The BioOxy optical oxygen sensor does not consume O2 during measurement. It is excellent for measuring O2 concentrations in small spaces.
Researchers' capacity for discovery is increased by the BioOxy 50 m active area diameter tip's ability to detect O2 in extremely small areas.
It's a brand-new, cutting-edge technique that provides significant advantages over employing conventional Clark type electrodes for measuring oxygen in gaseous and aqueous phases.
The Fiber Optic OXY-MICRO Microsensor Oxygen Meter or the FLOX-Oxygen Monitoring System are the two devices that the BioOxy directly interfaces to.
Order code | Compatibility | Configuration |
O2-T0050L250-12011 |
BioOxy Sensor 50µm Tip ST connector for OxyMicro in a 0.40 x 20 mm cannula |
SYR Retractable, 1pc |
O2-T0050L250-12011T |
BioOxy Sensor 50µm Tip ST connector for OxyMicro in a 1.20 x 40 mm cannula |
SYR Retractable Temp Sensor, 1pc |
O2-T0050L250-12012 |
BioOxy Sensor 50µm Tip ST connector for OxyMicro in a 0.40 x 20 mm cannula |
SYR Retractable, 2pc |
O2-T0050L250-12021 |
BioOxy Sensor 50µm Tip SMA connector for FLOX or NeoFox in a 0.40 x 20 mm cannula |
SYR Retractable , 1pc |
O2-T0050L250-12021T |
BioOxy Sensor 50µm Tip SMA connector for FLOX or NeoFox in a 1.20 x 40 mm cannula |
SYR Retractable TempSensor, 1pc |
O2-T0050L250-12022 |
BioOxy Sensor 50µm Tip SMA connector for FLOX or NeoFox in a 0.40 x 20 mm cannula |
SYR Retractable, 2pc |
Due to its tiny sensor tip diameter of less than 50 μm, the BioOxy is perfectly suited for the analysis of small sample volumes. Long-term analyses and biotechnological applications are well suited for the BioOxy. The measurement principle does not require touch, and the signal is independent of sample flow rate.
The underlying physical theory is based on the quenching of luminescence, which is brought on by the collision of an excited luminous dye molecule with molecular oxygen. The measured phase angle and oxygen concentration are inversely correlated. When oxygen is present in your sample, the phase angle falls. High grade fused silica fibers are employed optically to convey the emitted light signal, guaranteeing contact performance lot to lot.
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