• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Compact Data Center Modular UPS Input Current Surge Suppression Solution

Rockwill
17yrs 700++ staff 108000m²+m² US$150,000,000+ China

Core Pain Point:​ Modular UPS units, during capacity expansion or sudden load changes, can cause sharp surges in input current at the generator end, threatening power distribution safety and increasing harmonic pollution.

Solution:​ Utilizes laminated iron core input filter reactors to provide efficient, compact, and intelligent current surge suppression protection for modular data centers.

Core Components & Advantages

  1. Equipment Selection - Performance Cornerstone
    • Laminated Iron Core Reactor:​ Specifically designed for power filtering and current suppression. Laminated core construction significantly reduces eddy current losses and noise, offering high linearity and anti-saturation characteristics, effectively handling large-magnitude current surges.
  2. Space Optimization - Ultimate Compactness (Core Advantage)
    • Slimline Design (600×400×300mm):​ Breaks through traditional reactor size limitations, seamlessly adapting to the limited space within modular UPS cabinets or power distribution cabinets.
    • Ultra-High Power Density (≥3kVar/dm³):​ Reduces volume by 40%+ compared to conventional reactors with equivalent performance, enabling high-density data center deployment.
  3. Intelligent Thermal Management - Reliable Safeguard
    • Built-in High-Precision RTD Temperature Sensors:​ Real-time monitoring of winding hot-spot temperatures.
    • Intelligent Fan Control:​ Automatically starts/stops cooling fans based on temperature thresholds, balancing operating efficiency and temperature rise to eliminate overheating risks and extend equipment lifespan.
  4. Exceptional Efficiency - Loss & Consumption Reduction
    • Ultra-Low No-Load Loss (<0.3% Rated Power):​ Significantly reduces operating electricity costs, complying with green data center efficiency standards.
    • High-Efficiency Harmonic Filtering (>90% Total Harmonic Current Attenuation Rate):​ Effectively suppresses characteristic harmonics (such as 5th, 7th, 11th) on the UPS input side, improving input power quality and protecting the upstream grid and generator.

Solution Value

  • Enhanced Safety & Reliability:​ Forcefully suppresses current surges, ensuring stable operation of UPS and upstream equipment.
  • Liberated Space:​ Slim design frees up valuable server room real estate, supporting higher equipment density.
  • Intelligent Operations:​ Automated thermal control reduces manual intervention and enhances system manageability.
  • Energy Saving & Consumption Reduction:​ Combines low losses and efficient filtering to reduce operational costs and carbon footprint.
  • Improved Power Quality:​ Significantly enhances harmonic indicators on the input side, boosting the overall health of the power distribution system.
07/25/2025
Recommended
Solution for Medium-Voltage Motor Control and Protection Using Vacuum Contactor-Fuse (VCF) in a Coal Conveying System
Project BackgroundA coal conveying system comprises 15 belt conveyors driven by medium-voltage motors. The system operates under complex conditions, with motors often subjected to heavy loads and frequent starts. To address these challenges and achieve effective control and reliable protection during motor startup, the project comprehensively adopts Vacuum Contactor-Fuse (VCF) combination devices for the 6kV medium-voltage motor power distribution. This solution details the technical features,
ABB Vacuum Contactor KC2 Power Supply System Technical Transformation Plan
Issue Overview​The 10kV air compressor starting system of a company utilizes the ABB vacuum contactor KC2 as the control component for the operating circuit. The dedicated wide-voltage power supply module paired with this contactor presents the following issues:​Frequent failures: The power supply module fails to properly transition the voltage from 300V to 12V, resulting in fuse blowouts.​Poor heat dissipation: Enclosed installation of the module leads to insufficient heat dissipation, acceler
Dedicated Vacuum Contactor Solution for Port Shore Power Systems
I. Background and Challenges​Shore power systems have become core technical equipment for ports to reduce carbon emissions and noise pollution. However, these systems face two major challenges in the harsh operational environment of ports:​Severe Environmental Corrosion: High humidity and salt spray in port areas cause serious corrosion to metal components and enclosures of electrical equipment, significantly impacting electrical lifespan and operational reliability.​High Switching Requirements:
Vacuum Contactor Industrial Power Control Solutions
Application Background and Pain Point Analysis​In modern industrial manufacturing power control systems, traditional contactors exhibit significant limitations under specific operating conditions:• ​Frequent Start-Stop Operations: Traditional contactors have limited mechanical lifespan, with frequent operations leading to coil burnout and mechanical jamming.• ​Poor Adaptability to Harsh Environments: Contacts are prone to oxidation in dusty environments, resulting in increased contact
Seed Inquiry
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.