Your Algorithms Deserve Real Data, Not Just Results.

Open Raw PPG & Pressure Data Streams for AI Development.
Empower your health management platform with a transparent “White Box” hardware solution. Every mmHg originates from verifiable physical pressure signals. 

Table of Contents

You Build the Algorithms. We Deliver the Ground Truth.

AVIA Connect Top 50 Remote Monitoring Companies award badge
Recognized among top-ranked RPM innovators (AVIA Connect)

High-growth North American Remote Patient Monitoring platforms rely on our clinical-grade wearable hardware to capture verifiable physical data — not black-box estimations.

Our technology has supported teams recognized among top-ranked global RPM innovators and listed in the Deloitte Fast 500 (North America), enabling them to scale faster without compromising data ownership or clinical integrity.

Client identities anonymized by agreement.

The Crisis of Accuracy: Why Algorithmic Estimation Fails in Professional Healthcare

In the world of professional health management, “close enough” is never enough. Most wearable devices on the market rely on PPG (optical) sensors to “estimate” blood pressure through algorithms. While convenient, these estimates often fail when clinical accuracy is required for insurance risk assessment or high-end elderly care. A guess, no matter how sophisticated, cannot replace a measurement.

wearable devices on the market rely on PPG (optical) sensors

From Estimation to Measurement: The Superiority of Physical Oscillometric Technology

High-Precision Oscillometric Pressure System (±3 mmHg)
Physical oscillometric architecture, identical to clinical sphygmomanometry

We are returning to the gold standard of medical physics. Unlike standard consumer watches, our solution utilizes Oscillometric Sphygmomanometry—the same principle used in hospital-grade arm cuffs.

  • The Physics of Precision: Our devices feature an internal architecture centered around a micro-airpump and high-durability airbag system.

  • ATS3085 / ATS3089 Architecture:Powered by the ATS3085 platform — with optional support for the higher-performance ATS3089 chipset — the system manages real-time physical inflation and deflation, capturing the exact oscillation of arterial walls with deterministic timing and pressure control.

  • The Technical Truth: We provide physical pressure measurement that is unaffected by skin tone, ambient light, or the common limitations of purely optical PPG sensors.

Open Raw Data Access: Empowering Your Self-Developed Algorithms

For institutional clients, a “final number” is a black box. We provide the key to that box. We don’t just provide the results; we open the Raw Data Streams for your R&D teams.

  • Pulse Wave & Pressure Curves: Access raw PPG and pressure sampling data directly through our open communication protocols.

  • Secondary Development: Our 4G Cat1 and BLE-enabled platforms support enterprise-level secondary development, allowing you to integrate real-time health data into your proprietary AI models or management systems.

  • Seamless Integration: Utilizing RabbitMQ and standard JSON data formats, your backend can receive real-time updates for heart rate, blood pressure, and even fatigue levels (HRV).

     

Built for Professional Ecosystems: Precision, Durability, and Connectivity

  • Our technology is designed for the rigorous demands of Precision Medicine, High-End Senior Living, and Insurance Health Management.

     
    • Comprehensive Health Monitoring: Beyond blood pressure, our ecosystem tracks ECG, body temperature, SpO2, and fatigue levels with professional-grade accuracy.

    • Multi-Network Reliability: Whether it’s 4G Cat1 for elderly care or LoRa/BDS for specialized outdoor environments, our hardware ensures data is never lost.

    • Institutional Trust: As a specialized AIoT system provider established in 2016, we have supported global brands and government projects with custom firmware and hardware solutions.

       
fall detection smartwatch for elderly care

Moving Beyond Vague Trends. Every mmHg Originates from Real Physical Pressure

  • Stop relying on vague trend estimations. Secure the integrity of your health data with a partner that values physical measurement over algorithmic guesswork.

FAQ

What makes your wearable medical devices different from consumer smartwatches?

Our wearable medical devices are built for physical measurement, not algorithmic estimation.
Unlike consumer smartwatches that infer blood pressure from optical PPG signals, our devices use oscillometric sphygmomanometry, the same physical principle used in clinical arm cuffs. Every mmHg originates from verifiable pressure signals, enabling medical-grade accuracy and auditability.

Do you provide raw PPG and pressure data for secondary development?

Yes. We provide open raw data streams for both PPG signals and pressure curves.
Institutional clients can access raw sampling data via 4G Cat1 or BLE, enabling secondary development, AI model training, and proprietary algorithm validation without relying on black-box outputs.

Who typically uses your wearable health monitoring solutions?

Our solutions are designed for institutional healthcare environments, including:

  • Remote Patient Monitoring (RPM) platforms

  • High-end elderly care providers

  • Insurance health management programs

  • Digital health and AI healthcare companies

These users require repeatable, explainable, and regulation-ready data, not consumer-grade wellness trends. 

Why do you use ATS3085 / ATS3089 chipsets in oscillometric monitoring?

The ATS3085 platform provides deterministic timing and stable control for real-time inflation, deflation, and pressure sampling — critical for oscillometric accuracy.
For advanced projects, the ATS3089 architecture offers higher computational headroom, supporting higher sampling precision and more complex on-device processing, while maintaining medical-grade stability.

Are your wearable medical devices suitable for clinical or regulated environments?

Our devices are designed for clinical-grade measurement, hardware traceability, and data transparency.
While final regulatory approval depends on each client’s target market and application, we support partners with measurement documentation, raw data access, and architecture-level transparency, enabling smoother clinical validation and regulatory preparation.

Are you a wearable device manufacturer or a solution provider?

We are a wearable device manufacturer specializing in OEM & ODM medical-grade hardware platforms.
Our role focuses on sensor architecture, firmware customization, and scalable manufacturing — allowing clients to retain full ownership of their algorithms, data, and healthcare platforms.

How do you handle data ownership and client confidentiality?

All data ownership remains with our clients. We do not access, store, or reuse client data.
Client projects and deployments are fully anonymized by agreement, ensuring confidentiality while allowing us to demonstrate technical capability without exposing sensitive information.

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