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Direct Winding Hot Spot Monitoring

 

 

Direct Winding Hot Spot monitoring in reactors helps in Performance Optimization, effective Cooling Control and Life-Time Extension.

 

Rugged Monitoring hotspot monitoring system is designed precisely to measure the hot spot temperature of reactors. Fibre optic temperature monitoring enables appropriate measurement of hot spots by directly sensing the temperature of the windings. Overall health and life of the reactors are determined by appropriate and reliable temperature measurement.   

Energy Related Solutions
R501

Rugged, Most Versatile and Multi-Channel monitoring solution, Capable of Monitoring One or Multiple Assets: Basic Asset Monitoring, Fiber Optic Temperature Monitoring, Partial Discharge, Bushing, OLTC, Load, Power, and more.

T301

T301- Rugged, Compact and Robust Temperature Monitoring System for Continuous Online Monitoring and Testing.

LSENS-R
LSENS-R

A multiuse fiber optic temperature sensor designed for a wide range of applications, especially for the use in demanding applications. The sensor offers complete immunity to RFI, EMI, NMR and microwave radiation. The standard temperature sensor has a response time of 0.2 s. With a standard deviation of +/-0.2 °C it allows for precise and repeatable measurements.  A multiuse fiber optic temperature sensor designed for a wide range of applications, especially for the use in demanding applications. The sensor offers complete immunity to RFI, EMI, NMR and microwave radiation. The standard temperature sensor has a response time of 0.2 s. With a standard deviation of +/-0.2 °C it allows for precise and repeatable measurements.  

LSENS-T
LSENS-T

A multiuse fiber optic temperature sensor for measurement in a wide range of demanding applications where immunity to electromagnetic fields and explosion proof requirements are mandatory. 

LSENS-U
LSENS-U

A Heavy-duty fiber optic temperature sensor for measurement in a wide range of demanding applications where robustness of sensors, immunity to electromagnetic fields and explosion proof requirements are mandatory.

TSENS-K
TSENS-K

Precisely designed for probe robustness and ease of installation to get reliable, long-term temperature data, essential for accurate transformer aging evaluation. Rugged Monitoring Tsens probes have been designed and built to incorporate in transformers to give precise results (direct measurements of temperature). The sensing technology is based on the proven zero-drift GaAs technology. They are completely built using first quality materials, with very high dielectric strength, to provide accurate temperature readings of transformers, which is essential to a good knowledge of transformer aging rate.

System Architecture
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