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dhmscare
AI-powered
care for every machine you run
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How the system works
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Add your equipment
Build a digital model of each machine in minutes — no two-week setup.
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Fit the sensors
Smart sensors
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On in minutes
•
Vibration + temperature
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5+ years on one battery
Smart gateways
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Up to 60+ sensors each
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Stable to 200m line-of-sight
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Reads the condition
The system works out how each machine is running and feeds that straight into the AI engine.
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Alerts you
Because it knows the machine, the alerts you get are the ones worth acting on.
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AI diagnosis report
You get a clear report — what is trending, what it means, what to do next.
deviceImg
Add your equipment
Build a digital model of each machine in minutes — no two-week setup.
bottomImg
deviceImg
Fit the sensors
Smart sensors
•
On in minutes
•
Vibration + temperature
•
5+ years on one battery
Smart gateways
•
Up to 60+ sensors each
•
Stable to 200m line-of-sight
bottomImg
cognitionImg
Reads the condition
The system works out how each machine is running and feeds that straight into the AI engine.
bottomImg
alertImg
Alerts you
Because it knows the machine, the alerts you get are the ones worth acting on.
bottomImg
reportImg
AI diagnosis report
You get a clear report — what is trending, what it means, what to do next.
Where DHMSCare is different
AI that knows what your machines are doing
In real deployments, more than 90% of our anomaly alerts are accurate — so you catch real problems early and move from fixing breakdowns to preventing them.
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Reactive maintenance
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Preventive maintenance
Alert accuracy
90%
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Reactive maintenance
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Preventive maintenance
Alert accuracy
90%
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How do we do it?
One picture, all the data
Each machine’s history and its live readings come together in a single model.
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
One picture, all the data
Thresholds that adapt
Sharper over time
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Sharper over time
Fewer false alarms, fewer missed faults — and the system keeps refining itself.
Sharper over time
One picture, all the data
Each machine’s history and its live readings come together in a single model.
One picture, all the data
Thresholds that adapt
Grounded in ISO standards, the AI tunes each machine’s thresholds as it learns how it runs.
Thresholds that adapt
Ask what is wrong. Get an answer you can act on.
No expert needed. The system writes a clear report on its own — where the fault is, what kind it is, and what to do about it. Across real deployments, its diagnoses hold above 85% accuracy, so your team decides faster and gets to the repair sooner.
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Decision Efficiency
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Response time
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Diagnosis accuracy
85%
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Decision Efficiency
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Response time
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Diagnosis accuracy
85%
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How do we do it?
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
The AI engine
The DHMSCare AI analysis engine
Knows the operating conditions
Reads how the machine is actually running
Built on machine physics
The AI engine
Knows the operating conditions
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
Knows the operating conditions
Reads how the machine is actually running
Knows the operating conditions
Built on machine physics
Fault models for bearings, gears and shaft systems, drawn from years of real data
Built on machine physics
The AI engine
The DHMSCare AI analysis engine
The AI engine
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Predictive maintenance, finally talking back. Wireless sensors, an AI diagnostician, and a five-year battery — so a fleet that never stops never blindsides you.

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