Automatic Power Factor Controller
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We are offering automatic power factor controller. Certain elctricals loads such as motors found in heavy machinneries ,can cause the electrical system to be highly inductive. This result in poor power factor . Poor power factor means higher energy losses which ultimately get converted into large electricity chrges. A simple solution to this problem is to balance this inductive load with equivalent capacitive load . Tis is achieved by connecting or disconnecting the capacitors to or from the system. Manual switching of these capacitors is not possible in case of rapidly fluctuating loads . So even in an environment of rapidly fluctuating loads to achieve the required power factor one may need an automatic power factor control device, called automatic power factor controller, to connect and disconnect these capacitors. Sycon 66 xx e3 controller is an automatic power factor controller used to control the power factor of the system . It can sense the powre factor of each individual phase in the three phase system and can switch the capacitors according to the requirement.
Power Factor Controller
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Features RISC Microcontroller based field proven design Three digit PF display Individual Stage LED indications Indication range from 0.5 lag to 0.5 lead User settable High and Low set points also in three digit User settable bank on time, bank off time, bank discharge time Settable Cyclic or FIFO switching sequence Settable No Load Compensation (NLC) For Transformer Auto or Manual Mode Selectable from outside switch For all settings the controller is protected by a password to avoid unauthorized access. Test mode for testing the wiring logic when there is no load current. Input voltage from phases R & Y Input Current from phase B CT All Electrical Connections on rear side Potential free relay contact outputs to operate the banks Relay contact rating is 5 amps at 230 VAC
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Automatic Power Factor Controller
18,150 Per Units
Thyristor Controlled Reactor
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1 Set(s) (MOQ)
Thyristor Controlled Reactors are major components of an SVC system. The power semi-conductors are used in an SVC scheme to generate harmonics, and need to be eliminated by harmonic filters. Therefore in an SVC system harmonic filter, Thyristor Controlled Reactors are employed as well. The reactive power consumption of our Thyristor Controlled Reactor can be continuously controlled by thyristor valves. These Thyristor Controlled Reactors are commonly used in combination with switched shunt capacitors to provide variable reactive power as required. To limit the inrush current of the capacitors, series connected damping reactors are inserted ahead of the capacitor bank of the Thyristor Controlled Reactor. Highlights Variable reactive power Limited inrush current of the capacitors Controlled reactive power consumption Variable reactive power