Explore our premium range of smart health monitoring watches, medical-grade sensor wristbands, and tracking devices.
Founded in 2015, Shenzhen TC Health Co., Ltd. has established itself as a pioneering force in the design, development, and high-volume manufacture of advanced smart wearable devices. With over a decade of continuous investment in research and development, we bridge the gap between clinical-grade biometric sensing and consumer-friendly mobile form factors. Our primary focus is directed toward three core domains: senior health management, chronic disease monitoring, and personal safety telemetry.
The global healthcare industry is undergoing a critical paradigm shift, transitioning from episodic, hospital-centered diagnostic models to continuous, home-based Remote Patient Monitoring (RPM). Healthcare agencies, insurance providers, and wellness brands require robust, reliable, and compliant terminal devices to capture accurate physiological telemetry. Our mission is to engineer and manufacture devices that deliver maximum reliability, high precision, and seamless cloud integration.
Our production facilities, situated in Shenzhen, Guangdong—the silicon capital of global hardware manufacturing—are fully equipped to execute complex multi-layer PCB assembly, ultrasonic sealing, automated optical inspection, and stringent multi-stage calibration to ensure every product conforms to global standards.
Our state-of-the-art production facility located in Shenzhen, Guangdong, China is equipped with advanced production lines and high-precision inspection equipment, ensuring world-class manufacturing standards. As an ISO9001-certified company, we maintain a comprehensive Quality Management System (QMS) that monitors every component from Incoming Quality Control (IQC) to Outgoing Quality Assurance (OQA).
Pioneering the next generation of non-invasive biometric collection and AI-driven clinical telemetry.
Our devices merge Electrocardiogram (ECG) and Photoplethysmography (PPG) telemetry. By calculating the phase shift and wave reflections between cardiac electrical signals and physical blood volume pulse waves, our algorithms evaluate arterial wall stiffness, track continuous HRV metrics, and screen for early indicators of atrial fibrillation (AFib).
We are actively developing and validating multi-wavelength optical sensors that use near-infrared spectroscopy and metabolic heat balance algorithms. These trackers monitor glucose fluctuations continuously throughout the day without requiring painful needle pricks, providing trend analysis for diabetes management.
Moving away from dependency on smartphone pairings, our smart healthcare watches integrate standalone eSIM modules. Leveraging low-power 4G LTE-M / NB-IoT bands, the devices report real-time fall detection, heart rate anomalies, and GPS coordinates directly to enterprise servers, guaranteeing 100% uptime for senior care monitoring.
The roadmap for TC Health extends beyond basic telemetry collection. We are incorporating Edge AI algorithms directly into our microcontrollers to process raw biosensor streams on the fly. This prevents unnecessary battery drain from continuous RF transmissions and isolates patient data processing locally. Our future models will incorporate bioimpedance analysis (BIA) sensors to measure extracellular water retention, a critical biomarker for early congestive heart failure interventions. By refining sensor fusion algorithms, our products aim to elevate smartwatches from simple health accessories to indispensable diagnostic tools.
Deploying specialized IoT hardware ecosystems to solve complex operational challenges across global sectors.
For healthcare systems and insurance providers, our devices act as secure endpoints. They transmit continuous blood pressure, blood oxygen, and heart rate telemetry straight to electronic health record (EHR) platforms via secure API integrations.
Designed for public safety and health tracking, our secure anti-tamper wristbands provide highly reliable geographic fencing and wear-detection tracking. These devices prevent unauthorized removal and send real-time alerts if tampered with.
Beyond human biometrics, we build heavy-duty asset protection hardware like smart lock trackers for fuel tankers and logistics fleets. These lock setups prevent cargo tampering, leaks, and unauthorized access across global supply chains.
Enterprise buyers do not just buy hardware; they procure components of a larger data loop. TC Health devices are built to easily connect with custom platforms. We provide detailed Bluetooth GATT profiles, serial protocols, and standard APIs. This allows system integrators to adapt our smartwatches and bands to their target infrastructure quickly, bypassing the typical software-hardware integration roadblocks.
