Philips M1351A, M1353A manual IUP Quartz, 1290C option, J05

Models: M1353A M1351A

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Transducers and Cables

DECG Cable Cable weight: 22 grams

(M1362A)

Cable Length: 666mm +/- 30mm

DECG Adaptor Cable weight: 35 grams (approx.)

Cable (M1362B)

Cable Length: 77cm (approx.)

MECG Cable Cable weight: 16 grams

(M1363A)

Cable Length: 606mm +/-30mm

M1364A With DECG Patient Leakage Current: 120V at 60Hz, 10A rms

Cable M1362A

Patient Auxiliary Current: < 0.1A (dc)

Dielectric strength: 1500Vrms spark gap protected

Input Impedance: > 10M

CMRR: with patient cable, 51.5k/0.047F imbalance at line frequency > 110dB

Noise: (referred to input with 25k) < 4Vp

Contact Potential Difference: ±500mV

Input Voltage Range: 20Vp to 3mVp

M1364A With Patient Leakage Current: 120V at 60Hz, 10A rms

MECG Cable

M1363A Patient Auxiliary Current: < 0.1A (dc)

Dielectric strength: 1500Vrms spark gap protected

Input Impedance: > 10M

CMRR: with patient cable, 51.5k/0.047F imbalance at line frequency > 80dB

Noise: (referred to input with 25k) < 4Vp

Contact Potential Difference: ±500mV

Input Voltage Range: 80Vp to 4mVp

IUP Quartz

Dynamic Range:

-50 to 300mmHg.

Transducer

Sensitivity:

5µV/V/mmHg.

(1290C option

 

 

J05)

Non-linearity:

Whichever is greater: ±1% of the reading or ±1mmHg.

 

Volume Displacement:

0.2mm³/100mmHg.

 

Weight:

180g/6.3oz.

 

Cable Length:

3m/9ft 10in.

 

Length:

66mm/2.6in.

Chapter 2 Technical Specifications

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Philips M1351A, M1353A manual IUP Quartz, 1290C option, J05

M1353A, M1351A specifications

Philips M1351A and M1353A are advanced medical monitoring devices designed to enhance patient care in various healthcare settings. These monitors are widely recognized for their precision, reliability, and user-friendly interface, making them essential tools for clinicians and healthcare providers.

The Philips M1351A is a compact portable monitor specifically tailored for adult, pediatric, and neonatal care. It is equipped with multiple physiological parameters, enabling healthcare professionals to track vital signs such as heart rate, respiratory rate, non-invasive blood pressure, and temperature. One of its standout features is the ability to display real-time waveforms, providing clinicians with instant access to critical patient information.

On the other hand, the Philips M1353A builds on the M1351A's robust capabilities, integrating advanced features that enhance monitoring capabilities. This model includes additional measurement modalities such as invasive blood pressure and capnography, allowing for comprehensive patient management. Its larger screen provides clear, easy-to-read data, and its intuitive interface ensures quick navigation through the various monitoring functions.

Both monitors utilize state-of-the-art technologies to ensure accurate and reliable measurements. The smart algorithm used in these devices minimizes the possibility of false readings, providing healthcare professionals with the confidence needed for effective clinical decision-making. The Philips M1351A and M1353A also feature an integrated alarm system that notifies caregivers of critical changes in patient conditions, ensuring timely interventions.

In terms of connectivity, these models facilitate seamless integration with hospital networks and electronic medical records (EMR) systems. This interoperability enhances the overall workflow in a clinical environment, allowing patient information to be shared efficiently amongst healthcare teams.

Additionally, the Philips M1351A and M1353A are designed with patient comfort in mind. They are lightweight and portable, making them suitable for diverse environments, from emergency departments to patient transport. Their rugged design ensures durability in high-paced settings, meeting the rigorous demands of modern healthcare.

In summary, the Philips M1351A and M1353A monitors serve as essential tools in contemporary medical practice, offering comprehensive monitoring capabilities, advanced technologies, and a user-centric design. These features collectively contribute to improved patient outcomes and enhanced overall healthcare delivery.