Best Whole Home Energy Monitors (2026)
Your utility bill tells you how much you spent. An energy monitor tells you where it went. These are the two worth buying for most homes.
Our Picks
| Feature | Emporia Vue 3 | Refoss EM16P |
|---|---|---|
| Price (Amazon) | ~$200 (16-sensor kit) | ~$200 (coupons often available) |
| Main CT Sensors | 2x 200A | 2x 200A |
| Branch Circuit Sensors | Up to 16x 50A | Up to 16x 60A |
| Accuracy | ±2% | ±1% |
| Data Storage | Indefinite cloud (free) | 5 years daily-level, CSV export |
| Solar Monitoring | Yes (net metering) | Yes (net metering + zero feed-in) |
| Home Assistant | No native (ESPHome flash) | Native integration |
| Local Operation | No (cloud required) | Yes (no cloud needed) |
| App | Emporia (iOS, Android) | Refoss (iOS, Android) |
| Open API | No | Yes (MQTT, WebSocket) |
| Safety Certification | UL Listed | ETL (UL 61010) |
| WiFi | 2.4 GHz | 2.4 GHz (external antenna) |
| ENERGY STAR | Yes | No |
| Emporia Vue 3 on Amazon | Refoss EM16P on Amazon |
Emporia Vue 3
Refoss EM16P
Why Monitor Your Home’s Energy Usage
Your utility bill is a monthly summary. It tells you the total but not the breakdown. An energy monitor replaces that summary with real-time, circuit-level data showing exactly which systems are drawing power, how much, and when. That visibility changes the way most homeowners think about their electricity consumption.
The typical home has two or three circuits responsible for a disproportionate share of the bill. An aging HVAC system cycling more often than it should, a second refrigerator in the garage that runs continuously, a pool pump operating on a schedule that no longer makes sense. Without circuit-level monitoring, these waste sources are invisible. Your bill goes up and you assume rates increased. An energy monitor shows you the specific circuit, the specific hours, and the specific cost, which turns a vague feeling into an actionable fix.
For homeowners with solar panels, energy monitoring adds another dimension. You can see not just how much your panels produce but when production peaks relative to your consumption, how much you are sending back to the grid versus using directly, and whether shifting certain loads to midday hours would reduce your grid dependence. In areas where net metering rates are declining, this kind of visibility can directly affect the payback period of your solar investment.
Energy monitors also pair naturally with smart thermostats and home battery backup systems. A smart thermostat reduces your HVAC costs through intelligent scheduling, and an energy monitor shows you exactly how much that scheduling is saving. A battery backup system stores energy for outages or peak-rate periods, and an energy monitor helps you size the system correctly by showing your actual consumption patterns rather than relying on estimates.
How to Choose the Right Energy Monitor
The decision between these two monitors comes down to one question: do you want simplicity or control?
If you want simplicity
The Emporia Vue 3 is designed for homeowners who want to install a monitor, open an app, and immediately see useful data. The setup process walks you through sensor placement, the app starts showing real-time data within minutes of connecting to WiFi, and the cloud handles data storage and history without any configuration. If you do not run Home Assistant and do not have strong feelings about where your data lives, the Vue 3 will serve you well for years with no ongoing maintenance.
If you want control
The Refoss EM16P is designed for homeowners who want to own their monitoring stack. Native Home Assistant integration means your energy data flows directly into your existing smart home dashboards and automations without relying on a third-party cloud. The open API gives you programmatic access to every sensor reading. And the ability to run the entire system locally means your monitoring continues to work even if the manufacturer’s servers go offline or your internet drops. If you are the kind of homeowner who runs Home Assistant, maintains a local network, and prefers open protocols over proprietary apps, the EM16P was built for you.
For a detailed breakdown of every difference between these two monitors, including accuracy, solar features, data storage, and smart home integration, see our Emporia Vue 3 vs Refoss EM16P comparison.
Installation: What to Expect
Both monitors install inside your home’s electrical panel using clamp-on current transformer (CT) sensors that wrap around individual wires. No cutting, no splicing, no direct electrical connections to bus bars or breakers for the sensors themselves. The process typically takes 30 to 60 minutes for a 16-circuit installation.
The important safety note is that even with your main breaker turned off, the service entrance conductors entering the top of your panel remain energized. These are the thick wires coming from your meter, and they carry full utility voltage at all times. Both manufacturers recommend hiring a licensed electrician if you are not comfortable working near live conductors, and that is sensible advice. A professional installation typically costs one to two hours of an electrician’s time.