Ensuring compliance with international standards, medical certifications, and data privacy regulations.
Patient telemetry requires absolute security. Our device communication protocols use AES-256 data encryption for Bluetooth and cellular transmissions, meeting HIPAA and GDPR compliance requirements for handling protected health information (PHI).
We configure our testing protocols to align with CE MDR (Class IIa/IIb) and FDA 510(k) standards. Our hardware architectures are engineered to support clinical evaluations and simplify submission processes for national registries.
All cellular, GPS, and Bluetooth tracking wristbands are certified with FCC, CE RED, and RoHS certifications. This ensures compliant radio frequency emissions and environmentally sound construction across European and American markets.
Combining automated assembly, precision engineering, and optimization algorithms to deliver outstanding value at scale.
The manufacturing facility of Shenzhen TC Health Co., Ltd. serves as a prime example of China's modern Factory 4.0 transformation. Rather than relying on outdated assembly methodologies, our factory relies on automated Surface Mount Technology (SMT) lines, computerized functional testing jigs, and high-performance calibration rigs. Our production floor maintains strict temperature, humidity, and electrostatic discharge (ESD) protections, which are essential for producing reliable, highly precise health sensors.
Operating out of the Pearl River Delta allows us to source microcontrollers, custom optics, batteries, and screens with unmatched speed. If a client requests a design adjustment, we can complete rapid prototyping, tooling validation, and sample adjustments in a fraction of the time required in other regions. This robust ecosystem ensures that we deliver consistent quality while maintaining a production capacity of over 100,000 units monthly.
Helping international distributors, brand owners, and healthcare networks optimize their hardware sourcing.
B2B procurement agents face unique challenges when sourcing wearable chronic management devices. Issues like sensor measurement drift, unstable Bluetooth communication, variations in battery life, and lack of firmware support can quickly turn a deployment into a support nightmare. We address these operational risks directly through our dedicated enterprise sourcing workflow:
We configure hardware and software to fit your operational needs. This goes beyond placing your logo on the casing. We offer custom boot screens, deep firmware integrations, modified BLE advertising packets, and pre-packaged API outputs to ensure immediate compatibility with your proprietary platforms.
Every watch we manufacture undergoes extensive automated testing before packing. This includes IP67/IP68 pressure chambers, high/low-temperature stress simulations, automated touchscreen testing, and bio-simulator calibration checks. This rigorous process keeps our field failure rate well below 0.3%.
We work closely with semiconductor vendors to guarantee a stable supply of key chips and sensors for at least 5 years. This stability allows our partners to roll out long-term programs without facing sudden redesign costs.
Expert answers addressing the technical, regulatory, and logistics questions of B2B procurement partners.
Our blood sugar tracking features use advanced optical sensing and metabolic correlation models to show daily glucose trends. While they provide helpful, non-invasive indicators of sugar patterns throughout the day, they are intended for wellness tracking and trend analysis rather than acting as a replacement for invasive, clinical-grade finger-prick diagnostics.
Absolutely. We support direct system integration by providing detailed Bluetooth GATT service tables, raw serial protocol manuals, and Android/iOS SDK codebases. For cellular devices, we can configure our firmware to send biometric payloads directly to your endpoint servers via HTTP, HTTPS, or MQTT protocols.
Our standard production lead time ranges from 30 to 45 days, depending on custom tooling and sourcing requirements. This timeline includes PCB fabrication, automated assembly, testing, firmware installation, and quality calibration steps.
Yes, our designs align with CE RED (Radio Equipment Directive), FCC, and RoHS parameters. Additionally, our factories follow ISO 9001 practices, and we support partners through the validation steps required for CE MDR and FDA 510(k) certifications.
Our smartwatches utilize an integrated 3-axis accelerometer and gyroscope running a specialized motion-threshold algorithm. When the system detects a high-impact fall vector followed by a period of inactivity, it automatically sends an emergency alert, complete with GPS coordinates, to the monitoring network.
Find the right design, connectivity option, and biometric layout for your enterprise application.