From periodic testing to continuous intelligence
Critical fluid events do not wait for the next scheduled inspection.
Your machine fluids are continuously carrying evidence about asset health.
Periodic fluid analysis remains valuable, but manual samples capture isolated moments in time. Contamination, abnormal wear, fuel dilution, coolant leakage and fluid degradation can begin and progress between scheduled samples.
SmartOil® G3 closes that information gap through AUTONOMOUS FLUID INTELLIGENCE™. The modular platform continuously observes selected fluid properties, machine context and rates of change—providing earlier visibility into developing risk and more time to act.
The objective is not simply to collect more data. It is to convert fluid and operating information into actionable intelligence for Operations, reliability engineering and maintenance teams.
Modular Platform

integrated platform combines:
Real time fluid condition monitoring and trending
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Engine oil viscosity (cSt)
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Coolant chemistry
Fuel contamination analytics
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Fuel injector health proxy
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Indication of fuel dilution
Autonomous forensic-grade, ASTM-ready fluid sampling
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Exception Samples™
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Autonomous fluid samples (per user-defined programmed cadence), elimination-of-live-work (ELW)
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Manual fluid samples
GPS/LTE fleet telemetry
Edge-AI anomaly detection
LoLM/LLM predictive analytics
A CLOSED-LOOP RELIABILITY WORKFLOW
Sense. Understand. Predict. Respond. Verify.
SmartOil G3™ combines continuous sensing with autonomous decision logic. The objective is not simply to collect more data—it is to create earlier, better-supported maintenance decisions.
01
Continuous Fluid Sensing
Monitors selected lubricant, coolant and fuel properties at operationally relevant intervals to identify abnormal change, contamination and fluid degradation.

Problems addressed. Solutions delivered.
Close the blind spots between fluid events and maintenance action.
SmartOil® G3 is designed around the operating problems customers experience in the field—not around isolated sensor outputs.
PROBLEM
Long gaps between manual samples
A developing contamination or wear event may progress for days or weeks before the next scheduled sample is collected.
SMARTOIL® G3 SOLUTION
Monitors selected lubricant, coolant and fuel properties at operationally relevant intervals to identify abnormal change, contamination and fluid degradation.
PROBLEM
Fragmented condition data
Fluid data, machine information, alarms, laboratory results and maintenance records are often stored in separate systems.
SMARTOIL® G3 SOLUTION
SmartOil® G3 correlates fluid, machine, operating and laboratory information to create a more complete and time-synchronized view of asset health.
PROBLEM
Unplanned equipment failures
Rapidly developing fluid or mechanical conditions can lead to secondary damage, lost production and emergency repair costs.
SMARTOIL® G3 SOLUTION
The G3 EDGE-AI BRAIN™ analyzes multiple data streams to provide earlier warning and support intervention before the condition escalates.
PROBLEM
Labor-intensive manual sampling
Routine sample collection consumes technician time and may require personnel to work near hot, pressurized or operating equipment.
SMARTOIL® G3 SOLUTION
Autonomous sampling improves consistency, reduces repetitive field tasks and supports elimination-of-live-work objectives.
Built for critical industries
One technology platform. Multiple industries. Global applications.
Configure SmartOil® G3 around the asset, fluid system, operating environment and business risk.

01
Data Center Power Generation
Continuous natural-gas power generation and emergency diesel backup generation supporting high-availability facilities.
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Natural-gas generator sets
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Emergency diesel generator sets
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Engine oil and coolant surveillance
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Fleet-level condition standardization

02
Open-Pit and Underground Mining
Mobile production equipment operating under high loads, shock, vibration, contamination and temperature extremes.
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Haul trucks
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Hydraulic excavators
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Wheel loaders
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Underground mobile equipment

03
Pulp and Paper
Condition intelligence for critical lubricating and hydraulic systems on tissue and containerboard paper machines.
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Paper-machine bearings
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Circulating-oil systems
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Hydraulic power units
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Gear drives and auxiliaries

04
Marine
Onboard monitoring and autonomous sampling for propulsion, auxiliary power, cooling, gearing and fuel systems.
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Main propulsion diesel engines
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Auxiliary diesel engines
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Marine generator sets
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Gearboxes, coolant and fuel

05
Locomotive Engines
Fluid and machine intelligence correlated with engine load, operating hours, route, location and environmental conditions.
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Engine lubricating oil
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Cooling systems
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Diesel fuel quality
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Scheduled and exception samples

06
Natural Gas Compression
Continuous condition intelligence across remote compression stations and distributed natural-gas infrastructure.
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Stationary natural-gas engines
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Reciprocating compressors
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Compressor lubricants
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Cooling and auxiliary fluid circuits
Designed for deployment across North America, Latin America, Europe, Australia, Africa, the Middle East and Asia-Pacific—from controlled power-generation facilities to remote mines, marine engine rooms, rail corridors and natural-gas infrastructure.
Protected technology
A layered intellectual-property strategy protects both the physical system and its intelligence.
SmartOil® G3 represents years of engineering development, field evaluation and application-specific knowledge. The technology is protected through a combination of formal IP rights and proprietary know-how.
U.S. Patent Nos. 10,466,152 and 11,761,946; other U.S. and international patents pending.
U.S. and international patents and patent applications
Trade secrets and system architecture
Fluid-condition models and decision logic
Sampling, sensing and dosing methods
Registered and common-law trademarks
Proprietary Edge-AI algorithms
Application-specific datasets
Integration and deployment know-how
Reliability becomes financial performance
EBITDA
Operational outcomes to enterprise value
Improve EBITDA by protecting uptime, productivity and maintenance resources.
Unplanned downtime affects more than the maintenance budget. It can reduce production, interrupt customer commitments, increase overtime, accelerate spare-parts consumption and shorten the useful life of high-value equipment.
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Reduce unplanned production losses
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Lower emergency maintenance costs
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Extend component and lubricant life
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Reduce unnecessary fluid changes
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Avoid catastrophic and secondary damage
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Optimize labor and spare-parts planning
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Improve capital-asset utilization
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Standardize reliability practices

U.S. Patent Nos. 10,466,152 and 11,761,946; other U.S. and international patents pending.
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