
( Brand: Pacific Medical ), ( Manufacturer Part Number: NHDX3050 ), ( Model: GE DATEX-OHMEDA OXY-F4-MC HARD SHELL ADULT SPO2 SE ), ( Part Type: Sensor Cable )
The Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor, manufactured by Datex-Ohmeda, is a high-quality, innovative medical device designed for non-invasive pulse oximetry measurements. This sensor is specifically designed to work with the Oxy-F4 series of monitors, providing accurate and reliable oxygen saturation (SpO2) and pulse rate (PR) readings.
The Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor is made with advanced technology and durable materials to ensure long-term use. The sensor features a flexible, lightweight design that fits comfortably on a patient's finger, allowing for easy and painless application. The sensor's probe tip is coated with a soft, medical-grade silicone material, which ensures a secure and comfortable fit, reducing the risk of skin irritation or damage.
The Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor is equipped with a high-resolution, LED-based photoplethysmography (PPG) sensor, which uses light to measure the amount of oxygenated and deoxygenated hemoglobin in the blood. This allows the sensor to provide highly accurate SpO2 and PR readings, even in challenging clinical environments.
The sensor is compatible with the Oxy-F4 series of monitors, which are known for their user-friendly design, robust construction, and advanced features. The monitors provide real-time SpO2 and PR readings, as well as trend graphs, alarms, and other clinical data to help healthcare professionals make informed decisions about patient care.
The Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor is also equipped with a YR ge cable, which provides a secure and reliable connection between the sensor and the monitor. The cable is made with high-quality materials and is designed to withstand frequent use, ensuring a long lifespan and reliable performance.
In conclusion, the Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor is a high-quality, reliable, and durable medical device that provides accurate SpO2 and PR readings in challenging clinical environments. Its advanced technology, durable materials, and user-friendly design make it an excellent choice for healthcare professionals who demand the best in patient monitoring.
The Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor from Datex-Ohmeda, connected via a YR Ge cable from Pacific, is a device used for monitoring oxygen saturation levels in the blood. Here are some pros and cons to consider before making a purchase:
Pros:1. Accurate and reliable measurements: The sensor is designed to provide accurate and reliable oxygen saturation readings, making it a valuable tool for medical professionals and patients.
2. Easy to use: The device is simple to use, with a user-friendly interface and a finger clip attachment that makes it easy to place on the patient's finger.
3. Durable: The sensor is made of high-quality materials and is designed to withstand regular use, ensuring that it lasts for a long time.
4. Compatible with other devices: The YR Ge cable allows the sensor to be used with other Datex-Ohmeda devices, providing flexibility and versatility.
Cons:1. Expensive: The device and its accessories can be quite expensive, which may be a drawback for some individuals or organizations with limited budgets.
2. Requires calibration: The device requires regular calibration to ensure that it is providing accurate readings, which can be time-consuming and may require specialized equipment.
3. Limited portability: While the device is portable, it is not as compact as some other oxygen saturation monitors on the market, which may be a disadvantage for individuals who need to carry the device with them regularly.
In conclusion, the Oxy-F4-MC 10 SpO2 Finger Medical NHDX3050 Sensor from Datex-Ohmeda is a reliable and accurate device for monitoring oxygen saturation levels. While it may be expensive and require regular calibration, its durability, ease of use, and compatibility with other devices make it a valuable tool for medical professionals and patients. Ultimately, the decision to purchase the device should be based on individual needs, budget, and requirements.
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