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What is Water Yield Improvement System?

The Water Yield Improvement System aims to efficiently operate and manage
water supply facilities from pipeline accidents such as leaks and water quality contamination
during the water supply process. It targets the entire process of water supply systems including water transmission,
distribution, and supply to improve water yield and management. This system involves real-time monitoring
and control of key factors such as flow rate, pressure, and water quality through digital-based
real-time monitoring and remote control systems.

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SWNM(Smart Water Network Management) System

SINNOTECH specializes in RTU products optimized for monitoring and controlling
small-scale facilities with 40 or fewer points, and green products RTU with real-time data collection
and transmission capabilities using solar renewable energy. These are applied in various fields such as local water
supply modernization projects, smart monitoring projects, and water quality monitoring projects
in water supply systems.

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System Process

The SWNM system is a remote monitoring and control system that performs real-time
monitoring and control by connecting wirelessly or wired to the central server system for
real-time monitoring of flow rate, pressure, and water quality data at major points in the water supply system pipeline.
Sinnotech develops RTU models optimized for small-scale facility monitoring and control at every stage from design to maintenance.

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Area of Application

Area of Application
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Water Yield Improvement System

A remote monitoring system for securing key factors such as flow rate, pressure, and water quality necessary for calculating water yield in small blocks where zone isolation monitoring maintenance projects have been completed.

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Water Supply Network Monitoring System

A digital-based real-time remote monitoring system for scientific and systematic operation and management of flow rate, pressure, and water quality, targeting the entire process of water supply systems including water transmission, distribution, and supply.