ContPerson : Rosa Liu
Numéro de téléphone : +86 18975107916
Quel est l'app? : +8618975107916
August 28, 2026
Reliable power is essential in healthcare facilities, where interruptions can affect medical equipment, patient monitoring systems, data security, and emergency operations. To improve backup power reliability and reduce the maintenance challenges associated with traditional lead-acid batteries, a hospital deployed a rack-mounted LiFePO₄ battery energy storage system for critical backup power applications.
The solution provides stable and reliable energy storage for essential hospital loads, including medical monitoring equipment, laboratory devices, emergency lighting, network communication systems, and other critical infrastructure.
For this project, CLF supplied a 48V 100Ah rack-mounted LiFePO₄ battery, providing approximately 4.8 kWh of energy capacity per battery unit.
The battery was designed to deliver high power output when backup power is required:
| Parameter | Value |
|---|---|
| Nominal Voltage | 48V |
| Nominal Capacity | 100Ah |
| Rated Charging Current | 50A |
| Maximum Charging Current | 100A |
| Rated Discharge Current | 100A |
| Maximum Continuous Discharge Current | 150A |
| Communication | RS485 / CAN |
| Battery Chemistry | LiFePO₄ |
Its high continuous discharge capability allows the battery system to support multiple critical loads simultaneously during grid power interruptions.
The battery is equipped with an intelligent Battery Management System (BMS) that provides comprehensive monitoring and protection functions.
Through RS485 and CAN communication, the battery can communicate with the hospital's energy management or monitoring platform. Key operating parameters—including voltage, current, temperature, and State of Charge (SOC)—can be monitored in real time.
The BMS also provides multiple protection mechanisms and abnormal-status alarms, helping maintenance personnel identify potential issues quickly and monitor battery operating conditions remotely.
The battery is designed to operate across a wide temperature range of -20°C to 60°C, providing reliable performance in different equipment-room environments.
Whether installed in an air-conditioned server room or an equipment area subject to significant temperature fluctuations, the battery can provide stable backup power performance under demanding operating conditions.
The standardized rack-mounted structure allows multiple battery units to be installed in a compact battery cabinet or equipment rack.
The modular architecture provides several advantages:
Compared with conventional lead-acid batteries, LiFePO₄ batteries offer higher energy density, lower weight, longer service life, and significantly reduced maintenance requirements. This makes them particularly suitable for facilities looking to modernize their backup power infrastructure.
When grid power is interrupted, the battery system works together with the inverter to provide backup electricity to designated critical loads.
In this hospital project, multiple rack-mounted battery units were integrated with inverter equipment and installed as a complete backup power system. Following on-site installation and commissioning, the system has operated reliably, demonstrating the practical value of rack-mounted LiFePO₄ energy storage for healthcare backup power applications.
By providing dependable backup energy, the system helps reduce the risks associated with unexpected power interruptions, including medical equipment shutdown, communication failures, and potential data loss.
The same rack-mounted LiFePO₄ battery architecture can be adapted to a wide range of backup power applications beyond healthcare, including:
Hospitals | Schools | Data Rooms | Commercial Buildings | Public Facilities | Communication Infrastructure
With customizable capacity, communication interfaces, BMS configuration, and system integration, CLF provides flexible OEM lithium battery solutions for different backup power and energy storage requirements.
This hospital project demonstrates how rack-mounted LiFePO₄ battery technology can provide a compact, scalable, and intelligent alternative to traditional lead-acid backup systems.
With high-power output, intelligent BMS protection, CAN/RS485 communication, wide-temperature operation, and modular installation, CLF's rack-mounted battery solutions help customers build safer and more reliable backup power systems for critical applications.
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