Description
20A Smart Energy Meter Switch | Sonoff POWR320D
Introducing the SONOFF POWR320D Smart Energy Meter Switch, a robust and intelligent solution designed to monitor and control your appliance’s energy consumption in real-time. With a substantial 20A capacity, this device is ideal for managing high-power devices, providing you with precise insights and comprehensive control over your home's energy usage.
Key Features:
High Power Capacity: Supports up to 20A, making it suitable for high-load appliances such as water heaters, air conditioners, and electric ovens.
Real-time Monitoring with LCD: Equipped with an LCD screen that updates every 5 seconds, providing real-time data on power, current, voltage, and cumulative power consumption.
Cumulative Energy Tracking: Monitor cumulative energy consumption over time, allowing you to analyze energy usage patterns and identify saving opportunities.
Overload Protection: Set power, current, and voltage thresholds. If any of these parameters exceed the set limit, the POWR320D will automatically cut off the connected device to prevent potential hazards.
Historical Data Storage: Stores up to 6 months of energy consumption data, accurate to the hour. This data can be exported to Excel for detailed analysis.
Voice Control Compatibility: Seamlessly integrates with Amazon Alexa and Google Assistant, allowing for hands-free control and monitoring.
Enhanced Performance: Powered by an upgraded ESP32 chip, offering improved processing speed and reliability.
Technical Specifications:
Model: POWR320D
Input/Output: 100-240V AC, 50/60Hz, Max 20A
Wi-Fi: IEEE 802.11 b/g/n 2.4GHz
Dimensions: 98 x 54 x 31 mm
Casing Material: PC V0 fire-retardant
Common Applications:
High-Power Appliance Management: Monitor and control appliances such as water heaters, air conditioners, and electric ovens for optimized energy consumption.
Energy Consumption Analysis: Gain insights into your home's energy usage patterns to identify savings opportunities.
Safety Assurance: Protect appliances from potential damage due to overload by setting appropriate thresholds.