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07 Industry

MV/LV substation monitoring

Currents, voltages and switchgear state read continuously, so a voltage dip stops being a story and becomes a measurement with a timestamp.

IEC 61850 (MMS/GOOSE) IEC 60870-5-104 DNP3 Modbus

Illustrative figures.

What NeMo reads

The quantities that matter

When a line drops, the conversation with the distributor happens from memory. Without continuous recording there is no way to say when it happened or how long it lasted.

01

Currents and voltages

Per feeder, the level at which you can see which load is eating the headroom.

02

Reactive power

Power factor and reactive energy — the line that shows on the bill and never in the substation.

03

Device state

Breakers and disconnectors, so the real configuration is known without walking to it.

04

Temperatures

Transformers and switchboards, where a slow rise is the first sign something is giving way.

05

Network events

Voltage dips and protection operations, dated to the second.

How it connects

It speaks your field’s language

Meters, analysers, controllers and probes: the node connects to what is already installed, over the protocol it already speaks. Nothing in the field is replaced to get started.

Powered on and already talking — self-configuring in the field

What comes out

From the reading to the decision

Power quality

Dated events, which is what you need when a line stops and nobody knows why.

Load per feeder

With the headroom left, before finding it out by adding one more load.

Service continuity

Interruptions and durations, measured rather than reconstructed from memory.

The cost of no correction

How much reactive energy you are paying for — which is what correcting it would be worth.

Start from your plants

A 30-minute technical call to go through what you already measure, what you do not, and what it would take to close the gap.