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SHREEPOWERCONTROLSYSTEM 697b23225e69b501f3610df2 Products https://www.shripowercontrolsystem.com
Trinity Newton Plus
Trinity Newton Plus
COD not available
Electrical Relays

Trinity Newton Plus APFC Relays

INR 1500

Description

Product details

Trinity Newton Plus APFC Relays ₹ 1,500/PieceGet Latest Price Minimum Order Quantity: 10 Piece Product Brochure Number Of Poles 3 Pole Voltage 24 V Brand Trinity Relay Type APFC Relay Mounting Type Wall Mounted Frequency 50 Hz Is It CE Certified Ce Certified Current Rating 5A Model No. Newton Plus TRINITY has a versatile range of Power Factor Correction relays suitable for all applications. These controllers are available in economy version with minimum features, intelligent models with advance control algorithm and also sub-second switching models with solid state outputs. The entire series is economical user friendly and extremely reliable. Designs of these have been field proven for nearly fifteen years with more then 10000 units in service. Measurement All models are single phase measurement. APFCR & NEWTON+ needs a CT input from the mains as well as from Capacitor Bank (For VAR mode operation). NANOVAR take only one current input from the mains, since they have only basic PF control option. Voltage input is taken from phase & neutral. Ease of installation These controllers are user friendly and easy to program. There is no need to program C/K or bank sizes manually. Low current operation In VAR mode operation (Available in APFCR and NEWTON+) these controllers can sense as low as of 1% of the main load and take corrective action. PF control option requires minimum 2.5% of mains current for Newton+(Fast) and 6% of mains current for others. Intelligent Control The control parameter is VAR, and not PF. Target PF value is just used to calculate the capacitive VAR required to be added/removed to achieve the desired PF. e.g. If the target PF is unity, means that the target VAR in the system is zero. If system KVAR is 200 lagging, then the controller needs to add 200 KVAR of capacitor banks to reach zero VAR. The calculation of the reactive power in the system is done by taking instantaneous samples of all voltage and current waveforms, in all four quadrants. These values are then subjected to DSP techniques to add a frequency independent 90° phase shift to current samples. The product of these voltage and current samples then generate signed VAR value. VAR controller then takes into calculation the prevailing system KVAR, the prevailing bank KVAR and the bank sizes of each stage, and then switches ON/OFF the combination which is closest to the needed VAR. This assumes a balanced loading of the electrical system. For unbalanced load conditions, Accuvar model is re-commanded.

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