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  • Company
    • About Us
    • Management
    • Career
    • News
    • Events
    • Intellectual Property
  • Markets
    • Heavy Industry
    • Power Grid
    • Transportation
    • Renewables
    • Oil & Gas
  • Products
    • Measure - PMU
    • Control
    • Switch
    • Merging Units
    • Relays
  • Support
    • Download
    • RightWON FAQ
    • SynchroTeq FAQ
  • Contact Us
  • Tweeter
  • Linkedin

CONTACT US +1 450-679-0003

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SWITCH 

Inrush Current Limiters for Power Transformers


For smooth and inrush-free connections of on-shore/off-shore Renewable Energy Sources to HV and MV power grids.

SynchroTeq calculates residual fluxes in HV-MV power transformers (in WTGs, wind farms, PV solar inverters, energy storage systems, substations, STATCOM modules and more) and determines the optimal strategies for energizations, regardless of switchgear make.

SynchroTeq controls single-pole operated (independent poles) or three-pole operated (simultaneous poles/gang operated) switchgears for a significant reduction of inrush currents and voltage disturbances while energizing HV-MV transformers.

SynchroTeq installs in new and legacy power plants. A compact and simple addition to new and existing switchgears, it is a smart upgrade for power plants where meeting grid code compliancy remains an issue.

Advanced Fast-Switching for VAR Compensation


NEW: a patented solution for the ultra-fast switching of HV-MV capacitors in standalone configurations as well as in SVC or hybrid-STATCOM systems.

Allowing for close-open-close (COC) cycles in bursts within milliseconds, VIZIMAX‘s SynchroTeq takes into account the trapped charge in partially discharged capacitors for a secure and transient-free switching at all times. No need to wait to fully discharge your capacitor banks. 
SynchroTeq achieves the instantaneous restoration of voltage support or reactive capacities after a blackout, and improves VAR Compensation designs.

SynchroTeq is intended for mechanically switched HV-MV capacitors, shunt reactors, filters and cables. Avoid destructive current and voltage transients while keeping your assets healthy, increasing their lifecycles and improving power quality delivery to clients.

 

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