Compressors are widely used in industries. Many industrial facilities require compressed air for their process operations, and compressors with high motor power are utilized for generating compressed air.
The failure of compressors can result in significant downtime, extensive maintenance costs, unsafe working conditions, and loss of profitability.
Compressors are not energy-consuming monsters. With Fizix solutions, you can eliminate sudden shutdowns and energy losses.
According to the report by Global Efficiency Intelligence, referencing the International Energy Agency and the U.S. Department of Energy :
The 5 Benefits of Real-Time Monitoring
for Compressors are
Instant access to data for remote monitoring
Preventive
maintenance
Long-term compressor efficiency
Elimination of on-site
machine health checks
Cost savings
Our Solutions
for Compressor Health Monitoring
Vibration
OOne is used for tracking and detecting any defects that may cause vibration, such as shaft misalignment, imbalance, loose footing, bearing issues, etc.
Shaft Misalignment and Orbit
OGap is used to detect and monitor axial misalignment in the motor shaft or the shaft driven by the motor. Additionally, shaft orbit motion can be easily visualized graphically, especially in systems operating at low speeds.
Comprehensive Operational Data of the Compressor
OGate enables the collection of torque, current, energy consumption, and other information from the motor controller and transfers it to the cloud platform.
Motor Speed
ORev is used to determine the instantaneous motor speed in variable-speed motors.
Acoustic Listening
OSound is utilized for early-stage detection and monitoring of bearing faults and oil film issues.
Temperature
OThermal allows for tracking the overall temperature of the motor.
Oil/Bearing Temperature
OTemp is used to monitor the temperature of rotor bearing bearings or the oil in the oil bath.