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MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios

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MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios

MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios
MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios

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Product Details:
Model Number: MOX-3 MOX3 AA829-M10
Payment & Shipping Terms:
Minimum Order Quantity: 1
Delivery Time: 3-5work days
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram

MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios

Description
Operating Principle: Partial Pressure Electrochemical Output: 9 MV To 13 MV In 210 MBar O2
Measurement Range: 0 MBar To 1500 MBar O2 Response Time (T90)*: <15 S (air To 100% O2)
Baseline Offset*: <200 μV Linearity: Linear 0% To 100% O2
Highlight:

MOX3 Oxygen Gas Sensor

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Ventilator Oxygen Gas Sensor

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Anesthesia Machine Oxygen Gas Sensor

                                                                     MOX3 Oxygen Sensor
                                                                     Part Number: AA829-M10

 

Document Purpose:
The purpose of this document is to present the performance specification of the MOX3 oxygen gas sensor.
This document should be used in conjunction with the Operating Principles (OP04) and the Product Safety Datasheet (PSDS 4).
The data provided in this document are valid at 20°C, 50% RH and 1013 mBar for 3 months from the date of sensor manufacture.
Output signal can drift below the lower limit over time. For guidance on the safe use of the sensor, please refer to the Operating Principles (OP04).

 

*Specifications are based on measurements made with cylinder gases using a flow rate of 100 mls min-1 and are valid at 20°C, 50% RH and 1013 mBar, using City Technology recommended circuitry. Performance characteristics outline the performance of sensors supplied within the first 3 months. Output signal can drift below the lower limit over time.
Note 1: Use of a regression coefficient shows a best fit straight line better than 0.9995 when measured through the four data points from testing with 100% N2, 21% O2, 60% O2, and 100% O2.

 

 

Important Note:

Connection should be made via recommended mating parts only. Soldering to the sensor will damage it and invalidate the warranty.
For further information on the external load resistance and connection to the recommended mating part, please see Operating Principle OP-04 or contact City Technology.
All performance data is based on measurements made with cylinder gases using a flow rate of 100 mls/min. Conditions at 20°C, 50% RH and 1013 mBar. For sensor performance data under other conditions, contact City Technology.
Performance characteristics outline the performance of sensors supplied within the first 3 months. Output signal can drift below the lower limit over time.

 

Poisoning:
CiTiceLs are designed for operation in a wide range of environments and harsh conditions. However, it is important that exposure to high concentrations of solvent vapours is avoided, both during storage, fitting into instruments and operation.
When using sensors with printed circuit boards (PCBs), degreasing agents should be used before the sensor is fitted. Do not glue directly on or near the CiTiceL as the solvent may cause crazing of the plastic.

 

 

Intended Use:
These sensors are designed to be used to monitor the partial pressure of oxygen in anaesthesia (not including xenon), critical care, neonatal incubators, and general oxygen monitors.

 

 

Stabilisation Time:
Allow at least 15 minutes to stabilise in the instrument before calibration or refer to manufacturers instructions.

 

Cleaning and Sterilisation:
In case of contamination the sensor may be cleaned with distilled water and allowed to dry naturally. The sensor is not suitable for sterilisation by steam or exposure to chemicals such as ethylene oxide or hydrogen peroxide

 

Typical Applications Critical care anesthesia
Operating Temperature Range -20°C to +50°C
Operating Pressure Range 0.5 Bar to 2.0 Bar
Operating Humidity Range 0% to 99% RH non-condensing
Long-Term Ouput Drift in 100% O2 < 5% signal loss/year

 

MOX-3 MOX3 AA829-M10 Oxygen Gas Sensor Electrochemical Gas Sensor Widely Used In Ventilator Anesthesia Machine And Oxygen Concentration Monitoring And Other Scenarios 0

 

Contact Details
ShenzhenYijiajie Electronic Co., Ltd.

Contact Person: Miss. Xu

Tel: 86+13352990255

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