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905V Vial/Small Volume O2  Analyzer

The Quantek Model 905V is a pharmaceutical headspace oxygen analyzer. Use it for headspace oxygen analysis in pharmaceutical products – vials, blister packs, bottles, or difficult tubes of products (such as cosmetics). Achieve results with as little as 1cc of headspace.
Pharmaceutical preparations packaged in vials are often gas-flushed to provide a specific atmosphere in the vial, with defined levels of oxygen, nitrogen or other gases. Depending on the product, these vials can range in size from 1 ml to 250 ml or larger. Small vials present some difficulty for oxygen analysis because the sample volume available is often quite small. A five ml vial, for example, may have only one ml of headspace gas.

For direct analysis with a pharmaceutical oxygen analyzer, the instrument must be capable of analyzing very small volumes.

Our pharmaceutical oxygen analyzer is designed for this process.

While we recommend a minimum of 1mL of sample, the analyzer will produce a partial response with as little as 0.5mL of headspace. Using interpolation, the final result can be inferred – or, you can combine two samples to produce a valid, averaged result across 0.5mL samples.

£4900

Typically ships within 10 to 14 days.

LABORATORY OR PRODUCTION LINE
The Model 905V is a rugged benchtop unit housed in a heavy-duty metal enclosure, well suited for continuous use in routine QC testing in the laboratory. With built-in battery operation (optional) in addition to the AC mode, this unit can be easily transported and used at remote locations such as the packaging line. Model 905V Key Features and Attributes


ABOUT THE SENSOR
The Model 905V sensor is designed specifically for this purpose. The oxygen sensor internal chamber has a very small volume of about 0.1 cc. The sensor is located directly behind the front panel to eliminate excessive volume. The sensor has in /out ports with a 0.03 in. ID. The vent port of the sensor connects to a short piece of narrow-bore tubing for sample exhaust and introduction of zero or calibration gases.


CALIBRATION SIMPLICITY
The oxygen sensor output is very linear through the entire range of measurement. This allows for a single point calibration to be performed anywhere in the measurement range. Span calibration is accurately done by testing room air, which should give a reading of 20.9% oxygen. Calibration standards can also be used if required by in-house test procedures.


DESIGN RELIABILITY
Microprocessor based electronics are used for sensor signal processing, battery charging and on/off control to provide high accuracy and reliability. The heavy duty, proprietary oxygen sensor is designed to provide many years of service, is totally sealed and requires no maintenance. The sensor output is compensated for ambient temperature variations.

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