Engineered for Patient Safety and Equipment Reliability
Gems Sensors delivers high-precision fluid management technologies tailored for the medical and biomedical industries. With nearly 70 years of sensor innovation and over 34 years of experience in medical applications, our solutions enhance the performance and reliability of critical equipment across a wide range of categories—including Medical Devices, Medical Fluidic Systems, Imaging Systems, Lasers, and Surgical Equipment. From ensuring patient safety to supporting global regulatory compliance, Gems Sensors is a trusted partner in advancing healthcare technology.
Medical Devices
Reliable Fluid Management for Medical Equipment
Gems Sensors provides level, pressure, and flow sensors, miniature solenoid valves, and temperature controllers for a wide range of medical devices. Our components are trusted by leading OEMs in applications such as in vitro diagnostics, ventilators, and proton therapy systems.
Medical Fluidic Systems
Precision Sensors for Fluid Control in Medical Applications
Imaging Systems
Reliable Sensors for Diagnostic Imaging Equipment
From X-ray machines to MRI and CT systems, Gems Sensors supports imaging equipment with fluid level monitoring, cooling system control, and pressure sensing. Our sensors help maintain optimal operating conditions, reduce maintenance needs, and extend equipment life.
Lasers
Fluid Management for Medical Laser Systems
Medical lasers depend on accurate fluid control for cooling, sterilization, and energy delivery. Gems Sensors offers custom fluid sensing solutions for laser platforms used in dermatology, ophthalmology, oncology, and surgical applications—ensuring consistent performance and patient safety.
Sensor Solutions for Surgical Precision and Safety
Surgical platforms require precise control of fluids and pressure to ensure safe and effective procedures. Gems Sensors provides miniature valves, pressure switches, and level sensors designed for integration into surgical systems, sterilization units, and fluid delivery mechanisms.










