Mindray 050-002003-01 UMEC 12 mainboard 051-002497-00 UMEC10 patient monitor mainboard
The Mindray 050-002003-01 Mainboard is the core logic component engineered for the Mindray uMEC10 and uMEC12 bedside patient monitors. Acting as the central nervous system of the device, this high-integration motherboard orchestrates the acquisition, processing, and display of critical physiological data. It seamlessly interfaces with internal sensor modules and external peripherals to deliver real-time hemodynamic monitoring. Designed to meet rigorous medical standards, this OEM replacement board ensures optimal system stability, making it the definitive solution for restoring full functionality to monitors experiencing boot failures or signal processing errors.
Applications
This mainboard is extensively utilized across diverse clinical environments, including Intensive Care Units (ICUs), Emergency Departments (ED), and General Wards. It serves as a vital spare part for biomedical engineering departments, enabling rapid repair and refurbishment of existing monitor fleets. By facilitating reliable continuous monitoring, it supports acute patient assessment, post-operative recovery, and routine vital sign tracking. Its robust design also ensures consistent performance during intra-hospital transport, where equipment is subject to vibration and movement.
Technical Specifications
| Part Number |
050-002003-01/051-002497-00 |
| Feature |
Original and new |
| Warranty |
3 months |
| Packing |
1 unit per box |
| Color |
Green |
Key Features & Benefits
The 050-002003-01 offers superior signal-to-noise ratio performance, ensuring accurate readings even in electromagnetically complex environments. Its industrial-grade components are selected for long-term thermal stability, significantly extending the operational lifespan of the host monitor. The board features optimized firmware architecture for rapid boot times, allowing clinicians to access patient data immediately upon startup. Furthermore, its standardized layout simplifies installation, reducing device downtime and maintenance costs for healthcare facilities.
