Bonita Springs, Florida

Water Treatment Plant

Expansion of treatment capacity to handle population growth forced utility to draw from different, more saline souce, requiring reverse osmosis treatment.

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Omohundro, Tennessee

Water Treatment Plant

Revere has performed numerous projects providing controls for filters, pumps, and motors in this plant, which was originally built in the 1930s.

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Winter Park, Florida

Consumers Water Treatment Plant

Revere provided process instrumentation and control systems throughout this central Florida facility.

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Rome, Georgia

SCADA System Upgrade

Revere helped the City of Rome integrate new Motorola MOSCAD technology with an existing SCADA system that used older technology INTRAC RTUs.

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Additional Representative Projects

 

Covington, Tennessee

Plant Monitoring and Control System

This project included a SCADA panel for plant machinery interfaced with an existing panel of conventional controls, a retrofit of the existing main control panel to incorporate SCADA control of existing and new machinery, interface PLC control for dechlorination facility, and a complete digital subsystem involving 100 I/O points.

 

Dyersburg, Tennessee

Complete Water Plant Monitoring and Control System

This half-million-dollar project involved five RTU panels; three control panels and two dual filter consoles; extensive field instrumentation consisting of particle counters, turbidimeters, differential pressure transmitters, venturi flow meters, pH analyzers, and streaming current monitors; plus a computer and information system of workstations connected with a Windows NT LAN.

 

Monterey, Tennessee

WTP Monitoring and Control System with Radio Telemetry

In addition to a control system incorporating 100 I/O points, this project provided the City's water treatment plant with a main control panel, two dual filter operating consoles with RTUs, and four other RTUs communicating VHF radio.

 

Milan, Tennessee

Complete Water Plant Monitoring and Control System

This project had an extensive computer system involving three PCs communicating via MDS radio, a laptop for dial-up maintenance, and two remote Ethernet routers for radio redundancy. It also included a central control panel, three remote elevated tanks, and five remote wells, with the tanks and wells communicating to the central site at 928 MHz.

 



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