Securite et fiabilite avant tout

Surveillance avancee des purgeurs de vapeur et des vannes.

Architectures evolutives pour reseaux industriels complexes, avec diagnostics fiables et resultats mesurables.

SIGNIFICANT STEAM SAVINGS AND CO2 EMISSIONS REDUCTION
PROCESS GAS LEAK REDUCTION
+45,000 STEAM TRAPS MONITORED
Immediate detection and localization of steam or gas leaks
Smart prioritization Impact energetique et criticite operationnelle.
Platform in action

Quick solution overview

SmartWatchWebTM Technology
Architectures

Available architectures (7 options)

Options filaires et sans fil optimisees pour grands reseaux de surveillance.

SmartWatchWebTM

SmartWatchWebTM topology to monitor thousands of steam traps

The system combines digitalization, sensing, data acquisition, and processing for precise real-time diagnostics. This enables steam savings above 10% by applying an intensive maintenance methodology across large steam trap populations.

Proven scalability Surveillance thousands of steam traps in a single network and platform.
Total flexibility Wired and wireless architectures in a single system.
Proven results More than 80 success stories over 25 years.
SmartWatchWebTM Topology
Sensors
Gateway
Plateforme
CMMS / BI
Wired + Wireless · One operational network
> 10% Economies de vapeur
+80 Etudes de cas
+25 Years of experience
SmartWatchWebTM offers extraordinary flexibility by combining wired and wireless architectures to adapt to any industrial environment.
Next step

Launch an IoT pilot with defined scope, milestones, and ROI

We design an executable pilot to validate architecture, integration, and results in critical units before full-scale deployment.

01

Technical discovery

Asset inventory, criticality, coverage, and OT/IT requirements to select the optimal architecture.

02

Deployment and validation

Commissioning, platform integration, and functional validation with actionable alerts.

03

Evidence-based scaling

Impact report with energy KPIs and expansion plan for prioritized areas.

Frequently asked questions

Guide de decision pour la surveillance IoT et hybride

Select the right architecture based on coverage, energy, criticality, cybersecurity, and total cost.

Which IoT architecture is best to start quickly?
LoRaWAN or NB-IoT is usually the fastest path when quick deployment and minimal site work are priorities.
When should you use LoRaWAN?
When you need long battery life, good plant coverage, and efficient sensor scaling.
When should you use NB-IoT/LTE?
Quand la surveillance sans fil doit eviter une infrastructure supplementaire, avec connectivite cellulaire geree par l operateur et deploiements multi-sites.
When does ISA100.11a add value?
In industrial environments that require robust wireless networks with advanced OT ecosystem integration.
When should you choose RS-485 bus?
In high-criticality areas, high equipment density zones (groups of up to 20 steam traps installed on manifolds), or where a wired network with power and data in one run is preferred.
Can wireless and wired be combined?
Yes. A combined architecture optimizes CAPEX/OPEX and adapts each plant area to its real needs.
How is the technology chosen by area?
RF coverage, asset criticality, energy availability, cybersecurity, and total lifecycle cost are evaluated.
What role does energy play (battery or solar)?
It is key for IoT node autonomy and reducing field maintenance, especially in remote areas.
La surveillance IoT est-elle evolutive a des milliers de points ?
Yes, with layered network design (nodes, gateways, and platform) and criticality-based prioritization rules.
How does it integrate with maintenance and analytics?
Through integration in the SWW platform to manage monitored and non-monitored equipment, alerts, and energy impact tracking.
What cybersecurity applies to these architectures?
Network segmentation, encrypted communications, access control, and event traceability from device to platform.
How is project ROI validated?
With an initial baseline, steam/CO2 savings KPIs, intervention prioritization, and post-repair verification.
What is the recommended first step?
A pilot scoped to critical units to validate architecture, integration, and results before scaling.
Are there real deployment references?
Yes, you can review industrial cases and projects at https://bitherm.com/projects.