MEMS Foundry
Sensors
MEMS Foundry
Sensors
Sensors convert physical, chemical, or biological phenomena into measurable signals that drive today’s most advanced systems. From healthcare and environmental monitoring to automotive safety and industrial automation, sensors form the backbone of data-driven decision making. As devices get smaller, smarter, and more connected, the demand grows for sensors that are highly sensitive, selective, reliable, and manufacturable at scale.
B-Micron’s MEMS and microfabrication expertise enables the creation of sensors that detect pressure, flow, acceleration, vibration, temperature, light, and biochemical markers with high precision. We design and fabricate microstructures—such as diaphragms, resonators, cantilevers, and electrodes—and integrate them into packages that balance performance with durability and cost efficiency. Beyond the core device, we support critical steps like cleanroom assembly, surface functionalization, bonding, and environmental sealing to ensure stability in real-world conditions.
Our approach bridges concept to commercialization: prototyping custom sensors, validating them against application requirements, and scaling up production methods for volume manufacturing. Applications span medical diagnostics and wearables, autonomous vehicle perception, aerospace navigation, smart industrial equipment, and environmental sensing networks. With our integrated services, customers can rapidly move from feasibility to functional, deployable sensors.
Sensors convert physical, chemical, or biological phenomena into measurable signals that drive today’s most advanced systems. From healthcare and environmental monitoring to automotive safety and industrial automation, sensors form the backbone of data-driven decision making. As devices get smaller, smarter, and more connected, the demand grows for sensors that are highly sensitive, selective, reliable, and manufacturable at scale.
B-Micron’s MEMS and microfabrication expertise enables the creation of sensors that detect pressure, flow, acceleration, vibration, temperature, light, and biochemical markers with high precision. We design and fabricate microstructures—such as diaphragms, resonators, cantilevers, and electrodes—and integrate them into packages that balance performance with durability and cost efficiency. Beyond the core device, we support critical steps like cleanroom assembly, surface functionalization, bonding, and environmental sealing to ensure stability in real-world conditions.
Our approach bridges concept to commercialization: prototyping custom sensors, validating them against application requirements, and scaling up production methods for volume manufacturing. Applications span medical diagnostics and wearables, autonomous vehicle perception, aerospace navigation, smart industrial equipment, and environmental sensing networks. With our integrated services, customers can rapidly move from feasibility to functional, deployable sensors.
Sensors convert physical, chemical, or biological phenomena into measurable signals that drive today’s most advanced systems. From healthcare and environmental monitoring to automotive safety and industrial automation, sensors form the backbone of data-driven decision making. As devices get smaller, smarter, and more connected, the demand grows for sensors that are highly sensitive, selective, reliable, and manufacturable at scale.
B-Micron’s MEMS and microfabrication expertise enables the creation of sensors that detect pressure, flow, acceleration, vibration, temperature, light, and biochemical markers with high precision. We design and fabricate microstructures—such as diaphragms, resonators, cantilevers, and electrodes—and integrate them into packages that balance performance with durability and cost efficiency. Beyond the core device, we support critical steps like cleanroom assembly, surface functionalization, bonding, and environmental sealing to ensure stability in real-world conditions.
Our approach bridges concept to commercialization: prototyping custom sensors, validating them against application requirements, and scaling up production methods for volume manufacturing. Applications span medical diagnostics and wearables, autonomous vehicle perception, aerospace navigation, smart industrial equipment, and environmental sensing networks. With our integrated services, customers can rapidly move from feasibility to functional, deployable sensors.
MEMS Foundry
MEMS Foundry
