B-13
Humidity Effects
Under conditions where liquid condensation may occur, care is needed to ensure the gas access
holes do not become blocked. If liquids form in the region of the gas access hole, the flow of gas
to the sensor will be restricted. With gas access restricted, a low signal will result. If a sensor
shows signs of being affected by condensation, normal operation may be restored by drying the
sensor with a soft tissue. Under no circumstances should these sensors be heated to dry them out.
Changes in humidity levels which affect the O2 partial pressure will correspondingly alter the
output signal of the sensor.
Pressure Effects
Since the sensor measures O2 partial pressure, the output will rise and fall due to pressure changes
which affect the O2 partial pressure. Thus an increase in pressure of 10% at the sensor inlet will
produce a 10% increase in signal output. Nitrous oxide is highly soluble in neutral and alkaline
solutions. Where the sensor is exposed to high levels of nitrous oxide, the solubility of this gas can
in fact cause the internal pressure to increase to the point where the seals fail. O2 sensor
incorporates a patented pressure relief system in the rear of the sensor, limiting the internal
pressure build up due to N2O dissolving in the electrolyte to a figure well within the capacity of
the sealing system. Test data shows that sensors are unaffected by months of operation in 100%
N2O. Cross-interference tests with 10% CO2 (balance O2) show virtually no interference from
CO2.
Temperature Dependence
The rugged design of O2 sensor means they are resistant to damage from extremes of high or low
temperature. Even so, the sensor must never be exposed to temperatures at which the electrolyte
will freeze (approx. -25°C), or temperatures which will harm the components of the sensor, ie. the
plastic or seals (>70°C). Sensor lifetime is governed by the mass of lead available to react with
oxygen and its rate of consumption. High oxygen partial pressures and high temperatures will
increase the sensor output current, thus shortening the operating life.
Temperature(°C)
Life = 1192/exp(2+0.0239 Temperature)
Life (%
of 20°C Figure)
Содержание WATO EX-65
Страница 1: ...WATO EX 65 Anesthesia Machine Operator s Manual ...
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Страница 25: ...2 3 2 2 Equipment Appearance 2 2 1 Front View Display and control panel ...
Страница 27: ...2 5 Breathing system ...
Страница 29: ...2 7 2 2 2 Rear View Power supply ...
Страница 31: ...2 9 Anesthesia information system CIS ...
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Страница 108: ...7 10 7 8 AGSS Transfer Tube Maintenance Check the tube of the AGSS transfer system Replace it if it is damaged ...
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Страница 154: ...13 2 13 1 1 Breathing System Diagrams 14 15 16 17 18 19 20 21 22 1 2 3 4 5 6 7 8 9 10 11 12 13 ...
Страница 168: ...13 16 5 Turn the rotary handle clockwise for 90 degrees 6 Let the rotary handle fall to lock the sodalime canister ...
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