MUMBAI, India, July 24 -- Intellectual Property India has published a patent application (202641085361 A) filed by Sri Eshwar College Of Engineering on July 11, 2026, for Development Of A Multiparameter Health Screening Stand.

Inventors include Dr. L. Priya; Anirudh U; Bharathwaj S K; and Dhanush Rithiick.

The application for the patent was published on July 17, 2026, under issue no. 29/2026.

Abstract: The Health screening stand uses a variety of biomedical sensors and signal processing circuitry to monitor all physiological characteristics and measures multiple vital parameters on a single platform, including blood pressure, temperature, pulse rate, SpO, height, weight, BMI, HRV, and 3-lead ECG. The collected data is processed by embedded devices and transmitted to a cloud-based platform via Internet of Things for real-time monitoring, analysis, and storage. This device is mainly used outpatient departments and master health checkup departments in hospitals, clinics, shopping malls, airports, and workplaces, allows for early detection of medical conditions by conducting preventive health checkup and reducing the workload of healthcare professionals, patient waiting time and healthcare expenses. The proposed multiparameter monitoring stand measures several vital signs simultaneously. The proposed stand reduces the amount of time spent on manual recording and monitoring. The proposed system facilitates remote access, storage, and real-time data transfer by integration of IoT technology. It provides non-invasive operation which guarantees the safety and comfort of the patient while taking measurements. This stand offers an automated data processing and real-time report generation and analysis. Using computer aided design software, compact and ergonomically structured health screening stand was designed. The automated algorithms for display of derived parameters such as BMI and HRV was developed. This stand provides user-friendly graphical interface for data visualization, report generation, and remote accessibility. The system was developed using embedded electronic circuitry and microcontroller-based signal processing units using sensors, amplifiers and filters for accurate data acquisition and design an automated control system by integrating algorithms in embedded circuitry. The system is implemented with IoT- enabled communication modules for wireless data transfer between the health screening stand and cloud storage platforms. Finally, a diagnostic stand is modeled using Computer aided design software as SOLIDWORKS and CATIA and fabricated using 3D printed machine. The proposed health screening stand is small, portable, and easy to use in public spaces, offices, and hospitals.

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