
CN-MEP
CurNext
MEP monitoring for flow, pressure, and energy
Monitor plant-room flow, pressure, and energy on the same stack as the slab. CurNext CN-MEP uses PoE from CN-UPS with Ethernet uplink and cloud evidence.
In short
What is MEP monitoring on the CurNext stack?
MEP monitoring tracks flow, pressure, and energy in plant-room and panel installs so mechanical performance sits next to surface readiness evidence. CurNext CN-MEP is a wired PoE panel solution with Ethernet uplink for higher-rate plant signals.
Why MEP on CurNext
Plant signals in the same project view
Construction cloud that sees plant-room telemetry beside curing, drying, and the rest of the site - not another isolated BMS island.
Plant signals next to the slab
Flow, pressure, and energy land in the same CurNext project view as surface readiness - not a separate vendor silo.
Rates LoRa cannot carry
Ethernet uplink for plant-room sample rates where battery wireless is not enough.
Power when you need visibility
PoE from CN-UPS keeps the panel up with mains plus backup - outages no longer kill the picture.
One security and installer model
Same permissions, alerts, and site discipline as the rest of the CurNext stack.
The challenge
Plant rooms stay invisible to the site cloud
MEP runs lack a unified view
Temporary and permanent plant sit outside the cloud that already watches slabs and wet rooms.
Vendor silos split the story
Flow, pressure, and energy live in separate tools - hard to see next to schedule risk.
Outages kill visibility
Exactly when plant behaves oddly, battery-less panels without UPS go dark.
CN-MEP
A wired MEP panel on the CurNext stack
CN-MEP is a Layer-1 wired panel for flow, pressure, and energy in plant-room and panel installs. Powered by PoE from CN-UPS. Ethernet uplink to CN-FG / CN-BC for rates that battery LoRaWAN nodes are not built for. Data lands in CN-Cloud with the rest of the site.
Note: CN-MEP is not a leak rope (CN-LEAK), not a battery IAQ pod (CN-IAQ), and not a full BMS replacement. Factory-fixed purpose - PoE and Ethernet by design.

What we measure
Flow · Pressure · Energy
Walk through a site assessment with the CurNext team - flow, pressure, and energy on the same stack as the slab.
Flow
Plant-room and circuit flow where rate matters for commissioning and ops.
Pressure
Transmitters on critical loops - evidence when conditions drift.
Energy
Panel-level energy metering for plant loads on the same project trail.
PoE + Ethernet
Built differently from battery L1
Designed for plant-room rates and outage resilience - not a battery LoRaWAN topology.
PoE via CN-UPS
Powered from the CurNext UPS layer - mains plus backup so plant visibility survives short outages.
Ethernet, not battery LoRa
Wired uplink for plant signals that need higher rates than LoRaWAN L1 nodes.
How it works
From the panel to a clear decision
01
Install
Wire the panel in the plant room or MEP location and connect flow, pressure, and energy interfaces.
02
Power
PoE from CN-UPS - mains with UPS resilience, not a primary battery like other L1 lines.
03
Uplink
Ethernet to CN-FG / CN-BC, then into CN-Cloud - higher sample rates than LoRaWAN battery nodes.
04
Decide
Trends, alerts, and flow / energy context on curnext.app - beside the rest of the site.
Built for the plant room
Industrial by design
- Wired panel
- Plant-room / panel topology.
- PoE + CN-UPS
- Mains with UPS resilience.
- Ethernet uplink
- Higher sample rate than LoRa L1.
- Factory-fixed purpose
- MEP - not leak rope or IAQ.
FAQ
MEP monitoring questions
Direct answers for MEP leads researching flow, pressure, and energy monitoring on construction projects.
- What does CurNext MEP monitoring cover?
- CN-MEP monitors flow, pressure, and energy for plant-room and panel installs, with data landing in CN-Cloud beside other site systems.
- Why is CN-MEP wired instead of battery LoRaWAN?
- Plant signals often need higher update rates than battery LoRaWAN field nodes are built for. CN-MEP uses PoE power and Ethernet uplink through CN-FG / CN-BC.
- Is CN-MEP the same as leak detection?
- No. CN-MEP measures flow, pressure, and energy. CN-LEAK detects water leak events in wet zones. Many sites use both.
- Where is CN-MEP typically installed?
- Plant rooms and panel locations where mechanical performance needs continuous evidence during commissioning and operations.
- Who should use CurNext MEP monitoring?
- MEP contractors, commissioning teams, and facility stakeholders who want plant evidence on the same CurNext project surface as surface readiness.
Next step
See CN-MEP on your plant rooms
Walk through a site assessment with the CurNext team - flow, pressure, and energy on the same stack as the slab.