Minolta Pulsox-2 instruction manual

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3. NOTES ON USE

This instrument should be used in areas with an ambient temperature of 0 to 40°C (32 to 104°F) and a relative humidity of 30 to 95%, with no condensation.

This is a precision instrument. To avoid the possibility of it being damaged, the instrument should not be dropped nor should heavy objects be placed on top of it.

This instrument conforms to water-seal rating of IPX4 (IEC 60529), which ensures that the instrument will show no adverse damage even if exposed to water splashing from any direction. However, the instrument is not water- proof, so it should never be washed with water or left immersed in water.

When the water remains in finger holder, the measurement value is not accurate.Turn the part of strap eyelet to the bottom, and remove the water.

This instrument should not be used in areas subject to strong vibrations, nor should it be subjected to physical shock. Doing so may cause breakdown.

The finger holder is a delicate device and should not be handled roughly nor should objects be placed on top of it.

The accuracy of this instrument, like that of all other dual-wavelength oximeters, can be influenced by the presence of abnormal hemoglobins such as carboxyhemoglobin (HbCO) and methemoglobin. Tables 1 and 2 below show the errors which may occur due to these hemoglobins. The instrument may also be affected by cardiogreen or intravascular dyes.

Do not use a mobile telephone when using this instrument. Doing so may result in measurement error.

This instrument may interfere with magnetic resonance imaging (MRI) procedure.

The disposal method of AAA batteries varies according to local government regulation.

Dispose of the battery according to the instructions given by local government regulations or ask a specialized waste service company to dispose of it.

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Contents Pulsox Authorized Standards Safety Precautions Page Before Operation Safety NotesMessages Names of PartsPage Page Operating Method Preparations Installing BatteriesInstalling the Neck Strap Measurements Safety Notes Ending Measurements Pulse level % = How to Read the Measurement ValuesBacklight sensor window Back LightError Messages Messages relating to the condition of the main unit Troubleshooting Case of Malfunction Maintenance and StorageMaintenance and inspections CleaningPULSOX-2 SpecificationsMeasurement Principle ReferenceRelation between Oxygen Saturation and Partial Pressure EMC Declaration Page 9222-1731-13

Pulsox-2 specifications

The Minolta Pulsox-2 is an advanced diagnostic imaging device, celebrated for its innovative features and significant role in the field of medical imaging. Primarily utilized in pulmonary diagnostics, the Pulsox-2 offers a non-invasive method to assess oxygen saturation levels in the blood, making it an essential tool in hospitals and clinics.

One of the standout features of the Pulsox-2 is its ability to provide accurate and reliable measurements of oxygen saturation (SpO2) in real-time. This is vital for patients with respiratory conditions, as it allows healthcare professionals to monitor their oxygen levels continuously. The device utilizes advanced optical sensors that employ the principle of photoplethysmography, enabling it to measure changes in blood volume within the microvascular bed of tissue.

The Pulsox-2 is designed for user convenience and portability. Its lightweight and compact form factor make it easily transportable, allowing healthcare providers to use it in various settings, including emergency rooms and bedside care. Additionally, the device features a clear and intuitive LCD display that presents the measured data in an easy-to-read format, ensuring quick interpretation by medical personnel.

Another notable characteristic of the Minolta Pulsox-2 is its enhanced noise rejection technology, which aids in obtaining precise measurements even in challenging environments. This feature reduces interference from external light sources, ensuring accuracy in diverse lighting conditions. Furthermore, the device is equipped with a robust battery life, which supports prolonged usage and prevents interruptions during critical monitoring sessions.

The Pulsox-2 also offers various connectivity options, enabling seamless integration with electronic health record (EHR) systems. This capability not only streamlines data management but also enhances patient care by allowing for timely access to critical health information. The device is compatible with a range of sensors and attachments, making it versatile for different patient needs.

In conclusion, the Minolta Pulsox-2 is a remarkable advancement in the field of medical imaging. Its combination of accurate measurements, user-friendly design, and integration capabilities sets a standard in patient monitoring. As respiratory disorders become more prevalent, devices like the Pulsox-2 play an essential role in improving patient outcomes through diligent monitoring and timely interventions.