Key Advantages:
Equipped with a 32-bit high-performance, low-power M0+ microprocessor; • Utilizes non-magnetic/dipolar Hall sensors for flow measurement; • Dedicated carrier network, big data connectivity, and reliable communication; • Supports remote data acquisition, remote monitoring, and real-time alerts; • Maximum support for storing daily usage details for up to 6 months; • Maximum support for storing monthly usage details for up to 36 months; • Supports local infrared communication for streamlined operation and maintenance; • IP68 waterproof rating; • Multiple fault detection functions to ensure reliable water supply and consumption; • Provides comprehensive production testing software, along with an NB-IoT water meter commercial platform or dynamic library; • Supports bidirectional flow monitoring; • Features a data retransmission function, with a default retransmission interval of 20 minutes and up to 2 retransmission attempts; • The module and base meter feature a split-architecture design, enabling plug-and-play functionality; • Includes reverse water flow alarm functionality.
1. The electromechanical separated structure divides the entire meter into a remote transmission module and a base meter module; the remote transmission module does not compromise the metering accuracy of the base meter, while simplifying maintenance operations. 2. A wide range of mechanical water meters can be selected (including wet semi-liquid-sealed water meters, dry anti-freeze crack-resistant water meters, high-sensitivity drip water meters, and other models with varying accuracy grades). 3. The minimum readable volume per meter reading can reach 100 L. 4. The remote transmission module features low power consumption; when powered by the ER18505 battery, it provides continuous power supply for over 6 years, ensuring no data loss. 5. The remote transmission module adopts a fully sealed design and assembly, achieving an IP68 protection rating. 6. The communication range in open environments can reach 2–5 km, eliminating the need for cabling and simplifying installation. 7. The meter reading system can be integrated with the water utility's revenue collection system without disrupting the utility's existing ecosystem. 8. The concentrator requires only one IoT SIM card capable of transmitting 30–50 M of flow data to operate stably; its low operating costs significantly reduce long-term operational expenses.