Magnetic Bearing Centrifugal Chiller

SINCO Authorized Agent
Magnetic Bearing Centrifugal Chiller
High Efficiency · Energy Saving · Stable · Smart Operation

Engineered with magnetic levitation bearings and high-efficiency centrifugal compression technology. Non-contact operation eliminates friction wear, significantly reducing energy consumption and maintenance costs to deliver a ultra-reliable central HVAC solution for large commercial buildings and industrial applications.

Ultra High Efficiency
IPLV Up to 10.0+
Stable & Reliable
Frictionless & Long Life
Low Noise
Low Vibration & Noise
Smart Control
Multi-Unit Remote Ctrl
Magnetic Bearing Centrifugal Chiller
IPLV Efficiency
10.0+
kW/kW Max Up to
Part-Load Efficiency
30%+
vs Traditional Chiller
Noise Level Down To
73~78
dB(A)
Cooling Capacity
100~2,000
RT
Max COP Up To
6.0+
Full Load
WHY MAGNETIC BEARING
Lower Load, Higher Efficiency
A Game-Changing Energy Saving Logic

Traditional fixed-frequency chillers suffer significant efficiency drops at part-load. Magnetic bearing centrifugal chillers eliminate friction loss via oil-free magnetic levitation. Paired with VFD centrifugal compression, rotational speed and power loss decrease at lower loads—making part-load efficiency even superior to full-load performance. Since building HVAC systems operate at part-load ~90% of the year, this is the key to massive electricity savings.

  • Oil-Free Magnetic Levitation Bearings — Eliminates friction and oil changes for quieter, longer-lasting operation
  • Lubricant-Free System — No oil film degradation or oil-return losses, ensuring long-term stable heat exchange
  • Soft Start & Low Surge Current — Reduces startup inrush current, easing contract capacity and grid burdens
  • Long Lifespan Engineering — Zero contact wear on rotating parts dramatically lowers maintenance costs and downtime risks
Part-Load Efficiency Comparison kW/RT (Lower is Better)
25%50%75%100%
Load Ratio
Magnetic Bearing Chiller Traditional Fixed-Freq. Chiller
* Illustrative curve. Actual efficiency subject to catalog and site operating conditions.
Model Specifications Overview
Model Cooling Capacity (RT) COP (kW/kW) IPLV (kW/kW) Refrigerant Power Supply Dimensions (mm) Weight (kg)
SCW-100 100 6.1 10.0 R-134a 3Φ/380V/60Hz 2,350×980×1,550 1,650
SCW-150 150 6.3 10.0 R-134a 3Φ/380V/60Hz 2,450×1,050×1,650 1,900
SCW-200 200 6.2 9.9 R-134a 3Φ/380V/60Hz 2,700×1,200×1,750 2,250
SCW-300 300 6.1 9.7 R-134a 3Φ/380V/60Hz 3,200×1,400×1,950 3,100
SCW-400 400 6.0 9.6 R-134a 3Φ/380V/60Hz 3,400×1,600×2,100 3,900
SCW-500 500 6.0 9.6 R-134a 3Φ/380V/60Hz 3,800×1,700×2,250 4,650
SCW-800 800 5.9 9.5 R-134a 3Φ/380V/60Hz 4,600×1,900×2,300 6,500
SCW-1000 1,000 5.9 9.5 R-134a 3Φ/380V/60Hz 4,900×2,000×2,350 7,200
SCW-1500 1,500 5.8 9.4 R-134a 3Φ/380V/60Hz 5,600×2,200×2,550 9,800
SCW-2000 2,000 5.8 9.4 R-134a 3Φ/380V/60Hz 6,200×2,400×2,700 12,500
* Note: Figures above serve as reference values under standard working conditions (Chilled water inlet/outlet 12/7°C, cooling water inlet/outlet 30/35°C). Refer to official catalog.
Target Applications
Commercial Buildings
Commercial Buildings
Office Towers, Malls
Healthcare Institutions
Healthcare Institutions
Hospitals, Care Centers
Public Infrastructure
Public Infrastructure
Airports, Stations, Halls
Industrial Applications
Industrial Applications
Electronics, Chemical Plants
High-Tech Data Centers
High-Tech Data Centers
Data Centers, Precision HVAC
Downloads & Documentation
PDF
Product Catalog
↓ Download
PDF
Technical Manual
↓ Download
PDF
Installation Guide
↓ Download
PDF
Maintenance Manual
↓ Download
DWG
CAD Dimensions
↓ Download
PDF
Certifications
↓ Download
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