Customer Support

053-741-0891

053-741-0893

Automated Building Control Business Division

053-817-8023

053-817-8026

Instrument Control Business Division

Opening hours

Weekdays
AM 09:00 ~ PM 6:00

Closed on Saturdays, Sundays, and public holidays

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Products

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  • Products
  • Chief Control System
  • Chief Control System

Chief Control System 01 Chief Control System

System configuration diagram

Water Treatment System (WICS) Features

  • GOOD SOFTWARE certified product for optimal water operation monitoring control and management (FIMS v1.0 (GS 18-0163))

  • Power analysis to manage faults for coil short circuit, open circuit, condensation, voltage imbalance and motor overheating

  • Facility diagnosis due to vibration, poor axial alignment, and bearing damage caused by earthquake and foundation deformation

  • Power analysis to manage faults for coil short circuit, open circuit, condensation, voltage imbalance and motor overheating

  • Remote monitoring and control of water treatment sites using LAN and LTE communication equipment.

RCS(REMOTE CONTROL STATION)

For measurement and control of water treatment facilities (water purification plant, sewage treatment plant, sewage treatment plant, etc.) and to control the operational status and measurement values of motors, valves, water quality instruments, and etc.

  • Type1

    Application: Water purification plant, sewage treatment plant, and wastewater treatment plant
  • Type2

    Application: Pressure, drainage, manhole pump station Classification and Specifications
    Model name Standard
    WICS-1000 / RCS(FI-R-02) AC380V 1.5KWx 2EA
    WICS-1000 / RCS(FI-R-03) AC380V 2.2KWx 2EA
    WICS-1000 / RCS(FI-R-03) AC380V 3.75KWx 2EA
    WICS-1000 / RCS(FI-R-07) AC380V 5.5KWx 2EA
    WICS-1000 / RCS(FI-R-10) AC380V 7.5KWx 2EA
    WICS-1000 / RCS(FI-R-15) AC380V 11KWx 2EA

RCU(REMOTE CONTROLl UNIT)

  • Usage

  • Device for monitoring and controlling pumps or valves at a water treatment site by installing RCU-M and RCU-D on the control panel (RCS, MCC) and RCU-D on the pump and valve control panel (LOP), in order to monitor and control facilities in the treatment area.

  • Characteristics

  • Power Line Communication eliminates the need for control cables, saving costs and simple installation for smart monitoring and control

    Detection of mechanical abnormal vibration (earthquake, axis deformation, bearing abnormalies, structural abnormalies), overheating, etc. of the facility

    Analysis of harmonics and phase contained in power sources to detect electrical abnormalities such as motors (coil short circuit, open circuit, overheating, condenser result)

    Prevent leakage and flooding of facilities via external sensors (water level)

  • Main capabilities

    • Available measurements:

      3-phase voltage (V), 3-phase current (A), Effective power (W), Effective power (Wh), Effective power (Var), Reactive power (Var), Reactive power (Var), Power factor (PF), Frequency (Hz)
    • Relay functions:

      Overcurrent, ground fault, inverse image, short circuit
    • Display Functions:

      Alarms, active time, fault logging, compensation for instantaneous power failure and restart function, various high-frequency function rates
    • Prediction of capacitor anomalies for power factor improvement:

      pump and valve functions, seven digital input points, five digital output points
    • Communication Functions:

      RS-485 Communications, Power Line Communication

Effect

Saved 1,525,000 won per pump or valve

25% in savings

  • 165 water industry cluster water purification pumps and valves in plants (20,000 TON/day throughput)

  • 131 pumps and valves at the Hyeonpung Sewage Treatment Plant (25,000 TON/day throughput)

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