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The ECG Test System gives your team the data to find ECG performance issues while they’re still cheap to fix.
ETS compares electrode materials and wearable devices through paired measurements across a subject cohort — exposing average performance, variability and subject-specific limitations before they become expensive design problems.
De-risk your ECG programme at every stage.
A quality issue at PoC is a material swap. At PVT, it's a programme delay. Find and fix signal quality issues while they're still cheap.
Know which electrode or component performs best before committing to a build. Cut weak options weeks earlier.
Controlled configuration comparisons and supporting noise metrics, not guesswork.
Enter validation with documented, repeatable data from a defined acquisition and analysis method.
License ETS and apply it in your development, sustaining engineering, or production process.
A reference-based ECG performance test system that combines hardware tools, a protocol, and proprietary algorithm that holds the acquisition variables constant — so the difference you measure is your design, not the test.
A score for every recording. Context for every decision.
Results are assessed against a known reference at both subject and cohort level — exposing average performance, variability and subject-specific limitations before they become expensive design problems. Each recording returns a standardised Signal Quality Score.
Signal Quality Score
Rates ECG signal quality against a known reference — higher score means closer performance. Supported by settle-time, beat-validation and noise metrics.
Choose the right test for your programme stage.
Use B-Secur jig and reference plaque to rank your electrode materials, coatings, finishes and geometries against it. Run electrode and device testing in parallel.
Bring your reference device and device under test for a paired comparison across a characterised subject cohort, isolating sources of performance degradation through controlled configuration comparisons and noise metrics.
The cost of a quality problem grows at every stage — ETS applies at each one
Wrong material
Select the best materials before a prototype exists.
Hardware re-spin
Reduce re-spin risk. Test the complete system, electrodes, AFE, all components etc.
Late re-spin
Compare production variants fast. Hit Design Freeze on schedule.
Intel failure
Enter validation knowing the performance.
Batch drift
Monitor production drift and any supplier changes.
Field Change
Validate every device change i.e electrode colours, finishes, component changes.
<p>Select the best materials before a prototype exists.</p>
<p>Reduce re-spin risk. Test the complete system, electrodes, AFE, all components etc.</p>
<p>Compare production variants fast. Hit Design Freeze on schedule.</p>
<p>Enter validation knowing the performance.</p>
<p>Monitor production drift and any supplier changes.</p>
<p>Validate every device change i.e electrode colours, finishes, component changes.</p>
We’ve brought together industry experts to talk about the absence of agreed testing standards for consumer wearable ECG — what it’s costing the industry, and what it would take to change that.
Blythe Karow, The Device Files
Sam Sheng, Google Dr Kenneth Civello, Our Lady of the Lake Dr David Burke, Beacon Hospital Research Institute