The Emporia Vue 3 connects to your home network over 2.4 GHz WiFi and requires an active internet connection to function. The Refoss EM16P also connects over 2.4 GHz WiFi but includes an external high-gain antenna for better signal in metal panel enclosures, and it can operate entirely on your local network without internet access.
One thoughtful feature of the Refoss EM16P is its software-based sensor flip. If you install a CT sensor in the wrong direction (a common mistake that causes negative readings), you can correct it in the app without reopening the panel. The Emporia Vue 3 requires physically reversing the sensor, which means another trip into the panel.
Solar Monitoring and Net Metering
Both monitors support solar production monitoring and net metering out of the box. You place CT sensors on your solar circuit breaker just as you would on any other circuit, and the monitor tracks production alongside consumption. The app shows net usage (grid consumption minus solar production) and lets you see exactly when your panels are producing more than your home is consuming.
The Refoss EM16P offers a feature that the Vue 3 does not: zero feed-in automation. When your solar panels are producing more electricity than your home is using, the EM16P can automatically trigger connected devices (through Home Assistant or smart plugs) to absorb the excess rather than sending it back to the grid. This is especially valuable in areas where utilities pay less for exported solar than they charge for consumed grid power, because using your own solar production directly is worth more than selling it back.
The Emporia Vue 3 takes a different approach to solar optimization through its broader ecosystem of smart plugs and EV chargers. If you use Emporia’s own smart devices, the app can coordinate charging schedules and appliance usage around your solar production. This works well within Emporia’s ecosystem but does not extend to non-Emporia devices without workarounds.
Data Storage, Privacy, and Long-Term Reliability
This is the area where the two monitors diverge most sharply, and for many homeowners, it is the deciding factor.
The Emporia Vue 3 stores all data in Emporia’s cloud. Minute-level data is retained for seven days, hourly data is retained indefinitely, and you can export your data from the app at any time. There is no subscription fee and no storage limit. The trade-off is that the monitor requires an internet connection to function. If your WiFi goes down, the Vue 3 stops reporting data until the connection is restored. If Emporia ever discontinues its cloud service, the hardware becomes non-functional without community firmware like ESPHome.
The Refoss EM16P stores up to five years of daily-level data and can operate entirely within your local network. Your data never has to leave your home. The local Web UI gives you access to current and historical readings through any browser on your network, and the open API (MQTT, WebSocket) lets you pipe data into any system you choose. If your internet goes down, monitoring continues uninterrupted. If Refoss discontinues its cloud service, the local functionality continues to work.
For homeowners who care about data privacy, the Refoss EM16P’s local-first architecture is a meaningful advantage. Your circuit-level energy data reveals a surprising amount about your daily habits: when you wake up, when you cook, when you run the dryer, when you are away from home. Keeping that data on your local network rather than in a cloud server is a legitimate privacy consideration.
For homeowners who want indoor air quality monitoring alongside their energy data, our sister site ClearAirLiving.com covers standalone air quality monitors that pair well with whole home energy monitoring setups, particularly for tracking HVAC efficiency and ventilation patterns.
Smart Home Integration
The Refoss EM16P integrates natively with Home Assistant through its official integration, which means it appears as a device in your Home Assistant dashboard immediately after setup. Every sensor reading is available as an entity, and you can build automations around any of them: send a notification if your HVAC draws more than a threshold, turn off a smart plug if a circuit exceeds a watt limit, log hourly usage to your own database. The open API extends this to any platform that speaks MQTT or WebSocket.
The Emporia Vue 3 does not offer native Home Assistant integration. It can be made to work with Home Assistant by flashing the device with ESPHome firmware, but this voids the warranty, requires technical comfort with firmware flashing, and eliminates access to the Emporia app and cloud features. For Home Assistant users who want a supported, warranty-safe integration, the Refoss EM16P is the only option in this price range.
On the Alexa side, the Vue 3 has direct Alexa integration that lets you ask for energy usage summaries by voice. The Refoss EM16P does not have a native Alexa skill but can be exposed to Alexa through Home Assistant if you have that bridge set up.
How We Evaluate Energy Monitors
We evaluate whole home energy monitors based on measurement accuracy and update frequency, installation accessibility and sensor quality, app usability and data visualization clarity, data storage policies and export options, smart home integration depth and protocol support, solar monitoring capabilities, and the long-term reliability of the platform (cloud dependency, local operation, open API access). We cross-reference manufacturer claims with real-world user reports, prioritize products with transparent accuracy specifications, and note any known issues that affect specific panel configurations or installation scenarios. We do not accept payment or free products from manufacturers in exchange for coverage. Our affiliate relationships are disclosed at the bottom of every page and do not influence our assessments.