Emergent Metering

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Panoramic Power Wireless Circuit-Level Submetering

Panoramic Power sensors clip onto a conductor, harvest their power from its magnetic field, and transmit circuit-level electrical data wirelessly to a bridge — no wiring, no panel outage, and no meter to find space for.

The system is three parts: self-powered sensors on the circuits you want to see, a bridge that collects them, and the platform that reports them. Because the sensors need no power supply and no CT secondary wiring, a panel can be instrumented in an afternoon while it stays energised.

Specifying a Panoramic Power deployment

  • Choose the sensor by conductor size and current. The PAN-14 and PAN-12 cover the common branch-circuit ranges.
  • One bridge per panel group. The PAN-2H bridge collects sensor traffic and uplinks over LAN, Wi-Fi or 4G.
  • Meter what you will act on. Circuit-level coverage of the loads that drive demand beats whole-panel coverage of everything.
  • Pre-assembled panels are available where an integrator prefers a delivered assembly, such as the integrated sub-circuit panel with bridge.

Where it fits

Self-powered wireless sensing is the standard answer for occupied buildings, tenant spaces and data halls where an outage is not available and panel space is gone — the case made in zero-downtime, non-invasive sensor deployment and the science behind self-powered sensors. For revenue-grade tenant billing or where a physical display is required, pair or compare with conventional electric submeters and current transformers.

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Panoramic Power Wireless Circuit-Level Submetering — FAQ

Common questions about this category.

How do self-powered wireless circuit sensors work?
The sensor clips around a single conductor and harvests energy from the magnetic field that current produces, using it to power its own measurement and radio. There is no battery to replace and no external supply to wire, which is why installation does not require the panel to be de-energised.
Do Panoramic Power sensors require a shutdown to install?
No. Sensors clip onto energised conductors by a qualified electrician working to the site's live-working rules, so circuits stay in service. This is the main reason the system is chosen for occupied buildings, hospitals and data centres.
Is circuit-level wireless metering accurate enough for billing?
It is designed for operational visibility, allocation and diagnostics rather than as a substitute for a revenue-grade meter. Where a lease or a jurisdiction requires revenue-grade accuracy, specify a meter that carries the relevant accuracy class and keep the wireless sensors for circuit-level insight.
How many sensors does one bridge support?
A single bridge supports a large group of sensors across nearby panels; the practical limit is radio range and panel layout rather than a hard count. Sites are normally designed with one bridge per electrical room and the uplink chosen from LAN, Wi-Fi or cellular.

Related guidance

Selection guides, code-compliance reading, and field results for this product line.

Need pricing for a project?

Send us the point count, meter types, and site details — you'll get a line-item quote covering hardware, panels, communications, and commissioning.

Ready to put energy data to work?

Order sensors, bridges, and PowerRadar subscriptions from our store — or talk to a CEM-certified engineer about your project.