Philips Expression MR400 Monitoring System w/ Cart & IP5 Monitor
Product Description
The Philips Expression MR400 Monitoring System w/ Cart & IP5 Monitor is a high-performance MRI-compatible patient monitoring solution, designed to deliver accurate vital-sign tracking inside the MRI suite. Built for reliable ECG, SpO₂, NIBP, and respiratory monitoring, this system ensures safe, uninterrupted patient care during MRI scans up to 3.0T.
With its MR-safe cart, IP5 bedside monitor, and advanced wireless data transmission, the MR400 system supports hospitals, imaging centers, and radiology departments seeking seamless workflow, clinical accuracy, and compliance in demanding MRI environments.
Key Features
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MRI-compatible patient monitoring up to 3.0 Tesla
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Provides ECG, SpO₂, NIBP, and respiration monitoring
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Includes IP5 bedside monitor for clear visualization
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Mounted on MRI-safe mobile cart for easy transport
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Advanced wireless communication between MRI room and control room
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Durable, shielded design for interference-free signal quality
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Ideal for radiology, MRI centers, and critical care
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Designed to improve workflow and patient safety in MRI settings
Technical Specifications
| Specification | Details |
|---|---|
| Model | Philips Expression MR400 Monitoring System |
| Monitor Included | Philips IP5 Patient Monitor |
| Compatibility | MRI up to 3.0T |
| Parameters | ECG, SpO₂, NIBP, Respiration |
| Display | High-resolution IP5 screen |
| Connectivity | Wireless MRI-safe communication |
| Power | Rechargeable battery + AC power |
| Cart Type | MRI-safe rolling cart |
| Use Case | MRI suites, Radiology departments |
| Manufacturer | Philips Healthcare |
| Weight | Approx. 165 lbs (system + cart) |
| Type | MRI-Compatible Patient Monitoring System |
The Philips Expression MR400 Monitoring System with Cart and IP5 Monitor is an advanced MRI-compatible patient monitoring solution engineered for accurate ECG, SpO₂, NIBP, and respiratory monitoring during MRI scans up to 3.0T. Designed for hospitals and imaging centers, it ensures safe, interference-free vital-sign tracking, improved workflow, and reliable performance in high-magnetic MRI environments.