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IOT ENERGY HUB

Measure it, get alerted, run it remotely

IoT brings meters, sensors and devices onto a single network. Voltie reads that data live, tells you when a threshold is crossed, and uses schedules to start and stop devices while you are nowhere near the site.

app.voltie.net/iot
The Voltie IoT Energy Hub, Analysis tab: voltage, current and power readings for all three phases, cable temperature and the alarm list.

IoT Energy Hub › Analysis · shown with sample dataScroll sideways to see the whole screen

How does it work?

Data from the devices in the field becomes useful in four steps, and you control those devices from the same panel.

Real-time data collection

Devices and sensors in the field connect to Voltie; the energy they use and their running status are read live.

Remote monitoring and control

No need to be on site. You watch live from the dashboard and switch devices on and off from there.

Alarms and notifications

The collected data is analyzed continuously; anything abnormal reaches you by dashboard notification, SMS and email.

Automation

Devices run themselves according to the scenario you set — nobody has to press a button.

ISO 50001

Measuring device by device and line by line shows which line carries the largest share during the 6.3 — energy review; the data collection plan 6.6 asks for is built on top of that measurement.

Smart schedules

Efficiency doesn’t stop at watching a device; running it at the right hour matters just as much. You set the schedule once and the rest takes care of itself.

Switch off outside working hours

Lighting, compressors or air conditioning stop by themselves at the end of the day and come back on in the morning.

Follow sunrise and sunset

Outdoor lighting follows the sun rather than the calendar, so you never adjust the times as the seasons change.

Seasonal settings

Set up summer and winter scenarios separately and have the system switch between them as the site’s load changes.

app.voltie.net/iot
The IoT Energy Hub, Control tab: signal strength, last-seen time, 24-hour consumption and an on/off switch for every device.

The Control tab — where you switch a device on and set its schedule · shown with sample dataScroll sideways to see the whole screen

Advanced IoT-based monitoring dashboard

Knowing the total consumption isn’t enough. The dashboard shows every component of the three-phase (A, B, C) system separately, catching a fault before it happens — so you avoid downtime, production disruption and repair costs.

1Voltage monitoring

Per-phase voltage is monitored live, so deviations on the grid are caught immediately.

Example: 295 V on phase B is a serious risk to your equipment. Overvoltage shortens equipment life, causes failures and puts system safety at risk.

2Energy consumption analysis (kWh)

Energy consumed over the range you select is tracked, revealing your usage pattern.

Observation: if the chart shows consumption rising in the morning and evening, that can be tied directly to production processes or how busy the site is.

3Active power consumption (W)

Active power is read separately for each phase, which is how you judge whether the system is balanced.

Example: if phase B carries 42.5% of the total load, the phases are unbalanced. Over time that degrades transformer performance and wastes energy.

4Current monitoring (A)

How per-phase current moves over time, making sudden spikes and irregularities visible.

Analysis: sudden current surges on phase B may relate to high power draw. They point to overloading or unplanned consumption.

5Energy measurement table

Voltage, current and power for every phase, summarized in one table.

For an electrical engineer this is the direct reference point for reactive power management, phase balancing and preventive maintenance planning.

6Alarm and warning system

A warning is raised the moment a threshold you set is crossed, so you see the danger as it happens rather than afterwards.

High voltage — advisory warningLow voltage — critical
7Harmonic monitoring

Harmonic distortion pushed back into the grid is measured phase by phase, making it visible which line the non-linear loads are polluting.

Example: if current harmonic distortion goes past the 8% limit, loads such as drives, inverters and UPS units are straining the network. They heat the transformer and cabling for nothing and shorten the life of your compensation capacitors.

8Cable temperature monitoring

Temperature on the panel and the line is read continuously, so a loosening terminal or an overloaded cable is spotted the moment it starts running hot.

Early warning: if a line that sits around 53 °C all day pushes up against the 65 °C warning threshold, something in the connection is under strain. You intervene before it reaches the 93 °C critical limit — heading it off before the insulation degrades and before there is any risk of a panel fire.

Overview: know where you stand without waiting for month end

The Analysis tab looks at the device; the Overview tab looks at the business. What you have spent month to date, where the bill is heading, which department is eating the money — all on one screen.

Main meter consumption

kWh accumulated month to date, so you can see how much you have used by this point in the month.

Forecast bill

An all-in forecast with the average ₺/kWh beside it. You know the number before the bill arrives.

Measured and unmeasured

The gap between the kWh your IoT devices measure and the main meter. That gap is load you cannot see yet; as it closes, you can attribute the whole bill to departments.

Costliest department

Which department spent the most this month — in kWh and in ₺.

Reactive status

Whether a penalty formed this period and whether you are within the inductive and capacitive limits. Answered at a glance.

Carbon emissions

Calculated automatically from consumption using a kgCO₂e/kWh factor — no separate bookkeeping needed.

app.voltie.net/iot
The IoT Energy Hub, Overview tab: main meter consumption, forecast bill, measured and unmeasured consumption, reactive status, annual consumption trend, recent alarms and consumption by department.

The Overview tab · shown with sample dataScroll sideways to see the whole screen

Annual consumption trend

How the main meter has trended over the last 12 months. Compare with the same month last year and see your seasonal pattern.

Recent alarms

The last 30 days of alerts stream in live — what happened, when and where, in one list.

Consumption breakdown

Broken down by location and department. Production, cooling, lighting and offices each show separately.

Consumption comparison

Put two subscribers or two devices side by side and compare consumption, billing and reactive figures.

Where is it used?

Smart building systems Industrial plants and factories Shopping centers and retail chains Power plants Cold storage and HVAC Food production and packaging Glass, metal and plastics Hotels and hospitality Restaurant and café chains Residential complexes Warehousing and logistics Hospitals and healthcare

What do you gain?

Cost savingsEnergy waste is kept to a minimum.
Higher efficiencyDevice status can be monitored live.
Better decisionsManagement is backed by rich data analysis.
Remote controlWherever you are, the system is at hand.
AutomationThe system runs itself, with no manual intervention.

Other screens in the platform

See Voltie on your own data

Leave your work email and we’ll get back to you. We’ll go through your facility’s consumption together and show you where the savings are.

Have a look at the frequently asked questions.

Frequently asked questions →