Suppliers Canada Nanoprecise Sci Corp
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Nanoprecise Sci Corp

Automated Predictive Maintenance
Canada
Edmonton
2017
Private
< $10m
11 - 50
Open website
Nanoprecise has created a "patent-pending" solution (hardware + software) that combines physics, material science, and data analytics to diagnose issues with machinery and detects anomalies, characterizes the faulty components and predicts the "Remaining Time to Failure." Since Nanoprecise was founded in Dec 2017, it has customers spanning across Oil & Gas, Mining, Utilities, HVAC & Infrastructure sectors.
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Nanoprecise's sensor is the first sensor in the world that extracts RPM, vibration, sound, temperature & humidity information, all from one sensor. The software (which is built on AI algorithms that are only limited to research papers until now) analyzes the data from various sensing elements and achieves Anomaly Detection, fault characterization & remaining useful life prediction. This end to end solution can be deployed cost-effectively and can be utilized on any machine in the world in any industry.
Nanoprecise has developed VibrationLF, a Predictive Maintenance solution incorporating wireless sensors based on nanotechnology and sophisticated Machine Learning technology to accurately diagnose faults in rotating equipment and provide a forecast time to replacement, allowing maintenance teams to plan their maintenance activities.
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AltaSteel, Hindustan Zinc, Iffco, BJ
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Nanoprecise Sci Corp is a provider of Industrial IoT sensors technologies, and also active in the chemicals, and utilities industries.
Technologies
Sensors
Humidity Sensors
Temperature Sensors
Vibration Sensors
Use Cases
Machine Condition Monitoring
Industries
Chemicals
Utilities
Nanoprecise Sci Corp’s Technology Stack maps Nanoprecise Sci Corp’s participation in the sensors IoT technology stack.
  • Application Layer
  • Functional Applications
  • Cloud Layer
  • Platform as a Service
    Infrastructure as a Service
  • Edge Layer
  • Automation & Control
    Processors & Edge Intelligence
    Actuators
    Sensors
  • Devices Layer
  • Robots
    Drones
    Wearables
  • Supporting Technologies
  • Analytics & Modeling
    Application Infrastructure & Middleware
    Cybersecurity & Privacy
    Networks & Connectivity
Technological Capability
None
Minor
Moderate
Strong
Number of Case Studies3
Detecting Cavitation And High Vane Pass Frequency For Pumps
The Condensate Cooling Water (CCW) pump, one of the critical pumps in maintaining steadystate operations, is a horizontal vane pump operating at up to 1650 m3/hr with a discharge pressure of 9 MPa (62 psi) at 986 rpm. Each day this pump is offline costs the plant $250,000 in lost revenue and each failure costs tens of thousands of dollars to execute an unplanned repair. Thus, Larsen & Toubro (L&T) really needed a predictive maintenance solution to detect faults at an early stage and provide a reliable prediction of Remaining Useful Life (RUL)
Detection of a Bearing Outer Race Failure on a critical pump saved downtime cost
The process condensate pump, one of the critical pumps in the manufacturing process, has a history of failures every 6 to 12 months. It is a centrifugal pump operating at 3000 rpm with a discharge pressure of 28 MPa (400 psi). Each day this pump is offline, it costs the plant as much as $145,000 in lost production and each failure costs tens of hundreds of dollars to execute an unplanned repair. Nanoprecise Sci Corp was asked to implement a predictive maintenance solution in order to detect faults at an early stage and provide a reliable prediction of Remaining Useful Life (RUL).
Automatic monitoring of acoustic emission saves catastrophic failure
Traditional measurement tools are ineffective when it comes to slowly rotating equipment. There are faults like Bearing Failure, Ring Plugging, Gear Tooth Crack and many more which can lead to the shutdown of machines. 1 minute of downtime cost the company $10. RingPluggingis a very common issue which Pinnacle Pellet was facing very frequently due to diverse feed quality into the machines. Product ring plugging can be detected as sound levels increase in specific roller bearings.
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