents ULTRAMAT 23 10 Manual 3 2016 A5E37100388 003 Index 239 ...
Страница 18: ...Safety instructions 2 2 Analyzers in hazardous areas ULTRAMAT 23 18 Manual 3 2016 A5E37100388 003 ...
Страница 66: ...installation ULTRAMAT 23 66 Manual 3 2016 A5E37100388 003 ...
Страница 88: ...Commissioning 6 5 System setup with several analyzers in parallel ULTRAMAT 23 88 Manual 3 2016 A5E37100388 003 ...
Страница 147: ...Functions 8 4 Configuration ULTRAMAT 23 Manual 3 2016 A5E37100388 003 147 ...
Страница 160: ...Functions 8 5 Automatically executed functions ULTRAMAT 23 160 Manual 3 2016 A5E37100388 003 ...
Страница 164: ...Application note 9 1 H2S sensor with small measuring range ULTRAMAT 23 164 Manual 3 2016 A5E37100388 003 ...
Страница 184: ...Taking out of operation and disposal 12 2 Scrapping the analyzer ULTRAMAT 23 184 Manual 3 2016 A5E37100388 003 ...
Страница 194: ...Spare parts accessories 13 5 IR analyzer units ULTRAMAT 23 194 Manual 3 2016 A5E37100388 003 ...
Страница 195: ...Spare parts accessories 13 5 IR analyzer units ULTRAMAT 23 Manual 3 2016 A5E37100388 003 195 ...
Страница 196: ...Spare parts accessories 13 5 IR analyzer units ULTRAMAT 23 196 Manual 3 2016 A5E37100388 003 ...
Страница 229: ...Appendix A 4 Returned delivery ULTRAMAT 23 Manual 3 2016 A5E37100388 003 229 ...
Страница 230: ...Appendix ULTRAMAT 23 230 Manual 3 2016 A5E37100388 003 ...
Страница 238: ...List of abbreviations C 1 List of abbreviations ULTRAMAT 23 238 Manual 3 2016 A5E37100388 003 ...