Health Devices Across Multiple Form Factors

From miniature wearable sensors to specialized health devices, we develop connected products across a wide range of form factors.

Product Form Factors

Different healthcare applications require different ways of interacting with the human body.
We translate sensing technologies into practical device forms optimized for wearing position, signal quality, comfort, power consumption and long-term use.
SMART RINGS
Compact Form. Different Sensing Strategies.

ALL-DAY
Continuous Monitoring

Designed for long-term physiological trends throughout daily life.

All-day smart rings balance sensing performance, battery life, comfort and device size for continuous use across both active and resting periods.
Optical sensing, motion detection and temperature monitoring can be integrated into a miniature low-power platform to capture long-term physiological trends without interrupting everyday activity.

NIGHTTIME
Physiological Monitoring

Optimized for dense physiological sensing during sleep.

Dedicated nighttime rings follow a different design philosophy.
Instead of optimizing primarily for all-day battery life and lifestyle wear, the device can focus sensing resources on a defined monitoring period, enabling denser physiological sampling and more intensive signal acquisition throughout the night.
A stable finger position and dedicated optical sensing geometry also provide a strong foundation for sleep-related cardiovascular and respiratory analysis.
ORAL & INTRAORAL DEVICES

INTRAORAL DEVICES

Engineering for the Oral Environment

Intraoral devices introduce unique engineering challenges involving space constraints, material selection, moisture, comfort, wireless communication and mechanical stability.
We develop compact oral and dental device architectures that can combine mechanical structures, sensing elements, embedded electronics and wireless connectivity within highly constrained form factors.
SKIN-WORN BIOSENSORS

SKIN-WORN BIOSENSORS

Continuous Monitoring with Minimal User Interference

Skin-worn devices enable physiological signals to be measured closer to the body while minimizing interference with daily activity.
Depending on the application, wearable patches can integrate sensing, data acquisition, embedded processing and wireless transmission into thin and lightweight device architectures designed for extended use.
WOMEN’S HEALTH DEVICES

WOMEN’S HEALTH

Purpose-Built Devices for Long-Term Physiological Tracking

Women’s health applications often depend on subtle physiological changes measured over extended periods.
We support wearable and skin-contact device architectures designed for longitudinal monitoring of temperature, cardiovascular signals, motion, sleep and other physiological trends.
CHEST & BODY-WORN SENSORS

BODY-WORN SENSORS

Stable Signal Acquisition Closer to the Source

Chest-worn and body-worn devices are suited to applications where stable physiological signal acquisition is critical.
Closer sensor placement can improve access to cardiac, respiratory and motion signals, making these form factors suitable for both continuous health monitoring and performance-oriented applications.
SLEEP / HEAD-WORN DEVICE

SLEEP MASK

Comfortable sensing designed for overnight monitoring

Head-worn and eye-mask form factors provide a stable platform for sleep-focused sensing while maintaining comfort throughout the night.
WRIST-WORN DEVICES

WRIST-WORN

Flexible Platforms for Continuous Health Monitoring

Wrist-worn devices provide more space for sensing, interaction, battery capacity and wireless communication.
From lightweight health bands to more integrated wearable platforms, this form factor supports multi-parameter monitoring, real-time feedback and continuous user interaction.

Sensing
Capabilities

A product form is only
the outer layer.

Inside each device, sensing architecture is selected according to signal characteristics, wearing position, power budget and target application.

OPTICAL
SENSING

PPG · SpO₂
Heart Rate · HRV

ELECTRICAL
SENSING

ECG ·
Biopotential Signals

THERMAL
SENSING

Skin Temperature ·
Temperature Trends

MOTION
SENSING

Accelerometer · Gyroscope
Posture · Activity

RESPIRATORY
SENSING

Respiratory Rate ·
Breathing-related Signals

APPLICATION-
SPECIFIC SENSING

Application-specific
Sensors

From Sensor to Complete Device

Integrated development across sensing, electronics, firmware, algorithms, connectivity and mechanical design.
Integrated development across sensing, electronics, firmware, algorithms, connectivity and mechanical design.
SENSING
ANALOG
FRONT END
EMBEDDED SYSTEM
SIGNAL PROCESSING
WIRELESS CONNECTIVITY
APPLICATION/
CLOUD

Reference Platforms

To shorten development cycles, selected sensing architectures and embedded subsystems can be adapted from existing reference platforms rather than starting every project from zero.
Medical Sensor Platform
Integrated sensing and embedded architectures
designed for physiological data acquisition,
low-power operation and wireless communication.
Reference Designs
Reusable hardware and firmware architectures
that provide a validated starting point for
new wearable and connected health products.
Development Kits
Evaluation platforms for sensor integration, algorithm development, signal validation and
early-stage product feasibility testing.
CUSTOMIZED PRODUCTS

Built AroundYour Application

Not every healthcare application fits an existing form factor.
We work with partners to define sensing requirements,wearing position, device architecture, electronics,firmware and mechanical structure, then translate theserequirements into a product designed for its intendeduse environment.
Application Definition
Sensor Selection
Product Architecture
Industrial & Mechanical Design
Hardware & Firmware
Algorithm Integration
Validation
Manufacturing

Have a Device Concept in Mind?

From a reference platform to a completely new form factor,we can help evaluate the technical path from concept to implementation.