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108
Teledyne API – Model T400 O
3
Analyzer
083730400A DCN8130
5.6.5.2
PRESSURE LEAK CHECK
If you can’t locate the leak by the above procedure, obtain a leak checker that contains a
small pump, shut-off valve and pressure gauge. Alternatively, use a tank of pressurized
gas, with the two-stage regulator adjusted to less than 15 psi with a shutoff valve and
pressure gauge.
CAUTION
Do not use bubble solution with vacuum applied to the analyzer, as
the solution may contaminate the instrument. Do not exceed 15
PSIG pressure.
1. Turn OFF power to the instrument.
2. Install a leak checker or tank of gas as described above on the sample inlet at the
rear panel.
3. Install a cap on the rear panel’s EXHAUST fitting.
4. Remove the instrument cover and locate the sample pump. Disconnect the two
fittings on the sample pump and install a union fitting in place of the pump. The
analyzer cannot be leak checked with the pump in line due to internal leakage that
normally occurs in the pump.
5. Pressurize the instrument with the leak checker, allowing enough time to fully
pressurize the instrument through the critical flow orifice. Check each fitting with
soap bubble solution, looking for bubbles. Once the fittings have been wetted with
soap solution, do not re-apply vacuum, as it will suck soap solution into the
instrument and contaminate it. Do not exceed 15 psi pressure.
6. If the instrument has one of the zero and span valve options, the normally closed
ports on each valve should also be separately checked. Connect the leak checker
to the normally closed ports and check with soap bubble solution.
7. If the analyzer is equipped with an IZS option, connect the leak checker to the dry
air inlet and check with soap bubble solution.
8. Once the leak has been located and repaired, the leak-down rate should be < 1 in-
Hg (0.4 psi) in 5 minutes after the pressure is shut off.
Содержание T400
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