Water and Sewage Monitoring

AXsensor - AXsensor Liquid Level Monitoring System
The AXsensor Liquid Level Monitoring System is designed for efficient and reliable water and sewage monitoring, utilizing advanced sensor technology. At the core of this system lies the unique WakeUp function, which activates when critical water levels are detected, allowing the measurement frequency to increase significantly, up to 30 times per hour. This feature ensures minimal energy consumption while maintaining high reliability, enabling battery life to extend from 3 to 10 years. The system uses low-frequency acoustic pulses with extremely low power consumption to measure liquid levels accurately. All electronics are situated outside of the tank, making installation straightforward and minimally invasive. Communication is facilitated via the Sigfox LPWAN network, with the device certified as Sigfox Ready, providing easy integration into existing systems for water management. This system is ideal for users who need dependable and energy-efficient monitoring in municipal or environmental settings.

AXsensor - Water and Sewage Monitoring System
AXsensor AB offers an advanced water and sewage monitoring system that leverages cutting-edge sensor technology. The system facilitates real-time tracking and analysis of water levels through a user-friendly, web-based dashboard. It provides high customization abilities, allowing users to select and arrange data columns according to their preferences. Key features include parameter setting for wake-up functions, alarm configurations for water levels, and comprehensive analytics that allow simultaneous data comparison from multiple sensors. The system also includes a map view based on Google Maps technology to visualize sensor locations with street view capabilities. Data is securely stored on Microsoft Azure, offering a 24-month running storage solution. AXsensor monitors are extensively utilized by municipalities, as evidenced by cases such as the implementations in Kristianstad and Gothenburg, illustrating their reliability in various real-world applications.