Biosensing partners for device manufacturers, from electrodes to algorithms and regulatory support.

Plug in at any stage, or partner with us end-to-end to build a product that performs and stands up to scrutiny.

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Hardware
Signal Capture
Signal Quality
Algorithms
Regulatory
Pathway 1

Design hardware that gives your software a signal it can trust.

We partner with your engineers on electrode design, materials selection, ECG electronic schematic, PCB design, mechanical design, and a test strategy that proves the whole front end is ready.

From wearables and patches to clothing-integrated devices, we help you capture cleaner ECG and bioimpedance signals that exceed the ISO electrical test requirements, so the algorithm, study and regulatory work that follows is built on solid ground.

Example Form Factors
Comparative Evaluation of Biosensing Technologies for Continuous Respiration Monitoring on the Upper Arm
Kara McIlroy, Maria Hall, Jonathan Francey, David Jardine, Robert McMurray Journal of Electrocardiology, ISCE 2025.
Evaluating the feasibility of upper arm ECG for cardiac monitoring
Jordan Diven, Ryan Adair, Julian Rowny, Alan Bermingham, Dave Jardine European Heart Journal Suppl., ESC 2024
Validation of Wrist-Worn Body Impedance Analysis Technology for Cardiovascular Disease Risk Management
Adrian Deery, Jonathan Francey, Jordan Diven, Stacey McKenna, Holly Easlea, Geraldine Horigan, Ruth Price, Benjamin Sanchez Terrones AHA Journals, 2024
ABEL • Advanced Biosensing Engineering Lab

De-risk signal quality before it slows the whole programme down.

Inside ABEL, we pressure-test the sensing stack early, uncover the limitations that derail ECG programmes, and help your team move forward with evidence instead of assumptions.

Inside ABEL

From concepting to pre-FDA testing and validation.

Pathway 2

Deploy proven ECG algorithms without building the stack from scratch.

HeartKey® is our FDA 510(k)-cleared algorithm suite for dry or wet electrodes, spot-check or continuous monitoring, and on-device or cloud deployment. It gives device manufacturers a faster route to high-confidence features, backed by proven performance and designed to fit real product constraints.

Wet or Dry Electrode. On-device or cloud.
Performance of Embedded ECG Analysis Software for Atrial Fibrillation Detection on a Wrist Wearable in a Clinical Cohort
Naomi McCord, Jordan Diven, Jonathan Francey, Holly Easlea, David Burke Journal of Electrocardiology, ISCE 2025
Evaluating the impacts of digital ECG denoising on the interpretive capabilities of healthcare professionals
Stacey McKenna, Naomi McCord, Jordan Diven, Matthew Fitzpatrick, Holly Easlea, Austin Gibbs, Andrew R J Mitchell European Heart Journal — Digital Health, 2024
Robust ECG Analysis Across Holter and Patch Devices: A Device-Agnostic Approach
Jordan Diven, Jonathan Francey, Joshua Wiseman, Adrian Deery, Maeve McKeever, Niamh McCallan Heart Rhythm O2, HRX 2025
Pathway 3

Strengthen your clinical and regulatory path with a team that has done it before.

From preclinical study design and Quality Management Systems to 510(k) strategy, we support the decisions that turn a promising prototype into a product that can stand up in review. We work as a practical extension of your team, not advisors at arm’s length.

AUGMENT, DON'T OUTSOURCE
Track Record

>20

Partner engagements with consumer wearable, medical wearable and ambulatory monitoring companies, and hospital systems

Standards We Work To

ISO 13485

Quality management systems for the design and manufacture of medical devices.

IEC/ISO 62304

Software lifecycle processes for medical device software, from planning through release.

IEC 82304-1

General requirements for the safety and security of health software products.

ISO 14971

Application of risk management to medical devices across the product lifecycle.

Working With Us

Professional Services Packages

Most customer requirements fit within one or more of the following three packages — each with defined scope, a clear outcome, and an indicative timeline. If yours doesn’t, that’s fine — we have extensive experience designing bespoke programmes around specific needs.

ECG Assess

Covers Stage 1

Stage 1:
ECG Design & Regulatory Assessment

  • Regulatory pre-compliance assessment
  • Analog front end (AFE) & signal-chain review
  • Schematic, PCB layout & BOM review
  • Electrode material & coating review
Outcome

Clear design and regulatory plan

8 Weeks*
Save 12%

ECG Prove

Covers Stages 1-2

Stage 2:
Prototype Eval & Pre-Compliance

  • ECG signal-quality testing on prototypes
  • Benchmarking vs B-Secur references
  • IEC 60601-2-47 pre-compliance testing
  • Clinical validation strategy & planning
Outcome

Signal quality proven on real prototypes and clinical strategy mapped

26 Weeks*
Save 25%

ECG Complete

Covers stages 1-5

Stage 3-5:
Clinical, Integration & Submission

  • Clinical study design & execution
  • Human factors study & reporting
  • HeartKey® software integration & testing
  • CE / FDA submission-ready technical file
Outcome

A submission-ready ECG solution, end to end

52 Weeks*

Cumulative packages, each tailored to your programme. Programme discounts apply vs. purchasing stages individually.

* Timings can vary depending on several factors, including scope, prototype readiness, and clinical study design.

Wherever you are in the pathway,
we can help move your product forward.

Most of our partnerships start with a thirty minute call between one of our engineers and one of yours. No slides. No generic pitch. Just a clear discussion about the sensing, software or regulatory challenge in front of you.

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