Key Performance Benefits
Next-generation oil-soluble PAG technology engineered for extreme service life and clean compressor operation
Up to 12,000-Hour Drain Interval
Designed for extended drain intervals of up to 12,000 operating hours, significantly reducing oil change frequency, maintenance costs, and compressor downtime under demanding industrial conditions.
Varnish-Free & Self-Cleaning Operation
Advanced oil-soluble PAG chemistry prevents varnish formation and actively dissolves existing varnish, keeping screws, coolers, and internals clean even at high temperatures.
Seamless Changeover Compatibility
Fully miscible with mineral oil, PAO, and ester-based lubricants, allowing easy upgrades to PAG technology without flushing or cleaning, even if changeover procedures are not perfect.
Outstanding Lubricity & Wear Protection
Exceptional lubricating performance ensures long compressor lifetime, reduced wear, and stable operation across the entire service interval.
Superior Thermal & Oxidation Stability
High thermal conductivity and excellent thermo-oxidative resistance result in cooler running compressors, stable viscosity, and reliable performance in both low and high temperature environments.
Hydrolytically Stable & Environment-Aware
100% hydrolytically stable, extremely low oil carry-over, and formulated with readily biodegradable base stocks, making it ideal for harsh environments and poor air quality conditions.
Why Choose OCP Oil Ultra 12000-46?
| Feature | OCP Oil Ultra 12000-46 | Premium PAG oils | Details |
|---|---|---|---|
| Up to 12,000h Drain Interval | Extended service life reduces oil changes and downtime | ||
| PAG-Based Lubrication Technology | Advanced oil-soluble PAG chemistry beyond PAO limitations | ||
| Varnish-Free & Self-Cleaning Operation | Prevents and dissolves varnish deposits in screws and coolers | ||
| Fully miscible with mineral oil, PAO, and ester-based lubricants | Easy Upgrade from PAO (No Flushing required) | ||
| High-Temperature Stability | Reliable performance under severe thermal conditions | ||
| Low Foam Tendency (ASTM D892) | Stable foam control improves air/oil separation | ||
| Hydrolytic Stability | Maintains performance in humid or poor air quality environments | ||
| Extremely Low Oil Carryover | Cleaner compressed air and reduced oil consumption |